Frame components for cord-like knitted products and furniture equipped therewith

The skeletal component with locking components and positioning rings simplifies the weaving process for cord-like products, addressing labor and material costs while enhancing aesthetics and design flexibility.

JP3255415UActive Publication Date: 2026-04-08JIAXING PORT DISTRICT QUANSHUN RIBBON
View PDF 0 Cites 0 Cited by

Patent Information

Authority / Receiving Office
JP · JP
Patent Type
Utility models
Current Assignee / Owner
Filing Date
2025-12-05
Publication Date
2026-04-08

AI Technical Summary

Technical Problem

Existing woven obi furniture manufacturing methods are labor-intensive, costly, and aesthetically inferior due to material wastage and complex weaving processes, making mass production impossible and limiting design flexibility.

Method used

A skeletal component for cord-like products with detachable locking components and positioning rings that simplify the weaving process by securing string-like components through the skeletal body, reducing material and labor costs, and allowing for easy pattern changes.

Benefits of technology

Simplifies the weaving process, reduces material and labor costs, enhances aesthetic appeal, and allows users to freely create patterns, making production more efficient and cost-effective.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure 0003255415000001_ABST
    Figure 0003255415000001_ABST
Patent Text Reader

Abstract

The present invention provides a skeletal component for cord-like knitted products and furniture equipped therewith, which facilitates material conservation, reduces the number of steps in the knitting process, and lowers material and labor costs. [Solution] The skeletal component for the cord-like knitted product includes a skeletal body 40, to which a plurality of locking components are detachably attached. The locking components include positioning rings 30, which are used to secure the cord-like components by passing them through different positioning rings on the skeletal body. The cord-like components can be completed by passing them through different positioning rings on the skeletal body. The positioning rings function as stress points for the knitted furniture components and provide fixing points for the cord-like components used for knitting. The cord-like components are secured by simply passing them through the positioning rings once.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention belongs to the field of furniture production, and particularly relates to a skeletal component of a cord-shaped component knitted product and a furniture including this component.

Background Art

[0002] Knitting art is loved by people for its beautiful design, high artistic quality, and excellent durability. On the other hand, woven belts are widely used in furniture such as indoor and outdoor household items, seating furniture, and decorative items due to their affordable price, comfortable texture, high plasticity, and diverse designs.

[0003] The manufacturing methods for the woven obi furniture currently sold on the market still employ traditional methods. Specifically, the obi is typically wrapped around the furniture frame and tied into a cord-like shape during the weaving process. As shown in Figure 1-4, in the existing weaving process, when making seats or screens, each time the furniture needs to be secured, the obi must be wrapped around the outside of the frame several times before being woven once, and in many cases, the obi must be woven on both sides of the frame. Therefore, existing woven obi furniture can only be manufactured by hand using complicated procedures, making mass production impossible. Furthermore, the wrapping and double weaving of the obi requires a lot of material, resulting in excessively high material costs for the obi. At the same time, the labor costs for the weaving work are also high, and there is a problem that labor costs account for a large proportion of the total product cost. When the obi is wrapped around the outside, the overall aesthetic appearance is inferior, and it is particularly difficult to weave satisfactorily at T-shaped and intersecting sections, making complete weaving impossible. As a result, the base material is often visible (see Figures 2 and 4), and gaps where weaving cannot be created also occur (see the blank area in the center of Figure 2). This presents difficulties in both shielding and aesthetics. Moreover, it is prone to getting dirty and difficult to wash, so the contours and structure of the product cannot be fully expressed. Furthermore, conventional weaving methods are relatively complex and require a certain level of technical skill, and users often end up with molded woven products, unable to change the color or pattern of the woven band themselves. Even skilled producers find it difficult to modify the product after weaving and molding unless it is completely disassembled. This invention provides a skeletal component made of cord-like parts, including but not limited to woven bands, rattan, and rope. As shown in Figure 5, there is no need to wrap it around the frame's structure, simplifying the manufacturing process of woven band furniture. Only a single layer of woven band needs to be woven in the middle of the frame, saving materials used for weaving and reducing production costs. In addition, two-layer or multi-layer woven bands can be woven as needed, meeting diverse needs. Furthermore, the resulting furniture has high aesthetic value, and users can freely weave various patterns and styles based on their own designs and requirements. You can freely create patterns using your own creativity and imagination. If you want to change the pattern or colors after knitting and shaping, you can easily do so yourself.As shown in Figure 6, the left side shows furniture employing the present invention, which has a clear and orderly overall outline, superior aesthetics, and low material costs due to the small amount of material used. The right side shows conventional woven furniture, where the outline is wrapped with string-like components but not completely, resulting in an unclear outline, inferior aesthetics, and high material costs. [Overview of the Initiative] [Problems that the invention aims to solve]

[0004] This invention provides a skeletal component made of string-like parts and furniture including the same, in order to solve the problems raised in the above background art. [Means for solving the problem]

[0005] To achieve the above objectives, this invention provides the following technical solutions: This invention relates to a skeletal component for a string-like woven product, and includes a skeletal body, to which a plurality of locking components are detachably attached. The locking components include positioning rings, which are used to secure the string-like components by passing them through the positioning rings. The woven product can be completed by passing the string-like components through the different positioning rings on the skeletal body. By adopting the above technical solution, the skeletal component functions as a stress point for the woven furniture component, providing a fixing point for the woven string-like component. Compared to conventional winding and staple fixing methods, in this invention, the string-like component is fixed by passing it through the guide ring only once, thus saving materials, simplifying the weaving process, and reducing material and labor costs.

[0006] Furthermore, the frame body is hollow, and an elongated fixing component is provided inside the frame body, with multiple lock component attachment points provided on the fixing component. Notches are provided on the sides of the frame body, and the lock components can be attached to the attachment points of the fixing component through the notches on the outside of the frame body. After attachment is complete, the entire lock component is located inside the frame body. By adopting the above technical solution, the entire lock component is hidden inside the frame body, and after knitting, the string-like component extends from inside the frame body and is exposed. Compared to the conventional method of wrapping around the outside of the frame, the aesthetic appearance of the knitted product is improved, the string-like component is less prone to getting dirty, and at the same time, the outline of the frame body becomes clearer.

[0007] As an option, multiple mounting points are provided on the outside of the frame body, and the locking component can be attached to any of the mounting points on the outside of the frame body. After attachment is complete, the positioning ring of the locking component is exposed on the outside of the frame body. By adopting the above technical solution, the locking component is attached to the outside of the frame body, making it easy to attach the locking component and also simplifying the knitting process.

[0008] Furthermore, the skeletal body has notches on one or both sides. If a notch is provided on only one side of the skeletal body, one fixing component is provided inside; if notches are provided on both sides, two fixing components are provided inside. By adopting the above technical solution, fixing components are attached to both sides to achieve joining, further enhancing the symmetry of the product and reducing the likelihood of asymmetrical visual effects. The woven elements of the string-like components arranged on both sides of the skeletal body cooperate with each other, resulting in a wider variety of weaving methods and diversifying the designs of the weaving patterns. It is possible to freely weave any pattern, allowing users to enjoy unrestrained creation by making full use of their creativity and imagination.

[0009] Furthermore, the locking component further includes a locking portion, the locking portion being fixedly connected to a positioning ring, the locking component being detachably connected to any mounting portion via the locking portion, the mounting portion being arranged on a fixing component, and after the locking component is attached to the mounting portion, the plane on which the positioning ring is located is perpendicular or parallel to the longitudinal direction of the frame body. By adopting the above technical solution, the locking component can be attached to different connection points depending on the braiding pattern. If it is necessary to change the braiding pattern or color, the locking component can be removed and reattached to the corresponding connection point. More preferably, during braiding, the string-like components are passed through the positioning ring, and then the braiding is completed by fixing the locking components to the corresponding mounting points on the frame body one by one, or in the order and according to the design requirements. Optionally, it is also possible to fix the locking component to the frame body first before braiding.

[0010] Furthermore, the mounting portion is an E-shaped hole of different widths, the maximum cross-sectional area of ​​the locking portion is smaller than the wide horizontal hole of the E-shaped hole, and the maximum cross-sectional area of ​​the locking portion is larger than the narrow horizontal hole of the E-shaped hole. After the locking portion passes through the wide horizontal hole of the E-shaped hole on the fixing part, it moves parallel to the narrow horizontal hole of the E-shaped hole and is pulled back, thereby locking the locking portion into the narrow horizontal hole of the E-shaped hole, and thus fixing the locking component to the frame body. By adopting the above technical solution, the locking component can be attached to the frame body more quickly, there is no need to rotate the locking component, and the direction of the positioning ring is always kept consistent before and after attachment.

[0011] Optionally, the mounting portion is a cross-shaped hole, and the cross-sectional area of ​​one end of the locking portion away from the positioning ring is larger than the cross-sectional area of ​​the other end closer to the positioning ring. The locking portion passes vertically through the vertical hole of the cross-shaped hole on the fixing part, rotates horizontally, and then is pulled back, thereby locking the locking portion into the horizontal hole of the cross-shaped hole, and thus locking the locking part to the frame body. By adopting the above technical solution, snap-type fixing and unlocking become very simple and convenient, and the structure is also compact.

[0012] Furthermore, the locking portion is stepped, with one end of the locking portion furthest from the positioning ring being the first locking portion, and the other end of the locking portion closer to the positioning ring being the second locking portion, the second locking portion being platform-shaped, the upper cross-section of the second locking portion being smaller than or equal to the size of the lateral hole, and the lower cross-section of the second locking portion being slightly larger than the size of the lateral hole. By adopting the above technical solution, the production of straight holes becomes easier and production costs can be reduced while ensuring structural stability.

[0013] As an option, the locking portion is trapezoidal, and the inside of the horizontal hole is provided with an inclined surface having the same inclination angle as the inclined surface corresponding to the locking portion, so that when the locking portion is fitted into the horizontal hole, the inclined surface of the locking portion and the inclined surface inside the horizontal hole are in close contact.

[0014] Furthermore, a connecting portion is provided between the second locking portion and the positioning ring. The connecting portion is cylindrical, its diameter is less than or equal to the diameter of the inscribed circle at the center of the cross-shaped hole, and its thickness is greater than or equal to the thickness of the cross-shaped hole. A protrusion is fixedly connected to the outer side of one end of the positioning ring furthest from the locking portion to facilitate the attachment of the locking component. By adopting the above technical solution, the locking component has sufficient rotational space within the cross-shaped hole, and at the same time, the attachment and removal of the locking component is made easier, improving work efficiency. [Effects of the Invention]

[0015] This invention relates to a type of furniture that includes the skeletal components described in any one of the above-mentioned items, wherein the skeletal main body forms the furniture frame, and string-like components are passed through positioning rings of the skeletal main body to weave and fill panel units surrounding the frame, thereby forming the furniture body. By adopting the above technical method, the weaving work becomes easier, the amount of material used for weaving is reduced, the production cost of the furniture is reduced, and production efficiency can be greatly improved.

[0016] In order to make the above and other objects, features, and advantages of the present invention clearer and easier to understand, preferred embodiments will be given below and described in detail with reference to the drawings.

Brief Explanation of Drawings

[0017] In order to more clearly explain the specific embodiments of the present invention or the technical solutions in the prior art, the drawings used in the description of the specific embodiments or the prior art will be briefly introduced below.

[0018] The drawings in the following description are some embodiments of the present invention. For those skilled in the art, other drawings can also be obtained based on these drawings without the need for creative labor.

[0019] [Figure 1] Image diagram of a screen produced by traditional knitting process. [Figure 2] Partial enlarged image diagram of a screen produced by traditional knitting process. [Figure 3] Image diagram of a seating furniture produced by traditional knitting process. [Figure 4] Partial enlarged image diagram of a seating furniture produced by traditional knitting process. [Figure 5] Image diagram of a screen for furniture in the present invention. [Figure 6] Comparison image diagram of the screen for furniture in the present invention (left) and the screen for traditional knitted furniture (right). [Figure 7] Enlarged image diagram (No. 1) of the screen for furniture in the present invention. [[ID=3E]] [Figure 8] Enlarged image diagram (No. 2) of the screen for furniture in the present invention. [Figure 9] Three-dimensional image diagram (No. 1) of the locking component in the present invention. [Figure 10] Three-dimensional image diagram (No. 2) of the locking component in the present invention. [Figure 11] Three-dimensional image diagram (No. 3) of the locking component in the present invention. [Figure 12] Cross-sectional image diagram of the skeletal component in the present invention. [Figure 13] Cross-sectional comparison image diagrams of the skeletal parts with different shapes in the present invention. [Figure 14] Front image diagram of the skeletal part in the present invention. [Figure 15] Front image diagram of the fixing part in the present invention. [Figure 16] Cross-hole image diagram of the skeletal part in the present invention. [Figure 17] Mounting part image diagram of the skeletal part in the present invention (Part 1). [Figure 18] Mounting part image diagram of the skeletal part in the present invention (Part 2). [Figure 19] Image diagram of the string-shaped part panel unit in the present invention (Part 1). [Figure 20] Image diagram of the string-shaped part panel unit in the present invention (Part 2). [Figure 21] Comparison image diagram of the skeletal main body with a notch on one side and the skeletal main body with notches on both sides in the present invention. [Figure 22] Mounting image diagram of the skeletal main body and the locking part in the present invention. [Figure 23] Exploded image diagram of the skeletal main body and the locking part in the present invention. [Figure 24] Mounting image diagram of the E-shaped hole of the present invention and the locking part. [Figure 25] Top view of the external connection structure between the skeletal main body and the locking part in the present invention. [Figure 26] Stereo view of the external connection structure between the skeletal main body and the locking part in the present invention. [Figure 27] Knitting image diagram of the furniture of the present invention (Part 1). [Figure 28] Knitting image diagram of the furniture of the present invention (Part 2). [Figure 29] Seat image diagram of the furniture of the present invention (Part 1). [Figure 30] Seat image diagram of the furniture of the present invention (Part 2).

Modes for Carrying Out the Invention

[0020] In this description of the invention, any component referred to as "fixed" or "installed" on another component should be understood to be able to be positioned directly or indirectly on that other component. When a component is said to be "connected" to another component, it means that it is connected either directly or indirectly.

[0021] In describing this invention, the following points must be clearly stated: Directions or positional relationships indicated by terms such as "center," "length," "width," "thickness," "top," "bottom," "front," "back," "left," "right," "vertical," "horizontal," "top," "bottom," "inside," and "outside" are based on the directions or positional relationships shown in the drawings, or the directions or positional relationships conventionally arranged when the invention product is used, and are merely for the purpose of facilitating the description of this invention and simplifying the writing. Therefore, these terms do not suggest or imply that the device or element in question has a specific direction, or that it must be configured and operated in a specific direction, and should not be interpreted as a limitation on this invention. Furthermore, terms such as "first," "second," and "third" are for explanatory distinction purposes only and should not be understood as indicating or implying relative importance. Accordingly, features with qualifiers such as "first" and "second" explicitly or implicitly include one or more such features. In the description of this invention, "plural" means two or more unless otherwise specified. The meaning of "slightly" refers to one or more people unless otherwise clearly and specifically defined.

[0022] In describing this invention, the following points should be further clarified: Unless otherwise specifically defined and limited, the terms “installation,” “attachment,” “interconnection,” and “connection” should be interpreted broadly, including, for example, fixed connections, removable connections, or integrally molded connections; mechanical connections; direct connections or indirect connections via an intermediate medium; and connections within two elements. Those skilled in the art will be able to understand the specific meaning of the above terms in this invention depending on the individual circumstances.

[0023] The skeletal components of a cord-like component woven product include a skeletal body 40, as shown in Figure 9-14, and the skeletal body 40 is provided with a plurality of locking components 3, each of which includes a positioning ring 30, which is used to pass and position the cord-like component. The cord-like component can be passed through different positioning rings 30 on the skeletal body 40 to complete the woven product, and the plane on which the positioning rings 30 are located is perpendicular or parallel to the longitudinal direction of the skeletal body 40. The cord-like component includes, but is not limited to, woven ribbon, rattan, rope, etc., and in this embodiment, woven ribbon will be described in more detail as an example. Woven ribbon woven products include indoor and outdoor household goods, seating, and decorative products. The skeletal body 40 can be designed in different shapes depending on the usage scene, and as shown in Figure 13, the longitudinal cross-section of the skeletal body may be a square, trapezoid, circle, rectangle, or other irregular shape. The entire skeletal body can also be designed in a standard shape or irregular shape as needed. For example, when used as a chair backrest, the frame body 40 is designed with a rectangular lower section and an arc-shaped upper section, and multiple locking components 3 are connected to the inside, allowing the interior to be filled with woven strips. After filling, a seat backrest with excellent support and elasticity is obtained. When used as a furniture frame, the frame body 40 can be designed to include multiple rectangular units that intersect vertically and horizontally, and by weaving and filling different rectangular units with woven strips of different patterns, furniture and decorative items that combine shielding and aesthetic appeal can be obtained.

[0024] As shown in FIG. 14, the skeleton body 40 is hollow, and a string-shaped fixing part 20 is provided inside the skeleton body 40. An attachment part for attaching a plurality of locking parts 3 is provided on the fixing part 20. A notch 41 is provided on the side surface of the skeleton body 40, and the locking part 3 penetrates the notch 41 on the outside of the skeleton body and is attached to the attachment part on the fixing part 20. After the attachment is completed, the entire locking part 3 is located inside the skeleton body 40. After the woven belt is knitted as a furniture panel, the locking part 3 is hidden inside the skeleton body 40, and only the woven belt is exposed, resulting in an overall beautiful and refined finish. As an option, as shown in FIGS. 25-26, no fixing part is provided inside the skeleton body 40, the attachment part is installed outside the skeleton body 40, and the locking part 3 is attached outside the skeleton body. This not only facilitates the attachment of the locking part 3 but also makes the knitting work easier.

[0025] As shown in FIGS. 19-21, notches 41 are provided on one or both sides of the skeleton body 40. When notches are provided only on one side of the skeleton body, one fixing part is provided inside. When notches are provided on both sides, two fixing parts are provided inside. Taking the "field" - shaped screen frame as an example, when it is necessary to alternately weave the woven belt vertically and horizontally for all four square panel units, the outer skeleton body only needs to attach the locking part 3 on the inside, but the horizontal and vertical skeleton bodies inside need to connect the locking part 3 on both sides. Therefore, notches 41 are provided on both sides of the inner skeleton body, and two fixing parts are attached inside. As shown in the skeleton body in FIG. 21, the left side is the skeleton body with notches 41 on both sides inside, and the right side is the skeleton body with a notch 41 on one side outside. The upper left end and the right side of FIG. 21 are the locking parts 3 in the locked state, and the lower left end is the locking part 3 in the unlocked state.

[0026] As shown in Figure 9-14, the locking component 3 further includes a locking portion 10, which is fixedly connected to the positioning ring 30. The locking component 3 is detachably connected via the locking portion 10 to any mounting portion arranged on the fixing component 20. After the locking component 3 is attached to the mounting portion, the plane of the positioning ring 30 is perpendicular or parallel to the longitudinal direction of the skeletal body 40. The positioning ring 30 can be manufactured in different sizes and shapes to suit different sizes and shapes of woven strips.

[0027] When creating a woven obi, the obi is passed through the lock component 3, and then the lock component 3 is fixed to the corresponding mounting part of the frame body, one by one, or according to the design requirements and sequence, to complete the weaving. In traditional weaving processes, modifying the weaving pattern requires completely disassembling and reassembling the finished product, and also requires the skill of a highly skilled craftsman. In contrast, with this invention, if it is necessary to partially modify the weaving pattern, it is only necessary to remove the lock component 3 of the part that needs modification and fix it to the appropriate mounting part. Lock components 3 for weaving different patterns correspond to different mounting parts. By simply determining and recording the fixing position of the lock component 3 for each pattern, anyone can obtain the corresponding weaving pattern by fixing the lock component 3 according to the recorded fixing position. This not only reduces the labor cost of the weaving work but also increases the enjoyment for the user. As shown in Figures 27-28, a variety of patterns can be freely woven, resulting in highly practical, decorative, and aesthetically pleasing woven products.

[0028] As shown in Figure 9-11, the positioning ring 30 can be a circular ring, a square ring, an elliptical ring, or the like, and can also be designed in other ring shapes depending on the shape of the woven band. The locking component 3 can be manufactured from metal, carbon fiber, plastic, or other materials, and can be selected as needed for the woven band product. Preferably, the locking component 3 in this embodiment is made of metal.

[0029] As an option, as shown in Figure 17, the mounting portion is an irregularly shaped hole formed by a single vertical hole passing through the horizontal holes, with multiple horizontal holes arranged in parallel. The locking component can be rotated and pulled back after passing through the vertical hole and fixed into any of the horizontal holes.

[0030] Alternatively, as shown in Figures 18 and 24, the mounting portion has E-shaped holes of different widths, with the maximum cross-sectional area of ​​the locking portion 10 being smaller than the wider horizontal hole 61 of the E-shaped hole, and the maximum cross-sectional area of ​​the locking portion being larger than the narrower horizontal hole 62 of the E-shaped hole. After the locking portion 10 passes through the wider horizontal hole 61 of the E-shaped hole on the fixing part 20, it is moved parallel to the narrower horizontal hole 62 and pulled back, thereby locking the locking portion 10 into the narrower horizontal hole 62 of the E-shaped hole, and thus locking the locking component 3 to the frame body 40. The locking component 3 is usually controlled by a jig to facilitate installation. Due to the design of the E-shaped hole, installation of the locking component 3 is completed by only insertion, parallel movement, and pull-back. During parallel movement, it is sufficient to move it directly upwards, and it can be pulled back and locked without readjustment, and rotational movement is unnecessary, making jig control easier.

[0031] As shown in Figure 12-14, the mounting portion of this embodiment is a cross-shaped hole 21, and the cross-shaped hole 21 is either a plum-shaped cross-shaped hole with a smooth edge, or a rectangular cross-shaped hole with a straight edge.

[0032] The locking portion 10 has a larger cross-sectional area at one end farther from the positioning ring 30 than at the other end closer to the positioning ring 30. As shown in Figure 22, the locking portion 10 passes through the vertical hole 212 of the cross-shaped hole in the vertical direction, rotates horizontally, and then the locking component 3 is pulled back, thereby locking the locking portion 10 into the horizontal hole 211 of the cross-shaped hole, and thus locking the locking component 3 to the frame body 40. Since the cross-sectional area of ​​one end of the locking portion 10 is larger than the cross-sectional area of ​​the horizontal hole 211, and the cross-sectional area of ​​the other end is less than or equal to the cross-sectional area of ​​the horizontal hole 211, when pulled back, the end with the smaller cross-sectional area can pass through the horizontal hole 211, but the end with the larger cross-sectional area gets caught outside the horizontal hole 211, and the locking portion 10 is locked inside the horizontal hole 211. As shown in Figure 23, if removal is necessary, the locking component 3 can be removed by pushing it inward and rotating it so that the locking portion 10 of the locking component 3 aligns perpendicularly with the vertical hole. The upper parts of Figures 20 and 21 show the view from directly above, looking from the outside, while the lower parts show the view from the side, looking from the inside.

[0033] As shown in Figures 14-15, the cross holes can be installed in a single or multiple row on the fixing component. As can be understood, the cross holes can be arranged regularly or irregularly. In addition to single and double rows, multi-row arrangements are also possible as needed, and are not limited to the configurations shown in the drawings.

[0034] As an option, the locking portion 10 is trapezoidal. Inside the horizontal hole 211, there is an inclined surface that matches the inclined surface corresponding to the locking portion 10. When the locking portion 10 is locked into the horizontal hole 211, the inclined surface of the locking portion 10 and the inclined surface inside the horizontal hole 211 come into close contact, increasing the contact area, which improves structural stability and provides excellent fixing effect.

[0035] Preferably, as shown in Figure 9, in this embodiment, the lock portion 10 transitions in a stepwise manner from one end farther from the positioning ring 30 to the other end closer to the positioning ring 30. The end of the lock portion 10 farther from the positioning ring 30 is the first lock portion 11, and the end of the lock portion 10 closer to the positioning ring 30 is the second lock portion 12. The cross-sectional shape of the first lock portion 11 is equal to or less than that of the vertical hole 212, and the cross-sectional shape of the first lock portion 11 is larger than that of the horizontal hole 211. The second lock portion is trapezoidal, the upper end cross-sectional shape of the second lock portion is smaller than that of the horizontal hole, and the lower end cross-sectional shape of the second lock portion is larger than that of the horizontal hole. The vertical hole 212 is larger than that of the horizontal hole 211. When the lock portion 10 is locked into the horizontal hole 211, the first lock portion 11 is locked outside the horizontal hole 211, preventing the lock component 3 from falling out even when a strong tactile force is applied. This method ensures structural stability while simultaneously avoiding compressive deformation caused by the inclined surface of the locking part 10. By eliminating the inclined surface, drilling holes in the fixing part 20 becomes easier, contributing to a reduction in production costs.

[0036] As shown in Figure 9, a connecting portion 13 is provided between the second locking portion 12 and the positioning ring 30. The connecting portion 13 is cylindrical, its diameter is less than or equal to the diameter of the inscribed circle 22 at the center of the cross-shaped hole 21, and its thickness is greater than or equal to the thickness of the cross-shaped hole 21. As shown in Figure 12, the inscribed circle 22 is the circle with the largest diameter centered at the center of the cross-shaped hole and tangent to the inner wall of the cross-shaped hole. When the locking portion 10 is inserted into the cross-shaped hole 21, the first locking portion 11 and the second locking portion 12 pass through the vertical hole 212 of the cross-shaped hole 21, and the connecting portion 13 is positioned inside the cross-shaped hole 21. When the locking component 3 is rotated, the connecting portion 13 rotates in the center of the cross-shaped hole 21, and after the locking portion 10 is inserted into the cross-shaped hole 21, it changes from a vertical to a horizontal state. As shown in Figure 9-11, the positioning ring can be designed with a uniform thickness or with one end being thicker and the other thinner. In this embodiment, the positioning ring 30 is designed so that the thickness of the end furthest from the locking portion 10 is greater than the thickness of the end closer to the locking portion 10. This design, where the thickness of the positioning ring 30 is greater at one end and smaller at the other, increases the stress surface area in contact with the positioning ring 30 after the woven strip passes through it, thereby actually strengthening the structural stability. At the same time, the spacing between adjacent woven strips during knitting can be adjusted by changing the thickness of the positioning ring. As can be understood, the spacing between adjacent woven strips mainly depends on the spacing setting of the cross holes. In other words, the spacing of the woven strips is determined by the spacing setting of multiple cross holes. However, once the setting of the cross holes is complete, that spacing is fixed and cannot be changed. In this case, the spacing of the woven strips can be changed by using positioning rings 30 of different thicknesses.

[0037] As shown in Figure 9-11, a protrusion 31 is fixedly connected to the outer side of one end of the positioning ring 30 that is away from the locking portion 10, and the locking component 3 can be easily fixed or removed by gripping the protrusion 31 with a jig.

[0038] This invention relates to a type of furniture and includes any of the above-mentioned skeletal assembly components, as shown in Figures 27-30. The skeletal main body 40 forms the main frame of the furniture, and the string-like component 50 is woven through a positioning ring 30 provided on the skeletal main body 40 to fill the inside of the frame and form a furniture panel.

[0039] The aforementioned furniture includes, but is not limited to, seating, bedding, screens, partitions, etc., for indoor or outdoor use. The aforementioned string-like components include, but are not limited to, woven bands, rattan, ropes, etc., and in this embodiment, woven bands will be described in more detail as an example.

[0040] The aforementioned furniture is composed of multiple panel units, and as shown in Figures 27-28, the woven strips of the panel units can be woven in horizontal, diagonal, cross, and various patterned designs, and can be woven according to the individual needs of the user.

[0041] Although the embodiments described above have been explained in this specification, this does not limit the scope of protection of the present invention. Therefore, any changes and modifications to the embodiments described herein, or equivalent structural or process transformations using the contents of the specification and drawings of the present invention, or any application of the above-mentioned technical solution directly or indirectly to other related technical fields, based on the innovative concept of the present invention, shall all be included in the scope of protection of the present invention. [Explanation of Symbols]

[0042] In the diagram: 10, locking part; 11, first locking part; 12, second locking part; 13, connecting part; 20, fixing part; 21, cross hole; 211, horizontal hole; 212, vertical hole; 22, inscribed circle; 3, locking part; 30, positioning ring; 31, protrusion; 40, main frame; 41, notch; 50, string-like part; 61, wide horizontal hole; 62, narrow horizontal hole.

Claims

1. A skeletal component of a string-like knitted product, The skeletal component comprises a skeletal body (40), to which a plurality of locking components (3) are detachably attached, the locking components include positioning rings (30), the positioning rings (30) are used to secure the string-like components by passing them through different positioning rings (30) on the skeletal body, and the skeletal component is characterized in that the skeletal component can be completed by passing the string-like components through different positioning rings (30) on the skeletal body.

2. In the skeletal component of the string-like component knitted product according to claim 1, The frame component for a string-like component knitting product is characterized in that the frame body (40) is hollow, a long string-shaped fixing component (20) is provided inside the frame body (40), the fixing component (20) is provided with mounting parts for attaching a plurality of locking components (3), a notch (41) is provided on the side of the frame body (40), the locking components (3) pass through the notch (41) on the outside of the frame body and are attached to the mounting parts on the fixing component (20), and after the attachment is complete, the entire locking component (3) is located inside the frame body (40).

3. In the skeletal component of the string-like component knitted product according to claim 1, A frame component for a string-like knitted product, characterized in that a plurality of mounting parts are provided on the outside of the frame body, the locking part (3) can be attached to any of the mounting parts on the outside of the frame body, and after attachment is complete, the positioning ring (30) of the locking part (3) is exposed on the outside of the frame body (40).

4. In the skeletal component of the string-like component knitted product according to claim 2, The skeletal component of a string-like knitted product is characterized in that the skeletal main body (40) has notches (41) on one or both sides thereof, and if the notches (41) are provided on only one side of the skeletal main body (40), one fixing component (20) is provided inside it, and if the notches (41) are provided on both sides, two fixing components (20) are provided inside it.

5. In the skeletal component of the string-like component knitted product according to claim 4, The locking component (3) further includes a locking portion (10), the locking portion (10) is fixedly connected to a positioning ring (30), the locking component (3) is detachably connected via the locking portion (10) to any mounting portion arranged on the fixing component, and after the locking component (3) is attached to the mounting portion, the plane on which the positioning ring (30) is located becomes perpendicular or parallel to the longitudinal direction of the skeletal body (40), characterized in that this is a skeletal component for a string-like component knitted product.

6. In the skeletal component of the string-like component knitted product according to claim 5, The mounting portion has E-shaped holes of different widths, the maximum cross-sectional area of ​​the locking portion (10) is smaller than the wider horizontal hole (61) of the E-shaped hole, and the maximum cross-sectional area of ​​the locking portion (10) is larger than the narrow horizontal hole (62) of the E-shaped hole, and after the locking portion (10) passes through the wider horizontal hole (61) of the E-shaped hole of the fixing component (20), it moves to the narrow horizontal hole (62) and is pulled back, thereby locking the locking portion (10) into the narrow horizontal hole (62) of the E-shaped hole, thereby fixing the locking component (3) to the frame body (40), characterized in that the frame component of a string-like component knitting product.

7. In the skeletal component of the string-like component knitted product according to claim 5, The mounting portion is a cross-shaped hole (21), the locking portion (10) has a larger cross-sectional area at one end farther from the positioning ring (30) than at the other end closer to the positioning ring (30), the locking portion (10) passes vertically through the vertical hole (212) of the cross-shaped hole of the fixing component (20), rotates horizontally, and then is pulled back, thereby locking the locking portion (10) into the horizontal hole (211) of the cross-shaped hole, and thereby fixing the locking component (3) to the skeletal body (40), characterized in that the skeletal component of a string-like component knitted product.

8. In the skeletal component of the string-like component knitted product according to claim 7, The locking portion (10) is stepped, one end of the locking portion (10) farther from the positioning ring (30) is a first locking portion (11), and the other end of the locking portion (10) closer to the positioning ring (30) is a second locking portion (12), the second locking portion is platform-shaped, the upper cross-section of the second locking portion is smaller than or equal to the size of the lateral hole, and the lower cross-section of the second locking portion is slightly larger than the size of the lateral hole, characterized in that it is a skeletal component for a string-like component knitted product.

9. In the skeletal component of the string-like component knitted product according to claim 7, The locking portion (10) is platform-shaped, and the inside of the horizontal hole (211) is provided with an inclined surface having the same inclination angle as the inclined surface of the locking portion (10), so that when the locking portion (10) is locked inside the horizontal hole (211), the inclined surface of the locking portion (10) and the inclined surface inside the horizontal hole (211) come into close contact, characterized in that this is a skeletal component for a cord-like component knitted product.

10. In the skeletal component of a string-like knitted product according to claim 8 or 9, A skeletal component of a string-like component knitting product is characterized in that a connecting portion (13) is provided between the locking portion (10) and the positioning ring (30), the connecting portion (13) is cylindrical, the diameter of the connecting portion (13) is less than or equal to the diameter of the inscribed circle (22) of the center of the cross hole (21), the thickness of the connecting portion (13) is greater than or equal to the thickness of the cross hole (21), and a protrusion (31) for facilitating the attachment of the locking component (3) is fixedly connected to the outer side of the end of the positioning ring (30) furthest from the locking portion (10).

11. Includes a skeletal component of a string-like component knitted product according to any one of claims 1 to 10, The furniture is characterized in that the main frame (40) forms the furniture frame, and string-like components are passed through the positioning ring (30) of the main frame (40) to weave and fill the panel units surrounding the frame, thereby forming the furniture body.