CN-224212695-U - Auxiliary tool for heat treatment of metal material
Abstract
The utility model discloses an auxiliary tool for heat treatment of metal materials, which relates to the field of auxiliary tools for metal heating and comprises a barrel body and a lifting electromagnetic heating assembly, wherein a rotating disc is rotationally connected in the barrel body, connecting columns are fixedly arranged at the periphery of the top end of the rotating disc at equal intervals, the top ends of the connecting columns are detachably connected with connectors through connecting mechanisms, a tray is integrally formed on the outer wall of each connector, a driving motor and two electric pushing cylinders are arranged at the bottom end of the barrel body, and the driving motor is positioned between the two electric pushing cylinders. According to the utility model, the jacking mechanism and the connecting mechanism are arranged, the jacking mechanism moves upwards to squeeze the connecting mechanism, so that the locking limit of the connecting mechanism to the connectors is synchronously released, the connectors can be quickly taken down, a new connector is replaced, and the replacing efficiency of the connectors is further improved.
Inventors
- TAN FAJIA
- Zeng Qihai
- SHEN LIN
- LAN CHENG
- NING LIANG
Assignees
- 广西壮族自治区特种设备检验研究院
Dates
- Publication Date
- 20260508
- Application Date
- 20240201
Claims (7)
- 1. The utility model provides a metal material thermal treatment auxiliary fixtures, includes staving (1) and lift electromagnetic heating subassembly (5), the inside rotation of staving (1) is connected with rolling disc (2), the circumferential equidistant spliced pole (3) of top of rolling disc (2) are fixedly installed, a serial communication port, the top of spliced pole (3) is connected with connector (4) through coupling mechanism can dismantle, the outer wall integrated into one piece of connector (4) has tray (14), driving motor (8) and two electronic pushing cylinder (7) are installed to the bottom of staving (1), driving motor (8) are located two electronic pushing cylinder (7) are between; The connecting mechanism is used for synchronously fixing the connectors (4) on the tops of the connecting columns (3) respectively; The output end of the electric pushing cylinder (7) is connected with a jacking mechanism, and the jacking mechanism in a lifting state is used for synchronously releasing the limitation of the connecting mechanisms on the connectors (4).
- 2. The auxiliary tool for heat treatment of metal materials according to claim 1, wherein the connecting mechanism comprises a butt joint hole (12), a plug-in column (15), a lock hole (16), a connecting groove (17), a connecting plate (18), an upper fixing plate (19), a first compression surface (20), a spring (21), a lower fixing plate (22) and a lower compression surface (23); The plurality of butt joint holes (12) distributed circumferentially are formed in the bottom end of the rotating disc (2) and penetrate through the inner cavity of the connecting column (3), the plug-in column (15) is integrally formed in the bottom end of the connecting head (4) and is plugged in the top end of the inner cavity of the butt joint hole (12), and the lock hole (16) is horizontally formed in the plug-in column (15); The connecting groove (17) is formed in the connecting column (3), the vertical section of the connecting groove (17) is of a C-shaped structure, the connecting plate (18) is horizontally and slidably connected in the connecting groove (17), the upper fixing plate (19) and the lower fixing plate (22) are integrally formed at the upper end and the lower end of the connecting plate (18), and the upper fixing plate and the lower fixing plate respectively penetrate through the inner cavity of the butt joint hole (12) from the openings at the two ends of the connecting groove (17); a spring (21) is arranged below the inner wall of the connecting groove (17), and one end of the spring (21) is connected with the connecting plate (18); The first compression surface (20) is formed at one end of the upper fixing plate (19) far away from the connecting plate (18), and the lower compression surface (23) is formed at one end of the lower fixing plate (22) far away from the connecting plate (18).
- 3. The auxiliary tool for heat treatment of metal materials according to claim 2, wherein the jacking mechanism comprises a movable disc (6), a sliding groove (10), balls (11) and a butt joint shaft (13); The movable disc (6) is movably connected to the inner cavity of the barrel body (1), the balls (11) are movably connected to the end part of the output end of the electric push cylinder (7), the sliding grooves (10) are annularly formed in the bottom end of the movable disc (6) and are in contact with the surface of the balls (11), a plurality of butt joint shafts (13) are circumferentially equidistantly distributed on the top end of the movable disc (6), and the butt joint shafts (13) and the butt joint holes (12) are in one-to-one correspondence in the up-down direction.
- 4. The auxiliary tool for heat treatment of metal materials according to claim 3, wherein the output end of the driving motor (8) is connected with a synchronous shaft (9), the cross section of the synchronous shaft (9) is of a convex structure, the output end of the synchronous shaft (9) is fixedly connected with the bottom end of the rotating disc (2), a sliding groove which is anastomotic with the outer wall of the synchronous shaft (9) is formed in the contact position of the movable disc (6) and the synchronous shaft (9), the cross section of the sliding groove is of a convex structure, and the movable disc (6) is in up-down sliding connection with the synchronous shaft (9) through the sliding groove.
- 5. The auxiliary tool for heat treatment of metal materials according to claim 1, wherein the lifting electromagnetic heating assembly (5) comprises a bracket (501), a lifting motor (502), a sliding rod (503), a threaded column (504), a fixing seat (505) and a high-frequency electromagnetic heater (506); The support (501) is fixedly connected to the outer wall of the barrel body (1), the lifting motor (502) is arranged at the bottom end of the support (501), and the output end of the lifting motor (502) penetrates through the upper part of the support (501) and is rotationally connected with the support (501); The screw thread post (504) connect in the output of elevator motor (502), fixing base (505) with screw thread post (504) threaded connection, slide bar (503) fixed connection in the top of support (501), and in fixing base (505) sliding connection, high frequency electromagnetic heater (506) install in on fixing base (505).
- 6. A metal material heat treatment auxiliary tool according to claim 3, wherein the cross sections of the plug-in column (15), the butt joint hole (12) and the butt joint shaft (13) are of oval structures, and the inner wall of the butt joint hole (12) is matched with the outer walls of the plug-in column (15) and the butt joint shaft (13).
- 7. The auxiliary tool for heat treatment of metal materials according to claim 2, wherein two connecting grooves (17) are formed in one connecting column (3), and the two connecting grooves (17) are symmetrically arranged with the central axis of the connecting column (3).
Description
Auxiliary tool for heat treatment of metal material Technical Field The utility model relates to the field of metal heating auxiliary tools, in particular to a metal material heat treatment auxiliary tool. Background In the prior art, there are various ways of heating metals, among which the most efficient is the high frequency electromagnetic heating. In the high-frequency electromagnetic heating mode, in the process of heating a workpiece (such as a gear), the gear is generally required to be placed, the gear moves to the lower part of the high-frequency electromagnetic heater along with the device, gears with different specifications and sizes are fixed, in the prior art, a starting clamping jaw or a connector matched with the gear is generally adopted, the cost of the mode of replacing the connector is lower, but the problem of insufficient working efficiency exists, and the auxiliary tool for heat treatment of the metal material is provided based on the problem. Disclosure of utility model The utility model aims to solve the problems in the background art and provides an auxiliary tool for heat treatment of a metal material. The technical scheme includes that the auxiliary tool for heat treatment of the metal material comprises a barrel body and a lifting electromagnetic heating assembly, wherein a rotating disc is rotationally connected in the barrel body, connecting columns are fixedly arranged at equal intervals in the circumferential direction of the top end of the rotating disc, the top ends of the connecting columns are detachably connected with connectors through connecting mechanisms, a tray is integrally formed on the outer wall of each connector, a driving motor and two electric pushing cylinders are arranged at the bottom end of the barrel body, and the driving motor is located between the two electric pushing cylinders; The connecting mechanism is used for synchronously fixing the connectors on the tops of the connecting columns respectively; The output end of the electric push cylinder is connected with a lifting mechanism, and the lifting mechanism in a lifting state is used for synchronously releasing the limitation of the connecting mechanisms on the connectors. The connecting mechanism comprises a butt joint hole, a plug-in column, a lock hole, a connecting groove, a connecting plate, an upper fixing plate, a first compression surface, a spring, a lower fixing plate and a lower compression surface; The plurality of butt joint holes distributed circumferentially are formed in the bottom end of the rotating disc and penetrate through the inner cavity of the connecting column, the plug-in column is integrally formed in the bottom end of the connector and plugged in the top end of the inner cavity of the butt joint hole, and the lock hole is formed in the plug-in column in a horizontal state; The connecting groove is formed in the connecting column, the vertical section of the connecting groove is of a C-shaped structure, the connecting plate is horizontally and slidably connected in the connecting groove, the upper fixing plate and the lower fixing plate are integrally formed at the upper end and the lower end of the connecting plate, and the upper fixing plate and the lower fixing plate penetrate through the inner cavities of the butt joint holes from openings at the two ends of the connecting groove respectively; a spring is arranged below the inner wall of the connecting groove, and one end of the spring is connected with the connecting plate; The first compression surface is formed at one end of the upper fixing plate, which is far away from the connecting plate, and the lower compression surface is formed at one end of the lower fixing plate, which is far away from the connecting plate. As a still further proposal of the utility model, the jacking mechanism comprises a movable disc, a sliding groove, balls and a butt joint shaft; The movable disc is movably connected to the inner cavity of the barrel body, the balls are movably connected to the end part of the output end of the electric pushing cylinder, the sliding grooves are annularly formed in the bottom end of the movable disc and are in contact with the surfaces of the balls, the butt joint shafts are circumferentially and equidistantly distributed on the top end of the movable disc, and the butt joint shafts and the butt joint holes are in one-to-one correspondence in the up-down direction. As a still further proposal of the utility model, the output end of the driving motor is connected with a synchronous shaft, the cross section of the synchronous shaft is in a convex structure, the output end of the synchronous shaft is fixedly connected with the bottom end of the rotating disc, a sliding groove which is anastomotic with the outer wall of the synchronous shaft is arranged at the contact position of the movable disc and the synchronous shaft, the cross section of the sliding groove is in a convex structure, and the movable d