JP2018184678A - Cold-proof material and manufacturing method thereof - Google Patents

Cold-proof material and manufacturing method thereof Download PDF

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JP2018184678A
JP2018184678A JP2017087073A JP2017087073A JP2018184678A JP 2018184678 A JP2018184678 A JP 2018184678A JP 2017087073 A JP2017087073 A JP 2017087073A JP 2017087073 A JP2017087073 A JP 2017087073A JP 2018184678 A JP2018184678 A JP 2018184678A
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cold protection
cold
adhesion
filler
protection material
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裕子 山田
Hiroko Yamada
裕子 山田
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Onward Holdings Co Ltd
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Onward Holdings Co Ltd
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Abstract

PROBLEM TO BE SOLVED: To provide a cold-proof material and a manufacturing method thereof, in which a sewing process is eliminated, and thereby a filler is prevented from blowing out through needle holes and rainwater is prevented from intruding into the material and the movement and uneven distribution of the filler in a filling partition are eliminated, and thereby uniform cold-proof effect is obtained, so that it makes possible to reduce the filler amount, and thereby a thin cold-proof material is obtained.SOLUTION: In a cold-proof material 100, a partitioning line 30 generated when welding to join a first material 10 to a second material 20 is linearly formed by a plurality of rows 3a-3b of adhesion points. A distance P is provided between adjacent rows of adhesion points, and adhesion points 3 forming the rows of adhesion points are arranged at positions displaced from each other in a direction orthogonal to the longitudinal direction of the partitioning line.SELECTED DRAWING: Figure 4

Description

本発明は、防寒用の充填材を充填した防寒素材に関する。   The present invention relates to a cold protection material filled with a cold protection filler.

羽毛、綿などの防寒に適した充填材を充填した防寒素材は、防寒用衣料、山岳道具、および寝具類として多用されている。
通常、表地と裏地の間に防寒用の充填材を介在させた防寒用素材は、表地と裏地とを縫製などの結合手段により充填材を収納する収容区域(収納区画)を形成し、この区域内に充填材を充填させて構成している。
しかし、製造工程において、又は、製品として使用中に、充填されている防寒(充填)材が移動して、偏ってしまう不具合が発生した。充填材が偏ると均一な防寒を達成することが出来ず、希望する防寒効果を奏さない不良品となってしまった。
そこで、製造、使用中での充填材の移動、偏りを少なくするためには、充填物の充填量を多くして、収容区域内での充填材の移動(動き)を防御したり、充填区画域を狭くして、充填密度を高める必要がある。
Cold protection materials filled with fillers suitable for protection against cold such as feathers and cotton are widely used as clothing for winter protection, mountain tools, and bedding.
Normally, a cold protection material in which a cold insulation filler is interposed between the outer material and the lining material forms a storage area (storage compartment) for storing the filler material by means of sewing or other means for joining the outer material and the lining material. The inside is filled with a filler.
However, in the manufacturing process or during use as a product, there is a problem that the cold protection (filling) material that is filled moves and is biased. If the filler is biased, uniform cold protection cannot be achieved, resulting in a defective product that does not have the desired cold protection effect.
Therefore, in order to reduce the movement and bias of the filler during manufacture and use, the filling amount of the filler is increased to prevent the movement (movement) of the filler in the storage area, It is necessary to increase the packing density by narrowing the area.

しかし、充填物を多くすると防寒素材の厚さが厚く、重くなってしまった。また、充填区画域を狭くするためには、表地と裏地との結合手段としての縫製工程が増加し、労力負担が増加した。さらに、縫製箇所を多くすると、表地、裏地に縫い糸が重なって結合部分がごろつき感となるとともに、縫い糸による針孔が多数形成されるため、この孔より充填物の綿繊維、羽毛が吹き出したり、雨水が侵入する不具合が発生した。
そこで、特許文献1では、防寒ウエアーの保温材充填区画形成のためのステッチ部分に、ホットメルトテープを融着して裏地に対する縫い目を閉塞する技術が開示されている。
However, the thicker the filling, the heavier the cold protection material, the heavier it was. Further, in order to narrow the filling section area, the sewing process as a connecting means between the outer material and the lining material has increased, and the labor burden has increased. In addition, if the number of sewing points is increased, the sewing thread overlaps the outer and lining fabrics, and the joined part feels loose, and many needle holes are formed from the sewing thread. There was a problem that rainwater entered.
Therefore, Patent Document 1 discloses a technique in which a hot melt tape is fused to a stitch portion for forming a heat insulation material filling section of cold protection wear to close a seam to a lining.

実用新案登録第3105925号公報Utility Model Registration No. 3105925

しかし、開示されている技術も縫製作業を必要としている。
そこで、本発明は、縫製工程を無くして針孔からの充填物の吹き出し、雨水の侵入を防止するとともに、充填区画内での充填物の移動・偏りをなくすことにより均一な防寒効果が得られるとともに、充填物の充填量を少なくした薄地の防寒素材をも提供するものである。
However, the disclosed technique also requires a sewing operation.
Therefore, the present invention eliminates the sewing process and prevents the filling material from blowing out from the needle hole and the intrusion of rainwater, and also provides a uniform cold protection effect by eliminating the movement and bias of the filling material in the filling section. At the same time, the present invention also provides a thin cold material having a small filling amount.

本発明の防寒素材は、第一の素材と第二の素材を溶着結合した区画線で形成した収納室に充填材を収納している。該区画線は複数本の接着点列で直線状に形成されていると共に、隣接する接着点列は間隙を設けて配設されており、隣接する接着点列を構成する接着点は、区画線長手方向に直交する方向に互いにずらした位置に配設されている構成を具備している。   The cold protection material of the present invention stores the filler in a storage chamber formed by a dividing line in which the first material and the second material are welded and joined. The partition lines are formed in a straight line by a plurality of adhesion point sequences, and adjacent adhesion point sequences are provided with a gap, and the adhesion points constituting the adjacent adhesion point sequences are defined as division lines. It has the structure arrange | positioned in the position mutually shifted in the direction orthogonal to a longitudinal direction.

本発明の防寒素材は、縫製箇所が無いので、従来の防寒素材の様な針孔からの充填材の吹き出し雨水の侵入が防止できる。また、接着点の列で構成する区画線は、通気性を有しながら収納室間の充填物の移動を防止できる。そして、隣接する収納室への充填材の移動がないので、充填材の偏りが無くなり、充填材の充填量を少なくしても均一な防寒効果を達成できる。また、充填材の充填量を少なくして素材の厚さを薄くすることが出来、薄手の防寒素材を提供することが出来る。   Since the cold protection material of the present invention has no sewing points, it is possible to prevent the rainwater from entering the filler from the needle hole like the conventional cold protection material. In addition, the partition line formed by the row of adhesion points can prevent the movement of the filling material between the storage chambers while having air permeability. And since there is no movement of the filler to an adjacent storage chamber, the bias of the filler is eliminated, and a uniform cold protection effect can be achieved even if the filling amount of the filler is reduced. In addition, the thickness of the material can be reduced by reducing the filling amount of the filler, and a thin cold protection material can be provided.

図1は、防寒衣服の説明図。FIG. 1 is an explanatory view of a cold protection garment. 図2は、図1点線部分の拡大図。FIG. 2 is an enlarged view of a dotted line portion of FIG. 図3は、図2線X−X断面図。FIG. 3 is a sectional view taken along line XX in FIG. 図4は、図2一点鎖線で示す部分の区画線の上面図。4 is a top view of a parting line of a portion indicated by a one-dot chain line in FIG. 図5は、区画線内の空気の移動の説明図。FIG. 5 is an explanatory diagram of the movement of air in the lane marking. 図6は、比較例の説明図。FIG. 6 is an explanatory diagram of a comparative example. 図7は、防寒素材の第2実施例の断面説明図。FIG. 7 is a cross-sectional explanatory view of a second embodiment of the cold protection material. 図8は、防寒素材の第2実施例の斜視図。FIG. 8 is a perspective view of a second embodiment of the cold protection material. 図9は、防寒素材の第2実施例の断面説明図。FIG. 9 is a cross-sectional explanatory view of a second embodiment of the cold protection material. 図10は、防寒素材の第3実施例の説明図。FIG. 10 is an explanatory view of a third embodiment of the cold protection material.

以下、本発明の実施の形態について、図面を用いて説明する。
図1に示すように、防寒用の衣服1は、防寒素材100を縫製して形成されている。
Hereinafter, embodiments of the present invention will be described with reference to the drawings.
As shown in FIG. 1, the cold protection garment 1 is formed by sewing a cold protection material 100.

防寒用衣服1の前身頃2を構成する防寒素材100を説明する。
図2は、防寒用衣服1の前身頃2の点線で囲んだ部分を切り出し、拡大した説明図、図3は図2線X−Xの断面図である。
防寒素材100は、第一の素材10と第二の素材20の間隙に、繊維綿、羽毛、ダウンなどの防寒用充填材Fを充填して構成される。
防寒素材を構成する第一の素材10、第二の素材20はポリエステルなどの熱可塑性の素材を用いている。
The cold protection material 100 constituting the front body 2 of the cold clothes 1 will be described.
2 is an enlarged explanatory view of a portion surrounded by a dotted line of the front body 2 of the cold protection garment 1, and FIG. 3 is a sectional view taken along line XX in FIG.
The cold protection material 100 is configured by filling a gap between the first material 10 and the second material 20 with a cold protection filler F such as fiber cotton, feathers, and down.
The first material 10 and the second material 20 constituting the cold protection material are made of a thermoplastic material such as polyester.

防寒素材100はポリエステル等よりなる第一の素材10と第二の素材20を積層し、第一の素材10と第二の素材20を線状に結合して区画線30を形成する。そして、区画線30と区画線30で囲まれる空間を収納室5とする。この収納室5に防寒用充填材Fを充填して、防寒素材を形成している。
充填材Fは、防寒用の素材として通常に用いられている、繊維綿、フェザー、ダウンなどである。
The cold protection material 100 is formed by laminating a first material 10 and a second material 20 made of polyester or the like, and connecting the first material 10 and the second material 20 in a linear shape to form a dividing line 30. A space surrounded by the lane markings 30 is defined as a storage chamber 5. The storage room 5 is filled with a cold-proof filler F to form a cold-proof material.
The filler F is fiber cotton, feather, down, etc., which are usually used as a material for cold protection.

第一の素材10と第二の素材20の結合を説明する。
幅方向に間隔をもって凸部を形成した超音波摩擦熱融着加工機のパターンローラーに、第一の素材10と第二の素材20をおき、凸部形成部分に超音波を当てる(ピンソニック加工)。超音波の振動エネルギー(超音波摩擦熱融着加工)により、熱可塑性素材よりなる第一の素材10と第二の素材20は、パターンローラーに形成された凸部に当接部分が熱溶融して点状に接着される。
このように、区画線30は第一の素材10と第二の素材20がパターンローラーの凸部の大きさに溶着(接着)した接着点3で、構成されている。
The combination of the first material 10 and the second material 20 will be described.
The first material 10 and the second material 20 are placed on a pattern roller of an ultrasonic friction heat fusion processing machine in which convex portions are formed at intervals in the width direction, and ultrasonic waves are applied to the convex portion forming portions (pin sonic processing). ). Due to the vibration energy of ultrasonic waves (ultrasonic frictional heat fusion processing), the first material 10 and the second material 20 made of a thermoplastic material are melted at their contact portions with the convex portions formed on the pattern roller. Glued in a dot shape.
In this way, the dividing line 30 is configured by the adhesion point 3 where the first material 10 and the second material 20 are welded (adhered) to the size of the convex portion of the pattern roller.

図4、図5により、区画線30を詳述する。図4は区画線30上面説明図、図5は区画線内の空気の移動を説明する図面である。
区画線30は、区画線3の巾Wの間に接着点3で構成する列が、複数列形成される。図示する区画線30は、端縁の第1の接着点列3aから他端縁の第5の接着点列3eまで、5列の接着点列で形成されている例を示している。
すなわち、パターンローラーには一定間隔に突設する凸起列が5列並設されており、パターンローラーに載置した第一の素材10、第二の素材20は超音波摩擦熱融着加工(ピンソニック加工)により、5列の凸部頂点形状の接着点3の列が形成される。
さらに、第1の接着点列3aと第2の接着点列3b、第2の接着点列3bと第3の接着点列3cは間隙Pを設けて配設されている。同様に第3の接着点列3cと第4の接着点列3d、第4の接着点列3dと第5の接着点列3eも間隙Pを設けて配設されている。
The lane marking 30 will be described in detail with reference to FIGS. 4 is an explanatory diagram of the top surface of the lane marking 30, and FIG. 5 is a diagram for explaining the movement of air in the lane marking.
The dividing line 30 is formed with a plurality of lines formed by the adhesion points 3 between the widths W of the dividing lines 3. The partition line 30 shown in the figure shows an example in which five adhesion point sequences are formed from the first adhesion point sequence 3a at the end edge to the fifth adhesion point sequence 3e at the other end edge.
That is, the pattern roller is provided with five rows of protruding rows protruding at regular intervals, and the first material 10 and the second material 20 placed on the pattern roller are subjected to ultrasonic friction heat fusion processing ( By the pin sonic process), five rows of convex point apex-shaped adhesion points 3 are formed.
Further, the first adhesive point sequence 3a and the second adhesive point sequence 3b, and the second adhesive point sequence 3b and the third adhesive point sequence 3c are arranged with a gap P therebetween. Similarly, the third adhesion point row 3c and the fourth adhesion point row 3d, and the fourth adhesion point row 3d and the fifth adhesion point row 3e are also provided with a gap P therebetween.

また、端縁に配設する第1の接着点列3aと、隣接する第2の接着点列3bを構成する接着点3は、区画線30の長手方向Nに直交する方向Mに互いにずらした位置となっている。
同様に、第2の接着点列3bと、隣接する第3の接着点列3cの接着点3は、区画線30の長手方向Nに直交する方向Mに互いにずらした位置となっており、第3の接着点列3cと、隣接する第4の接着点列3dの接着点3は、区画線30の長手方向Nに直交する方向Mに互いにずらした位置、第4の接着点列3dと、隣接する第5の接着点列3eの接着点3は、区画線30の長手方向Nに直交する方向Mに互いにずらした位置となっている。
Further, the first adhesion point sequence 3 a disposed on the edge and the adhesion point 3 constituting the adjacent second adhesion point sequence 3 b are shifted from each other in the direction M perpendicular to the longitudinal direction N of the partition line 30. Is in position.
Similarly, the second adhesion point sequence 3b and the adhesion point 3 of the adjacent third adhesion point sequence 3c are shifted from each other in the direction M perpendicular to the longitudinal direction N of the partition line 30. 3 and the adhering point 3 of the adjacent fourth adhering point sequence 3d are shifted from each other in the direction M perpendicular to the longitudinal direction N of the partition line 30, the fourth adhering point sequence 3d, The adhesion points 3 of the adjacent fifth adhesion point rows 3 e are shifted from each other in a direction M perpendicular to the longitudinal direction N of the partition line 30.

このように構成する区画線30の空気の流通を説明する。・・・・図5参照
接着点列3a〜接着点列3eの接着点3を上記の位置に配設とすることにより、区画線30で区画されている隣り合う収納室5Aと収納室5Bにおいて、収納室5Aから収納室5Bへの空気は、矢印で示すように、接着点3の間、および接着点列の間隙Pを通って流れ、隣り合う収納室間(収納室5Aと収納室5B)は通気可能となる。反対からの空気も同様に、隣り合う収納室5Bから収納室5Aへ接着点列の接着点3の間隙Pを通って通気可能となる。
また、区画線30の隣接する接着点列の接着点3は、長手方向Nに直交する方向Mにずらした位置に配設されているので、収納室5Aに収納される充填材Fは、隣接する接着点列の重合していない接着点3部分が障害となって、空気の流れと共に充填材Fが隣の収納室5Bに移動することはない。同様に、収納室5Bに収納されている充填材Fは、隣接する接着点列の接着点3の重合していない部分が障害となって、空気の流れと共に隣の収納室5Aに移動することはない。
The air circulation of the lane marking 30 configured in this way will be described. ... See FIG. 5 By arranging the adhesion points 3 of the adhesion point sequence 3a to the adhesion point sequence 3e at the above positions, in the adjacent storage chamber 5A and storage chamber 5B partitioned by the partition line 30 As shown by the arrows, the air from the storage chamber 5A to the storage chamber 5B flows between the adhesion points 3 and through the gap P between the adhesion point rows, and between adjacent storage chambers (the storage chamber 5A and the storage chamber 5B). ) Can be ventilated. Similarly, air from the opposite side can be ventilated from the adjacent storage chamber 5B to the storage chamber 5A through the gap P of the bonding point 3 in the bonding point row.
Further, since the adhering points 3 of the adjoining adhering point sequence of the partition line 30 are arranged at positions shifted in the direction M perpendicular to the longitudinal direction N, the filler F stored in the storage chamber 5A is adjacent The non-polymerized bonding point 3 portion of the bonding point row to be prevented becomes an obstacle, and the filler F does not move to the adjacent storage chamber 5B along with the air flow. Similarly, the filling material F stored in the storage chamber 5B is moved to the adjacent storage chamber 5A along with the air flow, because the non-overlapped portion of the bonding point 3 in the adjacent bonding point row becomes an obstacle. There is no.

上記のように、接着点列の間隙P、接着点列の接着点3の配設間隔は、収納室に収納される充填物の単体が通過できない大きさとするものである。
図示した例では5列の接着点列で説明したが、接着点列は接着点の大きさにもよるが、2列〜15列とすることができる。また、区画線の幅寸法Wは、1.5mm〜30mmが考えられる。
また、上記実施例では、隣接する接着点列の接着点を、区画線30の長手方向Nに直交する方向Mに互いにずらした位置としているが、区画線30の長手方向Nに直交する方向Mに、完全に重合していなければ互いに一部を重合した位置に配設しても良い。
As described above, the gap P between the bonding point rows and the arrangement intervals of the bonding points 3 in the bonding point row are set such that a single substance contained in the storage chamber cannot pass.
In the illustrated example, the description has been made with five rows of adhesion points. However, the number of rows of adhesion points may be 2 to 15 rows, depending on the size of the adhesion points. Moreover, 1.5 mm-30 mm can be considered for the width dimension W of a division line.
Further, in the above embodiment, the adhesion points of adjacent adhesion point sequences are shifted from each other in the direction M perpendicular to the longitudinal direction N of the lane marking 30, but the direction M perpendicular to the longitudinal direction N of the lane marking 30. In addition, if they are not completely polymerized, they may be disposed at positions where they are partially polymerized.

さらに、接着点の形状は、図示する正方形状の他、長方形状、丸形状、三角形状、星形状等、任意形状を用いることができる。   Furthermore, as the shape of the adhesion point, an arbitrary shape such as a rectangular shape, a round shape, a triangular shape, or a star shape can be used in addition to the square shape shown in the figure.

ここで、比較例として、区画線が密閉された構造の場合を図6に示す。図示のように、収納室の空気が→方向に移動した場合、充填物Fは密封する区画線300方向に押しやられ、収納室内に充填される充填物は区画線300側に偏ってしまう。または、さらに収納室内の空気圧が高くなると、密封区画線300は破断してしまう。そして、区画線300の破断箇所から空気と共に充填物が隣の収納室に流入する不具合が発生する。充填物が流出した収納室は、充填物が少なくなり防寒効果が薄れる。そして、流入した収納室の充填物は多くなり、防寒素材の充填物の均一性が崩れて、防寒素材としての防寒効果が低下する。   Here, as a comparative example, FIG. 6 shows a case where the lane marking is sealed. As shown in the figure, when the air in the storage chamber moves in the → direction, the filler F is pushed in the direction of the lane marking 300 to be sealed, and the filler filled in the storage chamber is biased toward the lane marking 300 side. Alternatively, when the air pressure in the storage chamber is further increased, the sealed partition line 300 is broken. And the malfunction into which a filling material flows into an adjacent storage chamber with air from the fracture | rupture location of the division line 300 generate | occur | produces. In the storage room from which the filling material has flowed out, the filling material is reduced and the cold protection effect is reduced. And the filling of the storage chamber which flowed in increases, the uniformity of the filling of a cold protection material collapses, and the cold protection effect as a cold protection material falls.

しかし、本発明の区画線30は空気の通気を可能としているので、空気圧による破断が無く、さらに、収納室5A,5Bに収納される充填材は、隣接する収納室間を移動することがない。
また、収納室内の防寒材を均一に保持できるので、防寒効果を高め、防寒素材の板厚を薄くしても、均一な防寒効果を維持することが出来る。
However, since the dividing line 30 of the present invention allows air to pass therethrough, there is no breakage due to air pressure, and the filler stored in the storage chambers 5A and 5B does not move between adjacent storage chambers. .
In addition, since the cold protection material in the storage room can be held uniformly, the cold protection effect can be enhanced, and even if the thickness of the cold protection material is reduced, the uniform cold protection effect can be maintained.

以上説明したように、本発明は、防寒素材を薄く形成することが出来るので、軽量で意匠効果の高い防寒衣服、薄手の防寒シートなど使用範囲が拡がり、真冬のみに限らず秋・春用の素材としても使用できる。   As described above, since the cold protection material can be thinly formed, the present invention expands the range of use such as lightweight and highly design-resistant winter clothes and thin winter sheets, and not only for winter but also for autumn and spring. Can also be used as a material.

第2実施例
この実施例は、第一の素材と第二の素材の2層構造の防寒素材100を、表生地70、裏生地80で挟持して、4層構造とした防寒素材を示している。・・・・・図7,8参照
表生地70と裏生地80で挟持されている防寒素材100は、区画線を介して隣り合う収納室内の空気が通気可能となっているので、均一な防寒効果を奏する板厚の薄い素材であって、表生地70、裏生地80で挟持して4層構造としても薄く、防寒効果の高い素材を提供する。
Second Example This example shows a cold protection material having a four-layer structure in which a cold protection material 100 having a two-layer structure of a first material and a second material is sandwiched between a front fabric 70 and a back fabric 80. Yes. ...... Refer to FIGS. 7 and 8. The cold protection material 100 sandwiched between the front fabric 70 and the back fabric 80 allows the air in the storage room adjacent to each other to pass through the dividing line, so that the uniform cold protection is provided. A thin material having an effect, which is sandwiched between the front fabric 70 and the back fabric 80, is thin as a four-layer structure, and provides a material having a high cold protection effect.

あるいは、防寒素材100に裏生地(あるいは表生地)90を添設して、3層構造としてもよい。この防寒素材も薄い防寒素材として多用できる。・・・・図9参照
この実施例の防寒素材は、挟持する、あるいは添設する生地の素材の選択幅が拡がり、使用目的に合わせた素材、例えば羊毛、絹等を用いることが可能となる。防寒素材としての使用範囲が多岐となる。
Alternatively, a back fabric (or front fabric) 90 may be attached to the cold protection material 100 to form a three-layer structure. This cold material can also be used as a thin cold material. .... See FIG. 9. The cold protection material of this embodiment expands the selection range of the material of the fabric to be sandwiched or attached, and it is possible to use a material suitable for the purpose of use, such as wool or silk. . Wide range of use as a cold protection material.

第3実施例
この実施例は、区画線30に装飾を施した例を示している。
例えば、図10に示すように、区画線30の線幅内に装飾糸で縫い目50を形成する。
通常、縫製すると縫い針の挿通孔が形成されて、この孔より収納されている充填材が吹き抜ける不具合が発生した。しかし、本発明の区画線30は、接着点が障害となって接着点列を充填物が通り抜けることが出来なく、区画線にできる針孔からの充填物の吹き出しが無い。
実施例では装飾糸による縫製を例示したが、様々な糸により模様を形成したり、別の布を取りつけたアップリケを施したりと、趣向を凝らすことができる。
この実施例の防寒素材は区画線が装飾領域となり、意匠効果の高い防寒素材を提供できる。
3rd Example This example has shown the example which gave decoration to the dividing line 30. FIG.
For example, as shown in FIG. 10, the seam 50 is formed with a decorative thread within the line width of the partition line 30.
Usually, when sewing is performed, an insertion hole for the sewing needle is formed, and a problem that the filler contained in the hole blows through occurs. However, the comparting line 30 of the present invention does not allow the filling material to pass through the adhering point row due to the adhesion point being obstructed, and there is no blowing of the filling material from the needle hole that can be formed into the comparting line.
In the embodiment, the sewing with the decorative thread is exemplified, but it is possible to make the taste by forming a pattern with various threads or applying an applique with another cloth.
The cold protection material of this embodiment can provide a cold protection material with a high design effect because the partition line becomes a decorative region.

本発明は上述の実施例に限定されるものではなく、様々な変形例が含まれる。
すなわち、上述の実施例は本発明を判り易く説明するものであり、必ずしも全ての構成を備えるものに限定されるものではなく、実施例の構成の一部に他の構成の追加・削除・置換をすることが出来る。
The present invention is not limited to the above-described embodiments, and includes various modifications.
That is, the above-described embodiment is to explain the present invention in an easy-to-understand manner, and is not necessarily limited to the one having all the configurations, and the addition / deletion / replacement of other configurations is part of the configuration of the embodiments. You can

3 接着点
3a〜3e 接着点列
5A,5B 収納室
10 第一の素材
20 第二の素材
30、300 区画線
70 表生地
80 裏生地
100 防寒素材

3 Bonding points 3a to 3e Bonding point sequence 5A, 5B Storage chamber 10 First material 20 Second material 30, 300 Dividing line 70 Front fabric 80 Back fabric 100 Cold protection material

Claims (8)

重合した第一の素材と第二の素材を結合して区画した充填材の収納室に、充填材を収納した防寒素材において、
前記収納室は、第一の素材と第二の素材を溶着結合した区画線で区画され、
該区画線は接着点で構成する複数本の接着点列で直線状に形成されており、隣接する接着点列は間隙を設けて配設されていると共に、隣接する接着点列を構成する接着点は、区画線長手方向に直交する方向において、互いにずらした位置に配設されていることを特徴とする防寒素材。
In the cold storage material containing the filler in the storage chamber of the filler divided by combining the polymerized first material and the second material,
The storage chamber is defined by a lane marking that welds and joins the first material and the second material,
The partition lines are formed in a straight line by a plurality of adhesion point sequences composed of adhesion points, and the adjacent adhesion point sequences are arranged with a gap and are bonded to form adjacent adhesion point sequences. The cold protection material is characterized in that the points are arranged at positions shifted from each other in a direction orthogonal to the longitudinal direction of the lane marking.
複数本の接着点列で構成する区画線は、超音波摩擦熱融着加工により形成されていることを特徴とする請求項1記載の防寒素材。   The cold protection material according to claim 1, wherein the dividing line constituted by a plurality of adhesion point sequences is formed by ultrasonic frictional heat fusion processing. 請求項1または2記載の防寒素材を表生地と裏生地で挟持してなる防寒素材。 A cold protection material obtained by sandwiching the cold protection material according to claim 1 between a front fabric and a back fabric. 請求項1または2記載の防寒素材に表生地または裏生地を積層してなる防寒素材。 A cold protection material obtained by laminating a front fabric or a back fabric on the cold protection material according to claim 1. 重合する第一の素材と第二の素材を線状に結合して区画線を形成し、充填材の収納室を形成する工程と、
該収納室に防寒用の充填材を充填する工程
を有し、
前記区画線の形成は、超音波摩擦熱融着加工により第一の素材と第二の素材を点接着して形成するとともに、
該区画線は、複数列の接着点列で形成されていることを特徴とする防寒素材の製造方法。
A step of linearly combining the first material and the second material to be polymerized to form a dividing line, and forming a storage chamber for the filler;
Having a step of filling the storage room with a filler for cold protection,
The formation of the lane marking is formed by point-bonding the first material and the second material by ultrasonic frictional heat fusion processing,
The partition line is formed of a plurality of rows of adhesion points.
前記区画線の複数の接着点列は、隣接する接着点列との間に間隙を有して配設すると共に、隣接する接着点列の接着点は区画線長手方向に直交する方向に互いにずらした位置に配設する請求項5記載の防寒素材の製造方法。   The plurality of adhesion point sequences of the lane markings are arranged with a gap between the adjacent adhesion point sequences, and the adhesion points of the adjacent adhesion point sequences are shifted from each other in a direction perpendicular to the lane marking longitudinal direction. The manufacturing method of the cold protection material of Claim 5 arrange | positioned in the position. 区画線の複数列の接着点は、パターンロールの凸列により同時に形成されることを特徴とする請求項5または6記載の防寒素材の製造方法。   The method for producing a cold protection material according to claim 5 or 6, wherein the adhesion points of the plurality of lines of lane markings are simultaneously formed by the convex lines of the pattern roll. 請求項1ないし4記載の防寒素材により構成された防寒衣料。

The cold protection clothing comprised with the cold protection material of Claims 1 thru | or 4.

JP2017087073A 2017-04-26 2017-04-26 Cold-proof material and manufacturing method thereof Pending JP2018184678A (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2023142364A1 (en) * 2022-01-28 2023-08-03 三六一度(中国)有限公司 Garment with spacer fabric structure

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2023142364A1 (en) * 2022-01-28 2023-08-03 三六一度(中国)有限公司 Garment with spacer fabric structure

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