CN218412818U - DC contactor semi-manufactured goods test equipment - Google Patents

DC contactor semi-manufactured goods test equipment Download PDF

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Publication number
CN218412818U
CN218412818U CN202221864424.9U CN202221864424U CN218412818U CN 218412818 U CN218412818 U CN 218412818U CN 202221864424 U CN202221864424 U CN 202221864424U CN 218412818 U CN218412818 U CN 218412818U
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semi
contactor
direct current
finished product
current contactor
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CN202221864424.9U
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魏礼建
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Suzhou Zhengneng Automation Equipment Co ltd
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Suzhou Zhengneng Automation Equipment Co ltd
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Abstract

The utility model discloses a DC contactor semi-finished product testing device, which relates to the technical field of DC contactor detection and comprises a box body and a sealing frame arranged on the surface of the box body; the surface of the box body is provided with a rotary tray, and the rotary tray is positioned inside the sealing frame; the rotary tray is driven by a motor arranged in the box body; the surface of the rotary tray is provided with a plurality of mounting mechanisms, and the surface of the box body is provided with four detection mechanisms; the mounting mechanism comprises a mounting seat, and two guide columns are symmetrically and fixedly connected to the surface of the mounting seat; the utility model discloses a change to the semi-manufactured goods detection mode of direct current contactor, improved to semi-manufactured goods detection efficiency of direct current contactor and the semi-manufactured goods production manufacturing efficiency of direct current contactor to semi-manufactured goods detection precision of direct current contactor is higher, reduces direct current contactor's defective percentage.

Description

DC contactor semi-manufactured goods test equipment
Technical Field
The utility model relates to a direct current contactor detects technical field, specifically is a direct current contactor semi-manufactured goods test equipment.
Background
The dc contactor is a contactor whose iron core is controlled by dc, and its load may be dc or ac. The core of the dc contactor is not the same as the ac contactor in that it has no eddy current, and thus is generally formed in a circular shape using mild steel or industrial pure iron. Because the attraction coil of the DC contactor is electrified with DC, the DC contactor has no impact starting current and does not generate the phenomenon of violent impact of an iron core, thereby having long service life and being suitable for occasions of frequent starting and stopping. The alternating current contactor and the direct current contactor can be selected to look up the catalogue of the electric appliance product according to the working voltage and the current of a line.
At present, in the production and manufacturing process of the direct current contactor, whether a semi-finished product of the direct current contactor is good or bad needs to be detected, when the semi-finished product of the direct current contactor has no problem, the semi-finished product of the direct current contactor is integrally assembled and finally flows into the market, when the semi-finished product of the direct current contactor has the problem, the semi-finished product of the direct current contactor needs to be maintained, but the semi-finished product of the direct current contactor is detected mainly manually at present, the manual detection efficiency is low, the production and manufacturing efficiency of the direct current contactor is influenced, the manual detection precision is not high, and the defective rate of the direct current contactor is high.
Therefore, the direct current contactor semi-finished product testing device is provided.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a DC contactor semi-manufactured goods test equipment, in order to solve present in the DC contactor production manufacturing process that proposes among the above-mentioned background art, need detect DC contactor semi-manufactured goods good or bad, when DC contactor semi-manufactured goods do not have the problem, carry out the whole dress assembly to it again, finally flow in market, when DC contactor semi-manufactured goods detects out the problem, then need maintain it, but detect the main manual work of dependence and go on DC contactor semi-manufactured goods at present, artificial detection efficiency is lower, thereby influence DC contactor's production manufacturing efficiency, and the manual work detects the precision not high, make the higher problem of DC contactor's wastrel rate.
In order to achieve the above object, the utility model provides a following technical scheme:
a DC contactor semi-finished product testing device comprises:
the box body and the sealing frame are arranged on the surface of the box body;
the surface of the box body is provided with a rotary tray, and the rotary tray is positioned in the sealing frame;
the rotary tray is driven by a motor arranged in the box body;
the surface of the rotary tray is provided with a plurality of installation mechanisms, and the surface of the box body is provided with four detection mechanisms.
As a further scheme of the utility model, installation mechanism includes the mount pad, two guide posts of mount pad surface symmetry fixedly connected with, two the movable sleeve is equipped with the connecting plate on the guide post outer wall, connecting plate rear end surface mounting has the connector, connector surface mounting connects the hole, the contact head is installed to the connector bottom.
As the utility model discloses a further scheme, DC contactor semi-manufactured goods have been placed on the mount pad surface, the interface and the contact on DC contactor semi-manufactured goods surface.
As a further scheme of the utility model, mount pad fixed surface is connected with the connecting rod, the connecting rod activity runs through the connecting plate, be provided with first compression spring on the connecting rod outer wall, first compression spring one end and mount pad fixed connection.
As a further scheme of the utility model, detection mechanism includes the mounting panel, the hydro-cylinder is installed to mounting panel one end, the piston end fixedly connected with detector of hydro-cylinder, the telescopic link is installed to the detector bottom, contact block is installed to the telescopic link bottom, contact block and detector electric connection.
As a further scheme of the utility model, be provided with second compression spring on the telescopic link outer wall, second compression spring one end and detector fixed connection, the second compression spring other end and contact block fixed connection.
As a further proposal of the utility model, the surface of the box body is provided with a code scanner.
Compared with the prior art, the beneficial effects of the utility model are that:
the utility model discloses a place the mount pad surface with direct current contactor semi-manufactured goods, and start the hydro-cylinder, the hydro-cylinder drives detector and contact block and carries out the descending motion, contact block can with the contact hole contact on connector surface and exert pressure to the connector, the connector also can carry out the descending motion this moment, the contact head of final connector bottom can with the interface contact on direct current contactor semi-manufactured goods surface, at this moment, be the connected state between detector and the direct current contactor semi-manufactured goods, so the accessible detector detects the semi-manufactured good or bad of direct current contactor, current compares, the utility model discloses a change the semi-manufactured detection mode to direct current contactor, improved semi-manufactured detection efficiency to direct current contactor, and the semi-manufactured production manufacturing efficiency of direct current contactor to direct current contactor semi-manufactured goods, and it is higher to semi-manufactured detection precision of direct current contactor, reduce direct current contactor's incomplete percentage.
Drawings
Fig. 1 is a schematic perspective view of the present invention;
FIG. 2 is a schematic view of a part of the structure of the present invention;
FIG. 3 is an enlarged schematic view of the structure at A in FIG. 2 according to the present invention;
fig. 4 is a schematic view of the structure of the mounting mechanism of the present invention.
In the figure: 101. a box body; 102. a sealing frame; 103. rotating the tray; 200. an installation mechanism; 201. a mounting seat; 202. a guide post; 203. a connecting plate; 204. a connector; 205. connecting holes; 206. semi-finished products of the direct current contactor; 207. a connecting rod; 208. a first compression spring; 300. a detection mechanism; 301. mounting a plate; 302. an oil cylinder; 303. a detector; 304. a telescopic rod; 305. a contact block; 306. a second compression spring; 307. and a code scanner.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative efforts all belong to the protection scope of the present invention.
Referring to fig. 1-4, the present invention provides a technical solution: a kind of direct current contactor semifinished material 206 test equipment, including the container body 101, and install the sealed frame 102 on the surface of container body 101; a rotary tray 103 is arranged on the surface of the box body 101, and the rotary tray 103 is positioned inside the sealing frame 102; the rotary tray 103 is driven by a motor installed inside the case 101; the surface of the rotary tray 103 is provided with a plurality of installation mechanisms 200, the surface of the box 101 is provided with four detection mechanisms 300, each installation mechanism 200 comprises an installation seat 201, the surface of the installation seat 201 is symmetrically and fixedly connected with two guide columns 202, the outer walls of the two guide columns 202 are movably sleeved with a connecting plate 203, the rear end of each connecting plate 203 is provided with a connector 204, the surface of each connector 204 is provided with a connecting hole 205, the bottom of each connector 204 is provided with a contact head, the surface of the installation seat 201 is provided with a semi-finished direct current contactor 206, the surface of the semi-finished direct current contactor 206 is in contact with the contact head, the surface of the installation seat 201 is fixedly connected with a connecting rod 207, the connecting rod 207 movably penetrates through the connecting plate 203, the outer wall of the connecting rod 207 is provided with a first compression spring 208, one end of the first compression spring 208 is fixedly connected with the installation seat 201, each detection mechanism 300 comprises an installation plate 301, one end of which is provided with an oil cylinder 302, the piston end of the oil cylinder 302 is fixedly connected with a detector 303, the bottom of the detector 303 is provided with a telescopic rod 304, the bottom of the telescopic rod 304 is provided with a contact block 305, the contact block 305 is electrically connected with the detector 303, the contact block 305, the outer wall of the telescopic rod 304, the telescopic rod 304 is electrically connected with the detector 303, one end of the telescopic rod 304, one end of the telescopic rod 306, one compression spring 306, the other end of the second compression spring is electrically connected with the detector 303, the fixed connection of the contact block 307, and the detector 303, the box 101, and a bar surface of the detector 307, and a bar 101, and a bar surface of the box 101.
Specifically, firstly, a user places the semi-finished product 206 of the dc contactor on the surface of the mounting base 201, and starts the motor and the oil cylinder 302 at the same time, on one hand, the motor drives the rotating tray 103 to rotate, and the semi-finished product 206 of the dc contactor rotates along with the rotating tray, on the other hand, the oil cylinder 302 drives the detector 303 and the contact block 305 to perform descending motion, the contact block 305 contacts with the connection hole 205 on the surface of the connector 204 and applies pressure to the connector 204, at this time, the connector 204 also performs descending motion, and finally, the contact head at the bottom of the connector 204 contacts with the interface on the surface of the semi-finished product 206 of the dc contactor, it needs to be noted that when the contact block 305 contacts with the connection hole 205 on the surface of the connector 204, the second compression spring 306 and the telescopic rod 304 perform corresponding contraction motion, so as to avoid the damage to the connector 204 caused by the contact block 305, at this time, the detector 303 is in a communication state with the semi-finished product 206 of the dc contactor, so that the quality of the semi-finished product 206 of the dc contactor can be detected by the detector 303;
secondly, when the motor drives the semi-finished product 206 of the direct current contactor to rotate, the purpose of detecting a large number of semi-finished products 206 of the direct current contactor can be achieved, the detection efficiency is improved, when the quality of the semi-finished product 206 of the direct current contactor is good, a user can directly take down the semi-finished product 206 of the direct current contactor, the taking down step is specifically that the user can start the oil cylinder 302, the oil cylinder 302 drives the detector 303 and the contact block 305 to move upwards, the contact block 305 is not in contact with the connecting hole 205 on the surface of the connector 204, and after the connector 204 loses the limit, the first compression spring 208 can correspondingly extend to jack up the connector 204, so that the contact head at the bottom of the connector 204 is separated from the interface on the surface of the semi-finished product 206 of the direct current contactor, and then the semi-finished product 206 of the direct current contactor can be taken down;
finally, when the quality of the dc contactor semi-finished product 206 is bad, the user can directly take down the dc contactor semi-finished product 206, and the taking down step is specifically that the user can start the oil cylinder 302, at this time, the oil cylinder 302 drives the detector 303 and the contact block 305 to perform an ascending motion, the contact block 305 is not in contact with the connection hole 205 on the surface of the connector 204, because the connector 204 is out of limit, the first compression spring 208 performs a corresponding extending motion, and finally the connector 204 is jacked up, so that the contact head at the bottom of the connector 204 is separated from the interface on the surface of the dc contactor semi-finished product 206, and then the dc contactor semi-finished product 206 is taken down, it should be noted that at this time, the user needs to align the bad dc contactor semi-finished product 206 to the barcode scanner 307, and the barcode scanner 307 unifies the number of the bad dc contactor semi-finished product 206, which is convenient for enterprises to know the number of the bad dc contactor semi-finished product 206;
to sum up, current in comparison, the utility model discloses a change the detection mode to DC contactor semi-manufactured goods 206, improved the detection efficiency to DC contactor semi-manufactured goods 206 and the production manufacturing efficiency of DC contactor semi-manufactured goods 206 to the detection precision to DC contactor semi-manufactured goods 206 is higher, reduces DC contactor's defective percentage.
The working principle is as follows: for the utility model, when using, at first the user places dc contactor semi-manufactured goods 206 on the surface of mount pad 201, and start motor and hydro-cylinder 302 simultaneously, on the one hand the motor drives rotatory tray 103 and rotates, and dc contactor semi-manufactured goods 206 also can rotate along with it, on the other hand, hydro-cylinder 302 drives detector 303 and contact block 305 and carries out descending motion, contact block 305 can contact with the hole 205 on connector 204 surface and exert pressure to connector 204, connector 204 also can descend motion this moment, finally the contact head of connector 204 bottom can contact with the interface on dc contactor semi-manufactured goods 206 surface, it needs to be noted that, when contact block 305 contacts with hole 205 on connector 204 surface, second compression spring 306, telescopic link 304 can carry out corresponding contraction motion, the purpose is to avoid contact block 305 to cause connector 204 to damage, at this moment, be the connected state between detector 303 and the dc contactor semi-manufactured goods 206, so can detect the quality of dc contactor semi-manufactured goods 206 through detector 303;
secondly, when the motor drives the semi-finished product 206 of the direct current contactor to rotate, the purpose of detecting a large number of semi-finished products 206 of the direct current contactor can be achieved, the detection efficiency is improved, when the quality of the semi-finished product 206 of the direct current contactor is good, a user can directly take down the semi-finished product 206 of the direct current contactor at the moment, the step of taking down is specifically that the user can start the oil cylinder 302, the oil cylinder 302 drives the detector 303 and the contact block 305 to move upwards, the contact block 305 is not in contact with the connection hole 205 on the surface of the connector 204, and after the connector 204 loses limitation at the moment, the first compression spring 208 can perform corresponding extension movement and finally jacks up the connector 204, so that the contact head at the bottom of the connector 204 is separated from the interface on the surface of the semi-finished product 206 of the direct current contactor, and then the semi-finished product 206 of the direct current contactor can be taken down;
finally, when the quality of the dc contactor semi-finished product 206 is bad, the user can directly take down the dc contactor semi-finished product 206 at this time, the taking down step is specifically that the user can start the oil cylinder 302, at this time, the oil cylinder 302 drives the detector 303 and the contact block 305 to perform an ascending motion, the contact block 305 is not in contact with the connection hole 205 on the surface of the connector 204, because the connector 204 loses the limitation at this time, the first compression spring 208 performs a corresponding extending motion, and finally the connector 204 is jacked up, so that the contact head at the bottom of the connector 204 is separated from the interface on the surface of the dc contactor semi-finished product 206, and then the dc contactor semi-finished product 206 is taken down.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.

Claims (7)

1. A DC contactor semi-finished product test equipment is characterized by comprising:
the device comprises a box body (101) and a sealing frame (102) arranged on the surface of the box body (101);
the surface of the box body (101) is provided with a rotating tray (103), and the rotating tray (103) is positioned inside the sealing frame (102);
the rotary tray (103) is driven by a motor arranged in the box body (101);
the surface of the rotary tray (103) is provided with a plurality of mounting mechanisms (200), and the surface of the box body (101) is provided with four detection mechanisms (300).
2. The direct current contactor semi-finished product testing device according to claim 1, wherein the mounting mechanism (200) comprises a mounting seat (201), two guide posts (202) are fixedly connected to the surface of the mounting seat (201) in a symmetrical manner, a connecting plate (203) is movably sleeved on the outer walls of the two guide posts (202), a connector (204) is installed on the rear end surface of the connecting plate (203), a connecting hole (205) is installed on the surface of the connector (204), and a contact head is installed at the bottom of the connector (204).
3. The testing equipment for the semi-finished product of the direct current contactor as claimed in claim 2, wherein the semi-finished product (206) of the direct current contactor is placed on the surface of the mounting seat (201), and the interface on the surface of the semi-finished product (206) of the direct current contactor is contacted with the contact head.
4. The direct current contactor semi-finished product testing device according to claim 3, wherein a connecting rod (207) is fixedly connected to the surface of the mounting seat (201), the connecting rod (207) movably penetrates through the connecting plate (203), a first compression spring (208) is arranged on the outer wall of the connecting rod (207), and one end of the first compression spring (208) is fixedly connected with the mounting seat (201).
5. The direct current contactor semi-finished product testing device according to claim 1, wherein the detecting mechanism (300) comprises a mounting plate (301), an oil cylinder (302) is mounted at one end of the mounting plate (301), a detector (303) is fixedly connected to a piston end of the oil cylinder (302), a telescopic rod (304) is mounted at the bottom of the detector (303), a contact block (305) is mounted at the bottom of the telescopic rod (304), and the contact block (305) is electrically connected with the detector (303).
6. The direct current contactor semi-finished product testing device as claimed in claim 5, wherein a second compression spring (306) is arranged on the outer wall of the telescopic rod (304), one end of the second compression spring (306) is fixedly connected with the detector (303), and the other end of the second compression spring (306) is fixedly connected with the contact block (305).
7. A dc contactor semi-finished product testing device according to claim 1, characterized in that the surface of the box body (101) is provided with a code scanner (307).
CN202221864424.9U 2022-07-19 2022-07-19 DC contactor semi-manufactured goods test equipment Active CN218412818U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202221864424.9U CN218412818U (en) 2022-07-19 2022-07-19 DC contactor semi-manufactured goods test equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202221864424.9U CN218412818U (en) 2022-07-19 2022-07-19 DC contactor semi-manufactured goods test equipment

Publications (1)

Publication Number Publication Date
CN218412818U true CN218412818U (en) 2023-01-31

Family

ID=85011424

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202221864424.9U Active CN218412818U (en) 2022-07-19 2022-07-19 DC contactor semi-manufactured goods test equipment

Country Status (1)

Country Link
CN (1) CN218412818U (en)

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