Tatting cavity twisted palm fabric, vamp and shoe
Through the innovative design of woven hollow spun palm fiber fabric, the problem of insufficient breathability and comfort of traditional shoe uppers has been solved, and a high-performance shoe upper design that balances breathability and strength has been achieved.
Patent Information
- Application Number
- CN202422836659.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-20
- Publication Date
- 2025-11-25
- Estimated Expiration
- 2034-11-20
AI Technical Summary
Traditional shoe uppers are inadequate in terms of breathability and comfort, especially in the case of prolonged exercise or high-temperature environments where moisture tends to accumulate, affecting the wearing experience. At the same time, existing improvement methods often sacrifice the strength and aesthetics of the shoe upper.
The upper is made of woven hollow coir fabric, which interweaves transparent elastic monofilaments and weft yarns in a single-layer structure. Combined with a layered hollow structure and flywire technology, it forms a breathable upper. High-temperature setting treatment is used to improve structural strength and aesthetics.
It significantly improves the breathability and structural strength of the shoe upper while maintaining good aesthetics, making it suitable for manufacturing high-performance shoe uppers.
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Figure CN223590300U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of heddle fabric, specifically is a weaving cavity heddle fabric, vamp and shoe. BACKGROUND
[0002] Traditional vamp mostly adopts plane weaving or knitting material, although can satisfy basic wearing demand, but still needs to be improved in the air permeability and comfort degree. Especially under long time movement or high temperature environment, vamp interior is easy to accumulate moisture, influences wearing experience. In recent years, although already has some vamp of special weaving technology or perforation design tries to improve the air permeability, but these methods often sacrifice the strength and stability of vamp, or have some lacks in the appearance. Therefore, need to develop a vamp cloth material that is good in air permeation effect, can adjust the air permeation effect and light. SUMMARY
[0003] The utility model provides a weaving cavity heddle fabric, vamp and shoe, it overcomes the deficiency described in the background art.
[0004] The utility model solves the technical problem that the adopted technical scheme is:
[0005] A weaving cavity heddle fabric, including face layer, bottom layer, layered cavity structure, face layer, bottom layer are all by warp yarn and weft yarn interweave in the same layer and constitute single layer structure, any partial position in single layer structure is combined with layered cavity structure, and face layer, bottom layer at layered cavity structure are interwoven in different layers by warp yarn and weft yarn.
[0006] The layered cavity structure in the weaving cavity heddle fabric is composed of at least two layers of yarn layers, the upper layer warp and weft are woven with transparent elastic monofilament to form a dense texture, the lower layer is woven with a dense texture, the space between the upper layer and the lower layer is filled with a cavity, and the upper and lower warp yarns are processed with a unique arrangement and interweaving method, and then high-temperature setting is performed.
[0007] A preferred technical solution: one or more of TPU yarn, TPEE yarn and multifilament color yarn are cross-woven in the single layer structure.
[0008] A preferred technical solution: the face layer at the layered cavity structure is composed of a transparent elastic monofilament to form a perspective area.
[0009] A preferred technical solution: the yarns woven in the layered cavity structure are filled with yarns that enhance the level of detail, and the yarns are woven and connected to the face layer or the bottom layer of the layered cavity structure.
[0010] A preferred technical solution: the layered cavity structure is of any shape.
[0011] A preferred technical solution: the face layer and the bottom layer of the layered cavity structure are connected by a cavity flyline process structure.
[0012] A preferred technical solution: the face layer or the bottom layer of the layered cavity structure is provided with a through hole, and the through hole is formed by rotating and twisting the upper warp yarn and bundling and binding a plurality of weft yarns.
[0013] A woven cavity heddle shoe upper is cut and made from the woven cavity heddle fabric in the above.
[0014] A preferred technical solution: the through hole is located in the toe area or / and the side body area of the shoe upper.
[0015] A shoe comprising a sole and the woven cavity heddle shoe upper in the above, the woven cavity heddle shoe upper is bonded to the sole.
[0016] By adopting the above technical solution, the beneficial effects of the present application are:
[0017] The woven cavity heddle fabric in the present application optimizes the heddle weaving structure and the cavity structure, which not only significantly improves the air permeability of the shoe upper, but also maintains good structural strength and aesthetic appearance. BRIEF DESCRIPTION OF DRAWINGS
[0018] The present application will be further described below in combination with the drawings and examples.
[0019] Figure 1 It is a structure schematic view of the front of the fabric of the present application;
[0020] Figure 2 It is a structure schematic view of the back of the fabric of the present application;
[0021] Figure 3 It is a structure schematic view of the interweaving of warp yarns and weft yarns;
[0022] Figure 4 It is a structure schematic view of the layered cavity structure in the present application;
[0023] Figure 5 It is a weaving schematic view of the formation of the through hole in the face layer or the bottom layer;
[0024] Figure 6 It is a weaving schematic view of the fabric of the present application.
[0025] MAIN REFERENCE NUMERALS:
[0026] 1, face layer; 2, bottom layer; 3, layered cavity structure; 4, single layer structure; 5, through hole; 10, upper warp yarn; 11, lower warp yarn; 12, polyester yarn; 13, TPEE monofilament; 14, colored yarn. DETAILED DESCRIPTION
[0027] The hollowing is carried out by a double-warp beam machine, Figure 3The coarse black yarn is the upper warp yarn 10, and the fine black yarn is the lower warp yarn 11;
[0028] (1) In the single-layer structure 4, transparent elastic monofilaments such as TPU, TPEE and other high-strength yarns can be used to interweave with multifilament colored yarns in a relatively tight manner on the front and back sides.
[0029] (2) Create a layered cavity design at any local location. Use one or more shuttles of transparent elastic monofilaments, such as TPU or TPEE, to create a see-through effect on the surface layer 1. Use one shuttle of yarn for the bottom layer 2, and the remaining colored yarns 14 (colored yarn 14 is...) Figure 4 The lines shown between the middle layer 1 and the bottom layer 2 can be filled with yarn in the cavity, or they can be interwoven in the middle layer 1 or the bottom layer 2 to make the layering richer, that is, to change the thickness of the layered cavity structure at the corresponding position.
[0030] (3) Create a through-hole 5 effect at any local location. The through-hole 5 is formed by bundling multiple weft yarns together by rotating and twisting the upper warp needle around the lower warp (e.g., ...). Figure 3 ).
[0031] In the combination of the above three structures, a 160CM wide piece of material is first woven by machine. Then, it is shaped and shrunk by high temperature. The warp yarns are layered locally. The surface layer 1 is combined with transparent monofilaments to implement twisting holes, so that the pattern of the bottom layer 2 can be seen through the surface layer 1, making the pattern rich in layers.
[0032] Reference Figure 6 The weaving pattern in the diagram shows that polyester yarn 12 can be used in different parts of the fabric, and TPEE monofilament 13 can be used in some parts.
[0033] The prepared woven hollow tangerine fabric is usually pre-shrinked and set at high temperature, with a setting temperature of 150-180 degrees Celsius, which makes the fabric smoother.
[0034] Example 1
[0035] like Figures 1-6 As shown, this embodiment provides a woven hollow tangerine fabric, including a face layer 1, a bottom layer 2, and a layered hollow structure 3. Both the face layer 1 and the bottom layer 2 are formed by warp and weft yarns interwoven in the same layer to form a single-layer structure 4. The layered hollow structure 3 is combined with any local position in the single-layer structure 4. The face layer 1 and the bottom layer 2 at the layered hollow structure 3 are formed by warp and weft yarns interwoven in different layers.
[0036] Furthermore, the single-layer structure 4 is cross-woven with one or more of the following: TPU yarn, TPEE yarn, and multifilament colored yarn.
[0037] Furthermore, the surface layer 1 at the layered cavity structure 3 is composed of transparent elastic monofilaments forming a transparent area.
[0038] Further, the layered cavity structure 3 is woven with yarns that enhance the layering effect, and the yarns are woven to the face layer 1 or the bottom layer 2 of the layered cavity structure 3.
[0039] Further, the layered cavity structure 3 is of any shape.
[0040] Further, the layered cavity structure 3 is of any shape.
[0041] Further, the layered cavity structure 3 is of any shape.
[0042] Embodiment 2
[0043] The embodiment provides a woven cavity braided shoe upper, which is cut and made from the woven cavity braided fabric in Embodiment 1.
[0044] Further, the through hole 5 is located in the toe area or / and the side body area of the shoe upper.
[0045] Embodiment 3
[0046] The embodiment provides a shoe, which comprises a shoe sole and the woven cavity braided shoe upper in the above, and the woven cavity braided shoe upper is bonded to the shoe sole.
[0047] The above description is only the preferred embodiment of the present application, and therefore cannot limit the scope of the present application. Any equivalent changes and modifications made according to the scope and content of the present patent should still be within the scope of the present application.
Claims
1. A woven cavity tow fabric characterized by, The structure comprises a surface layer, a bottom layer and a layered cavity structure, the surface layer and the bottom layer are composed of warp yarns and weft yarns interwoven in the same layer to form a single-layer structure, and the layered cavity structure is arranged at any local position in the single-layer structure, the surface layer and the bottom layer at the layered cavity structure are interwoven in different layers.
2. The woven cavity batt fabric of claim 1, wherein, The single-layer structure is cross-woven with one or more of TPU yarns, TPEE yarns and multifilament colored yarns.
3. The woven cavity batt fabric of claim 1, wherein, The surface layer at the layered cavity structure is composed of transparent elastic monofilaments to form a perspective area.
4. The woven cavity batt fabric of claim 1, wherein, The layered cavity structure is filled with yarns for enhancing the level of layers, and the yarns are woven and connected to the surface layer or the bottom layer of the layered cavity structure.
5. The woven cavity batt fabric of claim 1, wherein, The layered cavity structure is of any shape.
6. The woven cavity braid fabric of claim 1, wherein, The surface layer and the bottom layer of the layered cavity structure are connected by a cavity flyline process structure.
7. The woven cavity batt fabric of claim 1, wherein, Any position of the surface layer or the bottom layer of the layered cavity structure is provided with a through hole, and the through hole is formed by twisting a plurality of weft yarns to be bundled and tied by rotating an upper warp yarn with a thick needle and holding a lower warp yarn.
8. A woven cavity braid shoe upper, characterized by, The woven cavity twisted brown shoe upper is the woven cavity twisted brown fabric of any one of claims 1-6.
9. A woven cavity braid shoe upper, characterized by, The woven cavity twisted brown shoe upper is the woven cavity twisted brown fabric of claim 7, and the through hole is located in a toe area or / and a side body area of the shoe upper.
10. A shoe characterized by The shoe comprises a shoe sole and the woven cavity twisted brown shoe upper of claim 8 or 9, and the woven cavity twisted brown shoe upper is bonded to the shoe sole.