Any fixer for rod-shaped object

By designing arbitrary fixing devices of rod-shaped objects, the radial telescopic movement of the movable fastening components is solved, and the problem of different sizes of the dummy model brackets is achieved, and the rapid replacement and stable fixing effect is achieved.

CN223120355UActive Publication Date: 2025-07-18XIAMEN GOUYONG TECH CO LTD
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Patent Information

Application Number
CN202421879225.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-05
Publication Date
2025-07-18
Estimated Expiration
2034-08-05

AI Technical Summary

Technical Problem

The size of the dummy model bracket or support rod is different, which causes the dummy model to be replaced with fixed structural components when replacing the dummy model, which causes inconvenience to the merchant's operation.

Method used

A rod-shaped object arbitrary fixing device is designed, including a fixing base plate, a casing ring seat, a fastening knob and a movable fastening assembly. Through the radial telescopic movement of the movable fastening assembly, it is adapted to rod-shaped objects of different sizes for clamping and fixing.

Benefits of technology

It realizes flexible clamping and fixing of rod-shaped objects of different sizes, simplifies the replacement process, and improves the compactness and stability of the fixing effect.

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Abstract

The utility model discloses an arbitrary fixer for a rod-shaped object. The arbitrary fixer comprises a fixed base plate, a sleeve ring seat, a fastening knob and a movable fastening component, a plurality of mounting and fixing holes are formed in the fixed base plate and are used for integrally mounting and fixing any fixer of a rod-shaped object; the sleeve ring seat is arranged on the fixed base plate or integrally formed with the fixed base plate, a fastening sliding groove is formed in the inner wall of the sleeve ring seat in the radial direction, and the movable fastening assembly is movably arranged in the fastening sliding groove. The fastening knob is arranged on the sleeve ring seat and used for driving the movable fastening assembly to do telescopic motion in the radial direction of the sleeve ring seat. Through movable telescopic control of the movable fastening assembly, the fixator can be matched with rod-shaped objects of different sizes, more flexible clamping and fixing are achieved, the fixator can rapidly complete disassembly, assembly and replacement of the different rod-shaped objects, the structural design is simple, user operation is simplified, the fixator can be better attached to the surfaces of the rod-shaped objects, and the practicability is high. And a more compact, stable and reliable fixing effect is achieved.
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Description

Technical Field

[0001] The utility model relates to the technical field of mannequin product structures, in particular to an arbitrary fixator for rod-shaped objects used for supporting and fixing mannequins. Background Art

[0002] A mannequin is a model product that visually demonstrates the wearing effect of clothing. It is widely used in physical stores and is one of the important means for merchants to display goods and attract customers. In the actual trend environment of modern society, popular fashion clothing and special goods that merchants want to display are not static. According to the current season and fashion trends, merchants often need to use different mannequins to wear and display their special goods. Generally speaking, mannequins require support structures or support rods, etc. to assist in maintaining the posture of the mannequin unchanged. In actual situations, due to different product model sizes and no unified standards, the sizes of the support structures or support rods used by mannequins vary, which may require merchants to replace the fixed structure components together when changing mannequins, bringing inconvenience to the operation of merchants. Therefore, it is necessary to conduct research and optimization in structural design to more conveniently achieve the installation and fixation of mannequin supports or support rods. Summary of the Invention

[0003] In view of the above problems, the utility model provides an arbitrary fixator for rod-shaped objects. The technical solution of the utility model is as follows:

[0004] An arbitrary fixator for rod-shaped objects includes a fixed base plate, a sleeve ring seat, a fastening knob, and a movable fastening component; a plurality of installation and fixation holes are provided on the fixed base plate for the overall installation and fixation of the arbitrary fixator for rod-shaped objects; the sleeve ring seat is arranged on the fixed base plate or integrally formed with the fixed base plate, a fastening chute is arranged along the radial direction on the inner wall of the sleeve ring seat, and the movable fastening component is movably arranged in the fastening chute; the fastening knob is arranged on the sleeve ring seat for driving the movable fastening component to perform radial telescopic movement along the sleeve ring seat.

[0005] As a further description of the utility model, a circular fastening through hole is formed between the movable fastening component and the sleeve ring seat.

[0006] Furthermore, the movable fastening component includes a first fastening piece, the first fastening piece includes a rectangular portion and an arc portion, and the shape of the fastening chute is adapted to the shape of the first fastening piece, correspondingly including a rectangular groove and an arc groove.

[0007] Furthermore, a return spring is arranged between the first fastening piece and the sleeve ring seat.

[0008] Furthermore, a spring accommodation groove is provided on the first fastening piece or the sleeve ring seat, and the return spring is arranged in the spring accommodation groove.

[0009] Furthermore, the movable fastening assembly further includes a second fastening piece which is detachably mounted on the first fastening piece.

[0010] Furthermore, a plurality of clamping grooves are provided on the rectangular portion of the first fastening piece, and a plurality of clamping blocks adapted to the clamping grooves are provided on the second fastening piece, and the second fastening piece is clamped and fixed in the clamping grooves.

[0011] Furthermore, the second fastening piece is made of a flexible material.

[0012] Furthermore, guide pins are provided on the sleeve ring seat, and guide holes are correspondingly provided on the first fastening piece, and the guide pins pass through the sleeve ring seat and are inserted into the guide holes.

[0013] Advantages of the present utility model:

[0014] By controlling the telescopic movement of the movable fastening assembly, the fixator of the present utility model can be adapted to rod-shaped objects of different sizes, so as to achieve more flexible clamping and fixing, enable quick disassembly, replacement of different rod-shaped objects, and simplify the operation of users; the structure design is simple, and through the arrangement of the first fastening piece and the second fastening piece made of flexible material, the surface of the rod-shaped object can be better fitted, achieving a more compact, stable and reliable fixing effect. Description of the Drawings

[0015] Figure 1 It is a schematic diagram of the overall structure of the rod-shaped object arbitrary fixator according to an embodiment of the present utility model;

[0016] Figure 2 It is an exploded view of the structure of the rod-shaped object arbitrary fixator according to an embodiment of the present utility model;

[0017] Figure 3 It is a schematic diagram of the structure of the movable fastening assembly according to an embodiment of the present utility model;

[0018] Figure 4 It is a schematic diagram of the structure of the sleeve ring seat according to an embodiment of the present utility model.

[0019] Reference numerals: fixed base plate 1, sleeve ring seat 2, fastening knob 3, installation and fixing hole 4, fastening chute 5, rectangular groove 501, arc groove 502, circular fastening through hole 6, first fastening piece 7, rectangular portion 701, arc portion 702, return spring 8, spring accommodation groove 9, second fastening piece 10, clamping groove 11, clamping block 12, guide pin 13, guide hole 14. Detailed Embodiments

[0020] Embodiment:

[0021] The embodiments of the present utility model will be described in detail below with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all of the embodiments.

[0022] In the description of the present utility model, it should be understood that the orientation or positional relationship indicated by the terms "upper", "lower", "front", "rear", "left", "right", "top", "bottom", "inner", "outer", etc. is based on the orientation or positional relationship shown in the accompanying drawings, and is only for the convenience of describing the present utility model and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as a limitation to the present utility model.

[0023] As shown in the attached Figures 1-4 drawing, a rod-shaped object arbitrary fixator includes a fixed base plate 1, a sleeve ring seat 2, a fastening knob 3 and a movable fastening assembly; a plurality of mounting and fixing holes 4 are provided on the fixed base plate 1 for the overall mounting and fixing of the rod-shaped object arbitrary fixator; the sleeve ring seat 2 is arranged on the fixed base plate 1 or integrally formed with the fixed base plate 1, and a fastening sliding groove 5 is arranged along the radial direction on the inner wall of the sleeve ring seat 2, and the movable fastening assembly is movably arranged in the fastening sliding groove 5; the fastening knob 3 is arranged on the sleeve ring seat 2 for driving the movable fastening assembly to perform radial telescopic movement along the sleeve ring seat 2. When the rod-shaped object arbitrary fixator of this embodiment is in use, first place the rod-shaped object arbitrary fixator at a predetermined position, then drive a nail or a screw into the mounting and fixing hole 4 of the fixed base plate 1 to fix it, insert the rod-shaped object to be fastened into the fastening through hole formed by the sleeve ring seat 2 and the movable fastening assembly, and then tighten the fastening knob 3 to tighten the rod-shaped object through the movable fastening assembly, so as to realize the clamping and fixing of the rod-shaped object. Due to the radial sliding setting of the movable fastening assembly in this embodiment, the size formed by it and the sleeve ring seat 2 is variable within a certain range. Therefore, within the limited range of the two, it is not necessary to replace the fixator, that is, it can realize the fixing of rod-shaped objects of any size, so as to realize more flexible clamping and fixing, enable it to quickly complete the disassembly and replacement of different rod-shaped objects, and simplify the user operation.

[0024] As an implementation manner, in this embodiment, a circular fastening through-hole 6 is formed between the movable fastening assembly and the sleeve ring base 2. The rod-shaped object applicable to this implementation manner is a round rod object. Within a defined range, round rod objects with different diameters can be clamped and fixed by the rod-shaped object arbitrary fixator of this embodiment. Of course, it is easy to understand that the present invention is not limited to fixing round rod objects. The rod-shaped object arbitrary fixator of the present invention can also be designed for clamping and fixing rod-shaped objects with other cross-sectional shapes. Only the shape of the fastening through-hole formed between the movable fastening assembly and the sleeve ring base 2 needs to be set according to actual needs. For example, when the rod-shaped object is a square tube, the shape of the fastening through-hole formed between the movable fastening assembly and the sleeve ring base 2 is correspondingly set to a square hole. The same applies to rod-shaped objects with other cross-sectional shapes and will not be elaborated here.

[0025] In a preferred implementation manner, as shown in the attached drawings, in this embodiment, the movable fastening assembly includes a first fastening piece 7. The first fastening piece 7 includes a rectangular portion 701 and an arc portion 702. The shape of the fastening sliding groove 5 is adapted to the shape of the first fastening piece 7, and correspondingly includes a rectangular groove 501 and an arc groove 502. During the radial telescopic sliding process of the first fastening piece 7, the rectangular portion 701 of the first fastening piece 7 is restricted by the rectangular groove 501 to ensure that it only slides telescopically in the radial direction without deviation, so as to ensure symmetry with the rod-shaped object and ensure a good tightening and fastening effect.

[0026] In this embodiment, the fastening knob 3 and the first fastening piece 7 are of a split structure, and a return spring 8 is provided between the first fastening piece 7 and the sleeve ring base 2. When the fastening knob 3 is rotated inward, it can tightly press and push the first fastening piece 7 to slide inward; when the fastening knob 3 is rotated outward, the first fastening piece 7 slides outward and resets under the action of the return spring 8, so as to achieve the effect of controlling the telescopic movement of the first fastening piece 7.

[0027] Preferably, a spring accommodation groove 9 is provided on the first fastening piece 7 or the sleeve ring base 2, and the return spring 8 is arranged in the spring accommodation groove 9. In this way, the first fastening piece 7 and the return spring 8 can adopt a split structure, which is convenient for assembly and not easily damaged. It is feasible that the spring accommodation groove 9 of this embodiment is arranged on both sides of the front end of the arc portion 702 of the first fastening piece 7. In actual application, the specific setting position of the spring accommodation groove 9 can be adjusted according to actual needs. For example, it can be arranged on the sleeve ring base 2 or on the rectangular portion 701 of the first fastening piece 7, as long as it can achieve the effect of driving the first fastening piece 7 to reset outward when the fastening knob 3 is loosened.

[0028] In a preferred embodiment, as shown in the attached drawings, the movable fastening assembly of this embodiment further includes a second fastening piece 10, and the second fastening piece 10 is detachably installed on the first fastening piece 7. Similarly, the second fastening piece 10 is also arc-shaped. During the actual fastening process, the movable fastening assembly mainly contacts the rod-shaped object through this second fastening piece 10. Feasibly, in this embodiment, a plurality of card slots 11 are provided on the rectangular portion 701 of the first fastening piece 7, and a plurality of card blocks 12 adapted to the card slots 11 are provided on the second fastening piece 10. The second fastening piece 10 is snap-fitted and fixed in the card slots 11 to realize the detachable connection and fixation between the two, which is convenient for disassembly, assembly and combined use. Preferably, in this embodiment, the second fastening piece 10 is made of a flexible material. In this way, when pressing against the rod-shaped object, the second fastening piece 10 can generate a certain deformation under extrusion, so that it can better fit the surface of the rod-shaped object, increase the contact area, and improve the fastening effect on the rod-shaped object.

[0029] Specifically, as shown in the attached drawings, in this embodiment, a guide rail nail 13 is further provided on the sleeve ring seat 2, and a guide hole 14 is correspondingly provided on the first fastening piece 7. The guide rail nail 13 passes through the sleeve ring seat 2 and is inserted into the guide hole 14. The part of the guide rail nail 13 inserted into the guide hole 14 is a smooth section. During the telescopic sliding process of the movable fastening assembly, under the guiding action of the guide rail nail 13, the telescopic sliding of the movable fastening assembly is made more stable, and the comprehensive use effect of the rod-shaped object arbitrary fixator is improved.

[0030] In this way, through the telescopic control of the movable fastening assembly of the rod-shaped object arbitrary fixator of the present invention, the fixator can be adapted to rod-shaped objects of different sizes to achieve more flexible clamping and fixation, so that the disassembly, assembly and replacement of different rod-shaped objects can be quickly completed, simplifying the user operation; the structural design is simple, and through the setting of the first fastening piece 7 and the second fastening piece 10 made of flexible material, it can better fit the surface of the rod-shaped object, achieving a more compact, stable and reliable fixing effect.

[0031] The above only describes the preferred embodiments of the present invention, but it cannot be understood as a limitation to the claims. The present invention is not limited to the above embodiments, and its specific structure is allowed to change. In short, all changes made within the protection scope of the independent claims of the present invention are within the protection scope of the present invention.

Claims

1. A rod-shaped object arbitrary fixator, characterized in that: It includes a fixed base plate, a sleeve ring seat, a fastening knob and a movable fastening assembly; several mounting and fixing holes are provided on the fixed base plate for the overall mounting and fixing of any rod-shaped object fixator; the sleeve ring seat is arranged on the fixed base plate or integrally formed with the fixed base plate, a fastening chute is arranged radially on the inner wall of the sleeve ring seat, and the movable fastening assembly is movably arranged in the fastening chute; the fastening knob is arranged on the sleeve ring seat for driving the movable fastening assembly to perform radial telescopic movement along the sleeve ring seat; The movable fastening assembly includes a first fastening piece, the first fastening piece includes a rectangular part and an arc part, and the shape of the fastening chute is adapted to the shape of the first fastening piece, correspondingly including a rectangular groove and an arc groove; The movable fastening assembly further includes a second fastening piece, and the second fastening piece is detachably mounted on the first fastening piece; The second fastening piece is made of a flexible material.

2. The rod-shaped object arbitrary fixator according to claim 1, characterized in that: A circular fastening through hole is formed between the movable fastening assembly and the sleeve ring seat.

3. The rod-shaped object arbitrary fixator according to claim 1, characterized in that: A return spring is arranged between the first fastening piece and the sleeve ring seat.

4. The rod-shaped object arbitrary fixator according to claim 3, characterized in that: A spring accommodation groove is arranged on the first fastening piece or the sleeve ring seat, and the return spring is arranged in the spring accommodation groove.

5. The rod-shaped object arbitrary fixator according to claim 1, characterized in that: Several card slots are arranged on the rectangular part of the first fastening piece, and several card blocks adapted to the card slots are arranged on the second fastening piece, and the second fastening piece is snap-fitted and fixed in the card slots.

6. The rod-shaped object arbitrary fixator according to claim 1, characterized in that: Guide nails are arranged on the sleeve ring seat, guide holes are correspondingly arranged on the first fastening piece, and the guide nails pass through the sleeve ring seat and are inserted into the guide holes.