CN203839292U - Relay producing device - Google Patents

Relay producing device Download PDF

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Publication number
CN203839292U
CN203839292U CN201420221755.XU CN201420221755U CN203839292U CN 203839292 U CN203839292 U CN 203839292U CN 201420221755 U CN201420221755 U CN 201420221755U CN 203839292 U CN203839292 U CN 203839292U
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CN
China
Prior art keywords
relay
test
assembly
silk
feeding
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Withdrawn - After Issue
Application number
CN201420221755.XU
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Chinese (zh)
Inventor
何家益
林楚彬
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Guangdong Galanz Enterprises Co Ltd
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Guangdong Galanz Enterprises Co Ltd
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Application filed by Guangdong Galanz Enterprises Co Ltd filed Critical Guangdong Galanz Enterprises Co Ltd
Priority to CN201420221755.XU priority Critical patent/CN203839292U/en
Application granted granted Critical
Publication of CN203839292U publication Critical patent/CN203839292U/en
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Withdrawn - After Issue legal-status Critical Current

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Abstract

A relay producing device is disclosed, comprising a device main body; a silkscreen system used for printing words on a relay and a comprehensive testing system used for testing performance of the relay are integrated on the device main body; the silkscreen system comprises a silkscreen feeding mechanism and a pad printing machine, the comprehensive testing system comprises a test material feeding mechanism and a comprehensive computer tester, and the silkscreen feeding mechanism is connected with the testing material feeding mechanism in an end-to-end manner. According to the relay producing device, an automatic production mode through which relay silkscreen and comprehensive tests are integrated is adopted, word printing operation is conducted after the relay is assembled from parts, and comprehensive tests are directly done after the word printing operation is finished; streamline work where assembling, word printing and tests are integrated can be realized in relay production processes; time spent on carrying a relay outer shell to a silkscreen workshop for operation and material turnover time can be saved, requirements for lean production of the relay can be met, the relay producing device can be widely applied to and popularized in part assembling production in hardware and electron industries, and the relay producing device is wide in market prospect.

Description

A kind of equipment for the production of relay
Technical field
The utility model relates to a kind of production equipment, specifically a kind of equipment for the production of relay.
Background technology
Conventional relay is in the time producing, and the production process of its lettering and integration test is all separately to produce, first by relay1 case after silk-screen room lettering is good, concentratedly transport the shell after lettering to workshop with body feed tank and assemble.This production model need to from produce the incipient stage will distinguish material, and whole process carry out mark distinguish, guarantee production process can batch mixing.But, if in the shell quantity of silk-screen room lettering too much, can cause stock, even may produce unnecessary scrapping; If the shell quantity of lettering not causes production procedure list not wound up in time, when serious, also can affect the product turnout time, such production model will be brought many management difficulties to the lean production of product.Therefore, be necessary further improvement.
Utility model content
The purpose of this utility model aims to provide a kind of simple and reasonable, and handling safety is reliable, and facility compact degree is high, produces low the equipment for the production of relay low, production efficiency is high, to overcome weak point of the prior art.
By a kind of equipment for the production of relay of this object design, comprise equipment body, it is characterized in that: on equipment body, integrated setting is useful on the silkscreen system of relay lettering and the integrated test system for busy relay performance; Wherein, silkscreen system comprises silk-screen feed mechanism and pad printer, and integrated test system comprises test feed mechanism and brain comprehensive tester; Described silk-screen feed mechanism joins end to end with test feed mechanism.
Described silk-screen feed mechanism comprises the first sucker feeding material component, silk-screen feeding belt line, the second sucker feeding material component, silk-screen feeding pipeline and location conveying assembly; Test feed mechanism comprises test feeding pipeline, material folding assembly, test feeding belt line, assignment test assembly, testboard, screening assembly and classification separated material groove.
Described the first sucker feeding material component is arranged at the front end of silk-screen feeding belt line and comprises sucker and cylinder; Silk-screen feeding belt line comprises feeding belt and for driving the motor of feeding belt; The first sucker feeding material component adds together operation by sucker by relay in the past holds, and is freely moved, the relay holding is positioned on the feeding belt of silk-screen feeding belt line by cylinder.
Described the second sucker feeding material component is arranged at the rear end of silk-screen feeding belt line and comprises sucker and cylinder; Silk-screen feeding pipeline is arranged at the rear end of silk-screen feeding belt line, and the direction arranging with the second sucker feeding material component is corresponding; The second sucker feeding material component holds relay by sucker from silk-screen feeding belt line, and is freely moved, the relay holding is positioned on silk-screen feeding pipeline by cylinder.
Described pad printer be arranged at silk-screen feeding pipeline directly over, location conveying assembly is arranged at a side of silk-screen feeding pipeline, and comprises cylinder, slide bar and locating clip; Location conveying assembly freely moves by cylinder, and the relay on silk-screen feeding pipeline is positioned on the operation anchor point of pad printer by locating clip, realize the lettering operation of relay, the relay after lettering is delivered on test feeding pipeline by the slide bar of location conveying assembly.
Described silk-screen feeding pipeline joins end to end and mutually drives by motor with test feeding pipeline; Described test feed mechanism is provided with more than one group, is made up of the first material folding assembly, the first test feeding belt line, the first assignment test assembly, the first testboard, the first screening assembly and the first classification separated material groove; Wherein, brain comprehensive tester is suitable with the quantity that test feed mechanism arranges.
Described the first material folding assembly is arranged at a side of test feeding pipeline rear end and comprises material folding part and cylinder; The first test feeding belt line is arranged at test feeding pipeline rear end, and corresponding with the direction of the first material folding assembly setting and comprise feeding belt and for driving the motor of feeding belt; The first material folding assembly is clamped relay by material folding part from test feeding pipeline, and is freely moved, the relay of clamping is positioned on the feeding belt of the first test feeding belt line by cylinder.
Described the first assignment test assembly and the first testboard are arranged at the rear end of the first test feeding belt line; Wherein, the first assignment test assembly comprises cylinder and locating clip, and the testing element on brain comprehensive tester and the first testboard electricly connects; The first assignment test assembly freely moves by cylinder, and by locating clip, the relay on the first test feeding belt line is delivered on the test position fix fixture of the first testboard, realizes the integration test operation of relay.
Described the first screening assembly is arranged at the below of the first testboard and comprises cylinder, slide bar and screening member; The first classification separated material groove is arranged at a side of the first testboard; The first screening assembly freely moves by slide bar, and by screening member, test passes and underproof relay is divided to be extrapolated to assigned address point and to be pushed the first classification separated material groove by cylinder and classify.
Described test feed mechanism is provided with two groups, screen assembly, the first classification separated material groove by the first material folding assembly, the first test feeding belt line, the first assignment test assembly, the first testboard, first respectively, and the second material folding assembly, second is tested feeding belt line, the second assignment test assembly, secondary test board, the second screening assembly, the second classification separated material groove formation; Wherein, the corresponding test of brain comprehensive tester feed mechanism is provided with two.
The utility model is by the improvement of said structure, adopt relay silk-screen and the integrated automatic production model of integration test, can be first relay by assembling parts, and then carry out lettering, the complete rear integration test of directly carrying out of lettering, the production of relay can be accomplished the one streamlined operation of assembling, lettering and test, the time and the material cycling time that relay1 case are transported to silk-screen plant working are saved, effectively simplify production process, reduce production costs, can meet relay lean production requirement.It has simple and reasonable, and handling safety is reliable, and facility compact degree is high, produce low low, production efficiency high, can also be widely used in five metals and electron trade Assembly of the parts produce promote the use of, there are wide market prospects.
Brief description of the drawings
Fig. 1 is the utility model one example structure schematic diagram.
Fig. 2 is silk-screen feeding machine structure schematic diagram.
Fig. 3 is the first sucker feeding material component structural representation.
Fig. 4 is silk-screen feeding belt line structure schematic diagram.
Fig. 5 is the second sucker feeding material component structural representation.
Fig. 6 is silk-screen feeding pipeline structural representation.
Fig. 7 is location conveying assembly structural representation.
Fig. 8 is test feeding machine structure schematic diagram.
Fig. 9 is test feeding pipeline, the first test feeding belt line, the second test feeding belt line structure schematic diagram.
Figure 10 is the first material folding modular construction schematic diagram.
Figure 11 is the second material folding modular construction schematic diagram.
Figure 12 is the first assignment test assembly, the second assignment test modular construction schematic diagram.
Figure 13 is the first testboard, the first classification separated material groove structural representation.
Figure 14 is secondary test board, the second classification separated material groove structural representation.
Figure 15 is the first screening assembly, the second screening modular construction schematic diagram.
In accompanying drawing, 1 is the first sucker feeding material component, 2 is silk-screen feeding belt line, 3 is the second sucker feeding material component, 4 is silk-screen feeding pipeline, 5 is location conveying assembly, 6 is test feeding pipeline, 7 is the first test feeding belt line, 8 is the second test feeding belt line, 9 is the first material folding assembly, 10 is the second material folding assembly, 11 is the first assignment test assembly, 12 is the second assignment test assembly, 13 is the first testboard, 14 is secondary test board, 15 is the first classification separated material groove, 16 is the second classification separated material groove, 17 is the first screening assembly, 18 is the second screening assembly.
Embodiment
Below in conjunction with drawings and Examples, the utility model is further described.
Referring to Fig. 1, this,, for the production of the equipment of relay, comprises equipment body, it is characterized in that: on equipment body, integrated setting is useful on the silkscreen system A of relay lettering and the integrated test system B for busy relay performance; Wherein, silkscreen system A comprises silk-screen feed mechanism and pad printer, and integrated test system B comprises test feed mechanism and brain comprehensive tester; Described silk-screen feed mechanism joins end to end with test feed mechanism.
Referring to Fig. 2-Fig. 7, silk-screen feed mechanism comprises the first sucker feeding material component 1, silk-screen feeding belt line 2, the second sucker feeding material component 3, silk-screen feeding pipeline 4 and location conveying assembly 5; Test feed mechanism comprises test feeding pipeline 6, material folding assembly, test feeding belt line, assignment test assembly, testboard, screening assembly and classification separated material groove.The first sucker feeding material component 1 is arranged at the front end of silk-screen feeding belt line 2 and comprises sucker and cylinder; Silk-screen feeding belt line 2 comprises feeding belt and for driving the motor of feeding belt; The first sucker feeding material component 1 adds together operation by sucker by relay in the past holds, and is freely moved, the relay holding is positioned on the feeding belt of silk-screen feeding belt line 2 by cylinder.The second sucker feeding material component 3 is arranged at the rear end of silk-screen feeding belt line 2 and comprises sucker and cylinder; Silk-screen feeding pipeline 4 is arranged at the rear end of silk-screen feeding belt line 2, and the direction arranging with the second sucker feeding material component 3 is corresponding; The second sucker feeding material component 3 holds relay by sucker from silk-screen feeding belt line 2, and is freely moved, the relay holding is positioned on silk-screen feeding pipeline 4 by cylinder.Pad printer be arranged at silk-screen feeding pipeline 4 directly over, location conveying assembly 5 is arranged at a side of silk-screen feeding pipeline 4, and comprises cylinder, slide bar and locating clip; Location conveying assembly 5 freely moves by cylinder, and the relay on silk-screen feeding pipeline 4 is positioned on the operation anchor point of pad printer by locating clip, realize the lettering operation of relay, the relay after lettering is delivered on test feeding pipeline 6 by the slide bar of location conveying assembly 5.
Silk-screen feeding pipeline 4 joins end to end and mutually drives by motor with test feeding pipeline 6
Referring to Fig. 8-Figure 15, test feed mechanism is provided with more than one group, the test feed mechanism of the present embodiment is provided with two groups, the first group of test feed mechanism being formed by the first material folding assembly 9, the first test feeding belt line 7, the first assignment test assembly 11, the first testboard 13, the first screening assembly 17, the first classification separated material groove 15 respectively, and second group of test feed mechanism forming of the second material folding assembly 10, the second test feeding belt line 8, the second assignment test assembly 12, secondary test board 14, the second screening assembly 18, the second classification separated material groove 16; Wherein, the corresponding test of brain comprehensive tester feed mechanism is provided with two.
Wherein, the first material folding assembly 9 in first group of test feed mechanism is arranged at a side of test feeding pipeline 6 rear ends and comprises material folding part and cylinder; The first test feeding belt line 7 is arranged at test feeding pipeline 6 rear ends, and the direction arranging with the first material folding assembly 9 is corresponding and comprise feeding belt and for driving the motor of feeding belt; The first material folding assembly (9) is clamped relay by material folding part from test feeding pipeline 6, and is freely moved, the relay of clamping is positioned on the feeding belt of the first test feeding belt line 7 by cylinder.The first assignment test assembly 11 and the first testboard 13 are arranged at the rear end of the first test feeding belt line 7; Wherein, the first assignment test assembly 11 comprises cylinder and locating clip, and the testing element on brain comprehensive tester and the first testboard 13 electricly connects; The first assignment test assembly 11 freely moves by cylinder, and by locating clip, the relay on the first test feeding belt line 7 is delivered on the test position fix fixture of the first testboard 13, realizes the integration test operation of relay.The first screening assembly 17 is arranged at the below of the first testboard 13 and comprises cylinder, slide bar and screening member; The first classification separated material groove 15 is arranged at a side of the first testboard 13; The first screening assembly 17 freely moves by slide bar, and by screening member, test passes and underproof relay is divided to be extrapolated to assigned address point and to be pushed the first classification separated material groove 15 by cylinder and classify.
Identical mode, the annexation of the each member of test feed mechanism of second group, with above-mentioned first group of test feed mechanism, just repeats no more here.
Its operation principle:
The first sucker feeding material component 1 uses vacuum suction mode on the streamline of relay product the past one procedure, to hold, and freely moves by upper and lower two cylinders, and relay product is directly put on silk-screen feeding belt line 2.The same vacuum suction mode that uses of the second sucker feeding material component 3 holds relay product from silk-screen feeding belt line 2, and freely moves by upper and lower two cylinders, and relay product is directly put on silk-screen feeding pipeline 4.Relay product is placed on silk-screen feeding pipeline 4, and by location conveying assembly 5 back and forth do action send into exactly in the anchor point of pad printer, now pad printer is carried out lettering operation to relay after receiving Fibre Optical Sensor signal, the relay after lettering by location conveying assembly 5 back and forth do action send on test feeding pipeline 6.
The first material folding assembly 9 proceeds to relay product in the first test feeding belt line 7 from test feeding pipeline 6, and by docking with First brain comprehensive tester, the first assignment test assembly 11, the first testboard 13, the first classification separated material groove 15 and the first screening assembly 17, be combined into first group of brain comprehensive p-wire.
Same method, the second material folding assembly 10 proceeds to relay product in the second test feeding belt line 8 from test feeding pipeline 6, and by docking with second brain comprehensive tester, the second assignment test assembly 12, secondary test board 14, the second classification separated material groove 16 and the second screening assembly 18, be combined into second group of brain comprehensive p-wire.
The first assignment test assembly 11 picks up relay from the first test feeding belt line 7, and the test position fix fixture of putting into exactly the first testboard 13 carries out electric parameter detection.After relay electrical parameters detection, the first screening assembly 17 divides the qualified and defective item of relay to be extrapolated to assigned address point, is then pushed in the first classification separated material groove 15 with cylinder, avoids qualified and defective item batch mixing.
Same method, the second assignment test assembly 12 picks up relay from the second test feeding belt line 8, and accurately puts the test position fix fixture of putting into secondary test board 14 and carry out electrical parameters detection.After relay electrical parameters detection, the second screening assembly 18 divides the qualified and defective item of product to be extrapolated to assigned address point, is then pushed in the second classification separated material groove 16 with cylinder, avoids qualified and defective item batch mixing.
Above-mentioned is preferred version of the present utility model, and those of ordinary skill in the art are to its simple modification or transformation, within all dropping on protection range of the present utility model.

Claims (10)

1. the equipment for the production of relay, comprise equipment body, it is characterized in that: on equipment body, integrated setting is useful on the silkscreen system (A) of relay lettering and the integrated test system (B) for busy relay performance; Wherein, silkscreen system (A) comprises silk-screen feed mechanism and pad printer, and integrated test system (B) comprises test feed mechanism and brain comprehensive tester; Described silk-screen feed mechanism joins end to end with test feed mechanism.
2. according to claim 1 for the production of the equipment of relay, it is characterized in that described silk-screen feed mechanism comprises the first sucker feeding material component (1), silk-screen feeding belt line (2), the second sucker feeding material component (3), silk-screen feeding pipeline (4) and location conveying assembly (5); Test feed mechanism comprises test feeding pipeline (6), material folding assembly, test feeding belt line, assignment test assembly, testboard, screening assembly and classification separated material groove.
3. according to claim 2 for the production of the equipment of relay, it is characterized in that described the first sucker feeding material component (1) is arranged at the front end of silk-screen feeding belt line (2) and comprises sucker and cylinder; Silk-screen feeding belt line (2) comprises feeding belt and for driving the motor of feeding belt; The first sucker feeding material component (1) adds together operation by sucker by relay in the past holds, and is freely moved, the relay holding is positioned on the feeding belt of silk-screen feeding belt line (2) by cylinder.
4. according to claim 3 for the production of the equipment of relay, it is characterized in that described the second sucker feeding material component (3) is arranged at the rear end of silk-screen feeding belt line (2) and comprises sucker and cylinder; Silk-screen feeding pipeline (4) is arranged at the rear end of silk-screen feeding belt line (2), and the direction arranging with the second sucker feeding material component (3) is corresponding; The second sucker feeding material component (3) holds relay by sucker from silk-screen feeding belt line (2), and is freely moved, the relay holding is positioned on silk-screen feeding pipeline (4) by cylinder.
5. according to claim 4 for the production of the equipment of relay, it is characterized in that described pad printer be arranged at silk-screen feeding pipeline (4) directly over, location conveying assembly (5) is arranged at a side of silk-screen feeding pipeline (4), and comprises cylinder, slide bar and locating clip; Location conveying assembly (5) freely moves by cylinder, and the relay on silk-screen feeding pipeline (4) is positioned on the operation anchor point of pad printer by locating clip, realize the lettering operation of relay, the relay after lettering is delivered on test feeding pipeline (6) by the slide bar of location conveying assembly (5).
6. according to claim 5 for the production of the equipment of relay, it is characterized in that described silk-screen feeding pipeline (4) and test feeding pipeline (6) join end to end and mutually drive by motor; Described test feed mechanism is provided with more than one group, is made up of the first material folding assembly (9), the first test feeding belt line (7), the first assignment test assembly (11), the first testboard (13), the first screening assembly (17) and the first classification separated material groove (15); Wherein, brain comprehensive tester is suitable with the quantity that test feed mechanism arranges.
7. according to claim 6 for the production of the equipment of relay, it is characterized in that described the first material folding assembly (9) is arranged at a side of test feeding pipeline (6) rear end and comprises material folding part and cylinder; The first test feeding belt line (7) is arranged at test feeding pipeline (6) rear end, and the direction arranging with the first material folding assembly (9) is corresponding and comprise feeding belt and for driving the motor of feeding belt; The first material folding assembly (9) is clamped relay by material folding part from test feeding pipeline (6), and is freely moved, the relay of clamping is positioned on the feeding belt of the first test feeding belt line (7) by cylinder.
8. according to claim 7 for the production of the equipment of relay, it is characterized in that described the first assignment test assembly (11) and the first testboard (13) are arranged at the rear end of the first test feeding belt line (7); Wherein, the first assignment test assembly (11) comprises cylinder and locating clip, and the testing element on brain comprehensive tester and the first testboard (13) electricly connects; The first assignment test assembly (11) freely moves by cylinder, and by locating clip, the relay on the first test feeding belt line (7) is delivered on the test position fix fixture of the first testboard (13), realize the integration test operation of relay.
9. according to claim 8 for the production of the equipment of relay, it is characterized in that described the first screening assembly (17) is arranged at the below of the first testboard (13) and comprises cylinder, slide bar and screening member; The first classification separated material groove (15) is arranged at a side of the first testboard (13); The first screening assembly (17) freely moves by slide bar, and by screening member, test passes and underproof relay is divided to be extrapolated to assigned address point and to be pushed the first classification separated material groove (15) by cylinder and classify.
10. according to the equipment for the production of relay described in claim 1-9 any one, it is characterized in that described test feed mechanism is provided with two groups, respectively by the first material folding assembly (9), the first test feeding belt line (7), the first assignment test assembly (11), the first testboard (13), the first screening assembly (17), the first classification separated material groove (15), and the second material folding assembly (10), the second test feeding belt line (8), the second assignment test assembly (12), secondary test board (14), the second screening assembly (18), the second classification separated material groove (16) forms, wherein, the corresponding test of brain comprehensive tester feed mechanism is provided with two.
CN201420221755.XU 2014-04-30 2014-04-30 Relay producing device Withdrawn - After Issue CN203839292U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201420221755.XU CN203839292U (en) 2014-04-30 2014-04-30 Relay producing device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201420221755.XU CN203839292U (en) 2014-04-30 2014-04-30 Relay producing device

Publications (1)

Publication Number Publication Date
CN203839292U true CN203839292U (en) 2014-09-17

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ID=51517101

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201420221755.XU Withdrawn - After Issue CN203839292U (en) 2014-04-30 2014-04-30 Relay producing device

Country Status (1)

Country Link
CN (1) CN203839292U (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103943411A (en) * 2014-04-30 2014-07-23 广东格兰仕集团有限公司 Device used for producing relay
CN110600327A (en) * 2019-08-08 2019-12-20 安徽商贸职业技术学院 Automatic assembling equipment for small electromagnetic relay

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103943411A (en) * 2014-04-30 2014-07-23 广东格兰仕集团有限公司 Device used for producing relay
CN110600327A (en) * 2019-08-08 2019-12-20 安徽商贸职业技术学院 Automatic assembling equipment for small electromagnetic relay

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Legal Events

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C14 Grant of patent or utility model
GR01 Patent grant
AV01 Patent right actively abandoned

Granted publication date: 20140917

Effective date of abandoning: 20160302

C25 Abandonment of patent right or utility model to avoid double patenting