Rotating shaft laser etching clamping jig seat

By setting a slide and a rotating base between the bottom of the fixture and the laser engraving platform, and combining sliding and rotating drive components, the problem of insufficient position adjustment accuracy during the rotary laser engraving process is solved, and the stability and convenience of laser engraving are achieved.

CN223863061UActive Publication Date: 2026-02-03SUZHOU ZHITIAN NANO TECH CO LTD
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Patent Information

Application Number
CN202520151002.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-22
Publication Date
2026-02-03
Estimated Expiration
2035-01-22

AI Technical Summary

Technical Problem

In existing technologies, the position adjustment precision during the laser engraving process of the rotating shaft is insufficient, which affects the stability and uniformity of the laser engraving.

Method used

A rotary laser engraving clamping fixture is designed. By setting a slide between the bottom of the fixture and the laser engraving platform, and combining sliding drive and rotation drive components, the position and angle of the fixture can be adjusted. The guide slide and platform slide groove are used to improve stability and convenience.

Benefits of technology

It enables precise adjustment of position and angle during the laser engraving process, improves the stability and convenience of laser engraving, reduces jig vibration, and enhances the practicality of the equipment.

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    Figure CN223863061U_ABST
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Abstract

The utility model relates to the technical field of laser carving processing, in particular to a rotating shaft laser carving clamping jig seat which comprises a laser carving machine frame, a laser carving platform arranged in the laser carving machine frame, a laser carving head arranged on the upper side of the laser carving platform, and a jig seat arranged on the laser carving platform, a sliding table arranged between the bottom of the jig seat and the laser carving platform, the sliding table is arranged between the bottom of the jig seat and the laser carving platform, and the sliding table is connected to the laser carving platform in the front-back direction in a sliding mode, so that the position of the sliding table on the laser carving platform can be adjusted, and the jig seat can move into the laser carving working face of the laser carving head; the rotating base table is arranged between the sliding table and the bottom of the jig base, the jig base is arranged at the movable end of the rotating driving piece, the angle of the jig base can be adjusted through the rotating driving piece, and therefore the laser etching requirement is met, and convenience and stability of laser etching are provided.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of laser etching processing, especially to a rotating shaft laser etching clamping jig base. BACKGROUND

[0002] With the continuous progress and expansion of mobile terminal field technology, the appearance of flexible screen can meet the folding design, and thus the mobile terminal can meet the requirements of people in carrying and can expand the screen of the mobile terminal when needed by unfolding, when folding, the hinge mechanism is an important structure for realizing folding, and the rotating shaft is an important factor for determining the stability of the hinge, and laser etching needs to be carried out on the rotating shaft according to requirements during the rotating shaft processing, and the rotating shaft needs to have sufficient stability during the laser etching process, and the positioning accuracy of the laser etching head needs to be matched, so as to ensure that the rotating shaft after laser etching has good uniformity, and thus a rotating shaft laser etching clamping jig base is needed to improve the positioning accuracy during the rotating shaft laser etching process. SUMMARY

[0003] In view of the above-mentioned shortcomings of the prior art, the purpose of the utility model is to provide a rotating shaft laser etching clamping jig base for solving the problem of position adjustment accuracy during rotating shaft laser etching in the prior art.

[0004] To achieve the above-mentioned purposes and other related purposes, the utility model provides the following technical scheme:

[0005] A rotating shaft laser etching clamping jig base, comprising a laser etching rack, a laser etching platform is arranged in the laser etching rack, a laser etching head is arranged on the upper side of the laser etching platform.

[0006] Further comprising a jig base, the jig base is arranged on the laser etching platform, a sliding table is arranged between the bottom of the jig base and the laser etching platform, the sliding table is slidably connected to the laser etching platform in the front-rear direction, a sliding drive element is arranged on one side of the sliding table, the sliding drive element drives the sliding table to move forward and backward, a rotating base is arranged between the sliding table and the bottom of the jig base, a rotating drive element is arranged on the sliding table, and the jig base is arranged on the movable end of the rotating drive element.

[0007] The above-mentioned technical scheme is realized, a sliding table is arranged between the bottom of the jig base and the laser etching platform, the sliding table is slidably connected to the laser etching platform in the front-rear direction, so that the position of the sliding table on the laser etching platform can be adjusted, the jig base can be moved into the laser etching working surface of the laser etching head, a rotating base is arranged between the sliding table and the bottom of the jig base, the jig base is arranged on the movable end of the rotating drive element, the angle of the jig base can be adjusted by using the rotating drive element, so as to meet the laser etching requirements, provide the convenience and stability of laser etching.

[0008] In one embodiment of the present invention, a slide base is provided between the slide table and the sliding drive member, and a guide rail is provided on the side of the slide table away from the sliding drive member. The slide table and the guide rail are slidably engaged, and the guide rail is arranged parallel to the slide base.

[0009] To achieve the above technical solution, a guide rail is provided on the side of the slide table away from the sliding drive component. The guide rail can guide and limit the movement of the slide table, thereby improving the stability of the slide table movement. Setting the guide rail parallel to the slide base can further improve the synchronization of the slide table movement and improve the support stability of the slide table on the fixture base, so that the fixture base will not shake during laser engraving.

[0010] In one embodiment of the present invention, a platform slide groove is provided on the laser engraving platform. The platform slide groove is located below the sliding drive component, and the platform slide groove is arranged in a direction parallel to the guide rail.

[0011] To achieve the above technical solution, the platform slide groove can provide usable space for the assembly of the sliding drive component, thus avoiding any impact on the movement of the sliding drive component during the sliding process of the slide table.

[0012] In one embodiment of the present invention, the platform slide groove is located between the guide rail and the slide base.

[0013] The above technical solution can collect waste and facilitate centralized treatment of waste.

[0014] In one embodiment of the present invention, a drive groove is provided on the slide table, the fixed end of the rotation drive member is located in the drive groove, and the length of the drive groove is greater than the length of the fixed end of the rotation drive member.

[0015] To achieve the above technical solution, by setting the length of the drive slide groove to be greater than the length of the fixed end of the rotary drive component, it is possible to easily adjust the position of the fixture seat on the slide table while still allowing the rotary drive component to have installation space. This can greatly improve the diversity of fixture seats and reduce the shape restrictions of fixture seats.

[0016] In one embodiment of the present invention, two sets of telescopic bases are provided on both sides of the slide table along the laser engraving platform, and a laser engraving beam is provided between the two sets of telescopic bases. A lifting drive component is provided on the lower side of the laser engraving beam, and the lifting drive component drives the laser engraving beam to move up and down.

[0017] To achieve the above technical solution, two sets of telescopic bases are set along both sides of the slide table. In conjunction with the lifting drive component, the laser engraving beam can be driven to move up and down, thereby improving the stability of the laser engraving beam's lifting movement.

[0018] In an embodiment of the utility model, the laser engraving head and the laser engraving cross beam are provided with a laser engraving base, the laser engraving base is slidably connected to the laser engraving cross beam along the horizontal direction, the laser engraving cross beam is provided with a horizontal movement driving element on one side, and the laser engraving base is arranged on the movable end of the horizontal movement driving element.

[0019] The horizontal movement driving element is arranged, the position of the laser engraving head along the horizontal direction can be adjusted, the position of the slide table is adjusted in cooperation with the laser engraving head, the laser engraving head has a wide working coverage, and the practicability of the equipment is improved.

[0020] As described above, the utility model discloses a rotary shaft laser engraving clamping jig base has the following beneficial effects: the slide table is slidably connected to the laser engraving platform along the front-back direction between the jig base bottom and the laser engraving platform, the position of the slide table on the laser engraving platform can be adjusted, the jig base can be moved into the laser engraving working surface of the laser engraving head, the rotary base is arranged between the slide table and the jig base bottom, the jig base is arranged on the movable end of the rotary driving element, the angle of the jig base can be adjusted by the rotary driving element, the laser engraving requirement is satisfied, the convenience and stability of laser engraving are provided. DRAWINGS

[0021] Fig. 1 The structure schematic diagram of the rotary shaft laser engraving clamping jig base disclosed in the embodiment of the utility model is shown.

[0022] Fig. 2 The laser engraving platform structure schematic diagram of the rotary shaft laser engraving clamping jig base disclosed in the embodiment of the utility model is shown.

[0023] Fig. 3 The rotary base structure schematic diagram of the rotary shaft laser engraving clamping jig base disclosed in the embodiment of the utility model is shown.

[0024] Element number explanation

[0025] 1, laser engraving rack, 2, laser engraving platform, 3, laser engraving head, 4, slide table, 5, sliding driving element, 6, rotary base, 7, jig base, 8, rotary driving element, 9, slide, 10, guide slide rail, 11, platform sliding slot, 12, driving sliding slot, 13, telescopic base, 14, laser engraving cross beam, 15, lifting driving element, 16, laser engraving base, 17, horizontal movement driving element. PREFERRED EMBODIMENTS

[0026] The following specific embodiments illustrate the embodiments of the utility model, and those skilled in the art can easily understand other advantages and effects of the utility model from the disclosed content of the specification. It should be noted that the following embodiments and features in the embodiments can be combined with each other without conflict.

[0027] Please refer to Figs. 1 to 3The utility model provides a kind of rotary shaft laser etching clamping jig seat, including laser etching rack 1, laser etching platform 2 is provided in laser etching rack 1, laser etching head 3 is provided on laser etching platform 2 upside, further include jig seat 7, jig seat 7 is located on laser etching platform 2, sliding table 4 is arranged between jig seat 7 bottom and laser etching platform 2, sliding table 4 is slidably connected on laser etching platform 2 along front-back direction, sliding driving part 5 is provided on the side of sliding table 4, sliding driving part 5 drives the front-back movement of the sliding table, rotating base 6 is arranged between the bottom of jig seat 7 and sliding table 4, rotating driving part 8 is provided on sliding table 4, and jig seat 7 is arranged on the movable end of rotating driving part 8.

[0028] By being provided with sliding table 4 between jig seat 7 bottom and laser etching platform 2, sliding table 4 is slidably connected on laser etching platform 2 along front-back direction, so as to adjust the position of sliding table 4 on laser etching platform 2, make jig seat 7 can be moved to the laser etching working surface of laser etching head 3, by being provided with rotating base 6 between the bottom of jig seat 7 and sliding table 4, jig seat 7 is arranged on the movable end of rotating driving part 8, the angle of jig seat 7 can be adjusted by rotating driving part 8, to meet the demand of laser etching, provide the convenience and stability of laser etching.

[0029] Sliding seat 9 is arranged between sliding table 4 and sliding driving part 5, guiding slide rail 10 is arranged on the side of sliding table 4 away from sliding driving part 5, sliding table 4 and guiding slide rail 10 are slidably connected, guiding slide rail 10 is parallel to sliding seat 9, by being provided with guiding slide rail 10 on the side of sliding table 4 away from sliding driving part 5, the movement of sliding table 4 can be guided and limited by guiding slide rail 10, to improve the stability of sliding table 4 movement, guiding slide rail 10 is parallel to sliding seat 9, to further improve the synchronism of sliding table 4 movement, and the support stability of jig seat 7 by sliding table 4 can be improved, so that jig seat 7 does not shake during laser etching.

[0030] Platform sliding groove 11 is arranged on laser etching platform 2, platform sliding groove 11 is below sliding driving part 5, and platform sliding groove 11 is arranged along the direction parallel to guiding slide rail 10, by setting platform sliding groove 11, space can be provided for the assembly of sliding driving part 5, to avoid affecting the movement of sliding driving part 5 during the sliding process of sliding table 4.

[0031] The platform sliding groove 11 is located between the guide sliding rail 10 and the sliding seat 9, can play the role of collecting the waste, and facilitates the centralized treatment of the waste. The driving sliding groove 12 is arranged on the sliding table 4, the fixed end of the rotating driving part 8 is arranged in the driving sliding groove 12, and the length of the driving sliding groove 12 is greater than the length of the fixed end of the rotating driving part 8. By arranging that the length of the driving sliding groove 12 is greater than the length of the fixed end of the rotating driving part 8, the position of the jig seat 7 on the sliding table 4 can be conveniently adjusted, and the rotating driving part 8 still has installation space, so that the diversity of the jig seat 7 can be greatly improved, and the shape of the jig seat 7 is limited.

[0032] The two groups of telescopic bases 13 are arranged on the laser-engraving platform 2 along the two sides of the sliding table 4, the laser-engraving cross beam 14 is arranged between the two groups of telescopic bases 13, the lifting driving part 15 is arranged on the lower side of the laser-engraving cross beam 14, the lifting driving part 15 drives the laser-engraving cross beam 14 to move up and down, and the laser-engraving cross beam 14 moves up and down by being driven by the lifting driving part 15, so that the stability of the laser-engraving cross beam 14 moving up and down is improved.

[0033] The laser-engraving base 16 is arranged between the laser-engraving head 3 and the laser-engraving cross beam 14, the laser-engraving base 16 is slidably connected to the laser-engraving cross beam 14 in the horizontal direction, the horizontal movement driving part 17 is arranged on one side of the laser-engraving cross beam 14, and the laser-engraving base 16 is arranged at the movable end of the horizontal movement driving part 17. By arranging the horizontal movement driving part 17, the position of the laser-engraving head 3 in the horizontal direction can be adjusted, so that the position of the sliding table 4 is adjusted, the laser-engraving head 3 has a wide working coverage, and the practicability of the equipment is improved.

[0034] The utility model discloses a sliding table is arranged between jig seat bottom and laser-engraving platform, and the sliding table is slidably connected to the laser-engraving platform in the front -back direction, thereby can adjust the position of the sliding table on the laser-engraving platform, make the jig seat can move to the laser-engraving working surface of the laser-engraving head, and the rotating base station is arranged between the sliding table and the bottom of the jig seat, and the jig seat is arranged at the movable end of the rotating driving part, can utilize rotating driving part to adjust the angle of jig seat, thereby satisfy the laser-engraving demand, provide the convenience and stability of laser-engraving.

[0035] The above embodiment only exemplarily illustrates the principle and effect of the utility model, and is not used to limit the utility model. All equivalent modifications or changes completed by those skilled in the art without departing from the spirit and technical thought disclosed by the utility model should still be covered by the claims of the utility model.

Claims

1. A rotary laser engraving clamping fixture, comprising a laser engraving frame, wherein a laser engraving platform is disposed within the laser engraving frame, and a laser engraving head is disposed on the upper side of the laser engraving platform, characterized in that... It also includes a fixture base, which is disposed on a laser engraving platform. A slide is provided between the bottom of the fixture base and the laser engraving platform. The slide is slidably connected to the laser engraving platform in the front-back direction. A sliding drive is provided on one side of the slide, which drives the slide to move back and forth. A rotating base is provided between the slide and the bottom of the fixture base. A rotating drive is provided on the slide, and the fixture base is located at the movable end of the rotating drive.

2. The rotary laser engraving clamping fixture base according to claim 1, characterized in that: A slide block is provided between the slide table and the sliding drive component, and a guide rail is provided on the side of the slide table away from the sliding drive component. The slide table and the guide rail are slidably engaged, and the guide rail is arranged parallel to the slide block.

3. The rotating shaft laser engraving clamping fixture base according to claim 1, characterized in that: The laser engraving platform is provided with a platform slide groove, which is located below the sliding drive component and is arranged parallel to the guide rail.

4. The rotating shaft laser engraving clamping fixture base according to claim 3, characterized in that: The platform slide is located between the guide rail and the slide block.

5. The rotary laser engraving clamping fixture base according to claim 1, characterized in that: The slide is provided with a drive groove, the fixed end of the rotating drive component is located in the drive groove, and the length of the drive groove is greater than the length of the fixed end of the rotating drive component.

6. The rotating shaft laser engraving clamping fixture base according to claim 1, characterized in that: The laser engraving platform has two sets of telescopic bases on both sides of the slide, and a laser engraving beam is set between the two sets of telescopic bases. A lifting drive is set on the lower side of the laser engraving beam, and the lifting drive drives the laser engraving beam to move up and down.

7. The rotary laser engraving clamping fixture base according to claim 1, characterized in that: A laser engraving base is provided between the laser engraving head and the laser engraving beam. The laser engraving base is slidably connected to the laser engraving beam in the horizontal direction. A transverse drive component is provided on one side of the laser engraving beam, and the laser engraving base is located at the movable end of the transverse drive component.