CN216369857U - Moving platform for probe riveting machine - Google Patents

Moving platform for probe riveting machine Download PDF

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Publication number
CN216369857U
CN216369857U CN202122480742.7U CN202122480742U CN216369857U CN 216369857 U CN216369857 U CN 216369857U CN 202122480742 U CN202122480742 U CN 202122480742U CN 216369857 U CN216369857 U CN 216369857U
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China
Prior art keywords
adjusting block
block
probe
adjusting
adjuster
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Active
Application number
CN202122480742.7U
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Chinese (zh)
Inventor
钱春华
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Suzhou Dick Microelectronics Co ltd
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Suzhou Dick Microelectronics Co ltd
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Priority to CN202122480742.7U priority Critical patent/CN216369857U/en
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Abstract

The utility model discloses a moving platform for a probe riveting machine, which comprises a supporting upright post, wherein an XY-direction adjusting device is arranged on the supporting upright post, the XY-direction adjusting device consists of a lower adjusting block, an X-direction adjusting block, a Y-direction adjusting block and an upper adjusting block which are sequentially arranged from bottom to top, the lower adjusting block and the upper adjusting block are respectively connected with the supporting upright post and a Z-direction adjusting seat, the X-direction adjusting block is connected with a spiral micrometer X-direction adjuster, the lower adjusting block is connected with the spiral micrometer Y-direction adjuster, an air cylinder is arranged on the Z-direction adjusting seat and is connected with a pressure rod, the pressure rod is connected with the Z-direction adjusting seat in a sliding manner, and the bottom of the pressure rod is connected with a pressure head, so that the assembling efficiency of a probe can be effectively improved.

Description

Moving platform for probe riveting machine
Technical Field
The utility model relates to the technical field of probe assembly, in particular to a movable platform for a probe riveting machine.
Background
The probe comprises the calandria, the spring of arranging in the calandria and stretch into the syringe needle in the calandria by calandria both ends, and the both ends of calandria need carry out the pressure after the syringe needle stretches into and rivet the processing in order to avoid the syringe needle to pop out the calandria. In the semiconductor spring probe manufacturing industry, assembly is a very important link, and how to complete assembly quickly and efficiently affects the productivity and production cost of a manufacturing plant.
The equipment that current probe pressure riveting mode adopted is pressed and is riveted inefficiency, and can't convenient, accurate pressure head position of adjusting.
SUMMERY OF THE UTILITY MODEL
In order to overcome the defects, the utility model aims to provide a moving platform for a probe riveting machine, which can effectively improve the assembly efficiency of a probe.
In order to achieve the above purposes, the utility model adopts the technical scheme that: the utility model provides a moving platform for probe riveter, includes the support post, be provided with XY to adjusting device on the support post, XY is to adjusting device by from the bottom up lower monoblock, X to the adjusting block, Y to the adjusting block and go up the adjusting block that place in proper order and constitute, lower monoblock and last adjusting block are connected with support post and Z to the adjustment seat respectively, X is connected with spiral micrometering X to the adjusting block, lower monoblock is connected with spiral micrometering Y to the adjuster, Z is provided with cylinder and pressure bar connection on to the adjustment seat, depression bar and Z are to adjustment seat sliding connection, the bottom of depression bar is connected with the pressure head.
Furthermore, an X-direction positioning block is arranged on the upper adjusting block, and the end part of the spiral micrometer X-direction adjuster is positioned on one side of the X-direction positioning block.
Furthermore, a Y-direction positioning block is arranged on the Y-direction adjusting block, and the end part of the spiral micrometer Y-direction adjuster is positioned on one side of the Y-direction positioning block.
Further, Z is to the adjustment seat by mount pad, extension rod, fixing base and cavity cylinder constitution, the mount pad is connected with last adjusting block, the extension rod both ends are connected with mount pad and fixing base respectively, the cavity cylinder sets up in fixing base one side, the cylinder sets up in the fixing base back, the depression bar runs through the cavity cylinder and passes through the connecting block with the piston rod of cylinder and be connected.
Furthermore, a stabilizing block is arranged between the mounting seat and the upper adjusting block.
Further, the bottom of the pressure rod is sleeved with a connecting sleeve, the end part of the pressure rod is located in the connecting sleeve, a tightening bolt is arranged on one side of the connecting sleeve, the end part of the tightening bolt penetrates through the connecting sleeve and the pressure rod is abutted, and the top of the pressure head is connected with the connecting sleeve.
Compared with the prior art, the utility model has the beneficial effects that: carry out the removal of pressure head through XY to the cooperation of adjusting device and cylinder to realize the high-efficient removal of pressure head, simultaneously the micrometer X is to adjuster and X to the cooperation of locating piece, micrometer Y is to adjuster and the cooperation of Y to the locating piece to the micrometer, can range finding to the removal of pressure head, with the accurate counterpoint of realization pressure head.
Drawings
FIG. 1 is a schematic structural view of the present invention;
FIG. 2 is a schematic structural view of an XY-direction adjusting device;
FIG. 3 is a schematic structural view of an XY-direction adjusting device;
fig. 4 is a schematic structural diagram of the present invention.
In the figure:
1-supporting a column; 2-XY direction adjusting means; 21-down regulating the monolith; a 22-X direction adjusting block; a 23-Y direction adjusting block; 24-an upper adjustment block; 3-Z direction adjusting seat; 31-a mounting seat; 32-an extension pole; 33-a fixed seat; 34-a hollow cylinder; 4-a cylinder; 5-a pressure lever; 6-pressing head; 7-helical micrometric X-direction regulator; 8-spiral micrometric Y-direction regulator; 9-X direction positioning blocks; 10-Y direction positioning blocks; 11-connecting blocks; 12-a stabilizing block; 13-connecting sleeve; 14-tightening the bolt.
Detailed Description
The following detailed description of the preferred embodiments of the present invention, taken in conjunction with the accompanying drawings, will make the advantages and features of the utility model easier to understand by those skilled in the art, and thus will clearly and clearly define the scope of the utility model.
Referring to the attached drawings 1-4, a moving platform for a probe riveting machine comprises a supporting upright post 1, wherein an XY-direction adjusting device 2 is arranged on the supporting upright post 1, the XY-direction adjusting device 2 is composed of a lower adjusting block 21, an X-direction adjusting block 22, a Y-direction adjusting block 23 and an upper adjusting block 24 which are sequentially arranged from bottom to top, the lower adjusting block 21 and the upper adjusting block 24 are respectively connected with the supporting upright post 1 and a Z-direction adjusting seat 3, the X-direction adjusting block 22 is connected with a spiral micrometering X-direction adjuster 7, the lower adjusting block 21 is connected with a spiral micrometering Y-direction adjuster 8, an X-direction positioning block 9 is arranged on the upper adjusting block 24, the end of the spiral micrometering X-direction adjuster 7 is positioned on one side of the X-direction positioning block 9, a Y-direction positioning block 10 is arranged on the Y-direction adjusting block 23, and the end of the spiral micrometering Y-direction adjuster 8 is positioned on one side of the Y-direction positioning block 10;
z is to adjusting seat 3 by mount pad 31, extension rod 32, fixing base 33 and cavity cylinder 34 are constituteed, mount pad 31 is connected with last adjusting block 24 through firm piece 12, extension rod 32 both ends are connected with mount pad 31 and fixing base 33 respectively, cavity cylinder 34 sets up in fixing base 33 one side, Z is to being provided with cylinder 4 and cylinder 4 on adjusting seat 3 and set up in the fixing base 33 back, cylinder 4's piston rod passes through connecting block 11 and is connected with depression bar 5, depression bar 5 runs through cavity cylinder 34, depression bar 5 bottom cover is equipped with adapter sleeve 13 and tip and is located adapter sleeve 13, adapter sleeve 13 one side is provided with puller bolt 14, puller bolt 14 tip runs through adapter sleeve 13 and depression bar 5 offsets, adapter sleeve 13 is connected with pressure head 6 top.
The working principle is as follows: the spiral micrometer X-direction adjuster 7 is moved to drive the Z-direction adjusting seat 3 on the spiral micrometer X-direction adjuster to integrally move in the X direction, and the pressure head 6 also moves in the X direction at the same time and can measure the distance through the X-direction positioning block 9;
the spiral micrometer Y-direction adjuster 8 is moved to drive the Z-direction adjusting seat 3 on the spiral micrometer Y-direction adjuster to integrally move in the Y direction, and at the moment, the pressure head 6 also moves in the Y direction at the same time and can measure the distance through the Y-direction positioning block 10;
the pressure head 6 can also drive the pressure rod 5 connected with the pressure rod through the connecting sleeve 13 through the air cylinder 4 to realize Z-direction movement, so that the effect that the position of the pressure head of the probe riveting machine can be accurately aligned and the pressure head can freely move is achieved, and the probe assembling efficiency is improved.
The above embodiments are merely illustrative of the technical concept and features of the present invention, and the present invention is not limited thereto, and any equivalent changes or modifications made according to the spirit of the present invention should be included in the scope of the present invention.

Claims (6)

1. The utility model provides a moving platform for probe riveter, includes support post (1), its characterized in that: be provided with XY on support column (1) to adjusting device (2), XY is to adjusting device (2) by from the bottom up in proper order put down monoblock (21), X to adjusting block (22), Y to adjusting block (23) and go up adjusting block (24) and constitute, down monoblock (21) and last adjusting block (24) are connected with support column (1) and Z respectively to adjusting seat (3), X is connected to adjusting block (22) and spiral micrometering X to adjuster (7), down monoblock (21) and spiral micrometering Y are connected to adjuster (8), Z is provided with cylinder (4) and is connected with depression bar (5) on adjusting seat (3), depression bar (5) and Z are to adjusting seat (3) sliding connection, the bottom of depression bar (5) is connected with pressure head (6).
2. The mobile platform for a probe riveter according to claim 1, wherein: an X-direction positioning block (9) is arranged on the upper adjusting block (24), and the end part of the spiral micrometer X-direction adjuster (7) is positioned on one side of the X-direction positioning block (9).
3. The mobile platform for a probe riveter according to claim 1, wherein: the Y-direction adjusting block (23) is provided with a Y-direction positioning block (10), and the end part of the spiral micrometer Y-direction adjuster (8) is positioned on one side of the Y-direction positioning block (10).
4. The mobile platform for a probe riveter according to claim 1, wherein: z is to adjusting seat (3) by mount pad (31), extension rod (32), fixing base (33) and cavity cylinder (34) constitution, mount pad (31) are connected with last adjusting block (24), extension rod (32) both ends are connected with mount pad (31) and fixing base (33) respectively, cavity cylinder (34) set up in fixing base (33) one side, cylinder (4) set up in fixing base (33) back, depression bar (5) run through cavity cylinder (34) and pass through connecting block (11) with the piston rod of cylinder (4) and be connected.
5. The mobile platform for a probe riveter according to claim 4, wherein: and a stabilizing block (12) is also arranged between the mounting seat (31) and the upper adjusting block (24).
6. The mobile platform for a probe riveter according to claim 4, wherein: the pressure head (6) top is connected with the connecting sleeve (13), the bottom of the pressure rod (5) is sleeved with the connecting sleeve (13) and the end part of the connecting sleeve is located in the connecting sleeve (13), one side of the connecting sleeve (13) is provided with a tightening bolt (14), the end part of the tightening bolt (14) penetrates through the connecting sleeve (13) and the pressure rod (5) to be abutted against each other.
CN202122480742.7U 2021-10-14 2021-10-14 Moving platform for probe riveting machine Active CN216369857U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122480742.7U CN216369857U (en) 2021-10-14 2021-10-14 Moving platform for probe riveting machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202122480742.7U CN216369857U (en) 2021-10-14 2021-10-14 Moving platform for probe riveting machine

Publications (1)

Publication Number Publication Date
CN216369857U true CN216369857U (en) 2022-04-26

Family

ID=81245407

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202122480742.7U Active CN216369857U (en) 2021-10-14 2021-10-14 Moving platform for probe riveting machine

Country Status (1)

Country Link
CN (1) CN216369857U (en)

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