JPH11281220A - Refrigerating/freezing showcase - Google Patents

Refrigerating/freezing showcase

Info

Publication number
JPH11281220A
JPH11281220A JP8185698A JP8185698A JPH11281220A JP H11281220 A JPH11281220 A JP H11281220A JP 8185698 A JP8185698 A JP 8185698A JP 8185698 A JP8185698 A JP 8185698A JP H11281220 A JPH11281220 A JP H11281220A
Authority
JP
Japan
Prior art keywords
discharge port
cooling air
outlet
glass
side glass
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
JP8185698A
Other languages
Japanese (ja)
Other versions
JP3389494B2 (en
Inventor
Hirokazu Akabane
大計 赤羽根
Kazuyuki Yamamoto
和之 山本
Masatane Watanabe
正胤 渡辺
Isato Zushida
勇人 図子田
Kunihiro Maniwa
邦弘 間庭
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Sanden Corp
Original Assignee
Sanden Corp
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Sanden Corp filed Critical Sanden Corp
Priority to JP08185698A priority Critical patent/JP3389494B2/en
Publication of JPH11281220A publication Critical patent/JPH11281220A/en
Application granted granted Critical
Publication of JP3389494B2 publication Critical patent/JP3389494B2/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

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  • Devices That Are Associated With Refrigeration Equipment (AREA)

Abstract

PROBLEM TO BE SOLVED: To prevent dew formation due to cooling and dripping thereof by suppressing cooling of a glass plate on the outlet side when cooling air is fed through the outlet into a refrigerating/freezing chamber. SOLUTION: Since an air heat insulation layer AL is present between an outlet 31a and the lower part of a side glass 5 and the outlet 31a is separated from the side glass 5 by the breadth dimension of the air heat insulation layer AL, the cooling air being blown to the inner face at the lower part of the side glass 5 can be reduced when it is fed through the outlet 31a into a refrigerating/freezing chamber 8 and transmission of cold heat from the cooling air to the side glass 5 can be retarded. Furthermore, cooling air flow from the outlet 31a toward the inner surface of the side glass 5 can be blocked by a part (baffle part) projecting above the outlet 31a at a vertical plate part 31b, and thereby the cooling air being b].own to the inner face at the lower part of the glass plate 5 can be reduced effectively when it is delivered from the outlet 31a.

Description

【発明の詳細な説明】DETAILED DESCRIPTION OF THE INVENTION

【0001】[0001]

【発明の属する技術分野】本発明は、冷蔵商品や冷凍商
品を収容する冷蔵冷凍ショーケースに関するものであ
る。
BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to a refrigerated freezer showcase for storing refrigerated goods and frozen goods.

【0002】[0002]

【従来の技術】図1には冷蔵冷凍ショーケースの正面図
を、図2には図1のX−X線拡大断面図を、図3には図
2のY−Y線拡大断面図をそれぞれ示してある。
2. Description of the Related Art FIG. 1 is a front view of a refrigerated freezer showcase, FIG. 2 is an enlarged sectional view taken along line XX of FIG. 1, and FIG. 3 is an enlarged sectional view taken along line YY of FIG. Is shown.

【0003】図1乃至図3において、符号1は箱型の機
械ケース、符号2は機械ケース1の上端に設けられた仕
切枠、符号3は仕切枠2の上面4隅に立設された支柱、
符号4は支柱3の上端に設けられた天板、符号5は隣り
合う2本の支柱3間の開口と該開口と対向する他の開口
をそれぞれ塞ぐ2重ガラス構造の側面ガラス、符号6は
残りの1つの開口を開閉自在に覆う前扉、符号7は残り
の1つの開口を開閉自在に覆う後扉、符号8は2つの側
面ガラス5と前扉6と後扉7で囲まれた空間から成る冷
蔵冷凍室、符号9は冷蔵冷凍室8内を上下に区画する棚
板、符号10は冷蔵冷凍室8の底板、符号11は機械ケ
ース1の底面4隅に設けられた脚である。
In FIGS. 1 to 3, reference numeral 1 denotes a box-shaped machine case, reference numeral 2 denotes a partition frame provided at the upper end of the machine case 1, and reference numeral 3 denotes a column standing at four corners of the upper surface of the partition frame 2. ,
Reference numeral 4 denotes a top plate provided at the upper end of the column 3, reference numeral 5 denotes a side glass having a double glass structure that closes an opening between two adjacent columns 3 and another opening facing the opening, and reference numeral 6 denotes a side glass. A front door that covers the remaining one opening so as to be openable and closable, a reference numeral 7 is a rear door that covers the remaining one opening so as to be openable and closable, and a reference numeral 8 is a space surrounded by the two side glasses 5, the front door 6, and the rear door 7. Reference numeral 9 denotes a shelf plate for vertically dividing the inside of the refrigeration freezer 8, reference numeral 10 denotes a bottom plate of the refrigeration freezer 8, and reference numeral 11 denotes legs provided at four corners on the bottom surface of the machine case 1.

【0004】前記機械ケース1はその内面を断熱材AM
で覆われており、その内部には、冷凍回路を構成する電
動圧縮機12と凝縮器13と蒸発器14と図示省略の膨
張手段が配置されている。また、凝縮器13の上側には
これを空冷するためのファン15が対向配置され、蒸発
器14の側方には冷却空気を冷蔵冷凍室8内に送り込む
ためのファン16が配置されている。これらファン1
5,16は共通のモータ17によって回動する。さら
に、蒸発器14の下側には、デフロスト後の水等を下方
に導くための排水パイプ18が配置されている。さらに
また、機械ケース1の底面には、排水パイプ18からの
排水を受容するドレンパン19が着脱自在に設けられて
いる。
The mechanical case 1 has an inner surface made of a heat insulating material AM.
The electric compressor 12, the condenser 13, the evaporator 14, and expansion means (not shown) which constitute a refrigeration circuit are arranged in the inside. A fan 15 for air-cooling the condenser 13 is arranged above the condenser 13, and a fan 16 for sending cooling air into the refrigeration compartment 8 is arranged beside the evaporator 14. These fans 1
5 and 16 are rotated by a common motor 17. Further, a drain pipe 18 for guiding the defrosted water and the like downward is disposed below the evaporator 14. Further, a drain pan 19 for receiving drainage from a drain pipe 18 is detachably provided on the bottom surface of the machine case 1.

【0005】前記仕切枠2は、図3に示すように、機械
ケース1の内側(機械室)に入り込む湾曲部分2aと、
機械ケース1の外側に露出する張り出し部分2bとを備
えている。前記側面ガラス5の下面は、湾曲部分2aと
張り出し部分2bとの中間位置に支持されている。ま
た、後述の吐出口21は湾曲部分2aのほぼ上側に位置
している。
[0005] As shown in FIG. 3, the partition frame 2 has a curved portion 2 a entering the inside (machine room) of the machine case 1,
And a projecting portion 2b exposed to the outside of the machine case 1. The lower surface of the side glass 5 is supported at an intermediate position between the curved portion 2a and the overhang portion 2b. Further, a discharge port 21 described later is located substantially above the curved portion 2a.

【0006】前記底板10は仕切枠2上に配置された状
態で、冷蔵冷凍室8の底面を形成する。この底板10の
両側部には、吸入口20と吐出口21がそれぞれ列状に
設けられており、図2から分かるように、吸入口20は
一方の側面ガラス5と平行で、吐出口21は他方の側面
ガラス5と平行な配置形態を有する。ファン16の回動
により、冷蔵冷凍室8内の空気は吸入口20を通じて蒸
発器14に導かれ、蒸発器14で冷却された後の空気は
吐出口21を通じて冷蔵冷凍室8内に送り込まれる(図
3中の白抜き矢印参照)。ちなみに、蒸発器14の冷却
温度は、冷蔵冷凍室8内に収容される商品の保冷温度に
応じて適宜設定される。
[0006] The bottom plate 10 forms the bottom surface of the refrigeration compartment 8 in a state of being placed on the partition frame 2. On both sides of the bottom plate 10, a suction port 20 and a discharge port 21 are provided in a row, respectively. As can be seen from FIG. 2, the suction port 20 is parallel to one side glass 5, and the discharge port 21 is It has an arrangement parallel to the other side glass 5. By the rotation of the fan 16, the air in the refrigeration compartment 8 is guided to the evaporator 14 through the suction port 20, and the air cooled by the evaporator 14 is sent into the refrigeration compartment 8 through the discharge port 21 ( (See the white arrow in FIG. 3). Incidentally, the cooling temperature of the evaporator 14 is appropriately set according to the cooling temperature of the product stored in the refrigerator compartment 8.

【0007】前記の前扉6と後扉7のそれぞれは、矩形
状の枠6a,7aと、該枠6a,7aの内側に配置され
た2重ガラス構造のガラス板6b,7bと、枠一側部の
上下位置に配置された扉軸6c,7cと、把手6d,7
d(符号7dは図中省略)と、枠6a,7aに沿って配
置されたパッキン6e,7eとを備えている。この前扉
6と後扉7のそれぞれは、上側の扉軸6c,7cを天板
4側に、且つ下側の扉軸6c,7cを仕切枠2側に回動
自在に支持されており、扉一側部を中心とした回動によ
って冷蔵冷凍室8の前面開口と後面開口のそれぞれを開
閉し、閉鎖状態には前面開口と後面開口をそれぞれを気
密状態で覆う。
Each of the front door 6 and the rear door 7 has a rectangular frame 6a, a double-glass structure glass plate 6b, 7b disposed inside the frame 6a, 7a. Door shafts 6c and 7c arranged at the upper and lower positions on the side, and handles 6d and 7
d (symbol 7d is omitted in the figure), and packings 6e, 7e arranged along the frames 6a, 7a. Each of the front door 6 and the rear door 7 is rotatably supported with the upper door shafts 6c and 7c on the top plate 4 side and the lower door shafts 6c and 7c on the partition frame 2 side. The front opening and the rear opening of the refrigeration freezer 8 are opened and closed by rotation about one side of the door, and the front opening and the rear opening are airtightly covered in the closed state.

【0008】[0008]

【発明が解決しようとする課題】ところで、前述の冷蔵
冷凍ショーケースは、底板10の吐出口21が側面ガラ
ス5の下部に近接し、しかも側面ガラス5の下面を支持
する仕切枠2の一部(湾曲部分2a)が直接冷却空気に
触れる構造を有するため、蒸発器14で冷却された空気
が吐出口21を通じて冷蔵冷凍室8内に送り込まれると
きに、仕切枠2と底板10からの伝熱や吐出口21から
吐出した冷却空気の吹き付けによって該側面ガラス5の
下部が激しく冷却されてしまい、該冷却によって、側面
ガラス5の下部外面に結露CSが発生してこれが下方に
流れ落ち、機械ケース1の外面や床面等を汚してしまう
不具合がある。
In the refrigerated freezer showcase described above, the discharge port 21 of the bottom plate 10 is close to the lower portion of the side glass 5 and a part of the partition frame 2 supporting the lower surface of the side glass 5. Since the (curved portion 2 a) has a structure that directly contacts the cooling air, when the air cooled by the evaporator 14 is sent into the refrigerator compartment 8 through the discharge port 21, the heat transfer from the partition frame 2 and the bottom plate 10 is performed. The lower portion of the side glass 5 is violently cooled by blowing the cooling air discharged from the discharge port 21 and the cooling causes dew condensation CS to occur on the lower outer surface of the side glass 5, which flows downward, and the mechanical case 1 There is a problem that the outer surface and the floor surface are stained.

【0009】本発明は前記事情に鑑みて創作されたもの
で、その目的とするところは、冷却空気が吐出口を通じ
て冷蔵冷凍室内に送り込まれるときに、吐出口側のガラ
ス板が冷却されることを抑制し、該冷却を原因とした結
露発生とその流れ落ちを防止できる冷蔵冷凍ショーケー
スを提供することにある。
The present invention has been made in view of the above circumstances, and an object of the present invention is to cool a glass plate on a discharge port side when cooling air is sent into a refrigeration compartment through a discharge port. It is an object of the present invention to provide a refrigerated freezer showcase which can suppress the occurrence of dew condensation due to the cooling and prevent the dew condensation from flowing down.

【0010】[0010]

【課題を解決するための手段】前記目的を達成するた
め、本発明は、ガラス板によって囲まれた冷蔵冷凍室の
下面一側に吐出口を有し、該吐出口から冷蔵冷凍室内に
冷却空気を送り込むようにした冷蔵冷凍ショーケースに
おいて、前記吐出口をガラス板から離れた位置に形成す
ると共に、該吐出口のガラス板側に、吐出口からガラス
板内面に向かう冷却空気の流れを遮る邪魔板を設けた、
ことをその主たる特徴とする。
In order to achieve the above-mentioned object, the present invention has a discharge port on one side of a lower surface of a refrigerated freezer surrounded by a glass plate, and cooling air is supplied from the discharge port to the refrigerated freezer. In the refrigerated freezer showcase, the discharge port is formed at a position distant from the glass plate, and a flow of cooling air from the discharge port toward the inner surface of the glass plate is obstructed on the glass plate side of the discharge port. Provided a board,
That is its main feature.

【0011】本発明に係る冷蔵冷凍ショーケースによれ
ば、吐出口をガラス板から離れた位置に形成すると共
に、該吐出口のガラス板側に、吐出口からガラス板内面
に向かう冷却空気の流れを遮る邪魔板を設けてあるの
で、冷却空気が吐出口を通じて冷蔵冷凍室内に送り込ま
れるときに、該冷却空気の吹き付けや伝熱によってガラ
ス板が冷却されることを抑制することができる。
According to the refrigerated freezer showcase of the present invention, the discharge port is formed at a position distant from the glass plate, and the flow of cooling air from the discharge port toward the inner surface of the glass plate is formed on the glass plate side of the discharge port. When the cooling air is sent into the refrigerator compartment through the discharge port, it is possible to suppress the cooling of the glass plate by the blowing of the cooling air and the heat transfer.

【0012】[0012]

【発明の実施の形態】図4には、本発明の一実施形態に
係る図3に対応した冷蔵冷凍ショーケースの部分断面図
を示してある。ちなみに、本実施形態の冷蔵冷凍ショー
ケースにおける全体構成は、後に詳述する底板31の構
成及びその配置構造を除き、図1乃至図3に示した冷蔵
冷凍ショーケースと同じであるため、同一構成部分の説
明を省略すると共に後の説明には図1乃至図3に示した
符号を引用する。
FIG. 4 is a partial sectional view of a refrigerated freezer showcase corresponding to FIG. 3 according to an embodiment of the present invention. Incidentally, the entire configuration of the refrigerated freezer showcase of the present embodiment is the same as that of the refrigerated freezer showcase shown in FIGS. 1 to 3 except for the configuration of the bottom plate 31 and the arrangement structure thereof, which will be described in detail later. The description of the portions will be omitted, and reference numerals shown in FIGS. 1 to 3 will be referred to in the following description.

【0013】図4において、符号1は機械ケース、符号
AMは断熱材、符号5は側面ガラス、符号31は底板で
ある。
In FIG. 4, reference numeral 1 denotes a mechanical case, reference numeral AM denotes a heat insulating material, reference numeral 5 denotes a side glass, and reference numeral 31 denotes a bottom plate.

【0014】前記底板31は、図1乃至図3に示した冷
蔵冷凍ショーケースにおける仕切枠2を兼用しており、
機械ケース1の上端に配置された状態で冷蔵冷凍室8の
底面を形成すると共に、側面ガラス5と支柱3と前・後
扉6,7の下側扉軸6c,7cを支持する。
The bottom plate 31 also serves as the partition frame 2 in the refrigerated freezer showcase shown in FIGS.
A bottom surface of the refrigerator compartment 8 is formed in a state where the refrigerator compartment 8 is arranged at the upper end of the machine case 1, and supports the side glass 5, the support 3, and the lower door shafts 6 c, 7 c of the front and rear doors 6, 7.

【0015】また、底板31の両側部には、吸入口(図
示省略)と吐出口31aがそれぞれ列状に設けられてお
り、吸入口は一方の側面ガラス5と平行で、吐出口31
aは他方の側面ガラス5と平行な配置形態を有する。
On both sides of the bottom plate 31, a suction port (not shown) and a discharge port 31a are provided in a row, respectively, and the suction port is parallel to one side glass 5 and the discharge port 31a.
a has an arrangement form parallel to the other side glass 5.

【0016】また、底板31の吐出口31aの外壁は垂
直板部分31bによって構成されており、該垂直板部分
31bはその下部を断熱材AMの凹部AM1に挿入され
ている。この垂直板部分31bの上部は吐出口31aよ
りも上方に突出しており、この突出部分が、吐出口31
aから側面ガラス5の内面に向かう冷却空気の流れを遮
る邪魔板を構成している。
The outer wall of the discharge port 31a of the bottom plate 31 is formed by a vertical plate portion 31b, and the lower portion of the vertical plate portion 31b is inserted into the concave portion AM1 of the heat insulating material AM. The upper portion of the vertical plate portion 31b protrudes above the discharge port 31a.
This constitutes a baffle plate that blocks the flow of cooling air from a to the inner surface of the side glass 5.

【0017】さらに、前記垂直板部分31bの外面に
は、外面途中から水平に延び、且つ水平端から垂直に下
方に延びる形状を備えたL字板部分31cが設けられて
いる。このL字板部分31cの下縁は断熱材AMの上面
に当接しており、これにより該L字板部分31cの内側
には空気断熱層ALが形成されている。
Further, on the outer surface of the vertical plate portion 31b, there is provided an L-shaped plate portion 31c having a shape extending horizontally from the middle of the outer surface and extending vertically downward from the horizontal end. The lower edge of the L-shaped plate portion 31c is in contact with the upper surface of the heat insulating material AM, whereby an air heat insulating layer AL is formed inside the L-shaped plate portion 31c.

【0018】さらにまた、前記L字板部分31cの外面
には、外面途中から水平に延び、且つ水平端から垂直に
上下に延びる形状を備えたT字板部分31dが設けられ
ている。このT字板部分31dとL字板部分31cとの
間に形成される凹部には側面ガラス5の下端部がパッキ
ンPCを介して挿入され、該凹部によって側面ガラス5
の下面が支持されている。
Further, on the outer surface of the L-shaped plate portion 31c, there is provided a T-shaped plate portion 31d extending horizontally from the middle of the outer surface and vertically extending vertically from the horizontal end. The lower end of the side glass 5 is inserted into the concave portion formed between the T-shaped plate portion 31d and the L-shaped plate portion 31c via a packing PC, and the concave portion is formed by the concave portion.
Are supported.

【0019】以下に、本実施形態における作用,効果に
ついて説明する。ファン16の回動により、冷蔵冷凍室
8内の空気は底板31の吸入口を通じて蒸発器14に導
かれ、蒸発器14で冷却された後の空気は底板31の吐
出口31aを通じて冷蔵冷凍室8内に送り込まれる(図
4中の白抜き矢印参照)。
The operation and effect of this embodiment will be described below. By the rotation of the fan 16, the air in the refrigerator compartment 8 is guided to the evaporator 14 through the suction port of the bottom plate 31, and the air cooled by the evaporator 14 passes through the discharge port 31 a of the bottom plate 31. (See the white arrow in FIG. 4).

【0020】前記の底板31の構成及びその配置構造で
は、吐出口31aと側面ガラス5の下部との間に空気断
熱層ALが介在するため、該吐出口31aは空気断熱層
ALの幅寸法分だけ側面ガラス5から離れている。つま
り、冷却空気が吐出口31aを通じて冷蔵冷凍室8内に
送り込まれるときに、該冷却空気が側面ガラス5の下部
内面に吹き付けられる度合を前記距離に基づいて軽減す
ることができると共に、吐出冷却空気の冷熱が側面ガラ
ス5の下部に伝わり難くすることができる。
In the configuration and the arrangement of the bottom plate 31, the air insulating layer AL is interposed between the discharge port 31a and the lower part of the side glass 5, so that the discharge port 31a has a width corresponding to the width of the air heat insulating layer AL. Only the side glass 5. That is, when the cooling air is sent into the refrigerator compartment 8 through the discharge port 31a, the degree to which the cooling air is blown to the lower inner surface of the side glass 5 can be reduced based on the distance, and the discharge cooling air can be reduced. Can be hardly transmitted to the lower portion of the side glass 5.

【0021】しかも、垂直板部分31bの吐出口31a
よりも上方に突出した部分(邪魔板部分)によって、吐
出口31aから側面ガラス5の内面に向かう冷却空気の
流れを遮ることができるので、吐出口31aから吐出し
た冷却空気がガラス板5の下部内面に吹き付けられる度
合をより効果的に軽減することができる。
In addition, the discharge port 31a of the vertical plate portion 31b
The flow of the cooling air from the discharge port 31a toward the inner surface of the side glass 5 can be blocked by the portion (baffle plate portion) protruding upward, so that the cooling air discharged from the discharge port 31a flows into the lower part of the glass plate 5. The degree of spraying on the inner surface can be reduced more effectively.

【0022】また、吐出口31aと側面ガラス5の下部
との間に空気断熱層ALが設けられているので、該空気
断熱層ALの断熱作用によって、吐出冷却空気の冷熱が
側面ガラス5の下部に殆ど伝わらなくすることができ
る。
Since the air insulating layer AL is provided between the discharge port 31a and the lower part of the side glass 5, the heat of the discharge cooling air is reduced by the heat insulating function of the air insulating layer AL. Can hardly be transmitted.

【0023】さらに、垂直板部分31bから側面ガラス
5の下面を支持するT字板部分31dまでの距離が長い
ため、吐出冷却空気の冷熱によって垂直板部分31bが
冷却されてもその冷熱が側面ガラス5に伝熱し難くくす
ることできる。
Further, since the distance from the vertical plate portion 31b to the T-shaped plate portion 31d which supports the lower surface of the side glass 5 is long, even if the vertical plate portion 31b is cooled by the cooling heat of the discharge cooling air, the cold heat is reduced by the side glass. 5 can be made difficult to transfer heat.

【0024】これにより、冷却空気が吐出口31aを通
じて冷蔵冷凍室8内に送り込まれるときに、該冷却空気
の吹き付けや伝熱によって吐出口31a側の側面ガラス
5が冷却されることを的確に抑制して、該冷却を原因と
した結露発生とその流れ落ちを的確に防止することがで
きる。
Thus, when the cooling air is sent into the refrigerator compartment 8 through the discharge port 31a, the cooling of the side glass 5 on the discharge port 31a side by the blowing or heat transfer of the cooling air is accurately suppressed. As a result, it is possible to accurately prevent the occurrence of dew condensation and the flow drop due to the cooling.

【0025】勿論、前記の作用,効果は、同様の構造を
備えた吸入口側でも同様に得ることができる。
Of course, the above-described functions and effects can be similarly obtained on the suction port side having a similar structure.

【0026】尚、前述の実施形態では、底板として図1
乃至図3に示した冷蔵冷凍ショーケースにおける仕切枠
を兼用したもの例示したが、底板を内外の2部品構成と
して、内側部品を底板として用い、且つ外側部品を仕切
枠として用いてもよい。
In the above-described embodiment, the bottom plate shown in FIG.
Although the partition frame in the refrigerated freezer showcase shown in FIG. 3 is also used as an example, the bottom plate may be configured as two parts inside and outside, the inside part may be used as the bottom plate, and the outside part may be used as the partition frame.

【0027】また、前述の実施形態では、空気断熱層の
縦寸法を垂直板部分よりも短く形成したものを示した
が、該空気断熱層の縦寸法は図示例のものよりも長くて
もよく、また垂直板部分の縦寸法とほぼ一致させるよう
にしてもよい。
In the above-described embodiment, the vertical dimension of the air insulating layer is shorter than that of the vertical plate. However, the vertical dimension of the air insulating layer may be longer than that of the illustrated example. Alternatively, it may be made to substantially match the vertical dimension of the vertical plate portion.

【0028】[0028]

【発明の効果】以上詳述したように、本発明によれば、
冷却空気が吐出口を通じて冷蔵冷凍室内に送り込まれる
ときに、該冷却空気の吹き付けや伝熱によって吐出口側
のガラス板が冷却されることを抑制して、該冷却を原因
とした結露発生とその流れ落ちを的確に防止することが
できる。
As described in detail above, according to the present invention,
When the cooling air is sent into the refrigeration compartment through the discharge port, it suppresses cooling of the glass plate on the discharge port side by blowing or heat transfer of the cooling air, and the occurrence of dew condensation and the Runoff can be prevented accurately.

【図面の簡単な説明】[Brief description of the drawings]

【図1】冷蔵冷凍ショーケースの正面図FIG. 1 is a front view of a refrigerated freezer showcase.

【図2】図1のX−X線拡大断面図FIG. 2 is an enlarged sectional view taken along line XX of FIG. 1;

【図3】図2のY−Y線拡大断面図FIG. 3 is an enlarged sectional view taken along line YY of FIG. 2;

【図4】本発明の一実施形態に係る図3に対応した冷蔵
冷凍ショーケースの部分断面図
FIG. 4 is a partial cross-sectional view of the refrigerated freezer showcase corresponding to FIG. 3 according to an embodiment of the present invention.

【符号の説明】[Explanation of symbols]

5…側面ガラス、8…冷蔵冷凍室、31…底板、31a
…吐出口、31b…垂直板部分、31c…L字板部分、
31d…T字板部分、AL…空気断熱層。
5 ... side glass, 8 ... refrigerated freezer, 31 ... bottom plate, 31a
... Discharge port, 31b ... Vertical plate part, 31c ... L-shaped plate part,
31d: T-shaped plate part, AL: air insulation layer.

フロントページの続き (72)発明者 図子田 勇人 群馬県伊勢崎市寿町20番地 サンデン株式 会社内 (72)発明者 間庭 邦弘 群馬県伊勢崎市寿町20番地 サンデン株式 会社内Continuing on the front page (72) Inventor Hayato Koushida 20 Kotobukicho, Isesaki-shi, Gunma Sanden Co., Ltd. (72) Kunihiro Maba 20 Kotobukicho, Isesaki-shi, Gunma Sanden Co., Ltd.

Claims (2)

【特許請求の範囲】[Claims] 【請求項1】 ガラス板によって囲まれた冷蔵冷凍室の
下面一側に吐出口を有し、該吐出口から冷蔵冷凍室内に
冷却空気を送り込むようにした冷蔵冷凍ショーケースに
おいて、 前記吐出口をガラス板から離れた位置に形成すると共
に、 該吐出口のガラス板側に、吐出口からガラス板内面に向
かう冷却空気の流れを遮る邪魔板を設けた、 ことを特徴とする冷蔵冷凍ショーケース。
1. A refrigerated freezer showcase having a discharge port on one side of a lower surface of a refrigeration compartment surrounded by a glass plate, wherein cooling air is sent from the discharge port into the refrigeration compartment. A refrigerated freezer showcase formed at a position distant from the glass plate and provided on the glass plate side of the discharge port with a baffle plate for blocking a flow of cooling air from the discharge port toward the inner surface of the glass plate.
【請求項2】 前記吐出口と該吐出口側のガラス板の下
部との間に空気断熱層を設けた、 ことを特徴とする請求項1記載の冷蔵冷凍ショーケー
ス。
2. The refrigerated freezer showcase according to claim 1, wherein an air insulation layer is provided between the discharge port and a lower portion of the glass plate on the discharge port side.
JP08185698A 1998-03-27 1998-03-27 Refrigerated freezer showcase Expired - Fee Related JP3389494B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP08185698A JP3389494B2 (en) 1998-03-27 1998-03-27 Refrigerated freezer showcase

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP08185698A JP3389494B2 (en) 1998-03-27 1998-03-27 Refrigerated freezer showcase

Publications (2)

Publication Number Publication Date
JPH11281220A true JPH11281220A (en) 1999-10-15
JP3389494B2 JP3389494B2 (en) 2003-03-24

Family

ID=13758139

Family Applications (1)

Application Number Title Priority Date Filing Date
JP08185698A Expired - Fee Related JP3389494B2 (en) 1998-03-27 1998-03-27 Refrigerated freezer showcase

Country Status (1)

Country Link
JP (1) JP3389494B2 (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2009079878A (en) * 2007-09-27 2009-04-16 Sanyo Electric Co Ltd Showcase

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2009079878A (en) * 2007-09-27 2009-04-16 Sanyo Electric Co Ltd Showcase

Also Published As

Publication number Publication date
JP3389494B2 (en) 2003-03-24

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