CN211291534U - Electric tool comprehensive test equipment - Google Patents

Electric tool comprehensive test equipment Download PDF

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Publication number
CN211291534U
CN211291534U CN202020196269.2U CN202020196269U CN211291534U CN 211291534 U CN211291534 U CN 211291534U CN 202020196269 U CN202020196269 U CN 202020196269U CN 211291534 U CN211291534 U CN 211291534U
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groups
limiting
cabinet body
plate
electric tool
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CN202020196269.2U
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Chinese (zh)
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黄强
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Jinhua De Instrument Automation Technology Co ltd
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Jinhua De Instrument Automation Technology Co ltd
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Abstract

The utility model discloses an electric tool comprehensive testing equipment, including four group's pillars and the cabinet body, four group the pillar is located the upper end of the cabinet body, the upper surface of the cabinet body is provided with rodless cylinder and two sets of spacing round bar, rodless cylinder is located between two sets of spacing round bar, rodless cylinder's upper end is connected with the limiting plate, the spacing circular slot of lower extreme fixedly connected with of limiting plate, the upper end of limiting plate is provided with the mould. A comprehensive test equipment of electric tool, the baffle of setting can make the mould fix on the limiting plate, simultaneously, when changing different moulds, also can fix the mould of difference, enlarged usable floor area, also be favorable to reducing the debug time, increase work efficiency, can save the manpower, increased work efficiency, can avoid the test bar to damage because of decurrent power is too big, be favorable to saving the operation fund, certain practicality has, brings better use prospect.

Description

Electric tool comprehensive test equipment
Technical Field
The utility model relates to a comprehensive test equipment field, in particular to electric tool comprehensive test equipment.
Background
The test equipment, also called as 'detection equipment', is used for testing a series of electronic products such as electric tools, electronic products, instruments and devices, and many electric tools need to be comprehensively tested before being delivered from factories for use, so that damage to the electric tools when the electric tools are delivered to hands of users is avoided, but the existing comprehensive test equipment for the electric tools cannot meet the use requirements of people, and therefore more effective comprehensive test equipment for the electric tools is needed;
the existing comprehensive testing equipment for the electric tool has certain defects when in use, firstly, different dies cannot be fixed, debugging time is prolonged, secondly, working strength can be increased through traditional manual testing, working efficiency is reduced, and finally, a measuring rod is easy to damage, operation cost is increased, certain influence is brought to the using process of people, and therefore the comprehensive testing equipment for the electric tool is provided.
SUMMERY OF THE UTILITY MODEL
A primary object of the present invention is to provide an electric tool integrated test apparatus, which can effectively solve the problems in the background art.
In order to achieve the above purpose, the utility model adopts the following technical scheme:
the utility model provides an electric tool integrated test equipment, includes four group's pillars and the cabinet body, four groups the pillar is located the upper end of the cabinet body, the upper surface of the cabinet body is provided with rodless cylinder and two sets of spacing round bar, rodless cylinder is located between two sets of spacing round bar, rodless cylinder's upper end is connected with the limiting plate, the spacing circular slot of lower extreme fixedly connected with of limiting plate, the upper end of limiting plate is provided with the mould, the both ends of mould all are provided with the handle, the both sides of mould are provided with the flange, two sets of spout and a recess have been seted up to the upper end of limiting plate, one side of recess position in spout, the mould passes through the flange and slides on the spout and limiting plate sliding connection, and is two sets of recess both ends all.
Furthermore, the two sides of the baffle are provided with connecting shafts, a second groove is formed in the lower end of the baffle, a telescopic rod is arranged at the top end of the second groove, the lower end of the telescopic rod is connected with a sleeve, a spring is arranged on the outer side of the telescopic rod, and the lower end of the sleeve is fixedly connected in the second groove.
Furthermore, four groups of limiting rods are fixedly connected to the upper end of the cabinet body, a fixed plate is arranged at the top ends of the four groups of limiting rods, a movable plate is connected to the outer surfaces of the four groups of limiting rods, cylinders are arranged on four sides of the movable plate, the four groups of limiting rods penetrate through the cylinders on one side of the movable plate and are connected with the movable plate in a sliding mode, an air cylinder is arranged at the upper end of the fixed plate, a piston rod at one end of the air cylinder penetrates through the fixed plate and is fixedly connected with the movable plate, two groups of convex blocks are arranged at the lower end of the movable plate, a test box is arranged on the lower side of the movable plate, three grooves are arranged on two sides of the test box, the movable plate is movably connected with the test box through the convex blocks and the three grooves, round holes are, bolts are arranged on one sides of the four groups of limiting cylinders, and penetrate through one sides of the limiting cylinders to be fixedly connected with the limiting rods.
Further, the one end of spring and the top fixed connection of No. two recesses, the lower extreme and telescopic upper end fixed connection of spring, the upper end parallel and level of the upper end of baffle and the upper end of limiting plate.
Furthermore, two sets of one side of pillar is provided with infrared ray sensor respectively, the lower extreme of the cabinet body is provided with the universal wheel, the cabinet body still includes the locker.
Furthermore, the four groups of limiting rods are positioned on the inner sides of the four groups of supporting columns, liquid crystal control panels are arranged at the upper ends of the four groups of supporting columns, the liquid crystal control panels are positioned at the upper ends of the fixed plates, and the limiting cylinders are positioned at the lower ends of the movable plates.
Furthermore, the upper end of the cabinet body is provided with two groups of laser inductive switches, and the two groups of laser inductive switches are respectively positioned on one side of the two groups of limiting round rods.
Furthermore, a plurality of groups of heat dissipation ports are arranged on two sides of the cabinet body.
Compared with the prior art, the utility model discloses following beneficial effect has:
1. the mould can be fixed on the limiting plate through the arranged baffle, the limiting plate is placed corresponding to the traditional mould, the mould is not easy to move during testing, the condition that a testing rod cannot contrast a testing hole during testing is avoided, the debugging time is favorably reduced, the working efficiency is increased, when the mould is used, the baffle is pressed and is used through the cooperation of the telescopic rod and the sleeve, the baffle is pressed into the first groove, the mould is slidably installed on the chute of the limiting plate through the convex plate, then, the baffle is loosened, the baffle is upwards popped out under the action of the spring, the mould can be fixed on the limiting plate, the mould is not easy to move during testing, the condition that the testing rod cannot contrast the testing hole during testing is avoided, meanwhile, when different moulds are replaced, different moulds can also be fixed, the use area is enlarged, and the debugging time is favorably reduced, the working efficiency is increased;
2. the testing box can move downwards through the limiting rods and the moving plate, manual operation testing is avoided, meanwhile, working efficiency is improved, manpower is saved, when the testing box is used, the liquid crystal control panel is operated, the air cylinder starts to operate, the piston rod of the air cylinder moves downwards, the moving plate moves downwards, the four groups of limiting rods penetrate through the moving plate and are in sliding connection with the cylinder, deviation does not occur when the moving plate moves downwards, meanwhile, manual operation can be replaced, manpower is saved, and working efficiency is improved;
3. through the bolt and the spacing drum that set up, can control the descending distance of test box, thereby avoided the test bar to damage because of decurrent power is too big, be favorable to saving the operation fund, when using, move spacing drum to suitable position on the gag lever post, and run through the external fixation of spacing drum and gag lever post through the bolt, can make the movable plate of the piston rod fixed connection of cylinder one end remove downwards, when driving the test box and removing downwards, spacing drum can be injectd the position that the movable plate descends, thereby avoided the test bar to damage because of decurrent power is too big, be favorable to saving the operation fund, and is relatively practical.
The parts of the device not involved are the same as or can be implemented using prior art.
Drawings
Fig. 1 is the overall structure schematic diagram of the comprehensive testing device for electric tools of the present invention.
Fig. 2 is a test chart of the electric tool comprehensive test device of the present invention.
Fig. 3 is a partial structure enlarged view of the electric tool comprehensive testing device of the present invention.
Fig. 4 is an enlarged view of a in fig. 1 of the electric tool comprehensive testing apparatus of the present invention.
Fig. 5 is a cross-sectional view of a baffle of the electric tool comprehensive testing device of the present invention.
In the figure: 1. a pillar; 2. a cabinet body; 3. a universal wheel; 4. a storage cabinet; 5. an infrared sensor; 6. a laser inductive switch; 7. a cylinder; 8. a fixing plate; 9. a limiting rod; 10. moving the plate; 11. a test box; 12. a circular hole; 13. a test rod; 14. a limiting plate; 15. a mold; 16. a rodless cylinder; 17. a limiting round rod; 18. a limiting circular groove; 19. a grip; 20. a chute; 21. a first groove; 22. a baffle plate; 23. a second groove; 24. a connecting shaft; 25. a telescopic rod; 26. a sleeve; 27. a spring; 28. a heat dissipation port; 29. a convex plate; 30. a cylinder; 31. a bump; 32. a groove III; 33. a liquid crystal control panel; 34. a bolt; 35. and a limiting cylinder.
Detailed Description
In order to make the technical means, creation features, achievement purposes and functions of the present invention easy to understand, the present invention is further described below with reference to the following embodiments.
Example 1
As shown in fig. 1-5, an electric tool comprehensive test device comprises four groups of pillars 1 and a cabinet 2, wherein the four groups of pillars 1 are located at the upper end of the cabinet 2, a rodless cylinder 16 and two groups of limiting round rods 17 are arranged on the upper surface of the cabinet 2, the rodless cylinder 16 is located between the two groups of limiting round rods 17, a limiting plate 14 is connected to the upper end of the rodless cylinder 16, a limiting round groove 18 is fixedly connected to the lower end of the limiting plate 14, a mold 15 is arranged at the upper end of the limiting plate 14, handles 19 are arranged at two ends of the mold 15, convex plates 29 are arranged on two sides of the mold 15, two groups of sliding grooves 20 and a groove 21 are formed in the upper end of the limiting plate 14, the groove 21 is located on one side of the sliding groove 20, the mold 15 slides on the sliding grooves 20 through the convex plates 29 and.
Connecting shafts 24 are arranged on two sides of the baffle 22, a second groove 23 is formed in the lower end of the baffle 22, a telescopic rod 25 is arranged at the top end of the second groove 23, a sleeve 26 is connected to the lower end of the telescopic rod 25, a spring 27 is arranged on the outer side of the telescopic rod 25, and the lower end of the sleeve 26 is fixedly connected in the second groove 23.
One end of the spring 27 is fixedly connected with the top end of the second groove 23, the lower end of the spring 27 is fixedly connected with the upper end of the sleeve 26, and the upper end of the baffle plate 22 is flush with the upper end of the limiting plate 14.
By adopting the technical scheme: the arranged baffle 22 can fix the die 15 on the limiting plate 14, the limiting plate 14 is placed corresponding to the traditional die 15, the die 15 is not easy to move during testing, the condition that the testing rod 13 cannot contrast with a testing hole during testing is avoided, debugging time is favorably reduced, working efficiency is improved, when the testing device is used, the baffle 22 is pressed, the baffle 22 is used through the cooperation of the telescopic rod 25 and the sleeve 26, the baffle 22 is pressed into the first groove 21, the die 15 is slidably installed on the sliding groove 20 of the limiting plate 14 through the convex plate 29, then the baffle 22 is loosened, the baffle 22 is upwards popped out under the action of the spring 27, the die 15 can be fixed on the limiting plate 14, the die 15 is not easy to move during testing, the condition that the testing rod 13 cannot contrast with the testing hole during testing is avoided, meanwhile, when different dies 15 are replaced, different dies 15 can also be fixed, the use area is enlarged, the debugging time is reduced, and the working efficiency is improved.
Example 2
As shown in fig. 1-5, an electric tool comprehensive test device comprises four groups of pillars 1 and a cabinet 2, wherein the four groups of pillars 1 are located at the upper end of the cabinet 2, a rodless cylinder 16 and two groups of limiting round rods 17 are arranged on the upper surface of the cabinet 2, the rodless cylinder 16 is located between the two groups of limiting round rods 17, a limiting plate 14 is connected to the upper end of the rodless cylinder 16, a limiting round groove 18 is fixedly connected to the lower end of the limiting plate 14, a mold 15 is arranged at the upper end of the limiting plate 14, handles 19 are arranged at two ends of the mold 15, convex plates 29 are arranged on two sides of the mold 15, two groups of sliding grooves 20 and a groove 21 are formed in the upper end of the limiting plate 14, the groove 21 is located on one side of the sliding groove 20, the mold 15 slides on the sliding grooves 20 through the convex plates 29 and.
Four sets of limiting rods 9 are fixedly connected to the upper end of the cabinet body 2, a fixed plate 8 is arranged at the top ends of the four sets of limiting rods 9, a movable plate 10 is connected to the outer surface of the four sets of limiting rods 9, cylinders 30 are arranged on four sides of the movable plate 10, the four sets of limiting rods 9 penetrate through the cylinders 30 on one side of the movable plate 10 and are slidably connected with the movable plate 10, an air cylinder 7 is arranged at the upper end of the fixed plate 8, a piston rod at one end of the air cylinder 7 penetrates through the fixed plate 8 and is fixedly connected with the movable plate 10, two sets of bumps 31 are arranged at the lower end of the movable plate 10, a test box 11 is arranged on the lower side of the movable plate 10, three grooves 32 are arranged on two sides of the test box 11, the movable plate 10 is movably connected with the test box 11 through the bumps 31 and the three, bolts 34 are arranged on one sides of the four groups of limiting cylinders 35, and the bolts 34 penetrate through one sides of the limiting cylinders 35 and are fixedly connected with the limiting rods 9.
The four groups of limiting rods 9 are positioned at the inner sides of the four groups of supporting columns 1, the upper ends of the four groups of supporting columns 1 are provided with liquid crystal control panels 33, the liquid crystal control panels 33 are positioned at the upper ends of the fixed plates 8, and the limiting cylinders 35 are positioned at the lower ends of the movable plates 10.
By adopting the technical scheme: the gag lever post 9 and the movable plate 10 that set up can make test box 11 lapse, avoided with manual operation test, and simultaneously, work efficiency has been increased, the manpower has been saved, when using, through controlling liquid crystal control panel 33, make cylinder 7 begin to operate, the piston rod downstream of cylinder 7 makes movable plate 10 lapse, four sets of gag lever posts 9 run through movable plate 10 and drum 30 sliding connection, when can making movable plate 10 lapse, do not take place the skew, and simultaneously, also can replace the manual control, and the manpower is saved, and work efficiency is increased.
Example 3
As shown in fig. 1-5, an electric tool comprehensive test device comprises four groups of pillars 1 and a cabinet 2, wherein the four groups of pillars 1 are located at the upper end of the cabinet 2, a rodless cylinder 16 and two groups of limiting round rods 17 are arranged on the upper surface of the cabinet 2, the rodless cylinder 16 is located between the two groups of limiting round rods 17, a limiting plate 14 is connected to the upper end of the rodless cylinder 16, a limiting round groove 18 is fixedly connected to the lower end of the limiting plate 14, a mold 15 is arranged at the upper end of the limiting plate 14, handles 19 are arranged at two ends of the mold 15, convex plates 29 are arranged on two sides of the mold 15, two groups of sliding grooves 20 and a groove 21 are formed in the upper end of the limiting plate 14, the groove 21 is located on one side of the sliding groove 20, the mold 15 slides on the sliding grooves 20 through the convex plates 29 and.
One side of each of the two groups of pillars 1 is provided with an infrared sensor 5, the lower end of the cabinet body 2 is provided with a universal wheel 3, and the cabinet body 2 further comprises a storage cabinet 4; two groups of laser inductive switches 6 are arranged at the upper end of the cabinet body 2, and the two groups of laser inductive switches 6 are respectively positioned at one side of the two groups of limiting round rods 17; the cabinet body 2 is provided with a plurality of groups of heat dissipation ports 28 on both sides.
By adopting the technical scheme: the bolt 34 and the spacing drum 35 that set up, can control the descending distance of test box 11, thereby avoided test rod 13 to damage because of decurrent power is too big, be favorable to saving the operation fund, when using, move spacing drum 35 to suitable position on gag lever post 9, and run through the external fixation of spacing drum 35 with gag lever post 9 through bolt 34, movable plate 10 that can make the piston rod fixed connection of cylinder 7 one end moves down, when driving test box 11 and moving down, spacing drum 35 can prescribe a limit to the position that movable plate 10 descends, thereby avoided test rod 13 to damage because of decurrent power is too big, be favorable to saving the operation fund, and is practical.
It should be noted that, the utility model relates to an electric tool comprehensive testing device, when in use, firstly, the device is moved to a working area through the universal wheel 3, the baffle 22 is pressed, the baffle 22 is used through the cooperation of the telescopic rod 25 and the sleeve 26, the baffle 22 is pressed into the first groove 21, the mold 15 is slidably mounted on the chute 20 of the limiting plate 14 through the convex plate 29, then, the baffle 22 is released, the baffle 22 is popped up under the action of the spring 27, the mold 15 can be fixed on the limiting plate 14, the mold 15 is not easy to move during testing, the condition that the test hole can not be compared by the test rod 13 during testing is avoided, meanwhile, when different molds 15 are replaced, different molds 15 can be fixed, the use area is enlarged, the debugging time is reduced, the working efficiency is increased, different molds 15 can be placed in the storage cabinet 4, the laser induction switch 6 is operated by two hands, the safety of workers can be protected, the infrared sensor 5 can detect a working area, when the laser induction switch is touched by mistake, an alarm can be given, the liquid crystal control panel 33 is operated, the air cylinder 7 starts to operate, the piston rod of the air cylinder 7 moves downwards, the moving plate 10 moves downwards, the four groups of limiting rods 9 penetrate through the moving plate 10 and are connected with the cylinder 30 in a sliding mode, when the moving plate 10 moves downwards, deviation does not occur, meanwhile, manual operation can be replaced, manpower is saved, working efficiency is improved, the limiting cylinder 35 is moved to a proper position on the limiting rod 9 and penetrates through the limiting cylinder 35 through the bolt 34 and is fixed with the outer surface of the limiting rod 9, the moving plate 10 fixedly connected with the piston rod at one end of the air cylinder 7 can move downwards, when the test box 11 is driven to move downwards, the position of the moving plate 10 can be limited by the limiting cylinder 35, thereby avoided the test rod 13 to damage because of too big because of the downward force, be favorable to saving the operation fund, comparatively practical.
The basic principles and the main features of the invention and the advantages of the invention have been shown and described above. It will be understood by those skilled in the art that the present invention is not limited to the above embodiments, and that the foregoing embodiments and descriptions are provided only to illustrate the principles of the present invention without departing from the spirit and scope of the present invention. The scope of the invention is defined by the appended claims and equivalents thereof.

Claims (8)

1. The utility model provides an electric tool integrated test equipment, includes four groups pillar (1) and the cabinet body (2), four groups pillar (1) are located the upper end of the cabinet body (2), its characterized in that: the upper surface of the cabinet body (2) is provided with a rodless cylinder (16) and two groups of limiting round rods (17), the rodless cylinder (16) is positioned between the two groups of limiting round rods (17), the upper end of the rodless cylinder (16) is connected with a limiting plate (14), the lower end of the limiting plate (14) is fixedly connected with a limiting circular groove (18), the upper end of the limiting plate (14) is provided with a die (15), handles (19) are arranged at two ends of the die (15), convex plates (29) are arranged at two sides of the die (15), the upper end of the limit plate (14) is provided with two groups of sliding chutes (20) and a first groove (21), a recess (21) is located one side of spout (20), mould (15) slide and limiting plate (14) sliding connection on spout (20) through flange (29), two sets of recess (21) both ends all are provided with baffle (22).
2. The electric tool comprehensive test device according to claim 1, characterized in that: the utility model discloses a telescopic link, including baffle (22), No. two recess (23) have been seted up to the both sides of baffle (22) and have been provided with connecting axle (24), No. two recess (23) have been seted up to the lower extreme of baffle (22), the top of No. two recess (23) is provided with telescopic link (25), the lower extreme of telescopic link (25) is connected with sleeve (26), the outside of telescopic link (25) is provided with spring (27), the lower extreme fixed connection of sleeve (26) is in No. two recess (23).
3. The electric tool comprehensive test device according to claim 1, characterized in that: the upper end of the cabinet body (2) is fixedly connected with four groups of limiting rods (9), the top ends of the four groups of limiting rods (9) are provided with a fixed plate (8), the outer surface of the four groups of limiting rods (9) is connected with a movable plate (10), four sides of the movable plate (10) are respectively provided with a cylinder (30), the four groups of limiting rods (9) penetrate through the cylinders (30) on one side of the movable plate (10) and are in sliding connection with the movable plate (10), the upper end of the fixed plate (8) is provided with a cylinder (7), a piston rod at one end of the cylinder (7) penetrates through the fixed plate (8) and is fixedly connected with the movable plate (10), the lower end of the movable plate (10) is provided with two groups of lugs (31), the lower side of the movable plate (10) is provided with a test box (11), two sides of the test box (11) are provided with three grooves (32), and the movable plate (10), round holes (12) have been seted up at the both ends of test box (11), the lower extreme of test box (11) is provided with test rod (13), four groups spacing cylinder (35) all are provided with to the circumference surface of gag lever post (9), four groups one side of spacing cylinder (35) all is provided with bolt (34), bolt (34) run through one side and gag lever post (9) fixed connection of spacing cylinder (35).
4. The electric tool comprehensive test device according to claim 2, characterized in that: the top fixed connection of the one end of spring (27) and No. two recess (23), the lower extreme of spring (27) and the upper end fixed connection of sleeve (26), the upper end parallel and level of the upper end of baffle (22) and limiting plate (14).
5. The electric tool comprehensive test device according to claim 1, characterized in that: two sets of one side of pillar (1) is provided with infrared ray sensor (5) respectively, the lower extreme of the cabinet body (2) is provided with universal wheel (3), the cabinet body (2) still includes locker (4).
6. The electric tool comprehensive test device according to claim 3, characterized in that: the four groups of limiting rods (9) are located on the inner sides of the four groups of supporting columns (1), liquid crystal control panels (33) are arranged at the upper ends of the four groups of supporting columns (1), the liquid crystal control panels (33) are located at the upper ends of the fixed plates (8), and the limiting cylinders (35) are located at the lower ends of the movable plates (10).
7. The electric tool comprehensive test device according to claim 1, characterized in that: the upper end of the cabinet body (2) is provided with two groups of laser induction switches (6), and the two groups of laser induction switches (6) are respectively positioned on one side of two groups of limiting round rods (17).
8. The electric tool comprehensive test device according to claim 1, characterized in that: a plurality of groups of heat dissipation ports (28) are arranged on two sides of the cabinet body (2).
CN202020196269.2U 2020-02-23 2020-02-23 Electric tool comprehensive test equipment Active CN211291534U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020196269.2U CN211291534U (en) 2020-02-23 2020-02-23 Electric tool comprehensive test equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020196269.2U CN211291534U (en) 2020-02-23 2020-02-23 Electric tool comprehensive test equipment

Publications (1)

Publication Number Publication Date
CN211291534U true CN211291534U (en) 2020-08-18

Family

ID=72021454

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202020196269.2U Active CN211291534U (en) 2020-02-23 2020-02-23 Electric tool comprehensive test equipment

Country Status (1)

Country Link
CN (1) CN211291534U (en)

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