Transverse moving frame locking device
By employing a rectangular frame structure with four legs and a locking mechanism in the irregular glass positioning device, the problem of easy damage to the locking structure in the prior art is solved, achieving reliable locking effect and accurate positioning.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-26
- Publication Date
- 2026-04-07
AI Technical Summary
The locking structure of existing irregular glass positioning equipment is prone to damage to the locking groove after repeated adjustments, resulting in inaccurate positioning and poor locking effect.
The rectangular frame structure consists of four legs, two X-direction fixed beams, and two Y-direction slide rail beams. Combined with a locking mechanism, including an L-shaped support, screw, handle, and conical locking disc, the locking disc is pressed against the Y-direction slide rail beam by turning the handle, achieving a reliable locking effect.
It improves the reliability of the locking relationship, avoids damage to the locking position, and ensures positioning accuracy and locking effect.
Smart Images

Figure CN224091172U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a special-shaped glass positioning equipment especially relates to a horizontal moving frame locking device. BACKGROUND
[0002] If the special-shaped glass position deviates when conveying to the designated station, it will affect the processing effect in the subsequent process link, so positioning equipment set in this station is used for positioning, the existing positioning equipment such as the Chinese patent publication document with the announcement number CN218144457U and the name "a special-shaped glass positioning device" record "the edge of special-shaped glass 4 near glass transmission channel 31 discharge end and two positioning pressure head 22 are in contact and are pressed, make two positioning pressure head 22 press in the different position of the edge of special-shaped glass 4, rely on the shape of the edge of special-shaped glass 4 to adjust the inclination angle of glass, complete positioning", the positioning pressure head in the above structure is simple screw locking structure, when the tightness is adjusted, screw and locking groove need to be screwed and matched, but in actual application, if the positioning pressure head is adjusted for many times, screw damage locking groove and other conditions may occur, so as to ensure that the positioning pressure head position is not accurate, and the locking effect is poor. SUMMARY
[0003] The utility model solves the technical problem in view of prior art, provides a horizontal moving frame locking device that locking relation is reliable, avoids damage locking position.
[0004] To solve the above technical problem, the utility model adopts the following technical scheme.
[0005] A horizontal moving frame locking device, it includes four supporting legs, two X direction fixed beams and two Y direction slide rail beams, two X direction fixed beams and two Y direction slide rail beams are connected to form the rectangle frame, four supporting legs are fixed at the four corners of the rectangle frame respectively, the lower of the rectangle frame is equipped with two mutually parallel horizontal moving beams, the both ends of the horizontal moving beam are slidably connected with two Y direction slide rail beams, the adjacent place of the horizontal moving beam and the Y direction slide rail beam is equipped with locking mechanism, the locking mechanism includes L-shaped support, screw, handle and locking disc, the horizontal end of the L-shaped support is fixedly connected with the horizontal moving beam, the screw passes through the vertical end of the L-shaped support and is screwed together, the screw is perpendicular to the Y direction slide rail beam, the locking disc is fixed on one end of the screw, and the locking disc is arranged in alignment with the Y direction slide rail beam, the handle is fixed on the end of the screw away from the locking disc, and the locking disc is tightly pressed against the Y direction slide rail beam by rotating the handle.
[0006] Preferably, the locking disc is a conical locking disc, and the planar end of the locking disc is arranged in alignment with the Y direction slide rail beam.
[0007] Preferably, a slide rail seat is fixed on the transverse moving beam, and a slide rail is fixed on the bottom of the Y-direction slide rail beam, and the slide rail passes through the slide rail seat and is in sliding fit with the slide rail seat.
[0008] Preferably, a Y-direction intermediate cross beam is fixed between the two X-direction fixed beams, and the transverse moving beam is in sliding connection with the Y-direction intermediate cross beam.
[0009] Preferably, the locking mechanism is arranged at the adjacent position of the transverse moving beam and the Y-direction intermediate cross beam.
[0010] The transverse moving frame locking device discloses the utility model, four support legs prop up the rectangular frame to a certain height, and the special-shaped glass workpiece can pass below the rectangular frame, the transverse moving beam can slide along the Y-direction slide rail beam, thereby adjusting the relative position between the positioning mechanism installed on the transverse moving beam and the special-shaped glass, when the transverse moving beam is adjusted to the appropriate position, the screw rod is fed relative to the vertical end of the L-shaped support by screwing the handle, until the locking disc is abutted to the Y-direction slide rail beam, and the relative position of the transverse moving beam and the Y-direction slide rail beam is fixed under the action of the locking mechanism. BRIEF DESCRIPTION OF DRAWINGS
[0011] Fig. 1 It is the structure diagram of special-shaped glass positioning equipment;
[0012] Fig. 2 It is the enlarged view of locking mechanism;
[0013] Fig. 3 It is the enlarged view of bottom structure of special-shaped glass positioning equipment. DETAILED DESCRIPTION
[0014] The utility model will be described in more detail below in combination with the drawings and examples.
[0015] The utility model discloses a transverse moving frame locking device, combines Figs. 1 to 3As shown, it comprises four supporting legs 1, two X-direction fixed beams 2 and two Y-direction sliding rail beams 3, the two X-direction fixed beams 2 and the two Y-direction sliding rail beams 3 are connected to form the rectangular frame, the four supporting legs 1 are fixed at four corners of the rectangular frame respectively, two mutually parallel transverse moving beams 4 are arranged below the rectangular frame, two ends of the transverse moving beam 4 are slidably connected with the two Y-direction sliding rail beams 3 respectively, a locking mechanism 5 is arranged at the adjacent position of the transverse moving beam 4 and the Y-direction sliding rail beam 3, the locking mechanism 5 comprises an L-shaped support 50, a screw rod 51, a handle 52 and a locking disc 53, the transverse end of the L-shaped support 50 is fixedly connected with the transverse moving beam 4, the screw rod 51 passes through the vertical end of the L-shaped support 50 and is threadedly connected with the vertical end, the screw rod 51 is perpendicular to the Y-direction sliding rail beam 3, the locking disc 53 is fixed to one end of the screw rod 51 and is arranged in alignment with the Y-direction sliding rail beam 3, the handle 52 is fixed to the other end of the screw rod 51 away from the locking disc 53, and the locking disc 53 is abutted against the Y-direction sliding rail beam 3 by rotating the handle 52.
[0016] In the above structure, the four supporting legs 1 support the rectangular frame to a certain height, so that the special-shaped glass workpiece can pass below the rectangular frame, the transverse moving beam 4 can slide along the Y-direction sliding rail beam 3, so as to adjust the relative position between the positioning mechanism installed on the transverse moving beam 4 and the special-shaped glass, after the transverse moving beam 4 is adjusted to the appropriate position, the screw rod 51 is fed relative to the vertical end of the L-shaped support 50 by rotating the handle 52, until the locking disc 53 is abutted against the Y-direction sliding rail beam 3, and the relative position between the transverse moving beam 4 and the Y-direction sliding rail beam 3 is fixed under the action of the locking mechanism 5. Compared with the prior art, the locking reliability is improved, and the locking position is not damaged in the adjustment process, which better meets the application requirements.
[0017] In order to further improve the locking reliability, in the embodiment, the locking disc 53 is a conical locking disc, and the planar end of the locking disc 53 is arranged in alignment with the Y-direction sliding rail beam 3.
[0018] In the above structure, the locking disc 53 is conical, one end is planar, and the other end is pointed, the planar end of the locking disc 53 faces the Y-direction sliding rail beam 3 and can abut against the Y-direction sliding rail beam 3, and the pointed end is fixedly connected with the screw rod 51, which can increase the friction between the planar end and the Y-direction sliding rail beam 3, and at the same time, ensure that the torsion of the screw rod 51 is fully applied to the locking disc 53.
[0019] In the embodiment, the locking disc 53 can be a component made of rubber.
[0020] In order to realize the sliding matching of the horizontal movement beam 4 and the Y-direction slide rail beam 3, in the embodiment, a slide rail seat 40 is fixed on the horizontal movement beam 4, and a slide rail 30 is fixed on the bottom of the Y-direction slide rail beam 3, and the slide rail 30 passes through the slide rail seat 40 and is in sliding matching with the slide rail seat 40.
[0021] Since the horizontal movement beam 4 has a certain length, and the lower part of the horizontal movement beam 4 is used for hoisting a positioning mechanism, in order to reliably support two horizontal movement beams 4, in the embodiment, a Y-direction intermediate cross beam 6 is fixed between two X-direction fixed beams 2, and the horizontal movement beam 4 is in sliding connection with the Y-direction intermediate cross beam 6. Specifically, the horizontal movement beam 4 and the Y-direction intermediate cross beam 6 are also in sliding matching through a slide rail and a slide rail seat.
[0022] Further, the horizontal movement beam 4 and the Y-direction intermediate cross beam 6 are provided with the locking mechanism 5 at the adjacent positions.
[0023] The above description is only the preferred embodiment of the present application, and is not used for limiting the present application, and any modification, equivalent replacement or improvement within the technical scope of the present application should be included in the protection scope of the present application.
Claims
1. A transverse frame locking device, characterized in that, It includes four legs (1), two X-direction fixed beams (2), and two Y-direction sliding rail beams (3). The two X-direction fixed beams (2) and the two Y-direction sliding rail beams (3) are connected to form a rectangular frame. The four legs (1) are fixed at the four corners of the rectangular frame. Two parallel transverse moving beams (4) are provided below the rectangular frame. The two ends of the transverse moving beams (4) are slidably connected to the two Y-direction sliding rail beams (3). A locking mechanism (5) is provided at the adjacent position of the transverse moving beams (4) and the Y-direction sliding rail beams (3). The locking mechanism (5) includes an L-shaped support (50), a screw (51), and a handle (5). 2) and locking disc (53), the lateral end of the L-shaped support (50) is fixedly connected to the transverse moving beam (4), the screw (51) passes through the vertical end of the L-shaped support (50) and the two are threaded together, the screw (51) is perpendicular to the Y-direction slide rail beam (3), the locking disc (53) is fixed to one end of the screw (51), and the locking disc (53) is aligned with the Y-direction slide rail beam (3), the handle (52) is fixed to the end of the screw (51) away from the locking disc (53), and the locking disc (53) is pressed against the Y-direction slide rail beam (3) by turning the handle (52).
2. The transverse frame locking device as described in claim 1, characterized in that, The locking disc (53) is a conical locking disc, and the flat end of the locking disc (53) is aligned with the Y-direction slide rail beam (3).
3. The transverse frame locking device as described in claim 1, characterized in that, A slide rail seat (40) is fixed on the transverse moving beam (4), and a slide rail (30) is fixed at the bottom of the Y-direction slide rail beam (3). The slide rail (30) passes through the slide rail seat (40) and the two slide in cooperation.
4. The transverse frame locking device as described in claim 1, characterized in that, A Y-direction intermediate crossbeam (6) is fixed between two X-direction fixed beams (2), and the transverse moving beam (4) is slidably connected to the Y-direction intermediate crossbeam (6).
5. The transverse frame locking device as described in claim 1, characterized in that, The locking mechanism (5) is provided at the adjacent position of the transverse moving beam (4) and the Y-direction intermediate cross beam (6).
Citation Information
Patent Citations
Positioning device for special-shaped glass
CN218144457U