CN210677772U - XY horizontal adjustment workstation - Google Patents

XY horizontal adjustment workstation Download PDF

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Publication number
CN210677772U
CN210677772U CN201921415551.9U CN201921415551U CN210677772U CN 210677772 U CN210677772 U CN 210677772U CN 201921415551 U CN201921415551 U CN 201921415551U CN 210677772 U CN210677772 U CN 210677772U
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sliding table
bottom plate
pusher
plate
fixed
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CN201921415551.9U
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郭光华
李小奇
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Chongqing Hongxi Technology Co ltd
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Chongqing Hongxi Technology Co ltd
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Abstract

The utility model discloses an XY horizontal adjustment workbench, which comprises a first sliding table, a first bottom plate arranged below the first sliding table, a second sliding table fixedly connected below the first bottom plate, and a second bottom plate arranged below the second sliding table; the first sliding table and the second sliding table move along the horizontal direction, and the moving directions of the first sliding table and the second sliding table are vertical; the first sliding table and the first bottom plate are connected with position adjusting assemblies, and the second sliding table and the second bottom plate are also connected with position adjusting assemblies; the position adjusting component is provided with a graduated scale. The utility model discloses a position control is simple and convenient, the precision is high and can the energy ization distance of adjusting.

Description

XY horizontal adjustment workstation
Technical Field
The utility model relates to an adjust platform, especially an XY horizontal adjustment workstation.
Background
In automated equipment, an adjustable platform is often required, either for receiving material or as a support base. During the operation of concrete work, according to the change of processing work piece size or use the back for a long time, the adjustment of position is carried out to the often needs of mount pad for can adapt to current work needs behind the position of adjustment, so the platform also often needs to have the function of position control.
However, the existing adjustable platform has low adjustment precision, is inconvenient to adjust, cannot quantify the adjustment distance, and is difficult to meet the position adjustment requirement in actual work.
Disclosure of Invention
The utility model aims to provide a: aiming at the problems of low adjustment precision, inconvenient adjustment and incapability of quantizing the adjusted distance in the prior art, the XY horizontal adjusting workbench which is simple and convenient in position adjustment and can adjust the distance in an energy-quantized mode is provided.
In order to realize the purpose of the utility model, the invention provides the following technical scheme:
an XY horizontal adjusting workbench comprises a first sliding table, a first bottom plate arranged below the first sliding table, a second sliding table fixedly connected below the first bottom plate, and a second bottom plate arranged below the second sliding table; the first sliding table and the second sliding table move along the horizontal direction, and the moving directions of the first sliding table and the second sliding table are vertical; the first sliding table and the first bottom plate are connected with position adjusting assemblies, and the second sliding table and the second bottom plate are also connected with position adjusting assemblies; the position adjusting component is provided with a graduated scale. The regulation of the position of two vertical directions that can realize the horizontal direction, the position of first slip table and second slip table can be adjusted to two position control subassemblies, because there is the scale on the position control subassembly, can adjust the position of first slip table and second slip table quantitatively.
Furthermore, the position adjusting assembly comprises a first adjusting block, a second adjusting block and a pusher, the pusher is fixed on the first adjusting block, and the front end of the pusher is propped against the second adjusting block; the front end of the pusher can extend and/or shorten when the pusher is adjusted; the extending and/or shortening direction of the pusher fixed on the first bottom plate through the first adjusting block is parallel to the moving direction of the first sliding table, and the extending and/or shortening direction of the pusher fixed on the second bottom plate through the first adjusting block is parallel to the moving direction of the second sliding table; and the first sliding table and the second sliding table are both fixed with second adjusting blocks. The position adjusting assembly is specifically three workpieces which are respectively fixed on the first sliding table, the first bottom plate, the second sliding table and the second bottom plate, and quantitatively adjusts the whole working position.
Further, the pusher is a micrometer. Knowing precisely the particular movement value quantifies the location of the particular movement, the distance can be read from the micrometer.
Furthermore, the top surfaces of the first bottom plate and the second bottom plate are respectively provided with a protruding H-shaped structure, the bulges at two sides of the H-shaped structure on the first bottom plate are parallel to the movement direction of the first sliding table, and the bulges at two sides of the H-shaped structure on the second bottom plate are parallel to the movement direction of the second sliding table; protruding locating blocks are arranged below the first sliding table and the second sliding table respectively, the locating blocks can be clamped into corresponding gaps of the H-shaped structures, and elastic parts are arranged between the locating blocks and the transverse protruding blocks of the H-shaped structures. The elastic component can enable the first sliding table or the second sliding table to be pushed out and then automatically pushed back when being pulled back; when the first sliding table or the second sliding table is pushed out, the elastic component can give a force in the opposite direction, so that the positions of the first sliding table and the second sliding table are fixed, and the position of the whole XY horizontal adjusting workbench is fixed.
Further, the elastic member is a spring. Simple and easily available, and low cost.
Further, the device also comprises a first pressing plate and a second pressing plate; one end of the first pressure plate and one end of the second pressure plate are provided with at least two fixing holes, and the other end of the first pressure plate and the second pressure plate are provided with at least one long hole; the first sliding table, the first bottom plate and the first pressing plate are of a first group, the second sliding table, the second bottom plate and the second pressing plate are of a second group, in each group, one of the sliding table and the bottom plate is fixedly connected with the fixing hole end of the pressing plate, a locking screw is arranged on the other sliding table and the bottom plate, and the locking screw penetrates through a long hole in the pressing plate. After the position of the workbench is adjusted, the first pressure plate, the first sliding table and the first bottom plate can be respectively locked and fixed into a rigid whole by passing through locking screws on the pressure plate, and the second pressure plate, the second sliding table and the second bottom plate are locked and fixed into a rigid whole; meanwhile, the first bottom plate and the second sliding table are of a fixed integrated structure, so that the position of the whole workbench can not be changed due to improper touch.
Further, a first guide rail is arranged between the first sliding table and the first bottom plate; a second guide rail is arranged between the second sliding table and the second bottom plate; the mounting direction and the moving direction of the first guide rail and the second guide rail are vertical.
The guide rail makes the workstation more convenient when sliding adjustment in two perpendicular directions, increases the accuracy and the smooth degree of removal.
To sum up, owing to adopted above-mentioned technical scheme, the beneficial effects of the utility model are that: the position can be adjusted, the adjustment is convenient, the precision is high, the distance of the energy adjustment is realized, and the requirements in work are met.
Drawings
The accompanying drawings, which form a part of the present application, are included to provide a further understanding of the invention, and are incorporated in and constitute a part of this specification, illustrate embodiments of the invention and together with the description serve to explain the invention and not to limit the invention. In the drawings:
fig. 1 shows a schematic structural view of an embodiment of the XY leveling table of the present invention.
Fig. 2 shows a top view of an embodiment of the XY leveling stage of fig. 1.
Fig. 3 shows a partial sectional view in the a-a direction of the embodiment of the XY-leveling table in fig. 2.
Wherein the figures include the following reference numerals: 1. a first sliding table; 2. a first base plate; 3. A second sliding table; 4. a second base plate; 5. a first regulating block; 6. a second regulating block; 7. a pusher; 8. a first platen; 9. a second platen; 10. an elastic member; 11. a first positioning rod; 12. and a second positioning rod.
Detailed Description
It is noted that, unless otherwise indicated, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this application belongs.
In order to make the objects, technical solutions and advantages of the present invention more clearly understood, the present invention is further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are for purposes of illustration only and are not intended to limit the invention.
An XY horizontal adjusting workbench comprises a first sliding table 1, a first bottom plate 2 arranged below the first sliding table 1, a second sliding table 3 fixedly connected below the first bottom plate 2, and a second bottom plate 4 arranged below the second sliding table 3; the first sliding table 1 and the second sliding table 3 both move along the horizontal direction, and the moving directions of the first sliding table and the second sliding table are vertical; the first sliding table 1 and the first base plate 2 are connected with position adjusting assemblies, and the second sliding table 3 and the second base plate 4 are also connected with position adjusting assemblies; the position adjusting component is provided with a graduated scale.
In this embodiment, the first bottom plate 2 and the second bottom plate 4 are provided with a first adjusting block 5, the first sliding table 1 and the second sliding table 3 are provided with a second adjusting block 6, the pusher 7 is fixed on the first adjusting block 5, and the front end of the pusher 7 abuts against the second adjusting block 6. In a specific application, the pusher 7 can also be installed on the second adjusting block 6, and the front end of the pusher 7 is required to abut against the first adjusting block 5.
Preferably, the pusher 7 is a micrometer. As long as can reach the function similar with the micrometer in the concrete application, the work piece is adjusted the back top promptly and can be stretched out forward and/or retract backward, even the work piece does not have the function of scale or record displacement, and the homoenergetic uses, all falls into the utility model discloses a protection scope.
In a particular embodiment, as shown in FIG. 1. Adjust the position of first slip table 1 through the position control subassembly, clockwise or anticlockwise rotation micrometer afterbody: when the micrometer pushes the second adjusting block 6 to move forwards, the second adjusting block 6 drives the first sliding table 1 to move forwards, and because the elastic part 10 between the first sliding table 1 and the first bottom plate 2 is in a compressed state, the first sliding table 1 receives the forward force of the micrometer and the backward force of the elastic part 10, and the position of the first sliding table 1 is fixed; when the micrometer moves backwards, because the elastic part 10 between the first sliding table 1 and the first bottom plate 2 is in a compressed state, the first sliding table 1 moves backwards under the backward force of the elastic part 10 to drive the first adjusting block 5 to move backwards, and the first adjusting block 5 stops moving after moving to the front end of the micrometer; by this adjustment, the position of the first slide table 1 is fixed when adjusted to a desired position. For avoiding making the position of the first slip table 1 of universal regulating plate change because of the regulation position of touchhing the micrometer, after the position control, use the screw to lock first slip table 1 and first bottom plate 2 from the trompil department of first clamp plate 8, first slip table 1 and first bottom plate 2's rigidity this moment.
Adjust the position of second slip table 3 through the position control subassembly, clockwise or anticlockwise rotation micrometer afterbody during the use: when the micrometer pushes the second adjusting block 6 to move forwards, the second adjusting block 6 drives the second sliding table 3 to move forwards, and because the elastic part 10 between the second sliding table 3 and the second bottom plate 4 is in a compressed state, the second sliding table 3 is stressed backward by the elastic part 10 while being stressed by the forward force of the micrometer, and the position of the second sliding table 3 is fixed; when the micrometer moved backward, because the elastomeric element 10 between second slip table 3 and second bottom plate 4 is in compression state, the second slip table 3 receives elastomeric element 10's power backward to be removed, drives first regulating block 5 and moves backward, and first regulating block 5 will stop moving after removing the front end of micrometer, and when adjusting required position, the rigidity of second slip table 3. In order to avoid the change of the position of the second sliding table 3 of the universal adjusting plate due to the fact that the adjusting position of the micrometer is touched, after the position is adjusted, the second sliding table 3 and the second bottom plate 4 are locked by screws from the long hole of the second pressing plate 9, and the position of the second sliding table 3 and the position of the second bottom plate 4 are fixed at the moment. The position of first slip table 1 and second slip table 3 is all fixed this moment, and the position of whole workstation is fixed.
As shown in fig. 3, this is a sectional view in the direction of a-a in fig. 2, which shows only the middle structure of the first slide table 1 and the first base plate 2. In the figure, a first positioning rod 11 is fixed on a first sliding table 1, a second positioning rod 12 is fixed on a first bottom plate 2, and the first positioning rod 11 and the second positioning rod 12 penetrate into an elastic component 10 to play a role in positioning the position of the elastic component 10, so that the elastic component 10 is not inclined to influence the use; in the concrete application, when the size of the groove formed after the first sliding table 1 and the first bottom plate 2 are buckled and used for placing the elastic component 10 is relatively suitable, namely the size of the groove does not enable the elastic component 10 to be compressed and to be inclined, the first positioning rod 11 and the second positioning rod 12 are not used. Similarly, the sectional view of the middle structure of the second slide table 3 and the second base plate 4 is the same as that of fig. 3.
Preferably, the elastic member 10 is a spring. In this embodiment, when the springs have no relative displacement between the first sliding table 1, the first bottom plate 2, the second sliding table 3 and the second bottom plate 4, the springs are in a compressed state, so that the XY leveling table can be subjected to the elastic force of the springs when the front and rear positions of the XY leveling table can be adjusted in one direction, the adjustment method is simple, and the range of the XY leveling table which is easy to adjust is enlarged. Or, when the positions of the first sliding table 1 and the second sliding table 3 are adjusted, the spring is in a free state, the front end of the pusher 7 at the time is a positioning point, the first sliding table 1 needs to be pushed to tightly abut against the front end of the pusher 7 by a handle, and then the first pressing plate 8 and the first sliding table 1 are locked through the long hole of the first pressing plate 8, so that the positions of the first sliding table 1 and the first bottom plate 2 are fixed, and the position of the XY horizontal adjusting workbench in one direction is fixed; the position adjusting method of the second sliding table 3 is the same as that of the first sliding table 1, and after the adjustment is completed, the positions of the XY horizontal adjusting workbench in two directions are fixed. The spring is only one specific embodiment of the present invention, and the elastic member can be used as long as it can satisfy the requirement.
Preferably, the first positioning rod 11 and the second positioning rod 12 are screws. In a specific application, the first positioning rod 11 and the second positioning rod 12 may also be other functional workpieces, such as screws.
When the fixing device is used, at least two fixing holes are formed in one end of the first pressing plate 8 and one end of the second pressing plate 9, and at least one long hole is formed in the other end of the first pressing plate and the second pressing plate, so that the fixing purpose can be achieved.
In this embodiment, the first pressing plate 8 and the second pressing plate 9 are both fixedly connected to each other at the lower portion, and the upper portion is adjusted and connected by two long holes, specifically: the first pressing plate 8 is fixedly connected with the first bottom plate 2, and when the first sliding table 1 is adjusted to a required position, the first pressing plate 8 and the first sliding table 1 are locked by screws from a long hole above the first pressing plate 8; the second pressing plate 9 is fixedly connected with the second bottom plate 4, and when the second sliding table 3 is adjusted to a required position, the second pressing plate 9 and the second sliding table 3 are locked by screws from a long hole above the second pressing plate 9. When the sliding table is used, the first pressing plate 8 can be used in reverse, the positions of the fixing hole and the long hole in the first pressing plate 8 are changed, namely the first pressing plate 8 is fixedly connected with the first sliding table 1, and when the first sliding table 1 is adjusted to a required position, the first pressing plate 8 and the first bottom plate 2 are locked through the long hole of the first pressing plate 8 by using a screw; the second pressing plate 9 is fixedly connected with the second sliding table 3, and when the second sliding table 3 is adjusted to a required position, the second pressing plate 9 and the second bottom plate 4 are locked by screws from the long holes of the second pressing plate 9.
The scope of the present invention is defined not by the above-described embodiments but by the appended claims and equivalents thereof.
The above description is only a preferred embodiment of the present application and is not intended to limit the present application, and various modifications and changes may be made by those skilled in the art. Any modification, equivalent replacement, improvement and the like made within the spirit and principle of the present application shall be included in the protection scope of the present application.

Claims (7)

1. An XY horizontal adjusting workbench is characterized by comprising a first sliding table (1), a first bottom plate (2) arranged below the first sliding table (1), a second sliding table (3) fixedly connected below the first bottom plate (2), and a second bottom plate (4) arranged below the second sliding table (3); the first sliding table (1) and the second sliding table (3) move along the horizontal direction, and the moving directions of the first sliding table and the second sliding table are vertical;
the first sliding table (1) and the first bottom plate (2) are connected with position adjusting assemblies, and the second sliding table (3) and the second bottom plate (4) are also connected with position adjusting assemblies; and the position adjusting component is provided with a graduated scale.
2. The XY level adjustment table according to claim 1, wherein the position adjustment assembly comprises a first adjustment block (5), a second adjustment block (6), and a pusher (7), the pusher (7) being fixed to the first adjustment block (5), a front end of the pusher (7) abutting against the second adjustment block (6); the front end of the pusher (7) can be extended and/or shortened when the pusher (7) is adjusted;
the extending and/or shortening direction of the pusher (7) fixed on the first bottom plate (2) through the first adjusting block (5) is parallel to the moving direction of the first sliding table (1), and the extending and/or shortening direction of the pusher (7) fixed on the second bottom plate (4) through the first adjusting block (5) is parallel to the moving direction of the second sliding table (3); and the first sliding table (1) and the second sliding table (3) are both fixed with the second adjusting block (6).
3. An XY-leveling table according to claim 2, wherein the pusher (7) is a micrometer.
4. The XY-leveling table according to claim 1, wherein the top surfaces of the first base plate (2) and the second base plate (4) each have a protruding H-shaped structure, the two-sided projections of the H-shaped structure on the first base plate (2) are parallel to the moving direction of the first sliding table (1), and the two-sided projections of the H-shaped structure on the second base plate (4) are parallel to the moving direction of the second sliding table (3); the first sliding table (1) and the second sliding table (3) are provided with protruding positioning blocks below, the positioning blocks can be clamped into corresponding gaps of the H-shaped structure, and elastic parts (10) are arranged between the positioning blocks and transverse protruding blocks of the H-shaped structure.
5. An XY-leveling table according to claim 4, characterized in that the resilient member (10) is a spring.
6. An XY-leveling table according to claim 1, further comprising a first platen (8) and a second platen (9); one end of the first pressing plate (8) and one end of the second pressing plate (9) are provided with at least two fixing holes, and the other end of the first pressing plate and the second pressing plate are provided with at least one long hole;
first slip table (1), first bottom plate (2) and first clamp plate (8) are the first group, and second slip table (3), second bottom plate (4) and second clamp plate (9) are the second group, and in each group, one in slip table and the bottom plate and the fixed orifices end fixed connection of clamp plate are provided with locking screw on another, and locking screw passes the slot hole on the clamp plate.
7. An XY-leveling table according to claim 1, wherein a first guide rail is installed between the first slide table (1) and the first base plate (2); a second guide rail is arranged between the second sliding table (3) and the second bottom plate (4); the installation direction and the movement direction of the first guide rail and the second guide rail are both vertical.
CN201921415551.9U 2019-08-28 2019-08-28 XY horizontal adjustment workstation Active CN210677772U (en)

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Application Number Priority Date Filing Date Title
CN201921415551.9U CN210677772U (en) 2019-08-28 2019-08-28 XY horizontal adjustment workstation

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921415551.9U CN210677772U (en) 2019-08-28 2019-08-28 XY horizontal adjustment workstation

Publications (1)

Publication Number Publication Date
CN210677772U true CN210677772U (en) 2020-06-05

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Application Number Title Priority Date Filing Date
CN201921415551.9U Active CN210677772U (en) 2019-08-28 2019-08-28 XY horizontal adjustment workstation

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112665477A (en) * 2021-01-05 2021-04-16 苏州紫金港智能制造装备有限公司 Detection tool and method for testing plane positioning accuracy of end effector

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112665477A (en) * 2021-01-05 2021-04-16 苏州紫金港智能制造装备有限公司 Detection tool and method for testing plane positioning accuracy of end effector
CN112665477B (en) * 2021-01-05 2022-01-25 苏州紫金港智能制造装备有限公司 Detection tool and method for testing plane positioning accuracy of end effector

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