Guide rail with high stability

By designing moving components, connecting components, and fixing components on the guide rail, the installation slot space is increased, solving the problem of low adaptability of traditional guide rails, enabling efficient installation of equipment of different sizes, and improving work efficiency and effectiveness.

CN223469578UActive Publication Date: 2025-10-24CHENYANG ZHIYUAN KAIPU CNC EQUIPMENT MANUFACTURING CO LTD
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Patent Information

Application Number
CN202422753952.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-12
Publication Date
2025-10-24
Estimated Expiration
2034-11-12

AI Technical Summary

Technical Problem

Traditional high-stability guide rails have low adaptability when installing equipment of different sizes, resulting in low work efficiency and poor performance. Different sliders need to be replaced to adapt to different equipment.

Method used

Design a guide rail structure including a guide rail body, a moving component, a connecting component, a fixing component, a mounting slot, a slider, a moving block, a spring, and a limiting frame. The slider can be moved and connected through the moving component and the connecting component. The moving block can be reset by the mounting slot and the spring, increasing the space of the mounting slot. The movement of the moving block can be restricted by the limiting frame, so as to realize the installation of equipment of different sizes.

Benefits of technology

This improves the compatibility of the guide rail, eliminates the need to replace the slider, and enhances the efficiency and effectiveness of installing equipment of different sizes.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of guide rails, in particular to a high-stability guide rail which comprises a guide rail body, a moving assembly, a connecting assembly, a fixing assembly, a mounting groove, a sliding block, a moving block, a spring and a limiting frame. A moving assembly playing a moving role is arranged on the outer side of the guide rail body, a connecting assembly playing a connecting role is arranged on the inner side of the guide rail body, and a fixing assembly playing a fixing role is arranged above the guide rail body. The spring is used for resetting, so that the space of the mounting groove can be increased by pulling the moving block, equipment and articles with different sizes can be placed in the mounting groove, the equipment and the articles with different sizes can be mounted, the adaptation degree of the guide rail is increased, and when the equipment with different sizes is mounted, the mounting efficiency is improved. And therefore, the guide rail sliding block can move without replacing different guide rail sliding blocks, and the conditions that the working efficiency is low and the working effect is poor are prevented.
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Description

TECHNICAL FIELD

[0001] The utility model relates to guide rail technical field especially relates to a guide rail with high stability. BACKGROUND

[0002] Guide rail is a kind of key component widely used in mechanical equipment, mainly used for supporting and guiding moving parts to move along a certain trajectory;Guide rail is usually composed of guide rail body, slider, ball or roller, guide rail body is fixed component, usually made of high-precision steel, surface is ground and polished to ensure its accurate straightness and smooth surface, slider is moving part, which realizes linear motion by contacting with guide rail through ball or roller.

[0003] Traditional guide rail with high stability, when installing equipment through slider, generally uses bolt to fixedly connect when connecting object or equipment needing to move, so that it has moving requirement when installing equipment or object, and cannot install equipment of different sizes, thereby reducing the adaptation degree of guide rail, leading to incompatibility of guide rail slider when installing equipment of different sizes, resulting in the need to replace different guide rail sliders to move, so that low work efficiency and poor work effect are prone to occur.

[0004] Therefore, for the above-mentioned traditional guide rail with high stability, when installing equipment through slider, generally uses bolt to fixedly connect when connecting object or equipment needing to move, so that it has moving requirement when installing equipment or object, and cannot install equipment of different sizes, a pulling moving block can be designed to increase the space of mounting groove, so that equipment of different sizes can be placed in the mounting groove, thereby installing equipment of different sizes, increasing the adaptation degree of guide rail, making it easier to adapt when installing equipment of different sizes, and further not needing to replace different guide rail sliders to move, preventing low work efficiency and poor work effect. SUMMARY

[0005] In order to overcome the problem that traditional guide rail with high stability, when installing equipment through slider, generally uses bolt to fixedly connect when connecting object or equipment needing to move, so that it has moving requirement when installing equipment or object, and cannot install equipment of different sizes.

[0006] The utility model discloses a technical scheme for a guide rail with high stability, comprising a guide rail main body, a moving assembly, a connecting assembly, a fixing assembly, a mounting groove, a sliding block, a moving block, a spring and a limiting frame.

[0007] Preferably, the moving assembly serves to facilitate the movement of the sliding block, the connecting assembly serves to fix multiple guide rails together, the fixing assembly serves to fix the equipment on the sliding block, the mounting groove is used to install the moving block, the spring is used to reset the moving block, the limiting frame is used to limit the movement of the moving block, and the pulling of the moving block increases the space of the mounting groove, so that equipment of different sizes can be placed in the mounting groove, thereby enabling the equipment of different sizes to be installed, increasing the adaptability of the guide rail, making it easier to adapt when installing equipment of different sizes, and thus eliminating the need to replace different guide rail sliding blocks to move, preventing the occurrence of low work efficiency and poor work effect.

[0008] Preferably, the moving assembly comprises a fixed shaft and a rotating wheel.

[0009] Preferably, the moving assembly further comprises a moving groove.

[0010] Preferably, the connecting assembly comprises a connecting groove, a connecting block and a connecting hole.

[0011] Preferably, the connecting assembly further comprises a bolt.

[0012] Preferably, the fixing assembly comprises a knob, a screw rod and a clamping plate.

[0013] Preferably, the fixing assembly further comprises an extension rod.

[0014] The utility model discloses the beneficial effect of:

[0015] 1. The mobile block is installed through the installation slot, the mobile block is reset through the spring, the movement of the mobile block is limited through the limiting frame, the mobile block is pulled, the space of the installation slot is increased, different size devices can be put into the installation slot, so that different size devices can be installed, the adaptation degree of the guide rail is increased, when different size devices are installed, it is easier to adapt, and then different guide rail sliders do not need to be replaced to move, so that the situation of low work efficiency and poor work effect is prevented. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 A first three-dimensional structure of a guide rail with high stability is shown.

[0017] Figure 2 A cross-sectional structure of a guide rail with high stability is shown.

[0018] Figure 3 A first local three-dimensional structure of a guide rail with high stability is shown.

[0019] Figure 4 A second local three-dimensional structure of a guide rail with high stability is shown.

[0020] Explanation of reference signs: 1, guide rail body; 201, moving groove; 202, fixed shaft; 203, rotating wheel; 301, connecting groove; 302, connecting block; 303, bolt; 304, connecting hole; 401, knob; 402, screw; 403, clamping plate; 404, telescopic rod; 501, installation slot; 502, sliding block; 503, mobile block; 504, spring; 505, limiting frame. DETAILED DESCRIPTION

[0021] The utility model is further illustrated below in combination with the drawings and examples.

[0022] Please refer to Figures 1-4 The utility model provides a kind of example: a guide rail with high stability, including guide rail body 1, moving assembly, connecting assembly, fixed assembly, installation slot 501, sliding block 502, mobile block 503, spring 504 and limiting frame 505;Guide rail body 1 outer side is provided with the moving assembly for moving, guide rail body 1 inner side is provided with the connecting assembly for connecting, guide rail body 1 upper side is provided with the fixed assembly for fixed, guide rail body 1 outer side is provided with sliding block 502, sliding block 502 upper end is provided with installation slot 501, installation slot 501 inner side is provided with mobile block 503, mobile block 503 one side is provided with spring 504, spring 504 is located in installation slot 501 inner side, mobile block 503 one side is provided with limiting frame 505.

[0023] Please refer to Figures 1-4 In the embodiment, the moving assembly comprises a fixed shaft 202 and a rotating wheel 203; the fixed shaft 202 is arranged inside the sliding block 502, and the rotating wheel 203 is arranged outside the fixed shaft 202; in use, the rotating wheel 203 is rotated with the aid of the fixed shaft 202, and the rotation of the rotating wheel 203 reduces friction, thereby facilitating movement; the moving assembly further comprises a moving groove 201; the moving groove 201 is arranged inside the sliding block 502, and the fixed shaft 202 is located inside the moving groove 201; in use, a moving shaft is installed through the moving groove 201, thereby assisting the movement of the sliding block 502; the connecting assembly comprises a connecting groove 301, a connecting block 302 and a connecting hole 304; the connecting groove 301 is arranged on one side of the guide rail body 1, the connecting block 302 is arranged on the other side of the guide rail body 1, and the connecting hole 304 is arranged at the lower end of the connecting groove 301; there are two groups of connecting holes 304, and the other group of connecting holes 304 penetrates the connecting block 302; in use, the connecting block 302 is installed through the connecting groove 301, the connecting block 302 is inserted into the connecting groove 301, and the fixing bolt 303 is fixed through the connecting hole 304, thereby connecting the guide rails.

[0024] The connecting assembly comprises a bolt 303; the bolt 303 is arranged at the lower end of the guide rail body 1 and located inside the connecting hole 304; in use, the two guide rails are fixed through the bolt 303, thereby preventing the guide rails from falling off; the fixing assembly comprises a knob 401, a screw rod 402 and a clamping plate 403; the knob 401 is arranged on one side of the moving block 503, the screw rod 402 is arranged on one side of the knob 401 and penetrates the moving block 503, and the clamping plate 403 is arranged on one side of the screw rod 402; in use, the screw rod 402 is rotated by rotating the knob 401, the clamping plate 403 is moved by the rotation of the screw rod 402, and the equipment is fixed by the movement of the clamping plate 403, thereby preventing the equipment from falling off when moving; the fixing assembly further comprises an extension rod 404; the extension rod 404 is arranged on one side of the clamping plate 403 and located on one side of the moving block 503; in use, the clamping plate 403 is stabilized by the extension of the extension rod 404, thereby preventing the clamping plate 403 from tilting.

[0025] When working, the connecting block 302 is installed through the connecting groove 301, the connecting block 302 is inserted into the connecting groove 301, the fixing bolt 303 is fixed through the connecting hole 304, the two guide rails are fixed through the bolt 303, and the guide rails are connected;

[0026] Secondly, the moving block 503 is installed through the installation groove 501, the moving block 503 is reset through the spring 504, the movement of the moving block 503 is limited through the limiting frame 505, the moving block 503 is pulled to increase the space of the installation groove 501, so that equipment of different sizes can be placed into the installation groove 501, thereby enabling equipment of different sizes to be installed;

[0027] Finally through the knob 401 by rotating the screw 402 instead of rotation, through the screw 402 rotation drive clamp plate 403 movement, through the clamp plate 403 movement to fix the equipment, through the telescopic rod 404 telescopic clamp plate 403 for stability, so as to prevent the equipment from falling off when moving; again through the movement of the groove 201 installation moving shaft, through the fixed shaft 202 auxiliary rotating wheel 203 rotation, through the rotating wheel 203 rotation reduces friction, so as to facilitate the movement.

[0028] Through the above steps, the moving assembly plays a moving role, so as to facilitate the movement of the slider 502, the connecting assembly plays a connecting role, so as to fix the guide rails together, the fixing assembly plays a fixing role, so as to fix the equipment on the slider 502, the mounting groove 501 is used to install the moving block 503, the spring 504 is used to reset the moving block 503, the limiting frame 505 is used to limit the movement of the moving block 503, the moving block 503 is pulled, the space of the mounting groove 501 is increased, so that different sizes of equipment can be put into the mounting groove 501, so that different sizes of equipment can be installed, the adaptability of the guide rail is increased, so that different sizes of equipment can be installed, the adaptability is easier, and different guide rail sliders 502 are not needed to move, so as to prevent the occurrence of low work efficiency and poor work effect.

[0029] The embodiments of the utility model are described in detail above combined with the drawings, but the utility model is not limited to the above-mentioned embodiments, within the knowledge range of the person skilled in the art, various changes can be made without departing from the purpose of the utility model.

Claims

1. A guide rail with high stability, comprising a guide rail body (1); characterized in that: Also include the moving assembly, connecting assembly, fixed assembly, installation slot (501), slider (502), moving block (503), spring (504) and limit frame (505); The outer side of the guide rail body (1) is provided with the moving assembly which plays a moving role, the inner side of the guide rail body (1) is provided with the connecting assembly which plays a connecting role, the upper of the guide rail body (1) is provided with the fixed assembly which plays a fixed role, the outer side of the guide rail body (1) is provided with the slider (502), the slider (502) upper end is provided with the installation slot (501), the installation slot (501) inner side is provided with the moving block (503), the moving block (503) one side is provided with the spring (504), the spring (504) is located in the installation slot (501) inner side, the moving block (503) one side is provided with the limit frame (505).

2. The rail according to claim 1, wherein: The moving assembly includes a fixed shaft (202) and a rotating wheel (203); The inner side of the slider (502) is provided with the fixed shaft (202), and the outer side of the fixed shaft (202) is provided with the rotating wheel (203).

3. The rail according to claim 2, wherein: The moving assembly further includes a moving slot (201); The inner side of the slider (502) is provided with the moving slot (201), and the fixed shaft (202) is located in the moving slot (201).

4. The rail according to claim 2, wherein: The connecting assembly includes a connecting slot (301), a connecting block (302) and a connecting hole (304); One side of the guide rail body (1) is provided with the connecting slot (301), the other side of the guide rail body (1) is provided with the connecting block (302), the lower end of the connecting slot (301) is provided with the connecting hole (304), and the connecting hole (304) is provided with two groups, and the other connecting hole (304) penetrates through the connecting block (302).

5. The rail according to claim 4, wherein: The connecting assembly includes a bolt (303); The lower end of the guide rail body (1) is provided with the bolt (303), and the bolt (303) is located in the connecting hole (304).

6. The rail according to claim 4, wherein: The fixed assembly includes a knob (401), a screw rod (402) and a clamping plate (403); One side of the moving block (503) is provided with the knob (401), one side of the knob (401) is provided with the screw rod (402), the screw rod (402) penetrates through the moving block (503), and one side of the screw rod (402) is provided with the clamping plate (403).

7. The rail according to claim 6, wherein: The fixed assembly further includes a telescopic rod (404); One side of the clamping plate (403) is provided with the telescopic rod (404), and the telescopic rod (404) is located on one side of the moving block (503).