XYZ automatic tooth detection device for radiator
By designing the XYZ automatic tooth inspection device, which employs multiple sets of material loading and inspection components, flexible inspection of tooth holes of different sizes is achieved, solving the problem of fixed specifications of the inspection head in existing devices and improving inspection efficiency and accuracy.
Patent Information
- Application Number
- CN202520153600.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-22
- Publication Date
- 2025-12-12
- Estimated Expiration
- 2035-01-22
AI Technical Summary
Existing dental inspection devices typically use fixed-size inspection heads, which cannot flexibly adapt to the inspection needs of different sized dental orifices, resulting in complex, time-consuming, and labor-intensive inspection procedures with low efficiency.
An XYZ automatic tooth inspection device was designed, comprising a frame, a material loading mechanism, and a detection mechanism. It employs multiple sets of material loading components and detection modules, and is equipped with first and second detection components. The tooth diameters of the detection heads can be equal or unequal. Combined with translation modules, lifting modules, and material loading modules, it achieves rapid and accurate movement and detection.
It enables flexible inspection of tooth holes of different sizes without the need for frequent inspection head replacement, improving inspection efficiency and flexibility. It can inspect multiple heat sinks simultaneously, simplifying the inspection process and improving inspection accuracy and efficiency.
Smart Images

Figure CN223663871U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a radiator production technical field especially is related to a radiator's XYZ automatic tooth detection device. BACKGROUND
[0002] With the vigorous development of high technology, electronic products are increasingly intelligent and complex, electronic components tend to be miniaturized, and the density on the unit area is also increasingly high. The direct impact of this situation is that the heat generated by electronic products during operation is getting larger and larger. If there is no good heat dissipation way to remove the heat generated by the electronics, these high temperatures will cause electronic components to produce electron ionization and thermal stress, etc. Phenomenon, resulting in reduced overall stability, and shortening the life of the electronic components themselves. In view of the above problems, most users will install a radiator on the electronic product, which will remove the heat from the electronic product through the radiator to avoid overheating of the electronic components.
[0003] At present, during the manufacturing process of the radiator, the tooth hole detection is one of the key links of quality control, wherein the tooth hole detection is mostly detected by a tooth detection device. The common tooth hole detection equipment is usually composed of a workbench, a connecting plate, a pneumatic cylinder and an inspection rod. In use, the workpiece is fixed on the workbench by clamping assembly, and the inspection rod is driven by the pneumatic cylinder to reciprocate up and down, so as to detect whether the hole on the workpiece is qualified. However, the detection head in the above-mentioned tooth detection device is usually fixed in specification, which cannot flexibly adapt to the tooth hole detection requirements of different sizes. If other size tooth holes need to be detected, the detection head needs to be replaced or moved to the corresponding tooth detection device for detection. The detection step is complex, time-consuming and laborious, which further leads to low efficiency of tooth detection.
[0004] Therefore, it is necessary to study a new technical scheme to solve the above problems. UTILITY MODEL CONTENTS
[0005] Based on the above, the purpose of the utility model is to provide a radiator's XYZ automatic tooth detection device to solve the problem that the detection head in the existing tooth detection device is usually fixed in specification and cannot flexibly adapt to the tooth hole detection requirements of different sizes.
[0006] To achieve the above purpose, the utility model adopts the following technical scheme:
[0007] An XYZ automatic tooth detection device for radiators comprises a rack, a material loading mechanism and a detection mechanism; the rack is provided with a workbench; the material loading mechanism comprises multiple groups of material loading assemblies; the multiple groups of material loading assemblies are distributed side by side on the workbench and are used for conveying the radiators; the detection mechanism is provided with at least one group of detection modules; the detection module comprises a support frame, a first detection assembly and a second detection assembly; the support frame is arranged on the workbench and spans above the material loading mechanism; the first detection assembly and the second detection assembly are arranged on the two sides of the support frame respectively; the first detection assembly and the second detection assembly are used for detecting the tooth holes on the radiators; the first detection assembly is provided with a first detection head; the second detection assembly is provided with a second detection head; the tooth diameter at the bottom end of the first detection head is equal to or different from the tooth diameter at the bottom end of the second detection head.
[0008] As further elaboration, the first detection assembly comprises a first translation module, a first lifting module and a first tooth detection module; the first translation module is arranged on one side of the support frame; the first translation module is provided with a first sliding seat which can reciprocate along the extension direction of the first translation module; the first lifting module is arranged on the first sliding seat; the first lifting module is provided with a second sliding seat which can reciprocate along the extension direction of the first lifting module; the first tooth detection module is arranged on the second sliding seat.
[0009] As further elaboration, the first tooth detection module comprises a mounting seat and a first tooth detection driving member; the mounting seat is arranged on one side of the bottom end of the second sliding seat; the first tooth detection driving member is slidably arranged on the mounting seat through a connecting plate; the first detection head is located on the output end of the first tooth detection driving member.
[0010] As further elaboration, the mounting seat comprises a first mounting plate and a second mounting plate; the first mounting plate and the second mounting plate are arranged on the second sliding seat in a top-down manner, a plurality of groups of guide columns are arranged between the first mounting plate and the second mounting plate at equal intervals; a guide sleeve is arranged between the guide column and the connecting plate.
[0011] As further elaboration, the bottom end of the second mounting plate is provided with a guide block which is arranged perpendicularly to the second mounting plate; one side of the guide block is provided with a guide hole; the first detection head can slide in the guide hole.
[0012] As further elaboration, a sealing sleeve is arranged in the guide hole.
[0013] As further elaboration, the structure of the second detection assembly is the same as that of the first detection assembly; the first detection assembly and the second detection assembly are symmetrically arranged on the support frame.
[0014] As a further illustration, the carrier assembly comprises a carrier module and a carrier table; the carrier module is arranged on the workbench and vertically arranged with the support frame; the carrier table slides on the carrier module.
[0015] As a further illustration, the carrier table is provided with a plurality of upward extending limiting parts; the top end of the limiting part is provided with a plurality of outward extending boss parts.
[0016] As a further illustration, a plurality of cleaning bottles are arranged between every two adjacent carrier assemblies; a plurality of cleaning bottles are arranged below the first detection assembly and the second detection assembly.
[0017] The utility model discloses have obvious advantages and beneficial effects compared with prior art, specifically speaking, from the above technical scheme can know:
[0018] 1. By setting up the first detection assembly and the second detection assembly, and the first detection head and the second detection head bottom end's tooth diameter can be equal or unequal setting, this device can detect different size tooth hole simultaneously, that is, need not frequently change detection head or shift to other tooth detection device, significantly improve the detection flexibility of this device, simultaneously, still through a plurality of parallel distribution's carrier assembly, make this device can detect a plurality of radiator simultaneously, further improve the detection efficiency of this device.
[0019] 2. By setting up the first translation module, the first lifting module and the carrier module of the carrier assembly, under the cooperation of the first translation module and the carrier module, the first detection assembly or the second detection assembly can be quickly and accurately moved to the top of different tooth holes of the radiator, and then the first detection head or the second detection head is moved downward under the drive of the first lifting module, so that the detection of different tooth holes on the radiator is realized, the detection steps of the tooth hole on the radiator are simplified, and the detection effect of the tooth hole is improved. BRIEF DESCRIPTION OF DRAWINGS
[0020] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the following will briefly introduce the drawings needed to be used in the embodiments or prior art description. Obviously, the drawings in the following description only some embodiments of the present application, and for those skilled in the art, without creative labor, other drawings can also be obtained from these drawings.
[0021] Figure 1 The utility model provides a kind of overall structure schematic diagram of XYZ automatic tooth detection device for radiator for the utility model;
[0022] Figure 2 The overall structure schematic diagram of detection machine module is provided for the utility model;
[0023] Figure 3The first detection assembly or the second detection assembly is provided with the whole structure schematic view.
[0024] Figure 4 The partial structure schematic view of the material carrying module is provided.
[0025] In the drawing, various reference signs are:
[0026] 10, workbench; 11, cleaning bottle; 20, material carrying assembly; 21, material carrying module; 22, material carrying table; 221, limiting part; 222, boss part; 30, detection module; 31, support frame; 32, first detection head; 40, first detection assembly; 41, first translation module; 411, first sliding seat; 42, first lifting module; 421, second sliding seat; 43, first tooth detection module; 431, mounting seat; 431a, first mounting plate; 431b, second mounting plate; 431c, guide column; 431d, guide sleeve; 431e, guide block; 431f, closed sleeve; 432, first tooth detection driving piece; 433, connecting plate; 50, second detection assembly. DETAILED DESCRIPTION
[0027] In order to make the technical problems, technical solutions and beneficial effects of the present application clearer, the present application will be further described in detail below in combination with the drawings and examples. It should be understood that the specific examples described herein are only used to explain the present application and not to limit the present application.
[0028] It should be noted that when an element is referred to as being "fixed to" or "disposed on" another element, it can be directly on the other element or connected to the other element through an intervening element. When an element is referred to as being "connected to" another element, it can be directly connected to the other element or connected to the other element through an intervening element.
[0029] It should be understood that the terms "length", "width", "upper", "lower", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only used to facilitate the description of the present application and simplify the description, and do not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the present application.
[0030] In addition, the terms "first", "second", etc. are used only for descriptive purposes and should not be construed as implying or suggesting relative importance or an indicated number of the technical features. Therefore, the features defined as "first", "second", etc. can explicitly or implicitly include one or more of the features. In the description of the present application, the meaning of "a plurality of" is two or more, unless otherwise specifically limited.
[0031] In order to make the purpose, technical scheme and advantages of the utility model more clear, the utility model is further described in detail below in combination with the drawings and examples.
[0032] In an embodiment of the utility model, as shown in Figures 1-4 A XYZ automatic tooth detection device for radiators is provided, which comprises a rack, a material loading mechanism and a detection mechanism. The rack is provided with a workbench 10. The material loading mechanism comprises a plurality of material loading assemblies 20. The plurality of material loading assemblies 20 are arranged side by side on the workbench 10 and are used for the transmission of radiators. The detection mechanism is provided with at least one detection module 30. The detection module 30 comprises a support frame 31, a first detection assembly 40 and a second detection assembly 50. The support frame 31 is arranged on the workbench 10 and spans above the material loading mechanism. The first detection assembly 40 and the second detection assembly 50 are arranged on the two sides of the support frame 31 respectively. The first detection assembly 40 and the second detection assembly 50 are used for the detection of the tooth holes on the radiators. The first detection assembly 40 is provided with a first detection head 32. The second detection assembly 50 is provided with a second detection head. The tooth diameter at the bottom end of the first detection head 32 is equal to or different from the tooth diameter at the bottom end of the second detection head.
[0033] In the embodiment, the material loading assemblies 20 are arranged in two groups, and the two groups of material loading assemblies 20 are arranged side by side on the workbench 10. The two groups of material loading assemblies 20 can simultaneously transmit two groups of radiators, greatly reducing the detection time of the whole batch of radiators.
[0034] The detection module 30 is arranged in one group and is arranged in the center of the workbench 10. Through the first detection assembly 40 and the second detection assembly 50 on the detection module 30, the simultaneous detection of two different tooth diameters is realized, that is, the detection heads do not need to be frequently replaced or transferred to other tooth detection devices, and the detection flexibility of the device is significantly improved.
[0035] In the remaining embodiments, the number of material loading assemblies 20 and detection modules 30 can be arranged according to the actual production needs, such as two groups, three groups, four groups, etc., as long as the production needs can be met.
[0036] By setting the first detection assembly 40 and the second detection assembly 50, and the tooth diameter of the bottom end of the first detection head 32 and the second detection head can be equal or unequal, the device can detect different sizes of tooth holes at the same time, that is, without frequent replacement of detection heads or transfer to other tooth detection devices, which significantly improves the detection flexibility of the device. At the same time, through the parallel distribution of multiple groups of loading assemblies 20, the device can detect multiple heat sinks at the same time, further improving the detection efficiency of the device.
[0037] Preferably, the first detection assembly 40 comprises a first translation module 41, a first lifting module 42 and a first tooth detection module 43. The first translation module 41 is arranged on one side of the support frame 31, and the first translation module 41 is a linear module moving horizontally. The first translation module 41 is provided with a first sliding seat 411 which can reciprocate along the extension direction of the first translation module 41. The first lifting module 42 is arranged on the first sliding seat 411, and the first lifting module 42 is a linear module moving vertically. The first lifting module 42 is provided with a second sliding seat 421 which can reciprocate along the extension direction of the first lifting module 42. The first tooth detection module 43 is arranged on the second sliding seat 421. By setting the first translation module 41, the first lifting module 42 and the loading module 21 of the loading assembly 20, through the cooperation of the first translation module 41 and the loading module 21, the first detection assembly 40 or the second detection assembly 50 can quickly and accurately move above different tooth holes of the heat sink. Then, the first detection head 32 or the second detection head is driven downward by the first lifting module 42, thereby realizing the detection of different tooth holes of the heat sink, simplifying the detection steps of the tooth holes of the heat sink, and improving the detection effect of the tooth holes.
[0038] Specifically, the first tooth detection module 43 comprises a mounting seat 431 and a first tooth detection driving member 432. The mounting seat 431 is arranged on one side of the bottom end of the second sliding seat 421. The first tooth detection driving member 432 is slidably arranged on the mounting seat 431 through a connecting plate 433, and the first tooth detection driving member 432 is an electric motor. The first detection head 32 is located on the output end of the first tooth detection driving member 432. When the first tooth detection module 43 moves above the corresponding tooth hole of the heat sink, the first tooth detection driving member 432 is started, the first tooth detection driving member 432 drives the first detection head 32 to rotate and slide downward on the mounting seat 431, thereby realizing the detection of the tooth hole of the heat sink.
[0039] Further, the mounting base 431 comprises a first mounting plate 431a and a second mounting plate 431b. The first mounting plate 431a and the second mounting plate 431b are arranged on the second sliding seat 421 in an up-down manner, and a plurality of guide columns 431c are arranged between the first mounting plate 431a and the second mounting plate 431b in an equal distance distribution manner. A guide sleeve 431d is arranged between the guide column 431c and the connecting plate 433. The mounting base 431 provides stable support and accurate guidance for the downward movement of the first detection head 32, ensuring the stability and accuracy of the first detection head 32 during movement, thereby improving the detection efficiency and quality.
[0040] Further, the bottom end of the second mounting plate 431b is provided with a guide block 431e, and the guide block 431e is arranged vertically with the second mounting plate 431b. One side of the guide block 431e is provided with a guide hole, and the first detection head 32 can slide in the guide hole. By arranging the guide block 431e and the guide hole, the guide block 431e and the guide hole play a guiding role in the sliding of the first detection head 32 on a specific path, improving the movement stability of the first detection head 32.
[0041] Further, a sealing sleeve 431f is arranged in the guide hole. By arranging the sealing sleeve 431f, the sealing sleeve 431f ensures the sealing and stability of the first detection head 32 during movement, reduces the detection error caused by the shaking or deviation of the first detection head 32, and improves the tooth detection efficiency of the device.
[0042] Further, the structure of the second detection assembly 50 is the same as that of the first detection assembly 40. The first detection assembly 40 and the second detection assembly 50 are symmetrically arranged on the support frame 31. The symmetrically arranged second detection assembly 50 and the first detection assembly 40 have the same structure, so that the detection module 30 can simultaneously or alternately detect different sizes of tooth holes on the heat sink, thereby improving the detection efficiency of the device.
[0043] Preferably, the material loading assembly 20 comprises a material loading module 21 and a material loading table 22. The material loading module 21 is arranged on the workbench 10, and the material loading module 21 is a linear module moving in a transverse direction and is arranged vertically with the support frame 31. The material loading table 22 slides on the material loading module 21. By arranging the material loading module 21, the heat sink can be automatically transported to the detection position without manual intervention, thereby improving the tooth detection efficiency of the device.
[0044] Further, a plurality of upward extending limiting portions 221 are arranged on the material loading table 22. A plurality of outward extending boss portions 222 are arranged at the top end of the limiting portion 221. By arranging the limiting portion 221 and the boss portion 222, the stability and accuracy of the heat sink on the material loading table 22 are ensured, and the movement or deviation of the heat sink during detection is prevented, thereby improving the detection accuracy and efficiency.
[0045] Preferably, a plurality of cleaning bottles 11 are arranged between every two adjacent carrier assemblies 20, and the cleaning bottles 11 are filled with cleaning liquid, such as alcohol. The plurality of cleaning bottles 11 are respectively arranged below the first detection assembly 40 and the second detection assembly 50. By arranging the plurality of cleaning bottles 11, the first detection head 32 and the second detection head can be cleaned in time during the detection process. The cleaning function ensures the cleanliness and accuracy of the first detection head 32 and the second detection head, thereby improving the detection efficiency and quality. Meanwhile, the cleaning liquid reduces the detection error caused by impurities and the need for repeated detection.
[0046] The above is only a preferred embodiment of the present application, and only the technical principle of the present application is specifically described. These descriptions are only for explaining the principle of the present application, and cannot be interpreted as limiting the protection scope of the present application in any way. Based on the explanations herein, any modification, equivalent replacement and improvement within the spirit and principle of the present application, and other specific embodiments of the present application that can be conceived by those skilled in the art without creative labor, should be included in the protection scope of the present application.
Claims
1. An automatic XYZ tooth detection device for a radiator, characterized in that, include: A frame, on which a worktable is provided; A material loading mechanism, comprising multiple sets of material loading components; the multiple sets of material loading components are arranged side by side on the worktable and are used for the transfer of heat sinks; The testing mechanism includes at least one testing module; each testing module includes a support frame, a first testing component, and a second testing component; the support frame is mounted on the workbench and spans across the material loading mechanism; the first testing component and the second testing component are respectively located on both sides of the support frame; the first testing component and the second testing component are used for testing the threaded holes on the radiator; The first detection component has a first detection head; the second detection component has a second detection head; the tooth diameter at the bottom of the first detection head is equal to or not equal to the tooth diameter at the bottom of the second detection head.
2. The XYZ automatic tooth detection device for radiators according to claim 1, characterized in that, The first detection component includes a first translation module, a first lifting module, and a first dental examination module; the first translation module is disposed on one side of the support frame; the first translation module is provided with a first slide block that can reciprocate along the extension direction of the first translation module; the first lifting module is disposed on the first slide block; the first lifting module is provided with a second slide block that can reciprocate along the extension direction of the first lifting module; the first dental examination module is disposed on the second slide block.
3. The XYZ automatic tooth detection device for radiators according to claim 2, characterized in that, The first dental inspection module includes a mounting base and a first dental inspection drive; the mounting base is located on one side of the bottom end of the second slide; the first dental inspection drive is slidably mounted on the mounting base via a connecting plate; the first detection head is located on the output end of the first dental inspection drive.
4. The XYZ automatic tooth detection device for radiators according to claim 3, characterized in that, The mounting base includes a first mounting plate and a second mounting plate; the first mounting plate and the second mounting plate are distributed vertically on the second slide, and multiple sets of guide posts are provided between the first mounting plate and the second mounting plate at equal intervals; a guide sleeve is provided between the guide posts and the connecting plate.
5. The XYZ automatic tooth detection device for radiators according to claim 4, characterized in that, The second mounting plate has a guide block at its bottom end, and the guide block is perpendicular to the second mounting plate; the guide block has a guide hole on one side, and the first detection head can slide in the guide hole.
6. The XYZ automatic tooth detection device for radiators according to claim 5, characterized in that, The guide hole is equipped with a sealing sleeve.
7. The XYZ automatic tooth detection device for radiators according to claim 6, characterized in that, The structure of the second detection component is the same as that of the first detection component; the first detection component and the second detection component are symmetrically distributed on the support frame.
8. The XYZ automatic tooth detection device for radiators according to claim 1, characterized in that, The material loading assembly includes a material loading module and a material loading platform; the material loading module is disposed on the worktable and is perpendicular to the support frame; the material loading platform slides on the material loading module.
9. The XYZ automatic tooth detection device for a radiator according to claim 8, characterized in that, The loading platform is provided with multiple sets of upwardly extending limiting parts; the top of the limiting parts is provided with multiple sets of outwardly extending bosses.
10. The XYZ automatic tooth detection device for a radiator according to claim 1, characterized in that, Multiple sets of cleaning bottles are provided between each pair of adjacent material-carrying components; the multiple sets of cleaning bottles are respectively located below the first detection component and the second detection component.