Automatic detection device for machine tool cooling machine

By designing an automated machine tool cooler testing device, the automated connection and testing of machine tool coolers has been realized, solving the problem of time-consuming and labor-intensive manual operation in the existing technology, and improving testing efficiency and applicability.

CN115084964BActive Publication Date: 2026-02-06ZHUHAI GREE INTELLIGENT EQUIP CO LTD +1
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Patent Information

Application Number
CN202210924295.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-08-02
Publication Date
2026-02-06
Estimated Expiration
2042-08-02

AI Technical Summary

Technical Problem

Existing machine tool cooler testing devices require manual connection via human assistance, which is time-consuming, labor-intensive, and inefficient.

Method used

An automatic detection device for machine tool coolers was designed, including a detection mechanism, a connection mechanism, a drive mechanism, and a scanning detection device. The device achieves automatic connection and disconnection through an electrically connected connection body and a connection drive component, and achieves automated detection by combining omnidirectional casters and an identification device.

Benefits of technology

It improves the automation level of machine tool cooler inspection, reduces manual operation, increases inspection efficiency and applicability, and avoids hard contact damage.

✦ Generated by Eureka AI based on patent content.

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Abstract

The machine tool cooling machine automatic detection device provided by the application comprises a detection mechanism adapted to detect a machine tool cooling machine, a connecting mechanism comprising a connecting main body and a connecting driving element, and at least the connecting main body is electrically connected with the detection mechanism. The connecting main body has a detection position for connecting the machine tool cooling machine under the action of the connecting driving element and a standby position away from the machine tool cooling machine. The connecting main body is electrically connected with the detection mechanism, and the connecting driving element is arranged. According to the needs of the detection mechanism, the movement of the connecting main body can be driven, the connecting main body and the machine tool cooling machine are connected or disconnected by approaching or moving away from the machine tool cooling machine, and the automation of the detection device and the machine tool cooling machine is realized. The automation level of the machine tool cooling machine automatic detection device is improved, and the defects of the existing machine tool cooling machine detection device, such as manual connection, time-consuming and laborious work, and low efficiency, are effectively overcome.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of detection equipment, in particular to an automatic detection device for machine tool cooling machine. BACKGROUND

[0002] In the production of machine tool cooling machine products, in order to ensure the quality of the production products, the machine tool cooling machine needs to be detected. The detection items mainly include whether the electrical components of the machine tool cooling machine can normally operate after assembly, whether the current and voltage of the cooling machine meet the requirements (for example: fan, motor, temperature sensor, pressure sensor, signal device, etc.), and whether the electrical parameters, total power of oil pump, compressor operation, oil outlet temperature, and suction temperature bag temperature meet the program setting requirements, and whether the detection values and each detection item meet the program setting requirements, and whether it is qualified.

[0003] However, at present, domestic and foreign manufacturers basically use semi-automatic machine tool cooling machine detection devices, which still need manual operation to manually connect the machine tool cooling machine and the detection device, which is time-consuming and laborious and has low efficiency. SUMMARY

[0004] Therefore, the technical problem to be solved by the present application is to overcome the defects of the prior art machine tool cooling machine detection device, which needs manual operation for manual connection, is time-consuming and laborious, and has low efficiency, thereby providing an automatic detection device for machine tool cooling machine.

[0005] The present application provides an automatic detection device for machine tool cooling machine, comprising: a detection mechanism adapted to detect a machine tool cooling machine; a connection mechanism comprising a connection main body and a connection driving member, at least the connection main body is electrically connected with the detection mechanism, the connection main body has a detection position connected with the machine tool cooling machine to be detected and a standby position away from the machine tool cooling machine to be detected under the action of the connection driving member.

[0006] The connection main body comprises: a guide assembly comprising a first guide member and a second guide member, the first guide member and the second guide member are arranged in a cross shape along the horizontal direction; a first bearing table is clamped between the first guide member and the second guide member along the height direction and bears the second guide member, and is adapted to move along the first guide member under the action of the connection driving member; a second bearing table is arranged on the second guide member and is adapted to move along the second guide member under the action of the connection driving member; a connection assembly is arranged on the second bearing table and is in communication connection with the detection mechanism.

[0007] The connecting assembly comprises a plurality of connecting rods in communication connection with the detection mechanism, a connecting head arranged at the end of the side of the machine tool cooling machine to be detected, a plurality of accommodating grooves arranged along the second bearing table and arranged in the same direction as the second guide, suitable for accommodating the connecting rods and in sliding connection with the connecting rods, and a limiting pressing plate detachably connected to the second bearing table and provided with a plurality of limiting grooves corresponding to the accommodating grooves and suitable for limiting the movement of the connecting rods in the accommodating grooves.

[0008] The connecting head is provided with an elastic buffer structure.

[0009] The second bearing table is further provided with a first identification device in communication connection with the connecting drive.

[0010] The connecting drive comprises a first drive arranged at one end of the first guide and connected to the first bearing table and suitable for driving the first bearing table to move along the first guide, and a second drive arranged on the second bearing table and at one end of the second guide and suitable for driving the second bearing table to move along the second guide.

[0011] The machine tool cooling machine automatic detection device further comprises a driving mechanism in communication connection with the detection mechanism and suitable for driving the detection mechanism to move.

[0012] The driving mechanism comprises a plurality of universal casters arranged at least on the lower side of the detection mechanism, at least one third drive arranged on the universal caster, and a second identification device in communication connection with the third drive and suitable for detecting and identifying the movement path.

[0013] The machine tool cooling machine automatic detection device further comprises a scanning detection device arranged in the direction of the machine tool cooling machine to be detected and in communication connection with the detection mechanism.

[0014] The machine tool cooling machine automatic detection device further comprises a first shell with the detection mechanism built-in, a second shell arranged adjacent to the first shell and with the connecting mechanism arranged on the upper side thereof, and a third shell arranged on the upper side of the first shell and with a vertical height greater than that of the second shell and with the scanning detection device arranged on the side thereof facing the second shell, and the lower sides of the first shell and the second shell are provided with the driving mechanism.

[0015] The third shell is embedded with a screen display assembly in communication connection with the detection mechanism.

[0016] The third shell is further provided with a plurality of signal display pieces.

[0017] The machine tool cooler automatic detection device further comprises a controller in communication connection with the detection mechanism, the connecting driving element, the first identification device, the third driving element, the second identification device, the scanning detection device, the screen display component and the signal display element.

[0018] The technical scheme has the following advantages:

[0019] 1. The machine tool cooler automatic detection device comprises a detection mechanism adapted to detect a machine tool cooler, a connecting mechanism comprising a connecting body and a connecting driving element, at least the connecting body being in electrical connection with the detection mechanism, the connecting body having a detection position connected to the machine tool cooler to be detected and a standby position away from the machine tool cooler to be detected.

[0020] The connecting body in electrical connection with the detection mechanism and the connecting driving element can drive the movement of the connecting body according to the needs of the detection mechanism, realize the connection or disconnection of the connecting body and the machine tool cooler to be detected by approaching or moving away from the machine tool cooler to be detected, and further realize the automation of the electrical connection between the detection device and the machine tool cooler, thereby improving the automation level of the machine tool cooler automatic detection device and effectively overcoming the defects of manual connection in the prior art.

[0021] 2. The machine tool cooler automatic detection device comprises a plurality of connecting rods in communication connection with the detection mechanism, the end of the connecting rod on the side facing the machine tool cooler to be detected being provided with a connecting head, a plurality of accommodating grooves being arranged along the second bearing table and in the same direction as the second guide element, adapted to accommodate the connecting rod and in sliding connection with the connecting rod, and a limiting pressing plate being detachably connected to the second bearing table and provided with a plurality of limiting grooves corresponding to the accommodating grooves and adapted to limit the movement of the connecting rod in the accommodating grooves.

[0022] By arranging the accommodating grooves for accommodating the connecting rods on the second bearing table, the connecting rods can be stretched towards the side of the machine tool cooler to be detected after the limiting pressing plate is removed, and a through hole in interference fit with the connecting rod can be formed by the cooperation of the accommodating grooves and the limiting grooves after the limiting pressing plate is installed, thereby limiting the movement of the connecting rod, improving the stroke range of the connecting head and the application range of the machine tool cooler automatic detection device to different types of machine tool coolers.

[0023] 3. The machine tool cooling machine automatic detection device provided by the present application, wherein the connecting head is provided with an elastic buffer structure.

[0024] The elastic buffer structure can realize elastic contact, avoid the connecting head moving towards the machine tool cooling machine to be detected under the action of the driving member, and further avoid hard contact during automatic connection and damage to the matching connector of the machine tool cooling machine to be detected.

[0025] 4. The machine tool cooling machine automatic detection device provided by the present application, wherein the second bearing table is further provided with a first identification device, and the first identification device is in communication connection with the connecting driving member.

[0026] The first identification device can effectively identify the specific position of the machine tool cooling machine to be detected and the matching connector thereon, and feed back the position signal to the connecting driving member, so that the first driving member and the second driving member can be accurately driven, the connecting head at the end of the connecting rod on the second bearing table can be accurately connected with the matching connector, automatic connection can be realized, and the automation level of the overall device is improved.

[0027] 5. The machine tool cooling machine automatic detection device provided by the present application, wherein the driving mechanism comprises: a plurality of universal casters arranged at least on the lower side of the detection mechanism; at least one third driving member arranged on the universal caster; and a second identification device in communication connection with the third driving member and adapted to detect and identify the moving path.

[0028] The universal wheel structure with the third driving member can select the rotation angle and forward direction of the universal wheel as needed and drive it to move along the required angle and direction, and the second identification device can effectively identify the forward route, so that the automatic detection device can move between different machine tool cooling machines to be detected according to the required route, further improving the automation level and detection efficiency of the automatic detection device.

[0029] 6. The machine tool cooling machine automatic detection device provided by the present application, further comprising: a scanning detection device arranged towards the machine tool cooling machine to be detected and in communication connection with the detection mechanism.

[0030] The scanning detection device arranged towards the machine tool cooling machine to be detected can quickly identify the two-dimensional code, nameplate or logo, etc. on the machine tool cooling machine to be detected, obtain the information of the detected product, and determine whether the driving mechanism needs to stop at the position of the detected product and perform detection, further improving the automation level of the automatic detection device. BRIEF DESCRIPTION OF DRAWINGS

[0031] In order to more clearly illustrate the technical solutions in the specific embodiments of the present application or the prior art, the following will briefly introduce the drawings needed to be used in the specific embodiments or prior art description. Obviously, the drawings described below are some embodiments of the present application, and for those skilled in the art, other drawings can also be obtained without creative labor on the basis of these drawings.

[0032] Figure 1 A perspective structural schematic view of the automatic detection device of the machine tool cooling machine provided in the embodiments of the present application is shown in the figure.

[0033] Figure 2 A perspective structural schematic view of the automatic detection device of the machine tool cooling machine provided in the embodiments of the present application is shown in the figure. Figure 1 A partial enlarged view of the automatic detection device of the machine tool cooling machine is shown in the figure.

[0034] Figure 3 A perspective structural schematic view of the automatic detection device of the machine tool cooling machine provided in the embodiments of the present application is shown in the figure. Figure 1 A perspective structural schematic view of the automatic detection device of the machine tool cooling machine provided in the embodiments of the present application is shown in the figure.

[0035] Figure 4 A perspective structural schematic view of the automatic detection device of the machine tool cooling machine provided in the embodiments of the present application is shown in the figure. Figure 1 A perspective structural schematic view of the automatic detection device of the machine tool cooling machine provided in the embodiments of the present application is shown in the figure.

[0036] Explanation of reference signs:

[0037] 1, detection mechanism; 2, connecting mechanism; 21, first guide; 22, second guide; 23, first bearing table; 24, second bearing table; 241, containing groove; 25, first driving part; 26, second driving part; 27, connecting rod; 271, connecting head; 28, limiting pressing plate; 281, limiting groove; 29, first identification device; 3, driving mechanism; 31, universal caster; 32, third driving part; 33, second identification device; 4, scanning detection device; 5, first shell; 6, second shell; 7, third shell; 8, screen display assembly; 9, signal display part. DETAILED DESCRIPTION

[0038] The technical solutions of the present application will be described below in conjunction with the drawings. Obviously, the described embodiments are some embodiments of the present application, and not all embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor are within the scope of protection of the present application.

[0039] In the description of the present application, it should be noted that the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer" and the like indicate the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and do not indicate or imply that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the present application. In addition, the terms "first", "second", "third" are only for descriptive purposes and cannot be understood as indicating or implying relative importance.

[0040] In the description of the present application, it should be noted that unless otherwise explicitly specified and limited, the terms "mounting", "connection", "connection" should be understood broadly, for example, it can be fixedly connected, or it can be detachably connected, or integrally connected; it can be mechanically connected, or it can be electrically connected; it can be directly connected, or it can be indirectly connected through an intermediate medium; it can be the communication inside two elements. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.

[0041] In addition, the technical features involved in the different embodiments of the application described below can be combined with each other as long as there is no conflict.

[0042] As Figure 1 - Figure 4 The embodiment provides an automatic detection device for machine tool cooler, which comprises a detection mechanism 1 and a connecting mechanism 2.

[0043] Specifically, in the embodiment, the detection mechanism 1 is arranged in the first shell 5, and a first opening and closing door is arranged outside, which is suitable for detecting the machine tool cooler. The detection mechanism 1 comprises an electromagnetic valve arranged on the inner wall of one side of the first shell 5 and a plurality of electrical elements arranged on the inner wall of the other side, wherein the electrical elements arranged on the upper side are an air switch, a terminal row and a leakage protector arranged adjacent in the horizontal direction, the electrical elements arranged adjacent below are a relay, a contactor and an information recorder, the electrical elements arranged on the lower side are a main control circuit board and an electrical element indicator lamp, and the electrical elements arranged on the lowermost side are a signal processor and a recorder. In the embodiment, the detection program has been built-in in the main control circuit board.

[0044] The connecting mechanism 2 comprises a connecting body and a connecting driving piece, the connecting body is electrically connected with the detection mechanism 1, and the connecting body has a detection position for connecting the machine tool cooler to be detected and a standby position away from the machine tool cooler to be detected under the action of the connecting driving piece. In the embodiment, the connecting driving piece is also electrically connected with the detection mechanism 1.

[0045] By setting the connecting body electrically connected with the detection mechanism 1, and by setting the connection driving piece, the movement of the connecting body can be driven according to the needs of the detection mechanism 1, the connection or disconnection between the connecting body and the machine tool cooler to be detected is realized by approaching or moving away from the machine tool cooler to be detected, and then the automation of the electrical connection between the detection device and the machine tool cooler is realized, the automation level of the machine tool cooler automatic detection device is improved, and the defects that the machine tool cooler detection device needs manual cooperative operation for manual wiring, the work is time-consuming and laborious, and the efficiency is low are effectively overcome.

[0046] The connecting body comprises a guide assembly, a first bearing table 23, a second bearing table 24 and a connecting assembly.

[0047] The guide assembly comprises a first guide 21 and a second guide 22, and the first guide 21 and the second guide 22 are arranged in a cross manner in the horizontal direction. In this embodiment, the first guide 21 and the second guide 22 are both movable guide rails and are arranged perpendicular to each other. As a transformable embodiment, they can also be in the form of a sliding groove or other structures, and they can also be arranged at other cross angles. In addition, the number of the first guide 21 and the second guide 22 is not limited. In this embodiment, two parallel first guides 21 and two collinear second guides 22 are provided.

[0048] The first bearing table 23 is arranged in a flat plate shape and is clamped between the first guide 21 and the second guide 22 in the height direction and bears the second guide 22, and is suitable for moving along the first guide 21 under the action of the connection driving piece; the second bearing table 24 is also arranged in a plate shape on the second guide 22 and can move along the second guide 22 under the action of the connection driving piece; the connecting assembly is arranged on the second bearing table 24 and is electrically connected with the detection mechanism 1.

[0049] As a transformable embodiment, only one set of first guides 21 or a third guide moving in the height direction can be provided.

[0050] The connection driving piece comprises a first driving piece 25 and a second driving piece 26. In this embodiment, they are both driving motors with fixed plates.

[0051] The first driving piece 25 is arranged at one end of the first guide 21 and is connected with the first bearing table 23, and can drive the first bearing table 23 to reciprocate along the first guide 21; the second driving piece 26 is arranged on the second bearing table 24 and is placed at one end of the second guide 22, and is suitable for driving the second bearing table 24 to reciprocate along the second guide 22.

[0052] The connecting assembly comprises a plurality of connecting rods 27, a plurality of accommodating grooves 241 and a limiting pressing plate 28 with a plurality of limiting grooves 281. In this embodiment, the number is one-to-one correspondence, specifically three.

[0053] The connecting rod 27 is electrically connected with the detection mechanism 1 through the power supply slide, and the end of the side of the machine tool cooling machine to be detected is provided with a connecting head 271. In this embodiment, the three connecting heads 271 are two power supply connecting heads and one information connecting head. The accommodating groove 241 is arranged on the second bearing table 24 and is arranged in the same direction as the second guide 22, and is suitable for accommodating the connecting rod 27 and is in sliding connection with the connecting rod 27; the limiting pressing plate 28 is detachably connected to the second bearing table 24, and a plurality of limiting grooves 281 are arranged thereon and correspond to the accommodating grooves 241, and are suitable for limiting the movement of the connecting rod 27 in the accommodating grooves 241. As a variable embodiment, the limiting pressing plate 28 can be hinged to the second bearing table 24.

[0054] By arranging the accommodating grooves 241 on the second bearing table 24 to accommodate the connecting rod 27, the connecting rod 27 can be stretched towards the side of the machine tool cooling machine to be detected after the limiting pressing plate 28 is removed, and after the limiting pressing plate 28 is installed, the through hole in interference fit with the connecting rod 27 is formed through the cooperation of the accommodating grooves 241 and the limiting grooves 281, and the movement of the connecting rod 27 is limited, so that the stroke range of the connecting head 271 is improved, and the application range of the machine tool cooling machine automatic detection device to different types of machine tool cooling machines is improved; at the same time, according to the needs, most or the entire connecting rod 27 can be accommodated in the accommodating grooves 241, and the limiting pressing plate 28 is installed to realize the accommodation of the connecting rod 27, and prevent the long rod-shaped connecting rod 27 from being damaged due to accidental touch.

[0055] The connecting head 271 is provided with an elastic buffer structure, specifically a rubber ring, and through the arrangement of the elastic buffer structure, elastic contact can be realized, and hard contact can be avoided when the connecting head 271 moves towards the machine tool cooling machine to be detected under the action of the driving member, and further automatically connects, thereby damaging the mating connector of the machine tool cooling machine to be detected.

[0056] The first identification device 29 is arranged on the second bearing table 24, specifically a visual sensor or a camera, and the first identification device 29 is in communication connection with the connecting driving member. Through the arrangement of the first identification device 29, the specific position of the machine tool cooling machine to be detected and the mating connector thereon can be effectively identified, and the position signal can be fed back to the connecting driving member, so that the first driving member 25 and the second driving member 26 can be accurately driven, and it is ensured that the connecting head 271 at the end of the connecting rod 27 on the second bearing table 24 can be accurately connected with the mating connector to realize automatic connection, thereby improving the automation level of the whole device.

[0057] The machine tool cooling machine automatic detection device further comprises a driving mechanism 3, which is in communication connection with the detection mechanism 1 and is suitable for driving the detection mechanism 1 to move.

[0058] In the embodiment, the driving mechanism 3 comprises four universal casters 31, two of which are arranged on the lower side of the detection mechanism 1; four third driving members 32, specifically driving motors, are arranged on the universal casters 31 respectively, and only one or more of them can be arranged; a second identification device 33, specifically a scanning gun AGV navigation code reader, is in communication connection with the third driving member 32, which can be circuit connection or wireless connection, and is suitable for detecting and identifying the moving path. In the embodiment, a two-dimensional code or route code identification carrier is pasted on the ground, and the second identification device 33 scans the two-dimensional code to move on the fixed route, so as to automatically find the machine tool cooler at different positions.

[0059] By arranging the universal wheel structure with the third driving member 32, the rotation angle and forward direction of the universal wheel can be selected as needed, and the universal wheel is driven to move at the required angle and direction. At the same time, the second identification device 33 is arranged, which can effectively identify the advancing route, so that the automatic detection device can move between different machine tool coolers to be detected according to the required route, thereby further improving the automation level and detection efficiency of the automatic detection device.

[0060] The machine tool cooler automatic detection device further comprises a scanning detection device 4 arranged towards the direction of the machine tool cooler to be detected and electrically connected with the detection mechanism 1. The scanning detection device 4 can be a camera or a code scanner.

[0061] By additionally arranging the scanning detection device towards the direction of the machine tool cooler to be detected, the two-dimensional code, nameplate or identification on the machine tool cooler to be detected can be quickly identified to obtain the information of the detected product, and it is determined whether the driving mechanism needs to stop at the position of the detected product and perform detection, thereby further improving the automation level of the automatic detection device.

[0062] The machine tool cooler automatic detection device further comprises a square shell-shaped first shell 5, a second shell 6 and a third shell 7.

[0063] The first shell 5 is internally provided with the detection mechanism 1, the second shell 6 is arranged adjacent to the first shell 5, and the upper side thereof is provided with the connecting mechanism 2; the third shell 7 is arranged on the upper side of the first shell 5, and the vertical height thereof is greater than that of the second shell 6, and the side thereof facing the second shell 6 is provided with the scanning detection device 4; the lower side of the first shell 5 and the second shell 6 is provided with the driving mechanism 3.

[0064] In addition, the third shell 7 is embedded with a screen display assembly 8, which specifically includes a display screen and a connecting circuit, and the screen display assembly 8 is electrically connected with the detection mechanism 1. The third shell 7 is also provided with a plurality of signal display pieces 9, which are signal display lamps. In the embodiment, the display direction of the screen display assembly 8 on the third shell 7 is the same as the setting direction of the first opening and closing door on the first shell 5 and the setting direction of the signal display pieces 9, which is convenient for the operator to check or repair.

[0065] In addition, the machine tool cooler automatic detection device further comprises a controller, which is a single-chip microcomputer in the embodiment and is arranged on the main control circuit board of the detection mechanism 1. The controller can also be other general-purpose processors, digital signal processors, application-specific integrated circuits, field programmable gate arrays, or other programmable logic devices, discrete gates or transistor logic devices, discrete hardware components, or a combination of the above-mentioned chips.

[0066] In the embodiment, the controller is in communication connection with the detection mechanism 1, the first driving piece, the second driving piece, the first identification device 29, the third driving piece 32, the second identification device 33, the scanning detection device 4, the screen display assembly 8 and the signal display piece 9.

[0067] Working process:

[0068] The third driving piece is driven to move according to the route code through the scanning of the route code on the ground by the second identification device 33. When the information of the machine tool cooler to be detected is detected by the scanning detection device 4, the universal castor is controlled to stop after adjusting the direction of the automatic detection device, and the product information of the machine tool cooler to be detected is recorded. The signal is transmitted to the controller, the controller controls the connecting mechanism to start, the first identification device 29 identifies the machine tool cooler to be detected, and the second identification device 33 identifies the connecting head 271.

[0069] At this time, the operation is detected. After the detection is completed, the signal display piece 9 and the screen display assembly 8 display the detection result. The detection qualified information lamp is green, the detection unqualified information lamp is red, and the second driving piece 26 drives the second bearing table 24 to move along the second guide piece 22 to disconnect the connecting head 271 from the matching connector. The automatic detection device starts to move, preparing for the detection of the next machine tool cooler to be detected.

[0070] Obviously, the above embodiment is only an example for clear illustration, and is not a limitation on the implementation. Based on the above description, other different forms of changes or variations can be made by those skilled in the art. Here, it is not necessary and impossible to enumerate all the implementations. The obvious changes or variations derived therefrom are still within the protection scope of the present application.

Claims

1. An automatic detection device for machine tool coolers, characterized in that, include: Testing agency (1), suitable for testing machine tool coolers; The connecting mechanism (2) includes a connecting body and a connecting drive, at least the connecting body is electrically connected to the detection mechanism (1), and the connecting body has a detection position connected to the machine tool cooler to be tested under the action of the connecting drive, and a standby position away from the machine tool cooler to be tested; The connection body includes: The guide assembly includes a first guide (21) and a second guide (22), wherein the first guide (21) and the second guide (22) are arranged crosswise along the horizontal direction; The first support platform (23) is sandwiched between the first guide member (21) and the second guide member (22) along the height direction and carries the second guide member (22), and is adapted to move along the first guide member (21) under the action of the connecting drive member; The second support platform (24) is disposed on the second guide member (22) and is adapted to move along the second guide member (22) under the action of the connecting drive member; A connecting component is disposed on the second support platform (24) and is communicatively connected to the detection mechanism (1); The connection component includes: Several connecting rods (27) are communicatively connected to the detection mechanism (1), and a connector (271) is provided at the end of the rod facing the machine tool cooler to be tested; A plurality of receiving slots (241) are arranged along the second support platform (24) and in the same direction as the second guide (22), suitable for accommodating the connecting rod (27) and slidingly connected to the connecting rod (27); The limiting pressure plate (28) is detachably connected to the second support platform (24) and has a plurality of limiting grooves (281) on it, corresponding to the receiving groove (241), which are suitable for limiting the movement of the connecting rod (27) on the receiving groove (241).

2. The automatic detection device for machine tool coolers according to claim 1, characterized in that, The connector (271) is provided with an elastic buffer structure.

3. The automatic detection device for machine tool coolers according to claim 1, characterized in that, The second carrier platform (24) is also provided with a first identification device (29), which is communicatively connected to the connecting drive component.

4. The automatic detection device for machine tool coolers according to claim 1, characterized in that, The connection drive includes: The first driving member (25) is disposed at one end of the first guide member (21) and connected to the first support platform (23), and is adapted to drive the first support platform (23) to move along the first guide member (21); The second driving member (26) is disposed on the second support platform (24) and placed at one end of the second guide member (22), and is adapted to drive the second support platform (24) to move along the second guide member (22).

5. The automatic detection device for machine tool coolers according to any one of claims 1-4, characterized in that, It also includes a drive mechanism (3), which is communicatively connected to the detection mechanism (1) and is adapted to drive the detection mechanism (1) to move.

6. The automatic detection device for machine tool coolers according to claim 5, characterized in that, The drive mechanism (3) includes: Universal casters (31) are provided at least on the underside of the detection mechanism (1); The third drive unit (32) is mounted on the swivel caster (31); The second identification device (33) is communicatively connected to the third driving member (32) and is suitable for detecting and identifying the movement path.

7. The automatic detection device for machine tool coolers according to claim 5, characterized in that, Also includes: The scanning and detection device (4) is set towards the cooling machine of the machine tool to be tested and is connected in communication with the detection mechanism (1).

8. The automatic detection device for machine tool coolers according to claim 7, characterized in that, Also includes: The first housing (5) contains the detection mechanism (1); The second housing (6) is disposed adjacent to the first housing (5), and the connecting mechanism (2) is disposed on its upper side; The third housing (7) is disposed on the upper side of the first housing (5), and its vertical height is greater than that of the second housing (6). The scanning detection device (4) is disposed on the side of the third housing facing the second housing (6). The drive mechanism (3) is provided on the lower side of the first housing (5) and the second housing (6).

9. The automatic detection device for machine tool coolers according to claim 8, characterized in that, A display component (8) is fitted onto the third housing (7), and the display component (8) is communicatively connected to the detection mechanism (1).

10. The automatic detection device for machine tool coolers according to claim 9, characterized in that, The third housing (7) is also provided with several signal display components (9).

11. The automatic detection device for machine tool coolers according to claim 10, characterized in that, Also includes: The controller is communicatively connected to the detection mechanism (1), the connecting drive, the first identification device (29), the third drive (32), the second identification device (33), the scanning detection device (4), the screen display assembly (8), and the signal display device (9).

Citation Information

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