Adjusting fixed measuring seat three-coordinate angle auxiliary tool
By designing an auxiliary tooling for probe angle adjustment, offline preset and rapid verification of probe angle are realized, solving the problems of low efficiency, inconsistent accuracy and high cost of probe angle adjustment in the prior art, and improving equipment utilization and measurement accuracy.
Patent Information
- Application Number
- CN202511568117.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-30
- Publication Date
- 2026-02-24
- Estimated Expiration
- 2045-10-30
AI Technical Summary
In the existing technology, the adjustment of the probe angle relies on the internal operation of an expensive coordinate measuring machine, which results in low equipment utilization, poor operational safety, inconsistent accuracy, and high cost.
An auxiliary tooling for adjusting the angle of a fixed measuring base is designed, including a scale base plate, a support frame, a slider, a positioning block, a positioning bushing, and a threaded positioning pin. The tooling enables offline preset and rapid verification of the probe angle through mechanical positioning, ensuring the accuracy and consistency of the angle setting.
It significantly improves the efficiency and accuracy of probe angle adjustment, reduces operating costs, avoids equipment collision accidents, and ensures the comparability of measurement data and equipment utilization.
Smart Images

Figure CN121026040B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of precision detection auxiliary equipment, and particularly relates to a three-coordinate angle auxiliary tool for adjusting a fixed measuring seat. BACKGROUND
[0002] The auxiliary tool for adjusting the angle of a measuring needle is based on the higher pursuit of measurement efficiency, operation precision, equipment safety and data consistency. Their development process is from experience-based operation to tool-based guarantee, and from online debugging to offline pre-adjustment. These tools, although seemingly simple, are indispensable practical bridges between theoretical precision (the design precision of a CMM body and a probe) and actual precision (the precision of the final measurement result). They ensure that the measuring needle, the "CMM antenna", can be correctly set, so that the expensive three-coordinate measuring machine can perform its due performance. SUMMARY
[0003] To solve the above technical problems, the present application provides a three-coordinate angle auxiliary tool for adjusting a fixed measuring seat.
[0004] The specific technical solutions are as follows:
[0005] The three-coordinate angle auxiliary tool for adjusting a fixed measuring seat is used for angle adjustment of a disc-shaped measuring needle. One end of the disc-shaped measuring needle is a disc with a groove B at the edge, and a waist hole is formed in the bottom surface of the disc. The other end is connected to a small measuring needle through a vertical measuring rod, and a threaded hole B is formed in the end. The tool comprises a dial plate bottom plate, a support frame, a sliding block and a positioning block. One side of the dial plate bottom plate is provided with a circular scale line, the center of the scale line is a positioning precision hole, and four counterbores are formed on the other side. The bottom of the support frame is fixed through screws. The support frame is an L-shaped frame spliced from section bars, and the aluminum alloy section bar is provided with a T-shaped groove. A T-shaped block is arranged in the T-shaped groove. The sliding block is C-shaped and vertically slides along the side surface of the support frame. Three threaded holes A are formed in the top surface of the sliding block. The positioning block is Z-shaped and is bent at a right angle. Three through holes B are formed in the top surface of one end of the positioning block and are fixed through screws in the threaded holes A. A circular groove A is formed in the other end of the positioning block and cooperates with the groove B of the disc-shaped measuring needle. The back surface of the positioning block is provided with a protruding pin which cooperates with the waist hole of the disc-shaped measuring needle to limit the angle.
[0006] The tool further comprises a positioning bushing and a threaded positioning pin. The positioning bushing is a hollow cylinder and is installed in the positioning precision hole. One end of the threaded positioning pin is processed into a threaded hole C and is installed in the threaded hole B through a screw. The other end of the threaded positioning pin is a cylinder and cooperates with the hollow of the positioning bushing.
[0007] The scale line part of the dial plate bottom plate can be vertically flipped and switched between angle adjustments of X-axis, Y-axis and Z-axis. The scale line is uniformly distributed in four angle regions of 0°-90°, and the scale line angle of each small grid is 1°.
[0008] The scale dial base plate is provided with a lightening groove and a hand grip groove at the edge of both ends.
[0009] The material of the scale dial base plate is aluminum alloy and the surface is anodized; the material of the sliding block is aluminum alloy; the material of the positioning block is pre-hardened chromium-molybdenum alloy die steel P20 which has been heat treated when leaving the factory; the material of the positioning bushing and the threaded positioning pin is CrWMn tool steel which is integrally quenched to increase the wear resistance of the surface.
[0010] The material of the support frame is 6-series aluminum alloy profile.
[0011] The sliding block is provided with a through hole A at both ends and is connected with the T-shaped block through a screw, slides up and down along the side surface of the support frame and is further locked by the screw.
[0012] The front surface of the sliding block is provided with two waist grooves.
[0013] The small measuring needle is one or two.
[0014] Compared with the prior art, the present application has the following beneficial technical effects:
[0015] The present application provides a measuring needle angle adjustment auxiliary tool which is simple in structure, low in cost, convenient to use and can significantly improve the efficiency and precision. The core target is to realize "offline presetting, one-time clamping and rapid verification" of the measuring needle angle, and to transfer the high-precision angle adjustment work from the inside of the CMM to the outside safe area.
[0016] The present application converts most of the adjustment time from the expensive CMM occupation time to offline preparation time, significantly improves the equipment utilization rate and greatly improves the efficiency. By replacing the naked eye observation with a high-precision mechanical positioning surface, the subjective error of angle setting is fundamentally eliminated, and the accuracy of the measurement result is ensured. All operations are completed in the safe area outside the CMM workbench, completely avoiding the equipment collision accidents caused by manual adjustment. All angle settings are based on a unified physical reference, ensuring consistency of different personnel and different time operations, and the measurement data is more comparable. The structure is simple, and the manufacturing and maintenance cost is much lower than that of imported pre-adjustment instruments, so that small and medium-sized manufacturing enterprises can also enjoy the benefits brought by offline pre-adjustment technology. BRIEF DESCRIPTION OF DRAWINGS
[0017] Figure 1 It is a schematic diagram of the three-dimensional structure of the tool of the present application;
[0018] Figure 2 It is Figure 1 It is a partial enlarged schematic view of the middle I;
[0019] Figure 3 It is a front view of the scale dial base plate of the present application;
[0020] Figure 4 Front view of the back of the dial base plate of the present application;
[0021] Figure 5 Front view of the back of the dial base plate of the present application;
[0022] Figure 6 Front view of the back of the dial base plate of the present application;
[0023] Figure 7 Front view of the back of the dial base plate of the present application;
[0024] Figure 8 Front view of the back of the dial base plate of the present application;
[0025] Figure 9 Front view of the back of the dial base plate of the present application;
[0026] Figure 10 Front view of the back of the dial base plate of the present application;
[0027] Figure 11 Front view of the back of the dial base plate of the present application;
[0028] In the figure, 1, dial base plate; 11, positioning hole; 12, scale line; 13, weight reduction groove; 14, hand buckle groove; 15, countersunk hole; 2, support frame; 21, T-shaped groove; 3, sliding block; 31, through hole A; 32, threaded hole A; 33, waist groove; 4, positioning block; 41, groove A; 42, through hole B; 43, protruding pin; 5, disc-shaped measuring needle; 51, groove B; 52, waist hole; 53, measuring rod; 54, small measuring needle; 55, threaded hole B; 6, positioning bushing; 7, threaded positioning pin; 71, threaded hole C; 8, screw. DETAILED DESCRIPTION
[0029] The present application will be described in detail below with reference to the accompanying drawings, but the scope of protection of the present application is not limited by the drawings.
[0030] Figure 1 Front view of the back of the dial base plate of the present application; Figure 2 Front view of the back of the dial base plate of the present application; Figure 1 Front view of the back of the dial base plate of the present application; Figure 3 Front view of the back of the dial base plate of the present application; Figure 4 Front view of the back of the dial base plate of the present application; Figure 5 Front view of the back of the dial base plate of the present application; Figure 6 Front view of the back of the dial base plate of the present application; Figure 7 Front view of the back of the dial base plate of the present application; Figure 8 Front view of the back of the dial base plate of the present application; Figure 9This is a three-dimensional structural diagram of the disc-shaped probe of the present invention. Figure 10 This is a three-dimensional structural diagram of the positioning bushing of the present invention. Figure 11 The figure shows a three-dimensional structural diagram of the threaded locating pin of the present invention:
[0031] This invention provides an auxiliary fixture for adjusting the angle of a fixed measuring base three-coordinate measuring machine, used for adjusting the angle of a disc-shaped probe 5. One end of the disc-shaped probe 5 is a disc with a groove B51 on its edge and a waist hole 52 on its bottom surface. The other end is connected to one or two small probes 54 via a vertical measuring rod 53, and a threaded hole B55 is provided at its end. The fixture includes a scale base plate 1, a support frame 2, a slider 3, and a positioning block 4. The scale base plate 1 has a circular scale line 12 on one side, with the center of the scale line 12 being a positioning precision point. Hole 11 is provided on one side, and four countersunk holes 15 are provided on the other side, which are fixed to the bottom of the support frame 2 by screws 8. The support frame 2 is an L-shaped frame made of spliced profiles. The aluminum alloy profile has a T-slot 21 with a T-block inside. The slider 3 is C-shaped and slides vertically up and down along the side of the support frame 2. The top surface of the slider 3 has three threaded holes A32, and the two ends of the slider 3 have through holes A31, which are connected to the T-block by screws 8. It slides up and down along the side of the support frame 2 and is further locked by screws 8. The front of the slider 3 has two waist grooves 33, which are convenient to pick up and reduce weight. The positioning block 4 is a Z-shaped right-angle bend. The top surface of one end has three through holes B42, which are fixed to the threaded holes A32 by screws 8. The other end has a circular groove A41, which cooperates with the groove B51 of the disc probe 5. The back has a protruding pin 43, which cooperates with the waist hole 52 of the disc probe 5 to position and limit the angle. It also includes a positioning bushing 6 and a threaded positioning pin 7. The positioning bushing 6 is a hollow cylinder and is installed in the positioning precision hole 11. One end of the threaded positioning pin 7 is machined into a threaded hole C71 and is installed in the threaded hole B55 by a screw 8. The other end is a cylinder and fits with the hollow part of the positioning bushing 6.
[0032] The scale lines 12 on the dial base plate 1 can be vertically flipped, switching between X-axis, Y-axis, and Z-axis angle adjustments. The scale lines 12 are evenly distributed across four angle zones from 0° to 90°, with each small scale line having an angle of 1°. Weight-reduction grooves 13 are provided on the dial base plate 1 to reduce weight without compromising strength, and handle grooves 14 are provided at both ends for easy installation and removal. The dial base plate 1 is made of aluminum alloy with an anodized surface to improve its wear resistance.
[0033] The slider 3 is made of aluminum alloy; the positioning block 4 is made of pre-hardened chromium-molybdenum alloy mold steel P20, which has been heat-treated at the factory to achieve the required hardness (typically HRC 30-36); the positioning bushing 6 and the threaded positioning pin 7 are made of CrWMn tool steel, with overall quenching treatment to increase surface wear resistance. The support frame 2 is made of 6-series aluminum alloy profile, which comes with a variety of dedicated connectors (angle brackets, bolts, nuts), allowing for rapid modular assembly into various structures without welding, facilitating design changes and simplifying maintenance.
[0034] In use, install the positioning bushing 6 into the positioning precision hole 11 of the dial base plate 1, and install the threaded positioning pin 7 into the threaded hole B55 at the bottom of the disc-shaped probe 5. Fix the through hole B42 of the positioning block 4 to the threaded hole A32, connecting the disc-shaped probe 5 to the slider 3. Install the disc-shaped probe 5 into the groove A41 of the positioning block 4 through the groove B51 at the disc, allowing the protruding pin 43 and the waist hole 52 to engage for positioning and angular constraint. Move the disc-shaped probe 5 up and down with the slider 3 until the threaded positioning pin 7 at the bottom engages with the positioning bushing 6 of the dial base plate 1 to achieve centering. After reaching the appropriate position, tighten with screws. Finally, adjust the angle of the small probe according to the scale line 12. The scale line 12 can be vertically flipped as needed, switching between X-axis, Y-axis, and Z-axis angle adjustments. After angle adjustment, the disc-shaped probe can be removed and placed in a coordinate measuring machine tool for use.
Claims
1. An auxiliary tooling for adjusting the angle of a fixed measuring base three-coordinate measuring machine, characterized in that: For angle adjustment of the disc-shaped probe (5), one end of the disc-shaped probe (5) is a disc with a groove B (51) on the edge, and a waist hole (52) is opened on the bottom surface of the disc. The other end is connected to a small probe (54) through a vertical probe rod (53), and a threaded hole B (55) is opened at the end. The tooling includes a dial base plate (1), a support frame (2), a slider (3) and a positioning block (4). The dial base plate (1) has a circular scale line (12) on one side, and a positioning precision hole (11) is located in the center of the scale line (12). Four countersunk holes (15) are opened on the other side and fixed to the bottom of the support frame (2) by screws (8). The support frame (2) The L-shaped frame is made of spliced profiles. The aluminum alloy profiles have T-slots (21) and T-blocks are built into the T-slots (21). The slider (3) is C-shaped and slides vertically up and down along the side of the support frame (2). The top surface of the slider (3) has three threaded holes A (32). The positioning block (4) is a Z-shaped right-angle bend. One end of the top surface has three through holes B (42) which are fixed to the threaded holes A (32) by screws (8). The other end has a circular groove A (41) which cooperates with the groove B (51) of the disc probe (5). The back has a protruding pin (43) which cooperates with the waist hole (52) of the disc probe (5) to position and limit the angle.
2. The auxiliary tooling for adjusting the angle of a fixed measuring base according to claim 1, characterized in that: It also includes a positioning bushing (6) and a threaded positioning pin (7). The positioning bushing (6) is a hollow cylinder and is installed in the positioning precision hole (11). One end of the threaded positioning pin (7) is machined into a threaded hole C (71) and installed in the threaded hole B (55) by a screw (8). The other end is a cylinder and fits with the hollow positioning bushing (6).
3. The auxiliary tooling for adjusting the angle of a fixed measuring base according to claim 1, characterized in that: The scale line (12) of the dial base plate (1) can be vertically flipped and switched between the angle adjustment of the X-axis, Y-axis and Z-axis. The scale line (12) is evenly distributed in four angle areas from 0° to 90°, and the angle of each small scale line (12) is 1°.
4. The auxiliary tooling for adjusting the angle of the fixed measuring base according to claim 1, characterized in that: The dial base plate (1) has a weight reduction groove (13) and a hand grip groove (14) at both ends.
5. The auxiliary tooling for adjusting the angle of the fixed measuring base according to claim 1, characterized in that: The dial base plate (1) is made of aluminum alloy and has an anodized surface; the slider (3) is made of aluminum alloy; the positioning block (4) is made of pre-hardened chromium-molybdenum alloy mold steel P20 and has been heat-treated at the factory; the positioning bushing (6) and the threaded positioning pin (7) are made of CrWMn tool steel and have been quenched to increase the wear resistance of the surface.
6. The auxiliary tooling for adjusting the angle of a fixed measuring base according to claim 1, characterized in that: The support frame (2) is made of 6-series aluminum alloy profile.
7. The auxiliary tooling for adjusting the angle of a fixed measuring base according to claim 1, characterized in that: The slider (3) has through holes A (31) at both ends, which are connected to the T-block by screws (8), and slide up and down along the side of the support frame (2) and are further locked by screws (8).
8. The auxiliary tooling for adjusting the angle of a fixed measuring base according to claim 1, characterized in that: The slider (3) has two grooves (33) on its front side.
9. The auxiliary tooling for adjusting the angle of a fixed measuring base according to claim 1, characterized in that: The small probe (54) is one or two.
Citation Information
Patent Citations
Clamp capable of accurately adjusting angle of measuring pin
CN214923870U