CN215184972U - Terminal pin inserting device with high production efficiency - Google Patents

Terminal pin inserting device with high production efficiency Download PDF

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Publication number
CN215184972U
CN215184972U CN202121243916.1U CN202121243916U CN215184972U CN 215184972 U CN215184972 U CN 215184972U CN 202121243916 U CN202121243916 U CN 202121243916U CN 215184972 U CN215184972 U CN 215184972U
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China
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rod
casing
bearing
welding
connecting plate
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CN202121243916.1U
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Chinese (zh)
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杭春华
高峰峰
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Suzhou Harmontronics Automation Technology Co Ltd
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Suzhou Harmontronics Automation Technology Co Ltd
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Abstract

The utility model provides a terminal pin device with high production efficiency, which comprises a pin component and an operation component, wherein the upper surface of the pin component is provided with the operation component, the pin component comprises a first shell, a first groove, a first connecting plate, a protective tube, a connecting block, a Z-shaped connecting rod, a push plate, a limiting plate, a first rod body, a second connecting plate and a spring, the inner side wall of the first shell is provided with the first groove, the inner side wall of the first groove is symmetrically laminated with the two first connecting plates, the first rod body connected by the second connecting plate is driven by the Z-shaped connecting rod arranged on the connecting block through the push plate to carry out pin inserting work, the pushing distance for connecting the push plate by the Z-shaped connecting rod is a certain value, thereby ensuring the distance of the terminal pins, and realizing the stable operation and the guiding and limiting functions of the first rod body by utilizing the second connecting plate and the spring, therefore, the pin inserting work can be accurately carried out, and the work and production efficiency is improved.

Description

Terminal pin inserting device with high production efficiency
Technical Field
The utility model relates to a terminal pin device technical field specifically is a terminal pin device that production efficiency is high.
Background
The terminal is a fitting product for realizing electrical connection, is industrially divided into the category of connectors, and the use amount of the terminal gradually rises along with the increasing industrial automation degree and the stricter and more accurate industrial control requirement, and because many products need to face smaller and portable development, certain requirements on the terminal spacing, the appearance size and the height are required, so that higher requirements are provided for the development and application of the connector towards miniaturization and high density, and obviously, the traditional working mode cannot meet the current processing requirement;
when the existing terminal pin device works through mechanical equipment, the terminal specification of the existing demand is small, the existing mechanical guide pin easily causes deviation, the material is damaged, the existing machinery is connected with a conveying belt through a cam shaft directly, the conveying belt is easy to slide outside the conveying belt, and the transmission drive cannot be stably conducted, so that the operation of the device is influenced, the production efficiency is reduced, and the terminal pin device with high production efficiency is provided.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a terminal pin device that production efficiency is high to solve the problem that proposes in the above-mentioned background art.
In order to achieve the above object, the utility model provides a following technical scheme: a terminal pin inserting device with high production efficiency comprises a pin inserting assembly and an operating assembly, wherein the operating assembly is arranged on the upper surface of the pin inserting assembly;
the contact pin assembly comprises a first shell, a first groove, a first connecting plate, a protective pipe, a connecting block, a Z-shaped connecting rod, a push plate, a limiting plate, a first rod body, a second connecting plate and a spring;
first recess has been seted up to the inside wall of first casing, the inside wall symmetry laminating of first recess has two first connecting plates, two the adjacent one side of first connecting plate is equipped with the protecting tube, two the adjacent one side of first connecting plate just is located the inside symmetric welding of protecting tube has two connecting blocks, one the lower surface welding of connecting block has Z type connecting rod, the one end welding that a connecting block was kept away from to Z type connecting rod has the push pedal, the lower surface laminating of push pedal is in the upper surface of another connecting block.
In some embodiments, the connecting blocks are welded with limiting plates on the upper surfaces, the first rod bodies are welded on the lower surfaces of the first connecting plates, the limiting plates are arranged to limit the push plate to operate, and the connected first rod bodies are used for pushing the contact pins to work.
In some embodiments, a second connecting plate is welded on the inner side wall of the first groove and below one first connecting plate, a spring is welded on the upper surface of the second connecting plate, the outer side wall of the first rod body is sleeved with the inner side wall of the spring, the outer side wall of the first rod body penetrates through the upper surface of the second connecting plate, the spring is received by the second connecting plate, and the spring is arranged to enable the first rod body connected with the spring to perform uniform vertical motion.
In some embodiments, the running assembly comprises a second housing, a motor, a first bearing, a cam shaft, a first sleeve, a second groove, a second bearing, a knob, a connecting screw sleeve, a pad, a second rod, a second sleeve, an upright rod, a third bearing and a conveyor belt;
the upper surface welding of first casing has the second casing, the upper surface welding of second casing has first bearing, the inner circle welding of first bearing has the motor, the output shaft welding of motor has the camshaft, drives the camshaft of connecting through the motor and operates.
In some embodiments, a second groove is formed in the inner side wall of the first housing, the outer side wall of the camshaft sequentially penetrates through the inner side walls of the second housing, the first housing and the second groove, a second bearing is welded to the inner bottom wall of the second groove, an inner ring of the second bearing is welded to the outer side wall of the camshaft, and the second groove is used for accommodating the camshaft.
In some embodiments, the knob has been run through to the upper surface of second casing, the lateral wall threaded connection of knob has the connection swivel nut, the inside wall of connecting the swivel nut is equipped with the protection pad, connect the inside wall of swivel nut and be located the below threaded connection of knob has the second body of rod, the lateral wall of the second body of rod runs through in the inside wall of second casing and first casing in proper order, the lower surface of the second body of rod welds in the upper surface of another first connecting plate, can carry out manual operation through the knob, and the connection swivel nut that sets up is used for the linking of the knob with the second body of rod.
In some embodiments, an upright rod is welded to the inner top wall of the second casing, and a third bearing is welded to the outer side wall of the upright rod and connected with the third bearing through the upright rod, and the third bearing is used for connecting the conveyor belt.
In some embodiments, the outer side walls of the camshaft and the second rod body are respectively welded with a first sleeve and a second sleeve, the outer side wall of the first sleeve and the outer side wall of the second sleeve are attached with a conveyor belt, the outer ring of the third bearing is attached to the inner side wall of the conveyor belt, friction of the conveyor belt on the camshaft and the second rod body is avoided through the first sleeve and the second sleeve, and the third bearing ensures stable operation of the conveyor belt.
Compared with the prior art, the beneficial effects of the utility model are that:
the first rod body connected with the second connecting plate is driven by the Z-shaped connecting rod arranged on one connecting block through the push plate to perform pin inserting work, the pushing distance of the Z-shaped connecting rod connected with the push plate is a certain value, so that the distance between terminal pins is ensured, and the second connecting plate and the spring are used for realizing the stable operation and guiding and limiting functions of the first rod body, so that the pin inserting work can be accurately performed, and the work and production efficiency is improved;
two, the conveyer belt that can effectively avoid the installation through the first sleeve pipe that sets up and second sleeve pipe rubs and slides in the outside of the camshaft with the second body of rod to this has ensured transmission drive's stability, and utilizes the third bearing of setting to further guarantee the steady operation of conveyer belt, has effectively ensured the device operation, has improved production efficiency.
Drawings
FIG. 1 is a block diagram of the present invention;
FIG. 2 is a cross-sectional view of the present invention;
FIG. 3 is a view showing the internal structure of the protection tube of the present invention;
fig. 4 is an internal structure view of the connection screw sleeve of the present invention.
In the figure: 1. a pin assembly; 101. a first housing; 11. a first groove; 12. a first connecting plate; 13. a protective tube; 14. connecting blocks; 15. a Z-shaped connecting rod; 16. pushing the plate; 17. a limiting plate; 18. a first rod body; 19. a second connecting plate; 20. a spring; 3. operating the component; 301. a second housing; 31. a motor; 32. a first bearing; 33. a camshaft; 34. a first sleeve; 35. a second groove; 36. a second bearing; 37. a knob; 38. connecting a threaded sleeve; 39. a pad; 40. a second rod body; 41. a second sleeve; 42. a vertical pole body; 43. a third bearing; 44. and (4) a conveyor belt.
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 work belong to the protection scope of the present invention.
Examples
Referring to fig. 1-4, the present invention provides a technical solution: a terminal pin device with high production efficiency comprises a pin component 1 and an operation component 3, wherein the operation component 3 is arranged on the upper surface of the pin component 1;
the pin assembly 1 comprises a first shell 101, a first groove 11, a first connecting plate 12, a protective pipe 13, a connecting block 14, a Z-shaped connecting rod 15, a push plate 16, a limiting plate 17, a first rod body 18, a second connecting plate 19 and a spring 20;
first recess 11 has been seted up to the inside wall of first casing 101, the inside wall symmetry laminating of first recess 11 has two first connecting plates 12, two adjacent one sides of first connecting plate 12 are equipped with protecting tube 13, two adjacent one sides of first connecting plate 12 and the inside symmetry welding that is located protecting tube 13 have two connecting blocks 14, the lower surface welding of a connecting block 14 has Z type connecting rod 15, the one end welding that a connecting block 14 was kept away from to Z type connecting rod 15 has push pedal 16, the lower surface laminating of push pedal 16 fits the upper surface of another connecting block 14.
In one embodiment, a limiting plate 17 is welded on the upper surface of the other connecting block 14, a first rod 18 is welded on the lower surface of the first connecting block 12, the limiting plate 17 is arranged to limit the push plate 16 to move, and the connected first rod 18 is used for pushing the contact pin to work.
In one embodiment, a second connecting plate 19 is welded on the inner side wall of the first groove 11 and below one first connecting plate 12, a spring 20 is welded on the upper surface of the second connecting plate 19, the outer side wall of the first rod 18 is sleeved with the inner side wall of the spring 20, the outer side wall of the first rod 18 penetrates through the upper surface of the second connecting plate 19, the spring 20 is used for bearing the spring 20 through the arranged second connecting plate 19, and the spring 20 is arranged to realize that the first rod 18 connected with the spring 20 performs uniform vertical motion by utilizing the elastic performance of the spring 20.
In one embodiment, the operation assembly 3 includes a second housing 301, a motor 31, a first bearing 32, a cam shaft 33, a first sleeve 34, a second groove 35, a second bearing 36, a knob 37, a connecting screw 38, a pad 39, a second rod 40, a second sleeve 41, an upright rod 42, a third bearing 43 and a conveyor belt 44;
the upper surface welding of first casing 101 has second casing 301, and the upper surface welding of second casing 301 has first bearing 32, and the inner circle welding of first bearing 32 has motor 31, and the output shaft welding of motor 31 has camshaft 33, and through the motor 31 who sets up, utilizes its output shaft to drive the camshaft 33 of connecting and operate.
In an embodiment, the inner side wall of the first casing 101 is provided with a second groove 35, the outer side wall of the camshaft 33 sequentially penetrates through the inner side walls of the second casing 301, the first casing 101 and the second groove 35, the second bearing 36 is welded to the inner bottom wall of the second groove 35, the inner ring of the second bearing 36 is welded to the outer side wall of the camshaft 33, and the second groove 35 is used for placing the camshaft 33.
In one embodiment, a knob 37 penetrates through the upper surface of the second housing 301, a connecting screw 38 is screwed on the outer side wall of the knob 37, a protection pad 39 is disposed on the inner side wall of the connecting screw 38, a second rod 40 is screwed on the inner side wall of the connecting screw 38 and below the knob 37, the outer side wall of the second rod 40 sequentially penetrates through the inner side walls of the second housing 301 and the first housing 101, the lower surface of the second rod 40 is welded on the upper surface of the other first connecting plate 12, manual operation can be performed when a problem occurs in a driving device through the arranged knob 37, the arranged connecting screw 38 is used for connecting the knob 37 and the second rod 40, and the protection pad 39 disposed inside the connecting screw 38 prevents the outer sides of the knob 37 and the connecting screw 38 from friction.
In one embodiment, the upright rod 42 is welded to the inner top wall of the second casing 301, the third bearing 43 is welded to the outer side wall of the upright rod 42, the upright rod 42 is used for connecting the third bearing 43, and the third bearing 43 is used for connecting the conveyor belt 44.
In one embodiment, the first sleeve 34 and the second sleeve 41 are welded to the outer side walls of the cam shaft 33 and the second rod 40, the conveyor belt 44 is attached to the outer side walls of the first sleeve 34 and the second sleeve 41, the outer ring of the third bearing 43 is attached to the inner side wall of the conveyor belt 44, the conveyor belt 44 prevented from being installed by the first sleeve 34 and the second sleeve 41 is rubbed and slid on the outer sides of the cam shaft 33 and the second rod 40, and the third bearing 43 is arranged to ensure stable operation of the conveyor belt 44.
In one embodiment, a switch set for controlling the on/off of the motor 31 is installed outside the first casing 101, and the switch set is connected to the external commercial power to supply power to the motor 31.
In this embodiment: the motor 31 is model number YVP 315S.
Working principle or structural principle: when in use, a worker turns on the switch group to start the motor 31, the output shaft of the motor 31 drives the cam shaft 33 connected with the motor to rotate, the conveyor belt 44 outside the first sleeve 34, the second sleeve 41 and the third bearing 43 which are connected with the cam shaft 33 rotates by virtue of the rotation of the cam shaft 33, the friction and the sliding of the conveyor belt 44 at the outer sides of the cam shaft 33 and the second rod body 40 are effectively avoided by virtue of the arranged first sleeve 34 and the second sleeve 41, the running stability of the conveyor belt 44 is improved by virtue of the third bearing 43, the second rod body 40 connected with the connecting screw sleeve 38 is linked by virtue of the rotation of the second rod body 40, the Z-shaped connecting rod 15 connected with the Z-shaped connecting rod 15 is driven to rotate by virtue of the rotation of the second rod body 40, so that the push plate 16 on the Z-shaped connecting rod 15 pushes the first rod body 18 connected with the lower part of the first connecting plate 12, the running distance of the push plate 16 pushed by virtue of the arranged limiting plate 17, through the second connecting plate 19 and the spring 20 that set up, the pin degree of depth when can realizing the steady operation of the first body of rod 18 and the pin on the one hand, on the other hand has realized the spacing effect of direction to the pin work is carried out to the accuracy, with this improvement work and production efficiency.
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 (8)

1. The utility model provides a terminal contact pin device that production efficiency is high, includes contact pin subassembly (1) and operation subassembly (3), its characterized in that: the upper surface of the pin inserting assembly (1) is provided with an operating assembly (3);
the contact pin assembly (1) comprises a first shell (101), a first groove (11), a first connecting plate (12), a protective pipe (13), a connecting block (14), a Z-shaped connecting rod (15), a push plate (16), a limiting plate (17), a first rod body (18), a second connecting plate (19) and a spring (20);
first recess (11) have been seted up to the inside wall of first casing (101), the inside wall symmetry laminating of first recess (11) has two first connecting plates (12), two the adjacent one side of first connecting plate (12) is equipped with protecting tube (13), two the adjacent one side of first connecting plate (12) just is located the inside symmetric welding of protecting tube (13) has two connecting blocks (14), one the lower surface welding of connecting block (14) has Z type connecting rod (15), the one end welding that a connecting block (14) was kept away from in Z type connecting rod (15) has push pedal (16), the lower surface laminating of push pedal (16) is in the upper surface of another connecting block (14).
2. The terminal pin device with high production efficiency as claimed in claim 1, wherein: the upper surface of the other connecting block (14) is welded with a limiting plate (17), and the lower surface of the other first connecting plate (12) is welded with a first rod body (18).
3. The terminal pin device with high production efficiency as claimed in claim 2, wherein: the inside wall of first recess (11) just is located one the below welding of first connecting plate (12) has second connecting plate (19), the last skin weld of second connecting plate (19) has spring (20), the lateral wall of the first body of rod (18) is located to the inside wall cover of spring (20), the lateral wall of the first body of rod (18) runs through in the upper surface of second connecting plate (19).
4. The terminal pin device with high production efficiency as claimed in claim 1, wherein: the operation assembly (3) comprises a second shell (301), a motor (31), a first bearing (32), a cam shaft (33), a first sleeve (34), a second groove (35), a second bearing (36), a knob (37), a connecting threaded sleeve (38), a protection pad (39), a second rod body (40), a second sleeve (41), an upright rod body (42), a third bearing (43) and a conveyor belt (44);
the upper surface welding of first casing (101) has second casing (301), the upper surface welding of second casing (301) has first bearing (32), the inner circle welding of first bearing (32) has motor (31), the output shaft welding of motor (31) has camshaft (33).
5. The terminal pin device with high production efficiency as set forth in claim 4, wherein: second recess (35) have been seted up to the inside wall of first casing (101), the lateral wall of camshaft (33) runs through in the inside wall of second casing (301), first casing (101) and second recess (35) in proper order, the welding of the inside diapire of second recess (35) has second bearing (36), the inner circle of second bearing (36) welds in the lateral wall of camshaft (33).
6. The terminal pin device with high production efficiency as claimed in claim 5, wherein: the upper surface of second casing (301) runs through knob (37), the lateral wall threaded connection of knob (37) has connection swivel nut (38), the inside wall of connecting swivel nut (38) is equipped with protection pad (39), the inside wall of connecting swivel nut (38) just is located the below threaded connection of knob (37) has the second body of rod (40), the lateral wall of the second body of rod (40) runs through in the inside wall of second casing (301) and first casing (101) in proper order, the lower surface of the second body of rod (40) welds in the upper surface of another first connecting plate (12).
7. The terminal pin device with high production efficiency as set forth in claim 4, wherein: the welding of the inside roof of second casing (301) has the upright body of rod (42), the welding of the lateral wall of the upright body of rod (42) has third bearing (43).
8. The terminal pin device with high production efficiency as claimed in claim 7, wherein: camshaft (33) with first sleeve pipe (34) and second sleeve pipe (41) have been welded respectively to the lateral wall of the second body of rod (40), first sleeve pipe (34) with the lateral wall laminating of second sleeve pipe (41) has conveyer belt (44), the outer lane laminating of third bearing (43) is in the inside wall of conveyer belt (44).
CN202121243916.1U 2021-06-04 2021-06-04 Terminal pin inserting device with high production efficiency Active CN215184972U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202121243916.1U CN215184972U (en) 2021-06-04 2021-06-04 Terminal pin inserting device with high production efficiency

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202121243916.1U CN215184972U (en) 2021-06-04 2021-06-04 Terminal pin inserting device with high production efficiency

Publications (1)

Publication Number Publication Date
CN215184972U true CN215184972U (en) 2021-12-14

Family

ID=79390163

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202121243916.1U Active CN215184972U (en) 2021-06-04 2021-06-04 Terminal pin inserting device with high production efficiency

Country Status (1)

Country Link
CN (1) CN215184972U (en)

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