Vertical lathe lifting operation device easy to operate

By designing a first adjustment mechanism and a second adjustment mechanism on the vertical lathe, the problem of inconvenient operation caused by the height of the vertical lathe's lifting mechanism was solved, and flexible adjustment and electrical connection of the control panel were realized, improving the ease of operation and continuous control of the vertical lathe.

CN223518655UActive Publication Date: 2025-11-07LUOYANG ZECHENG MASCH EQUIP CO LTD
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Patent Information

Application Number
CN202423076924.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-13
Publication Date
2025-11-07
Estimated Expiration
2034-12-13

AI Technical Summary

Technical Problem

The vertical lathe has a relatively high lifting mechanism and a fixed control panel position, making it inconvenient for users to operate and measure from different sides, resulting in processing difficulties.

Method used

A vertical car lifting operating device including a first adjustment mechanism and a second adjustment mechanism was designed. Through gears, slides and power supply mechanism, the operating panel can be adjusted around and electrically connected to ensure flexible operation in different positions.

Benefits of technology

This allows for flexible use of the control panel in different positions on the vertical lathe, reducing interference with external structures and improving the convenience of operation and the continuity of control.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223518655U_ABST
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Abstract

The utility model discloses a vertical lathe lifting operation device easy to operate, which belongs to the technical field of vertical lathe machine tools and comprises a lifting mechanism body, a first adjusting mechanism is arranged around the top of the lifting mechanism body, and a second adjusting mechanism is arranged at the top of a first motor in the first adjusting mechanism. The first adjusting mechanism and the second adjusting mechanism are arranged on the vertical lathe machine tool, by means of limiting of a first gear, an inner rack, an upper sliding groove and a lower sliding groove, the operation panel can rotate around the outer wall of the lifting mechanism to adjust the position, meanwhile, the operation panel can pass through the lifting mechanism, and meanwhile the power supply mechanism keeps electrical connection between the operation panel and an electric appliance of the lifting mechanism; the operation panel is tightly attached to the outer wall of the lifting mechanism through the second gear, the movable steel channel and the like, so that the operation panel is not interfered by the body structure of the lifting mechanism during rotation, and the operation panel can be used for controlling the machine tool to work at different positions of the vertical lathe machine tool.
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Description

TECHNICAL FIELD

[0001] The utility model relates to vertical lathe machine tool technical field, in particular to an easy operation's vertical lathe lifting operation device. BACKGROUND

[0002] Vertical lathe is a kind of lathe, and the spindle axis is perpendicular to the horizontal plane, and workpiece is installed on horizontal rotary table. It is mainly used for machining large and heavy workpieces with large diameter and short length, and workpieces that are not easy to clamp on horizontal lathe. Vertical lathe is suitable for machining cylindrical surface, end surface, conical surface, cylindrical hole, conical hole and other surfaces of various discs, wheels and sleeves. It can also be used for machining threads, ball surfaces, profiling, iron pins and grinding by means of additional devices. According to the structure, vertical lathe is generally divided into single-column type and double-column type.

[0003] When vertical lathe is used, the height of its lifting mechanism is large, and the control panel is usually fixed on the outside of the lifting mechanism by a suspension rod, and the position is relatively fixed. Users can only use the operation panel on one side, and due to the height of the lifting mechanism, it cannot be adjusted horizontally or rotated, so that when the tool moves to the other side for machining, the user cannot adjust, measure and control with the operation panel, which is inconvenient. Therefore, an easy-to-operate vertical lathe lifting operation device is needed to solve this problem. UTILITY MODEL CONTENT

[0004] The main purpose of the utility model is to provide an easy-to-operate vertical lathe lifting operation device, which solves the problem mentioned in the background art.

[0005] The purpose of the utility model can be achieved by adopting the following technical scheme:

[0006] An easy-to-operate vertical lathe lifting operation device, comprising a lifting mechanism body, a first adjusting mechanism is arranged around the top of the lifting mechanism body, a second adjusting mechanism is arranged on the top of the first motor in the first adjusting mechanism, a movable channel steel is arranged at the bottom of the second adjusting mechanism, a hanging rod is arranged at the bottom of the operation box body, and a power supply mechanism is further arranged at the center of the top of the lifting mechanism body.

[0007] The first adjusting mechanism further comprises an upper sliding groove and a lower sliding groove, the upper sliding groove and the lower sliding groove are both open slots, and are both arranged on the top of the lifting mechanism body, a gear shaft is limitingly slid between the upper sliding groove and the lower sliding groove, a first gear is nested on the gear shaft, and a first motor is connected to the top of the gear shaft.

[0008] The second adjusting mechanism further comprises a fixed frame, the fixed frame is rotationally connected with the first motor through a first rotating base, a second motor is fixedly arranged on the outer wall of the fixed frame, the output shaft of the second motor is embedded with a second gear after penetrating through the fixed frame, and the second gear is meshed with a toothed plate formed on the top of the movable channel steel;

[0009] The power supply mechanism comprises a power supply column fixed to the lifting mechanism body, and the power supply column is rotationally and electrically connected with a brush ring.

[0010] Further, a machine tool circuit module is integrated in the inner wall of the lifting mechanism body, the machine tool circuit module is connected with the power supply column wire, the brush ring is electrically connected with a first control line group in the periphery, the power supply column is externally connected with a second control line group, the first control line group is connected with the operation box body, and the second control line group is connected with the first motor and the second motor.

[0011] Further, the first gear is meshed with an internal gear rack formed in the top inner wall of the lifting mechanism body.

[0012] Further, limit sliding grooves are formed in the outer walls of the movable channel steel, and limit sliding plates integrally connected with the fixed frame are slidably arranged in the limit sliding grooves.

[0013] Further, the top of the suspender is rotationally installed with the bottom of the movable channel steel through a second rotating base, and the first control line group penetrates through the inner cavities of the movable channel steel and the suspender.

[0014] Further, operation buttons for controlling the lifting mechanism, the first motor and the second motor are inlaid on the outer wall of the operation box body.

[0015] The beneficial technical effects of the utility model are as follows:

[0016] By arranging the first adjusting mechanism and the second adjusting mechanism on the vertical lathe machine tool, the operation panel can be rotationally adjusted along the outer wall of the lifting mechanism through the limiting of the first gear, the internal gear rack, the upper sliding groove and the lower sliding groove, meanwhile, the power supply mechanism can keep the electrical connection between the operation panel and the lifting mechanism, the second gear and the movable channel steel can make the operation panel closely adhere to the outer wall of the lifting mechanism, so that the operation panel is not interfered by the structure of the lifting mechanism body during rotation, and the operation panel can be used to control the machine tool at different positions of the vertical lathe machine tool. DRAWINGS

[0017] Figure 1 It is a structure schematic view of a preferred embodiment of the utility model of an easy-to-operate vertical lathe lifting operation device.

[0018] Figure 2A rear view structure schematic diagram of a preferred embodiment of the easy-to-operate vertical-lifting operation device according to the utility model;

[0019] Figure 3 A connection relationship schematic diagram of the first adjusting mechanism and the second adjusting mechanism in a preferred embodiment of the easy-to-operate vertical-lifting operation device according to the utility model;

[0020] Figure 4 A preferred embodiment of the easy-to-operate vertical-lifting operation device according to the utility model Figure 3 An enlarged view of A in the above figure;

[0021] Figure 5 A structure schematic diagram of the second adjusting mechanism in a preferred embodiment of the easy-to-operate vertical-lifting operation device according to the utility model.

[0022] The following is the explanation of the reference signs:

[0023] 1, lifting mechanism body; 2, first adjusting mechanism; 201, first motor; 202, inner rack; 203, first gear; 204, gear shaft; 205, lower sliding groove; 206, upper sliding groove; 3, power supply mechanism; 301, power supply column; 302, brush ring; 303, machine tool circuit module; 304, second control wire group; 4, second adjusting mechanism; 401, second motor; 402, fixed frame; 403, first rotating seat; 404, moving channel steel; 405, second gear; 406, toothed plate; 407, limiting sliding groove; 408, limiting sliding plate; 409, second rotating seat; 410, second control wire group; 5, boom; 6, operation box body. DETAILED DESCRIPTION

[0024] In order to make the skilled in the art more clear and definite technical scheme of the utility model, the following will be further described in detail in combination with the embodiment and the drawings, but the embodiment of the utility model is not limited to this.

[0025] For example, Figures 1-5As shown, the embodiment provides an easy-to-operate vertical car lifting operation device, which comprises a lifting mechanism body 1, a first adjusting mechanism 2 is arranged around the top of the lifting mechanism body 1, a second adjusting mechanism 4 is arranged at the top of a first motor 201 in the first adjusting mechanism 2, a moving channel steel 404 is arranged at the bottom of the second adjusting mechanism 4, a jib 5 is arranged at the bottom of the operation box body 6, and a power supply mechanism 3 is further arranged at the top center of the lifting mechanism body 1; the first adjusting mechanism 2 further comprises an upper sliding groove 206 and a lower sliding groove 205, both of which are open slots and are arranged at the top of the lifting mechanism body 1, a gear shaft 204 is limited to slide between the upper sliding groove 206 and the lower sliding groove 205, a first gear 203 is nested on the gear shaft 204, and the first motor 201 is connected with the top of the gear shaft 204 in a matching manner; the second adjusting mechanism 4 further comprises a fixed frame 402, the fixed frame 402 is rotatably connected with the first motor 201 through a first rotating seat 403, a second motor 401 is bolted on the outer wall of the fixed frame 402, a second gear 405 is nested on the output shaft of the second motor 401 after penetrating through the fixed frame 402, and the second gear 405 is engaged with a toothed plate 406 formed at the top of the moving channel steel 404; the power supply mechanism 3 comprises a power supply column 301 fixed on the lifting mechanism body 1, and an electric brush ring 302 is rotatably and electrically connected around the power supply column 301.

[0026] In the above embodiment, the operation box body 6 can be driven by the first adjusting mechanism 2 to move around the top of the lifting mechanism, and can also be driven by the second adjusting mechanism 4 to move outward or inward for adjustment, so as to achieve the purpose of suspension positioning, facilitate the user to keep the operation panel at a position close to one side of the body, and facilitate timely operation. It should be noted that when the operation box body 6 is rotated and positioned through the first rotating seat 403, it is located on the inner side of the track in the X-axis direction of the lifting mechanism body 1, so that it cannot be rotated around. At this time, the extended length of the operation box body 6 needs to be lengthened through the second adjusting mechanism 4 first, and then the first adjusting mechanism 2 is adjusted after bypassing the outer end of the X track. Similarly, when the operation box body 6 moves around, if other objects interfere with the surrounding of the lifting mechanism body 1, the extended length of the operation box body 6 needs to be shortened through the second adjusting mechanism 4 first, so that it is close to the outer wall of the lifting mechanism body 1, and then moves around.

[0027] The machine tool circuit module 303 is integrated in the inner wall of the lifting mechanism body 1, the machine tool circuit module 303 is connected with the conductor of the power supply column 301, the outer periphery of the brush ring 302 is electrically connected with the first control line group 304, the outer part of the power supply column 301 is connected with the second control line group 410, the first control line group 304 is connected with the operation box body 6, the second control line group 410 is connected with the first motor 201 and the second motor 401, the machine tool circuit module 303 is connected with the circuit of the electric equipment such as the cylinder, the hydraulic cylinder, the motor and the controller for controlling the lifting, the circuit transmits the instructions of different current intensities to the power supply column 301, and then the power supply column 301 and the brush ring 302 are used to send the instructions into the operation box body 6 for identification, so that the moving control purpose is achieved.

[0028] The inner gear rack 202 is formed in the inner wall of the top of the lifting mechanism body 1 and is engaged with one side of the first gear 203.

[0029] The outer wall of the movable channel steel 404 is provided with the limiting sliding groove 407 on both sides, the limiting sliding plate 408 which is integrally connected with the fixed frame 402 is slidably arranged in the limiting sliding groove 407, and the structure of the limiting sliding plate 408 and the limiting sliding groove 407 can keep the horizontal degree of the movable channel steel 404.

[0030] The top of the boom 5 is rotatably installed at the bottom of the movable channel steel 404 through the second rotating seat 409, and the first control line group 304 penetrates the inner cavities of the movable channel steel 404 and the boom 5.

[0031] The operation keys for controlling the lifting mechanism, the first motor 201 and the second motor 401 are embedded in the outer wall of the operation box body 6.

[0032] The working principle of the device is as follows: when the device is used, the external power supply is connected, the operation box body 6 is used to control the operation of the device, and the lifting mechanism of the vertical lathe is controlled to work.

[0033] The mechanism for moving in the X, Y and Z axial directions is installed on one side of the outer wall of the lifting mechanism body 1, the tool module is installed at the bottom of the Z axial direction mechanism, the chuck body is directly below the tool module, when the vertical lathe normally operates, the user inputs the parameters to control the operation of the device through the keys and the display screen on the operation box body 6.

[0034] When the user needs to maintain the device, measure the workpiece machining precision and debug the equipment at a specific location, the first motor 201 on the first adjusting mechanism 2 is started to drive the first gear 203 to rotate, the gear shaft 204 in the first gear 203 moves along the top annular of the lifting mechanism body 1 under the limitation of the upper slide groove 206 and the lower slide groove 205 and the meshing force of the first gear 203 and the internal gear rack 202, the fixed frame 402 connected to the top of the first motor 201 carries the internal moving channel steel 404, the bottom boom 5 and the operation box body 6 outside one end of the moving channel steel 404 are synchronously moved around, the operation box body 6 is rotated and moved from the left side of the lifting mechanism to the right side, to assist the user to conveniently and quickly operate the machine tool, and the first control line group 304 in the operation box body 6 is electrically connected with the power supply column 301 through the brush ring 302 inside the moving channel steel 404, so that the real-time continuous control of the electric appliance on the lifting mechanism is maintained.

[0035] In addition, the second motor 401 drives the second gear 405 to rotate and drives the tooth plate 406 at the top of the moving channel steel 404 to adjust the extension length of the moving channel steel 404, the tooth plate 406 moves to the right in the fixed frame 402, the limiting slide plate 408 supports the limiting slide groove 407 on both sides of the outer wall of the moving channel steel 404, the horizontal position of the moving channel steel 404 is kept, and then the operation box body 6 can be close to the outer wall of the lifting mechanism body 1, so that the operation box body 6 is not in contact with the object outside when the first adjusting mechanism 2 is moved around.

[0036] The above is only a further embodiment of the present application, but the protection scope of the present application is not limited to this, any person skilled in the art can make equivalent replacement or change according to the technical scheme and the concept of the present application within the scope disclosed by the present application, which belongs to the protection scope of the present application.

Claims

1. An easily operated vertical lift operating device for a vertical lift, comprising a lift mechanism body (1), characterized in that: The first adjusting mechanism (2) is provided on the top of the lifting mechanism body (1), and a first motor (201) is arranged on the top of the first adjusting mechanism (2); a second adjusting mechanism (4) is arranged on the top of the first motor (201), and a moving channel steel (404) is arranged on the bottom of the second adjusting mechanism (4); a hanging rod (5) is arranged on the bottom of the moving channel steel (404), and an operation box body (6) is arranged on the bottom of the hanging rod (5); and a power supply mechanism (3) is arranged at the center of the top of the lifting mechanism body (1). The first adjusting mechanism (2) further comprises an upper sliding groove (206) and a lower sliding groove (205), both of which are open slots and are arranged on the top of the lifting mechanism body (1); a gear shaft (204) is arranged between the upper sliding groove (206) and the lower sliding groove (205) and is limited to slide; a first gear (203) is arranged on the gear shaft (204); and the first motor (201) is connected to the top of the gear shaft (204). The second adjusting mechanism (4) further comprises a fixed frame (402), which is rotatably connected to the first motor (201) through a first rotating seat (403); a second motor (401) is bolted to the outer wall of the fixed frame (402); a second gear (405) is arranged on the output shaft of the second motor (401) and penetrates through the fixed frame (402); and the second gear (405) is engaged with a toothed plate (406) formed on the top of the moving channel steel (404). The power supply mechanism (3) comprises a power supply column (301) fixed to the lifting mechanism body (1), and an electric brush ring (302) is arranged on the periphery of the power supply column (301) and is electrically connected.

2. A stand-on forklift truck lift operator control device according to claim 1 wherein: A machine tool circuit module (303) is integrated in the inner wall of the lifting mechanism body (1) and is connected to the power supply column (301) through a wire; a first control line group (304) is electrically connected to the periphery of the electric brush ring (302); a second control line group (410) is connected to the outside of the power supply column (301); the first control line group (304) is connected to the operation box body (6); and the second control line group (410) is connected to the first motor (201) and the second motor (401).

3. A stand-on forklift truck lift operator control device according to claim 2 wherein: An inner gear rack (202) is formed in the inner wall of the top of the lifting mechanism body (1) and is engaged with one side of the first gear (203).

4. A stand-on forklift truck lift operator control device according to claim 3 wherein: Limiting sliding grooves (407) are formed in the outer walls of the moving channel steel (404), and a limiting sliding plate (408) is slidably arranged in the limiting sliding grooves (407) and is integrally connected to the fixed frame (402).

5. A stand-on forklift truck lift operator control device according to claim 4 wherein: The top of the hanging rod (5) is rotatably installed on the bottom of the moving channel steel (404) through a second rotating seat (409), and the first control line group (304) penetrates through the inner cavities of the moving channel steel (404) and the hanging rod (5).

6. A stand-on forklift truck lift operator control device according to claim 5 wherein: Operation buttons for controlling the lifting mechanism, the first motor (201) and the second motor (401) are inlaid on the outer wall of the operation box body (6).