Low-temperature radiator detection tool
By designing a low-temperature radiator testing fixture, and utilizing guide rail components and sensors to detect the position of exhaust pipes, supports, and flanges, the problem of uncontrollable product quality in existing technologies has been solved, achieving rapid and accurate testing results.
Patent Information
- Application Number
- CN202422683987.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-05
- Publication Date
- 2025-11-25
- Estimated Expiration
- 2034-11-05
AI Technical Summary
The lack of specialized equipment for detecting the position of exhaust pipes, supports, and flanges of existing low-temperature radiators leads to uncontrollable product quality.
A low-temperature radiator testing fixture was designed, including a fixture table, a testing fixture, an exhaust testing component, a bracket testing component, and a flange pipe testing component. The fixture utilizes guide rail components and gauges to detect the position of components and is equipped with sensors and indicator lights to improve testing efficiency and accuracy.
It enables rapid and accurate detection of the position and shape of radiator components, improving the controllability of product quality and detection efficiency.
Smart Images

Figure CN223596709U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to mechanical semi -automatic equipment field especially, a kind of low-temperature radiator detection tool. BACKGROUND
[0002] The position of exhaust pipe, support and flange pipe of low-temperature radiator greatly influences the quality of product, but at present, the quality control of these components of exhaust pipe, support and flange pipe mainly relies on product machining precision and personnel installation level to ensure, there is no relevant equipment for tube correction and position confirmation, resulting in uncontrollable product quality. INVENTION CONTENTS
[0003] In view of the above-mentioned deficiencies of the current low-temperature radiator detection and correction equipment, the utility model provides a kind of low-temperature radiator detection tool, which can quickly and conveniently detect the shape position of radiator, improve the controllability of product quality.
[0004] To achieve the above purpose, the embodiment of the utility model adopts the following technical scheme:
[0005] A kind of low-temperature radiator detection tool, including tooling table and the detection tool being set on tooling table, tooling table is provided with workpiece site and fixed component;The detection tool includes exhaust detection component, support detection component and flange pipe detection component;The exhaust detection component includes first guide rail component and exhaust detection tool;Exhaust detection tool is movably fixed on tooling table by first guide rail component;Exhaust detection tool includes exhaust detection block;The support detection component includes second guide rail component and support detection tool;Support detection tool is movably fixed on tooling table by second guide rail component;The support detection tool includes support detection block;The flange detection component includes third guide rail component, mounting bracket and flange detection tool;The lower surface of mounting bracket is fixedly connected with tooling table, and the upper surface thereof is at a certain angle with the plane of tooling table, third guide rail component is fixed on the upper surface of mounting bracket, and flange detection tool is movably fixed on tooling table by third guide rail component;The flange detection tool includes flange detection block.
[0006] According to one aspect of the utility model, the first detection cavity is arranged in the exhaust detection block;The second detection cavity is arranged in the support detection block;The third detection cavity is arranged in the flange detection block.
[0007] According to one aspect of the utility model, the first guide rail component includes first linear guide rail and first slider;The second guide rail component includes second linear guide rail and second slider;The third guide rail component is oil-free bushing, including fixed part and movable part.
[0008] According to one aspect of the utility model, the exhaust detection tool still includes detection block connecting plate and first mounting seat, the exhaust detection block is connected with first mounting seat through detection block connecting plate, first mounting seat is fixed with first sliding block, the support detection subassembly is fixed with second sliding block through a second mounting seat, the flange detection tool includes third mounting seat and extension shaft, the third mounting seat is fixed with movable part, one end of extension shaft is fixed with third mounting seat, and the other end is fixed with flange detection block.
[0009] According to one aspect of the utility model, the first guide rail assembly is provided with a first limiting block, the second guide rail assembly is provided with a second limiting block, and the third guide rail assembly is provided with a third limiting block.
[0010] According to one aspect of the utility model, the first mounting seat is provided with a first pull rod, the second mounting seat is provided with a second pull rod, and the third mounting seat is provided with a third pull rod.
[0011] According to one aspect of the utility model, the first guide rail assembly, the second guide rail assembly and the third guide rail assembly are all provided with a position sensor.
[0012] According to one aspect of the utility model, the tooling table is provided with a state indicating lamp.
[0013] According to one aspect of the utility model, the tooling table is provided with an automatic stamping assembly.
[0014] The utility model has the advantages of the following:
[0015] By fixing the workpiece body to be detected at a specific position, the detection assembly is fixed to the tooling plate through the track mechanism, slides along the specific straight track, can conveniently and quickly detect whether the size, shape and position of the corresponding component meet the standard, greatly improves the product quality controllability of the low-temperature radiator component, and the sensor is arranged at the corresponding position of the track mechanism and cooperates with the indicating lamp to visually check the detection condition of the corresponding component, which can effectively improve the detection efficiency and accuracy. BRIEF DESCRIPTION OF DRAWINGS
[0016] In order to more clearly illustrate the technical scheme in the embodiment of the utility model, the following will briefly introduce the drawings needed to be used in the embodiment, and obviously, the drawings in the following description are only some embodiments of the utility model, and for those skilled in the art, other drawings can also be obtained according to these drawings without creating creative labor.
[0017] Figure 1 It is the structural schematic diagram of certain low-temperature radiator;
[0018] Figure 2 It is the structural schematic diagram of the low-temperature radiator detection tool of the utility model.
[0019] Figure 3 The structure schematic view of the exhaust detection assembly is described in the utility model.
[0020] Figure 4 The structure schematic view of the support detection assembly is described in the utility model.
[0021] Figure 5 The structure schematic view of the flange pipe detection assembly is described in the utility model.
[0022] BRIEF DESCRIPTION OF DRAWINGS:1, tooling table; 11, workpiece position; 12, fixed assembly; 13, handle; 2, exhaust detection assembly; 21, first linear guide rail; 22, first sliding block; 23, first limit block; 24, exhaust detection block; 25, detection block connecting plate; 26, first mounting seat; 27, first pull rod; 3, support detection assembly; 31, second linear guide rail; 32, second sliding block; 33, second limit block; 34, support detection block; 35, second mounting seat; 36, second pull rod; 4, flange pipe detection assembly; 41, fixed part; 42, movable part; 43, third limit block; 44, mounting support; 45, flange detection block; 46, third mounting seat; 47, extension shaft; 48, third pull rod; 5, status indicator light; 6, automatic stamping assembly. DETAILED DESCRIPTION
[0023] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the utility model.
[0024] As Figure 1 shown is the structure schematic view of a certain low-temperature radiator to be detected, which comprises an exhaust pipe (reference numeral a), a support (reference numeral b) and a flange pipe (reference numeral c); the shapes and sizes of the three components are different, wherein the flange pipe and the radiator core body are at a certain angle.
[0025] Embodiment one
[0026] As Figure 2 , Figure 3 , Figure 4 and Figure 5As shown, a low-temperature heat sink detection tool includes a tool table 1 and a detection tool arranged on the tool table 1, the tool table 1 is provided with a workpiece position 11 and a fixing assembly 12; the detection tool includes an exhaust detection assembly 2, a support detection assembly 3 and a flange pipe detection assembly 4; the exhaust detection assembly 2 includes a first guide rail assembly and an exhaust detection tool; the exhaust detection tool is movably fixed on the tool table 1 through the first guide rail assembly; the exhaust detection tool includes an exhaust detection block 24; the support detection assembly 3 includes a second guide rail assembly and a support detection tool; the support detection tool is movably fixed on the tool table 1 through the second guide rail assembly; the support detection tool includes a support detection block 34; the flange detection assembly includes a third guide rail assembly, a mounting bracket 44 and a flange detection tool; the lower surface of the mounting bracket 44 is fixedly connected with the tool table 1, the upper surface thereof forms a certain angle with the plane of the tool table 1, the third guide rail assembly is fixed on the upper surface of the mounting bracket 44, and the flange detection tool is movably fixed on the tool table 1 through the third guide rail assembly; the flange detection tool includes a flange detection block 45.
[0027] During detection, the heat sink workpiece to be detected is placed on the workpiece position 11 and fixed by the fixing assembly 12, and the detection tool is arranged at a position corresponding to the part to be detected; the exhaust detection block 24, the support detection block 34 and the flange detection block 45 are manually pushed to move along the corresponding tracks and detect whether the positions of the exhaust, the support and the flange pipe at the corresponding positions meet the standard;
[0028] In actual application, the exhaust detection block 24 is internally provided with a first detection cavity; the support detection block 34 is internally provided with a second detection cavity; and the flange detection block 45 is internally provided with a third detection cavity, which are adapted to the shapes of the parts to be detected; when the corresponding detection block can be pushed to the position along the straight track, it indicates that the position of the part meets the standard; if it cannot be smoothly pushed to the position, it indicates that the position, shape or size of the part does not meet the standard and needs to be corrected;
[0029] Each detection block is fixed on the corresponding track and can only slide along the predetermined track; when the detection block is at the initial position, it does not interfere with the workpiece to be detected, facilitating the placement and removal of the heat sink workpiece.
[0030] In actual application, the workpiece position 11 is surrounded by a plurality of reference plates, and the space formed by the reference plates is consistent with the shape of the core part of the workpiece to be detected; the fixing assembly 12 is composed of a plurality of clamping assemblies arranged around the tool table 1, and the clamping assemblies are respectively arranged around the workpiece to ensure that the workpiece is fixed on the workpiece position 11.
[0031] The first guide rail assembly comprises a first linear guide rail 21 and a first sliding block 22; the second guide rail assembly comprises a second linear guide rail 31 and a second sliding block 32; and the third guide rail assembly is an oil-free bushing, comprising a fixed part 41 and a movable part 42.
[0032] The exhaust detection fixture further comprises a detection block connecting plate 25 and a first mounting seat 26; the exhaust detection block 24 is connected with the first mounting seat 26 through the detection block connecting plate 25, and the first mounting seat 26 is fixedly connected with the first sliding block 22; the support detection assembly 3 is fixedly connected with the second sliding block 32 through a second mounting seat 35; the flange detection fixture comprises a third mounting seat 46 and an extension shaft 47; the third mounting seat 46 is fixedly connected with the movable part 42; one end of the extension shaft 47 is fixedly connected with the third mounting seat 46, and the other end is fixedly connected with the flange detection block 45.
[0033] The first guide rail assembly is provided with a first limiting block 23, the second guide rail assembly is provided with a second limiting block 33, and the third guide rail assembly is provided with a third limiting block 43.
[0034] In order to facilitate operation, the first mounting seat 26 is provided with a first pull rod 27, the second mounting seat 35 is provided with a second pull rod 36, and the third mounting seat 46 is provided with a third pull rod 48.
[0035] In order to facilitate the overall replacement and carrying of the tooling, handles 13 are further arranged on both sides of the tooling plate.
[0036] Embodiment two
[0037] As shown in Figure 2 , Figure 3 , Figure 4 and Figure 5 , a low-temperature radiator detection tooling comprises a tooling table 1 and a detection tooling arranged on the tooling table 1, wherein the tooling table 1 is provided with a workpiece position 11 and a fixing assembly 12; the detection tooling comprises an exhaust detection assembly 2, a support detection assembly 3 and a flange pipe detection assembly 4; the exhaust detection assembly 2 comprises a first guide rail assembly and an exhaust detection fixture; the exhaust detection fixture is movably fixed on the tooling table 1 through the first guide rail assembly; the exhaust detection fixture comprises an exhaust detection block 24; the support detection assembly 3 comprises a second guide rail assembly and a support detection fixture; the support detection fixture is movably fixed on the tooling table 1 through the second guide rail assembly; the support detection fixture comprises a support detection block 34; the flange detection assembly comprises a third guide rail assembly, a mounting bracket 44 and a flange detection fixture; the lower surface of the mounting bracket 44 is fixedly connected with the tooling table 1, the upper surface thereof forms a certain angle with the plane of the tooling table 1, the third guide rail assembly is fixed on the upper surface of the mounting bracket 44, and the flange detection fixture is movably fixed on the tooling table 1 through the third guide rail assembly; the flange detection fixture comprises a flange detection block 45.
[0038] When detecting, the heat sink workpiece to be detected is placed on the workpiece site 11 and fixed by the fixing assembly 12, and the detection tool is arranged at a position corresponding to the part to be detected; the exhaust detection block 24, the support detection block 34 and the flange detection block 45 are manually pushed to move along the corresponding tracks and detect whether the positions of the exhaust, support and flange meet the standard.
[0039] In actual application, the first detection cavity is arranged in the exhaust detection block 24; the second detection cavity is arranged in the support detection block 34; and the third detection cavity is arranged in the flange detection block 45, which are matched with the shapes of the parts to be detected; when the corresponding detection block can be pushed to the position along the straight track, it indicates that the position of the part meets the standard; if the part cannot be smoothly pushed to the position, it indicates that the position, shape or size of the part does not meet the standard and needs to be corrected.
[0040] In actual application, the workpiece site 11 is surrounded by a plurality of reference plates, and the space formed by the reference plates is consistent with the shape of the core part of the workpiece to be detected; the fixing assembly 12 is composed of a plurality of clamping assemblies arranged around the tool table 1, and the clamping assemblies are respectively arranged around the workpiece to ensure that the workpiece is fixed in the workpiece site 11.
[0041] Each detection block is fixed on the corresponding track and can only slide along the predetermined track; when the detection block is in the initial position, it does not interfere with the workpiece to be detected, facilitating the placement and removal of the heat sink workpiece.
[0042] The first guide rail assembly comprises a first linear guide rail 21 and a first sliding block 22; the second guide rail assembly comprises a second linear guide rail 31 and a second sliding block 32; and the third guide rail assembly is an oil-free bushing comprising a fixed part 41 and a movable part 42.
[0043] The exhaust detection tool further comprises a detection block connecting plate 25 and a first mounting seat 26; the exhaust detection block 24 is connected with the first mounting seat 26 through the detection block connecting plate 25; the first mounting seat 26 is fixedly connected with the first sliding block 22; the support detection assembly 3 is fixedly connected with the second sliding block 32 through a second mounting seat 35; the flange detection tool comprises a third mounting seat 46 and an extension shaft 47; the third mounting seat 46 is fixedly connected with the movable part 42; one end of the extension shaft 47 is fixedly connected with the third mounting seat 46, and the other end is fixedly connected with the flange detection block 45.
[0044] The first guide rail assembly is provided with a first limiting block 23, the second guide rail assembly is provided with a second limiting block 33, and the third guide rail assembly is provided with a third limiting block 43.
[0045] In order to facilitate operation, the first mounting seat 26 is provided with a first pull rod 27, the second mounting seat 35 is provided with a second pull rod 36, and the third mounting seat 46 is provided with a third pull rod 48.
[0046] In order to facilitate the overall replacement and carrying of the tooling, handles 13 are further arranged on both sides of the tooling plate.
[0047] Further, position sensors are arranged on the first guide rail assembly, the second guide rail assembly and the third guide rail assembly, and when the positions and shapes of the corresponding components meet the standards, the corresponding detection blocks can be pushed to the positions, and at this time, the position sensors arranged at the corresponding positions are triggered to output signals.
[0048] The tooling table 1 is provided with state indicator lamps 5, the number of the indicator lamps is determined according to the number of the detection positions, that is, each indicator lamp corresponds to a detection result of a component (for example, a certain type of low-temperature radiator has two supports, two exhaust pipe interfaces and one flange interface, so five state indicator lamps 5 are needed), when the detection blocks corresponding to the positions are slid to the positions, the position sensors at the corresponding positions capture position signals and output state signals, and the corresponding indicator lamps are turned on, otherwise, the indicator lamps are not turned on, and the detection results of the corresponding components can be directly observed by means of the position sensors and the state indicator lamps 5, and the detection efficiency can be effectively improved; in addition, the position sensors can also be replaced by contact type mechanical switches.
[0049] The tooling table 1 is provided with an automatic stamping assembly 6, when all the position sensors detect the corresponding position signals (all the state indicator lamps 5 are turned on) in one detection, it is indicated that the workpiece meets the standards, and at this time, the automatic stamping assembly 6 is started to leave a mark of detection qualification on the workpiece.
[0050] The advantages of the embodiment of the utility model are:
[0051] By fixing the workpiece to be detected on a specific position, the detection assembly is fixed on the tooling plate through the track mechanism and slides along the specific straight track, so that whether the sizes, shapes and positions of the corresponding components meet the standards can be conveniently and quickly detected, and the product quality controllability of the low-temperature radiator components is greatly improved; the sensors arranged at the corresponding positions of the track mechanism and the indicator lamps can directly observe the detection conditions of the corresponding components, and the detection efficiency and accuracy can be effectively improved.
[0052] The above is only a specific embodiment of the utility model, but the protection scope of the utility model is not limited to this, any skilled person in the art can easily think of changes or replacements within the technical range disclosed by the utility model, which should be covered in the protection scope of the utility model. Therefore, the protection scope of the utility model should be subject to the protection scope of the claims.
Claims
1. A cryogenic heat spreader inspection tool comprising a tool table and an inspection tool disposed on the tool table, wherein: The tooling table is provided with a workpiece position and a fixing assembly; the detection tooling includes an exhaust detection assembly, a support detection assembly and a flange pipe detection assembly; the exhaust detection assembly includes a first guide rail assembly and an exhaust detection tool; the exhaust detection tool is movably fixed on the tooling table through the first guide rail assembly; the exhaust detection tool includes an exhaust detection block; the support detection assembly includes a second guide rail assembly and a support detection tool; the support detection tool is movably fixed on the tooling table through the second guide rail assembly; the support detection tool includes a support detection block; the flange detection assembly includes a third guide rail assembly, a mounting support and a flange detection tool; the lower surface of the mounting support is fixedly connected with the tooling table, the upper surface of the mounting support is at a certain angle with the plane of the tooling table, the third guide rail assembly is fixed on the upper surface of the mounting support, and the flange detection tool is movably fixed on the tooling table through the third guide rail assembly; the flange detection tool includes a flange detection block.
2. The cryogenic heat spreader inspection tool of claim 1, wherein, The exhaust detection block is internally provided with a first detection cavity; the support detection block is internally provided with a second detection cavity; and the flange detection block is internally provided with a third detection cavity.
3. The cryogenic heat spreader inspection tool of claim 1, wherein, The first guide rail assembly includes a first linear guide rail and a first sliding block; the second guide rail assembly includes a second linear guide rail and a second sliding block; and the third guide rail assembly is an oil-free bushing and includes a fixed part and a movable part.
4. The cryogenic heat spreader inspection tool of claim 3, wherein, The exhaust detection tool further includes a detection block connecting plate and a first mounting seat; the exhaust detection block is connected with the first mounting seat through the detection block connecting plate, and the first mounting seat is fixedly connected with the first sliding block; the support detection assembly is fixedly connected with the second sliding block through a second mounting seat; the flange detection tool includes a third mounting seat and an extension shaft; the third mounting seat is fixedly connected with the movable part; one end of the extension shaft is fixedly connected with the third mounting seat, and the other end is fixedly connected with the flange detection block.
5. The cryogenic heat spreader inspection tool of claim 1, wherein, The first guide rail assembly is provided with a first limiting block, the second guide rail assembly is provided with a second limiting block, and the third guide rail assembly is provided with a third limiting block.
6. The cryogenic heat spreader inspection tool of claim 1, wherein, The first mounting seat is provided with a first pull rod, the second mounting seat is provided with a second pull rod, and the third mounting seat is provided with a third pull rod.
7. The cryogenic heat spreader inspection tool of claim 1, wherein, The first guide rail assembly, the second guide rail assembly and the third guide rail assembly are all provided with a position sensor.
8. The cryogenic heat spreader inspection tool of claim 7, wherein, The tooling table is provided with a state indicating lamp.
9. The cryogenic heat spreader inspection tool of claim 7, wherein, The tooling table is provided with an automatic stamping assembly.