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CN203509780U - X -axis / Y-axis adjusting mechanism - Google Patents

X -axis / Y-axis adjusting mechanism Download PDF

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Publication number
CN203509780U
CN203509780U CN201320632760.5U CN201320632760U CN203509780U CN 203509780 U CN203509780 U CN 203509780U CN 201320632760 U CN201320632760 U CN 201320632760U CN 203509780 U CN203509780 U CN 203509780U
Authority
CN
China
Prior art keywords
axis
contiguous block
axis slide
slide plate
landing slab
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
CN201320632760.5U
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Chinese (zh)
Inventor
吕绍林
汪炉生
刘武雷
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.)
Bozhong Suzhou Precision Industry Technology Co Ltd
Original Assignee
Bozhong Suzhou Precision Industry Technology Co Ltd
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 Bozhong Suzhou Precision Industry Technology Co Ltd filed Critical Bozhong Suzhou Precision Industry Technology Co Ltd
Priority to CN201320632760.5U priority Critical patent/CN203509780U/en
Application granted granted Critical
Publication of CN203509780U publication Critical patent/CN203509780U/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

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Abstract

The utility model relates to an X-axis / Y-axis adjusting mechanism. The X-axis / Y-axis adjusting mechanism comprises a bottom plate, an X-axis mechanism and a Y-axis mechanism, wherein the Y-axis mechanism is installed on the bottom plate, the X-axis mechanism is installed on the Y-axis mechanism, and a product can be placed on an X-axis flat pallet of the X-axis mechanism; an X-axis motor drives an X-axis sliding plate connecting block to drive the X-axis flat pallet to move through an X-axis sliding rail in the X-axis direction; a Y-axis motor drives a Y-axis sliding plate connecting block to drive the Y-axis flat pallet to move through a Y-axis sliding rail in the Y-axis direction. According to the X-axis / Y-axis adjusting mechanism, the X-axis mechanism and the Y-axis mechanism act in a synergistic mode, as a result, movement of the X-axis mechanism and movement of the Y-axis mechanism in the X-axis direction and the Y-axis direction can be adjusted respectively; meanwhile, the X-axis / Y-axis adjusting mechanism is suitable for various types of products; besides, the X-axis / Y-axis adjusting mechanism saves space.

Description

A kind of XY axial adjustment mechanism
Technical field:
The utility model relates to a kind of guiding mechanism, relates in particular the mechanism that a kind of X-axis and Y-axis can be adjusted.
Background technology:
In order to regulate the position of product in X-axis and Y direction, generally all need HeYZhou mechanism of X-axis mechanism to act synergistically to realize, now with regard to a kind of XY axial adjustment of needs mechanism.
Utility model content:
The purpose of this utility model is to provide a kind of XY axial adjustment mechanism, after product is placed on X-axis landing slab, HeYZhou mechanism of X-axis mechanism synergy, can regulate it in X-axis and Y direction, to move, be applicable to all kinds product, and this kind arranges saving space simultaneously.
Technology solution of the present utility model is as follows:
An XY axial adjustment mechanism, it comprises base plate, HeYZhou mechanism of X-axis mechanism, described Y-axis mechanism is arranged on base plate; Described X-axis mechanism is arranged in Y-axis mechanism.
Described Y-axis mechanism comprises y-axis motor, Y-axis shaft coupling, the linear module of Y-axis, Y-axis slide plate contiguous block, Y-axis slide rail, Y-axis slide block, Y-axis landing slab, Y-axis mounting bar, Y-axis photoelectric sensor and Y-axis sensing chip, the linear module of described Y-axis, Y-axis slide rail and Y-axis mounting bar are arranged on base plate respectively, and the linear module of Y-axis, Y-axis slide rail and Y-axis mounting bar are parallel to each other; Described Y-axis slide rail has two, on every Y-axis slide rail, coordinates respectively three above Y-axis slide blocks are installed, and Y-axis photoelectric sensor is installed on Y-axis mounting bar; Described y-axis motor links together by Y-axis shaft coupling and the linear module of Y-axis; Described Y-axis slide plate contiguous block is arranged on the linear module of Y-axis, and described Y-axis landing slab is arranged on Y-axis slide block top, and Y-axis slide plate contiguous block and Y-axis landing slab are fixed together; Described Y-axis sensing chip is arranged on the side of Y-axis slide plate contiguous block.
Described X-axis mechanism comprises X-axis motor, X-axis shaft coupling, the linear module of X-axis, X-axis slide plate contiguous block, X-axis slide rail, X-axis slide block, X-axis landing slab, X-axis mounting bar, X-axis photoelectric sensor and X-axis sensing chip, the linear module of described X-axis, X-axis slide rail and X-axis mounting bar are arranged on respectively on Y-axis landing slab, and the linear module of X-axis, X-axis slide rail and X-axis mounting bar are parallel to each other; Described X-axis slide rail has two, on every X-axis slide rail, coordinates plural X-axis slide block is installed respectively, and X-axis photoelectric sensor is installed on X-axis mounting bar; Described X-axis motor links together by X-axis shaft coupling and the linear module of X-axis; Described X-axis slide plate contiguous block is arranged on the linear module of X-axis, and described X-axis landing slab is arranged on X-axis slide block top, and X-axis slide plate contiguous block and X-axis landing slab are fixed together; Described X-axis sensing chip is arranged on the side of X-axis slide plate contiguous block.
As preferably, described Y-axis slide plate contiguous block is provided with a boss a, and Y-axis landing slab is provided with a groove a, and boss a coordinates and is arranged in groove a and by bolt, Y-axis slide plate contiguous block and Y-axis landing slab is fixed together.
As preferably, described X-axis slide plate contiguous block is provided with a boss b, and X-axis landing slab is provided with a groove b, and boss b coordinates and is arranged in groove b and by bolt, X-axis slide plate contiguous block and X-axis landing slab is fixed together.
As preferably, described Y-axis photoelectric sensor has three, by Y-axis slide plate contiguous block, drives Y-axis sensing chip to move, and its move distance is determined by Y-axis photoelectric sensor.
As preferably, described X-axis photoelectric sensor has three, by X-axis slide plate contiguous block, drives X-axis sensing chip to move, and its move distance is determined by X-axis photoelectric sensor.
The beneficial effects of the utility model are:
On the utility model X-axis landing slab, can place product, X-axis motor drives, make X-axis slide plate contiguous block drive X-axis landing slab to move in X-direction by X-axis slide rail, y-axis motor drives, and makes Y-axis slide plate contiguous block drive Y-axis landing slab to move in Y direction by Y-axis slide rail.HeYZhou mechanism of the utility model X-axis mechanism synergy, can regulate it in X-axis and Y direction, to move, and is applicable to all kinds product simultaneously, and this kind arranges saving space.
Accompanying drawing explanation:
Below in conjunction with accompanying drawing, the utility model is described further:
Fig. 1 is structural representation of the present utility model;
Fig. 2 is front view of the present utility model;
Fig. 3 is left view of the present utility model;
Fig. 4 is rearview of the present utility model;
In Fig. 1~4: I-X-axis mechanism; II-Y-axis mechanism; 1-base plate; 2-y-axis motor; 3-Y-axis shaft coupling; The linear module of 4-Y-axis; 5-Y-axis slide plate contiguous block; 6-Y-axis slide rail; 7-Y-axis slide block; 8-Y-axis landing slab; 9-Y-axis mounting bar; 10-Y-axis photoelectric sensor; 11-Y-axis sensing chip; 12-X-axis motor; 13-X-axis shaft coupling; The linear module of 14-X-axis; 15-X-axis slide plate contiguous block; 16-X-axis slide rail; 17-X-axis slide block; 18-X-axis landing slab; 19-X-axis mounting bar; 20-X-axis photoelectric sensor; 21-X-axis sensing chip.
The specific embodiment:
Embodiment, is shown in accompanying drawing 1~4, a kind of XY axial adjustment mechanism, and it comprises base plate 1, the ⅠHe of X-axis mechanism Y-axis mechanism II, described Y-axis mechanism is arranged on base plate; Described X-axis mechanism is arranged in Y-axis mechanism.
Described Y-axis mechanism comprises y-axis motor 2, Y-axis shaft coupling 3, the linear module 4 of Y-axis, Y-axis slide plate contiguous block 5, Y-axis slide rail 6, Y-axis slide block 7, Y-axis landing slab 8, Y-axis mounting bar 9, Y-axis photoelectric sensor 10 and Y-axis sensing chip 11, the linear module of described Y-axis, Y-axis slide rail and Y-axis mounting bar are arranged on base plate respectively, and the linear module of Y-axis, Y-axis slide rail and Y-axis mounting bar are parallel to each other; Described Y-axis slide rail has two, on every Y-axis slide rail, coordinates four Y-axis slide blocks are installed respectively, and Y-axis photoelectric sensor is installed on Y-axis mounting bar; Described y-axis motor links together by Y-axis shaft coupling and the linear module of Y-axis; Described Y-axis slide plate contiguous block is arranged on the linear module of Y-axis, and described Y-axis landing slab is arranged on Y-axis slide block top, and Y-axis slide plate contiguous block and Y-axis landing slab are fixed together; Described Y-axis sensing chip is arranged on the side of Y-axis slide plate contiguous block, and described Y-axis photoelectric sensor has three, by Y-axis slide plate contiguous block, drives Y-axis sensing chip to move, and its move distance is determined by Y-axis photoelectric sensor; Described Y-axis slide plate contiguous block is provided with a boss a, and Y-axis landing slab is provided with a groove a, and boss a cooperation is arranged in groove a and by bolt, Y-axis slide plate contiguous block and Y-axis landing slab is fixed together.
Described X-axis mechanism comprises X-axis motor 12, X-axis shaft coupling 13, the linear module 14 of X-axis, X-axis slide plate contiguous block 15, X-axis slide rail 16, X-axis slide block 17, X-axis landing slab 18, X-axis mounting bar 19, X-axis photoelectric sensor 20 and X-axis sensing chip 21, the linear module of described X-axis, X-axis slide rail and X-axis mounting bar are arranged on respectively on Y-axis landing slab, and the linear module of X-axis, X-axis slide rail and X-axis mounting bar are parallel to each other; Described X-axis slide rail has two, on every X-axis slide rail, coordinates two X-axis slide blocks are installed respectively, and X-axis photoelectric sensor is installed on X-axis mounting bar; Described X-axis motor links together by X-axis shaft coupling and the linear module of X-axis; Described X-axis slide plate contiguous block is arranged on the linear module of X-axis, and described X-axis landing slab is arranged on X-axis slide block top, and X-axis slide plate contiguous block and X-axis landing slab are fixed together; Described X-axis sensing chip is arranged on the side of X-axis slide plate contiguous block, and described X-axis photoelectric sensor has three, by X-axis slide plate contiguous block, drives X-axis sensing chip to move, and its move distance is determined by X-axis photoelectric sensor; Described X-axis slide plate contiguous block is provided with a boss b, and X-axis landing slab is provided with a groove b, and boss b cooperation is arranged in groove b and by bolt, X-axis slide plate contiguous block and X-axis landing slab is fixed together.
The course of work: can place product on X-axis landing slab, X-axis motor drives, make X-axis slide plate contiguous block drive X-axis landing slab to move in X-direction by X-axis slide rail, y-axis motor drives, make Y-axis slide plate contiguous block drive Y-axis landing slab to move in Y direction by Y-axis slide rail, like this position of adjustable product in X-axis and Y-axis.
Above-described embodiment is the specific descriptions that the utility model is carried out; just the utility model is further described; can not be interpreted as the restriction to the utility model protection domain, within those skilled in the art makes some nonessential improvement according to the content of above-mentioned utility model and adjusts and all to fall into protection domain of the present utility model.

Claims (5)

1. a ZhongXY axial adjustment mechanism, is characterized in that: it comprises base plate, HeYZhou mechanism of X-axis mechanism, and described Y-axis mechanism is arranged on base plate; Described X-axis mechanism is arranged in Y-axis mechanism;
Described Y-axis mechanism comprises y-axis motor, Y-axis shaft coupling, the linear module of Y-axis, Y-axis slide plate contiguous block, Y-axis slide rail, Y-axis slide block, Y-axis landing slab, Y-axis mounting bar, Y-axis photoelectric sensor and Y-axis sensing chip, the linear module of described Y-axis, Y-axis slide rail and Y-axis mounting bar are arranged on base plate respectively, and the linear module of Y-axis, Y-axis slide rail and Y-axis mounting bar are parallel to each other; Described Y-axis slide rail has two, on every Y-axis slide rail, coordinates respectively three above Y-axis slide blocks are installed, and Y-axis photoelectric sensor is installed on Y-axis mounting bar; Described y-axis motor links together by Y-axis shaft coupling and the linear module of Y-axis; Described Y-axis slide plate contiguous block is arranged on the linear module of Y-axis, and described Y-axis landing slab is arranged on Y-axis slide block top, and Y-axis slide plate contiguous block and Y-axis landing slab are fixed together; Described Y-axis sensing chip is arranged on the side of Y-axis slide plate contiguous block;
Described X-axis mechanism comprises X-axis motor, X-axis shaft coupling, the linear module of X-axis, X-axis slide plate contiguous block, X-axis slide rail, X-axis slide block, X-axis landing slab, X-axis mounting bar, X-axis photoelectric sensor and X-axis sensing chip, the linear module of described X-axis, X-axis slide rail and X-axis mounting bar are arranged on respectively on Y-axis landing slab, and the linear module of X-axis, X-axis slide rail and X-axis mounting bar are parallel to each other; Described X-axis slide rail has two, on every X-axis slide rail, coordinates plural X-axis slide block is installed respectively, and X-axis photoelectric sensor is installed on X-axis mounting bar; Described X-axis motor links together by X-axis shaft coupling and the linear module of X-axis; Described X-axis slide plate contiguous block is arranged on the linear module of X-axis, and described X-axis landing slab is arranged on X-axis slide block top, and X-axis slide plate contiguous block and X-axis landing slab are fixed together; Described X-axis sensing chip is arranged on the side of X-axis slide plate contiguous block.
2. a kind of XY axial adjustment according to claim 1 mechanism, it is characterized in that: described Y-axis slide plate contiguous block is provided with a boss a, Y-axis landing slab is provided with a groove a, and boss a cooperation is arranged in groove a and by bolt, Y-axis slide plate contiguous block and Y-axis landing slab is fixed together.
3. a kind of XY axial adjustment according to claim 1 mechanism, it is characterized in that: described X-axis slide plate contiguous block is provided with a boss b, X-axis landing slab is provided with a groove b, and boss b cooperation is arranged in groove b and by bolt, X-axis slide plate contiguous block and X-axis landing slab is fixed together.
4. a kind of XY axial adjustment according to claim 1 mechanism, is characterized in that: described Y-axis photoelectric sensor has three, and by Y-axis slide plate contiguous block, drive Y-axis sensing chip to move, its move distance is determined by Y-axis photoelectric sensor.
5. a kind of XY axial adjustment according to claim 1 mechanism, is characterized in that: described X-axis photoelectric sensor has three, and by X-axis slide plate contiguous block, drive X-axis sensing chip to move, its move distance is determined by X-axis photoelectric sensor.
CN201320632760.5U 2013-10-14 2013-10-14 X -axis / Y-axis adjusting mechanism Expired - Fee Related CN203509780U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201320632760.5U CN203509780U (en) 2013-10-14 2013-10-14 X -axis / Y-axis adjusting mechanism

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201320632760.5U CN203509780U (en) 2013-10-14 2013-10-14 X -axis / Y-axis adjusting mechanism

Publications (1)

Publication Number Publication Date
CN203509780U true CN203509780U (en) 2014-04-02

Family

ID=50368762

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201320632760.5U Expired - Fee Related CN203509780U (en) 2013-10-14 2013-10-14 X -axis / Y-axis adjusting mechanism

Country Status (1)

Country Link
CN (1) CN203509780U (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103522080A (en) * 2013-10-14 2014-01-22 吴江市博众精工科技有限公司 XY axis adjusting mechanism
CN112192194A (en) * 2020-09-18 2021-01-08 柳州五菱柳机动力有限公司 Multi-axis spacing variable bolt tightening mechanism

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103522080A (en) * 2013-10-14 2014-01-22 吴江市博众精工科技有限公司 XY axis adjusting mechanism
CN112192194A (en) * 2020-09-18 2021-01-08 柳州五菱柳机动力有限公司 Multi-axis spacing variable bolt tightening mechanism

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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: 20140402

Termination date: 20161014

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