Atomization core heating wire terminal material distribution test equipment

By designing a turntable mechanism to achieve tail material removal, resistance testing, and separation of good products from atomizing cores, the problem of separating tail material removal and resistance testing in existing equipment is solved, thereby improving production efficiency and automation.

CN223518042UActive Publication Date: 2025-11-07KEY MATERIAL
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Patent Information

Application Number
CN202422916920.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-27
Publication Date
2025-11-07
Estimated Expiration
2034-11-27

AI Technical Summary

Technical Problem

The existing atomizer core processing equipment has a poor structural design, which leads to the separation of tail material removal and resistance testing, increasing production time and reducing the production efficiency of electronic atomization products.

Method used

A device for separating and testing the terminals of atomizing core heating wires was designed. The device uses a turntable mechanism to sequentially transfer the workpiece to each process, thereby achieving tail material removal, tail material collection, resistance testing, and automatic separation of good and defective products based on the test results, reducing production operation time.

Benefits of technology

It improves the production efficiency of atomized products, realizes automated loading and unloading of workpieces, meets user needs, has a wide range of applications, and is highly practical.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an atomization core heating wire terminal material distribution test device which comprises a machine body, a rotating disc mechanism, a first tailing shaking mechanism, a second tailing shaking mechanism, a tailing transferring mechanism, a test mechanism and a good product taking and placing mechanism. The turntable mechanism comprises a turntable and a rotating device, and the turntable is provided with jigs; the machine body is provided with a pick-and-place area, and the pick-and-place area, the first tailing shaking mechanism, the second tailing shaking mechanism, the tailing transferring mechanism, the testing mechanism and the good product pick-and-place mechanism are arranged in the anticlockwise direction; thus, by means of the design of all the mechanisms, the jigs with the workpieces are sequentially transferred to all the procedures through the rotating disc, tailing removal, tailing taking and resistance testing of the workpieces are achieved, good products are moved out and stored through the good product taking and placing mechanism according to the testing result, defective products are taken out of the taking and placing area, the production operation time of the workpieces is shortened, and the production efficiency is improved. And the production efficiency of atomized products is improved, the use requirements of users are met, practicability is high, and the application range is wide.
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Description

TECHNICAL FIELD

[0001] The utility model relates to atomizing core test field technology especially is a kind of atomizing core heating wire terminal material testing equipment. BACKGROUND

[0002] At present, the existing electronic atomization device includes power supply main body and atomizer, and the atomizer is the most important part in the electronic atomization device, which has a heating atomization function;Generally, the atomizer is generally referred to as an atomizing core, which is divided into ceramic core and cotton core, and the two kinds of atomizing cores have advantages, the ceramic core structure is stable, easy to install, and the cotton core can better restore the rich taste of cigarette.

[0003] The structure of the traditional cotton core is wound by a very thin heating wire or heating mesh and oil guiding cotton, and the heating wire or heating mesh is provided with a double pin in a strip shape, and when assembled with the oil cup assembly, the double pin of the atomizing core is usually provided through the lower sealing silica gel of the oil cup assembly, and then welded with the terminal.

[0004] In the production process of the existing atomizing core, the tail material on both sides of the atomizing core needs to be cut off, and then the atomizing core is sent into the resistance test procedure to test the resistance of the atomizing core and obtain the test result, and then according to the test result, it is judged whether the atomizing core is qualified or not, so as to send the atomizing core into the next procedure;However, the structure design of the existing atomizing core processing equipment is poor, the tail material cutting and resistance testing of the atomizing core are carried out separately, which increases the production operation time of the product, reduces the production efficiency of the electronic atomization product, has poor practicability and small application range.

[0005] Therefore, it is necessary to study a new technical scheme to solve the above problems. INVENTION CONTENTS

[0006] Therefore, the utility model provides a kind of atomizing core heating wire terminal material testing equipment, and the jig with workpiece is sequentially transferred to each procedure by the design of each mechanism using carousel, realizes the tail material removal, tail material taking, resistance testing of workpiece, and according to test result, good product is removed from storage using good product taking and placing mechanism, and poor product is taken from taking and placing area, reduces the production operation time of workpiece, improves the production efficiency of atomization product, has strong practicability and wide application range.

[0007] To achieve the above purpose, the utility model adopts the following technical scheme:

[0008] The utility model provides an atomizing core heating wire terminal distribution test equipment, including organism, the rotating disc mechanism for rotating and moving workpiece, the first tail shake mechanism for shaking off one side tail of workpiece, the second tail shake mechanism for shaking off the other side tail of workpiece, the tail removal mechanism for removing tail, the test mechanism for measuring the resistance of workpiece and the good product pick-and-place mechanism for picking up and moving workpiece, wherein:

[0009] The rotating disc mechanism includes a rotating disc and a rotating device for driving the rotating disc to rotate, and the rotating disc is provided with a jig for placing and positioning the workpiece; the body has a pick-and-place area, and the pick-and-place area, the first tail shake mechanism, the second tail shake mechanism, the tail removal mechanism, the test mechanism and the good product pick-and-place mechanism are arranged in a counterclockwise direction;

[0010] Further comprising a control mechanism, which is connected to the rotating device, the first tail shake mechanism, the second tail shake mechanism, the tail removal mechanism, the test mechanism and the good product pick-and-place mechanism respectively.

[0011] As a preferred scheme, the jig is provided with six jigs, and each jig is sequentially transferred to the pick-and-place area, the first tail shake mechanism, the second tail shake mechanism, the tail removal mechanism, the test mechanism and the good product pick-and-place mechanism under the control of the rotating device.

[0012] As a preferred scheme, the first tail shake mechanism includes a first seat body, a first swing arm, a first tail shake clamp, a first driving device and a second driving device, the first swing arm is rotatably arranged on the first seat body, the first tail shake clamp is movably arranged on the first swing arm towards the rotating disc, the first driving device is drivingly connected to the first tail shake clamp through a transmission assembly, the first tail shake clamp contacts one side of the workpiece under the control of the first driving device, and the second driving device is drivingly connected to the first swing arm to control the swing movement of the first swing arm on the first seat body, thereby linking the swing of the first tail shake clamp to shake off the tail of one side of the workpiece, and the first driving device and the second driving device are connected to the control mechanism.

[0013] As a preferred solution, the second tail material mechanism comprises a second base, a movable seat, a second swing arm, a second tail material clamp, a third driving device and a fourth driving device. The movable seat is movably arranged on the second base towards the direction of the turntable. The clamp is located between the movable seat and the second base. The second swing arm is rotatably arranged on the movable seat. The second tail material clamp is arranged on one side of the second swing arm in the direction of the clamp. The third driving device is drivingly connected to the movable seat to move the movable seat towards or away from the clamp, so as to contact the second tail material clamp with the other side of the workpiece. The fourth driving device is drivingly connected to the second swing arm to control the swing movement of the second swing arm on the movable seat, so as to link the swing of the second tail material clamp to shake off the tail material of the other side of the workpiece. The third driving device and the fourth driving device are connected to the control mechanism.

[0014] As a preferred solution, the tail material moving mechanism comprises a first grabbing piece, a waste material bin, a first lifting device and a fifth driving device. The first grabbing piece is located above the turntable and above the clamp. The first lifting device is drivingly connected to the first grabbing piece to move the first grabbing piece downwards to approach the clamp or upwards to move away from the clamp. The fifth driving device is drivingly connected to the first grabbing piece to control the reciprocating displacement of the first grabbing piece at the clamp and the waste material bin. The first lifting device and the fifth driving device are connected to the control mechanism.

[0015] As a preferred solution, the testing mechanism comprises a third base, a testing module, a second lifting device and a resistance tester. The testing module comprises an upper plate, a lower plate and a detection head. The lower plate is fixed to the third base. The upper plate is movably arranged on the third base above the lower plate. The detection head is arranged on the lower side of the upper plate and the upper side of the lower plate, respectively. The detection head of the upper plate and the detection head of the lower plate are connected to the resistance tester, respectively. The second lifting device is drivingly connected to the upper plate. The upper plate moves towards the lower plate under the control of the second lifting device, so that the detection head of the upper plate and the detection head of the lower plate are in contact with the test end of the workpiece. The second lifting device and the resistance tester are connected to the control mechanism.

[0016] As a preferred solution, the good product taking and placing mechanism comprises a second grabbing piece, a good product bin, a third lifting device and a sixth driving device. The second grabbing piece is located above the turntable and above the clamp. The third lifting device is drivingly connected to the second grabbing piece to move the second grabbing piece downwards to approach the clamp or upwards to move away from the clamp. The sixth driving device is drivingly connected to the second grabbing piece to control the reciprocating displacement of the second grabbing piece at the clamp and the good product bin.

[0017] As a preferred scheme, the rotating disc comprises an upper disc body and a lower disc body, the rotating device is connected with the lower disc body through a rotating shaft, the rotating shaft is a hollow structure, the lower end of the upper disc body is fixed on the machine body through a fixing piece, the upper disc body is in a stationary state when the lower disc body rotates, and the jig is arranged on the upper end edge of the lower disc body and located at the periphery of the upper disc body.

[0018] The upper disc body is provided with a first material pressing assembly for pressing and positioning a workpiece, the first material pressing assembly is provided with three and corresponds to a first tail material mechanism, a tail material transferring mechanism and a testing mechanism respectively, and the first material pressing assembly comprises a first material pressing plate and a fourth lifting device for controlling the lifting of the first material pressing plate.

[0019] As a preferred scheme, the second seat body is provided with a second material pressing assembly for pressing and positioning a workpiece, the second material pressing assembly is located between the second seat body and the movable seat and located above the jig, and the second material pressing assembly comprises a second material pressing plate and a fifth lifting device for controlling the lifting of the second material pressing plate.

[0020] Compared with the prior art, the utility model has obvious advantages and beneficial effects, specifically speaking, according to the above technical scheme, the jig loaded with a workpiece is sequentially rotated to each working procedure by the design of each mechanism, tail material removal, tail material taking, resistance testing are realized, and according to the test result, the good product is removed and stored by the good product taking and placing mechanism, and the poor product is taken out from the taking and placing area, so that the production operation time of the workpiece is reduced, the production efficiency of the atomization product is improved, the use demand of the user is met, the practicability is strong, and the application range is wide.

[0021] Secondly, six jigs are arranged, the mechanisms at each station simultaneously operate, the production operation time of the workpiece is further reduced, the production efficiency of the atomization product is improved, the usability is good, meanwhile, the recess and the stepped surface are arranged to realize the positioning of the workpiece and tail material on the jig, so that the operation of the first tail material mechanism and the second tail material mechanism is facilitated.

[0022] In addition, the first material pressing assembly is arranged, which is beneficial to the tail material shaking, tail material transferring and resistance testing of the workpiece of the first tail material mechanism, the tail material transferring mechanism and the testing mechanism, meanwhile, the second material pressing assembly is arranged, which is beneficial to the tail material shaking operation of the second tail material mechanism, and in the actual use process, the user can add a feeding mechanism for feeding the workpiece on the jig at the taking and placing area according to the use demand, so that the automatic feeding and discharging of the workpiece is realized.

[0023] In order to more clearly illustrate the structural features and effects of the utility model, the utility model will be described in detail below in combination with the drawings and specific embodiments. BRIEF DESCRIPTION OF DRAWINGS

[0024] Figure 1 is the perspective view of the embodiment of the utility model;

[0025] Figure 2 is the top view of the embodiment of the utility model;

[0026] Figure 3 is the structure schematic view of the first tail material shaking mechanism of the embodiment of the utility model;

[0027] Figure 4 is the structure schematic view of the second tail material shaking mechanism of the embodiment of the utility model;

[0028] Figure 5 is the structure schematic view of the tail material transfer mechanism of the embodiment of the utility model;

[0029] Figure 6 is the structure schematic view of the test mechanism of the embodiment of the utility model;

[0030] Figure 7 is the structure schematic view of the good product taking and placing mechanism of the embodiment of the utility model.

[0031] The figure mark explanation is as follows:

[0032] 10, machine body 11, taking and placing area

[0033] 12, first material pressing assembly 121, first material pressing plate

[0034] 122, fourth lifting device 13, second material pressing assembly

[0035] 131, second material pressing plate 132, fifth lifting device

[0036] 20, rotary table mechanism 21, rotary table

[0037] 211, upper disc body 212, lower disc body

[0038] 22, rotating device 23, jig

[0039] 231, groove 232, step surface

[0040] 30, first tail material shaking mechanism 31, first seat body

[0041] 32, first swinging arm 33, first tail material shaking clamp

[0042] 34, first driving device 35, second driving device

[0043] 40, second tail material shaking mechanism 41, second seat body

[0044] 42, movable seat 43, second swinging arm

[0045] 44. second tail material shaking device 45. third driving device

[0046] 46. fourth driving device 50. tail material moving mechanism

[0047] 51. first grabbing member 52. waste material bin

[0048] 53. first lifting device 54. fifth driving device

[0049] 60. testing mechanism 61. third seat body

[0050] 62. testing module 621. upper plate portion

[0051] 622. lower plate portion 623. detection head

[0052] 63. second lifting device 64. resistance tester

[0053] 70. good product taking and placing mechanism 71. second grabbing member

[0054] 72. good product bin 73. third lifting device

[0055] 74. sixth driving device 80. control mechanism DETAILED DESCRIPTION

[0056] Please refer to Figures 1 to 7 , which shows the specific structure of the embodiment of the present application.

[0057] The application discloses an atomizing core heating wire terminal distribution testing equipment, which comprises a machine body 10, a rotating disc mechanism 20 for rotating and moving workpieces, a first tail material shaking device 30 for shaking off tail material on one side of the workpieces, a second tail material shaking device 40 for shaking off tail material on the other side of the workpieces, a tail material moving mechanism 50 for moving out the tail material, a testing mechanism 60 for measuring the resistance of the workpieces and a good product taking and placing mechanism 70 for grabbing and moving the workpieces.

[0058] The rotating disc mechanism 20 comprises a rotating disc 21 and a rotating device 22 for driving the rotating disc to rotate, the rotating disc 21 is provided with a jig 23 for placing and positioning the workpieces; the machine body 10 has a taking and placing area 11, the taking and placing area 11, the first tail material shaking device 30, the second tail material shaking device 40, the tail material moving mechanism 50, the testing mechanism 60 and the good product taking and placing mechanism 70 are arranged in the counterclockwise direction.

[0059] The control mechanism 80 is connected to the rotating device 22, the first tail material shaking mechanism 30, the second tail material shaking mechanism 40, the tail material moving mechanism 50, the testing mechanism 60, and the good product taking and placing mechanism 70, respectively. Thus, by the design of the mechanisms, the workpiece-loaded jig is sequentially transferred to each process by the rotating disc, the tail material of the workpiece is removed, the tail material is taken, the resistance is tested, and the good product is moved out of storage according to the test result by the good product taking and placing mechanism, and the poor product is taken out of the taking and placing area, thereby reducing the production operation time of the workpiece, improving the production efficiency of the atomized product, meeting the use requirements of the user, having high practicality, and having wide application range.

[0060] In the embodiment, the jig 23 is provided with six jigs, and the rotating disc 21 sequentially transfers each jig 23 to the taking and placing area 11, the first tail material shaking mechanism 30, the second tail material shaking mechanism 40, the tail material moving mechanism 50, the testing mechanism 60, and the good product taking and placing mechanism 70 under the control of the rotating device 22. Specifically, the upper end of the jig 23 is provided with a groove 231 for positioning the workpiece and a stepped surface 232 for positioning the tail material. Thus, the provision of the six jigs enables the mechanisms at each work station to simultaneously perform the operation, further reduces the production operation time of the workpiece, improves the production efficiency of the atomized product, has good usability, and the provision of the groove and the stepped surface enables the workpiece and the tail material to be positioned on the jig, thereby facilitating the operation of the first tail material shaking mechanism and the second tail material shaking mechanism.

[0061] The first tail material shaking mechanism 30 includes a first seat body 31, a first swinging arm 32, a first tail material shaking clamp 33, a first driving device 34, and a second driving device 35. The first swinging arm 32 is rotatably arranged on the first seat body 31. The first tail material shaking clamp 33 is movably arranged on the first swinging arm 32 in the direction of the rotating disc. The first driving device 34 is drivingly connected to the first tail material shaking clamp 33 through a transmission assembly. The first tail material shaking clamp 33 contacts one side of the workpiece under the control of the first driving device 34. The second driving device 35 is drivingly connected to the first swinging arm 32 to control the swinging movement of the first swinging arm 32 on the first seat body 31, thereby driving the first tail material shaking clamp 33 to shake and shake off the tail material of one side of the workpiece. The first driving device 34 and the second driving device 35 are connected to the control mechanism 80.

[0062] The second tail material mechanism 40 comprises a second base body 41, a movable base 42, a second swing arm 43, a second tail material clamp 44, a third driving device 45 and a fourth driving device 46. The movable base 42 is movably arranged on the second base body 41 towards the rotating disc 21. The jig 23 is located between the movable base 42 and the second base body 41. The second swing arm 43 is rotatably arranged on the movable base 42. The second tail material clamp 44 is arranged on one side of the second swing arm 43 towards the jig 23. The third driving device 45 is drivingly connected to the movable base 42 to move the movable base 42 towards or away from the jig 23, so as to contact the second tail material clamp 44 with the other side of the workpiece. The fourth driving device 46 is drivingly connected to the second swing arm 43 to control the swing movement of the second swing arm 43 on the movable base 42, so as to swing the second tail material clamp 44 to shake off the tail material of the other side of the workpiece. The third driving device 45 and the fourth driving device 46 are connected to the control mechanism 80.

[0063] The tail material moving mechanism 50 comprises a first grabbing piece 51, a waste material bin 52, a first lifting device 53 and a fifth driving device 54. The first grabbing piece 51 is located above the rotating disc 21 and above the jig 23. The first lifting device 53 is drivingly connected to the first grabbing piece 51 to move the first grabbing piece 51 downwards to approach the jig 23 or upwards to move away from the jig 23. The fifth driving device 54 is drivingly connected to the first grabbing piece 51 to control the reciprocating displacement of the first grabbing piece 51 at the jig 23 and the waste material bin 52. The first lifting device 53 and the fifth driving device 54 are connected to the control mechanism 80.

[0064] The testing mechanism 60 comprises a third base body 61, a testing module 62, a second lifting device 63 and a resistance tester 64. The testing module 62 comprises an upper plate part 621, a lower plate part 622 and detection heads 623. The lower plate part 622 is fixed on the third base body 61. The upper plate part 621 is movably arranged on the third base body 61 above the lower plate part 622. The detection heads 623 are respectively arranged on the lower side of the upper plate part 621 and the upper side of the lower plate part 622. The detection heads 623 of the upper plate part 621 and the lower plate part 622 are respectively connected to the resistance tester 64. The second lifting device 63 is drivingly connected to the upper plate part 621. The upper plate part 621 moves towards the lower plate part 622 under the control of the second lifting device 63, so that the detection heads 623 of the upper plate part 621 and the lower plate part 622 are in contact with the testing end of the workpiece. The second lifting device 63 and the resistance tester 64 are connected to the control mechanism 80.

[0065] The good product taking and placing mechanism 70 comprises a second grabbing part 71, a good product bin 72, a third lifting device 73 and a sixth driving device 74. The second grabbing part 71 is located above the turntable 21 and above the jig 23. The third lifting device 73 is drivingly connected to the second grabbing part 71 to make the second grabbing part 71 move downward to approach the jig 23 or move upward to move away from the jig 23. The sixth driving device 74 is drivingly connected to the second grabbing part 71 to control the second grabbing part 71 to reciprocatingly move at the jig 23 and the good product bin 72. Preferably, the second grabbing part 71 is provided with a suction unit for suctioning the workpiece.

[0066] In addition, the turntable 21 comprises an upper disc body 211 and a lower disc body 212. The rotating device 22 is connected to the lower disc body 212 through a rotating shaft. The rotating shaft is a hollow structure. The lower end of the upper disc body 211 is fixed to the machine body 10 through a fixing part. When the lower disc body 212 rotates, the upper disc body 211 is in a stationary state. The jig 23 is arranged at the upper end edge of the lower disc body 212 and located at the periphery of the upper disc body 211.

[0067] The upper disc body 211 is provided with a first pressing assembly 12 for pressing and positioning the workpiece. The first pressing assembly 12 is provided with three and corresponds to the first tail material mechanism 30, the tail material transferring mechanism 50 and the testing mechanism 60 respectively. The first pressing assembly 12 comprises a first pressing plate 121 and a fourth lifting device 122 for controlling the lifting of the first pressing plate. The first pressing plate 121 is located above the jig 23. The second grabbing part 71, the third lifting device 73, the sixth driving device 74, the first grabbing part 51, the first lifting device 53 and the fifth driving device 54 are all arranged on the upper disc body 211.

[0068] In addition, the second seat body 41 is provided with a second pressing assembly 13 for pressing and positioning the workpiece. The second pressing assembly 13 is located between the second seat body 41 and the movable seat 42 and above the jig 23. The second pressing assembly 13 comprises a second pressing plate 131 and a fifth lifting device 132 for controlling the lifting of the second pressing plate. In this way, the arrangement of the first pressing assembly is beneficial to the workpiece of the first tail material mechanism, the tail material transferring mechanism and the testing mechanism to perform the tail material shaking, tail material transferring and resistance testing operations. At the same time, the arrangement of the second pressing assembly is beneficial to the tail material shaking operation of the second tail material mechanism. In actual use, the user can add a feeding mechanism for taking and placing the workpiece on the jig at the taking and placing area according to the use demand, so as to realize the automatic feeding and discharging of the workpiece.

[0069] In operation, the workpiece is placed on the jig by manual or feeding mechanism, the jig with the workpiece is rotated to the first tail material removing mechanism by the rotation device, the first tail material removing mechanism holds the workpiece on the jig and exposes the tail material, the first tail material removing clamp contacts one side of the workpiece, the first swing arm swings on the first seat body to swing the first tail material removing clamp to break the tail material, and the first tail material removing mechanism releases the workpiece;

[0070] The jig with the workpiece is rotated to the second tail material removing mechanism by the rotation device, the second tail material removing mechanism holds the workpiece on the jig, the third driving device drives the movable seat to contact the second tail material removing clamp with the other side of the workpiece, the fourth driving device drives the second swing arm to swing on the movable seat to swing the second tail material removing clamp to break the tail material, and the second tail material removing mechanism releases the workpiece;

[0071] The workpiece with the tail material removed is rotated to the tail material removing mechanism by the rotation device, the first tail material removing mechanism holds the workpiece on the jig, the first lifting device controls the first grabbing member to move down to the tail material of the jig and grab the tail material, the first lifting device controls the first grabbing member to move up and away from the jig, the fifth driving device drives the first grabbing member to move to the waste bin and put the tail material on the first grabbing member into the waste bin, and the first tail material removing mechanism releases the workpiece;

[0072] The workpiece is rotated to the testing mechanism by the rotation device, the first tail material removing mechanism holds the workpiece on the jig, the upper plate moves toward the lower plate by the second lifting device to make the detection head of the upper plate and the detection head of the lower plate contact the testing end of the workpiece and perform resistance test, the resistance tester feeds back the test result to the control mechanism after the test, the upper plate moves up by the second lifting device, and the first tail material removing mechanism releases the workpiece;

[0073] The workpiece after the test is moved to the good product taking and placing mechanism by the rotation device, if the test result is qualified, the third lifting device controls the second grabbing member to move down to the jig and grab the workpiece, the third lifting device controls the second grabbing member to move up, the sixth driving device controls the second grabbing member to move to the good product bin to put the workpiece on the second grabbing member into the good product bin, and the second grabbing member is released, if the test result is unqualified, the good product taking and placing mechanism will not operate and is rotated to the taking and placing area by the rotation device, then, the defective product is taken out of the jig, the workpiece to be tested is placed on the jig, and the next workpiece is operated on the mechanism.

[0074] The utility model discloses a design emphasis lies in, it is mainly through the design of each mechanism, utilize carousel to install the jig of work piece and turn to each working procedure in proper order, realized the work piece's except tail material, take tail material, resistance test, and according to the good product of test result with good product take -place mechanism and remove the storage, the defective product is taken out from the take -place area, reduce work piece's production operation time, improved atomization product's production efficiency, satisfy the use demand of user, the practicality is strong, and the scope of application is wide.

[0075] Secondly, the setting of six jigs, the mechanism at each station simultaneously performs operation, further reduces the production operation time of work pieces, improves the production efficiency of atomization products, and has good usability. Meanwhile, the setting of the groove and the stepped surface realizes the positioning of the work piece and the tail material on the jig, so as to facilitate the operation of the first tail material shaking mechanism and the second tail material shaking mechanism.

[0076] In addition, the setting of the first pressing assembly is beneficial to the tail material shaking, tail material transfer and resistance test of the work piece of the first tail material shaking mechanism, the tail material transfer mechanism and the test mechanism. Meanwhile, the setting of the second pressing assembly is beneficial to the tail material shaking operation of the second tail material shaking mechanism. In actual use, the user can add a feeding mechanism for feeding the work piece to the jig according to the use requirement, so as to realize the automatic feeding and unloading of the work piece.

[0077] The above is only a preferred embodiment of the utility model, and does not limit the technical scope of the utility model. Therefore, any slight modification, equivalent change and modification according to the technical essence of the utility model are still within the scope of the technical scheme of the utility model.

Claims

1. An atomizing core heating wire terminal distribution test device, characterized in that: The machine body comprises an organic body, a rotating disc mechanism for rotating and transferring workpieces, a first tail shaking mechanism for shaking off one side tail of the workpiece, a second tail shaking mechanism for shaking off the other side tail of the workpiece, a tail transferring mechanism for moving out the tail, a testing mechanism for measuring the resistance of the workpiece, and a good product taking and placing mechanism for grabbing and transferring the workpiece. The rotating disc mechanism comprises a rotating disc and a rotating device for driving the rotating disc to rotate, and the rotating disc is provided with jigs for placing and positioning workpieces. The control mechanism is connected to the rotating device, the first tail shaking mechanism, the second tail shaking mechanism, the tail transferring mechanism, the testing mechanism, and the good product taking and placing mechanism.

2. The atomizer heating wire terminal distribution test equipment according to claim 1, characterized in that: The jigs are provided in six, and each jig is sequentially transferred to the taking and placing area, the first tail shaking mechanism, the second tail shaking mechanism, the tail transferring mechanism, the testing mechanism, and the good product taking and placing mechanism under the control of the rotating device.

3. The atomizer heating wire terminal distribution test equipment according to claim 1, characterized in that: The first tail shaking mechanism comprises a first seat body, a first swinging arm, a first tail shaking clamp, a first driving device, and a second driving device.

4. The atomizer heating wire terminal distribution test equipment according to claim 1, characterized in that: The second tail shaking mechanism comprises a second seat body, a movable seat, a second swinging arm, a second tail shaking clamp, a third driving device, and a fourth driving device. The movable seat is movably arranged on the second seat body towards the rotating disc, and the jigs are located between the movable seat and the second seat body. The second swinging arm is rotatably arranged on the movable seat, and the second tail shaking clamp is arranged on one side of the second swinging arm towards the jigs. The third driving device is drivingly connected to the movable seat to make the movable seat approach or move away from the jigs, so as to contact the second tail shaking clamp with the other side of the workpiece. The fourth driving device is drivingly connected to the second swinging arm to control the second swinging arm to swing on the movable seat, thereby linking the second tail shaking clamp to swing to shake off the tail of the other side of the workpiece. The third driving device and the fourth driving device are connected to the control mechanism.

5. The atomizer heating wire terminal distribution test equipment according to claim 1, characterized in that: The tail material moving mechanism comprises a first grabbing member, a waste material bin, a first lifting device and a fifth driving device. The first grabbing member is located above the rotary disc and above the jig. The first lifting device is drivingly connected to the first grabbing member to make the first grabbing member move downward to approach the jig or move upward to move away from the jig. The fifth driving device is drivingly connected to the first grabbing member to control the first grabbing member to reciprocally move at the jig and the waste material bin. The first lifting device and the fifth driving device are connected to the control mechanism.

6. The atomizer heating wire terminal distribution test equipment according to claim 1, characterized in that: The testing mechanism comprises a third seat body, a testing module, a second lifting device and a resistance tester. The testing module comprises an upper plate part, a lower plate part and detection heads. The lower plate part is fixed to the third seat body. The upper plate part is movably arranged on the third seat body above the lower plate part. The detection heads are arranged on the lower side of the upper plate part and the upper side of the lower plate part respectively. The detection heads of the upper plate part and the lower plate part are connected to the resistance tester respectively. The second lifting device is drivingly connected to the upper plate part. The upper plate part moves toward the lower plate part under the control of the second lifting device to make the detection heads of the upper plate part and the lower plate part press and contact the testing end of the workpiece. The second lifting device and the resistance tester are connected to the control mechanism.

7. The atomizer heating wire terminal distribution test equipment according to claim 1, characterized in that: The good product taking and placing mechanism comprises a second grabbing member, a good product bin, a third lifting device and a sixth driving device. The second grabbing member is located above the rotary disc and above the jig. The third lifting device is drivingly connected to the second grabbing member to make the second grabbing member move downward to approach the jig or move upward to move away from the jig. The sixth driving device is drivingly connected to the second grabbing member to control the second grabbing member to reciprocally move at the jig and the good product bin.

8. The atomizer heating wire terminal distribution test equipment according to claim 1, characterized in that: The rotary disc comprises an upper disc body and a lower disc body. The rotating device is connected to the lower disc body through a rotating shaft. The rotating shaft is a hollow structure. The lower end of the upper disc body is fixed to the machine body through a fixing member. When the lower disc body rotates, the upper disc body is in a stationary state. The jig is arranged on the upper end edge of the lower disc body and is located at the periphery of the upper disc body. A first pressing assembly for pressing and positioning the workpiece is arranged on the upper disc body. The first pressing assembly is provided with three first pressing plates corresponding to the first tail material moving mechanism, the tail material moving mechanism and the testing mechanism respectively. The first pressing assembly comprises a first pressing plate and a fourth lifting device for controlling the lifting of the first pressing plate. The first pressing plate is located above the jig.

9. The atomizer heating wire terminal distribution test equipment according to claim 4, characterized in that: A second pressing assembly for pressing and positioning the workpiece is arranged on the second seat body. The second pressing assembly is located between the second seat body and the movable seat and is located above the jig. The second pressing assembly comprises a second pressing plate and a fifth lifting device for controlling the lifting of the second pressing plate.