JP4020923B2 - Food whippers - Google Patents

Food whippers Download PDF

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JP4020923B2
JP4020923B2 JP2005231713A JP2005231713A JP4020923B2 JP 4020923 B2 JP4020923 B2 JP 4020923B2 JP 2005231713 A JP2005231713 A JP 2005231713A JP 2005231713 A JP2005231713 A JP 2005231713A JP 4020923 B2 JP4020923 B2 JP 4020923B2
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wire
stainless steel
receiving boss
steel wires
wire receiving
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JP2007044246A (en
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昭夫 中井
義則 中川
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中井機械工業株式会社
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Description

本発明はカスタードクリームや生クリーム、バタークリーム、ケーキ生地、ブッセ生地、ゴマ豆腐、ソース類、その他の各種粘性食材に泡立て(ホイッピング)や攪拌(ビーティング)、混合(ミキシング)などの作用を与えるホイッパーに関する。   The present invention is a whipper that provides custard cream, fresh cream, butter cream, cake dough, busse dough, sesame tofu, sauces, and other various viscous ingredients such as whipping, stirring (beating), mixing (mixing), etc. About.

この種の業務用攪拌機(ミキサー)に使われているホイッパーは、複数本のステンレスワイヤーから全体的な紡錘型やナス型の輪郭形状をなし、その各ワイヤーの切り離し基端部が取付支軸から張り出す径大なフランジへ差し込まれた上、かしめ付け(圧潰)によって着脱不能に固定一体化されている通例である。
実用新案登録第3098436号公報 特許第2759092号公報 実開平6−17644号公報
The whipper used in this type of commercial stirrer (mixer) has an overall spindle-shaped or eggplant-shaped contour shape from a plurality of stainless steel wires, and the base end of each wire is separated from the mounting spindle. It is customary to be fixed and integrated so that it cannot be attached or detached by caulking (crushing) after being inserted into a flange having a large diameter.
Utility Model Registration No. 3098436 Japanese Patent No. 2759092 Japanese Utility Model Publication No. 6-17644

ところが、これではフランジへのワイヤー差し込み孔内に食材のカスが溜まり、その都度ホイッパーを攪拌機による回転駆動側から取りはずして、そのカスの面倒な除去作業を行なう必要があり、作業能率上の隘路となっている。   However, in this case, food waste remains in the wire insertion hole to the flange, and each time it is necessary to remove the whipper from the rotational drive side by the stirrer and perform troublesome removal work of the waste, which is a bottleneck in terms of work efficiency. It has become.

この点、実用新案登録第3098436号公報に開示のホイッパーでは、ワイヤーをフランジへ隙間なくロウ付けすることにより、上記問題を解決しているが、そのフランジに対する各ワイヤーの着脱不能な固定構造であることに変りはないため、ワイヤーが食材の泡立て作用中や攪拌作用中、その回転遠心力に耐え切れず捻れ変形したり、或いはフランジへの差し込み部から折損したりしたような場合、そのワイヤーだけの交換や修理などを容易に行なうことができず、ホイッパー全体の交換を余儀なくされるのである。   In this regard, in the whip disclosed in the Utility Model Registration No. 3098436, the above problem is solved by brazing the wire to the flange without any gap, but the fixing structure in which each wire cannot be attached to and detached from the flange is provided. Since there is no change, when the wire is not able to withstand the rotational centrifugal force during the foaming action or stirring action of the foodstuff, it is twisted or broken from the insertion part to the flange, only the wire This makes it difficult to replace or repair the whipper, forcing the entire whipper to be replaced.

更に言えば、上記実用新案登録第3098436号公報の段落〔0002〕と図5、6には、「ワイヤ部材(ニ)の各端部(ホ)をフランジ(イ)の二部材(ロ)(ハ)で挟み込み、二部材(ロ)(ハ)をネジ又はボルト等(ヘ)で締めあげ」る構成が説示されており、そのネジ又はボルト等(ヘ)を逆に緩めれば、フランジ(イ)からワイヤ部材(ニ)だけを取りはずして交換できるように見受けられる。   Further, in paragraph [0002] of the above-mentioned utility model registration No. 3098436 and FIGS. 5 and 6, “each end (e) of the wire member (d) is connected to the two members (b) of the flange (b) ( C), and the two members (b) (c) are tightened with screws or bolts (f) ". If the screws or bolts (f) are loosened, the flange ( It seems that only the wire member (d) can be removed from the b) and replaced.

しかし、これではネジ又はボルト等(ヘ)の回動工具が不可欠であって、その工具の使用によりネジ又はボルト等(ヘ)を1本づつ回動操作しなければならず、複数本のワイヤ部材(ニ)を作業者の手先のみによって、フランジ(イ)へワンタッチ式での軽快にすばやく着脱作業することができない。   However, in this case, a rotating tool such as a screw or bolt (f) is indispensable, and by using the tool, the screw or bolt (f) must be rotated one by one, and a plurality of wires The member (d) cannot be easily attached to and detached from the flange (a) easily and quickly only by the operator's hand.

それにもまして、同公報の段落〔0004〕に記載されているとおり、「フランジ(イ)の二部材間にできた隙間、又はフランジ(イ)とワイヤ部材(ニ)の端部(ホ)との間にできた隙間に入り込んだ食品等を完全に除去することは難しい。さりとて使用するたびにワイヤ部材(ニ)をフランジ(イ)から取り外し、洗浄、乾燥を行ってから再度組み立てることは、作業が非常に煩雑であるので非現実的であり、実施困難である。しかも、ネジ又はボルト等(ヘ)の締め付けが充分でないと、ミキサーの作動中にネジ又はボルト等(ヘ)が落下し、これが異物として食品に混入してしまう。」のである。   Furthermore, as described in paragraph [0004] of the same publication, “the gap formed between the two members of the flange (b), or the end (e) of the flange (b) and the wire member (d) It is difficult to completely remove foods, etc. that have entered the gap created between the two parts.Whenever you use it, remove the wire member (d) from the flange (b), clean it, dry it, The work is so complicated that it is impractical and difficult to implement, and if the screws or bolts (f) are not tightened sufficiently, the screws or bolts (f) will fall during operation of the mixer. This is mixed into food as a foreign substance. "

本発明はこのような課題の抜本的な解決を目的としており、その目的を達成するために、請求項1では攪拌機による回転駆動側へ連結使用される取付支軸と、その取付支軸の下部に組立一体化されたワイヤー受けボスと、そのワイヤー受けボスへ上方から抜き差し自在に差し込み套嵌されるワイヤー固定用キャップと、一定長さの中間部を先細り円錐状の頂点として、その頂点から向かい合う対称なほぼ弾丸型やナス型などの平面輪郭形状に折り曲げられたステンレスワイヤーの複数本とを備え、   SUMMARY OF THE INVENTION The present invention aims to drastically solve such problems, and in order to achieve this object, the present invention provides a mounting support shaft connected to the rotational drive side of a stirrer and a lower portion of the mounting support shaft. A wire receiving boss that is assembled and integrated into the wire receiving cap, a wire fixing cap that is slidably inserted into the wire receiving boss from above, and a middle portion of a certain length as a conical apex, facing each other from the apex. With a plurality of stainless steel wires bent into a plane contour shape such as a symmetrical bullet or eggplant shape,

そのステンレスワイヤーの切り離し両端基部を上記ワイヤー受けボスへ全体的な放射対称分布型として、且つ着脱自在に組み付け立体化した上、上記キャップにより包囲状態に拘束固定する食材用ホイッパーであって、 The stainless steel wire detachable both ends base to the wire receiving boss as an overall radial symmetrical distribution type, and detachably assembled and three-dimensionally, and a food whip that is restrained and fixed in an enclosed state by the cap ,

上記ステンレスワイヤーを偶数本として、その各個の切り離し両端基部を一対の垂直な首筋とこれから狭く張り出す水平な鉤爪との向かい合う倒立L字型に折り曲げ、しかもその一対の鉤爪だけを残余の線材折り曲げ平面から同じ一方向へ一定角度だけ捻る如く、平面視のほぼハ字型に曲げ起す一方、 The above-mentioned stainless steel wire is an even number, and the base of both ends of each piece is folded into an inverted L-shape facing a pair of vertical necks and a horizontal claw projecting narrowly from this, and only the pair of claw claws are bent into the remaining wire bending plane. While bending from the same direction to the same one direction by a certain angle,

上記ステンレスワイヤーの2倍に相当する偶数個の水平な爪受け入れ孔と垂直な首筋逃し入れ凹溝とを合致連通する倒立L字型として、ワイヤー受けボスへ上記鉤爪の曲げ起し角度よりも大きな交叉角度を保つ全体的な放射対称分布型に配列設置して、As an inverted L-shape that matches and connects even number of horizontal claw receiving holes equivalent to twice the stainless steel wire and vertical neck escape groove, it is larger than the angle of bending of the claw to the wire receiving boss. Arrange and install in an overall radial symmetrical distribution type that maintains the crossing angle,

上記ステンレスワイヤーの両鉤爪をそのワイヤー受けボスの爪受け入れ孔へ各々抜き差し自在に差し込み係止させると共に、同じくステンレスワイヤーの両首筋をそのワイヤー受けボスの首筋逃し入れ凹溝へ各々当てがいフィットさせることにより、上記ステンレスワイヤーの隣り合う一対づつを2本1組の単位として、互いに接近するほぼ平行状態に保ったことを特徴とする。Insert and lock both hooks of the above stainless steel wires into the hooks of the wire receiving bosses so that they can be inserted and removed, and fit both stainless steel wire necks into the recessed grooves of the wire receiving bosses. Thus, the adjacent pairs of the stainless steel wires are kept in a substantially parallel state approaching each other as a unit of two.

又、上記請求項1に従属する請求項2では、ステンレスワイヤーを悉く同じ長さと線径の合計6本として、その各個の切り離し両端基部に向かい合う一対の鉤爪を、約15度の一定角度だけ曲げ起す一方、Further, in claim 2 subordinate to claim 1, the pair of claws facing the bases at both ends of each piece is bent at a constant angle of about 15 degrees, with a total of six wires having the same length and wire diameter as the stainless wire. While waking up

ワイヤー受けボスの爪受け入れ孔を合計12個として、その隣り合う約30度の均等な交叉角度を保つ全体的な放射対称分布型に配列設置し、A total of 12 claw receiving holes of the wire receiving boss are arranged and installed in an overall radial symmetrical distribution type that maintains an equal crossing angle of about 30 degrees adjacent to each other,

上記ステンレスワイヤーの先端部が回転中心を囲むほぼ正六角形の絡らみ合い交叉状態となるように、その各個の両鉤爪を上記ワイヤー受けボスの爪受け入れ孔へ差し込み係止させたとことを特徴とする。The stainless steel wire is inserted and locked into the claw receiving hole of the wire receiving boss so that the front end of the stainless steel wire is in an almost regular hexagonal entanglement crossing state surrounding the rotation center. To do.

更に、上記請求項1に従属する請求項3では、ワイヤー受けボスを径小な上筒部と径大な下筒部とから成る段付き円筒型に造形して、その上筒部を取付支軸へ水平な貫通ピンにより予じめ組立一体化する一方、Further, in claim 3 subordinate to claim 1, the wire receiving boss is formed into a stepped cylindrical shape composed of a small diameter upper cylindrical portion and a large diameter lower cylindrical portion, and the upper cylindrical portion is attached to the mounting support. While pre-assembled and integrated with a horizontal through pin to the shaft,

ワイヤー固定用キャップを上記ワイヤー受けボスへ覆いかぶさる断面倒立U字型として、そのフラットな上面部にワイヤー受けボスへの円形な差込み口と向かい合う一対の貫通ピン逃し入れ用キー溝とを切り欠いて、As an inverted U-shaped cross-section covering the wire fixing cap over the wire receiving boss, cut out a pair of through pin escape key grooves facing the circular insertion port to the wire receiving boss on the flat upper surface. ,

その一対のキー溝を上記貫通ピンの張り出し両端部と合致させることにより、上記キャップをワイヤー受けボスへ上方から差し込み套嵌できるように定めたことを特徴とする。The cap is inserted into the wire receiving boss from above by fitting the pair of key grooves with the projecting both ends of the penetrating pin.

請求項1の上記構成によれば、ワイヤー受けボスからキャップを上方へ抜き出して、その露出したワイヤー受けボスから複数本のステンレスワイヤーを1本づつ取りはずし分解することができ、そのためステンレスワイヤーだけの洗浄や修理、新品との交換などを便利良く行なえる効果があり、冒頭に述べた従来技術の課題が確実に解消される。According to the above configuration of the first aspect, the cap can be pulled upward from the wire receiving boss, and a plurality of stainless wires can be removed and disassembled one by one from the exposed wire receiving boss. This makes it possible to carry out repairs, replacements with new ones, etc., and the problems of the prior art described at the beginning are surely solved.

又、各ステンレスワイヤーの切り離し両端基部をなす一対の鉤爪が平面視のほぼハ字型として、その残余の線材折り曲げ平面から同じ一方向へ一定角度だけ曲げ起されているため、これに基きステンレスワイヤーの偶数本を使用しつつ、その頂点が悉く1点に集中しない絡らみ合い交叉状態を得ることができ、上記分解後にワイヤー受けボスへ再度組み付ける作業を、誰でも容易に行なえる効果がある。In addition, the pair of claws that form the bases at both ends of each stainless steel wire are formed in a substantially C shape in plan view, and are bent from the remaining wire bending plane in the same direction by a certain angle. Can be used to obtain an entangled crossing state that does not concentrate on a single point where the tops of the even number are crammed, and anyone can easily reassemble the wire receiving boss after the disassembly. .

特に、請求項2の構成を採用するならば、比較的小型の攪拌機用にふさわしいホイッパーとして、安定な立体輪郭形状に組み上げることができ、高速の回転遠心力や高粘度な食材の抵抗力を受けるも、その絡らみ合い交叉する組み付け状態の不慮に解離してしまうおそれがない。In particular, if the configuration of claim 2 is adopted, it can be assembled into a stable three-dimensional outline shape as a whipper suitable for a relatively small stirrer, and receives a high-speed rotational centrifugal force and a high-viscosity food resisting force. However, there is no risk that the assembled state of entanglement and crossing will unintentionally dissociate.

更に、請求項3の構成を採用するならば、ワイヤー受けボスから張り出す貫通ピンの両端部へ、そのキャップの貫通ピン逃し入れ用キー溝を合致させるべく、キャップを回動操作することにより工具の必要なく、誰でも手先のみによってキャップの抜き出しと、延いてはワイヤー受けボスに対するステンレスワイヤーの着脱作業をワンタッチ式での軽快にすばやく行なえ、その利便性がますます向上する。Furthermore, if the structure of Claim 3 is employ | adopted, a tool is operated by rotating a cap so that the key groove for the penetration pin escape of the cap may be matched with the both ends of the penetration pin protruding from a wire receiving boss. No one needs to be able to remove the cap with just the hand, and the attachment and removal of the stainless steel wire to the wire receiving boss can be done quickly and easily with a one-touch type, further improving the convenience.

以下、図面に基いて本発明の具体的構成を詳述すると、図1〜13はその食材用ホイッパー(B)の第1実施形態を示しており、これは後述の攪拌機(ミキサー)による回転駆動側へ連結使用される取付支軸(1)と、これと別個な偶数本(図例では合計6本)のステンレスワイヤー(2a)(2b)(2c)(2d)(2e)(2f)とを備え、そのワイヤー受けボス(3)とこれに覆いかぶさるワイヤー固定用キャップ(4)を介して、次のとおり着脱自在に組み立てられている。Hereinafter, specific configurations of the present invention will be described in detail with reference to the drawings. FIGS. 1 to 13 show a first embodiment of the food whipper (B), which is rotationally driven by an after-mentioned stirrer (mixer). The mounting support shaft (1) used to be connected to the side, and an even number (six in the illustrated example) of stainless steel wires (2a) (2b) (2c) (2d) (2e) (2f) The wire receiving boss (3) and the wire fixing cap (4) covering the wire receiving boss (3) are detachably assembled as follows.

先ず、上記取付支軸(1)は一定な長さ(例えば約75〜90mm)と直径(例えば約15mm)のステンレス鋼棒から成り、その半割り型のキー溝(5)が切り欠かれた上端部には、水平な連結ピン受け入れ孔(6)が貫通形成されている。First, the mounting support shaft (1) is made of a stainless steel rod having a fixed length (for example, about 75 to 90 mm) and a diameter (for example, about 15 mm), and its half-shaped keyway (5) is cut away. A horizontal connecting pin receiving hole (6) is formed through the upper end portion.

その場合、図1〜3の取付支軸(1)は単純なストレート形態をなしているが、その上端部に上記キー溝(5)と連結ピン受け入れ孔(6)を具備する限り、図14、15の変形実施形態に示すような中途部から一定角度(α)(例えば約5度)だけ屈折した取付支軸(1)や、図16の別な変形実施形態に示すような一定寸法(E)(例えば約8mm)だけ平行に偏心した段付きの取付支軸(1)などを採用することができ、又これらを後述する食材収容鍋の底面弯曲形状や容積などに応じて取捨選択し、互換使用しても良い。In this case, the mounting support shaft (1) of FIGS. 1 to 3 has a simple straight shape, but as long as the upper end of the mounting support shaft (1) includes the key groove (5) and the connecting pin receiving hole (6), FIG. , 15 of the mounting support shaft (1) refracted by a certain angle (α) (for example, about 5 degrees) as shown in the modified embodiment, or a fixed dimension (as shown in another modified embodiment of FIG. E) Stepped mounting shafts (1) etc. that are eccentric in parallel by about 8 mm (for example, about 8 mm) can be adopted, and these are selected according to the bottom curve shape and volume of the food storage pan described later. Can be used interchangeably.

次に、上記ワイヤー受けボス(3)はアルミ合金やステンレス鋼から図7〜9に示す如く、径小な上筒部(7)と径大な下筒部(8)とを備えた段付き円筒型に造形されており、上記取付支軸(1)の約下半部へ差し込み套嵌された状態において、その取付支軸(1)と上筒部(7)との水平な貫通ピン(9)により、上記取付支軸(1)と組み立て固定されている。Next, the wire receiving boss (3) is stepped from an aluminum alloy or stainless steel, as shown in FIGS. 7 to 9, and having a small diameter upper tube portion (7) and a large diameter lower tube portion (8). It is shaped like a cylinder and is inserted into the lower half of the mounting support shaft (1) so that it is fitted and fitted with a horizontal penetrating pin (1) between the mounting support shaft (1) and the upper tube portion (7). 9) and is assembled and fixed to the mounting support shaft (1).

茲に、水平な貫通ピン(9)は上筒部(7)の直径(例えば約24mm)よりも長く、下筒部(8)の直径(例えば約35mm)よりは短かい一定長さ(L)として、その両端部が図2のように上筒部(7)の外周面からほぼ等しく張り出す状態に打ち込まれている。In addition, the horizontal penetrating pin (9) has a constant length (L) that is longer than the diameter of the upper tube portion (7) (for example, about 24 mm) and shorter than the diameter of the lower tube portion (8) (for example, about 35 mm). ) As shown in FIG. 2 so that both ends protrude substantially equally from the outer peripheral surface of the upper tube portion (7).

他方、同じくワイヤー受けボス(3)の径大な下筒部(8)には爪受け入れ孔(10)が、上記ステンレスワイヤー(2a)〜(2f)における合計本数の2倍に相当する偶数個として、放射方向(半径方向)への水平に貫通形成されている。(β)はその隣り合う爪受け入れ孔(10)同志の均等な交叉角度を示しており、図例の場合約30度として、合計12個の爪受け入れ孔(10)が全体的な放射対称配列型に振り分けられている。On the other hand, the same number of nail receiving holes (10) in the lower cylindrical portion (8) of the wire receiving boss (3) is equivalent to twice the total number of the stainless steel wires (2a) to (2f). As a horizontal penetration in the radial direction (radial direction). (Β) indicates an equal crossing angle between adjacent nail receiving holes (10). In the case of the figure, about 30 degrees, a total of 12 nail receiving holes (10) are arranged in an overall radial symmetry. Sorted into molds.

(11)は上記爪受け入れ孔(10)と同じ偶数個の垂直な首筋逃し入れ凹溝であり、その爪受け入れ孔(10)の各個と図9のような倒立L字型に合致連通する位置関係として、上記下筒部(8)の外周面へ筒芯方向に沿い切り欠き列設されている。(11) are the same even number of vertical neckline recess grooves as the nail receiving hole (10), and the respective positions of the nail receiving holes (10) are in communication with the inverted L-shape as shown in FIG. As a relationship, notches are arranged along the cylinder core direction on the outer peripheral surface of the lower cylinder portion (8).

又、上記ステンレスワイヤー(2a)〜(2f)の各個はその文字通りに、一定な長さ(例えば約394mm)と線径(例えば約2mm)を備えた1本のステンレス丸鋼線材から成り、これを一定長さの中間部から向かい合う対称なほぼ弾丸型の平面輪郭形状に折り曲げると共に、その線材の切り離し両端基部を向かい合う一対の垂直な首筋(12)と、これから内向きに折れ曲がる水平な鉤爪(13)として、上記ワイヤー受けボス(3)の首筋逃し入れ凹溝(11)並びに爪受け入れ孔(10)と対応合致し得る倒立L字型に造形されており、その線材の中間部が先細り円錐状の頂点(P)となる。Each of the stainless wires (2a) to (2f) is literally made of a single stainless steel round wire having a certain length (eg, about 394 mm) and a wire diameter (eg, about 2 mm). Is bent into a symmetrical, substantially bullet-shaped planar contour shape facing from a middle portion of a fixed length, and a pair of vertical necks (12) facing the bases of both ends of the cut wire and the horizontal claws (13) ) As an inverted L-shape that can be matched and matched with the neck relief groove (11) and the nail receiving hole (10) of the wire receiving boss (3), and the intermediate portion of the wire is tapered and conical. The vertex (P) of

つまり、各ステンレスワイヤー(2a)〜(2f)は図10、11に抽出して示す如く、その線材の中間部を先細り円錐状に半折りされた頂点(P)とし、ここから最も広い一定幅(W)(例えば約75mm)の胴(14)と、斜め上方へ内向きに張り出す両肩(15)を経て折り曲げられた線材の切り離し両端基部が、一対のほぼ平行に垂立する首筋(12)とその上端部から狭く内向きに張り出す一対の水平な鉤爪(13)として、向かい合う倒立L字型に造形されているのであり、その両鉤爪(13)を図2、5のように上記ワイヤー受けボス(3)の爪受け入れ孔(10)へ抜き差し自在に差し込み係止させると共に、上記両首筋(12)を同じくワイヤー受けボス(3)の首筋逃し入れ凹溝(11)内へ当てがいフィットさせることができるようになっている。In other words, as shown in FIGS. 10 and 11, each stainless wire (2a) to (2f) has an apex (P) that is half-folded into a tapered conical shape at the middle portion of the wire, and has the widest constant width from here. (W) A neck (14) (for example, about 75 mm) and a pair of braided necks that are cut off from both ends of the wire (folded inwardly and obliquely upward) through a pair of shoulders (15). 12) and a pair of horizontal claws (13) projecting inwardly and narrowly from the upper end thereof, are formed in an inverted L shape facing each other, and both claws (13) are formed as shown in FIGS. The wire receiving boss (3) is removably inserted into the nail receiving hole (10) and locked, and the both neck muscles (12) are similarly applied to the neck receiving recess groove (11) of the wire receiving boss (3). To fit It has become possible way.

但し、各ステンレスワイヤー(2a)〜(2f)の折り曲げ平面輪郭形状としては、そ線材の切り離し両端基部が上記のような首筋(12)と鉤爪(13)とから向かい合う一対の倒立L字型に造形される限り、食材収容鍋における底面弯曲形状や容積などとの対応関係上、図17、18の変形実施形態に示すような上記両肩(15)を内向き水平に折り曲げた平面輪郭形状や、図19〜21の別な変形実施形態に示すように、上記線材の中間部から向かい合う対称なほぼナス型又は電球型に折り曲げた平面輪郭形状などを採用しても良い。However, each of the stainless steel wires (2a) to (2f) has a bent plane contour shape in which a pair of inverted L-shapes in which the bases of both ends of the wire are separated from the neck (12) and the claws (13) as described above are used. As long as it is shaped, a flat contour shape in which both shoulders (15) are bent inward and horizontal as shown in the modified embodiments of FIGS. As shown in another modified embodiment of FIGS. 19 to 21, a planar outline shape bent in a symmetrical substantially eggplant shape or light bulb shape facing the intermediate portion of the wire may be adopted.

又、その胴(14)の最も広い一定幅(W)(ホイッパーとしての最大回転直径)や上記線材の長さも、食材収容鍋の容積と対応する適当な寸法に選定することができる。Moreover, the widest constant width (W) (maximum rotation diameter as a whipper) of the trunk | drum (14) and the length of the said wire can also be selected in the suitable dimension corresponding to the volume of a foodstuff accommodation pan.

更に、上記線材の線径については、例えば生クリームやバタークリーム、ケーキ生地などの比較的粘度が低い食材を泡立て作用するような場合、可及的に線径が小さい多数本のステンレス鋼線材を使い、他方カスタードクリームやブッセ生地、ゴマ豆腐、ソース類などの加熱に連れて粘度が高くなる食材を攪拌・混合作用するような場合には、可及的に線径が大きい少数本のステンレス鋼線材を使うことが好ましい。Furthermore, with regard to the wire diameter of the wire, for example, when a relatively low-viscosity food material such as fresh cream, butter cream, or cake dough is foamed, a large number of stainless steel wires having a wire diameter as small as possible are used. On the other hand, if the custard cream, Bussé dough, sesame tofu, sauces, etc., the ingredients that become viscous with heating are stirred and mixed, a few stainless steels with as large a wire diameter as possible It is preferable to use a wire.

何れにしても、上記線材の切り離し両端基部をなす水平な鉤爪(13)の向かい合う一対に限っては、そのステンレスワイヤー(2a)〜(2f)の各個を上方から見た場合、図11や図20のように残余の線材折り曲げ平面(Y−Y)から同じ一方向へ、一定角度(γ)(図例では約15度)だけ捻るように曲げ起されており、その向かい合う一対のほぼハ字型を呈している。In any case, in the case where each of the stainless wires (2a) to (2f) is viewed from above as far as a pair of facing horizontal claws (13) forming the both ends of the above-mentioned wire rod, FIG. 11 and FIG. 20 is bent from the remaining wire bending plane (Y-Y) in the same direction so as to be twisted by a fixed angle (γ) (about 15 degrees in the example), and a pair of substantially half-shaped characters facing each other. Presents a mold.

このような一定の曲げ起し角度(γ)を両鉤爪(13)についてだけ付与した理由は、上記弾丸型やナス型などの平面輪郭形状に折り曲げられたステンレスワイヤー(2a)〜(2f)の偶数本から、本発明のホイッパー(B)として組み立て立体化する際、その先細り円錐状の頂点(P)同志が1点に集中することを防ぎ、すべて同じ長さと線径のステンレス鋼線材を使用しつつも、又その両鉤爪(13)を上記ワイヤー受けボス(3)における対応的な一対の爪受け入れ孔(10)へ差し込み係止させるだけで、その偶数本のステンレスワイヤー(2a)〜(2f)からホイッパー(B)としての全体的な立体輪郭形状を無理なく、且つ正確に得られるようにするためである。The reason for providing such a constant bending angle (γ) only for both claws (13) is that the stainless steel wires (2a) to (2f) bent into a planar contour shape such as the bullet type or eggplant type are used. When assembling as a whipper (B) of the present invention from an even number, the conical apex (P) of the tapered cone is prevented from concentrating on one point, and stainless steel wires of the same length and diameter are used. However, the both hooks (13) are inserted into and locked with the corresponding pair of hooks (10) in the wire receiving boss (3), and the even number of stainless wires (2a) to ( This is because the overall three-dimensional contour shape as the whipper (B) can be obtained easily and accurately from 2f).

更に、上記ワイヤー受けボス(3)のキャップ(4)はそのワイヤー受けボス(3)の径大な下筒部(8)を包囲する円筒部(16)と、フラットな上面部(17)とを備えた断面倒立U字型として、図12、13のようにステンレス鋼から造形されたものであり、上記ワイヤー受けボス(3)へ上方から差し込み套嵌された状態では、その上面部(17)がワイヤー受けボス(3)の段部(肩部)に受け止められ、脱落するおそれはない。Further, the cap (4) of the wire receiving boss (3) includes a cylindrical portion (16) surrounding the large lower cylindrical portion (8) of the wire receiving boss (3), a flat upper surface portion (17), and As shown in FIGS. 12 and 13, as an inverted U-shaped section having a cross section, the upper surface portion (17) of the wire receiving boss (3) is inserted into the wire receiving boss (3) from above. ) Is received by the stepped portion (shoulder portion) of the wire receiving boss (3), and there is no possibility of falling off.

(18)はそのキャップ(4)の上面部(17)に設けられた円形の差込み口であり、上記ワイヤー受けボス(3)における上筒部(7)の直径とほぼ対応する大きさを有しているが、その差込み口(18)の開口縁部には上記水平な貫通ピン(9)の張り出し両端部を逃し入れるキー溝(19)の向かい合う一対も切り欠かれいる。(18) is a circular insertion port provided in the upper surface part (17) of the cap (4), and has a size substantially corresponding to the diameter of the upper cylinder part (7) in the wire receiving boss (3). However, a pair of opposing key grooves (19) for letting out the projecting both ends of the horizontal through pin (9) are also cut out at the opening edge of the insertion port (18).

その一対のキー溝(19)を上記貫通ピン(9)の張り出し両端部と合致させれば、キャップ(4)を上記ワイヤー受けボス(3)へ上方から抜き差し自在に差し込み套嵌させることができ、その差し込み套嵌後にキャップ(4)を回動操作して、上記キー溝(19)と貫通ピン(9)とを位置ズレさせれば、その貫通ピン(9)によりキャップ(4)を上記ワイヤー受けボス(3)からの抜け止め状態に保てるのである。If the pair of key grooves (19) are aligned with the projecting both ends of the penetrating pin (9), the cap (4) can be inserted into the wire receiving boss (3) so that it can be inserted and removed from above. When the cap (4) is rotated after the insertion sleeve is fitted to displace the key groove (19) and the through pin (9), the cap (4) is moved by the through pin (9). This prevents the wire receiving boss (3) from coming off.

尚、上記キャップ(4)における円筒部(16)の外周面には、操作手の滑り止め用粗面となるローレット加工やその他の加工(図示省略)を施しておくことが好ましい。The outer peripheral surface of the cylindrical portion (16) of the cap (4) is preferably subjected to knurling processing or other processing (not shown) to be a rough surface for preventing slipping of the operator.

上記取付支軸(1)と予じめ組立一体化されているワイヤー受けボス(3)へ、これと別個な偶数本のステンレスワイヤー(2a)〜(2f)を組み付けることにより、ホイッパー(B)として造形立体化するに当っては図2、5のように、その各ステンレスワイヤー(2a)〜(2f)の両鉤爪(13)をワイヤー受けボス(3)の爪受け入れ孔(10)へ抜き差し自在に差し込み係止させると共に、同じく両首筋(12)をワイヤー受けボス(3)の首筋逃し入れ凹溝(11)内へ当てがいフィットさせて、その横振れしない状態に保った後、上記ワイヤー受けボス(3)へ上方からワイヤー固定用キャップ(4)を抜き差し自在に差し込み套嵌させて、そのキャップ(4)の円筒部(16)により各ステンレスワイヤー(2a)〜(2f)の鉤爪(13)と首筋(12)を悉く包囲状態に拘束固定すれば良く、このような作業は作業者の手先のみによって行なえ、工具類を必要としない。By assembling an even number of separate stainless steel wires (2a) to (2f) to the wire receiving boss (3) integrated with the mounting support shaft (1) and pre-assembled, the whipper (B) As shown in FIGS. 2 and 5, as shown in FIGS. 2 and 5, the both claws (13) of the stainless steel wires (2 a) to (2 f) are inserted into and removed from the claw receiving holes (10) of the wire receiving boss (3). After freely inserting and locking, both neck muscles (12) are fitted and fitted into the neck groove relief grooves (11) of the wire receiving boss (3) and kept in the state where the lateral vibration does not occur. A wire fixing cap (4) is detachably inserted into the receiving boss (3) from above, and is fitted into the stainless steel wire (2a) to (2) by the cylindrical portion (16) of the cap (4). ) Of claws (13) and neck (12) altogether may be constrained fixed to surrounding conditions, such work is performed only by hand of the operator and does not require tooling.

この点、図例に基いて一層詳しく説明すると、上記ワイヤー受けボス(3)には合計12個づつの爪受け入れ孔(10)と首筋逃し入れ凹溝(11)が、その約30度の交叉角度(β)を保つ全体的な放射対称分布型として配列設置されているに比し、各ステンレスワイヤー(2a)〜(2f)の切り離し両端基部をなす水平な鉤爪(13)の向かい合う一対は平面視のほぼハ字型として、上記交叉角度(β)の半分に相当する約15度の一定角度(γ)だけ、その残余の線材折り曲げ平面(Y−Y)から捻る如く曲げ起されている。This point will be described in more detail with reference to the drawings. The wire receiving boss (3) has a total of twelve nail receiving holes (10) and a neck relief groove (11). Compared to the arrangement of the entire radial symmetrical distribution type that maintains the angle (β), the opposed pair of horizontal claws (13) that form the cut ends of each of the stainless steel wires (2a) to (2f) is flat. As a substantially C-shape, it is bent and twisted from the remaining wire bending plane (Y-Y) by a constant angle (γ) of about 15 degrees corresponding to half of the crossing angle (β).

そのため、今上記ワイヤー受けボス(3)を時計と看做して言えば、図5から明白なように、合計6本あるステンレスワイヤー(2a)〜(2f)のうち、その第1ステンレスワイヤー(2a)の両鉤爪(13)をワイヤー受けボス(3)の12時と7時に位置する一対の爪受け入れ孔(10)へ、第2ステンレスワイヤー(2b)の両鉤爪(13)を同じくワイヤー受けボス(3)の1時と6時に位置する一対の爪受け入れ孔(10)へ各々差し込み係止させる。Therefore, if the wire receiving boss (3) is considered as a watch, as is apparent from FIG. 5, the first stainless steel wire (2a) to (2f) among the six stainless steel wires (2a) to (2f) in total. 2a) the claws (13) of the second stainless steel wire (2b) to the pair of claw receiving holes (10) located at 12 o'clock and 7 o'clock of the wire receiving boss (3). The boss (3) is inserted and locked into a pair of claw receiving holes (10) located at 1 o'clock and 6 o'clock.

又、第3ステンレスワイヤー(2c)の両鉤爪(13)をやはりワイヤー受けボス(3)の2時と9時に位置する一対の爪受け入れ孔(10)へ、第4ステンレスワイヤー(2d)の両鉤爪(13)を同じくワイヤー受けボス(3)の3時と8時に位置する一対の爪受け入れ孔(10)へ各々差し込み係止させる。Moreover, both the claws (13) of the third stainless steel wire (2c) are inserted into the pair of claw receiving holes (10) located at 2 o'clock and 9 o'clock of the wire receiving boss (3). The claw (13) is inserted and locked into a pair of claw receiving holes (10) located at 3 o'clock and 8 o'clock of the wire receiving boss (3).

更に、第5ステンレスワイヤー(2e)の両鉤爪(13)を上記ワイヤー受けボス(3)の4時と11時に位置する一対の爪受け入れ孔(10)へ、第6ステンレスワイヤー(2f)の両鉤爪(13)を同じくワイヤー受けボス(3)の残る5時と10時に位置する一対の爪受け入れ孔(10)へ各々差し込み係止させるのである。Further, both hook claws (13) of the fifth stainless wire (2e) are inserted into the pair of hook receiving holes (10) located at 4 o'clock and 11 o'clock of the wire receiving boss (3). The claw (13) is inserted and locked into a pair of claw receiving holes (10) located at 5 o'clock and 10 o'clock where the wire receiving boss (3) remains.

そうすれば、各ステンレスワイヤー(2a)〜(2f)における向かい合う一対のほぼ平行に垂立する首筋(12)が、上記鉤爪(13)と対応位置するワイヤー受けボス(3)の首筋逃し入れ凹溝(11)内へ横振れのおそれなく当てがいフィットされることとも相俟って、図4から明白なように、上記第1、2ステンレスワイヤー(2a)(2b)の隣り合う一対と第3、4ステンレスワイヤー(2c)(2d)の隣り合う一対並びに第5、6ステンレスワイヤー(2e)(2f)の隣り合う一対は、その2本1組づつの言わば単位として互いに接近したほぼ平行状態となり、これら第1〜6ステンレスワイヤー(2a)〜(2f)における先細り円錐状の頂点(P)が悉くホイッパー回転中心(O)の1点に集中せず、その1点を回避した放射状態に振り分けられる。Then, the pair of facing necks (12) extending in parallel in each of the stainless steel wires (2a) to (2f) are recessed in the neck of the wire receiving boss (3) located corresponding to the claw (13). Combined with the fitting fit without fear of lateral swing into the groove (11), as is apparent from FIG. 4, the pair of adjacent first and second stainless steel wires (2a) (2b) The adjacent pair of the third and fourth stainless steel wires (2c) and (2d) and the adjacent pair of the fifth and sixth stainless steel wires (2e) and (2f) are almost parallel to each other as a unit, that is, a pair of the two. Thus, the tapered cone apex (P) in these first to sixth stainless steel wires (2a) to (2f) does not concentrate on one point of the whipper rotation center (O) and avoids that one point. It was distributed to the radiation state.

但し、ホイッパー(B)を下方から見た図4の底面図に、上記ステンレスワイヤー(2a)〜(2f)の組み付け順序を示す如く、同図の矢印方向から通し込むと仮定して、第3ステンレスワイヤー(2c)を先にワイヤー受けボス(3)へ組み付けられている第2ステンレスワイヤー(2b)の下側から、同じく先に組み付けられている第1ステンレスワイヤー(2a)の上側へ通し込む一方、第4ステンレスワイヤー(2d)を逆に第2ステンレスワイヤー(2b)の上側から、第1ステンレスワイヤー(2a)の下側へ通し込む。However, assuming that the stainless steel wires (2a) to (2f) are assembled in the bottom view of FIG. The stainless steel wire (2c) is passed from the lower side of the second stainless steel wire (2b) first assembled to the wire receiving boss (3) to the upper side of the first stainless steel wire (2a) also assembled first. On the other hand, the fourth stainless steel wire (2d) is passed through from the upper side of the second stainless steel wire (2b) to the lower side of the first stainless steel wire (2a).

そして、更に、第5ステンレスワイヤー(2e)を第2、4ステンレスワイヤー(2b)(2d)の下側から、第1、3ステンレスワイヤー(2a)(2c)の上側へ通し込む一方、第6ステンレスワイヤー(2f)を逆に第2、4ステンレスワイヤー(2b)(2d)の上側から、第1、3ステンレスワイヤー(2a)(2c)の下側へ通し込むことにより、その第1〜6ステンレスワイヤー(2a)〜(2f)の先端部を互いに縫う如く絡らみ合わせて、ホイッパー(B)の回転中心(O)をほぼ正多角形(図例では正六角形)に囲む交叉状態に組み付け立体化するのである。Further, while passing the fifth stainless wire (2e) from the lower side of the second and fourth stainless steel wires (2b) and (2d) to the upper side of the first and third stainless steel wires (2a) and (2c), By passing the stainless steel wire (2f) from the upper side of the second and fourth stainless steel wires (2b) (2d) to the lower side of the first and third stainless steel wires (2a) (2c), the first to sixth The tip of stainless steel wires (2a) to (2f) are entangled as if they are sewn together, and assembled in a crossed state in which the center of rotation (O) of the whipper (B) is surrounded by a regular polygon (regular hexagon in the example). It becomes three-dimensional.

上記ステンレスワイヤー(2a)〜(2f)の偶数本から造形立体化されたホイッパー(B)によれば、これが食材の泡立て作用中や攪拌作用中に、高速の回転遠心力を受けたり、高粘度な食材の抵抗力を受けたりしても、そのステンレスワイヤー(2a)〜(2f)の絡らみ合う交叉状態がバラバラに解離したり、不正に捻り変形したりするおそれはない。According to the whipper (B) formed and modeled from the even number of the stainless steel wires (2a) to (2f), this is subjected to a high-speed rotational centrifugal force during the foaming action or stirring action of the food, or has a high viscosity. Even if it receives the resistance of various foodstuffs, there is no possibility that the crossed state in which the stainless steel wires (2a) to (2f) are intertwined will be dissociated and twisted and deformed illegally.

その場合、各ステンレスワイヤー(2a)〜(2f)における先細り円錐状の頂点(P)を、図例のような鈍角(θ)(例えば約120度)に半折りして、ほぼV字型に尖鋭化するならば、上記絡らみ合い交叉する組み付け状態が解離しようとする動きに対して、一層効果的な抑制力を与えることができ、保形性と作用安定性の向上に役立つ。In that case, the tapered conical apex (P) in each of the stainless steel wires (2a) to (2f) is half-folded into an obtuse angle (θ) (for example, about 120 degrees) as shown in the figure, so that it is almost V-shaped. If sharpening is performed, a more effective restraining force can be given to the movement of the assembled state where the entangled and crossed state is about to be dissociated, which helps to improve shape retention and operational stability.

何れにしても、上記ワイヤー受けボス(3)からワイヤー固定用キャップ(4)を抜き出せば、そのワイヤー受けボス(3)の下筒部(8)が全開状態に露呈するため、その下筒部(8)の爪受け入れ孔(10)と首筋逃し入れ凹溝(11)から、上記ステンレスワイヤー(2a)〜(2f)の両鉤爪(13)と両首筋(12)をやはり作業者の手先のみによって、悉く取りはずし分解することができ、そのステンレスワイヤー(2a)〜(2f)だけの洗浄や修理、新品との交換などを便利良く行なえ、又再度ワイヤー受けボス(3)へ組み付け立体化する作業も、各ステンレスワイヤー(2a)〜(2f)の鉤爪(13)に与えられた一定の曲げ起し角度(γ)に基いて、誰でもすばやく正確に行なえるのであり、必要に応じて上記絡らみ合い交叉状態の正多角形を手先で補正(微調整)すれば足る。In any case, if the wire fixing cap (4) is extracted from the wire receiving boss (3), the lower tube portion (8) of the wire receiving boss (3) is exposed to the fully open state, so that the lower tube portion From the nail receiving hole (10) of (8) and the scooping recess groove (11), the both claws (13) and both neck muscles (12) of the stainless steel wires (2a) to (2f) are also used only by the operator's hand. The stainless steel wires (2a) to (2f) can be easily cleaned and repaired, replaced with new ones, and reassembled into the wire receiving boss (3). Can be performed quickly and accurately based on the constant bending angle (γ) given to the claws (13) of the stainless steel wires (2a) to (2f). Et The regular polygon of fit crossing state sufficient if the hand in the correction (fine adjustment).

尚、図例では上記ワイヤー受けボス(3)に配列設置された爪受け入れ孔(10)同志の交叉角度(β)を約30度として、その合計12個の爪受け入れ孔(10)へ合計6本のステンレスワイヤー(2a)〜(2f)における向かい合う一対の鉤爪(13)を各々差し込み係止させるようになっている一方、その各ステンレスワイヤー(2a)〜(2f)の両鉤爪(13)を上記交叉角度(β)の半分に相当する約15度の一定角度(γ)だけ捻る如く曲げ起しているが、上記のようにステンレスワイヤー(2a)〜(2f)の頂点(P)を1点に集中させない趣旨が達成される限り、その交叉角度(β)や曲げ起し角度(γ)の数値、ワイヤー受けボス(3)における就中下筒部(8)の直径、その爪受け入れ孔(10)と首筋逃し入れ凹溝(11)の振り分け配列個数、ステンレスワイヤー(2a)〜(2f)自身の線径や使用本数は、食材収容鍋の容積や食材の粘度、ホイッパー(B)の回転速度などとの関係を総合的に考慮して、適当に選定することができる。In the illustrated example, the crossing angle (β) between the nail receiving holes (10) arranged on the wire receiving boss (3) is set to about 30 degrees, and the total 12 twelve nail receiving holes (10) have a total of 6 The pair of claws (13) facing each other in the stainless steel wires (2a) to (2f) are inserted and locked, while the claws (13) of the respective stainless wires (2a) to (2f) are The wire is bent and twisted by a fixed angle (γ) of about 15 degrees corresponding to half of the crossing angle (β), but the apex (P) of the stainless steel wires (2a) to (2f) is 1 as described above. As long as the purpose of not concentrating on the point is achieved, the values of the crossing angle (β) and the bending angle (γ), the diameter of the lower cylindrical portion (8) in the wire receiving boss (3), the nail receiving hole (10) and neck groove escape groove The number of sorting arrangements in (11), the wire diameter and the number of stainless steel wires (2a) to (2f) themselves are comprehensively related to the volume of the food container pan, the viscosity of the food, the rotational speed of the whipper (B), etc. In consideration of the above, it can be selected appropriately.

図22〜26はカスタードクリームの攪拌(ビーティング)や混合(ミキシング)に供した本発明の使用状態を例示している。(M)は幅:約450mm×奥行:約650mm×高さ:約1330mmの大きさを有する比較的小型の業務用攪拌機(ミキサー)、(20)はその作業床への据付け機筐であり、その上面の鍋受けフランジ(21)に受け止められた食材収容鍋(T)(図例では直径:約335mm、深さ:約158mm、容量:約11リットルの銅製ボール鍋)が、下方から電磁誘導加熱器(22)によって加熱されるようになっている。22 to 26 exemplify the use state of the present invention used for stirring (beating) or mixing (mixing) of custard cream. (M) is a relatively small commercial stirrer (mixer) having a size of width: about 450 mm × depth: about 650 mm × height: about 1330 mm, and (20) is an installation machine housing on its work floor, Ingredient storage pan (T) (diameter: about 335 mm, depth: about 158 mm, capacity: about 11 liters of copper ball pan) received by the pan receiving flange (21) on the upper surface is electromagnetic induction from below It is heated by a heater (22).

そのため、食材収容鍋(T)の底面には磁性体である鉄粉などの発熱被膜(図示省略)が溶着一体化されているが、上記電磁誘導加熱器(22)に代るガスバーナーでの直火や、蒸気ジャケットへ供給される蒸気などの加熱源によって、食材収容鍋(T)を加熱しても良い。Therefore, a heat generating film (not shown) such as iron powder which is a magnetic material is welded and integrated on the bottom surface of the food container pan (T), but in the gas burner replacing the electromagnetic induction heater (22), The food storage pan (T) may be heated by a heating source such as an open flame or steam supplied to the steam jacket.

(23)は上記据付け機筐(20)の上面に取り付け固定された中空支柱用ベース盤であり、これから食材収容鍋(T)の開口上面よりも背高く起立する中空支柱(24)の上端部からは、その食材収容鍋(T)の真上位置まで水平な支持アーム(25)が一体的に張り出されている。その場合、中空支柱(24)の下端部は水平な支軸(26)を介してベース盤(23)へ、一定角度(κ)(図例では約55度)だけ起伏的な回動自在に枢着されており、その中空支柱(24)を図24の鎖線で示す如く転倒させれば、上記食材収容鍋(T)をその鍋受けフランジ(21)から上方へ抜き出せるようになっている。(23) is a base plate for a hollow column attached and fixed to the upper surface of the installation machine housing (20), and the upper end portion of the hollow column (24) standing upright from the opening upper surface of the food storage pan (T). From the side, a horizontal support arm (25) is integrally projected to a position directly above the food storage pan (T). In that case, the lower end of the hollow column (24) can be undulated and rotated by a certain angle (κ) (about 55 degrees in the example) to the base board (23) via the horizontal support shaft (26). If the hollow support column (24) is turned over as shown by the chain line in FIG. 24, the food storage pan (T) can be extracted upward from the pan receiving flange (21). .

又、(27)は上記支持アーム(25)の張り出し先端部に被着一体化されたカップリングケースであり、その上面にセンター軸回転用駆動モーター(28)が搭載されている。その駆動モーター(28)は回転速度の制御可能な可逆式のDCブラシレスモーターから成る。(29)は上記カップリングケース(27)内の伝動カップリング(30)を介して、駆動モーター(28)と連結されることにより、食材収容鍋(T)の中心部に向かって垂下するセンター軸、(31)はその約上半部を包囲する固定ベアリングケースであり、上記カップリングケース(27)の下面に取り付け一体化されている。Reference numeral (27) denotes a coupling case which is integrally attached to the projecting tip of the support arm (25), and a center shaft rotation drive motor (28) is mounted on the upper surface thereof. The drive motor (28) consists of a reversible DC brushless motor whose rotation speed can be controlled. (29) is connected to the drive motor (28) via the transmission coupling (30) in the coupling case (27), and thereby hangs down toward the center of the food container pan (T). A shaft (31) is a fixed bearing case surrounding the upper half of the shaft, and is attached to and integrated with the lower surface of the coupling case (27).

(32)はその固定ベアリングケース(31)に封入された上下一対のベアリングであり、上記センター軸(29)を回転自在に支持している。(33)は上記カップリングケース(27)と固定ベアリングケース(31)との上下相互間に挟み付け一体化された径大な円形の固定カバーであり、これから連続的に垂下する周縁フランジ(34)の内周面には、インターナルギヤ(35)が刻設されている。Reference numeral (32) denotes a pair of upper and lower bearings enclosed in the fixed bearing case (31), and rotatably supports the center shaft (29). (33) is a large-diameter circular fixed cover that is sandwiched and integrated between the coupling case (27) and the fixed bearing case (31), and a peripheral flange (34) that hangs continuously from this. ) Is engraved with an internal gear (35).

更に、(36)はその固定カバー(33)の周縁フランジ(34)を下方から包囲する径大な椀型の回転ベアリングケースであり、その中心部がキー(37)を介して、上記センター軸(29)と一体回転し得るように嵌合されている。(38)はその回転ベアリングケース(36)の抜け止めナット、(39)は上記センター軸(29)との一定間隔(D)を保つ平行状態として、回転ベアリングケース(36)から食材収容鍋(T)の偏心部に向かって垂下する互いに同じ一対の偏心軸であり、その何れも回転ベアリングケース(36)に封入された上下一対のベアリング(40)によって、その回転ベアリングケース(36)へ回転自在に軸受けされている。Further, (36) is a large-diameter bowl-shaped rotary bearing case that surrounds the peripheral flange (34) of the fixed cover (33) from below, and the center portion of the center cover is inserted through the key (37). (29) is fitted so that it can rotate integrally. (38) is a retaining nut of the rotating bearing case (36), and (39) is in a parallel state maintaining a constant distance (D) with respect to the center shaft (29). The same pair of eccentric shafts depending on the eccentric portion of T), both of which rotate to the rotating bearing case (36) by a pair of upper and lower bearings (40) enclosed in the rotating bearing case (36). It is freely supported.

しかも、上記固定カバー(33)側のインターナルギヤ(35)に内接して、これと噛合回転し得る径小なピニオンギヤ(41)が、その各偏心軸(39)の上端部に差し込み套嵌されており、上記センター軸(29)が図26の矢印方向(F)へ回転駆動されれば、そのセンター軸(29)と一体回転する上記回転ベアリングケース(36)を介して、一対の偏心軸(39)がセンター軸(29)の周囲を同じ方向(F)へゆっくり公転運動すると同時に、そのピニオンギヤ(41)とインターナルギヤ(35)との噛合回転により、上記公転運動との逆方向(R)へ比較的速く自転運動し得るようになっている。In addition, a pinion gear (41) having a small diameter, which is inscribed in the internal gear (35) on the side of the fixed cover (33) and can rotate in mesh therewith, is inserted into the upper end portion of each eccentric shaft (39) and is fitted. If the center shaft (29) is rotationally driven in the direction of the arrow (F) in FIG. 26, a pair of eccentricity is provided via the rotating bearing case (36) that rotates integrally with the center shaft (29). The shaft (39) slowly revolves around the center shaft (29) in the same direction (F), and at the same time, due to the meshing rotation of the pinion gear (41) and the internal gear (35), the direction opposite to the above revolving motion (R) can rotate relatively quickly.

その場合、上記センター軸(29)の駆動モーター(28)は可逆式として、そのセンター軸(29)と一対の偏心軸(39)とは上記矢印方向(F)との逆な互いに同じ方向(R)へ公転運動することも可能であるが、その偏心軸(39)とピニオンギヤ(41)との嵌合面には、各々ワンウエイクラッチ(42)も介挿設置されている。In this case, the drive motor (28) of the center shaft (29) is reversible, and the center shaft (29) and the pair of eccentric shafts (39) are in the same direction opposite to the arrow direction (F) ( Although it is possible to make a revolving motion to R), a one-way clutch (42) is also interposed on the fitting surface between the eccentric shaft (39) and the pinion gear (41).

センター軸(29)が上記矢印方向(F)との逆方向(R)へ回転駆動された時に限っては、そのワンウエイクラッチ(42)の働きによって、ピニオンギヤ(41)への伝動作用が切断され、一対の偏心軸(39)が自転運動を行なえず、自づと停止するようになっているのである。その正・逆回転方向(F)(R)の切り換えは操作パネル上のスイッチ(図示省略)によって行なえる。Only when the center shaft (29) is rotationally driven in the direction (R) opposite to the arrow direction (F), the transmission of the pinion gear (41) is cut off by the action of the one-way clutch (42). The pair of eccentric shafts (39) do not rotate and stop by themselves. The forward / reverse rotation direction (F) (R) can be switched by a switch (not shown) on the operation panel.

そして、例えばカスタードクリームの攪拌や混合を行なう場合、上記攪拌機(M)におけるセンター軸(29)の下端部へ攪拌羽根(A)を連結使用する一方、同じく各偏心軸(39)の下端部へ本発明のホイッパー(B)を連結使用するのである。For example, when stirring or mixing the custard cream, the stirring blade (A) is connected to the lower end portion of the center shaft (29) in the stirrer (M), and also to the lower end portion of each eccentric shaft (39). The whipper (B) of the present invention is connected and used.

各偏心軸(39)の下端部は図25のように、上記ホイッパー(B)における取付支軸(1)の上端部と対応する半割り型のキー溝(43)として切り欠かれており、ここには連結ピン(44)が水平に打ち込み貫通されている。しかも、同じく各偏心軸(39)の下端部には比較的短かい連結スリーブ(45)が、下方から差し込み套嵌されていると共に、これには下向き開放するピン受け入れ長孔(46)が、上下方向への延在状態に切り欠かれている。As shown in FIG. 25, the lower end portion of each eccentric shaft (39) is notched as a half-shaped key groove (43) corresponding to the upper end portion of the mounting support shaft (1) in the whipper (B). Here, a connecting pin (44) is horizontally driven and penetrated. In addition, a relatively short connecting sleeve (45) is inserted into the lower end portion of each eccentric shaft (39) from below, and a pin receiving long hole (46) that opens downward is provided in this case. It is notched so as to extend in the vertical direction.

そのため、その連結スリーブ(45)を作業者が手先により一旦押し上げて、上記偏心軸(39)の下端部から露出した連結ピン(44)へ、上記ホイッパー(B)における取付支軸(1)側の連結ピン受け入れ孔(6)を抜き差し自在に差し込むと同時に、そのキー溝(5)(43)同志を咬み合わせ一本化した後、上記連結スリーブ(45)の押し上げ操作手を放せば良く、そうすれば偏心軸(39)へ脱落不能に連結されたホイッパー(B)が、その偏心軸(39)と一体に回転することとなる。For this reason, the connecting sleeve (45) is pushed up by the operator's hand once, and the connecting pin (44) exposed from the lower end of the eccentric shaft (39) is connected to the mounting support shaft (1) side of the whipper (B). The connecting pin receiving hole (6) is inserted in a freely detachable manner, and at the same time, the key grooves (5) (43) are engaged with each other, and then the connecting sleeve (45) is lifted up. Then, the whipper (B) connected to the eccentric shaft (39) so as not to drop off rotates integrally with the eccentric shaft (39).

他方、攪拌羽根(A)は図27、28に抽出して示す取付支軸(47)と、その下端部へ挟持金具(48)を介して揺動自在に枢着された羽根板(49)とから、全体的な錨型に造形されており、正・逆何れの方向(F)(R)へ回転使用されても、その食材収容鍋(T)の底面弯曲形状と対応する羽根板(49)が、カスタードクリームを掬い上げると共に、食材収容鍋(T)から掻き取って、その焦げ付きや作用洩れを生じないようになっている。しかも、その攪拌羽根(A)を形作る取付支軸(47)の上端部には、キー凸子(50)が水平に打ち込み固定されている。On the other hand, the stirring blade (A) has a mounting support shaft (47) extracted and shown in FIGS. 27 and 28, and a blade plate (49) pivotally attached to the lower end of the stirring blade (A) via a clamp (48). From the above, even if it is shaped into an overall bowl shape and rotated in either the forward or reverse direction (F) (R), the blade plate corresponding to the bottom curved shape of the food container pan (T) ( 49) scoops up the custard cream and scrapes it off from the food-containing pan (T) so that it does not burn or leak. Moreover, the key protrusion (50) is driven and fixed horizontally at the upper end of the mounting support shaft (47) that forms the stirring blade (A).

これに対して、上記センター軸(29)の下端部には図25のような比較的長い連結スリーブ(51)が差し込み套嵌され、且つ水平な貫通ピン(52)を介して抜け止め状態に保たれている。(53)はその連結スリーブ(51)の上下方向に沿って開口延在するピン受け入れ長孔、(54)は同じく連結スリーブ(51)内の段部よりも上半側に封入された押し下げコイルバネであり、その連結スリーブ(51)を常時押し下げ弾圧付勢している。又、上記連結スリーブ(51)の下端部には倒立L字型のキー溝(55)が切り欠かれている。On the other hand, a relatively long connecting sleeve (51) as shown in FIG. 25 is inserted into the lower end portion of the center shaft (29), and the center shaft (29) is prevented from being detached through a horizontal through pin (52). It is kept. (53) is a pin receiving elongated hole that extends in the vertical direction of the connecting sleeve (51), and (54) is a push-down coil spring that is sealed on the upper half side of the step portion in the connecting sleeve (51). The connecting sleeve (51) is always pushed down and urged. Further, an inverted L-shaped key groove (55) is cut out at the lower end of the connecting sleeve (51).

そのため、上記攪拌羽根(A)の取付支軸(47)を連結スリーブ(51)へ下方から抜き差し自在に差し込み、その上端部のキー凸子(50)を連結スリーブ(51)のキー溝(55)へ係止させることにより、攪拌羽根(A)を上記センター軸(29)へ連結することができ、その攪拌羽根(A)はセンター軸(29)と一体に回転する。Therefore, the mounting support shaft (47) of the stirring blade (A) is detachably inserted into the connecting sleeve (51) from below, and the key protrusion (50) at the upper end thereof is inserted into the key groove (55) of the connecting sleeve (51). The stirring blade (A) can be coupled to the center shaft (29), and the stirring blade (A) rotates integrally with the center shaft (29).

尚、このような攪拌羽根(A)をセンター軸(29)側の連結スリーブ(51)から、又ホイッパー(B)を各偏心軸(39)側の連結スリーブ(45)から、何れも上記取り付け順序との逆に作業して、工具類の必要なく抜き出し分解できることは言うまでもない。The agitating blade (A) is attached from the connecting sleeve (51) on the center shaft (29) side, and the whipper (B) is attached from the connecting sleeve (45) on the eccentric shaft (39) side. It goes without saying that it can be extracted and disassembled without the need for tools by working in the reverse order.

カスタードクリームの原料を上記食材収容鍋(T)に収容させて、その下方から上記電磁誘導加熱器(22)などの加熱源により加熱する一方、上記攪拌羽根(A)のセンター軸(29)を駆動モーター(28)により、図26の矢印方向(F)へ回転させれば、そのセンター軸(29)に連結使用中の攪拌羽根(A)と、一対の偏心軸(39)に各々連結使用中のホイッパー(B)とが公転運動すると同時に、これとの逆方向(R)へ両ホイッパー(B)が例えば約250r.p.mとして速く自転運動するため、カスタードクリームの卵白や薄力粉が牛乳や砂糖と馴染み難いことに起因して、独自に固まり生成しやすい所謂ダマを、上記ホイッパー(B)の激しく泡立てる如き攪拌作用により、効率良く確実に解消することができる。The ingredients for the custard cream are stored in the food storage pan (T) and heated from below by a heating source such as the electromagnetic induction heater (22), while the center shaft (29) of the stirring blade (A) is If it is rotated in the direction of the arrow (F) in FIG. 26 by the drive motor (28), the stirring blade (A) used for connection to the center shaft (29) and the pair of eccentric shafts (39) are used for connection. At the same time as the inner whipper (B) revolves, both whippers (B) move in the opposite direction (R) to about 250 r. p. Because of the fast rotation as m, the custard cream egg white and the weak flour are difficult to become familiar with milk and sugar. It can be solved efficiently and reliably.

カスタードクリームの加熱が進行して、その粘度が高くなる程、上記センター軸(29)の回転速度を低下させるのであり、やがて食材収容鍋(T)に焦げ付きやすく粘結固形化した終期には、上記センター軸回転用駆動モーター(28)の回転方向を切り換えて、そのセンター軸(29)に連結使用中の攪拌羽根(A)を逆方向(R)へゆっくり回転させる一方、これと同じ方向(R)へ公転運動する両ホイッパー(B)の自転運動を停止状態に保つことにより、上記激しく泡立てる如き攪拌作用に基く空気の混入や、粘度が高くなり過ぎることを防ぎ、風味に優れた高品質のカスタードクリームを得られるのである。As the heating of the custard cream proceeds and the viscosity increases, the rotational speed of the center shaft (29) decreases, and eventually the food containing pan (T) is easily burnt and solidified in the final stage. The rotation direction of the center shaft rotation drive motor (28) is switched, and the stirring blade (A) connected to the center shaft (29) is slowly rotated in the reverse direction (R) while the same direction ( By maintaining the rotation of both whippers (B) revolving to R) in a stopped state, air mixing based on the stirring action such as the above-mentioned violent foaming and the viscosity becoming too high can be prevented, and high quality with excellent flavor Of custard cream.

但し、上記電磁誘導加熱器(22)などの加熱源を使用せず、又はその攪拌機(M)に対する加熱源自体の設置を省略し、上記ワンウエイクラッチ(42)の設置も省略すると共に、上記センター軸(29)側の連結スリーブ(51)から攪拌羽根(A)を抜き出して、本発明のホイッパー(B)だけを上記偏心軸(39)の一対へ連結使用し、その正・逆方向(F)(R)への公転運動と自転運動によって、上記カスタードクリーム以外の生クリームやバタークリーム、ケーキ生地などの泡立て(ホイッピング)作用や混合(ミキシング)作用などに供することも可能であり、このような使用状態では上記センター軸(29)の速度を例えば約300r.p.mとして、終始比較的高速に回転させることにより、食材へ多量の空気を抱き込ませることが好ましい。However, a heating source such as the electromagnetic induction heater (22) is not used, or the installation of the heating source for the stirrer (M) is omitted, the installation of the one-way clutch (42) is also omitted, and the center The stirring blade (A) is extracted from the connecting sleeve (51) on the shaft (29) side, and only the whipper (B) of the present invention is connected to the pair of the eccentric shafts (39). ) By the revolving motion and rotation motion to (R), it is also possible to use it for whipping or mixing (mixing) action of fresh cream, butter cream, cake dough, etc. other than the custard cream In such a use state, the speed of the center shaft (29) is set to about 300 r. p. As m, it is preferable to embed a large amount of air into the food by rotating it at a relatively high speed from start to finish.

本発明に係る食材用ホイッパーの第1実施形態を示す正面図である。It is a front view which shows 1st Embodiment of the whip for foodstuffs which concerns on this invention. 図1の2−2線断面図である。FIG. 2 is a sectional view taken along line 2-2 of FIG. 図1の平面図である。It is a top view of FIG. 図3の底面図である。FIG. 4 is a bottom view of FIG. 3. 図2の5−5線断面図である。FIG. 5 is a sectional view taken along line 5-5 of FIG. ワイヤー受けボスを抽出して示す正面図である。It is a front view which extracts and shows a wire receiving boss. 図6の平面図である。FIG. 7 is a plan view of FIG. 6. 図7の底面図である。FIG. 8 is a bottom view of FIG. 7. 図6の9−9線断面図である。FIG. 9 is a cross-sectional view taken along line 9-9 in FIG. 6. ステンレスワイヤーを抽出して示す正面図である。It is a front view which extracts and shows a stainless steel wire. 図10の平面図である。It is a top view of FIG. ワイヤー固定用キャップを抽出して示す平面図である。It is a top view which extracts and shows the cap for wire fixation. 図12の13−13線断面図である。FIG. 13 is a sectional view taken along line 13-13 of FIG. 取付支軸の変形実施形態を示す正面図である。It is a front view which shows the deformation | transformation embodiment of an attachment spindle. 図14の側面図である。It is a side view of FIG. 取付支軸の別な変形実施形態を示す正面図である。It is a front view which shows another deformation | transformation embodiment of an attachment spindle. ステンレスワイヤーの変形実施形態を示す正面図である。It is a front view which shows the deformation | transformation embodiment of a stainless steel wire. 図17の使用状態を例示する正面図である。It is a front view which illustrates the use condition of FIG. ステンレスワイヤーの別な変形実施形態を示す正面図である。It is a front view which shows another deformation | transformation embodiment of a stainless steel wire. 図19の平面図である。FIG. 20 is a plan view of FIG. 19. 図19の使用状態を例示する正面図である。It is a front view which illustrates the use condition of FIG. 本発明のホイッパーを取り付けた攪拌機の正面図である。It is a front view of the stirrer which attached the whipper of this invention. 図22の側面図である。FIG. 23 is a side view of FIG. 22. 加熱器の取付部分を拡大して示す側断面図である。It is a sectional side view which expands and shows the attachment part of a heater. 図23の要部拡大断面図であり、ホイッパーの取付状態を示している。It is a principal part expanded sectional view of FIG. 23, and has shown the attachment state of the whipper. 食材収容鍋に対する攪拌羽根とホイッパーとの回転方向を示す平面図である。It is a top view which shows the rotation direction of the stirring blade and whipper with respect to a foodstuff accommodation pan. 攪拌羽根を抽出して示す正面図である。It is a front view which extracts and shows a stirring blade. 図27の28−28線に沿う拡大断面図である。FIG. 28 is an enlarged sectional view taken along line 28-28 in FIG. 27.

符号の説明Explanation of symbols

(1)・取付支軸
(2a)(2b)(2c)(2d)(2e)(2f)・ステンレスワイヤー
(3)・ワイヤー受けボス
(4)・ワイヤー固定用キャップ
(5)・キー溝
(6)・連結ピン受け入れ孔
(7)・上筒部
(8)・下筒部
(9)・貫通ピン
(10)・爪受け入れ孔
(11)・首筋逃し入れ凹溝
(12)・首筋
(13)・鉤爪
(14)・胴
(15)・肩
(16)・円筒部
(17)・上面部
(18)・差込み口
(19)・キー溝
(20)・据付け機筐
(22)・電磁誘導加熱器
(23)・ベース盤
(24)・中空支柱
(25)・支持アーム
(28)・駆動モーター
(29)・センター軸
(30)・伝動カップリング
(31)・固定ベアリングケース
(33)・固定カバー
(34)・周縁フランジ
(35)・インターナルギヤ
(39)・偏心軸
(41)・ピニオンギヤ
(45)・連結スリーブ
(47)・取付支軸
(48)・挟持金具
(49)・羽根板
(51)・連結スリーブ
(54)・押し下げコイルバネ
(A)・攪拌羽根
(B)・ホイッパー
(M)・攪拌機
(O)・ホイッパーの回転中心
(P)・頂点
(T)・食材収容鍋
(1) ・ Mounting support shaft (2a) (2b) (2c) (2d) (2e) (2f) ・ Stainless steel wire (3) ・ Wire receiving boss (4) ・ Wire fixing cap (5) ・ Keyway ( 6) Connection pin receiving hole (7) Upper cylinder part (8) Lower cylinder part (9) Penetrating pin (10) Claw receiving hole (11) Neck reentrant groove (12) ), Claw (14), trunk (15), shoulder (16), cylindrical part (17), top surface part (18), insertion slot (19), keyway (20), installation machine case (22), electromagnetic induction Heater (23), Base panel (24), Hollow support (25), Support arm (28), Drive motor (29), Center shaft (30), Power transmission coupling (31), Fixed bearing case (33), Fixed cover (34), peripheral flange (35), inter Gear (39), eccentric shaft (41), pinion gear (45), connecting sleeve (47), mounting support shaft (48), clamping bracket (49), vane plate (51), connecting sleeve (54), push-down coil spring ( A) ・ Stirring blade (B) ・ Whipper (M) ・ Stirrer (O) ・ Rotation center of whipper (P) ・ Vertex (T) ・ Food containing pan

Claims (3)

攪拌機(M)による回転駆動側へ連結使用される取付支軸(1)と、その取付支軸(1)の下部に組立一体化されたワイヤー受けボス(3)と、そのワイヤー受けボス(3)へ上方から抜き差し自在に差し込み套嵌されるワイヤー固定用キャップ(4)と、一定長さの中間部を先細り円錐状の頂点(P)として、その頂点(P)から向かい合う対称なほぼ弾丸型やナス型などの平面輪郭形状に折り曲げられたステンレスワイヤー(2a)(2b)(2c)(2d)(2e)(2f)の複数本とを備え、
そのステンレスワイヤー(2a)〜(2f)の切り離し両端基部を上記ワイヤー受けボス(3)へ全体的な放射対称分布型として、且つ着脱自在に組み付け立体化した上、上記キャップ(4)により包囲状態に拘束固定する食材用ホイッパーであって、
上記ステンレスワイヤー(2a)〜(2f)を偶数本として、その各個の切り離し両端基部を一対の垂直な首筋(12)とこれから狭く張り出す水平な鉤爪(13)との向かい合う倒立L字型に折り曲げ、しかもその一対の鉤爪(13)だけを残余の線材折り曲げ平面(Y−Y)から同じ一方向へ一定角度(γ)だけ捻る如く、平面視のほぼハ字型に曲げ起す一方、
上記ステンレスワイヤー(2a)〜(2f)の2倍に相当する偶数個の水平な爪受け入れ孔(10)と垂直な首筋逃し入れ凹溝(11)とを合致連通する倒立L字型として、ワイヤー受けボス(3)へ上記鉤爪(13)の曲げ起し角度(γ)よりも大きな交叉角度(β)を保つ全体的な放射対称分布型に配列設置して、
上記ステンレスワイヤー(2a)〜(2f)の両鉤爪(13)をそのワイヤー受けボス(3)の爪受け入れ孔(10)へ各々抜き差し自在に差し込み係止させると共に、同じくステンレスワイヤー(2a)〜(2f)の両首筋(12)をそのワイヤー受けボス(3)の首筋逃し入れ凹溝(11)へ各々当てがいフィットさせることにより、上記ステンレスワイヤー(2a)〜(2f)の隣り合う一対づつを2本1組の単位として、互いに接近するほぼ平行状態に保ったことを特徴とする食材用ホイッパー。
A mounting support shaft (1) used to be connected to the rotational drive side of the agitator (M), a wire receiving boss (3) assembled and integrated under the mounting support shaft (1), and a wire receiving boss (3 ) A wire fixing cap (4) which is inserted and detachable from above, and an intermediate portion of a certain length as a tapered conical apex (P), and a symmetrical, almost bullet-shaped shape facing the apex (P). And a plurality of stainless wires (2a) (2b) (2c) (2d) (2e) (2f) bent into a planar contour shape such as an eggplant type,
The stainless steel wires (2a) to (2f) are separated from the bases at both ends thereof into the wire receiving boss (3) as an overall radial symmetrical distribution type and detachably assembled into a three-dimensional shape and surrounded by the cap (4). A whip for ingredients that is restrained and fixed to
The stainless steel wires (2a) to (2f) are even-numbered, and the bases of the individual cut ends are folded into an inverted L-shape facing a pair of vertical necks (12) and a horizontal claw (13) projecting narrowly therefrom. In addition, while bending only the pair of claws (13) from the remaining wire bending plane (Y-Y) in the same direction by a certain angle (γ),
As an inverted L-shaped wire that matches and communicates an even number of horizontal nail receiving holes (10) corresponding to twice the stainless steel wires (2a) to (2f) and the vertical neck recess (11). The receiving boss (3) is arranged and installed in an overall radial symmetrical distribution type that maintains a crossing angle (β) larger than the bending angle (γ) of the claw (13).
The both claws (13) of the stainless steel wires (2a) to (2f) are removably inserted and locked into the claw receiving holes (10) of the wire receiving boss (3), and the stainless steel wires (2a) to (2) 2f) by fitting both neck muscles (12) to the neck groove recesses (11) of the wire receiving bosses (3), respectively, so that adjacent pairs of the stainless steel wires (2a) to (2f) are paired. A food whip characterized by being kept in a substantially parallel state approaching each other as a unit of two .
ステンレスワイヤー(2a)〜(2f)を悉く同じ長さと線径の合計6本として、その各個の切り離し両端基部に向かい合う一対の鉤爪(13)を、約15度の一定角度(γ)だけ曲げ起す一方、
ワイヤー受けボス(3)の爪受け入れ孔(10)を合計12個として、その隣り合う約30度の均等な交叉角度(β)を保つ全体的な放射対称分布型に配列設置し、
上記ステンレスワイヤー(2a)〜(2f)の先端部が回転中心(O)を囲むほぼ正六角形の絡らみ合い交叉状態となるように、その各個の両鉤爪(13)を上記ワイヤー受けボス(3)の爪受け入れ孔(10)へ差し込み係止させたとことを特徴とする請求項記載の食材用ホイッパー。
Bending the pair of claws (13) facing the bases at both ends of each piece as a total of six wires having the same length and wire diameter for winding the stainless steel wires (2a) to (2f) by a fixed angle (γ) of about 15 degrees. on the other hand,
A total of 12 claw receiving holes (10) of the wire receiving boss (3) are arranged and installed in an overall radial symmetrical distribution type that maintains an equal crossing angle (β) of about 30 degrees adjacent to each other,
Each of the claws (13) is connected to the wire receiving boss (13) so that the end portions of the stainless steel wires (2a) to (2f) are in a substantially regular hexagonal entanglement crossing state surrounding the rotation center (O). 2. The food whipper according to claim 1 , wherein the food whipper is inserted into and locked in the claw receiving hole (3) of 3) .
ワイヤー受けボス(3)を径小な上筒部(7)と径大な下筒部(8)とから成る段付き円筒型に造形して、その上筒部(7)を取付支軸(1)へ水平な貫通ピン(9)により予じめ組立一体化する一方、
ワイヤー固定用キャップ(4)を上記ワイヤー受けボス(3)へ覆いかぶさる断面倒立U字型として、そのフラットな上面部(17)にワイヤー受けボス(3)への円形な差込み口(18)と向かい合う一対の貫通ピン逃し入れ用キー溝(19)とを切り欠いて、
その一対のキー溝(19)を上記貫通ピン(9)の張り出し両端部と合致させることにより、上記キャップ(4)をワイヤー受けボス(3)へ上方から差し込み套嵌できるように定めたことを特徴とする請求項記載の食材用ホイッパー。
The wire receiving boss (3) is formed into a stepped cylindrical shape composed of a small diameter upper tube portion (7) and a large diameter lower tube portion (8), and the upper tube portion (7) is attached to a mounting spindle ( 1) While pre-assembled and integrated with the horizontal through pin (9),
As an inverted U-shaped cross-section covering the wire fixing cap (4) over the wire receiving boss (3), a circular insertion port (18) to the wire receiving boss (3) is formed on the flat upper surface portion (17). Cut out a pair of through-pin escape key grooves (19) facing each other,
By defining the pair of key grooves (19) with the projecting both ends of the penetrating pin (9), the cap (4) can be inserted into the wire receiving boss (3) from above and fixed. whipper for food according to claim 1, wherein.
JP2005231713A 2005-08-10 2005-08-10 Food whippers Expired - Fee Related JP4020923B2 (en)

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JP4881967B2 (en) * 2009-02-18 2012-02-22 梶原工業株式会社 Stir cooking equipment
EP2272412A1 (en) * 2009-07-07 2011-01-12 Koninklijke Philips Electronics N.V. Mixing device
JP5722653B2 (en) * 2011-02-10 2015-05-27 梶原工業株式会社 Stirring blade and stirring device
JP5873857B2 (en) * 2013-08-21 2016-03-01 中井機械工業株式会社 Vertical biaxial food mixer
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