Quick disassembly type laser head detection tool
By designing a quick-disassembly laser head detection tool, including clamping, quick-disassembly and light-absorbing mechanism, the problems of cumbersome detection processes and operating risks in the prior art are solved, and more efficient, safe and reliable laser head detection is achieved.
Patent Information
- Application Number
- CN202510319385.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-18
- Publication Date
- 2025-06-10
Smart Images

Figure CN120121268A_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of laser detection, and particularly to a quick-disassembly type laser head detection tooling. Background Art
[0002] In the laser head detection stage, to ensure the performance and quality of the laser head, it is necessary to accurately detect multiple key parameters such as the coaxiality, wavelength band, and focus of the formed light. The detection of these parameters usually involves a variety of high-precision detection instruments and related installation fixtures, such as CCD analyzers, red light generators, etc. The CCD analyzer is mainly used to capture and analyze the shape and position of the laser beam to ensure that its coaxiality meets the design requirements; the red light generator is used to simulate and verify the wavelength band characteristics of the laser to ensure that its wavelength is within the predetermined range. In addition, the detection of the focus requires the use of special focusing detection equipment to ensure that the focus point of the laser beam is accurate.
[0003] During the detection process, since the instruments and fixtures required in different detection stages are different, the operator needs to frequently replace the detection instruments and installation fixtures. This frequent replacement not only increases the complexity of the detection process but also may cause wear of the laser head components. Especially during the installation and disassembly of the fixtures, due to the relatively tight contact between the fixture and the laser head, it is easy to scratch or wear the optical surface or mechanical structure of the laser head, thereby affecting its service life and performance stability. In addition, the accuracy and stability of the detection instruments also have a direct impact on the detection results. If the instruments are not calibrated properly or used improperly, it may lead to deviation of the detection data, thereby affecting the quality control of the laser head.
[0004] Therefore, the existing laser head detection process is not only cumbersome but also has certain operation risks. There is an urgent need for a more efficient and stable detection method and device to reduce the frequency of instrument replacement during the detection process, reduce the wear risk of laser head components, and improve the accuracy and reliability of detection. Summary of the Invention
[0005] In view of this, the purpose of this application is to provide a quick-disassembly type laser head detection tooling.
[0006] An embodiment of this application provides a quick-disassembly type laser head detection tooling, which includes a fixed platform, a clamping mechanism, a quick-disassembly mechanism, and a light absorption mechanism. The clamping mechanism, the quick-disassembly mechanism, and the light absorption mechanism are sequentially assembled on the top surface of the fixed platform;
[0007] The clamping mechanism is used to lock and unlock the laser head to be detected. The clamping mechanism includes a positioning component and an adjusting component. The positioning component includes a base, a handle, and an extension arm. The pose change of the handle can cause the pose change of the extension arm. The pose change range of the handle is restricted by the base. The extension arm is connected to the adjusting component. The pose change of the extension arm can cause the adjusting component to switch between two modes: locking the laser head and unlocking the laser head.
[0008] The quick-release mechanism can be used to lock and unlock the detection instrument for detecting the laser head to be detected, and the quick-release mechanism is also used to adjust the detection instrument.
[0009] The light-absorbing mechanism is used to receive the laser emitted by the laser head to be detected.
[0010] In some embodiments, the handle is rotatably connected to the extension arm, the handle is rotatably connected to the base, and the base is installed on the top surface of the fixed platform.
[0011] The extension arm is rotatably connected to the base, and the pose change range of the extension arm is restricted by the base.
[0012] In some embodiments, the positioning component further includes a connecting rod, and the handle is connected to the base through the connecting rod.
[0013] In some embodiments, the base includes a base top and a base bottom, there is a height difference between the base top and the base bottom, and the base bottom is installed on the top surface of the fixed platform.
[0014] The base top includes a base first end and a base second end that are far away from each other. The extension arm includes an extension arm first end and an extension arm second end that are far away from each other and an extension arm actuating end located between the extension arm first end and the extension arm second end. The connecting rod includes a connecting rod first end and a connecting rod second end that are far away from each other. The handle includes a handle first end and a handle second end that are far away from each other and a handle middle section located between the handle first end and the handle second end.
[0015] The base first end is connected to the extension arm second end.
[0016] The base second end is connected to the connecting rod second end, the connecting rod second end is connected to the handle middle section; the handle first end is connected to the extension arm actuating end.
[0017] The first end of the extension arm is connected to the adjusting component.
[0018] In some embodiments, the adjusting assembly includes an adjusting screw rod and a pressing head. The adjusting screw rod includes a first end of the adjusting screw rod and a second end of the adjusting screw rod that are away from each other. The first end of the adjusting screw rod is connected to the lengthening arm, and the second end of the adjusting screw rod is connected to the pressing head;
[0019] An angle α is formed between the adjusting screw rod and the lengthening arm, where 0° ≤ α ≤ 180°.
[0020] In some embodiments, the lengthening arm is provided with a through hole or is a hollow structure, and the adjusting assembly further includes a plurality of adjusting nuts and a plurality of positioning pieces;
[0021] The adjusting screw rod is fixed to the lengthening arm at an angle α through the adjusting nuts and the positioning pieces;
[0022] The plurality of adjusting nuts include a first adjusting nut and a second adjusting nut, and the plurality of positioning pieces include a first positioning piece and a second positioning piece;
[0023] The first end of the adjusting screw rod sequentially passes through the first adjusting nut, the first positioning piece, the lengthening arm, the second positioning piece, and the second adjusting nut, and is fixed to the lengthening arm through the adjusting nuts;
[0024] Before the adjusting screw rod is fixed to the lengthening arm, the distance of the second end of the adjusting screw rod relative to the lengthening arm can be adjusted.
[0025] In some embodiments, at least two clamping mechanisms are provided on the top surface of the fixed platform, and the clamping mechanisms are respectively located on the left and right sides of the laser head.
[0026] In some embodiments, the clamping mechanism further includes a clamping base, a part of the laser head is located on the clamping base, and the pressing head abuts against the clamping base.
[0027] In some embodiments, the quick-release mechanism includes a quick-release base, a bushing, a cylindrical pin, and a fixed bracket. The cylindrical pin includes an upper cylindrical pin and a lower cylindrical pin. The top end of the fixed bracket is connected to the detection instrument through the upper cylindrical pin, the bottom end of the fixed bracket is fixedly connected to the lower cylindrical pin. The bushing is a hollow cylinder, the bushing is fixedly connected to the quick-release base, the bushing and the base form a bracket accommodation space, a cylindrical hole is provided in the center of the quick-release base, and the cylindrical hole is located below the bracket accommodation space. When the fixed bracket is completely accommodated in the bracket accommodation space, the lower cylindrical pin is partially accommodated in the cylindrical hole, so as to achieve quick positioning during the assembly of the detection instrument.
[0028] The quick-release mechanism further includes a fastening screw. A screw hole is provided on the side wall of the bushing, and the fastening screw passes through the screw hole and abuts against the fixed bracket.
[0029] A slide rail is installed on the fixed platform. The quick-release base is located above the slide rail, and the quick-release base is movable relative to the slide rail.
[0030] In some embodiments, the light absorption mechanism includes a light absorption disc. The front surface of the light absorption disc has corrugated grooves, and the corrugated grooves can absorb light.
[0031] The light absorption mechanism further includes a cover plate. A water guide groove is provided on the back of the light absorption disc. The light absorption disc can be hermetically covered with the cover plate. The water guide groove on the back of the light absorption disc and the cover plate form a sealed water guide space through hermetic covering, and the water guide space can be filled with cooling water. An inlet and an outlet are provided on the side wall of the light absorption disc.
[0032] The light absorption mechanism further includes a protective cover, and the protective cover is located on the side of the light absorption disc away from the cover plate.
[0033] Advantages that can be achieved by this application:
[0034] 1. Through the setting of the clamping mechanism, the laser head to be detected can be quickly and safely installed and disassembled, which can not only improve the detection efficiency, but also avoid damage to the laser head.
[0035] 2. By actuating the extension arm with the handle, it can facilitate the fixing operation during installation.
[0036] 3. Since the range of pose change of the handle is limited by the base, the accuracy of the operation during installation is improved.
[0037] 4. Through the setting of the quick-release mechanism, the detection instrument can be quickly positioned and fixed.
[0038] 5. Through the cooperation of the fixed bracket and the bushing, the preliminary positioning during the installation of the detection instrument can be achieved.
[0039] 6. Through the cooperation of the lower cylindrical pin and the cylindrical hole, the secondary precise positioning during the detection installation can be achieved.
[0040] 7. Through the fastening screw, the shaking of the detection instrument can be prevented.
[0041] 8. Through the setting of the light absorption mechanism, the laser generated during detection can be safely processed without affecting the operator or the surrounding environment during the detection process.
[0042] 9. The design of the corrugated grooves can increase the effective area of the surface of the light absorption plate, enabling the light to be reflected and scattered multiple times in the grooves, thereby improving the light absorption efficiency of the light absorption plate. On the other hand, the corrugated grooves can effectively disperse the incident light and reduce the generation of direct reflected light, thereby reducing the glare phenomenon.
[0043] 10. Filling the water guiding space with cooling water can effectively improve its heat dissipation capacity. Under laser or strong light irradiation, the light absorption mechanism will absorb a large amount of energy and convert it into heat energy. The design of the water guiding space helps to quickly dissipate heat, avoiding damage or performance degradation of the light absorption mechanism due to overheating.
[0044] 11. The protective cover can effectively block external pollutants such as dust, oil, and water vapor from entering the inside of the light absorption mechanism; on the other hand, the protective cover can absorb part of the laser reflected by the light absorption disk, reducing the impact of the laser on the surrounding environment and operators during detection.
[0045] To make the above objects, features, and advantages of the present application more obvious and understandable, the following specifically gives preferred embodiments and, in conjunction with the accompanying drawings, the detailed description is as follows. BRIEF DESCRIPTION OF THE DRAWINGS
[0046] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the following will briefly introduce the drawings required for use in the embodiments. It should be understood that the following drawings only show some embodiments of the present application, and therefore should not be regarded as limiting the scope. For those of ordinary skill in the art, without creative efforts, other relevant drawings can also be obtained based on these drawings.
[0047] Figure 1 Shows the structural schematic diagram of a quick-release type laser head detection tooling of the present application;
[0048] Figure 2 Shows the structural schematic diagram of the clamping mechanism of a quick-release type laser head detection tooling of the present application;
[0049] Figure 3 Shows the side view of the clamping mechanism of a quick-release type laser head detection tooling of the present application.
[0050] Figure 4 Shows the structural schematic diagram of the quick-release mechanism of a quick-release type laser head detection tooling of the present application;
[0051] Figure 5 Shows the structural schematic diagram of the light absorption mechanism of a quick-release type laser head detection tooling of the present application;
[0052] Description of Main Component Symbols: 1 - Fixed Platform; 2 - Clamping Mechanism; 3 - Quick Release Mechanism; 4 - Light Absorbing Mechanism; 5 - Slide Rail; 21 - Positioning Component; 22 - Adjusting Component; 211 - Base; 212 - Handle; 213 - Extension Arm; 214 - Connecting Rod; 2111 - Top of the Base; 2112 - Bottom of the Base; 2113 - First End of the Base; 2114 - Second End of the Base; 2131 - First End of the Extension Arm; 2132 - Second End of the Extension Arm; 2133 - Actuating End of the Extension Arm; 2141 - First End of the Connecting Rod; 2142 - Second End of the Connecting Rod; 2121 - First End of the Handle; 2122 - Second End of the Handle; 2123 - Middle Section of the Handle; 221 - Adjusting Screw; 222 - Pressing Head; 223 - First Adjusting Nut; 224 - Second Adjusting Nut; 225 - First Positioning Plate; 226 - Second Positioning Plate; 31 - Quick Release Base; 32 - Bushing; 33 - Fixed Bracket; 34 - Upper Cylindrical Pin; 35 - Lower Cylindrical Pin; 36 - Fastening Screw; 41 - Light Absorbing Disc; 42 - Cover Plate; 43 - Protective Cover; 411 - Water Guide Groove; 412 - Water Inlet; 413 - Water Outlet. Detailed Implementation Manner
[0053] In the description of the present application, the terms "comprising", "including", "containing" or "characterized by" in the specification, claims and drawings of the present application are synonymous, and are inclusive of endpoints or open-ended, and do not exclude additional unrecited elements or method steps. "Comprising" is a technical term used in claim language, meaning that the elements exist, but other elements can also be added and still form a structure or method within the scope of the claims.
[0054] It should be noted that: Similar reference numerals and letters denote similar items in the following drawings. Therefore, once an item is defined in one drawing, it does not need to be further defined and explained in subsequent drawings. In addition, the terms "first", "second", "third", etc. are only used for distinguishing descriptions and cannot be understood as indicating or implying relative importance. In the present application, the term "about" means including a small change (up to + / - 10%) of the value.
[0055] Next, the technical solutions in the embodiments of the present application will be clearly and completely described in conjunction with the drawings in the embodiments of the present application. Obviously, the described embodiments are part of the embodiments of the present application, rather than all of the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present application without creative efforts shall fall within the protection scope of the present application.
[0056] References to "embodiments" in this document mean that the specific features, structures, or characteristics described in connection with the embodiments can be included in at least one embodiment of the present application. The phrase appears in various places in the specification and does not necessarily refer to the same embodiment, nor is it an independent or alternative embodiment mutually exclusive with other embodiments. Those skilled in the art will explicitly and implicitly understand that the embodiments described herein can be combined with other embodiments.
[0057] An embodiment of the present application provides a quick-release type laser head detection tooling, as Figure 1 shown, which includes a fixed platform 1, a clamping mechanism 2, a quick-release mechanism 3, and a light absorption mechanism 4. The clamping mechanism 2, the quick-release mechanism 3, and the light absorption mechanism 4 are sequentially assembled on the top surface of the fixed platform 1. The clamping mechanism 2 is used to lock and unlock the laser head to be detected. The quick-release mechanism 3 can be used to lock and unlock the detection instrument for detecting the laser head to be detected, and the quick-release mechanism 3 is also used to adjust the detection instrument. The light absorption mechanism 4 is used to receive the laser emitted by the laser head to be detected.
[0058] In some embodiments, the clamping mechanism 2, as Figures 2 - 3 shown, includes a positioning component 21 and an adjustment component 22. The positioning component 21 includes a base 211, a handle 212, and an extension arm 213. The handle 212 is rotatably connected to the extension arm 213. The change in the pose of the handle 212 can cause the change in the pose of the extension arm 213. At the same time, the handle 212 is rotatably connected to the base 211, and the change range of the pose of the handle 212 is limited by the base 211. The base 211 is installed on the top surface of the fixed platform 1.
[0059] The extension arm 213 is connected to the adjustment component 22. The change in the pose of the extension arm 213 can cause the adjustment component 22 to switch between two modes: locking the laser head and unlocking the laser head.
[0060] In some embodiments, the extension arm 213 is rotatably connected to the base 211, and the change range of the pose of the extension arm 213 is limited by the base 211.
[0061] In some embodiments, the positioning component 21 further includes a connecting rod 214. The handle 212 is connected to the base 211 through the connecting rod 214. The base 211 and the connecting rod 214 jointly affect the change range of the pose of the handle 212.
[0062] In some embodiments, the base 211 includes a base top 2111 and a base bottom 2112. The base bottom 2112 is mounted on the top surface of the fixed platform 1. The base top 2111 includes a base first end 2113 and a base second end 2114 that are away from each other. The extension arm 213 includes an extension arm first end 2131 and an extension arm second end 2132 that are away from each other, and an extension arm actuating end 2133 located between the extension arm first end 2131 and the extension arm second end 2132. The connecting rod 214 includes a connecting rod first end 2141 and a connecting rod second end 2142 that are away from each other. The handle 212 includes a handle first end 2121 and a handle second end 2122 that are away from each other, and a handle middle section 2123 located between the handle first end 2121 and the handle second end 2122.
[0063] In some embodiments, the base first end 2113 and the base second end 2114 are at different heights.
[0064] The base first end 2113 is connected to the extension arm second end 2132, so that the pose change range of the extension arm 213 is limited by the base 211.
[0065] The base second end 2114 is connected to the connecting rod second end 2142, and the connecting rod second end 2142 is connected to the handle middle section 2123, so that the pose change range of the handle 212 is limited by the base 211.
[0066] The handle first end 2121 is connected to the extension arm actuating end 2133, so that the pose change of the handle 212 can cause the pose change of the extension arm 213.
[0067] The first end of the extension arm 213 is connected to the adjustment assembly 22, so that the pose change of the extension arm 213 drives the adjustment assembly 22 to lock and unlock the laser head.
[0068] In some embodiments, the adjustment assembly 22 includes an adjustment screw 221 and a pressing head 222. The adjustment screw 221 includes an adjustment screw 221 first end and an adjustment screw 221 second end that are away from each other. The adjustment screw 221 first end is connected to the extension arm 213, and the adjustment screw 221 second end is connected to the pressing head 222.
[0069] The pose change of the extension arm 213 causes the pose change of the adjustment screw 221, and further causes the pressing head 222 to switch between the mode of abutting against the laser head and the mode of not abutting against the laser head, so as to realize the locking and unlocking of the laser head.
[0070] An angle α is formed between the adjustment screw 221 and the extension arm 213. In some embodiments, 0° ≤ α ≤ 180°.
[0071] Preferably, the angle α is 90°.
[0072] In some embodiments, the extension arm 213 is provided with through holes or is a hollow structure, and the adjusting assembly 22 further includes a plurality of adjusting nuts. The adjusting screw 221 is fixed to the extension arm 213 at an angle α through the adjusting nuts.
[0073] In some embodiments, the extension arm 213 is a hollow structure. The plurality of adjusting nuts includes a first adjusting nut 223 and a second adjusting nut 224. The first end of the adjusting screw 221 sequentially passes through the first adjusting nut 223, the extension arm 213, and the second adjusting nut 224. The first adjusting nut 223 and the second adjusting nut 224 are screwed tightly towards the extension arm 213, so as to realize the relative fixation of the adjusting screw 221 and the extension arm 213.
[0074] In some embodiments, the adjusting assembly 22 further includes a plurality of positioning pieces. The plurality of positioning pieces includes a first positioning piece 225 and a second positioning piece 226. When the gap of the hollow extension arm 213 is relatively large, the adjusting nut cannot quickly fix the adjusting screw 221. Therefore, the first positioning piece 225 and the second positioning piece 226 can be respectively arranged between the extension arm 213 and the first adjusting nut 223 and the second adjusting nut 224. The first positioning piece 225 and the second positioning piece 226 can first assist in positioning the adjusting screw 221 and the extension arm 213, and then fix the relative positions of the adjusting screw 221 and the extension arm 213 by screwing the first adjusting nut 223 and the second adjusting nut 224 tightly.
[0075] In some embodiments, both the first positioning piece 225 and the second positioning piece 226 are sheet-like structures, and both ends thereof have bending portions bent towards the extension arm. The design of the bending portions can enable the positioning pieces to directly form a sliding connection with a certain moving space with the extension arm, so as to assist in adjusting the relative position between the adjusting assembly 22 and the extension arm 213.
[0076] Before the adjusting screw 221 is fixed to the extension arm 213, the distance of the second end of the adjusting screw 221 relative to the extension arm 213 can be adjusted. Therefore, the distance of the pressing head 222 located at the second end of the adjusting screw 221 relative to the extension arm 213 can be adjusted.
[0077] In some embodiments, at least two clamping mechanisms 2 are arranged on the top surface of the fixed platform 1, and the clamping mechanisms 2 are respectively located on the left and right sides of the laser head.
[0078] In some embodiments, the clamping mechanism 2 further includes a clamping base 211. A part of the laser head is located on the clamping base 211, and the pressing head 222 abuts against the clamping base 211. In some embodiments, a part of the laser head is directly placed on the clamping base 211. The advantage of directly placing the laser head on the clamping base 211 is to avoid damage to the laser head.
[0079] In some other embodiments, considering that the laser head may need to be taken out and put back during the laser head test, and there may be situations such as displacement of the laser head, to avoid measurement errors, the laser head part is set to be clamped or snapped in the base 211. The clamping base 211 can adjust its clamping or snapping width according to the size of the laser head, so as to facilitate the fixation of the laser.
[0080] In some embodiments, the quick-release mechanism 3, such as Figure 4 shown, includes a quick-release base 31, a bushing 32, a cylindrical pin, and a fixed bracket 33. The cylindrical pin includes an upper cylindrical pin 34 and a lower cylindrical pin 35. The top of the fixed bracket 33 is connected to the detection instrument through the upper cylindrical pin 34. The bottom of the fixed bracket 33 is fixedly connected to the lower cylindrical pin 35. The bushing 32 is a hollow cylinder and is fixedly connected to the quick-release base 31. The bushing 32 and the base 211 form a bracket accommodation space. A cylindrical hole is provided in the center of the quick-release base 31, and the cylindrical hole is located below the bracket accommodation space. When the fixed bracket 33 is completely accommodated in the bracket accommodation space, the lower cylindrical pin 35 is partially accommodated in the cylindrical hole, so as to achieve rapid positioning during the assembly of the detection instrument.
[0081] A slide rail 5 is installed on the fixed platform 1. The quick-release base 31 is located above the slide rail 5, and the quick-release base 31 can move relative to the slide rail 5.
[0082] The quick-release mechanism 3 further includes a fastening screw 36. A screw hole is provided on the side wall of the bushing 32. The fastening screw 36 passes through the screw hole and abuts against the fixed bracket 33, so as to prevent the detection instrument from shaking.
[0083] In some embodiments, the light absorption mechanism 4 includes a light absorption disk 41. The front surface of the light absorption disk 41 has corrugated grooves, and the corrugated grooves can absorb light.
[0084] In some embodiments, the light absorption mechanism 4, such as Figure 5 shown, further includes a cover plate 42. A water guide groove 411 is provided on the back of the light absorption disk 41. The light absorption disk 41 can be hermetically covered with the cover plate 42. The water guide groove 411 on the back of the light absorption disk 41 and the cover plate 42 form a sealed water guide space through hermetic covering, and the water guide space can be filled with cooling water.
[0085] In some embodiments, water inlets 412 and water outlets 413 are provided on the side wall of the light absorption disk 41.
[0086] In some embodiments, the light absorption mechanism 4 further includes a protective cover 43. The protective cover 43 is located on the side of the light absorption disk 41 away from the cover plate 42. The protective cover 43 can absorb part of the laser reflected by the light absorption disk 41. A screw hole is provided in the protective cover 43, and it is connected to the light absorption disk 41 through an internal hexagonal screw.
[0087] The above has introduced the embodiments of the present application in detail. Specific examples are used in this article to elaborate on the principle and implementation manner of the present application. The description of the above embodiments is only used to help understand the method and its core idea of the present application; at the same time, for those of ordinary skill in the art, according to the idea of the present application, there will be changes in the specific implementation manner and application scope. In summary, the content of this specification should not be construed as a limitation to the present application.
Claims
1. A quick-release laser head detection tool, characterized in that: It comprises a fixed platform, a clamping mechanism, a quick-release mechanism and a light absorbing mechanism, wherein the clamping mechanism, the quick-release mechanism and the light absorbing mechanism are sequentially assembled on the top surface of the fixed platform; The clamping mechanism is used to lock and unlock the laser head to be detected. The clamping mechanism includes a positioning component and an adjustment component. The positioning component includes a base, a handle and an extension arm. The position change of the handle can cause the position change of the extension arm. The position change range of the handle is limited by the base. The extension arm is connected to the adjustment component. The position change of the extension arm can make the adjustment component switch between two modes of locking the laser head and unlocking the laser head. The quick release mechanism can be used to lock and unlock the detection instrument for detecting the laser head to be detected, and the quick release mechanism is also used to adjust the detection instrument; The light absorbing mechanism is used to receive the laser emitted by the laser head to be detected.
2. According to the quick-release laser head detection tooling described in claim 1, it is characterized in that: The handle is rotatably connected to the extension arm, the handle is rotatably connected to the base, and the base is mounted on the top surface of the fixed platform; The extension arm is rotatably connected to the base, and the position change range of the extension arm is limited by the base.
3. According to the quick-release laser head detection tooling described in claim 1, it is characterized in that: The positioning assembly also includes a connecting rod, and the handle is connected to the base through the connecting rod.
4. According to the quick-release laser head detection tooling described in claim 3, it is characterized in that: The base comprises a base top and a base bottom, the base top and the base bottom have a height difference, and the base bottom is installed on the top surface of the fixed platform, The top of the base includes a base first end and a base second end that are far away from each other, the extension arm includes a first extension arm end and a second extension arm end that are far away from each other, and an extension arm actuating end located between the first extension arm end and the second extension arm end, the connecting rod includes a first connection rod end and a second connection rod end that are far away from each other, and the handle includes a first handle end and a handle second end that are far away from each other, and a handle middle section located between the first handle end and the second handle end; The first end of the base is connected to the second end of the extension arm; The second end of the base is connected to the second end of the connecting rod, and the second end of the connecting rod is connected to the middle section of the handle; the first end of the handle is connected to the actuating end of the extension arm; The first end of the extension arm is connected to the adjustment assembly.
5. The quick-release laser head detection tooling according to claim 4, characterized in that: The adjusting assembly comprises an adjusting screw and a pressure head; the adjusting screw comprises an adjusting screw first end and an adjusting screw second end which are far away from each other, the adjusting screw first end is connected to the extension arm, and the adjusting screw second end is connected to the pressure head; An angle α is formed between the adjusting screw and the extension arm, and 0°≤α≤180.
6. The quick-release laser head detection tooling according to claim 5, characterized in that: The extension arm is provided with a through hole or is a hollow structure, and the adjustment assembly further includes a plurality of adjustment nuts and a plurality of positioning sheets; The adjusting screw is fixed to the extension arm at an angle α through the adjusting nut and the positioning piece; The plurality of adjusting nuts include a first adjusting nut and a second adjusting nut, and the plurality of positioning pieces include a first positioning piece and a second positioning piece; The first end of the adjusting screw rod sequentially passes through the first adjusting nut, the first positioning piece, the extension arm, the second positioning piece and the second adjusting nut, and is fixed to the extension arm through the adjusting nut; Before the adjusting screw is fixed to the extension arm, the distance of the second end of the adjusting screw relative to the extension arm can be adjusted.
7. The quick-release laser head detection tooling according to claim 6, characterized in that: At least two clamping mechanisms are arranged on the top surface of the fixed platform, and the clamping mechanisms are respectively located on the left and right sides of the laser head.
8. The quick-release laser head detection tooling according to claim 7, characterized in that: The clamping mechanism also includes a clamping base, the laser head portion is located on the clamping base, and the pressure head abuts against the clamping base.
9. The quick-release laser head detection tooling according to claim 8, characterized in that: The quick release mechanism includes a quick release base, a bushing, a cylindrical pin, and a fixed bracket. The cylindrical pin includes an upper cylindrical pin and a lower cylindrical pin. The top end of the fixed bracket is connected to the detection instrument through an upper cylindrical pin, and the bottom end of the fixed bracket is fixedly connected to the lower cylindrical pin. The bushing is a hollow cylinder, and the bushing is fixedly connected to the quick-release base. The bushing and the base form a bracket accommodating space. A cylindrical hole is provided in the center of the quick-release base, and the cylindrical hole is located below the bracket accommodating space. When the fixed bracket is completely accommodated in the bracket accommodating space, the lower cylindrical pin is partially accommodated in the cylindrical hole, thereby realizing rapid positioning during assembly of the detection instrument; A slide rail is installed on the fixed platform, the quick-release base is located above the slide rail, and the quick-release base can move relative to the slide rail; The quick release mechanism also includes a fastening screw. A screw hole is provided on the side wall of the bushing. The fastening screw passes through the screw hole and abuts against the fixing bracket.
10. The quick-release laser head detection tooling according to claim 9, characterized in that: The light absorbing mechanism comprises a light absorbing disc, the front side of the light absorbing disc has a corrugated groove, and the corrugated groove can absorb light; The light absorbing mechanism further comprises a cover plate, a water guide groove is provided on the back of the light absorbing disc, the light absorbing disc can be sealed and covered with the cover plate, the water guide groove on the back of the light absorbing disc and the cover plate are sealed and covered to form a sealed water guide space, the water guide space can be filled with cooling water; the side wall of the light absorbing disc is provided with a water inlet and a water outlet; The light absorbing mechanism further comprises a protective cover, which is located at a side of the light absorbing disc away from the cover plate.