CN205538201U - Ship type switch life electro -magnet lever drive formula test device - Google Patents

Ship type switch life electro -magnet lever drive formula test device Download PDF

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Publication number
CN205538201U
CN205538201U CN201620379720.8U CN201620379720U CN205538201U CN 205538201 U CN205538201 U CN 205538201U CN 201620379720 U CN201620379720 U CN 201620379720U CN 205538201 U CN205538201 U CN 205538201U
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CN
China
Prior art keywords
depression bar
sleeve pipe
lever
electric magnet
magnet
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN201620379720.8U
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Chinese (zh)
Inventor
陈永方
王红
李会琴
刘德波
陈帮军
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Huanghe Science and Technology College
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Huanghe Science and Technology College
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Huanghe Science and Technology College filed Critical Huanghe Science and Technology College
Priority to CN201620379720.8U priority Critical patent/CN205538201U/en
Application granted granted Critical
Publication of CN205538201U publication Critical patent/CN205538201U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

Ship type switch life electro -magnet lever drive formula test device establishes the flat board on the landing leg including landing leg and level, is equipped with the frame on the flat board, and the frame top is equipped with left electro -magnet and right electro -magnet, the level is equipped with the mounting bracket in the frame, be equipped with on the mounting bracket with left electro -magnet and right electro -magnet about magnetic force adsorb the complex lever mechanism that opens and shuts, the frame lateral part be equipped with be used for monitoring the lever open and shut mechanism's up -and -down motion linear encoder with be used for monitoring bright photoelectric sensor. The utility model discloses principle science, reasonable in design, simple structure, can be accurate test ship type switch at the number of times that opens and shuts of normal use in -process, and life -span of full automatization detection switch, labour saving and time saving, efficiency of software testing is high.

Description

Ship type switch solenoid lever drive-type assay device in service life
Technical field
This utility model belongs to electric elements detection technique field, particularly relates to a kind of ship type switch solenoid lever drive-type assay device in service life.
Background technology
Ship type switch also referred to as rocker switch, rocker switch, I/O switch, on and off switch.But the requirement that different product switchs service life to ship type at present is different, the switch life meeting market use demand is all the most up to ten thousand times, ship type switch has to pass through this one procedure of life test before dispatching from the factory, the quality of product can not only be detected, also the performance of switch can be informed consumers in general.The number of times mainly testing folding service life of ship type switch, until damaging, using counter records number of times, there is defect or the deficiencies such as structure is complicated, automaticity is relatively low, operability is not strong, monitoring complex operation, testing efficiency are low in manufacturer's existing test device.
Utility model content
This utility model is in order to solve weak point of the prior art, it is provided that the operation high, depressed of a kind of simple in construction, automaticity, the ship type switch solenoid lever drive-type assay device in service life that testing efficiency is high.
For solving above-mentioned technical problem, this utility model adopts the following technical scheme that ship type switch solenoid lever drive-type assay device in service life, the flat board being located on supporting leg including supporting leg and level, flat board is provided with framework, and frame roof is provided with left electric magnet and right electric magnet;In framework, level is provided with installing rack, installing rack is provided with the lever open-and-close mechanism coordinated respectively with left electric magnet and the upper and lower magnetic-adsorption of right electric magnet, and frame side is provided with the linear encoder for monitoring the up and down motion of lever open-and-close mechanism and for monitoring the photoelectric sensor of light.
Lever open-and-close mechanism includes left depression bar, right depression bar, bearing, lever, left sleeve pipe and right sleeve pipe, bearing, left sleeve pipe and right sleeve pipe are each provided on installing rack, bearing is located in the middle part of installing rack, left sleeve pipe and right sleeve pipe are symmetrical set about bearing, its intermediate part is hinged on bearing, left depression bar is vertically plugged in left sleeve pipe, right depression bar is vertically plugged in right sleeve pipe, lever left end and left depression bar upper articulation, lever right-hand member and right depression bar upper articulation, left depression bar bottom is provided with left back-up ring, right depression bar bottom is provided with right back-up ring, be arranged with on left depression bar upper and lower two ends respectively with left sleeve pipe and the left spring of left back-up ring top press contacts, be arranged with on right depression bar upper and lower two ends respectively with right sleeve pipe and the right spring of right back-up ring top press contacts;Left depression bar upper end is provided with the left magnetic plate being positioned at immediately below left electric magnet, and right depression bar upper end is provided with the right magnetic plate being positioned at immediately below right electric magnet.
Use technique scheme, further need exist for processor, enumerator, alarm and display, linear encoder and the signal output part of photoelectric sensor in this utility model are connected with the signal input part of processor respectively, the signal output part of processor signal input part with alarm sum counter respectively is connected, and the signal output part of enumerator is connected with the signal input part of display.
Ship type switch, when testing, is placed and secured on flat board by this utility model, and press contacts is pushed up with left depression bar lower end and right depression bar lower end respectively in the press section on ship type switch, and ship type switchs by wire connecting power and lamp.During test, left electric magnet and the energising of right electric magnet interval, right magnetic plate is adsorbed in the energising of right electric magnet, due to hinged by lever between left depression bar and right depression bar, when left magnetic plate is adsorbed in the energising of left electric magnet, left depression bar is lifted up, right depression bar presses down on ship type switch, when right magnetic plate is adsorbed in the energising of right electric magnet, right depression bar is lifted up, and left depression bar presses down on ship type switch;Left depression bar and right depression bar lower end are respectively by type switch of delaying unloading a ship, i.e. complete once to switch, linear encoder will send a pulse command, simultaneously lamp will luminescence once, photoelectric sensor receives the optical signal that lamp sends and sends a pulse signal for a moment, and two pulse signals is simultaneously transferred to processor, and signal is transmitted further to enumerator by processor, enumerator completes once to count, and count results shows over the display.If rotating disk rotates one week, linear encoder has signal, lamp not to work, and processor will be signaled to alarm, and alarm sends sound and light alarm signal, and alarm switch damages, and experimenter draws switch failure reason by analysis.
Left spring and the effect of right spring in this utility model are played exactly to left depression bar and the reset response of right depression bar.Left sleeve pipe and right sleeve pipe each serve as the left depression bar of guiding and the most upper and lower reciprocating effect of right depression bar.
In sum, this utility model scientific in principle, reasonable in design, simple in construction, it is possible to accurately test ship type switch opening/closing frequency during normal use, and the life-span of full-automatic detection switch, time saving and energy saving, testing efficiency is high.
Accompanying drawing explanation
Fig. 1 is structural representation of the present utility model;
Fig. 2 is testing and control schematic diagram of the present utility model.
Detailed description of the invention
As it is shown in figure 1, ship type of the present utility model switch solenoid lever drive-type assay device in service life, the flat board 2 being located on supporting leg 1 including supporting leg 1 and level, flat board 2 is provided with framework 3, and framework 3 top is provided with left electric magnet 4 and right electric magnet 5;In framework 3, level is provided with installing rack 6, and installing rack 6 is provided with the lever open-and-close mechanism coordinated respectively with left electric magnet 4 and right electric magnet about 5 magnetic-adsorption.
nullLever open-and-close mechanism includes left depression bar 9、Right depression bar 10、Bearing 11、Lever 12、Left sleeve pipe 13 and right sleeve pipe 14,Bearing 11、Left sleeve pipe 13 and right sleeve pipe 14 are each provided on installing rack 6,Bearing 11 is located in the middle part of installing rack 6,Left sleeve pipe 13 and right sleeve pipe 14 are symmetrical set about bearing 11,It is hinged in the middle part of lever 12 on bearing 11,Left depression bar 9 is vertically plugged in left sleeve pipe 13,Right depression bar 10 is vertically plugged in right sleeve pipe 14,Lever 12 left end and left depression bar 9 upper articulation,Lever 12 right-hand member and right depression bar 10 upper articulation,Left depression bar 9 bottom is provided with left back-up ring 15,Right depression bar 10 bottom is provided with right back-up ring 16,It is arranged with upper and lower two ends on left depression bar 9 and pushes up the left spring 17 of press contacts with left sleeve pipe 13 and left back-up ring 15 respectively,It is arranged with upper and lower two ends on right depression bar 10 and pushes up the right spring 18 of press contacts with right sleeve pipe 14 and right back-up ring 16 respectively;Left depression bar 9 upper end is provided with the left magnetic plate 7 being positioned at immediately below left electric magnet 4, and right depression bar 10 upper end is provided with the right magnetic plate 8 being positioned at immediately below right electric magnet 5.
As shown in Figure 2, this utility model also needs to linear encoder 20, photoelectric sensor 21, processor 22, enumerator 23, alarm 24 and display 25, wherein linear encoder 20 is located at framework 3 sidepiece and is provided with for monitoring the number of times that left depression bar or right depression bar move up and down, photoelectric sensor 21 is located at framework 3 sidepiece for monitoring light, the signal output part of linear encoder 20 and photoelectric sensor 21 signal input part with processor 22 respectively is connected, the signal output part of processor 22 signal input part with alarm 24 sum counter 23 respectively is connected, the signal output part of enumerator 23 is connected with the signal input part of display 25.
Ship type switch 26, when testing, is placed and secured on flat board 2 by this utility model, and press contacts is pushed up with left depression bar 9 lower end and right depression bar 10 lower end respectively in the press section on ship type switch 26, and ship type switch 26 is by wire connecting power and lamp 27.During test, left electric magnet 4 and the energising of right electric magnet 5 interval, right magnetic plate 8 is adsorbed in the energising of right electric magnet 5, due to hinged by lever 12 between left depression bar 9 and right depression bar 10, when left magnetic plate 7 is adsorbed in the energising of left electric magnet 4, left depression bar 9 is lifted up, right depression bar 10 presses down on ship type switch 26, when right magnetic plate 8 is adsorbed in the energising of right electric magnet 5, right depression bar 10 is lifted up, and left depression bar 9 presses down on ship type switch 26;Left depression bar 9 and right depression bar 10 lower end are respectively by type switch 26 of delaying unloading a ship, i.e. complete once to switch, linear encoder 20 will send a pulse command, simultaneously lamp 27 will luminescence once, photoelectric sensor 21 receives the optical signal that lamp 27 sends and sends a pulse signal for a moment, and two pulse signals is simultaneously transferred to processor 22, and signal is transmitted further to enumerator 23 by processor 22, enumerator 23 completes once to count, and count results shows on display 25.If rotating disk 5 rotates one week, linear encoder 20 has signal, lamp 27 not to work, and processor 22 will be signaled to alarm 24, and alarm 24 sends sound and light alarm signal, and alarm switch damages, and experimenter draws switch failure reason by analysis.
Shape of the present utility model, material, structure etc. are not made any pro forma restriction by the present embodiment; every any simple modification, equivalent variations and modification made above example according to technical spirit of the present utility model, belongs to the protection domain of technical solutions of the utility model.

Claims (2)

1. ship type switch solenoid lever drive-type assay device in service life, it is characterised in that: including the flat board that supporting leg and level are located on supporting leg, flat board is provided with framework, and frame roof is provided with left electric magnet and right electric magnet;In framework, level is provided with installing rack, installing rack is provided with the lever open-and-close mechanism coordinated respectively with left electric magnet and the upper and lower magnetic-adsorption of right electric magnet, and frame side is provided with the linear encoder for monitoring the up and down motion of lever open-and-close mechanism and for monitoring the photoelectric sensor of light.
nullShip type the most according to claim 1 switch solenoid lever drive-type assay device in service life,It is characterized in that: lever open-and-close mechanism includes left depression bar、Right depression bar、Bearing、Lever、Left sleeve pipe and right sleeve pipe,Bearing、Left sleeve pipe and right sleeve pipe are each provided on installing rack,Bearing is located in the middle part of installing rack,Left sleeve pipe and right sleeve pipe are symmetrical set about bearing,Its intermediate part is hinged on bearing,Left depression bar is vertically plugged in left sleeve pipe,Right depression bar is vertically plugged in right sleeve pipe,Lever left end and left depression bar upper articulation,Lever right-hand member and right depression bar upper articulation,Left depression bar bottom is provided with left back-up ring,Right depression bar bottom is provided with right back-up ring,Be arranged with on left depression bar upper and lower two ends respectively with left sleeve pipe and the left spring of left back-up ring top press contacts,Be arranged with on right depression bar upper and lower two ends respectively with right sleeve pipe and the right spring of right back-up ring top press contacts;Left depression bar upper end is provided with the left magnetic plate being positioned at immediately below left electric magnet, and right depression bar upper end is provided with the right magnetic plate being positioned at immediately below right electric magnet.
CN201620379720.8U 2016-04-29 2016-04-29 Ship type switch life electro -magnet lever drive formula test device Expired - Fee Related CN205538201U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201620379720.8U CN205538201U (en) 2016-04-29 2016-04-29 Ship type switch life electro -magnet lever drive formula test device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201620379720.8U CN205538201U (en) 2016-04-29 2016-04-29 Ship type switch life electro -magnet lever drive formula test device

Publications (1)

Publication Number Publication Date
CN205538201U true CN205538201U (en) 2016-08-31

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Application Number Title Priority Date Filing Date
CN201620379720.8U Expired - Fee Related CN205538201U (en) 2016-04-29 2016-04-29 Ship type switch life electro -magnet lever drive formula test device

Country Status (1)

Country Link
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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107068430A (en) * 2017-03-30 2017-08-18 南京信息工程大学 A kind of extra switch of dormitory controlling switch folding

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107068430A (en) * 2017-03-30 2017-08-18 南京信息工程大学 A kind of extra switch of dormitory controlling switch folding

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C14 Grant of patent or utility model
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20160831

Termination date: 20170429

CF01 Termination of patent right due to non-payment of annual fee