Tying rope tightening type billiard chalk sleeve

Through the multi-layer ring-shaped and bottom-structured suture rope fixing method, the existing billiard chocolate powder cover adaptability to shape and size is solved, and the stable fixation and aesthetic maintenance of chocolate powder is achieved.

CN223200520UActive Publication Date: 2025-08-08孟海同
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Patent Information

Application Number
CN202421852186.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-01
Publication Date
2025-08-08
Estimated Expiration
2034-08-01

AI Technical Summary

Technical Problem

Existing billiard chocolate powder covers have limitations when fixing chocolate powder of different shapes and sizes, and may cause harm to the chocolate powder or affect the aesthetics.

Method used

The multi-layer ring-shaped and bottom-layer structure is adopted, and the chocolate powder is tied and fixed by using sutures and tying ropes. By adjusting the tightness of the ropes to adapt to different shapes and sizes, the fixing stability is increased by combining the magnet sheet.

Benefits of technology

It achieves a stable fixation of chocolate powders of various shapes and sizes, avoids damage to chocolate powder and affects the beauty, and maintains the firmness and aesthetics.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a tether tightening type billiard chalk sleeve which is characterized in that an annular first layer (1), an annular second layer (2), an annular third layer (3) and an annular fourth layer (4) are all in the shape of a sheet-shaped square ring with holes, a magnet layer (6) is in the shape of a sheet-shaped rounded square with a round hole in the middle and a hole close to the edge, a bottom layer (7) is in the shape of a sheet-shaped rounded square with a hole, and the bottom layer (7) is in the shape of a sheet-shaped rounded square with a hole. The components are overlapped together from top to bottom, a sewing thread (8) sequentially penetrates through the corresponding holes in the middle of any two layers, the two ends of the sewing thread (8) are tied and knotted after meeting, a rope knot is stuffed into a crack, and a binding rope (9) penetrates into the middle of one edge of the crack between the first annular layer (1) and the second annular layer (2) from outside to inside. The binding rope (9) penetrates out from inside to outside after being separated from two holes and then penetrates in after being separated from one hole according to the rule until the two ends of the binding rope (9) are located on the outer side and are separated from each other by one hole, and the magnet sheet (5) is placed in the round hole of the magnet layer (6).
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Description

Technical Field

[0001] The utility model belongs to the technical field of billiard chocolate powder sleeves for fixing chocolate powder of different sizes, in particular to a tether-tightening billiard chocolate powder sleeve. Background Art

[0002] The existing billiard chocolate powder sleeves have three ways of fixing chocolate powder: sleeve extrusion, screw extrusion and adhesive. The sleeve extrusion method has the greatest limitation on the shape and size of chocolate powder, while the screw extrusion method and adhesive method can have a very small floating range for the size of chocolate powder of the same shape. Among them, the sleeve extrusion method may affect the firmness of the chocolate powder fixation due to the slight deformation of the chocolate powder or the chocolate powder sleeve during use. Among them, the screw extrusion fixing method has a small contact area with the screw and the chocolate powder and a strong pressure. If the force is not well controlled, it may easily cause damage to the chocolate powder. A wrench must be used for operation, which is not convenient enough. The adhesive fixing method requires double-sided tape on the outer packaging of the chocolate powder. If the chocolate powder is taken out of the sleeve, the outer packaging of the chocolate powder may be damaged and unsightly, or the double-sided tape may reduce in viscosity over time, affecting the firmness of the fixation.

[0003] The utility model is a box body with a certain volume formed by overlapping multiple layers of rings and bottom layers. The chocolate powder placed therein is tied and fixed with ropes. The tighter the ropes are pulled, the smaller the middle diameter of the ring formed by the ropes is within a certain range. Therefore, it is suitable for chocolate powder of various shapes and sizes. The force points where the chocolate powder is fixed are all around, and the fixation is stable. If the changes of the chocolate powder and the chocolate cover during use affect the firmness of the fixation, the ropes can be tightened to tie it up and keep the chocolate powder firm. The structure is multi-layer overlapping, with multiple gaps between the sheets in the horizontal direction, which can increase the number of binding ropes and hide the ropes, so as to effectively fix the chocolate powder while maintaining the overall beauty. Summary of the Invention

[0004] The utility model aims to provide a tether-tightening billiard chocolate powder cover to solve the problem that the existing billiard chocolate powder cover has great limitations in adapting to the shape and size of chocolate powder.

[0005] The purpose of this utility model is achieved through the following scheme

[0006] 1. The utility model includes an annular layer 1, an annular layer 2, an annular layer 3, an annular layer 4, a magnet sheet 5, a magnet layer 6, a bottom layer 7, a suture 8, and a binding rope 9.

[0007] 2. The annular layer 1, annular layer 2, annular layer 3, and annular layer 4 of the present invention are all in the shape of a sheet-like rounded square ring with holes distributed on it. The magnet sheet 5 is a sheet-like rounded square, with a circular hole in the middle having a diameter not less than that of the magnet sheet 5, and holes distributed near the edges. The bottom layer 7 is a sheet-like rounded square with holes distributed near the edges. The sutures 8 and the binding ropes 9 are both ropes with a certain toughness. The annular layer 1, annular layer 2, annular layer 3, annular layer 4, magnet layer 6, and bottom layer 7 are overlapped in order from top to bottom. Together, one end of the suture 8 starts to pass through the corresponding holes in the middle of any two layers in turn, and the other end is always outside. After the two ends meet, tie a knot and stuff the knot into the gap where it is to make it a whole. One end of the binding rope 9 is inserted from the outside to the inside in the middle position of one of the sides of the gap between the annular layer 1 and the annular layer 2, and then passes out from the inside to the outside after two holes, and then passes through after one hole. According to this rule, the other end is always outside until both ends of the binding rope 9 are on the outside and there is a hole between them, and the magnet piece 5 is placed in the circular hole of the magnet layer 6.

[0008] 3. When the utility model is in use, the chocolate powder placed therein is tied and fixed with the binding rope 9. Because the tighter the rope is pulled, the smaller the middle diameter of the ring formed by the rope is within a certain range, so it is suitable for chocolate powder of various shapes and sizes. The binding rope 9 can be wrapped again in the gap to make the wrapped chocolate powder more stable. Finally, the two ends are tied tightly and the knot is stuffed into the gap where it is located.

[0009] Compared with the prior art, the present invention has the following effective effects:

[0010] 1. Applicable to chocolate powder of various shapes and sizes.

[0011] 2. It can be made of materials of various thicknesses and various degrees of softness and hardness, and the production materials are extensive.

[0012] 3. Because the direction of the force of the stitches is different from the direction of the chocolate powder extrusion, it is strong and durable and not easy to deform. BRIEF DESCRIPTION OF THE DRAWINGS

[0013] Figure 1 This is a schematic diagram of the various components of the utility model

[0014] Figure 2 This is a schematic diagram of the arrangement of the components of the present invention.

[0015] Figure 3 This is a three-dimensional diagram of the utility model after partial assembly

[0016] Figure 4 This is a bottom stereogram of the partially assembled version of the utility model.

[0017] Figure 5 This is a three-dimensional diagram of the utility model

[0018] Figure 6 This is a top view of the utility model

[0019] Figure 7 This is a top view of the utility model in a tightened state of the binding rope

[0020] Figure 8 This is a top view of the use and installation of the utility model

[0021] Figure 9 This is a top view of the utility model in the tightened state of the installation rope

[0022] Figure 10 This is the usage state diagram of the utility model

[0023] In the figure, 1. Ring layer 1, 2. Ring layer 2, 3. Ring layer 3, 4. Ring layer 4, 5. Magnet sheet, 6. Magnet layer, 7. Bottom layer, 8. Suture, 9. Binding rope. DETAILED DESCRIPTION

[0024] A tether-tightening billiard chocolate powder cover comprises the following steps:

[0025] 1. The utility model includes an annular layer 1, an annular layer 2, an annular layer 3, an annular layer 4, a magnet sheet 5, a magnet layer 6, a bottom layer 7, a suture 8, and a binding rope 9.

[0026] 2. The annular layer 1, annular layer 2, annular layer 3, and annular layer 4 of the present invention are all in the shape of a sheet-like rounded square ring with holes distributed on it. The magnet sheet 5 is a sheet-like rounded square, with a circular hole in the middle having a diameter not less than that of the magnet sheet 5, and holes distributed near the edges. The bottom layer 7 is a sheet-like rounded square with holes distributed near the edges. The sutures 8 and the binding ropes 9 are both ropes with a certain toughness. The annular layer 1, annular layer 2, annular layer 3, annular layer 4, magnet layer 6, and bottom layer 7 are overlapped in order from top to bottom. Together, one end of the suture 8 starts to pass through the corresponding holes in the middle of any two layers in turn, and the other end is always outside. After the two ends meet, tie a knot and stuff the knot into the gap where it is to make it a whole. One end of the binding rope 9 is inserted from the outside to the inside in the middle position of one of the sides of the gap between the annular layer 1 and the annular layer 2, and then passes out from the inside to the outside after two holes, and then passes through after one hole. According to this rule, the other end is always outside until both ends of the binding rope 9 are on the outside and there is a hole between them, and the magnet piece 5 is placed in the circular hole of the magnet layer 6.

[0027] 3. When the utility model is in use, the chocolate powder placed therein is tied and fixed with the binding rope 9. Because the tighter the rope is pulled, the smaller the middle diameter of the ring formed by the rope is within a certain range, so it is suitable for chocolate powder of various shapes and sizes. The binding rope 9 can be wrapped again in the gap to make the wrapped chocolate powder more stable. Finally, the two ends are tied tightly and the knot is stuffed into the gap where it is located.

[0028] The present invention will be described in detail below with reference to the embodiments, and the purpose and effects of the present invention will become more apparent.

[0029] Example 1:

[0030] When using the existing sleeve-type extrusion type chocolate powder sleeve, it is fixed by stuffing the chocolate powder into the chocolate powder sleeve with a certain pressure. Most of this type of chocolate powder is made of soft materials. During use, slight deformation of the chocolate powder or the chocolate powder sleeve may affect the firmness of the fixation of the chocolate powder. If chocolate powder of other shapes or sizes is replaced, it is highly likely that it will not be adaptable. At this time, using the utility model, the tighter the rope is pulled, the smaller the middle diameter of the ring formed by the rope is within a certain range, so it is suitable for chocolate powder of various shapes and sizes. If the deformation of the chocolate powder or the chocolate powder sleeve during use affects the firmness of the fixation, the rope can be tightened to tie it up and keep the chocolate powder firm. Since the direction of the force of the suture is different from the direction of squeezing the chocolate powder, the chocolate powder is strong, durable and not easy to deform.

[0031] Example 2:

[0032] When using the existing screw-extrusion fixed chocolate powder sleeve, the contact area between the screw and the chocolate powder is small and the pressure is strong. If the force is not well controlled, it is easy to cause damage to the chocolate powder. The operation requires a wrench, which is not convenient. Most of these are made of hard materials and can easily damage the billiard cue tip if used improperly. At this time, with the utility model, the force points for fixing the chocolate powder are all around, so that the chocolate powder is evenly stressed and fixed stably. Moreover, it is made of soft material and will not cause damage to the billiard cue tip even if it touches the billiard cue tip.

[0033] Example 3:

[0034] When using an adhesive-fixed chocolate powder cover, double-sided tape needs to be attached to the outer packaging of the chocolate powder. If the chocolate powder is taken out of the cover, the outer packaging of the chocolate powder may be damaged and unsightly, or the adhesiveness of the double-sided tape may decrease over time, affecting the firmness of the fixation. At this time, using the utility model, the outer packaging of the chocolate powder can be intact when the chocolate powder fixed in the utility model is taken out. The fixing method is physical bundling and extrusion, and the firmness of the fixation will not be affected by factors such as time.

[0035] The utility model mainly utilizes soft thin materials and utilizes shearing and sewing techniques to overlap multiple layers of rings and bottom layers into a box body with a certain volume, and uses ropes to bind and fix the chocolate powder placed therein. Because the tighter the ropes are pulled, the smaller the middle diameter of the ring formed by the ropes is within a certain range, so it is suitable for chocolate powder of various shapes and sizes. The force points where the chocolate powder is fixed are all around, and the fixation is stable. Because the direction of the force of the sewing threads is different from the direction of squeezing the chocolate powder, the box is strong, durable and not easy to deform. The structure is multi-layer overlapping, and there are gaps between multiple pieces in the horizontal direction, which can increase the number of binding ropes and hide the ropes, so as to effectively fix the chocolate powder while maintaining the overall beauty.

[0036] The above examples are used to illustrate the present invention rather than to limit the present invention. Any modifications and changes made to the present invention within the spirit of the present invention and the protection scope of the claims shall fall within the protection scope of the present invention.

Claims

1. A rope-tightening billiard chocolate powder cover, comprising a ring-shaped layer 1 (1), a ring-shaped layer 2 (2), a ring-shaped layer 3 (3), a ring-shaped layer 4 (4), a magnet sheet (5), a magnet layer (6), a bottom layer (7), a suture (8), and a binding rope (9), characterized in that: The annular layer 1 (1), the annular layer 2 (2), the annular layer 3 (3) and the annular layer 4 (4) are all in the shape of a sheet-like rounded square ring with holes distributed on it. The magnet sheet (5) is a sheet-like rounded square. There is a circular hole in the middle with a diameter not less than that of the magnet sheet (5). There are holes distributed near the edges. The bottom layer (7) is a sheet-like rounded square with holes distributed near the edges. The suture (8) and the binding rope (9) are both ropes with a certain toughness. The annular layer 1 (1), the annular layer 2 (2), the annular layer 3 (3), the annular layer 4 (4), the magnet layer (6) and the bottom layer (7) are arranged in order from top to bottom. The two layers are overlapped in sequence, one end of the suture (8) starts to pass through the corresponding holes in the middle of any two layers in sequence, and the other end is always outside. After the two ends meet, they are tied tightly and knotted, and the knot is stuffed into the gap where it is located to make it a whole. One end of the binding rope (9) is inserted from the outside to the inside in the middle position of one side of the gap between the ring layer 1 (1) and the ring layer 2 (2), and then passes out from the inside to the outside after two holes are separated, and then passes through after one hole is separated. According to this rule, the other end is always outside until both ends of the binding rope (9) are on the outside and there is a hole between them. The magnet piece (5) is placed in the circular hole of the magnet layer (6).

2. The tether-tightening billiard chocolate powder cover according to claim 1, characterized in that: The annular layer 1 (1), annular layer 2 (2), annular layer 3 (3), annular layer 4 (4), magnet layer (6) and bottom layer (7) are all made of soft and thin materials, and their edges and holes distributed near the edges can overlap. The inner and outer edges and holes of the annular layer 1 (1), annular layer 2 (2), annular layer 3 (3) and annular layer 4 (4) can overlap.