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CN-224222992-U - Stable assembly for special alloy material forming

CN224222992UCN 224222992 UCN224222992 UCN 224222992UCN-224222992-U

Abstract

The utility model discloses a stabilizing component for forming special alloy materials, which relates to the technical field of special alloy materials and comprises a bottom frame, wherein a bearing frame is fixed on the bottom frame through bolts, a rotating ring is connected to a bearing with a seat of the bearing frame in a matched manner, a circular hole which is convenient for a bar to pass through is formed between the rotating ring and the bearing frame, a plurality of pressing components are arranged on the bearing frame and are arranged along a central axis annular array of the rotating ring, and after the bar is inserted into the circular holes of the rotating ring and the bearing frame, the pressing components on the rotating ring press the bar, the rotating ring rotates on the bearing frame, the bar can rotate along with the rotation of the rotating ring under the pressing of the pressing components, so that the bar can be conveniently cut at different positions of a laser cutting machine, a push rod of a lifting cylinder pushes a lifting slider to move along the lifting frame, the position of the laser cutting machine is adjusted, and the bar with different diameters can be conveniently cut.

Inventors

  • MA JIANHUA
  • JIANG GUILIN
  • JIANG HAIHONG
  • WANG TAO
  • ZHAO GUOMIN
  • FEI WENLONG

Assignees

  • 泰州华泽金属工业有限公司

Dates

Publication Date
20260512
Application Date
20250520

Claims (6)

  1. 1. A stabilizing assembly for forming special alloy materials is characterized by comprising a bottom frame (1), wherein a bearing frame (10) is fixed on the bottom frame (1) through bolts, a rotating ring (15) is connected to a bearing with a seat of the bearing frame (10) in a matched mode, a round hole through which bars can conveniently pass is formed in the middle of the rotating ring (15) and the bearing frame (10), a plurality of pressing assemblies (19) are arranged on the bearing frame (10), the plurality of pressing assemblies (19) are arranged in an annular array along the central axis of the rotating ring (15), a lifting frame (11) is fixed on the bearing frame (10) through bolts, a lifting sliding block (12) is connected to the lifting sliding block (11) in a sliding mode, a laser cutting machine (13) is fixed on the lifting sliding block (12) through bolts, the lifting sliding block (12) is connected to a push rod of a lifting cylinder (14) in a matched mode, and the lifting cylinder (14) is fixed on the bearing frame (10) through bolts.
  2. 2. The stabilizing assembly for forming special alloy materials according to claim 1, wherein the pressing assembly (19) comprises a mounting frame (191), a sleeve (192) is welded on the mounting frame (191), an extension rod (193) is connected to the inner side of the sleeve (192) in a sliding mode, the other end of the extension rod (193) is fixed to a guide wheel frame (196) through a bolt, a guide wheel (197) is connected to a seat bearing of the guide wheel frame (196) in a matched mode, grooves which are convenient for sliding connection of a limit column (194) are formed in the sleeve (192), the limit column (194) is welded on the extension rod (193), and springs (195) are sleeved on the outer sides of the extension rod (193) and the sleeve (192).
  3. 3. A stabilizing assembly for forming special alloy materials is characterized in that a guide rail strip (2) is fixed on a bottom frame (1) through bolts, a bar support (4) is connected to the guide rail strip (2) in a sliding mode, the bar support (4) is connected with a feeding screw rod (3) through threads, the feeding screw rod (3) is connected with a bearing with a seat arranged on the bottom frame (1) in a matched mode, one end of the feeding screw rod (3) is connected with a first belt wheel (5) in a matched mode, two first belt wheels (5) are arranged, the other end of the first belt wheel is connected to a driving shaft of a first driving motor (7) in a matched mode, and the two first belt wheels (5) are connected with each other in a matched mode through a first belt (6).
  4. 4. A stabilizing assembly for forming special alloy materials is characterized in that the bar support (4) is provided with a sliding groove which is convenient for sliding connection of a height adjusting frame (8), the height adjusting frame (8) is connected with a height adjusting screw rod (9) through threads, the height adjusting screw rod (9) is matched and connected with a bearing with a seat which is arranged on the bar support (4), one end of the height adjusting screw rod (9) is matched and connected with a driving shaft of a third driving motor (22), and the third driving motor (22) is fixed on the bar support (4) through bolts.
  5. 5. A stabilizing assembly for forming special alloy materials according to claim 1 is characterized in that a second belt (16) is sleeved on the outer side of the rotating ring (15), the second belt (16) is sleeved on a second belt wheel (18), the second belt wheel (18) is connected to a driving shaft of a second driving motor (17) in a matching mode, and the second driving motor (17) is fixed on the underframe (1) through bolts.
  6. 6. A stabilizing assembly for forming special alloy materials according to claim 1 is characterized in that a blanking frame (20) is arranged on one side of the underframe (1), a plurality of blanking rollers (21) are arranged in the middle of the blanking frame (20), and the blanking rollers (21) are connected with a bearing with a seat arranged on the blanking frame (20) in a matched mode.

Description

Stable assembly for special alloy material forming Technical Field The utility model particularly relates to the technical field of special alloy materials, in particular to a stable component for forming the special alloy materials. Background The special steel is also called alloy steel, and is a steel material. The special steel is prepared by adding one or more alloy elements into carbon steel in proper amount to change the structure of the steel, so that the steel has various special properties. For this reason, we provide a kind of special alloy material shaping and use the steady assembly, press the bar through pressing the assembly on the swivel ring, thus when the swivel ring rotates, can drive the bar to rotate, thus can adjust the cutting position of the bar, facilitate the cutting of the laser cutting machine, and the bar support moves, can continuously send out the bar, cut and shape more smoothly, and the efficiency is higher, it is more convenient to use, has effectively made up the above-mentioned problem. Disclosure of utility model The utility model aims to provide a stabilizing component for molding special alloy materials, which presses a bar through a pressing component on a rotating ring, so that the bar can be driven to rotate when the rotating ring rotates, the cutting position of the bar can be adjusted, the bar is convenient to cut by a laser cutting machine, a bar support moves, the bar can be continuously sent out, the cutting molding is smoother, the efficiency is higher, and the use is more convenient, so that the problems in the background technology are solved. In order to achieve the above purpose, the present utility model provides the following technical solutions: A stable assembly for forming special alloy materials comprises a bottom frame, wherein a bearing frame is fixed on the bottom frame through bolts, a rotating ring is connected to a bearing with a seat of the bearing frame in a matched mode, round holes through which bars can conveniently pass are formed in the middle of the rotating ring and the bearing frame, a plurality of pressing assemblies are arranged on the bearing frame and are arranged in an annular array along the central axis of the rotating ring, a lifting frame is fixed on the bearing frame through bolts, a lifting sliding block is connected onto the lifting frame in a sliding mode, a laser cutting machine is fixed onto the lifting sliding block through bolts, the lifting sliding block is connected with a push rod of a lifting cylinder in a matched mode, and the lifting cylinder is fixed onto the bearing frame through bolts. The pressing assembly comprises a mounting frame, wherein a sleeve is welded on the mounting frame, an extension rod is connected to the inner side of the sleeve in a sliding mode, the other end of the extension rod is fixed to a guide wheel frame through a bolt, a guide wheel is connected to a bearing with a seat of the guide wheel frame in a matched mode, a groove which is convenient for sliding connection of a limit column is formed in the sleeve, the limit column is welded on the extension rod, and a spring is sleeved on the outer sides of the extension rod and the sleeve. According to the technical scheme, a guide rail bar is fixed on the underframe through a bolt, a bar support is connected to the guide rail bar in a sliding mode, the bar support is connected with a feeding screw rod through threads, the feeding screw rod is connected with a belt seat bearing arranged on the underframe in a matched mode, one end of the feeding screw rod is connected with a first belt wheel in a matched mode, two first belt wheels are arranged, the other belt wheel is connected to a driving shaft of a first driving motor in a matched mode, and the two belt wheels are connected through a first belt in a matched mode. According to the further technical scheme, the bar support is provided with a sliding groove which is convenient for sliding connection of a height adjusting frame, the height adjusting frame is connected with a height adjusting screw rod through threads, the height adjusting screw rod is connected with a bearing with a seat arranged on the bar support in a matched mode, one end of the height adjusting screw rod is connected with a driving shaft of a third driving motor in a matched mode, and the third driving motor is fixed on the bar support through a bolt. As a further technical scheme of the utility model, the outer side of the rotating ring is sleeved with a second belt, the second belt is sleeved on a second belt wheel, the second belt wheel is connected to a driving shaft of a second driving motor in a matched mode, and the second driving motor is fixed on the underframe through bolts. As a further technical scheme of the utility model, one side of the underframe is provided with a blanking frame, a plurality of blanking rollers are arranged in the middle of the blanking frame, and the blanking rollers are connected with