TWM535974U - Insole structure - Google Patents

Insole structure Download PDF

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Publication number
TWM535974U
TWM535974U TW105216454U TW105216454U TWM535974U TW M535974 U TWM535974 U TW M535974U TW 105216454 U TW105216454 U TW 105216454U TW 105216454 U TW105216454 U TW 105216454U TW M535974 U TWM535974 U TW M535974U
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TW
Taiwan
Prior art keywords
layer
insole
insole structure
buffer layer
gas permeable
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Application number
TW105216454U
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Chinese (zh)
Inventor
qing-sheng Ke
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Hou Sheng Global Co Ltd
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Priority to TW105216454U priority Critical patent/TWM535974U/en
Publication of TWM535974U publication Critical patent/TWM535974U/en

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  • Laminated Bodies (AREA)

Description

鞋墊結構Insole structure

本新型係涉及一種放置於鞋內提供足部支撐的鞋墊,尤其是一種鞋墊結構。The present invention relates to an insole that is placed in a shoe to provide foot support, and more particularly to an insole structure.

一般鞋墊通常置放於鞋子內部來協助增加足部的支撐效果或者提升足部踩踏時的柔軟度或緩衝性能,進而減輕足部的負擔,對於容易足部疼痛或者走路姿勢不佳的使用者,甚至有治療或矯正的效果。The general insole is usually placed inside the shoe to help increase the support of the foot or to improve the softness or cushioning performance of the foot when stepping on, thereby reducing the burden on the foot. For users who are prone to foot pain or poor walking posture, There are even treatment or correction effects.

而一般現有市售的鞋墊如圖5所示,其係為一種緩衝效果極佳並以全矽膠材質所製成之一鞋墊50,當一使用者U踩踏於該鞋墊50時,由於矽膠材質能夠吸收重量並產生緩衝的效果,因此踩踏時會有下陷的感覺,但矽膠材質較為沉重,對於需要運動或足部施力的使用者,除了會增加鞋子的重量之外,該鞋墊50在表面並沒有其他的支撐部位,導致足部施力時欠缺支撐感,而在步行時容易感覺到費力,同時,足部所產生的腳汗也容易沾黏在該鞋墊50的表面,透氣效果不佳。Generally, the commercially available insole is as shown in FIG. 5, which is an insole 50 which is excellent in cushioning effect and is made of a full silicone material. When a user U steps on the insole 50, the silicone material can Absorbs weight and produces a cushioning effect, so there is a feeling of sag when stepping on, but the silicone material is heavy. For users who need exercise or foot force, in addition to increasing the weight of the shoe, the insole 50 is on the surface and There is no other support part, which results in a lack of support when the foot is applied, and it is easy to feel laborious when walking. At the same time, the sweat generated by the foot is easily adhered to the surface of the insole 50, and the ventilation effect is not good.

而如圖6所示為市售的另一種鞋墊60,其係於該鞋墊60之底部設有複數個向下凸出的塊體61,各塊體61係為緩衝效果較佳的TPR材質(熱可塑性橡膠)製成,當各塊體61受正向力作用時,會有壓縮而產生緩衝的感覺,而有不錯的踩踏感,但在該鞋墊60的表面仍然沒有支撐效果及較佳的透氣效果,因此,發明人基於現有鞋墊在功能上的不足,認為實有改善之必要。As shown in FIG. 6 , another insole 60 is commercially available. The bottom of the insole 60 is provided with a plurality of downwardly protruding blocks 61 , and each block 61 is a TPR material with better cushioning effect ( Made of thermoplastic rubber), when each block 61 is subjected to a positive force, there is a feeling of compression and cushioning, and there is a good feeling of pedaling, but there is still no support effect and better on the surface of the insole 60. The breathable effect, therefore, the inventor believes that there is a need for improvement based on the lack of function of the existing insole.

為了解決現有鞋墊表面支撐效果不佳以及透氣排汗的效果不足的問題,本新型的主要目的在於提供一種鞋墊結構,其於鞋底層使用極輕材質來達到輕量化,並結合緩衝層強化支撐效果及透氣層的透氣性的設計,改善了前述的各項問題。In order to solve the problem that the existing insole surface support effect is not good and the effect of breathable perspiration is insufficient, the main purpose of the present invention is to provide an insole structure, which uses an extremely light material to achieve weight reduction on the sole layer of the shoe, and is combined with a buffer layer to strengthen the support effect. And the breathability design of the gas permeable layer improves the aforementioned problems.

本新型所運用的技術手段係在於提供一種鞋墊結構,由下至上依序包括一鞋底層、一間隔層、一緩衝層及一透氣層,其中: 該間隔層係黏著於該鞋底層之上方,該緩衝層係壓合於該間隔層之上方,於該緩衝層之表面朝上凸起形成複數個支撐塊,該透氣層係對應貼合於該緩衝層之表面。The technical means used in the present invention is to provide an insole structure comprising a sole layer, a spacer layer, a buffer layer and a gas permeable layer from bottom to top, wherein: the spacer layer is adhered to the upper layer of the sole. The buffer layer is pressed against the spacer layer, and a plurality of support blocks are formed on the surface of the buffer layer, and the gas permeable layer is bonded to the surface of the buffer layer.

所述之鞋墊結構,其中該緩衝層係凸設有四個支撐塊,各支撐塊係分別形成不同的幾何外形,並分佈於該緩衝層之表面。In the insole structure, the buffer layer is convexly provided with four support blocks, each of which forms a different geometric shape and is distributed on the surface of the buffer layer.

所述之鞋墊結構,其中各支撐塊分別由該鞋墊結構的前至後依序為彎弧狀、水滴狀、半月狀及橢圓狀的順序設置。In the insole structure, each of the support blocks is sequentially disposed from the front to the back of the insole structure in a curved, drop-shaped, half-moon, and elliptical order.

所述之鞋墊結構,其中鞋底層為乙烯醋酸乙烯酯材質之墊體。The insole structure, wherein the sole layer is a mat of ethylene vinyl acetate.

所述之鞋墊結構,其中緩衝層為熱可塑性橡膠材質之墊體。The insole structure, wherein the buffer layer is a cushion body of a thermoplastic rubber material.

所述之鞋墊結構,其中透氣層為天鵝絨材質的貼布。The insole structure, wherein the gas permeable layer is a velvet material patch.

所述之鞋墊結構,其中間隔層為不織布。The insole structure, wherein the spacer layer is a non-woven fabric.

所述之鞋墊結構,其中緩衝層為矽膠材質之墊體。The insole structure, wherein the buffer layer is a cushion body of a silicone material.

本新型可以獲得的功效增進在於,本新型於鞋底層使用EVA的輕量化材質來減輕鞋墊整體的重量,而在緩衝層係以熱壓成形方式結合於間隔層,並形成複數個支撐塊來提供足底及足弓部的支撐效果,並在緩衝層的表面覆蓋有以透氣材質所製成的透氣層,使足部在接觸透氣層時能夠有效排汗及透氣,大幅提升鞋墊的舒適性及耐用性。The improvement achieved by the present invention is that the present invention uses the lightweight material of the EVA to reduce the overall weight of the insole, and the buffer layer is bonded to the spacer layer by thermoforming, and a plurality of support blocks are formed to provide The support effect of the sole and the arch part, and the surface of the cushion layer is covered with a breathable layer made of a breathable material, so that the foot can effectively perspire and ventilate when contacting the breathable layer, thereby greatly improving the comfort of the insole and Durability.

為能詳細瞭解本新型的技術特徵及實用功效,並可依照說明書的內容來實現,玆進一步以如圖式所示的較佳實施例,詳細說明如后:In order to understand the technical features and practical functions of the present invention in detail, and in accordance with the contents of the specification, the following further describes the preferred embodiment as shown in the following figure:

本新型係一種鞋墊結構,請參閱圖1至圖3的較佳實施例,該鞋墊S係由下至上依序包括一鞋底層10、一間隔層20、一緩衝層30及一透氣層40。The present invention is an insole structure. Referring to the preferred embodiment of FIGS. 1 to 3, the insole S includes a sole layer 10, a spacer layer 20, a buffer layer 30 and a gas permeable layer 40 from bottom to top.

該鞋底層10係以乙烯醋酸乙烯酯(EVA)塑膠發泡形成之墊體,其具有輕量、抗震、隔熱及高緩衝等特性,該鞋底層10係對應人體足部之造形,並具有一定的厚度。The shoe bottom layer 10 is a cushion body formed by foaming ethylene vinyl acetate (EVA) plastic, which has the characteristics of light weight, shock resistance, heat insulation and high cushioning, and the sole layer 10 corresponds to the shape of the human foot and has A certain thickness.

該間隔層20係黏著於該鞋底層10之上方,較佳的是,其係以不織布貼附於該鞋底層10之上方,用於分隔不同材質的墊體。The spacer layer 20 is adhered to the top of the sole layer 10. Preferably, the spacer layer 20 is attached to the sole layer 10 with a non-woven fabric for separating the mats of different materials.

該緩衝層30係以熱壓成形結合於該間隔層20之上方,其係以熱可塑性橡膠(TPR)或以矽膠所製成,具有高緩衝的效果,於該緩衝層30之表面朝上凸起形成複數個支撐塊31,於本實施例中,該緩衝層30係凸設有四個支撐塊31,各支撐塊31係分別形成不同的幾何外形,並對應足部的各部位對應分佈於該緩衝層30之表面,各支撐塊31分別由該鞋墊S的前至後依序為彎弧狀、水滴狀、半月狀及橢圓狀的順序設置。The buffer layer 30 is bonded to the spacer layer 20 by thermoforming, and is made of thermoplastic rubber (TPR) or silicone. It has a high buffering effect and is convex upward on the surface of the buffer layer 30. In the present embodiment, the buffer layer 30 is convexly provided with four support blocks 31, and each of the support blocks 31 respectively has different geometric shapes, and corresponding portions of the corresponding portions of the foot are correspondingly distributed. On the surface of the buffer layer 30, each of the support blocks 31 is sequentially provided in the order of a curved shape, a water drop shape, a half moon shape, and an elliptical shape from the front to the back of the insole S.

該透氣層40係對應貼合於該緩衝層30之表面,該透氣層40係為薄層且透氣吸汗的布片,該透氣層40較佳為天鵝絨材質的貼布。The gas permeable layer 40 is bonded to the surface of the buffer layer 30. The gas permeable layer 40 is a thin layer of breathable and sweat-absorbent cloth. The gas permeable layer 40 is preferably a velvet material.

本新型較佳實施例的使用方式如圖4所示,當一使用者U踩踏於該鞋墊S時,由於各支撐塊31之外形符合足部的足底及足弓的設計,使踩踏時具有緩衝效果且更為舒適,並且,該鞋底層10係以EVA的輕量化材質來減輕該鞋墊S整體的重量,以及該緩衝層30所形成的支撐效果,而該透氣層40附著在該緩衝層30的表面,除了能夠使足部在接觸該透氣層40時能夠有效排汗及透氣,更能夠有效地包覆各支撐塊31來固定其外形,使各支撐塊31在受壓時能夠有所支撐,而不會容易變形,透過前述的各項設計,使本新型能夠大幅提升鞋墊的舒適性及耐用性。The manner of use of the preferred embodiment of the present invention is as shown in FIG. 4. When a user U steps on the insole S, the shape of the foot and the arch of the foot conforms to the design of the foot and the arch of the foot. The cushioning effect is more comfortable, and the sole layer 10 is made of a lightweight material of EVA to reduce the weight of the insole S as a whole, and the supporting effect formed by the buffer layer 30, and the gas permeable layer 40 is attached to the buffer layer. The surface of the surface 30 can effectively wick and vent the foot when contacting the gas permeable layer 40, and can effectively cover the support blocks 31 to fix the shape thereof, so that the support blocks 31 can be pressed when pressed. Support, without being easily deformed, through the above various designs, the present invention can greatly improve the comfort and durability of the insole.

以上所述,僅是本新型的較佳實施例,並非對本新型作任何形式上的限制,任何所屬技術領域中具有通常知識者,若在不脫離本新型所提技術特徵的範圍內,利用本新型所揭示技術內容所作出局部替換、更改、轉用、變動或修飾的等效實施例,均仍屬於本新型技術特徵的範圍內。The above description is only a preferred embodiment of the present invention, and is not intended to limit the present invention in any way. Any person having ordinary knowledge in the art can use the present invention without departing from the technical features of the present invention. Equivalent embodiments that are susceptible to substitution, alteration, alteration, alteration, or modification of the present invention are still within the scope of the present invention.

10‧‧‧鞋底層
20‧‧‧間隔層
30‧‧‧緩衝層
31‧‧‧支撐塊
40‧‧‧透氣層
50‧‧‧鞋墊
60‧‧‧鞋墊
61‧‧‧塊體
S‧‧‧鞋墊
U‧‧‧使用者
10‧‧‧Shoe bottom
20‧‧‧ interval layer
30‧‧‧buffer layer
31‧‧‧Support block
40‧‧‧ breathable layer
50‧‧‧ insole
60‧‧‧ insole
61‧‧‧ Block
S‧‧‧ insole
U‧‧‧Users

圖1為本新型較佳實施例的立體外觀圖。 圖2為本新型較佳實施例的俯視圖。 圖3為本新型較佳實施例的割面線A-A的局部剖面圖。 圖4為本新型較佳實施例的使用狀態圖。 圖5為現有鞋墊的使用狀態圖。 圖6為現有鞋墊的使用狀態圖。Figure 1 is a perspective view of a preferred embodiment of the present invention. Figure 2 is a top plan view of a preferred embodiment of the present invention. Figure 3 is a partial cross-sectional view of a face line A-A of the preferred embodiment of the present invention. Figure 4 is a diagram showing the state of use of the preferred embodiment of the present invention. Fig. 5 is a view showing the state of use of the existing insole. Fig. 6 is a view showing the state of use of the existing insole.

10‧‧‧鞋底層 10‧‧‧Shoe bottom

20‧‧‧間隔層 20‧‧‧ interval layer

30‧‧‧緩衝層 30‧‧‧buffer layer

31‧‧‧支撐塊 31‧‧‧Support block

40‧‧‧透氣層 40‧‧‧ breathable layer

S‧‧‧鞋墊 S‧‧‧ insole

Claims (11)

一種鞋墊結構,由下至上依序包括一鞋底層、一間隔層、一緩衝層及一透氣層,其中: 該間隔層係黏著於該鞋底層之上方,該緩衝層係壓合於該間隔層之上方,於該緩衝層之表面朝上凸起形成複數個支撐塊,該透氣層係對應貼合於該緩衝層之表面。An insole structure comprising a sole layer, a spacer layer, a buffer layer and a gas permeable layer from bottom to top, wherein: the spacer layer is adhered to the upper layer of the shoe, and the buffer layer is pressed against the spacer layer Above, a plurality of support blocks are formed on the surface of the buffer layer, and the gas permeable layer is correspondingly attached to the surface of the buffer layer. 如請求項1所述之鞋墊結構,其中該緩衝層係凸設有四個支撐塊,各支撐塊係分別形成不同的幾何外形,並分佈於該緩衝層之表面。The insole structure of claim 1, wherein the buffer layer is convexly provided with four support blocks, each of which forms a different geometric shape and is distributed on the surface of the buffer layer. 如請求項2所述之鞋墊結構,其中各支撐塊分別由該鞋墊結構的前至後依序為彎弧狀、水滴狀、半月狀及橢圓狀的順序設置。The insole structure according to claim 2, wherein each of the support blocks is sequentially disposed from the front to the back of the insole structure in a curved, drop-shaped, half-moon, and elliptical order. 如請求項1至3中任一項所述之鞋墊結構,其中鞋底層為乙烯醋酸乙烯酯材質之墊體。The insole structure according to any one of claims 1 to 3, wherein the sole layer is a mat of ethylene vinyl acetate. 如請求項4所述之鞋墊結構,其中緩衝層為熱可塑性橡膠材質之墊體。The insole structure according to claim 4, wherein the buffer layer is a cushion body of a thermoplastic rubber material. 如請求項1至3中任一項所述之鞋墊結構,其中緩衝層為熱可塑性橡膠材質之墊體。The insole structure according to any one of claims 1 to 3, wherein the buffer layer is a cushion body of a thermoplastic rubber material. 如請求項5所述之鞋墊結構,其中透氣層為天鵝絨材質的貼布。The insole structure of claim 5, wherein the gas permeable layer is a velvet material patch. 如請求項6所述之鞋墊結構,其中透氣層為天鵝絨材質的貼布。The insole structure of claim 6, wherein the gas permeable layer is a velvet material patch. 如請求項1至3中任一項所述之鞋墊結構,其中透氣層為天鵝絨材質的貼布。The insole structure according to any one of claims 1 to 3, wherein the gas permeable layer is a velvet material patch. 如請求項1至3中任一項所述之鞋墊結構,其中間隔層為不織布。The insole structure of any one of claims 1 to 3, wherein the spacer layer is a non-woven fabric. 如請求項1至3中任一項所述之鞋墊結構,其中緩衝層為矽膠材質之墊體。The insole structure according to any one of claims 1 to 3, wherein the buffer layer is a cushion body of a silicone material.
TW105216454U 2016-10-28 2016-10-28 Insole structure TWM535974U (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108577031A (en) * 2018-06-05 2018-09-28 晋江兴迅新材料科技有限公司 A kind of high permeable shoe pads and its moulding process

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108577031A (en) * 2018-06-05 2018-09-28 晋江兴迅新材料科技有限公司 A kind of high permeable shoe pads and its moulding process

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