Skeleton Structure and Methods
Patent Information
- Application Number
- TW113148732
- Authority / Receiving Office
- TW · TW
- Patent Type
- Patents
- Current Assignee / Owner
- Filing Date
- 2024-12-13
- Publication Date
- 2026-09-11
- Estimated Expiration
- 2044-12-12
AI Technical Summary
Conventional interior decoration methods require on-site cutting and additional processing, leading to high labor costs, noise pollution, environmental waste, and inefficient manufacturing due to the need for different skeletal components for various locations, which are not intuitive to assemble.
A frame structure with identical external dimensions on all sides, allowing connectors to be intuitively inserted and rotated into locking parts through through-holes, eliminating the need for on-site cutting and enabling quick assembly of floor, wall, and ceiling structures using a single type of frame component, reducing waste and labor requirements.
The solution facilitates fast, cost-effective, and environmentally friendly construction by minimizing waste, reducing labor needs, and enhancing manufacturing efficiency while ensuring precise alignment and structural integrity, thus improving project efficiency and reducing noise and pollution.
Smart Images

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Abstract
Description
Technical Field
[0001] The present invention provides a framework structure and method that allows workers to quickly complete interior decoration without on-site cutting or additional processing, simply by assembling and installing it directly on-site, effectively saving manpower and eliminating the need for excessive workers for assembly. Prior Technology
[0002] Note that, when it comes to renovating old houses or decorating new ones, it is often necessary to knock down walls and re-lay floors. This not only increases the additional cleaning and transportation costs, but also generates a lot of noise during the knocking process, which affects the neighbors. Moreover, knocking down, re-laying, and cleaning all require a lot of time and money, which is obviously not competitive in today's fast-paced society. In addition, traditional renovation methods mostly require a lot of manpower. When more manpower is needed, corresponding personnel costs must be paid. Indeed, a large part of renovation costs comes from labor costs, which leads to the persistently high cost of renovation and makes many people hesitate to do it.
[0003] Furthermore, with current skeletal technology, the skeletal components used in interior decoration on the floor are not the same as those used on walls, and even those used on ceilings are not entirely the same. This means that factories must manufacture different skeletal components for different locations, increasing manufacturing costs. In particular, the connectors that bridge one skeletal component to another must be inserted from the end of the skeletal component and moved to the appropriate position before being fixed. This is quite troublesome, as workers must insert them from one end and cannot directly place them into the skeletal component at the required position. The overall construction is not intuitive and also affects the progress of the project.
[0004] Therefore, how to solve the aforementioned problems and shortcomings of conventional methods is the direction that the applicant of this invention and related manufacturers in this industry urgently want to study and improve. Summary of the Invention
[0005] Therefore, in view of the above-mentioned deficiencies, the inventor of this invention collected relevant information, conducted extensive evaluations and considerations, and, based on years of experience accumulated in this industry, through continuous trial and modification, designed the structure and method of this frame that allows workers to quickly complete interior decoration without on-site cutting and additional processing, and only needs to assemble and install it directly on-site, effectively saving manpower and eliminating the need for excessive workers for assembly.
[0006] The main objective of this invention is to allow the connector to be intuitively and directly inserted into the locking part through the through-hole and then rotated to form a fixed part by means of several clearance parts formed on the diagonal side edge of the docking part, without having to be inserted from the end of the skeleton member, which is convenient and quick.
[0007] Another major objective of this invention is to enable the connecting parts of a frame component, which has several identical external dimensions forming joints on each of its four sides, to engage with any of the frame joints on any side. Furthermore, the connecting parts of the connecting parts can simultaneously engage with the frame joints of another frame component. This allows workers to quickly construct the basic structure of the floor, walls, and ceiling using only one type of frame component. For factory molding, there is no need to create different shaped frame components. Overall, the frame component manufacturing process is faster, more convenient, and cost-effective. Furthermore, the construction process eliminates the need to demolish existing decorative elements or install pipe trenches, resulting in extremely high overall project efficiency. Because there is no waste, it does not pollute the environment. In particular, the simple assembly process requires fewer workers, effectively saving manpower and controlling costs, making it economical and affordable.
[0008] To achieve the above objectives, the main structure and method of the present invention first involves taking several skeleton members, each with several skeleton joints of the same external dimensions formed on its four sides. Each skeleton joint includes a locking part, a through-hole communicating with the locking part, and a clamping part located at the center of each skeleton member. Then, a connector is taken, and a mating part provided on the connector is positioned to align with the through-hole. One end of the mating part extends to form a connecting part perpendicular to the mating part. The width of the joint is perpendicular to the extension direction of the through hole. After the joint is passed through the through hole, it is inserted into the locking part. At this time, the connector is rotated. During the rotation, several clearance parts formed on the diagonal side edge of the joint avoid the inner side wall of the locking part, so that the joint can rotate smoothly in the locking part, thereby fixing the connector and the skeleton member together. Finally, the connector can be used to connect with the skeleton joint of another skeleton member, thus completing the assembly of the skeleton member.
[0009] The above technology can overcome the problems of conventional interior decoration, such as the lack of intuitiveness in installing connectors on the frame, high cleaning and transportation costs, environmental pollution, annoying noise, time-consuming, labor-intensive, costly, and lack of industrial competitiveness, and achieve the practical progress of the above advantages. Simple Explanation of the Diagram
[0010] The first figure is an exploded perspective view of the first preferred embodiment of the present invention. Figure A is a side view of the skeleton component of the first preferred embodiment of the present invention. The second figure is a flowchart of the steps of the first preferred embodiment of the present invention. The third figure is a schematic diagram of the combination of the first preferred embodiment of the present invention. The fourth figure is a schematic diagram of the combination of the first preferred embodiment of the present invention. Figure 5 is a schematic diagram of the combination of the first preferred embodiment of the present invention. Figure 6 is a schematic diagram of the combination of the first preferred embodiment of the present invention. Figure 7 is an exploded perspective view of the second preferred embodiment of the present invention. Figure 8 is an exploded perspective view of the components of the third preferred embodiment of the present invention. Figure 9 is a perspective view of the component assembly according to the third preferred embodiment of the present invention. Figure 10 is a plan view of the component assembly according to the third preferred embodiment of the present invention. Figure 11 is a perspective view of the accessory assembly according to the fourth preferred embodiment of the present invention. Figure 12 is a cross-sectional view of the accessory assembly according to the fourth preferred embodiment of the present invention. Figure 13 is a perspective view of the cabinet according to the fifth preferred embodiment of the present invention. Figure 14 is a cross-sectional view of the cabinet according to the fifth preferred embodiment of the present invention. Implementation
[0011] To achieve the above objectives and effects, the technical means and structure adopted in this invention are described in detail below with reference to the preferred embodiments of the invention, so as to facilitate a complete understanding.
[0012] Please refer to Figure 1 and Figure 1A, which are exploded perspective views and side views of the skeleton component of the first preferred embodiment of the present invention. It can be clearly seen from the figures that the present invention includes:
[0013] A frame component 1, wherein several frame connecting parts 11 of the same external dimensions are formed on each of the four sides of the frame component 1, and each frame connecting part 11 includes a locking part 111, a through opening 112 communicating with the locking part 111, and a fastening part 113 located in the center of the frame component 1; and
[0014] At least one connector 2 is provided on each of the skeleton joint portions 11. The connector 2 includes a mating portion 21 provided in each of the skeleton joint portions 11, several clearance portions 211 formed at the diagonal side edges of the mating portion 21, and a connecting portion 22 extending from one end of the mating portion 21 and perpendicular to the mating portion 21. It is used to connect the skeleton joint portion 11 of another skeleton member 1. The length of the short side of the mating portion 21 is less than the width of the through opening 112, and the length of the long side of the mating portion 21 is greater than the width of the through opening 112.
[0015] The latching part 111 has a bottom 1111, an inclined part 1112 extending outward from both sides of the bottom 1111, and two blocking parts 1113 extending from the two inclined parts 1112 respectively, so that the through hole 112 is formed between the two blocking parts 1113.
[0016] The connecting part 22 has at least one positioning part 221. In this embodiment, two positioning parts 221 are used as an example, and they are perforated.
[0017] The docking part 21 has at least one pair of alignment parts 212. In this embodiment, the alignment part 212 is one example and is perforated.
[0018] The docking portion 21 and the connecting portion 22 are connected by a neck 23, the width of which is smaller than the width of the connecting portion 22 and the docking portion 21.
[0019] The skeleton component 1 and the connector 2 are made of metal.
[0020] The avoidance part 211 is a rounded bevel.
[0021] Through the above explanation, the structure of this technology can be understood. Based on the corresponding fit of this structure, the worker can intuitively insert the component directly into the locking part 111 through the through-hole 112 and rotate it to form a fixed position, without having to insert it from the end of the skeleton member 1. This is convenient and quick. Furthermore, because the skeleton member 1 has several skeleton connecting parts 11 with the same external dimensions formed on each of its four sides, the mating part 21 of the connector 2 can be connected to the skeleton connecting part 11 on any side. At the same time, the connecting part 22 of the connector 2 can also be inserted and connected to the skeleton connecting part 11 of another skeleton member 1. This allows the worker to use only one... The frame component 1 can quickly establish the basic structure for the floor, walls, and ceiling of an interior space. For factory mold making, there is no need to make different shaped frame components 1 separately. Overall, the frame component 1 can be manufactured more quickly and conveniently, while also saving costs. Moreover, there is no need to knock down existing decorations or install pipe trenches during the construction process, resulting in extremely high overall project efficiency. Since there is no waste, it will not pollute the environment. In particular, due to its simple assembly, it does not require a large number of workers for construction, which can effectively save manpower and control costs. It is an economical and affordable option. A detailed explanation will be provided below.
[0022] Please also refer to Figures 1 through 6, which are exploded perspective views to assembly diagrams of the first preferred embodiment of the present invention. When assembling the above components, it is clearly shown in the figures that when a user wishes to assemble the various frame components 1 into the basic structure for the ground, walls, and ceiling, the following usage method can be followed:
[0023] (a) Obtaining multiple skeleton components: Take several skeleton components 1, each with several skeleton joints 11 of the same external dimensions formed on each of the four sides. Each skeleton joint 11 includes a locking part 111, a through-hole 112 communicating with the locking part 111, and a fastening part 113 located in the center of each skeleton component 1. In particular, the length of each skeleton component 1 has been measured in advance according to the indoor space and multiple skeleton components 1 of corresponding lengths have been manufactured directly in the factory. In this way, workers only need to assemble on site without additional cutting, processing and other actions, which is convenient and fast. The number of workers on site can also be controlled, effectively saving personnel costs.
[0024] (b) Obtaining and positioning the connector: Take a connector 2, and align the butt joint 21 on the connector 2 with the opening 112. One end of the butt joint 21 extends to form a connecting part 22 perpendicular to the butt joint 21. The width of the butt joint 22 is perpendicular to the extension direction of the opening. Specifically, multiple skeleton members 1 can be arranged in parallel. When joining multiple skeleton members 1 together, first align the butt joint 21 of the connector 2 with the opening 112 (the extension direction of the short side of the butt joint 21 is perpendicular to the extension direction of the opening 112), and then move it into the opening 112 until it touches the bottom 1111 and stops.
[0025] (c) Rotating connector: After passing through the through-hole 112, the docking part 21 is inserted into the locking part 111. At this time, the connector 2 is rotated. Specifically, during the rotation process, due to the neck 23, the connector 2 will not be stuck by the side wall of the through-hole 112 and can rotate smoothly. In addition, the avoidance part 211 is also used to allow the docking part 21 to rotate smoothly in the locking part 111 without the corner of the docking part 21 getting stuck with the inner side wall of the locking part 111.
[0026] (d) Connector and Frame: During rotation, several clearance portions 211 formed on the diagonal side edges of the docking portion 21 avoid the inner sidewall of the locking portion 111, allowing the docking portion 21 to rotate smoothly within the locking portion 111. This allows the connector 2 and the frame 1 to be fixed together. Specifically, after the clearance portions 211 of the docking portion 21 avoid the inner sidewall of the locking portion 111, the extension direction of the short side of the docking portion 21 is parallel to the extension direction of the through-hole 112, while the extension direction of the long side is perpendicular to the extension direction of the through-hole 112. This prevents the docking portion 21 from detaching from the frame joint 11 by the stop portion 1113. At the same time, the limiting of the inclined portion 1112 prevents the connector 2 from shaking, thus achieving a fixing effect. Furthermore, the alignment portion 212 can be used in conjunction with a fixing member for further fixation.
[0027] (e) Connecting another skeleton member: The connecting part 22 is connected to the skeleton joint part 11 of another skeleton member 1. Specifically, the connecting part 22 can be directly slid into the skeleton joint part 11 of the other skeleton member 1 and then positioned. The positioning method can be fixed by the positioning part 221 and the fixing member.
[0028] Please refer to Figure 7, which is an exploded perspective view of the second preferred embodiment of the present invention. As can be clearly seen from the figure, the key feature of this embodiment is that the clamping part 113 has several protrusions 1131 for locking and fixing a pull cap 3. Since the protrusions 1131 are distributed on the inner wall of the clamping part 113, and the ends of the protrusions 1131 can be pointed, the pull cap 3, after entering the clamping part 113, can be clamped and held by the protrusions 1131. Furthermore, since the clamping part 113 itself can be made of aluminum, it has a certain degree of ductility, so that after the pull cap 3 is knocked into the clamping part 113, the protrusions 1131 and the concave and convex portions 1131 on the surface of the pull cap 3 can engage to form a positioning effect. At this time, the threads on the inner wall of the pull cap 3 can be used to fix it with other accessories. Here, the accessories can be screws, for adjusting height or distance from the wall. Therefore, even inexperienced workers can easily perform on-site construction. The drawback of commonly used tapping methods is that chipping or stripping of the tap is common, especially since the tapping speed is relatively slow. Sometimes, the tap breaks halfway through the process, and even stripping may go unnoticed until the process is completed on-site. In contrast, this case avoids the drawbacks of conventional techniques due to the aforementioned technology.
[0029] Please refer to Figures 8 to 10, which are exploded perspective views to assembly plan views of the accessories according to the third preferred embodiment of the present invention. As can be clearly seen from the figures, the frame connecting portion 11 is provided with at least one elastic member 4 disposed within the locking portion 111. The elastic member 4 is disposed on an adjusting member 5. The adjusting member 5 is provided with a locking groove 51 for engaging the elastic member 4, and an adjusting groove 52 located on one side of the locking groove 51. The adjusting groove 52 is provided with a distance positioning member 6, which has a... The fastening part 61 allows a fastener A to pass through it, thereby positioning the distance positioning member 6 on the adjusting member 5. In this embodiment, the elastic member 4 is exemplified by a spring sheet. The locking groove 51 includes a first locking groove 511 and a second locking groove 512 that communicates with the first locking groove 511 and has a width smaller than the first locking groove 511. The distance positioning member 6 is exemplified by an L-shaped aluminum angle, and the fastening part 61 is exemplified by a through hole. In this embodiment, taking a wall as an example, when the frame member 1 of the wall is to be installed, the spring sheet can be... The elastic member 4 is inserted into the locking part 111 and fixed to the locking part 111 by means of elastic fastening. Then, the adjusting member 5 is fixed to one end of the elastic member 4 by means of the locking groove 51. After one end of the elastic member 4 is inserted into the adjusting member 5 through the first locking groove 511, it is slid into the second locking groove 512 and limited by the second locking groove 512. Then, the distance positioning member 6 is adjusted according to the distance between the frame member 1 and the original wall 7, and the depth of the distance positioning member 6 inserted into the adjusting groove 52 is adjusted. In other words, if When the frame component 1 is to be placed further away from the original wall 7, the positioning component 6 can be extended outwards slightly. Then, fastener A is used to pass through the fastening part 61 and form a positioning with the adjusting component 5. This means that when the worker installs the frame component 1 on the wall, it will not be interfered with by the original wall 7. Even if the original wall 7 is damaged or tilted, by using the frame component 1 to rebuild the wall in this case, a complete and vertical wall structure can be quickly established. Overall, it can effectively improve the quality, speed, and time of the renovation, and ensure precise alignment without deviation. In addition, the interlayer space between the original wall 7 and the frame component 1 can be used for wiring, with a high degree of freedom, without the need to knock down the wall.
[0030] Please refer to Figures 11 and 12, which are perspective views and sectional views of the assembly of the fourth preferred embodiment of the present invention. As can be clearly seen from the figures, the key feature of this embodiment is that a finishing piece 81 can be provided on the frame member 1 at the frame joint 11, and several decorative pieces B can be provided on the finishing piece 81. Taking the decorative piece B at the ceiling as an example, each decorative piece B can be mutually fixed by several panel connectors 82. Another decorative piece B serving as a wall can also be provided on one side of the finishing piece 81. Furthermore, the frame member 1 at the ceiling can be fixed to a connector 2 through the frame joint 11. In particular, the connecting part 22 of the connector 2 can be equipped with a suspension rod 83 to strengthen the frame member 1 and prevent it from falling. Alternatively, taking the frame member 1 at the ground as an example, a tassel 3 can be connected to the frame member 1 at the ground for raising using a tensioning part 113, so that a support leg 84 can be screwed onto the tassel 3 for adjusting the ground level and height. Therefore, through the design of the edge trim 81, the decorative piece B can be perfectly integrated into the interior, especially between the decorative piece B on the wall and the decorative piece B on the ceiling or floor, without any abrupt appearance issues. Furthermore, through the design of the panel connector 82, the decorative piece B on the ceiling can be perfectly integrated, and because it is integrated with the frame piece 1, the decorative piece B can be stably installed on the ceiling.
[0031] Please refer to Figures 13 and 14, which are perspective and sectional views of the cabinet according to the fifth preferred embodiment of the present invention. As can be clearly seen from the figures, a bracket 9 is provided on the frame member 1, which can be connected with the frame joint 11. A decorative member B is provided on one side of the bracket 9, and a lamp member C is provided on the bracket 9. The bracket 9 includes a bracket docking part 91 that engages with the locking part 111, a bracket connecting part 92 located on one side of the bracket docking part 91 for mounting the decorative part B, and a bracket setting part 93 located on one side of the bracket connecting part 92 for mounting the lamp fixture C. The lamp fixture C includes a lampshade C1 and a light-emitting element group C2. When constructing a cabinet, table, or screen, this embodiment takes a cabinet as an example. The worker can first connect the various frame parts 1 using connectors to form a basic cabinet appearance, and then connect the bracket 9 with the locking part 111 using the bracket docking part 91. 1. Finally, multiple decorative pieces B are combined with the bracket joint 92 to form the wall of the cabinet. If a light fixture C is to be added, the light-emitting element group C2 can be placed into the bracket 9 as needed, and a lampshade C1 can be installed on the outside. In this way, the cabinet can have the function of lighting. It can be seen that the frame piece 1 of this case is widely used, which can integrate the cabinet and the wall. Even the original beams and columns of the building can be covered in one piece with this method, which improves the overall aesthetics. Moreover, it is simple and fast for workers to carry out, effectively avoiding disputes and project delays caused by cross-projects.
[0032] However, the above description is only a preferred embodiment of the present invention and does not limit the patent scope of the present invention. Therefore, any simple modifications and equivalent structural changes made based on the description and drawings of the present invention should also be included within the patent scope of the present invention and are hereby stated.
[0033] Therefore, the key to how the structure and method of the skeleton of this invention improve upon conventional techniques lies in:
[0034] First, through the design of several clearance parts 211 formed on the diagonal side edge of the docking part 21, the connector 2 can be intuitively inserted directly into the locking part 111 through the through hole 112 and then rotated to form a fixed position, without having to be inserted from the end of the skeleton member 1, which is convenient and quick.
[0035] Secondly, by forming several skeleton joints 11 with the same external dimensions on each of the four sides of the skeleton member 1, the docking part 21 of the connector 2 can be connected to the skeleton joint 11 on any side, and the connecting part 22 of the connector 2 can also be connected to the skeleton joint 11 of another skeleton member 1. This allows workers to quickly construct the basic structure of the floor, walls, ceiling, tables, cabinets, screens, etc. in the room using only the same skeleton member 1. It is also relatively convenient for material preparation and reduces waste. For factory mold making, there is no need to make skeleton members 1 of different shapes. Overall, the production and manufacturing of skeleton member 1 can be faster and more convenient, while also saving costs.
[0036] Third, workers do not need to knock down existing decorative parts B or install pipe trenches during the construction process, making the overall project highly efficient. Since there is no waste, it will not pollute the environment. In particular, because the assembly is simple, it does not require too many workers to carry out the work, which can effectively save manpower and control costs, making it economical and affordable.
[0037] Fourth, the overall structure is relatively simple and sturdy, and it is not afraid of earthquake shaking, which effectively reduces the difficulty of maintenance. In particular, after dismantling, because the construction method is the same, it can be used in other engineering sites, which has the advantage of reuse, as well as the advantages of environmental protection and cost saving.
[0038] Fifth, since the entire project is modularized, workers can be trained in a short time to complete difficult renovation tasks, and even unskilled workers can easily carry out on-site construction.
[0039] Sixth, the combination of the tightness part 113, the protrusion 1131 and the pull cap part 3 can reduce the probability of damage to the skeleton part 1.
[0040] Seventh, this case utilizes the skeleton component 1 to rebuild the wall, which can quickly establish a complete and vertical wall structure. Overall, it can effectively improve the quality, speed, and time of the renovation, and ensure precise alignment without deviation.
[0041] In conclusion, the structure and method of the skeleton of this invention can reliably achieve its effects and purposes when used. Therefore, this invention is indeed a highly practical invention. In order to meet the application requirements for an invention patent, this application is hereby filed in accordance with the law. We hope that the Examination Board will grant this invention as soon as possible to protect the hard work of the creator. If the Examination Board has any questions, please do not hesitate to write to us for guidance. The creator will do his best to cooperate. We would be very grateful for your help.
[0042] 1: Skeleton components 11: Skeleton joint 111: Card-operated section 1111: Bottom 1112: Sloping part 1113: Block 112: piercing 113: Urgent Department 1131:convex part 2: Connectors 21: Docking Section 211: Avoidance section 212: Opposing part 22: Connecting part 221: Positioning Department 23: Neck 3: Pull-up cap 4: Elastic components 5: Adjustment parts 51: Locking Slide 511: First card slot 512: Second card slot 52: Adjust the slide rail 6: Distance positioning component 61: Fastening part 7: Original walls 81: Edge trim 82: Panel connectors 83: Hanging rod 84: Support foot 9: Bracket parts 91: Bracket mating part 92: Bracket joint 93: Bracket Setting Section A: Fasteners B: Ornaments C: Lighting fixtures C1: Lampshade C2: Light-emitting element group
Claims
1. A skeletal structure, comprising: A skeleton component has several skeleton joints of the same external dimensions formed on its four sides. Each skeleton joint includes a locking part, a through-hole communicating with the locking part, and a fastening part located in the center of the skeleton component. At least one connector is provided on each skeleton joint, and the connector includes a mating part provided within each skeleton joint, several clearance parts formed at the diagonal side edges of the mating part, and a connecting part extending from one end of the mating part and perpendicular to the mating part, which is used to connect to the skeleton joint of another skeleton component. The shorter side length of the mating part is less than the width of the through-hole, and the longer side length of the mating part is greater than the width of the through-hole.
2. The structure of the skeleton as described in claim 1, wherein the latching part has a bottom, an inclined portion extending outward from both sides of the bottom, and two stops extending from the two inclined portions respectively, such that the opening is formed between the two stops.
3. The structure of the skeleton as described in claim 1, wherein the tight part has several protrusions for locking and fixing a pull cap.
4. The skeleton structure as described in claim 1, wherein each skeleton joint is provided with at least one elastic member disposed within the locking part, the elastic member is disposed on an adjusting member, the adjusting member is provided with a locking groove for engaging the elastic member and an adjusting groove located on one side of the locking groove, the adjusting groove is provided with a distance positioning member, the distance positioning member has a fastening part, so that a fastener passes through the fastening part and positions the distance positioning member on the adjusting member.
5. The skeleton structure as described in claim 1, wherein the skeleton member is provided with a bracket member that can be engaged with each of the skeleton joints, a decorative member is provided on one side of the bracket member, and a lamp member is provided on the bracket member.
6. A method of using a skeleton, comprising: Take several skeleton members, each with several skeleton joints of the same external dimensions formed on each of their four sides. Each skeleton joint includes a locking part, a through-hole communicating with the locking part, and a fastening part located in the center of each skeleton member. Take a connector, and use a mating part provided on the connector to align with the through-hole. One end of the mating part extends to form a connecting part perpendicular to the mating part, and the width of the mating part is perpendicular to the extension direction of the through-hole. After the mating part passes through the through-hole, it is inserted into the locking part. At this time, the connector is rotated. During the rotation of the connector, several clearance parts formed on the diagonal side edges of the mating part avoid the inner sidewall of the locking part, so that the mating part can rotate smoothly within the locking part, thereby fixing the connector and the skeleton member together. And use the connecting part to connect with the skeleton joint of another skeleton member.
7. The method of using the skeleton as described in claim 6, wherein the latching part has a bottom, an inclined portion extending outward from both sides of the bottom, and two stops extending from the two inclined portions respectively, such that the opening is formed between the two stops.
8. The method of using the skeleton as described in claim 6, wherein the tight part has a plurality of protrusions for locking and securing a pull cap.
9. The method of using the skeleton as described in claim 6, wherein each skeleton joint is provided with at least one elastic member disposed within the locking part, the elastic member is disposed on an adjusting member, the adjusting member is provided with a locking groove for engaging the elastic member and an adjusting groove located on one side of the locking groove, the adjusting groove is provided with a distance positioning member, the distance positioning member has a fastening part, so that a fastener passes through the fastening part and positions the distance positioning member on the adjusting member.
10. The method of using the skeleton as described in claim 6, wherein the skeleton is provided with a bracket that can be engaged with each of the skeleton joints, a decorative element is provided on one side of the bracket, and a lamp is provided on the bracket.
Citation Information
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