Tool for assisting in adjusting precision of bubble of laser instrument
By designing tooling for laser instruments, combined with a tilting table, X-axis adjustment slide and magnification display equipment, accurate magnification display and multi-directional adjustment of the bubble unit are achieved, solving the problem of low precision in traditional tooling and improving the debugging efficiency and accuracy of laser instruments.
Patent Information
- Application Number
- CN202422973427.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-03
- Publication Date
- 2025-10-03
- Estimated Expiration
- 2034-12-03
AI Technical Summary
The debugging accuracy of the bubble unit of existing laser instruments is not high and is greatly affected by human factors. Traditional tooling only has fixed functions and it is difficult to accurately judge whether the bubble is centered, resulting in unstable laser accuracy.
A tooling was designed, which included a basic platform, an adjustment platform, a magnifying display device, and a quick clamping device. Through the combination of a tilting table, an X-axis adjustment slide, a magnifying display device, and a quick clamping device, precise magnifying display and multi-directional adjustment of the blister unit were achieved, reducing the influence of human factors.
The accuracy and efficiency of water bubble debugging are improved, the correspondence between bubble centering and laser precision is ensured, and the product quality of laser instruments is improved.
Smart Images

Figure CN223412733U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of laser instruments and tooling thereof, in particular to a tooling for assisting in adjusting the water bubble precision of a laser instrument. Background Art
[0002] There are many types of laser instruments, including at least laser measuring instruments and laser pointing instruments. These instruments all include a bubble unit. Users can determine the laser's accuracy by observing whether the bubble in the bubble unit is centered. Therefore, the bubble unit's calibration process is very important before the laser instrument leaves the factory, as its accuracy directly affects the laser's accuracy. However, in the prior art, the traditional calibration process typically relies on visually observing the bubble's position and making adjustments. Due to the small size of the bubble unit and its difficulty in observation, the calibration accuracy is low and the efficiency is low. There are some fixtures for calibrating the bubble unit in the prior art, but these fixtures only serve to fix the bubble unit, i.e., to reduce the instability of manual handling. Determining whether the bubble is centered still relies on visual observation. Moreover, when the operator observes the bubble from different angles, the observation results vary, resulting in significant human influence on the bubble's accuracy, making it difficult to accurately determine whether the bubble is centered. Therefore, it is necessary to develop a fixture that can assist in determining and adjusting the bubble's accuracy to reduce the influence of human factors. Summary of the Invention
[0003] In order to solve the deficiencies of the existing technology, the utility model proposes a tooling for assisting in adjusting the accuracy of the water bubble of a laser instrument, which can magnify and display the water bubble unit and has the function of multi-directional adjustment, thereby improving the accuracy and efficiency of water bubble debugging.
[0004] To achieve the above-mentioned purpose, the utility model provides a tooling for assisting in adjusting the accuracy of the bubble of a laser instrument, comprising: a basic platform, the basic platform comprising a tilting table and a back plate, the back plate being mounted on the tilting table, and the back plate supporting the movement part; an adjustment platform, the adjustment platform comprising a base, an X-axis adjustment slide, and an adjustment dividing plate, the base being mounted on the tilting table, the X-axis adjustment slide being mounted on the base, and the adjustment dividing plate being mounted on the X-axis adjustment slide; an amplifying display device, the amplifying display device comprising a probe and a display, the probe being mounted on the adjustment dividing plate, the probe and the display being connected by wired or wireless means, and the image of the monitored bubble unit being projected to the display; a horizontal quick-clamping device, the horizontal quick-clamping device being mounted on the base, and being used to apply a horizontal clamping force to the movement part placed on the back plate; and a vertical quick-clamping device, the vertical quick-clamping device being mounted on the back plate, and being used to apply a vertical clamping force to the movement part.
[0005] In one embodiment, the back plate has a support plate on a side facing the probe for placing the core part.
[0006] In one embodiment, the tilting platform includes an upper plate, a lower plate, and an adjusting column, and the tilting angle of the upper plate relative to the lower plate can be adjusted by rotating the adjusting column.
[0007] In one embodiment, the X-axis adjustment slide includes a guide rail member, a slider member, and a sliding adjustment knob. The guide rail member is installed on the base, and the slider member cooperates with the guide rail member. By rotating the adjustment knob, the slider member can be driven to slide relative to the guide rail member in the X-axis direction.
[0008] In one embodiment, the adjusting indexing plate is mounted on the X-axis adjusting slide via a first adapter. The upper surface of the first adapter is an inclined surface, and the adjusting indexing plate is mounted on the inclined surface.
[0009] In one embodiment, the adjustment indexing plate includes a base plate, a indexing plate, and an indexing plate adjustment knob. The base plate is connected to the inclined surface. Rotating the indexing plate adjustment knob can drive the indexing plate to rotate relative to the base plate around its central axis.
[0010] In one embodiment, the probe is mounted on the adjusting indexing plate via a second adapter so that the front end of the probe faces the bubble unit.
[0011] Beneficial effects:
[0012] The tooling of the present invention for assisting in adjusting the accuracy of the bubble of a laser instrument is provided with a magnifying display device, which displays the image of the bubble unit in an enlarged manner on the display, so that the staff can easily observe whether the bubble is in the center position through the display. Since the probe can be adjusted to face the bubble unit, it will not be affected by the observation angle; and the tooling is provided with an adjustment platform, and the staff can adjust in multiple directions through the adjustment platform until the probe is facing the bubble unit, thereby ensuring that the display accurately displays the bubble unit. Therefore, the tooling of the present invention can accurately and amplify the bubble unit, thereby improving the accuracy and efficiency of bubble debugging, and also ensuring the corresponding relationship between the centering of the bubble and the laser accuracy, thereby ensuring the product quality of the laser instrument. BRIEF DESCRIPTION OF THE DRAWINGS
[0013] The present invention will be further described and elaborated below in conjunction with the accompanying drawings.
[0014] Figure 1 It is a schematic diagram of a tool for assisting in adjusting the water bubble accuracy of a laser instrument in a preferred embodiment of the present utility model.
[0015] Figure 2 yes Figure 1 Exploded view of the tooling.
[0016] Figure 3 It is a three-dimensional schematic diagram of the tilting table of the tooling.
[0017] Figure 4 It is a three-dimensional schematic diagram of the X-axis adjustment slide of the tooling.
[0018] Figure 5 This is a diagram of the adjustment dial of the tooling.
[0019] Reference numerals:
[0020] 100 tooling; 10 movement part; 10a bubble unit; 1 basic platform; 2 adjustment platform; 3 magnifying display device; 4 horizontal quick clamping device; 5 vertical quick clamping device; 11 tilting table; 12 back plate; 21 base; 22 X-axis adjustment slide; 23 adjustment indexing plate; 31 probe; 41 horizontal abutment; 51 vertical abutment; 61 first adapter; 62 second adapter; 111 upper plate; 112 lower plate; 113 adjustment column; 121 support plate; 211 long slot; 221 guide rail member; 222 slider member; 223 sliding adjustment knob; 231 bottom plate; 232 indexing plate; 233 indexing plate adjustment knob; 611 inclined plane. DETAILED DESCRIPTION
[0021] The technical solution of the present invention will be more clearly and completely explained below by describing the preferred embodiments of the present invention in conjunction with the accompanying drawings.
[0022] The utility model proposes a tooling for assisting in adjusting the accuracy of a water bubble of a laser instrument. The laser instrument comprises a movement part, and the movement part comprises a water bubble unit. The tooling comprises: a basic platform, which comprises a tilting platform and a back plate, the back plate is mounted on the tilting platform, and the back plate supports the movement part; an adjustment platform, which comprises a base, an X-axis adjustment slide, and an adjustment dividing plate, the base is mounted on the tilting platform, the X-axis adjustment slide is mounted on the base, and the adjustment dividing plate is mounted on the X-axis adjustment slide; an amplifying display device, which comprises a probe and a display, the probe is mounted on the adjustment dividing plate, the probe and the display are connected by wire or wirelessly, and the image of the monitored water bubble unit is projected to the display; a horizontal quick clamping device, which is mounted on the base and is used to apply a horizontal clamping force to the movement part placed on the back plate; and a vertical quick clamping device, which is mounted on the back plate and is used to apply a vertical clamping force to the movement part.
[0023] The tooling for assisting in adjusting the accuracy of the laser instrument bubble has the function of amplifying and displaying the bubble unit, and can ensure that the bubble unit is observed directly and centered, and adds an adjustment platform, thereby improving the accuracy and efficiency of bubble debugging.
[0024] like Figure 1 and Figure 2Figure 1 shows a tool 100 for assisting in adjusting the water bubble precision of a laser instrument, according to a preferred embodiment of the present invention. The laser instrument comprises a core portion 10, which, as the core component of the laser instrument, includes a laser unit (not shown) and a water bubble unit 10a. The water bubble unit 10a contains a bubble. The user determines whether the laser precision meets the requirements by observing whether the bubble is centered within the bubble unit. Therefore, the bubble's center position must correspond to the laser precision to ensure proper operation of the laser instrument.
[0025] The tooling 100 of the present invention for assisting in adjusting the water bubble precision of a laser instrument comprises a basic platform 1 , an adjustment platform 2 , an amplifying display device 3 , a horizontal quick clamping device 4 , and a vertical quick clamping device 5 .
[0026] Combine Figure 3 As shown, the basic platform 1 includes a tilting platform 11 and a back plate 12. The back plate 12 is mounted on the tilting platform 11 and supports the core part 10. Furthermore, the tilting platform 11 includes an upper plate 111, a lower plate 112, and an adjustment column 113. By rotating the adjustment column 113, the tilt angle of the upper plate 111 relative to the lower plate 112 can be adjusted, thereby achieving the purpose of adjusting the tilt angle of the tilting platform. Since the tilting platform is a standard component in this field, its detailed structure will not be described here. The back plate 12 is fixedly mounted on the upper plate 111, more specifically, fixedly mounted on one side of the upper plate 111. The back plate 12 has a support plate 121 on the side facing the probe for placing the core part 10.
[0027] like Figures 1 to 5 As shown, the adjustment platform 2 includes a base 21, an X-axis adjustment slide 22, and an adjustment indexing plate 23. The base 21 is installed on the tilting platform 11, the X-axis adjustment slide 22 is installed on the base 21, and the adjustment indexing plate 23 is installed on the X-axis adjustment slide 22.
[0028] Furthermore, the base 21 is fixedly mounted on the upper plate 111 of the tilting platform 11 , specifically, fixedly mounted on a side of the upper plate 111 opposite to the back plate 12 .
[0029] The X-axis adjustment slide 22 includes a guide rail member 221, a slider member 222, and a sliding adjustment knob 223. The guide rail member 221 is installed on the base 21, and the slider member 222 cooperates with the guide rail member 221. By rotating the adjustment knob 223, the slider member 222 can be driven to slide relative to the guide rail member 221 in the X-axis direction. Since the X-axis adjustment slide is a standard part in this field, its detailed structure is no longer described here. Furthermore, the base 21 has a pair of elongated slots 211, which extend along the Y-axis direction. The guide rail member 221 is connected to the base 21 by bolts passing through the elongated slots 211 and tightening, so that the guide rail member 221 can adjust its position in the Y-axis direction. Based on such a structural design, the X-axis adjustment slide 22 can be adjusted in both the X-axis direction and the Y-axis direction.
[0030] The adjusting indexing plate 23 is mounted on the X-axis adjusting slide 22 via a first adapter 61 . The upper surface of the first adapter 61 is an inclined surface 611 , and the adjusting indexing plate 23 is mounted on the inclined surface 611 .
[0031] The adjusting indexing plate 23 includes a base plate 231, a indexing plate 232, and an indexing plate adjustment knob 233. The base plate 231 is connected to the inclined surface 611. Rotating the indexing plate adjustment knob 232 can cause the indexing plate 232 to rotate about its central axis relative to the base plate 231. Since the adjusting indexing plate is a standard component in this field, its detailed structure will not be described here.
[0032] The magnifying display device 3 includes a probe 31 and a display (not shown). The probe 31 is mounted on the adjustable indexing plate 23. Specifically, the probe 31 is mounted on the adjustable indexing plate 23 via a second adapter 62, with the front end of the probe 31 facing the bubble unit 10a. The probe 31 is connected to the display via a wired or wireless connection, and the image of the bubble unit 10a is projected onto the display, where it is magnified, allowing personnel to easily observe the location of the bubble.
[0033] like Figure 1 and Figure 2 As shown, a transverse quick-clamping device 4 is mounted on the base 21 and is used to apply a transverse clamping force to the movement portion 10 placed on the back plate 12. Furthermore, a pair of transverse quick-clamping devices 4 are mounted on the base 21, located on the side of the base 21 near the back plate 12. The free ends of the transverse quick-clamping devices 4 have transverse abutment joints 41. In the clamping state, the transverse abutment joints 41 abut against the side of the movement portion 10. Since the movement portion 10 is against the back plate 12, the transverse clamping force secures the movement portion 10 in the transverse direction.
[0034] The vertical quick-clamping device 5 is installed on the back plate 12 and is located above the support plate 121. Its vertical abutment head 51 faces downward and is used to abut the upper edge of the movement part 10, applying a vertical clamping force to the movement part 10, so that the movement part 10 is fixed in the vertical direction.
[0035] Clamped together by the horizontal quick-clamp device 4 and the vertical quick-clamp device 5, the core part 10 is firmly fixed to the back plate 12. At this point, the operator can adjust the position of the probe 31 by adjusting the tilting platform 11 and the adjusting platform 2 until the probe 31 is facing the bubble unit 10a. The image of the bubble unit 10a is then transmitted to the display. The operator can clearly see the magnified bubble unit 10a on the display, making it easier to determine whether the bubble is in the middle of the bubble unit. This method is easier to observe and is not affected by the viewing angle, effectively improving the accuracy and efficiency of bubble precision debugging.
[0036] The above-described specific embodiments merely illustrate preferred embodiments of the present invention and are not intended to limit the scope of protection of the present invention. Any modifications, substitutions, and improvements to the technical solution of the present invention made by a person skilled in the art based on the textual description and accompanying drawings provided herein, without departing from the concept and spirit of the present invention, shall fall within the scope of protection of the present invention. The scope of protection of the present invention is determined by the claims.
Claims
1. A tool for assisting in adjusting the precision of a laser instrument's bubble, wherein the laser instrument comprises a core part, and the core part comprises a bubble unit, characterized in that: The tooling includes: A basic platform, comprising an inclined platform and a back plate, wherein the back plate is mounted on the inclined platform and supports the core part; An adjustment platform, the adjustment platform comprising a base, an X-axis adjustment slide, and an adjustment indexing plate, the base being mounted on the tilting platform, the X-axis adjustment slide being mounted on the base, and the adjustment indexing plate being mounted on the X-axis adjustment slide; A magnifying display device, comprising a probe and a display, wherein the probe is mounted on the adjusting indexing plate, and the probe is connected to the display via a wired or wireless connection, and the image of the blister unit monitored is projected onto the display; a transverse quick-clamping device, mounted on the base, for applying a transverse clamping force to the movement portion placed on the back plate; A vertical quick-clamping device is installed on the back plate and is used to apply a vertical clamping force to the movement part.
2. The tool for assisting in adjusting the water bubble accuracy of a laser instrument according to claim 1, characterized in that: The back plate has a support plate on a side facing the probe for placing the core part.
3. The tool for assisting in adjusting the water bubble accuracy of a laser instrument according to claim 2, characterized in that: The tilting platform includes an upper plate, a lower plate, and an adjusting column. The tilting angle of the upper plate relative to the lower plate can be adjusted by rotating the adjusting column.
4. The tooling for assisting in adjusting the water bubble precision of a laser instrument according to claim 2, characterized in that: The X-axis adjustment slide includes a guide rail part, a slider part, and a sliding adjustment knob. The guide rail part is installed on the base. The slider part cooperates with the guide rail part. By rotating the adjustment knob, the slider part can be driven to slide relative to the guide rail part in the X-axis direction.
5. The tool for assisting in adjusting the water bubble accuracy of a laser instrument according to claim 2, characterized in that: The adjusting indexing plate is mounted on the X-axis adjusting slide via a first adapter. The upper surface of the first adapter is an inclined surface, and the adjusting indexing plate is mounted on the inclined surface.
6. The tool for assisting in adjusting the water bubble precision of a laser instrument according to claim 5, characterized in that: The adjusting indexing plate includes a base plate, a indexing plate, and an indexing plate adjusting knob. The base plate is connected to the inclined surface. Rotating the indexing plate adjusting knob can drive the indexing plate to rotate relative to the base plate around its central axis.
7. The tool for assisting in adjusting the water bubble precision of a laser instrument according to claim 5, characterized in that: The probe is mounted on the adjusting indexing plate through a second adapter so that the front end of the probe faces the bubble unit.