Double-Z-axis six-axis linear rail high-precision movement pedestal

The high-precision motion table with dual Z-axis and 6-axis linear guides, designed with a split marble structure, solves the problems of thermal deformation and stress release of granite worktables, achieving thermal stability and vibration reduction performance of high-precision equipment, and ensuring the precision and wear resistance of the working surface.

CN223557556UActive Publication Date: 2025-11-18KERUICHANG TECH (SUZHOU) CO LTD
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Patent Information

Application Number
CN202423026121.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-09
Publication Date
2025-11-18
Estimated Expiration
2034-12-09

AI Technical Summary

Technical Problem

The worktables or bases of existing high-precision equipment are mostly made of granite, but after assembly, there are problems such as thermal deformation and stress release leading to deformation, and it is difficult to guarantee long-term precision and vibration reduction performance.

Method used

The high-precision motion table with dual Z-axis and 6-axis linear guides, featuring a split marble design, includes components such as a base platform, rectangular slide, support columns, vertical support beams, and horizontal beams. These components are connected by stone adhesive to form a stable structure, suitable for batch processing, transportation, and assembly.

Benefits of technology

It achieves good thermal stability after assembly, is not easily deformed, has shock absorption properties, is wear-resistant and easy to clean, and ensures the precision and stability of the working surface.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of application of movement table accessories, and particularly discloses a double-Z-axis six-axis linear rail high-precision movement table seat which comprises a base table, a rectangular sliding table, a base table groove, a lower transition supporting column, a table plate, a transition supporting block, a transition supporting block groove, a middle transition supporting column, a vertical supporting beam, a vertical supporting beam groove, an upper transition supporting column, a cross beam and the like. The double-Z-axis six-axis linear rail high-precision motion pedestal has the advantages that a double-Z-axis six-axis linear rail high-precision motion pedestal structure is integrally formed, the split marble design is adopted, and batch machining, manufacturing, transporting, assembling or disassembling and maintaining are facilitated; after assembly, the thermal stability is very high, thermal deformation is not easy to generate, meanwhile, the shape is stable, and the problem of deformation caused by stress release like a metal material is solved; certain shock absorption and shock absorption performance is achieved in the operation process of precise instruments and equipment; the precision grade of the working surface can be ensured not to be changed, and meanwhile, the cleaning is also convenient.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to the technical field of motion platform accessory application, specifically relates to a double Z axle 6 axle line track high-precision motion platform seat. BACKGROUND

[0002] Currently, the workbench or base of some high-precision equipment will choose granite material, and the operation platform base of this material can be called granite workbench or granite base. Using granite platform as workbench or base, side guide rail, upper guide rail, etc. can effectively ensure the measurement accuracy and repeated precision of precision instrument equipment (such as three coordinates, 3D printers, laser machines, engraving machines, etc.).

[0003] The six-axis precision motion platform meets the product customization work demand of high speed, high acceleration and high precision. It is suitable for high-end manufacturing industries such as glass sheet detection, glass cutting, laser processing, screen detection, CCD imaging, wafer detection and three-dimensional topography.

[0004] The precision instrument equipment selects granite mechanical components as a part, and the physical advantages of the granite mechanical components can be well embodied in the whole use process after assembly.

[0005] Therefore, based on the above problems, the utility model provides a double Z axle 6 axle line track high-precision motion platform seat. UTILITY MODEL CONTENTS

[0006] UTILITY MODEL OBJECT: The utility model aims at providing a double Z axle 6 axle line track high-precision motion platform seat, which is suitable for the assembly and use of the double Z axle 6 axle line track high-precision motion platform.

[0007] TECHNICAL SCHEME: The utility model provides a double Z axle 6 axle line track high-precision motion platform seat, which comprises a base table and a rectangular slide table, one side of the base table is provided with base table grooves in four corners, respectively, lower transition support columns are arranged in the base table grooves, respectively, one side of the lower transition support column is provided with a table plate, respectively, the both ends of the table plate are provided with transition support blocks between the base table grooves, respectively, one side of the transition support block is provided with transition support block grooves, respectively, middle transition support columns are arranged in the transition support block grooves, respectively, one side of the middle transition support column is provided with vertical support beams, respectively, one end of the vertical support beam is provided with vertical support beam grooves in the end face, respectively, upper transition support columns are arranged in the vertical support beam grooves, respectively, and one end of the upper transition support column is provided with a cross beam in the end face.

[0008] The double-Z-axis 6-axis rail high-precision motion pedestal of the present application has the following advantages: 1. The double-Z-axis 6-axis rail high-precision motion pedestal is integrally formed, and is designed in a split type marble, which is convenient for batch processing, transportation and assembly or disassembly; 2. The assembled product has high thermal stability and is not prone to thermal deformation, and has stable shape and does not deform due to stress release like metal materials; 3. The product has certain shock absorption performance during operation of precision instruments and equipment; 4. The product is wear-resistant and can ensure that the precision level of the working surface does not change, and is convenient for cleaning.

[0009] The double-Z-axis 6-axis rail high-precision motion pedestal of the present application has the following advantages: 1. The double-Z-axis 6-axis rail high-precision motion pedestal is integrally formed, and is designed in a split type marble, which is convenient for batch processing, transportation and assembly or disassembly; 2. The assembled product has high thermal stability and is not prone to thermal deformation, and has stable shape and does not deform due to stress release like metal materials; 3. The product has certain shock absorption performance during operation of precision instruments and equipment; 4. The product is wear-resistant and can ensure that the precision level of the working surface does not change, and is convenient for cleaning.

[0010] The double-Z-axis 6-axis rail high-precision motion pedestal of the present application has the following advantages: 1. The double-Z-axis 6-axis rail high-precision motion pedestal is integrally formed, and is designed in a split type marble, which is convenient for batch processing, transportation and assembly or disassembly; 2. The assembled product has high thermal stability and is not prone to thermal deformation, and has stable shape and does not deform due to stress release like metal materials; 3. The product has certain shock absorption performance during operation of precision instruments and equipment; 4. The product is wear-resistant and can ensure that the precision level of the working surface does not change, and is convenient for cleaning.

[0011] The double-Z-axis 6-axis rail high-precision motion pedestal of the present application has the following advantages: 1. The double-Z-axis 6-axis rail high-precision motion pedestal is integrally formed, and is designed in a split type marble, which is convenient for batch processing, transportation and assembly or disassembly; 2. The assembled product has high thermal stability and is not prone to thermal deformation, and has stable shape and does not deform due to stress release like metal materials; 3. The product has certain shock absorption performance during operation of precision instruments and equipment; 4. The product is wear-resistant and can ensure that the precision level of the working surface does not change, and is convenient for cleaning.

[0012] The double-Z-axis 6-axis rail high-precision motion pedestal of the present application has the following advantages: 1. The double-Z-axis 6-axis rail high-precision motion pedestal is integrally formed, and is designed in a split type marble, which is convenient for batch processing, transportation and assembly or disassembly; 2. The assembled product has high thermal stability and is not prone to thermal deformation, and has stable shape and does not deform due to stress release like metal materials; 3. The product has certain shock absorption performance during operation of precision instruments and equipment; 4. The product is wear-resistant and can ensure that the precision level of the working surface does not change, and is convenient for cleaning.

[0013] The double-Z-axis 6-axis rail high-precision motion pedestal of the present application has the following advantages: 1. The double-Z-axis 6-axis rail high-precision motion pedestal is integrally formed, and is designed in a split type marble, which is convenient for batch processing, transportation and assembly or disassembly; 2. The assembled product has high thermal stability and is not prone to thermal deformation, and has stable shape and does not deform due to stress release like metal materials; 3. The product has certain shock absorption performance during operation of precision instruments and equipment; 4. The product is wear-resistant and can ensure that the precision level of the working surface does not change, and is convenient for cleaning. BRIEF DESCRIPTION OF DRAWINGS

[0014] In order to more clearly illustrate the technical scheme in the embodiments of the present application or the prior art, the following will briefly describe the technical scheme in the embodiments of the present application with reference to the accompanying drawings.

[0015] The drawings required to be used in the examples are briefly introduced, and obviously, the drawings in the following description are only some embodiments of the utility model, and other drawings can be obtained according to the drawings without creative labor for the ordinary skilled in the art.

[0016] Figure 1 It is a main view structural schematic drawing of a double-Z-axis 6-axis track high-precision motion pedestal of the utility model;

[0017] Figure 2 It is a top view structural schematic drawing of a base table and a base table groove of the utility model;

[0018] Figure 3 It is a top view structural schematic drawing of a rectangular slide table, a lower transition support column, a table plate, a transition support block, a transition support block groove and a first table plate groove of the utility model;

[0019] Figure 4 It is a side view structural schematic drawing of a lower auxiliary limiting protrusion, an upper auxiliary limiting protrusion, a transition limiting clamping plate, a transition reinforcing support vertical beam and a transition reinforcing support vertical beam through groove of the utility model;

[0020] Figure 5 It is a main view structural schematic drawing of a second table plate groove, a cross beam groove, a lower auxiliary limiting protrusion, an upper auxiliary limiting protrusion, a transition limiting clamping plate, a transition reinforcing support vertical beam and an L-shaped limiting plate of the utility model;

[0021] Figure 6 It is a side view structural schematic drawing of a middle transition support column, a vertical support beam, a vertical support beam groove and an L-shaped limiting plate of the utility model;

[0022] Figure 7 It is a top view structural schematic drawing of a cross beam, an upper transition support column and a cross beam groove of the utility model;

[0023] In the drawings, the serial numbers are as follows: 100-base table, 101-base table groove, 102-table plate, 103-lower transition support column, 104-first table plate groove, 105-hollow internal thread sleeve, 106-hoisting belt ear plate screw, 107-transition support block, 108-transition support block groove, 109-vertical support beam, 110-middle transition support column, 111-vertical support beam groove, 112-vertical support beam through groove, 113-cross beam, 114-upper transition support column, 115-second table plate groove, 116-cross beam groove, 117-lower auxiliary limiting protrusion, 118-upper auxiliary limiting protrusion, 119-transition limiting clamping plate, 120-transition reinforcing support vertical beam, 121-transition reinforcing support vertical beam through groove, 122-L-shaped limiting plate, 123-rectangular slide table. DETAILED DESCRIPTION

[0024] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments of the present application, all other embodiments obtained by those skilled in the art without creative efforts belong to the scope of the present application.

[0025] In the description of the present application, it should be noted that the terms "top", "bottom", "one side", "the other side", "front", "back", "middle part", "inside", "top end", "bottom end" and the like indicate the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and do not indicate or imply that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the present application; the terms "first", "second", "third" are only for the purpose of description, and cannot be understood as indicating or implying relative importance; in addition, unless otherwise explicitly specified and limited, the terms "mounting", "connecting", "connecting" should be understood broadly, for example, it can be fixedly connected, or it can be detachably connected, or integrally connected; it can be mechanically connected, or it can be electrically connected; it can be directly connected, or it can be indirectly connected through an intermediate medium, or it can be the communication between two elements. For those skilled in the art, the specific meanings of the above terms in the present application can be understood according to the specific circumstances.

[0026] Embodiment one: as shown in Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 , Figure 6 and Figure 7 a double-Z-axis 6-axis rail high-precision motion pedestal, comprising a base table 100 and a rectangular slide table 123,

[0027] One side of the base table 100 is provided with a base table groove 101 at the four corners,

[0028] The base table groove 101 is respectively provided with a lower transition support column 103,

[0029] The lower transition support column 103 is respectively provided with a table plate 102 on one side,

[0030] Both ends of the table plate 102 are respectively provided with a transition support block 107 between the base table grooves 101,

[0031] One side of the transition support block 107 is respectively provided with a transition support block groove 108,

[0032] The transition support block groove 108 is respectively provided with a middle transition support column 110,

[0033] The middle transition support column 110 is respectively provided with a vertical support beam 109 on one side,

[0034] The vertical support beam 109 is respectively provided with a vertical support beam groove 111 in one end face,

[0035] The vertical support beam groove 111 is respectively provided with an upper transition support column 114,

[0036] The upper transition support column 114 is respectively provided with a cross beam 113 on one end face.

[0037] The working principle is:

[0038] When assembling, first, stone glue is respectively coated on the surfaces of the lower transition support column 103, the middle transition support column 110, and the upper transition support column 114, and then stone glue is respectively coated in the base table groove 101, the transition support block groove 108, and the vertical support beam groove 111. Finally, the lower transition support column 103, the middle transition support column 110, and the upper transition support column 114 are respectively inserted into the base table groove 101, the transition support block groove 108, and the vertical support beam groove 111. In this way, the rapid assembly can be completed.

[0039] Example two: on the basis of example one, the double-Z-axis 6-axis rail high-precision motion pedestal further includes two groups of first table plate grooves 104 symmetrically arranged in the outer walls of the table plate 102, hollow inner threaded sleeves 105 respectively embedded in the first table plate grooves 104, and hoisting ear plate screws 106 respectively connected with the hollow inner threaded sleeves 105.

[0040] In this way, when assembling or transferring, the hoisting equipment can be fastened with the hoisting ear plate screw 106 through a lifting rope, so that the overall structure transfer or the hoisting of the table plate 102 (single component) can be completed.

[0041] Example three: on the basis of example one or example two, the double-Z-axis 6-axis rail high-precision motion pedestal further includes a plurality of vertical support beam through grooves 112 respectively vertically arranged in the vertical support beam 109.

[0042] Among them, the vertical support beam through groove 112 is respectively provided with a group, and the vertical support beam through groove 112 is arranged in the vertical support beam 109 in a vertical one-dot shape.

[0043] In this way, the support strength of the vertical support beam 109 is not affected, and the overall structure weight is correspondingly reduced.

[0044] Example four: on the basis of example one or example two or example three, the double-Z-axis 6-axis rail high-precision motion pedestal further comprises L-shaped limiting plates 122 respectively arranged on the upper two sides of the outer wall of the vertical support beam 109 and matched with the cross beam 113.

[0045] After such assembly, the cross beam 113 can be limited horizontally, reducing the impact of vibration; at the same time, it is convenient for quick assembly and limiting.

[0046] Example five: on the basis of example one or example two or example three or example four, the double-Z-axis 6-axis rail high-precision motion pedestal further comprises a second pedestal groove 115 in the same side end surface of the pedestal plate 102, a cross beam groove 116 arranged in the lower end surface of one end of the cross beam 113 and matched with the second pedestal groove 115, and a lower auxiliary limiting protrusion 117 and an upper auxiliary limiting protrusion 118 respectively arranged in the second pedestal groove 115 and the cross beam groove 116, a transition limiting clamping plate 119 respectively arranged on the end surface of the lower auxiliary limiting protrusion 117, and a transition reinforcing support vertical beam 120 respectively arranged on one side of the transition limiting clamping plate 119, and the upper auxiliary limiting protrusion 118 is arranged on the end surface of the transition reinforcing support vertical beam 120.

[0047] During assembly, stone glue is applied to the surfaces of the lower auxiliary limiting protrusion 117 and the upper auxiliary limiting protrusion 118, and stone glue is applied to the cross beam groove 116 and the pedestal groove 115, and finally the lower auxiliary limiting protrusion 117 and the upper auxiliary limiting protrusion 118 are inserted into the pedestal groove 115 and the cross beam groove 116; during the above assembly, the cross beam 13 and the vertical support beam 109 in example one are assembled synchronously.

[0048] After assembly, the cross beam 113 can be vertically supported and the supporting strength can be enhanced during the work of the working components on the cross beam 113.

[0049] Example six: on the basis of example one or example two or example three or example four or example five, the double-Z-axis 6-axis rail high-precision motion pedestal further comprises a plurality of transition reinforcing support vertical beam through grooves 121 respectively arranged in the transition reinforcing support vertical beam 120.

[0050] Among them, the transition reinforcing support vertical beam through groove 121 is arranged in three and arranged in a triangular shape in the transition reinforcing support vertical beam 120.

[0051] The above design structure does not affect the supporting strength of the transition reinforcing support vertical beam 120, and also correspondingly reduces the overall structure weight.

[0052] The double-Z-axis 6-axis rail high-precision motion pedestal of the structure is made of marble (granite) cutting and polishing, except the hollow inner thread sleeve 105 and the hoisting ear plate screw 106.

[0053] It is to be understood that some terms used in this document, such as the term "comprise", "comprising" or any other variant thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but can also include other elements not expressly listed or inherent to such process, method, article, or apparatus.

[0054] It is obvious to a person skilled in the art that the present application is not limited to the details of the above exemplary embodiments, but can be implemented in other concrete forms without departing from the spirit or essential characteristics of the present application. Therefore, the embodiments should be considered in all respects as illustrative and not restrictive, and the scope of the present application is defined by the appended claims rather than the above description, and therefore all changes falling within the meaning and range of equivalent elements of the claims are intended to be embraced in the present application. Any reference signs in the claims should not be considered as limiting the claims involved.

Claims

1.A double-Z-axis 6-axis rail high-precision motion pedestal, comprising a base table (100) and a rectangular sliding table (123), characterized in that: one side of the base table (100) is provided with a base table groove (101) at each corner; the base table groove (101) is provided with a lower transition support column (103); one side of the lower transition support column (103) is provided with a table plate (102); the end faces of the table plate (102) and located between the base table grooves (101) are provided with a transition support block (107); one side of the transition support block (107) is provided with a transition support block groove (108); the transition support block groove (108) is provided with a middle transition support column (110); one side of the middle transition support column (110) is provided with a vertical support beam (109); one end of the vertical support beam (109) is provided with a vertical support beam groove (111); the vertical support beam groove (111) is provided with an upper transition support column (114); and one end of the upper transition support column (114) is provided with a cross beam (113). The double-Z-axis 6-axis rail high-precision motion pedestal further comprises two groups of first table plate grooves (104) symmetrically arranged in the outer walls of the two sides of the table plate (102), hollow internal thread sleeves (105) respectively embedded in the first table plate grooves (104), and hoisting ear plate screws (106) respectively connected with the hollow internal thread sleeves (105). The double-Z-axis 6-axis rail high-precision motion pedestal further comprises a plurality of vertical support beam through grooves (112) vertically arranged in the vertical support beam (109). The vertical support beam through grooves (112) are arranged in groups and arranged in a vertical line shape in the vertical support beam (109). The double-Z-axis 6-axis rail high-precision motion pedestal further comprises L-shaped limiting plates (122) respectively arranged on the upper two sides of the outer walls of the vertical support beam (109) and matched with the cross beam (113). The double-Z-axis 6-axis rail high-precision motion pedestal further comprises a second table plate groove (115) in the same side end face of the table plate (102), a cross beam groove (116) arranged in the lower end face of one end of the cross beam (113) and matched with the second table plate groove (115), a lower auxiliary limiting protrusion (117) and an upper auxiliary limiting protrusion (118) respectively arranged in the second table plate groove (115) and the cross beam groove (116), a transition limiting clamping plate (119) respectively arranged at one end of the lower auxiliary limiting protrusion (117), a transition reinforcing support vertical beam (120) respectively arranged at one side of the transition limiting clamping plate (119), and the upper auxiliary limiting protrusion (118) arranged at one end of the transition reinforcing support vertical beam (120). The double-Z-axis 6-axis rail high-precision motion pedestal further comprises a plurality of transition reinforcing support vertical beam through grooves (121) arranged in the transition reinforcing support vertical beam (120). ​ ​ ​ ​ 2. The dual-Z-axis 6-axis rail high-precision motion pedestal according to claim 1, characterized in that: ​ 3. The dual-Z-axis 6-axis rail high-precision motion pedestal according to claim 1 or 2, characterized in that: ​ ​ 4. The dual-Z-axis 6-axis rail high-precision motion pedestal according to claim 3, characterized in that: ​ 5. The dual-Z-axis 6-axis rail high-precision motion pedestal according to claim 4, characterized in that: ​ 6. The dual-Z-axis 6-axis rail high-precision motion pedestal according to claim 5, characterized in that: ​ The transition reinforcing support vertical beam through grooves (121) are arranged in three, and are in triangular layout in the transition reinforcing support vertical beam (120).