Draining canvas
By using an inner layer woven with cut-resistant yarn and a surface layer with a special weaving structure, the problem of easy damage and low drainage efficiency of traditional draining tools is solved, achieving a high-efficiency and durable drainage effect, suitable for industrial and daily life scenarios.
Patent Information
- Application Number
- CN202520525204.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-25
- Publication Date
- 2026-02-06
- Estimated Expiration
- 2035-03-25
AI Technical Summary
Traditional draining tools are easily scratched when dealing with items with sharp edges or thorns, and their draining efficiency is low, failing to effectively protect and quickly separate moisture, thus affecting production and daily life efficiency.
The inner layer is made of aramid fiber, metal fiber or Kevlar yarn, and the outer layer is made of cut-resistant yarn cross-stitched weave and special weave structure. The outer layer forms a water-draining part through the gap between fineness weft yarn one and fineness weft yarn two, so as to achieve rapid and effective moisture separation.
It improves the durability and efficiency of draining tools, prevents sharp objects from cutting them, extends their service life, reduces replacement costs, improves production and living efficiency, and protects the integrity of items to be drained.
Smart Images

Figure CN223878556U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the field of canvas, concretely is a draining canvas. BACKGROUND
[0002] In many industrial production and daily life scenes, it is often necessary to drain the water in the articles. The traditional draining tools and methods have many drawbacks.
[0003] In the industrial field, such as the food processing industry, when processing vegetable and fruit raw materials, ordinary draining baskets or nets are often not resistant to cutting. When processing food materials with sharp corners or hard thorns, they are easily cut, resulting in a shortened service life. Frequent replacement not only increases costs, but also affects production efficiency. Moreover, the draining structure of these conventional draining tools is simple, and the draining efficiency is low, which cannot quickly and effectively separate water from the materials, affecting the subsequent processing process.
[0004] In agricultural production, when cleaning and draining harvested agricultural products, ordinary draining devices are difficult to adapt to complex shapes and textures of agricultural products. Some agricultural products may have sharp shells or protrusions, and ordinary draining bags are easily cut, causing agricultural products to spill and lose. Moreover, the traditional draining method cannot well balance the draining effect and the protection of agricultural products, which may cause some agricultural products to be damaged due to improper draining, reducing product quality.
[0005] In daily life, people also face similar problems when washing meat, seafood and other food materials. Ordinary draining containers cannot prevent sharp bones, fish bones and other sharp objects in food materials from cutting the container, and it is also difficult to quickly drain the water, affecting the cooking efficiency. Therefore, we propose a draining canvas. UTILITY MODEL CONTENT
[0006] In view of the deficiencies of the prior art, the utility model provides a draining canvas, which solves the above problems.
[0007] To achieve the above purpose, the utility model provides the following technical scheme: a draining canvas, comprising a bag body, a binding tape winding part is sewn at the end of the bag body, a drawstring is inserted into the inside of the binding tape winding part, and the two side ends of the drawstring extend to the outside of the binding tape winding part.
[0008] Preferably, the bag body comprises an inner layer and a surface layer, and the inner layer is arranged on the inside of the surface layer.
[0009] Preferably, the inner layer is woven by a plurality of groups of anti-cutting silk threads.
[0010] Preferably, the anti-cutting silk thread is any one of aramid fiber, metal fiber or Kevlar thread.
[0011] Preferably, the surface layer comprises fineness weft yarn one, fineness weft yarn two and surface warp yarn, the fineness weft yarn two is arranged between two adjacent fineness weft yarn one, the surface warp yarn passes through the surface of the fineness weft yarn one and then passes through the bottom of the fineness weft yarn two, and the gap between the fineness weft yarn two and the fineness weft yarn one forms a draining part.
[0012] Preferably, the diameter of the fineness weft yarn one is one fifth of the diameter of the fineness weft yarn two.
[0013] Compared with the prior art, the utility model provides a draining canvas, which has the following beneficial effects:
[0014] Excellent durability
[0015] Guarantee of cutting resistance: the inner layer is woven by cross-stitching of cutting-resistant threads made of aramid fiber, metal fiber or Kevlar thread, etc. These materials have high strength and toughness, which can effectively resist the penetration and cutting of sharp objects. In industrial production, such as food processing industry handling of hard and sharp vegetable and fruit raw materials, or agricultural production contacting with agricultural products with sharp shells, the risk of bag body being cut can be greatly reduced, and the service life is significantly prolonged compared with traditional draining tools.
[0016] Reduced replacement cost: due to the excellent cutting resistance, the cost of frequent replacement of draining tools is greatly reduced, including the cost of purchasing new tools and the hidden cost caused by production stagnation due to replacement operation, and the overall production efficiency is improved. Whether in industrial large-scale production scene or frequent use in daily life, it can show the advantage of durable and durable.
[0017] Efficient draining capacity
[0018] Special weaving structure: the surface layer is composed of fineness weft yarn one, fineness weft yarn two and surface warp yarn, and the unique weaving method makes the gap between the fineness weft yarn two and the fineness weft yarn one form a draining part. This structure design greatly improves the draining efficiency and can quickly and effectively separate water from the objects to be drained.
[0019] Fast water separation: in the industrial field, it can speed up the separation speed of water and materials in food processing, agricultural product processing and other processes, improve production efficiency; in daily life, after washing meat, seafood and other food materials, it can quickly drain water, save preparation time before cooking and improve life convenience.
[0020] Wide application scenarios
[0021] Industrial Applications: Suitable for various industrial scenarios such as food processing and agricultural product handling, it can meet the needs of different production stages for drainage tools. Whether handling regularly shaped fruits and vegetables or complex-shaped agricultural products, it can reliably perform its anti-cut and drainage functions, ensuring the smooth operation of the production process.
[0022] Daily Use: In the home kitchen, when washing various ingredients, this draining canvas can effectively prevent sharp bones, fish bones, etc. from cutting the container, while efficiently draining water, bringing convenience to daily cooking and improving the quality of life.
[0023] Good product protection
[0024] Protecting items awaiting drainage: In agricultural production, traditional drainage methods can damage some harvested agricultural products due to improper drainage. This drainage canvas, with its stable structure and suitable drainage speed, effectively balances drainage efficiency with the protection of agricultural products, reducing damage caused by the drainage process, helping to maintain the quality of agricultural products, and increasing their market value. Attached Figure Description
[0025] Figure 1 This is a schematic diagram of the structure of this utility model;
[0026] Figure 2 This is a schematic diagram of the spray head of this utility model;
[0027] Figure 3 This is a cross-sectional schematic diagram of the spray head of this utility model;
[0028] Figure 4 for Figure 3 A magnified view of part A in the diagram;
[0029] Figure 5 This is a schematic diagram of the combination of fineness weft yarn one, fineness weft yarn two, and surface warp yarn of this utility model.
[0030] In the diagram: 1. Bag body; 2. Binding strap; 3. Retractable strap; 4. Inner layer; 5. Outer layer; 6. Cut-resistant yarn; 7. Fineness weft yarn one; 8. Fineness weft yarn two; 9. Surface warp yarn; 10. Draining section. Detailed Implementation
[0031] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0032] Please refer to Figures 1-5 , a draining canvas, comprising a bag body 1, a binding winding part 2 is sewn at the end of the bag body 1, a drawstring 3 is inserted into the inside of the binding winding part 2, and the two side ends of the drawstring 3 extend to the outside of the binding winding part 2 respectively, when filtering is needed, the drawstring 3 is directly pulled to directly close the opening.
[0033] Further, the bag body 1 comprises an inner layer 4 and a surface layer 5, and the inner layer 4 is arranged inside the surface layer 5.
[0034] Further, the inner layer 4 is woven by cross-stitching a plurality of anti-cutting threads 6, which can prevent objects from cutting the bag body 1 from the inside during draining, thereby affecting actual use.
[0035] Further, the anti-cutting thread 6 is any one of aramid fiber, metal fiber or Kevlar thread.
[0036] Further, the surface layer 5 comprises a first fineness weft yarn 7, a second fineness weft yarn 8 and a surface warp yarn 9, the second fineness weft yarn 8 is arranged between two adjacent first fineness weft yarns 7, and the surface warp yarn 9 passes through the surface of the first fineness weft yarn 7 and then penetrates through the bottom of the second fineness weft yarn 8, and the gap between the second fineness weft yarn 8 and the first fineness weft yarn 7 forms a draining part 10, when draining is needed, water will only pass through the inner layer 4 and then pass through the first fineness weft yarn 7 and the second fineness weft yarn 8.
[0037] Further, the diameter of the first fineness weft yarn 7 is one fifth of the diameter of the second fineness weft yarn 8.
[0038] Structure description:
[0039] The bag body 1 is the main part of the draining canvas, which serves to accommodate the objects to be drained. It is composed of an inner layer 4 and a surface layer 5. The double-layer structure design endows the bag body with multiple properties. The inner layer 4 provides anti-cutting protection to prevent the internal objects from cutting the bag body from the inside during the draining process, thereby ensuring the integrity and durability of the bag body; the surface layer 5 is responsible for realizing the draining function, and its special weaving structure forms a draining part 10, which allows water to flow out smoothly.
[0040] The binding winding part 2 is located at the end of the bag body 1 and is fixed on the bag body by sewing. Its main function is to provide a space for winding and fixing the drawstring 3. When it is needed to close the opening of the bag body for filtering operation, the drawstring 3 can tighten the opening with the help of the binding winding part 2.
[0041] Pulling belt 3: inserted into the inside of the bandage winding part 2, and its two side ends extend to the outside of the bandage winding part 2 respectively. In actual use, the operator pulls the pulling belt 3, and drives the cloth at the opening of the bag body to shrink by the movement of the pulling belt 3 in the bandage winding part 2, so as to realize the closure of the opening and facilitate the filtering operation.
[0042] Inner layer 4: arranged on the inside of the surface layer 5, and is woven by a plurality of groups of anti-cutting threads 6. This structure design greatly enhances the ability of the bag body to resist being cut by internal objects during draining. The anti-cutting threads 6 can adopt any one of aramid fiber, metal fiber or Kevlar thread, which all have high strength and high toughness, and can effectively protect the bag body from being damaged, and ensure its normal draining and use functions.
[0043] Surface layer 5: composed of fineness weft yarn one 7, fineness weft yarn two 8 and surface warp yarn 9. The fineness weft yarn two 8 is arranged between the adjacent two fineness weft yarn one 7, and the surface warp yarn 9 passes through the surface of the fineness weft yarn one 7 and penetrates through the bottom of the fineness weft yarn two 8 in a specific way. This weaving method forms the draining part 10 at the gap between the fineness weft yarn two 8 and the fineness weft yarn one 7. When draining, the water will flow out of the bag body through these draining parts 10 after passing through the inner layer 4, realizing the draining function.
[0044] Anti-cutting thread 6: as the main material of the inner layer 4, it has the key anti-cutting performance. The aramid fiber, metal fiber or Kevlar thread all have excellent strength and toughness, the aramid fiber is high temperature resistant, chemical corrosion resistant and high strength; the metal fiber has good toughness and strong cutting resistance; the Kevlar thread also has high strength and good cutting resistance. No matter which material is used, it can effectively prevent the bag body from being cut by internal sharp objects.
[0045] Fineness weft yarn one 7: is a part of the weaving structure of the surface layer 5, and its diameter is one fifth of the diameter of the fineness weft yarn two 8. It is woven together with the fineness weft yarn two 8 and the surface warp yarn 9 to form a specific structure, which provides a basis for the formation of the draining part 10, and participates in the formation of the water outlet channel during the whole draining process.
[0046] Fineness weft yarn two 8: is arranged between the adjacent fineness weft yarn one 7, and constitutes the weaving structure of the surface layer 5 together with the fineness weft yarn one 7 and the surface warp yarn 9. Its larger diameter forms a gap with the fineness weft yarn one 7, and these gaps are the draining parts 10, which are the key channels for water to flow out of the bag body, and play an important role in the draining function.
[0047] Surface warp yarn 9: in the weaving structure of the surface layer 5, the surface of the fineness weft yarn 7 is penetrated and the bottom of the fineness weft yarn 8 is inserted, and the fineness weft yarn 7 and the fineness weft yarn 8 are interwoven, which jointly build the overall structure of the surface layer 5, ensure the stability and effectiveness of the water draining part 10, and support the water draining function of the whole surface layer.
[0048] Water draining part 10: formed by the gap between the fineness weft yarn 8 and the fineness weft yarn 7, which is the key part of the surface layer 5 to realize the water draining function. When the bag body is subjected to the water draining operation, the water passes through the inner layer 4 and flows out of the bag body through these water draining parts 10, thus completing the water draining process.
[0049] Although the embodiments of the present application have been shown and described, it is to be understood that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the present application, and the scope of the present application is defined by the appended claims and their equivalents.
Claims
1. A draining canvas comprising a pocket (1), characterized in that, The end of the bag body (1) is sewn with a strap winding part (2), the inside of the strap winding part (2) is inserted with a drawstring (3), and the two side ends of the drawstring (3) respectively extend to the outside of the strap winding part (2); The bag body (1) comprises an inner layer (4) and a surface layer (5), and the inner layer (4) is arranged on the inside of the surface layer (5); The inner layer (4) is woven by cross-stitching a plurality of groups of anti-cutting threads (6); The anti-cutting threads (6) are any one of aramid fiber, metal fiber or Kevlar thread; The surface layer (5) comprises fineness weft yarn one (7), fineness weft yarn two (8) and surface warp (9), the fineness weft yarn two (8) is arranged between two adjacent fineness weft yarn one (7) at intervals, the surface warp (9) passes through the surface of the fineness weft yarn one (7) and then passes through the bottom of the fineness weft yarn two (8), and the gap between the fineness weft yarn two (8) and the fineness weft yarn one (7) forms a water draining part (10).
2. A drainage canvas according to claim 1, characterized in that: The diameter of the fineness weft yarn one (7) is one fifth of the diameter of the fineness weft yarn two (8).