Scanning galvanometer assembling and debugging tool
By designing a tooling fixture for assembling and debugging scanning galvanometers, the rotation and lifting of the scanning galvanometers are achieved by utilizing the rolling friction between the rotating parts and the docking table and the lifting mechanism. This solves the assembly difficulties caused by the large size of the scanning galvanometers and the presence of cables at the bottom, and improves the safety and efficiency of the assembly process.
Patent Information
- Application Number
- CN202423054106.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-11
- Publication Date
- 2025-11-21
- Estimated Expiration
- 2034-12-11
AI Technical Summary
The scanning galvanometer is large and has cables at the bottom, which can cause injury to workers when handled manually and cannot be placed directly on the platform for assembly. There is also a lack of effective positioning and adjustment fixtures.
Design a scanning galvanometer assembly and debugging fixture. Rotation is achieved through the rolling friction between the rotating part and the docking table, and lifting is achieved by combining with a lifting platform. The fixture is fixed by positioning holes and fasteners to ensure a safe and reliable assembly process.
It improves the efficiency of scanning galvanometer assembly, testing and inspection processes, enhances safety, avoids damage to workers and parts, and ensures the reliability of tooling leveling.
Smart Images

Figure CN223572959U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of assembly and debugging tooling, in particular to an assembly and debugging tooling suitable for a scanning galvanometer. BACKGROUND
[0002] At present, the scanning galvanometer is mainly carried by manpower. Since the scanning galvanometer is large in size, it is easy to cause unnecessary harm to workers by relying on manpower alone. Moreover, there are cables led out from the inside on the bottom mounting surface of the scanning galvanometer, so that the scanning galvanometer cannot be directly placed on a platform for assembly. Therefore, it is necessary to design a tooling capable of adjusting the position of the scanning galvanometer. CONTENT OF THE UTILITY MODEL
[0003] In view of the deficiencies in the prior art, the present application provides a scanning galvanometer assembly and debugging tooling, which can realize the rotation of the scanning galvanometer through the rolling friction between the rotating member and the docking table, and realize the lifting of the scanning galvanometer through the setting of the elevator. The specific technical scheme adopted is as follows:
[0004] The scanning galvanometer assembly and debugging tooling comprises a shell, a docking table for mounting the scanning galvanometer is arranged in the shell, and a lifting assembly for adjusting the height of the docking table is arranged below the docking table. The docking table comprises a docking base, at least two rotating members are movably connected below the docking base, the rotating members are arranged on a mounting seat through mounting supports, a plurality of positioning supports are arranged around the mounting seat, and positioning members for positioning the docking base are arranged on the positioning supports.
[0005] Since there are cables led out from the inside on the bottom mounting surface of the scanning galvanometer, the bottom of the scanning galvanometer cannot be directly mounted on a flat workbench. Therefore, the middle of the docking base is arranged as a hollow structure.
[0006] In order to facilitate the positioning of the scanning galvanometer, positioning holes corresponding to the scanning galvanometer are further arranged on the docking base, and the scanning galvanometer is fixed by fasteners.
[0007] Preferably, the rotating members are arranged in the circumferential direction of the docking base.
[0008] In order to limit the movement track of the docking table, rotating grooves corresponding to the rotating members are arranged below the docking base.
[0009] Further preferably, the rotating members comprise rollers, bearings or hollow shafts.
[0010] Preferably, the side surface of the docking base is provided with positioning grooves corresponding to the positioning members, and the positioning members slide in the positioning grooves.
[0011] Further preferably, the positioning members comprise ball plunger or positioning pins.
[0012] Still further preferably, the positioning member is a ball head plunger, which provides a certain pre-tightening force while positioning the docking base.
[0013] Preferably, the mounting seat periphery is further provided with a fixing support, which is provided with a fixing member for fixing the docking base, and the docking base is uniformly provided with a plurality of corresponding fixing holes on the side surface.
[0014] Further preferably, the fixing member comprises a bolt or a pin.
[0015] Preferably, the lifting assembly comprises one of a screw rod lifter, a hydraulic lifter, a pneumatic lifter, a linear motor lifter, a gear lifter, and a turbine lifter.
[0016] Preferably, the shell is provided below with an adjusting foot for adjusting the scanning galvanometer to be horizontal.
[0017] Preferably, the shell is further provided below with a pulley for facilitating movement of the entire tooling,
[0018] Further preferably, the pulley is a horizontal adjustable Forma pulley.
[0019] Preferably, the tooling further comprises a control system connected to the lifting assembly, for controlling lifting and pausing of the lifting assembly.
[0020] The beneficial effects of the present application are:
[0021] 1) The scanning galvanometer mounting surface is rotated 360° horizontally through the rolling friction between the rotating member and the docking table, and the lifting of the scanning galvanometer is realized through the setting of the lifter, which helps to improve the working efficiency of the reassembly process, the testing process, and the inspection process;
[0022] 2) The scanning galvanometer is installed on the docking base through the fastener, and the safety of the scanning galvanometer in the assembly, testing, and inspection process is improved through the hard connection, thereby avoiding unnecessary damage to the workers or parts;
[0023] 3) The horizontal adjustment of the debugging tooling is double guaranteed through the setting of the adjusting foot and the Forma pulley, and the safety and reliability of the entire tooling are improved. BRIEF DESCRIPTION OF DRAWINGS
[0024] Figure 1 is an exploded view of the assembly and debugging tooling of the scanning galvanometer described in the present application;
[0025] Figure 2 is a half-sectional view of the assembly and debugging tooling of the scanning galvanometer described in the present application;
[0026] Figure 3is an exploded view of the docking table described in the present application;
[0027] Figure 4 is a bottom view of the docking base described in the present application.
[0028] In the figure: 1, housing, 2, docking table, 201, docking base, 202, rotating part, 203, mounting support, 204, fixed support, 205, fixing part, 206, positioning support, 207, positioning hole, 208, rotating groove, 209, positioning groove, 210, fixing hole, 211, positioning part, 212, mounting seat, 3, lifting assembly, 4, adjusting leg, 5, pulley. DETAILED DESCRIPTION
[0029] The technical solutions of the present application will be described clearly and completely below in combination with the drawings and specific examples.
[0030] In combination Figures 1 to 4 , the present application is further described. A scanning galvanometer assembly debugging tool includes a housing 1, the housing 1 is provided with a docking table 2 for mounting a scanning galvanometer, the docking table 2 is provided below with a lifting assembly 3 for adjusting the height of the docking table 2, the docking table 2 includes a docking base 201, the docking base 201 is movably connected below at least two rotating parts 202, the rotating parts 202 are arranged on a mounting seat 212 through a mounting support 203, the mounting seat 212 is provided around with a plurality of positioning supports 206, and the positioning supports 206 are provided with positioning parts 211 for positioning the docking base 201.
[0031] As Figure 3 shown, since there is a cable leading out from the inside of the scanning galvanometer on the bottom mounting surface of the scanning galvanometer, the bottom of the scanning galvanometer cannot be directly mounted on a flat workbench, so the middle of the docking base 201 is provided as a hollow structure. In order to facilitate positioning the scanning galvanometer, the docking base 201 is also provided with positioning holes 207 corresponding to the scanning galvanometer, and the positioning holes 207 fix the scanning galvanometer through fasteners. Among them, the fasteners include fastening bolts.
[0032] In this embodiment, the rotating parts 202 are arranged in the circumferential direction of the docking base 201. Among them, referring to Figure 4 , the docking base 201 is provided below with rotating grooves 208 corresponding to the rotating parts 202, the rotating grooves 208 are used to limit the movement trajectory of the docking table 2, and the rotating parts 202 and the docking base 201 generate rolling friction therebetween, so that the docking base 201 rotates along the axis of the rotating grooves 208. Specifically, the rotating parts 202 include rollers or bearings or hollow shafts.
[0033] AsFigure 3 As shown, the docking base 201 is provided with a positioning groove 209 corresponding to the positioning member 211, and the positioning member 211 slides in the positioning groove 209. Specifically, the positioning member 211 includes a ball plunger or a positioning pin. In this embodiment, the positioning member 211 is a ball plunger, which provides a certain pre-tightening force while positioning the docking base 201.
[0034] The mounting seat 212 is also provided with a fixed support 204, and the fixed support 204 is provided with a fixing member 205 for fixing the docking base 201. The docking base 201 is uniformly provided with a plurality of corresponding fixing holes 210 on the side. When the fixing member 205 is pulled out of the docking base 201, the docking base 201 is rotated to the required working angle along the axis direction of the rotating groove 208, and then the fixing member 205 is inserted, so as to realize the rapid flow between the assembly station, the test station and the inspection station. Specifically, the fixing member 205 includes a bolt or a pin.
[0035] As shown in the figure, Figure 2 The lifting assembly 3 includes a screw lifting machine or a hydraulic lifting machine or a pneumatic lifting machine or a linear motor lifting machine or a gear lifting machine or a turbine lifting machine. In this embodiment, the lifting assembly 3 is a gear lifting machine. The gear on the output shaft of the gear lifting machine is driven to rotate by the motor, the gear drives the rack to move up and down, and then pushes the docking base 201, so as to realize the lifting of the docking table 2.
[0036] As shown in the figure, Figure 2 The docking table 2 is also provided below with a guide rail sliding block for assisting the lifting of the docking table 2.
[0037] In this embodiment, the shell 1 is provided below with an adjusting leg 4 for adjusting the scanning galvanometer to be horizontal.
[0038] The shell 1 is also provided below with a pulley 5 for facilitating the movement of the whole tooling. In this embodiment, the pulley 5 is a horizontal adjustable Forma wheel. By setting the adjusting leg 4 and the pulley 5 which can adjust the level, the reliability of the level adjustment is ensured.
[0039] In this embodiment, a control system is also included for controlling the lifting and pausing of the lifting assembly 3.
[0040] The embodiments described in the present application are only the preferred embodiments of the present application, not all embodiments. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative labor fall within the scope of protection of the present application.
Claims
1. A scanning galvanometer assembly debugging tool, comprising a shell, a docking table for mounting a scanning galvanometer is arranged in the shell, a lifting assembly for adjusting the height of the docking table is arranged below the docking table, characterized in that: The docking station comprises a docking base, at least two rotating members movably connected below the docking base, the rotating members being arranged on a mounting seat through mounting supports, a plurality of positioning supports being arranged around the mounting seat, and positioning members for positioning the docking base being arranged on the positioning supports.
2. The scanning galvanometer assembly debugging tool according to claim 1, wherein: The docking base is provided with positioning holes corresponding to the scanning galvanometer, and the scanning galvanometer is fixed by fasteners.
3. The scanning galvanometer assembly debugging tool according to claim 1, wherein: The docking base is provided with rotating grooves corresponding to the rotating members.
4. The scanning galvanometer assembly debugging tool according to claim 3, characterized in that: The rotating members comprise rollers, bearings or hollow shafts.
5. The scanning galvanometer assembly debugging tool according to claim 1, wherein: The docking base is provided with positioning grooves corresponding to the positioning members on the side surface, and the positioning members slide in the positioning grooves.
6. The scanning galvanometer assembly debugging tool according to claim 5, characterized in that: The positioning members comprise ball head plungers or positioning pins.
7. The scanning galvanometer assembly debugging tool according to claim 1, wherein: The mounting seat is further provided with fixing supports, the fixing supports are provided with fixing members for fixing the docking base, and the docking base is uniformly provided with a plurality of corresponding fixing holes on the side surface.
8. The scanning galvanometer assembly debugging tool according to claim 7, characterized in that: The fixing members comprise latches or bolts.
9. The scanning galvanometer assembly debug fixture of claim 1, wherein: The lifting assembly comprises one of a screw rod lifter, a hydraulic lifter, a pneumatic lifter, a linear motor lifter, a gear lifter and a turbine lifter.
10. The scanning galvanometer assembly debug fixture of claim 1, wherein: A control system connected to the lifting assembly is further included for controlling the lifting and pausing of the lifting assembly.