A laser equipment light-adjusting auxiliary tooling
By installing a light calibration fixture on the sliding part of the linear module and aligning the holes on the fixture with the light source of the laser equipment, the problems of complex detection operation, low efficiency and low accuracy in the existing technology are solved, and a simple and efficient detection effect is achieved.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- NINGBO LIMON ROBOT CO LTD
- Filing Date
- 2025-08-06
- Publication Date
- 2026-07-17
AI Technical Summary
Existing linear module testing operations are complex, inefficient, and have low accuracy.
A light calibration fixture is installed on the sliding component of the linear module. The light source of the laser device is used to align the holes on the fixture and detect whether the sliding component deviates.
It achieves simple operation, high efficiency, and high detection accuracy.
Smart Images

Figure CN224518117U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of linear modules, and more particularly to a light-guiding auxiliary tooling for laser equipment. Background Technology
[0002] In the current technology, the detection of linear modules involves measuring the components on the sliding parts of the linear module at the initial position and at the end position, and then determining whether there is any deviation in the movement of the components on the linear module and whether the linear module is qualified. This method is complicated and cumbersome, inefficient, and has low detection accuracy. Utility Model Content
[0003] In view of this, the purpose of this utility model is to provide a light alignment auxiliary fixture for a laser device. The fixture is installed on the sliding part of the linear module for light alignment. The light source of the laser device is used to align the hole on the fixture to detect whether the sliding part of the linear module deviates after sliding. The operation is simple, efficient and accurate.
[0004] To achieve the above objectives, the technical solution adopted by this utility model is as follows:
[0005] A laser device's light-adjusting auxiliary fixture, comprising:
[0006] The frame is mounted on the sliding part of the linear module. The frame has two opposing light-guiding plates, which are distributed along the driving direction of the linear module. Each of the two light-guiding plates has a hole, which are opposite to each other. A reflector is installed in one of the holes.
[0007] A laser device is located on the side of the frame away from the reflector, and the light source of the laser device is aligned with the two holes.
[0008] The aforementioned laser equipment's light-aligning auxiliary fixture includes two light-aligning plates: a first light-aligning plate and a second light-aligning plate. The first light-aligning plate has a first hole, and the second light-aligning plate has a second hole. The first hole and the second hole are directly opposite each other. The first light-aligning plate is located between the laser equipment and the second light-aligning plate, and the reflector is disposed in the second hole.
[0009] The aforementioned laser equipment's light-aligning auxiliary fixture has a reflective surface on the side of the first light-aligning plate closest to the laser equipment.
[0010] In the aforementioned laser equipment's light-adjusting auxiliary fixture, the reflective surface is a reflective element or reflective material.
[0011] In the aforementioned laser equipment's light-aligning auxiliary fixture, the first light-aligning plate and the second light-aligning plate are arranged in parallel.
[0012] In the aforementioned laser equipment's light-aligning auxiliary fixture, the second light-aligning plate does not have a reflective surface on the side closest to the laser equipment.
[0013] The aforementioned laser equipment's light-guiding auxiliary fixture includes a right-angle hanging plate on the frame, which is fixed to a sliding component within the linear module by fasteners.
[0014] The aforementioned laser equipment's light-aligning auxiliary fixture comprises a frame, the first light-aligning plate, the second light-aligning plate, and the right-angle hanging plate, which are an integrated structure.
[0015] In the aforementioned laser equipment's light-adjusting auxiliary fixture, a connector is installed on the sliding component within the linear module, and the right-angle mounting plate is hung on the connector and fixed to the connector by the fasteners.
[0016] Because this utility model employs the aforementioned technology, it has the following positive effects compared to existing technologies:
[0017] (1) This utility model installs a light calibration fixture on the sliding part of the linear module, and aligns the hole on the fixture with the light source of the laser equipment to detect whether the sliding part of the linear module deviates after sliding. It is simple to operate, efficient and accurate. Attached Figure Description
[0018] Figure 1 This is a schematic diagram of the overall structure of the laser equipment's light-guiding auxiliary tooling according to this utility model.
[0019] Figure 2 This is a front view of the overall structure of the light-guiding auxiliary tooling for the laser equipment of this utility model.
[0020] Figure 3 This is a schematic diagram of the structure of the light-guiding auxiliary tooling for the laser equipment of this utility model.
[0021] Figure 4 This is a schematic diagram of the linear module in the light-guiding auxiliary tooling of the laser equipment of this utility model.
[0022] In the attached diagram: 1. Frame; 2. Laser equipment; 3. Linear module; 4. Sliding component; 5. Light focusing plate; 6. Right-angle hanging plate; 7. Connecting component; 51. First light focusing plate; 52. Second light focusing plate; 53. First hole; 54. Second hole; 55. Reflective surface. Detailed Implementation
[0023] The technical solution of this utility model will now be clearly and completely described with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of this utility model. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this utility model.
[0024] In the description of this utility model, it should be understood that the orientation or positional relationship indicated by terms such as "upper", "lower", "left", "right", "inner", "outer", "front", "back", "horizontal", and "vertical" are based on the orientation or positional relationship shown in the accompanying drawings and are only for the convenience of describing this utility model, and are not intended to indicate or imply that the device or component referred to must have a specific orientation, and therefore should not be construed as a limitation of this utility model.
[0025] It should be noted that the terms "horizontal" and "vertical" in this utility model are used to describe approximate positional relationships, and not strictly "horizontal plane" or "vertical plane".
[0026] It should be noted that, unless otherwise specified, this utility model can be used at the angle shown in the accompanying drawings or at other angles.
[0027] Please see Figures 1 to 4 The image shows a preferred embodiment of a laser device with an auxiliary light-aligning fixture, comprising: a frame 1 and a laser device 2. The frame 1 is mounted on a sliding member 4 of a linear module 3. The frame 1 has two opposing light-aligning plates 5, which are distributed along the driving direction of the linear module 3. Each of the two light-aligning plates 5 has a hole, which are opposite to each other. A reflector is disposed in one of the holes. The laser device 2 is located on the side of the frame 1 away from the reflector, and the light source of the laser device 2 is aligned with the two holes.
[0028] Furthermore, as a preferred embodiment, the two light-adjusting plates 5 respectively include: a first light-adjusting plate 51 and a second light-adjusting plate 52. The first light-adjusting plate 51 is provided with a first hole 53, and the second light-adjusting plate 52 is provided with a second hole 54. The first hole 53 and the second hole 54 are directly opposite each other. The first light-adjusting plate 51 is located between the laser device 2 and the second light-adjusting plate 52, and a reflector is provided in the second hole 54.
[0029] Furthermore, as a preferred embodiment, the first pair of light plates 51 has a reflective surface 55 on the side closest to the laser device 2.
[0030] Furthermore, as a preferred embodiment, the reflective surface 55 is a reflective element or reflective material.
[0031] Furthermore, as a preferred embodiment, the first pair of light plates 51 and the second pair of light plates 52 are arranged in parallel.
[0032] Furthermore, as a preferred embodiment, the side of the second pair of light plates 52 closest to the laser device 2 does not have a reflective surface. The first hole 53 does not contain any reflective elements.
[0033] This invention installs a light calibration fixture on the sliding member 4 of the linear module 3. The light source of the laser device 2 is used to align the hole on the fixture to detect whether the sliding member 4 of the linear module 3 deviates after sliding. The operation is simple, efficient and accurate.
[0034] When the laser from laser device 2 can pass through the first hole 53 and be reflected by the reflector in the second hole 54, the linear module 3 is qualified. It is simple to operate, efficient, and has high detection accuracy.
[0035] When the laser of laser device 2 is reflected by the reflective surface 55 of the first pair of light plates 51, the laser of laser device 2 is not aligned.
[0036] The above are merely preferred embodiments of the present invention and are not intended to limit the implementation methods and protection scope of the present invention.
[0037] Based on the above, this utility model also has the following embodiments:
[0038] In a further embodiment of this utility model, the frame 1 is provided with a right-angle hanging plate 6, which is fixed to the sliding member 4 in the straight module 3 by fasteners.
[0039] Because the right-angle mounting plate has right-angle steps, the verticality and stability of the frame can be ensured by directly abutting against the sliding parts of the straight module through the steps.
[0040] In a further embodiment of this utility model, the frame 1, the first pair of light plates 51, the second pair of light plates 52, and the right-angle hanging plate 6 are an integrated structure.
[0041] In a further embodiment of this utility model, a connector 7 is installed on the sliding member 4 inside the linear module 3, and a right-angle hanging plate 6 is hung on the connector 7 and fixed to the connector 7 by fasteners.
[0042] The above description is only a preferred embodiment of the present utility model and does not limit the implementation method and protection scope of the present utility model. Those skilled in the art should realize that all solutions obtained by equivalent substitutions and obvious changes made based on the description and illustrations of the present utility model should be included within the protection scope of the present utility model.
Claims
1. An alignment aid for a laser apparatus, characterized by: include; The frame is mounted on the sliding part of the linear module. The frame has two opposing light-guiding plates, which are distributed along the driving direction of the linear module. Each of the two light-guiding plates has a hole, which are opposite to each other. A reflector is installed in one of the holes. A laser device is located on the side of the frame away from the reflector, and the light source of the laser device is aligned with the two holes.
2. The alignment aid for a laser apparatus according to claim 1, wherein The two light-aligning plates each include a first light-aligning plate and a second light-aligning plate. The first light-aligning plate has a first hole, and the second light-aligning plate has a second hole. The first hole and the second hole are directly opposite each other. The first light-aligning plate is located between the laser device and the second light-aligning plate, and the reflector is disposed in the second hole.
3. The alignment aid for a laser apparatus according to claim 2, wherein The first pair of light plates has a reflective surface on the side closest to the laser device.
4. The alignment aid for a laser apparatus according to claim 3, wherein The reflective surface is a reflective element or reflective material.
5. The alignment aid for a laser apparatus according to claim 2, wherein The first pair of light plates and the second pair of light plates are arranged in parallel.
6. The alignment aid for a laser apparatus according to claim 3, wherein The second pair of light plates does not have a reflective surface on the side closest to the laser device.
7. The alignment aid for a laser apparatus according to claim 2, wherein The frame is equipped with a right-angle hanging plate, which is fixed to the sliding component inside the linear module by fasteners.
8. The alignment aid for a laser apparatus according to claim 7, wherein The frame, the first pair of light plates, the second pair of light plates, and the right-angle hanging plate are an integrated structure.
9. The alignment aid for a laser apparatus according to claim 7, wherein A connector is installed on the sliding component inside the linear module, and the right-angle hanging plate is hung on the connector and fixed to the connector by the fastener.