Platform for efficiently inspecting precision of machine tool parts
By designing an efficient platform for inspecting the precision of machine tool parts and adopting automated testing technology, the problem of relying on manual techniques for the inspection of CNC machine tool parts has been solved, achieving efficient and accurate testing results and improving enterprise efficiency.
Patent Information
- Application Number
- CN202422900986.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-27
- Publication Date
- 2025-10-21
- Estimated Expiration
- 2034-11-27
AI Technical Summary
In the existing technology, the precision inspection process of CNC machine tool parts relies on the operator's skills, the adjustment steps are complicated and inefficient, and there are large inspection errors.
A platform for efficiently inspecting the accuracy of machine tool parts is designed. The platform structure, movable frame, slide block and slide rail, electronic detection instrument head and drive assembly are used to realize automatic inspection of part accuracy and reduce manual adjustment and measurement steps.
Automated inspection reduces inspection time, lowers the reliance on skilled operators, and improves measurement accuracy and work efficiency, leading to cost reduction and increased profitability for enterprises.
Smart Images

Figure CN223455515U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model mainly relates to numerical control machine tool spare detection technical field, concretely is a kind of platform of high efficiency inspection machine tool spare precision. BACKGROUND
[0002] Numerical control machine tool spare refers to the general term of various mechanical parts and electronic components that constitute numerical control machine tool, and numerical control machine tool is a kind of highly automated and precise machine tool, which realizes high-precision machining of workpiece through computer programming control, and the precision degree and coordinated working ability of these spare parts directly determine the performance and machining quality of numerical control machine tool, and when designing and manufacturing numerical control machine tool, the high quality and high precision of these spare parts must be guaranteed to meet the needs of modern manufacturing industry.
[0003] After the machining of numerical control machine tool spare is completed, whether the machining precision is qualified needs to be inspected, and currently the method is to first adjust the level of spare part, and then use marble ruler, dial gauge and other manual precision inspection, and under normal circumstances, level meter is used to correct the level of machine tool spare, and since ground (installation reference surface) is not flat in most cases, marble ruler, auxiliary pad and level meter are needed to adjust the level of spare part, and the process is relatively complicated, and time-consuming,
[0004] After completing level adjustment, machining precision inspection of spare part is carried out, and marble ruler and auxiliary pad are also needed, and the operator also needs to have high operation technology, so as to accurately measure the precision of spare part, and if the level of spare part is not accurately adjusted or the operation method is not correct, it will lead to large detection error, and the machining precision of the spare part cannot be truly fed back. UTILITY MODEL CONTENTS
[0005] The utility model technical scheme provides a solution significantly different from prior art, to solve the technical problem that prior art solution is too single, and specifically the utility model mainly provides a kind of platform of high efficiency inspection machine tool spare precision, to solve the technical problem that the dependence on operator's technology is high in the process of detecting machine tool spare, and the adjustment steps of machine tool spare level adjustment and precision inspection are too complicated, and there is low efficiency.
[0006] The utility model solves the above technical problem by the technical scheme that
[0007] A kind of high-efficiency inspection machine tool parts precision platform, including platform structure, the platform structure includes two platform main bodies, positioning table for placing parts is provided between the two platform main bodies, detection control mechanism is set up on the platform main body, the detection control mechanism includes moving frame, the bottom of the moving frame both sides position is provided with first slider, each first slider is slidably connected with first slide rail, first slide rail is set on corresponding platform main body, the outer wall of the moving frame one side is provided with second slide rail, second slide rail is slidably connected with second slider, electronic detection instrument head is set on the second slider, electronic detection instrument head contacts the surface to be measured of part.
[0008] Further, the upper side of the moving frame is provided with first drive assembly, the first drive assembly includes first support frame, the first support frame is connected with first motor by bolt, the first motor is connected with rotating shaft by belt pulley and belt, and rotating shaft penetrates both ends of moving frame.
[0009] Further, the part of rotating shaft both ends located outside moving frame is provided with first belt pulley group, each first belt pulley group is connected with two fixed pulley frame by belt, and fixed pulley frame is set on corresponding platform main body.
[0010] Further, the upper side of the moving frame is also provided with second drive assembly, the second drive assembly includes second support frame, the second support frame is provided with second motor, and the output end of the second motor is provided with second belt pulley group.
[0011] Further, the second belt pulley group is connected with two auxiliary wheels by belt, auxiliary wheel is set on moving frame, clamp is set on the belt between two auxiliary wheels, and clamp is connected with second slider by bolt.
[0012] Further, the lower side of each platform main body is provided with foundation bolt.
[0013] Compared with the prior art, the beneficial effects of the utility model are:
[0014] The utility model discloses a platform structure, movable frame, first sliding block, first slide rail, second slide rail, second sliding block, electronic detection instrument head, first drive assembly and second drive assembly are set up, realize after the numerical control machine tool spare part processing, electronic detection instrument head can move on the platform along X / Y axis direction, and the head touches the different position of machine tool spare part, and the precision of spare part is detected automatically, and the reading value of different position is recorded automatically by electronic instrument, and enters the computer storage, and the spare part horizontal adjustment process and personnel measurement data process are reduced, and the artificial detection is replaced, and the dependence on the operation worker's technology is reduced, and the big detection error caused by the personnel skill is avoided, and the processing precision of spare part cannot be truly fed back, and the inspection time is reduced greatly, and the work efficiency and measurement accuracy are improved, and the enterprise is reduced and the benefit is increased, and have certain practical value and market prospect.
[0015] The utility model will be explained in detail below in combination with the drawings and specific embodiments. ACCURACY
[0016] Figure 1 It is whole structure schematic diagram of the utility model;
[0017] Figure 2 It is whole structure exploded view of the utility model;
[0018] Figure 3 It is detection control mechanism exploded view of the utility model;
[0019] Figure 4 It is two drive assembly structure schematic diagram of the utility model.
[0020] In the drawing: 1, platform structure;11, platform main body;12, positioning table;13, ground screw;2, detection control mechanism;21, movable frame;22, first sliding block;23, first slide rail;24, second slide rail;25, second sliding block;26, electronic detection instrument head;3, first drive assembly;31, first support frame;32, first motor;33, pivot;34, first belt pulley group;35, fixed pulley frame;4, second drive assembly;41, second support frame;42, second motor;43, second belt pulley group;44, auxiliary wheel;45, clamp. PREFERRED EMBODIMENT
[0021] In order to facilitate understanding the utility model, below will be more comprehensive description to the utility model with reference to relevant drawings, and the drawings show several embodiments of the utility model, but the utility model can be realized by different forms, and is not limited to the embodiment described in the text, on the contrary, provides these embodiments are to make the disclosure of the utility model more thorough and comprehensive.
[0022] It is to be understood that where an element such as a layer, region or substrate is described as being "on" another element, it can be directly on the other element or intervening elements can also be present. Where an element is described as being "connected" or "coupled" to another element, it can be directly connected or coupled or intervening elements can be present. As used herein, the term "and / or" includes any and all combinations of one or more of the associated listed items.
[0023] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this application belongs. The terminology used in the description herein is for describing particular embodiments only and is not intended to be limiting of the application. As used herein, the singular forms "a", "an" and "the" are intended to include the plural forms as well, unless the context clearly indicates otherwise.
[0024] Reference will now be made to the drawings, wherein: Figures 1-4 The utility model provides a platform of high -efficient testing machine tool spare part precision, including platform structure 1, platform structure 1 includes two platform main body 11, two platform main body 11 between be provided with the positioning table 12 for placing spare part, the platform main body 11 is set up detection control mechanism 2, detection control mechanism 2 includes mobile frame 21, the bottom both sides position of mobile frame 21 is provided with first sliding block 22, every first sliding block 22 is slidably connected with first sliding rail 23, and first sliding rail 23 is set up on corresponding platform main body 11, the outer wall one side of mobile frame 21 is provided with second sliding rail 24, and second sliding rail 24 is slidably connected with second sliding block 25, and second sliding block 25 is provided with electronic detection instrument head 26, and electronic detection instrument head 26 contacts spare part surface to be measured.
[0025] Through the above structure, after the machining of the numerical control machine tool spare part is completed, the precision of the spare part can be automatically detected, the test data is obtained, and the computer is imported, the horizontal adjustment process of the spare part and the process of personnel measurement data are reduced, manual detection is replaced, the dependence on the technical operation worker is reduced, the detection error caused by the personnel skill is avoided, the machining precision of the spare part cannot be truly fed back, the test time is greatly reduced, the work efficiency and the measurement accuracy are improved, the enterprise cost is reduced and the benefit is increased, and the utility model has certain practical value and market prospect.
[0026] The specific operation is as follows: first, the platform structure 1 is placed on the ground, then the running planes of the first sliding rail 23 and the second sliding rail 24 (X, Y linear rails) on the platform main body 11 are adjusted to be horizontal by adjusting the foot screws 13 at the bottom of the platform, and then the foot screws 13 are fastened, after that, the machine tool parts to be tested do not need to be adjusted again each time, then the machine tool parts to be tested are placed on the positioning table 12 and moved below the electronic detection instrument head 26, then the electronic detection instrument head 26 is adjusted to contact the surface to be tested of the machine tool parts, then an instruction is sent to make the electronic detection instrument head 26 move along the X / Y axis direction, the instrument head touches different positions of the machine tool parts, and the reading values of different positions are automatically recorded and stored in the computer, and the precision value of the machine tool parts can be obtained by analyzing the data.
[0027] Please refer to the accompanying drawings Figure 2 and the accompanying drawings Figure 4 The upper side of the moving frame 21 is provided with a first driving assembly 3, the first driving assembly 3 comprises a first support frame 31, the first support frame 31 is connected with a first motor 32 through bolts, the first motor 32 is connected with a rotating shaft 33 through a belt pulley and a belt, and the rotating shaft 33 penetrates through both ends of the moving frame 21, the portions of the rotating shaft 33 located outside the moving frame 21 are provided with first belt pulley sets 34, each first belt pulley set 34 is connected with two fixed pulley frames 35 through a belt, and the fixed pulley frames 35 are arranged on the corresponding platform main body 11, through the first driving assembly 3, the electronic detection instrument head 26 is driven to move along the Y axis direction of the platform main body 11, the upper side of the moving frame 21 is also provided with a second driving assembly 4, the second driving assembly 4 comprises a second support frame 41, the second support frame 41 is provided with a second motor 42, the output end of the second motor 42 is provided with a second belt pulley set 43, the second belt pulley set 43 is connected with two auxiliary wheels 44 through a belt, and the auxiliary wheels 44 are arranged on the moving frame 21, through the second driving assembly 4, the electronic detection instrument head 26 is driven to move along the X axis direction of the platform main body 11, a clamp 45 is arranged on the belt between the two auxiliary wheels 44, and the clamp 45 is connected with the second sliding block 25 through bolts, through the clamp 45, the electronic detection instrument head 26 is installed on the corresponding belt, the lower side of each platform main body 11 is provided with a foot screw 13, through the foot screw 13, the platform structure 1 is adjusted to be in a horizontal state, and the subsequent detection is facilitated.
[0028] The utility model is described exemplarily above in combination with the drawings, and obviously, the specific implementation of the utility model is not limited by the above mode, as long as the method concept and technical scheme of the utility model are adopted for this kind of non-essential improvement or the concept and technical scheme of the utility model are directly applied to other occasions without improvement, all fall within the protection scope of the utility model.
Claims
1. A platform for efficiently checking the accuracy of machine tool parts, comprising a platform structure (1), the platform structure (1) comprising two platform bodies (11), a positioning table (12) for placing parts being arranged between the two platform bodies (11), characterized in that, The platform body (11) is provided with a detection control mechanism (2), the detection control mechanism (2) includes a moving frame (21), the bottom of the moving frame (21) is provided with a first sliding block (22) on both sides, each first sliding block (22) is slidably connected with a first sliding rail (23), and the first sliding rail (23) is arranged on the corresponding platform body (11); a second sliding rail (24) is arranged on the outer wall of the moving frame (21), the second sliding rail (24) is slidably connected with a second sliding block (25), and an electronic detection instrument head (26) is arranged on the second sliding block (25); and the electronic detection instrument head (26) contacts the surface to be detected of the zero component.
2. The platform for efficiently checking the precision of machine tool parts according to claim 1, characterized in that, A first driving assembly (3) is arranged on the upper side of the moving frame (21), the first driving assembly (3) comprises a first support frame (31), the first support frame (31) is connected with a first motor (32) through bolts, the first motor (32) is connected with a rotating shaft (33) through a belt pulley and a belt, and the rotating shaft (33) penetrates through both ends of the moving frame (21).
3. The platform for efficiently checking the precision of machine tool parts according to claim 2, characterized in that, First belt pulley groups (34) are arranged on the portions of the rotating shaft (33) located outside the moving frame (21), each first belt pulley group (34) is connected with two fixed pulley frames (35) through a belt, and the fixed pulley frames (35) are arranged on the corresponding platform body (11).
4. The platform for efficiently checking the precision of machine tool parts according to claim 1, wherein, A second driving assembly (4) is further arranged on the upper side of the moving frame (21), the second driving assembly (4) comprises a second support frame (41), the second support frame (41) is provided with a second motor (42), and the output end of the second motor (42) is provided with a second belt pulley group (43).
5. The platform for efficiently checking the precision of machine tool parts according to claim 4, characterized in that, The second belt pulley group (43) is connected with two auxiliary wheels (44) through a belt, the auxiliary wheels (44) are arranged on the moving frame (21), a clamp (45) is arranged on the belt between the two auxiliary wheels (44), and the clamp (45) is connected with the second sliding block (25) through bolts.
6. The platform for efficiently checking the precision of machine tool parts according to claim 3, wherein, A foundation screw (13) is arranged on the lower side of each platform body (11).