Threaded go-no go gauge detection machine
By designing a thread gauges detection machine, the automated assembly line production of thread detection is realized, the problem of low manual inspection efficiency is solved, and the consistency of detection efficiency and product quality is improved.
Patent Information
- Application Number
- CN202422309032.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-23
- Publication Date
- 2025-08-22
- Estimated Expiration
- 2034-09-23
AI Technical Summary
In the prior art, thread detection efficiency is low, manual detection efficiency is low, and arbitrary, which affects product quality.
A threaded gauges detection machine is designed, including feeding components, material transfer components, cleaning components, gauges and material collection components. The threaded gauges are detected through an automated assembly line, and the driving mechanism is used to drive the gauges and the gauges and the gauges are detected, and qualified and unqualified materials are collected through the material collection components.
It realizes the automation of thread detection, improves detection efficiency, avoids the arbitrary nature of manual inspection, and ensures the consistency of product quality.
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Figure CN223258772U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of thread detection equipment, in particular to a thread go / no-go gauge detection machine. Background Art
[0002] Thread go / no-go gauges are commonly used to verify the correct thread dimensions. Thread dimensions consist of thread diameter and pitch. Knowing the intended thread specification is crucial when selecting a go / no-go gauge. Threads are increasingly used in various components, and these threads are often inspected manually after production. However, due to the large volume of inspections and low efficiency, manual inspections are limited to spot checks, which is highly haphazard and wastes time. Furthermore, different workers exhibit varying levels of inspection intensity, impacting production quality. Summary of the Invention
[0003] According to an embodiment of the present utility model, a thread go / no-go gauge detection machine is provided, comprising: a feeding assembly, a material moving assembly, a cleaning assembly, a go / no-go gauge assembly and a material receiving assembly;
[0004] The loading component is used to transport the material to the material transfer component;
[0005] The material transfer component is used to move materials to the cleaning station, the through-gauge station, the stop-gauge station and the material receiving station;
[0006] The cleaning component is located at the cleaning station and is used to clean the materials;
[0007] The go / no-go gauge assembly includes: a go gauge detection head, a no-go gauge detection head and two drive mechanisms;
[0008] The two driving mechanisms are respectively connected to the go gauge detection head and the no-go gauge detection head. The go gauge detection head is located at the go gauge station and is used to detect whether the material has a go gauge. The no-go gauge detection head is located at the no-go gauge station and is used to detect whether the material has a no-go gauge.
[0009] The material receiving assembly includes: a material receiving mechanism, a through gauge waste mechanism and a stop gauge waste mechanism;
[0010] The material receiving mechanism is set at the material receiving station, which is used to collect qualified materials. The through-gauge waste mechanism is set corresponding to the through-gauge station, which is used to collect unqualified materials. The stop-gauge waste mechanism is set corresponding to the stop-gauge station, which is used to collect unqualified materials.
[0011] Furthermore, the driving mechanism includes: a driving guide rail, a driving slide, a driving motor, a detection baffle, a reset detection head and a standard detection head;
[0012] The driving slide is arranged on the driving guide rail, the driving motor is arranged on the driving slide, the output end of the driving motor is connected to the go gauge detection head or the stop gauge detection head, the detection baffle is arranged on the driving slide, the reset detection head and the standard detection head are both arranged on the driving guide rail. When the detection baffle is located above the reset detection head, the driving mechanism is in the reset state. When the detection baffle is located above the standard detection head, the detection result of the material meets the standard.
[0013] Furthermore, the driving mechanism further comprises: a reset cylinder and a buffer spring;
[0014] The reset cylinder is arranged on the driving guide rail, the output end of the reset cylinder is connected to the driving slide, and the buffer spring is arranged between the output end of the reset cylinder and the driving slide.
[0015] Furthermore, the feeding assembly includes: a feeding track, a baffle plate, a feeding top plate, a feeding cylinder, a feeding manipulator and a feeding moving mechanism;
[0016] The baffle plate is located at the end of the feeding track, the feeding top plate is located between the feeding track and the baffle plate, the lifting cylinder is used to drive the feeding top plate to lift the material upward, the feeding robot is used to grab the material, and the feeding moving mechanism is used to move the material to the cleaning station and blower mechanism of the material transfer component.
[0017] Furthermore, the hair dryer structure includes: a hair dryer box and a hair dryer,
[0018] The blowing box has a feeding port, which is suitable for a loading robot to place materials in the blowing box. The blower is used to blow gas into the blowing box, and the blower is used to clean the surface of the material.
[0019] Furthermore, the cleaning station includes: a cleaning thread head, a cleaning motor and a cleaning moving mechanism;
[0020] The cleaning thread head is used for cleaning the threads of the material, the cleaning motor is used for driving the cleaning thread head to rotate, and the cleaning moving mechanism is used for driving the cleaning thread head to insert into the threads of the material.
[0021] Furthermore, the material transfer assembly includes: a station clamping plate, a material transfer top plate, a material transfer cylinder and a material transfer linear mechanism;
[0022] The work station card plates corresponding to the cleaning station, through-gauge station, stop-gauge station and material receiving station are all provided with material card slots. The output end of the material transfer cylinder is connected to the material transfer top plate. The material transfer cylinder is arranged on the material transfer linear mechanism, and the material transfer top plate has a material card slot.
[0023] Furthermore, the inspection machine further comprises: a fixing mechanism, the fixing mechanism being arranged corresponding to the through gauge station, the stop gauge station and the cleaning station, the fixing mechanism comprising: a fixed pressing plate and a fixed cylinder;
[0024] The output end of the fixed cylinder is connected to a fixed pressing plate, which is used to fix the material.
[0025] Furthermore, both the through gauge waste mechanism and the stop gauge waste mechanism include: a waste manipulator, a waste moving mechanism, a waste top plate, a waste cylinder and a waste slide rail;
[0026] The waste manipulator is used to grab materials. The waste manipulator is installed on the waste moving mechanism. The waste moving mechanism is used to move materials to the waste top plate. The waste top plate is provided with a material slot. The waste cylinder is used to drive the waste top plate to move so that the material on the waste top plate is placed on the waste slide rail, and the waste slide rail transports the material to the collection position.
[0027] Furthermore, the material receiving mechanism includes: a material receiving slide rail, a counter and a material receiving conveyor belt;
[0028] The material transfer assembly transports the material to the receiving slide rail. A counter is provided on the receiving slide rail to record the amount of material passing through. The end of the receiving slide rail is connected to the receiving conveyor belt, which is used to transport the material to the collection position.
[0029] A thread go / no-go gauge testing machine according to an embodiment of the utility model.
[0030] The go gauge detection head of the utility model is driven by a driving mechanism to detect the go gauge of the material, and the stop gauge detection head is driven by a driving mechanism to detect the stop gauge of the material. After the go and stop gauge components are tested and qualified, the material transfer component transports the material to the material receiving station, and the material receiving component collects the material, thereby realizing automatic detection of the thread go and stop gauges, improving the detection efficiency and avoiding the production of inferior products.
[0031] It is to be understood that both the foregoing general description and the following detailed description are exemplary, and are intended to provide further explanation of the technology as claimed. BRIEF DESCRIPTION OF THE DRAWINGS
[0032] Figure 1 It is a three-dimensional diagram of a thread go / no-go gauge testing machine according to an embodiment of the present utility model;
[0033] Figure 2 1. A top view of a thread go / no-go gauge testing machine according to an embodiment of the present utility model;
[0034] Figure 3 This is a partial structural diagram of a thread go / no-go gauge testing machine according to an embodiment of the present utility model;
[0035] Figure 4 It is a partial top view of a thread go / no-go gauge testing machine according to an embodiment of the utility model;
[0036] Figure 5This is a structural diagram of a drive mechanism of a thread go / no-go gauge testing machine according to an embodiment of the present utility model;
[0037] Figure 6 This is a structural diagram of a feeding assembly of a thread go / no-go gauge inspection machine according to an embodiment of the present utility model;
[0038] Figure 7 This is a structural diagram of a thread go / no-go gauge waste mechanism of a thread go / no-go gauge inspection machine according to an embodiment of the present utility model;
[0039] Figure 8 A perspective view of a material transfer assembly of a thread go / no-go gauge inspection machine according to an embodiment of the present utility model;
[0040] Figure 9 It is a top view of a material transfer assembly of a thread go / no-go gauge inspection machine according to an embodiment of the present utility model;
[0041] Figure 10 This is a structural diagram of a fixing mechanism of a thread go / no-go gauge testing machine according to an embodiment of the present utility model;
[0042] Figure 11 The present invention is a structural diagram of a material receiving assembly of a thread go / no-go gauge inspection machine according to an embodiment of the present invention.
[0043] Figure 1 is the material loading assembly, 11 is the material loading track, 12 is the material blocking plate, 13 is the material loading top plate, 14 is the material lifting cylinder, 15 is the material loading manipulator, 16 is the material loading moving mechanism, 2 is the material moving assembly, 21 is the station card plate, 22 is the material moving top plate, 23 is the material moving cylinder, 24 is the material moving linear mechanism, 3 is the cleaning assembly, 31 is the cleaning thread head, 32 is the cleaning motor, 33 is the cleaning moving mechanism, 4 is the driving mechanism, 41 is the driving guide rail, 42 is the driving slide, 43 is the driving motor, 44 is the detection baffle, 45 is Reset detection head, 46 is the standard detection head, 47 is the reset cylinder, 48 is the buffer spring, 5 is the go / no-go gauge assembly, 51 is the go / no-go gauge detection head, 52 is the stop gauge detection head, 6 is the material receiving assembly, 61 is the material receiving slide rail, 62 is the counter, 63 is the material receiving conveyor belt, 7 is the blower mechanism, 8 is the go / no-go gauge waste mechanism, 9 is the stop gauge waste mechanism, 91 is the waste manipulator, 92 is the waste moving mechanism, 93 is the waste top plate, 94 is the waste cylinder, 95 is the waste slide rail, 10 is the fixing mechanism, 101 is the fixed pressure plate, and 102 is the fixed cylinder. DETAILED DESCRIPTION
[0044] The preferred embodiments of the present invention will be described in detail below with reference to the accompanying drawings to further illustrate the present invention.
[0045] First, combine Figures 1 to 11 A thread go / no-go gauge testing machine according to an embodiment of the utility model is described, which is used to test thread go / no-go gauges.
[0046] like Figures 1 to 3 As shown, a thread go / no-go gauge detection machine according to an embodiment of the present invention comprises: a feeding assembly 1, a material moving assembly 2, a cleaning assembly 3, a go / no-go gauge assembly 5 and a material receiving assembly 6;
[0047] The loading component 1 is used to transport the material to the material transfer component 2;
[0048] The material moving component 2 is used to move the material to the cleaning station, the through-gauge station, the stop-gauge station and the material receiving station;
[0049] The cleaning component 3 is provided at the cleaning station and is used to clean the material;
[0050] The go / no-go gauge assembly 5 comprises a go / no-go gauge detection head 51, a no-go gauge detection head 52 and two driving mechanisms 4;
[0051] The two driving mechanisms 4 are respectively connected to the go gauge detection head 51 and the no-go gauge detection head 52. The go gauge detection head 51 is provided at the go gauge station and is used to detect whether the material has a go gauge. The no-go gauge detection head 52 is provided at the no-go gauge station and is used to detect whether the material has a no-go gauge.
[0052] The material receiving assembly 6 includes: a material receiving mechanism, a through gauge waste mechanism 8 and a stop gauge waste mechanism 9;
[0053] The material receiving mechanism is set at the material receiving station, which is used to collect qualified materials. The through-gauge waste mechanism 8 is set corresponding to the through-gauge station, which is used to collect unqualified through-gauge materials. The stop-gauge waste mechanism 9 is set corresponding to the stop-gauge station, which is used to collect unqualified stop-gauge materials.
[0054] The material to be inspected is placed on the loading assembly 1, which conveys the material to the material moving assembly 2. The material moving assembly 2 drives the material to move to the cleaning station, the go gauge station, the stop gauge station, and the material receiving station in sequence. At the cleaning station, the cleaning assembly 3 cleans the threads of the material. At the go gauge station, the go gauge detection head 51 is driven by the driving mechanism 4 to detect the go gauge of the material. At the stop gauge station, the stop gauge detection head 52 is driven by the driving mechanism 4 to detect the stop gauge of the material. After the go and stop gauge assembly 5 passes the inspection, the material moving assembly 2 conveys the material to the material receiving station. The material receiving assembly 6 collects the material, realizing the automated inspection of the thread go and stop gauge, improving the inspection efficiency, and avoiding the production of inferior products.
[0055] like Figures 1 to 5 As shown, the driving mechanism 4 includes: a driving guide rail 41, a driving slide 42, a driving motor 43, a detection baffle 44, a reset detection head 45, a standard detection head 46, a reset cylinder 47 and a buffer spring 48;
[0056] The driving slide 42 is arranged on the driving guide rail 41, the driving motor 43 is arranged on the driving slide 42, the output end of the driving motor 43 is connected to the go gauge detection head 51 or the stop gauge detection head 52, the detection baffle 44 is arranged on the driving slide 42, the reset detection head 45 and the standard detection head 46 are both arranged on the driving guide rail 41, when the detection baffle 44 is located above the reset detection head 45, the driving mechanism 4 is in the reset state, when the detection baffle 44 is located above the standard detection head 46, the detection result of the material meets the standard.
[0057] The reset cylinder 47 is disposed on the driving guide rail 41 , the output end of the reset cylinder 47 is connected to the driving slide 42 , and the buffer spring 48 is disposed between the output end of the reset cylinder 47 and the driving slide 42 .
[0058] The reset cylinder 47 pushes the driving slide 42 to move on the driving guide rail 41, and the driving motor 43 drives the go gauge detection head 51 or the no-go gauge detection head 52 to rotate, so that the go gauge detection head 51 or the no-go gauge detection head 52 is inserted into the thread of the material. The buffer spring 48 provides a buffer force to the reset cylinder 47, slowing down the thrust of the reset cylinder 47 on the driving slide 42, and avoiding excessive thrust damaging the thread of the material. After the output end of the reset cylinder 47 is fully extended, if the go gauge detection head 51 or the no-go gauge detection head 52 can match the thread of the material, it will pull the driving slide 42 to continue moving, so that the detection baffle 44 moves to above the standard detection head 46. After detecting the baffle, the standard detection head 46 controls the driving motor 43 to reverse, and withdraws the go gauge detection head 51 or the no-go gauge detection head 52 from the thread of the material. The reset cylinder 47 pulls the driving slide 42 to move for reset, completing the go gauge or no-go gauge detection of the material thread.
[0059] like Figure 6 As shown, the feeding assembly 1 includes: a feeding track 11, a baffle plate 12, a feeding top plate 13, a feeding cylinder 14, a feeding manipulator 15 and a feeding moving mechanism 16;
[0060] The baffle plate 12 is arranged at the end of the feeding track 11, the feeding top plate 13 is arranged between the feeding track 11 and the baffle plate 12, the lifting cylinder 14 is used to drive the feeding top plate 13 to lift the material upward, the feeding robot 15 is used to grab the material, and the feeding moving mechanism 16 is used to move the material to the cleaning station of the material transfer component 2 and the blower mechanism 7.
[0061] The material to be inspected is placed on the feeding track 11. The material moves to the end on the feeding track 11 and is blocked by the feeding top plate 13, so that the material moves to the feeding top plate 13. The lifting cylinder 14 drives the feeding top plate 13 to lift the material. The feeding robot 15 will grab the lifted material. The feeding moving mechanism 16 will move the material to the material moving component 2. The feeding robot 15 will place the material on the material moving component 2.
[0062] In this embodiment, a detector is provided on the material blocking plate 12, which can detect the material lifted by the material loading top plate 13. When the detector detects the material, the material loading moving mechanism 16 moves the material loading manipulator 15 to grab the material. The material loading moving mechanism 16 uses a cross module.
[0063] like Figure 1~Figure 2 As shown, the hair dryer structure 7 includes: a hair dryer box and a hair dryer,
[0064] The blowing box has a feed port, which is suitable for allowing the loading robot 15 to place the material in the blowing box. The blower is used to blow gas into the blowing box, and the blower is used to clean the surface of the material.
[0065] The loading moving mechanism 16 moves the loading manipulator 15 so that the loading manipulator 15 passes through the material inlet and enters the blowing box. The blower blows air into the blowing box to clean the surface of the material on the loading manipulator 15. After cleaning, the loading moving mechanism 16 moves the loading manipulator 15 to move the material to the material transfer assembly 2. In this embodiment, clean water can be introduced into the blowing box to achieve the purpose of cleaning the material.
[0066] like Figures 1 to 5 As shown, the cleaning station includes: a cleaning thread head 31, a cleaning motor 32 and a cleaning moving mechanism 33;
[0067] The cleaning thread head 31 is used to clean the threads of the material, the cleaning motor 32 is used to drive the cleaning thread head 31 to rotate, and the cleaning moving mechanism 33 is used to drive the cleaning thread head 31 to insert into the threads of the material.
[0068] The cleaning mechanism 33 moves the cleaning thread head 31 and inserts it into the threads of the material. The cleaning motor 32 drives the cleaning thread head 31 to rotate within the threads of the material, thereby cleaning out impurities remaining in the threads of the material to prevent them from affecting the detection of the material thread go / no-go gauge. In this embodiment, the cleaning mechanism 33 is a linear module.
[0069] like Figures 8 to 10 As shown, the material moving assembly 2 includes: a station clamping plate 21, a material moving top plate 22, a material moving cylinder 23 and a material moving linear mechanism 24;
[0070] The station card plate 21 has material card slots corresponding to the cleaning station, the through-gauge station, the stop-gauge station and the material receiving station. The output end of the material transfer cylinder 23 is connected to the material transfer top plate 22. The material transfer cylinder 23 is arranged on the material transfer linear mechanism 24, and the material transfer top plate 22 has a material card slot.
[0071] The loading movement mechanism 16 moves the loading manipulator 15 to place the material into the material slot at the cleaning station of the station card plate 21. The material linear mechanism 24 moves the material cylinder 23 to move the material slot of the material top plate 22 below the material. The material cylinder 23 drives the material top plate 22 to move upward, placing the material into the material slot of the material top plate 22. The material linear mechanism 24 moves the material top plate 22 to move the material to the through-gauge station. The material cylinder 23 drives the material top plate 22 to descend, placing the material into the material slot at the through-gauge station of the station card plate 21. Repeating the above steps can move the material to the through-gauge station, the stop-gauge station, and the material receiving station in sequence.
[0072] like Figure 10 As shown, it also includes: a fixing mechanism 10, the fixing mechanism 10 is corresponding to the through gauge station, the stop gauge station and the cleaning station, and the fixing mechanism 10 includes: a fixed pressure plate 101 and a fixed cylinder 102;
[0073] The output end of the fixed cylinder 102 is connected to the fixed pressing plate 101, and the fixed pressing plate 101 is used to fix the material.
[0074] The fixed cylinder 102 drives the fixed pressing plate 101 to descend, and the fixed pressing plate 101 fixes the material in the material slot on the station clamping plate 21 to prevent the material from moving during detection or cleaning, resulting in failure to perform detection or cleaning normally.
[0075] like Figure 7 As shown, both the through gauge waste mechanism 8 and the stop gauge waste mechanism 9 include: a waste manipulator 91, a waste moving mechanism 92, a waste top plate 93, a waste cylinder 94 and a waste slide rail 95;
[0076] The waste manipulator 91 is used to grab materials. The waste manipulator 91 is arranged on the waste moving mechanism 92. The waste moving mechanism 92 is used to move materials to the waste top plate 93. The waste top plate 93 has a material slot. The waste cylinder 94 is used to drive the waste top plate 93 to move, so that the material on the waste top plate 93 is placed on the waste slide rail 95, and the waste slide rail 95 transports the material to the collection position.
[0077] The waste moving mechanism 92 moves the waste manipulator 91, and the waste manipulator 91 grabs the unqualified materials on the work station card plate 21. The waste moving mechanism 92 moves the materials to the material slot of the waste top plate 93. The waste cylinder 94 drives the waste top plate 93 to descend, so that the materials fall on the waste slide rail 95. The materials are moved to the collection position through the waste slide rail 95 to collect the unqualified materials.
[0078] like Figure 11 As shown, the material receiving mechanism includes: a material receiving slide rail 61, a counter 62 and a material receiving conveyor belt 63;
[0079] The material transfer assembly 2 transports the material to the receiving slide 61. The counter 62 is provided on the receiving slide 61 to record the amount of material passing through. The end of the receiving slide 61 is connected to the receiving conveyor belt 63, which is used to transport the material to the collection position.
[0080] The material transfer assembly 2 moves the qualified materials to the receiving slide 61, and the materials slide on the receiving slide 61 to the receiving conveyor belt 63. The counter 62 counts the materials passing through the receiving slide 61, and the receiving conveyor belt 63 transports the materials to the collection position to collect the qualified materials.
[0081] Above, refer to Figures 1 to 11 A thread go / no-go gauge detection machine according to an embodiment of the utility model is described. The go gauge detection head 51 of the utility model is driven by the driving mechanism 4 to detect the go gauge of the material, and the no-go gauge detection head 52 is driven by the driving mechanism 4 to detect the no-go gauge of the material. After the go / no-go gauge assembly 5 passes the inspection, the material moving assembly 2 transports the material to the material receiving station, and the material receiving assembly 6 collects the material, thereby realizing automatic inspection of the thread go / no-go gauge, improving the low inspection efficiency, and avoiding the production of inferior products.
[0082] It should be noted that, in this specification, the terms "comprises," "includes," or any other variations thereof are intended to encompass non-exclusive inclusion, such that a process, method, article, or apparatus comprising a series of elements includes not only those elements but also other elements not explicitly listed, or elements inherent to such process, method, article, or apparatus. In the absence of further limitations, elements defined by the phrase "comprising..." do not exclude the presence of other identical elements in the process, method, article, or apparatus comprising the elements.
[0083] Although the present invention has been described in detail through the above preferred embodiments, it should be understood that the above description should not be considered as limiting the present invention. After reading the above description, various modifications and alternatives to the present invention will be readily apparent to those skilled in the art. Therefore, the scope of protection of the present invention shall be defined by the appended claims.
Claims
1. A thread go / no-go gauge testing machine, characterized in that: include: Feeding assembly, material transfer assembly, cleaning assembly, go / no-go gauge assembly and material receiving assembly; The loading assembly is used to transport the material to the material moving assembly; The material moving assembly is used to move materials to the cleaning station, the through-gauge station, the stop-gauge station and the material receiving station; The cleaning component is arranged at the cleaning station and is used to clean the material; The go / no-go gauge assembly comprises a go / no-go gauge detection head, a no-go gauge detection head and two driving mechanisms; The two driving mechanisms are respectively connected to a go gauge detection head and a stop gauge detection head, the go gauge detection head is provided at the go gauge station, and is used to detect whether the material has a go gauge, and the stop gauge detection head is provided at the stop gauge station, and is used to detect whether the material has a stop gauge; The material receiving assembly includes: a material receiving mechanism, a through gauge waste mechanism and a stop gauge waste mechanism; The material receiving mechanism is arranged at the material receiving station, and is used to collect qualified materials. The through gauge waste mechanism is arranged corresponding to the through gauge station, and is used to collect unqualified through gauge materials. The stop gauge waste mechanism is arranged corresponding to the stop gauge station, and is used to collect unqualified stop gauge materials.
2. A thread go / no-go gauge testing machine as claimed in claim 1, characterized in that: The driving mechanism includes: a driving guide rail, a driving slide, a driving motor, a detection baffle, a reset detection head and a standard detection head; The driving slide is arranged on the driving guide rail, the driving motor is arranged on the driving slide, the output end of the driving motor is connected to the go gauge detection head or the stop gauge detection head, the detection baffle is arranged on the driving slide, the reset detection head and the standard detection head are both arranged on the driving guide rail, when the detection baffle is located above the reset detection head, the driving mechanism is in the reset state, and when the detection baffle is located above the standard detection head, the detection result of the material meets the standard.
3. A thread go / no-go gauge testing machine as claimed in claim 2, characterized in that: The driving mechanism further comprises: a reset cylinder and a buffer spring; The reset cylinder is arranged on the driving guide rail, the output end of the reset cylinder is connected to the driving slide, and the buffer spring is arranged between the output end of the reset cylinder and the driving slide.
4. A thread go / no-go gauge testing machine as claimed in claim 1, characterized in that: The feeding assembly includes: a feeding track, a baffle plate, a feeding top plate, a feeding cylinder, a feeding manipulator and a feeding moving mechanism; The material baffle plate is arranged at the end of the feeding track, the feeding top plate is arranged between the feeding track and the material baffle plate, the material lifting cylinder is used to drive the feeding top plate to lift the material upward, the feeding robot is used to grab the material, and the feeding moving mechanism is used to move the material to the cleaning station and the blower mechanism of the material transfer assembly.
5. A thread go / no-go gauge testing machine as claimed in claim 4, characterized in that: The blower mechanism comprises a blower box and a blower. The blowing box has a feed port, which is suitable for a loading robot to place materials in the blowing box. The blower is used to blow gas into the blowing box, and the blower is used to clean the surface of the material.
6. A thread go / no-go gauge testing machine as claimed in claim 1, characterized in that: The cleaning station includes: a cleaning thread head, a cleaning motor and a cleaning moving mechanism; The cleaning thread head is used to clean the threads of the material, the cleaning motor is used to drive the cleaning thread head to rotate, and the cleaning moving mechanism is used to drive the cleaning thread head to insert into the threads of the material.
7. A thread go / no-go gauge testing machine as claimed in claim 1, characterized in that: The material transfer assembly includes: a station clamping plate, a material transfer top plate, a material transfer cylinder and a material transfer linear mechanism; The station card plate has material slots corresponding to the cleaning station, the through-gauge station, the stop-gauge station and the material receiving station. The output end of the material transfer cylinder is connected to the material transfer top plate. The material transfer cylinder is arranged on the material transfer linear mechanism, and the material transfer top plate has a material slot.
8. A thread go / no-go gauge testing machine as claimed in claim 1, characterized in that: Also includes: A fixing mechanism, the fixing mechanism is provided corresponding to the through gauge station, the stop gauge station and the cleaning station, and the fixing mechanism includes: a fixed pressure plate and a fixed cylinder; The output end of the fixed cylinder is connected to a fixed pressing plate, and the fixed pressing plate is used to fix the material.
9. A thread go / no-go gauge testing machine as claimed in claim 1, characterized in that: The said waste mechanism for the through gauge and the waste mechanism for the no-gauge include: a waste manipulator, a waste moving mechanism, a waste top plate, a waste cylinder and a waste slide rail; The waste manipulator is used to grab materials. The waste manipulator is arranged on a waste moving mechanism. The waste moving mechanism is used to move materials onto a waste top plate. The waste top plate has a material slot. The waste cylinder is used to drive the waste top plate to move so that the material on the waste top plate is placed on a waste slide rail. The waste slide rail transports the material to a collection position.
10. A thread go / no-go gauge testing machine as claimed in claim 1, characterized in that: The material receiving mechanism includes: a material receiving slide rail, a counter and a material receiving conveyor belt; The material transfer assembly transports the material to the material receiving slide rail. The counter is arranged on the material receiving slide rail to record the amount of material passing through. The end of the material receiving slide rail is connected to the material receiving conveyor belt, and the material receiving conveyor belt is used to transport the material to the collection position.