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CN-224221458-U - Scrap steel crushing anti-blocking efficient feeding mechanism

CN224221458UCN 224221458 UCN224221458 UCN 224221458UCN-224221458-U

Abstract

The utility model belongs to the technical field of metal crushing equipment, and particularly relates to an anti-blocking efficient feeding mechanism for crushing scrap steel, which comprises a feeding device and a breaking hammer, wherein the breaking hammer is provided with a feeding port, the feeding device comprises a conveying part and a flow guiding part, the conveying part and the flow guiding part are obliquely arranged, one end of the flow guiding part is movably connected with the conveying part, the other end of the flow guiding part is abutted to the feeding port of the breaking hammer, and a flow guiding groove for guiding scrap steel raw materials is arranged on the surface of the flow guiding part. Compared with the prior art, the utility model can ensure that the feeding of the scrap steel material is smoother in the scrap steel crushing process, the condition of blocking cannot occur, and the crushing fluency of the scrap steel material is improved.

Inventors

  • LIN SHUQING
  • XU RONGJUN

Assignees

  • 宝裕绿钢(佛山)再生资源有限公司

Dates

Publication Date
20260512
Application Date
20250416

Claims (8)

  1. 1. The utility model provides a broken anti-blocking high-efficient feed mechanism of steel scrap, its characterized in that, including feed arrangement and quartering hammer, the quartering hammer is provided with the feed inlet, feed arrangement includes conveying part and water conservancy diversion part, conveying part and water conservancy diversion part slope set up, water conservancy diversion part's one end with conveying part swing joint, the other end with the feed inlet butt of quartering hammer, the water conservancy diversion part be provided with the guiding gutter that is used for steel scrap raw materials to carry out the water conservancy diversion on the surface.
  2. 2. The scrap steel crushing and anti-blocking efficient feeding mechanism according to claim 1, wherein the conveying component comprises a conveying motor and a conveying belt, and the conveying belt is in transmission connection with the conveying motor.
  3. 3. The scrap steel crushing and anti-blocking efficient feeding mechanism according to claim 2, wherein a buffer baffle plate for buffering scrap steel raw materials is arranged on the conveying belt.
  4. 4. The scrap steel crushing and anti-blocking efficient feeding mechanism according to claim 1, wherein a hydraulic rod is further arranged between the flow guiding component and the crushing hammer, one end of the hydraulic rod is connected with the crushing hammer, and the other end of the hydraulic rod is connected with the bottom of the flow guiding component.
  5. 5. The scrap crushing and anti-blocking efficient feeding mechanism according to claim 1, wherein a vibrator for assisting blanking is further arranged at the bottom of the flow guiding component.
  6. 6. The scrap steel crushing and anti-blocking efficient feeding mechanism according to claim 1, wherein a blocking roller for limiting the material height is further arranged above the diversion component.
  7. 7. The scrap steel crushing and anti-blocking efficient feeding mechanism according to claim 1, wherein a shielding curtain for placing crushing flowers is further arranged above the flow guiding component.
  8. 8. The scrap steel crushing and anti-blocking efficient feeding mechanism according to claim 1, wherein a discharging hole for releasing crushed materials is further formed below the crushing hammer.

Description

Scrap steel crushing anti-blocking efficient feeding mechanism Technical Field The utility model relates to the technical field of metal crushing equipment, in particular to an anti-blocking efficient feeding mechanism for crushing scrap steel. Background The waste steel has high recycling rate, but the waste steel has various shapes and occupies a large amount of space, and some sheet metal parts have larger size and need to be processed into fragments or briquettes so as to be recycled. At present, the waste steel treatment equipment mainly comprises three kinds of equipment, namely packaging and briquetting equipment. The cutting device is mainly used for processing thin plates, wire rods, chips and other light and thin materials generated in the machining process so as to facilitate transportation and improve bulk density, and is a cutting device. The device is mainly used for treating heavy scrap steel and large-sized components, and is convenient for charging. The two kinds of waste steel treatment equipment have the following defects that the processing range is small, light and thin materials such as thin plates, wire rods and cuttings generated in the machining process, heavy waste steels and large-scale components can be processed, but scrapped automobiles, household appliances and extra heavy waste steels and large-scale components cannot be processed, and the crusher is mainly used for light steel and is used for crushing the waste steels, scrapped automobiles and household appliances. The general crusher structure is shown in a patent document with the patent number of CN202510058873.6 and named as a waste steel crushing, recycling and reusing device and method, and comprises a shell, wherein a feed inlet, a discharge outlet and a crushing cavity are formed in the shell, the feed inlet and the discharge outlet are communicated with the crushing cavity, a mounting opening is formed in the top of the shell, a crushing hammer is rotatably arranged in the crushing cavity and used for crushing waste steel, a mounting frame is rotatably arranged on the mounting opening and provided with a plurality of mounting grooves, a plurality of lining plates are arranged in the mounting grooves, one end of each lining plate is positioned in the crushing cavity, the crushing hammer strikes the waste steel to enable the waste steel to be in contact with the lining plates, and the other end of each lining plate is positioned in the crushing cavity after the mounting frame is overturned. However, the aperture of the feed inlet of the equipment is limited, waste steel objects with larger volume cannot be directly processed, the feed speed is low, and the objects possibly can be blocked on the inner wall of the feed inlet during conveying and cannot advance, so that a certain blocking risk exists. Disclosure of utility model In order to solve the problem that the aperture of a feed inlet of a common scrap steel crusher in the market at present is limited, a scrap steel object with larger volume cannot be directly processed, the feed speed is lower, the object with larger length is easy to clamp on the inner wall of the feed inlet, and a certain blocking risk exists, the scrap steel crushing anti-blocking efficient feed mechanism is provided. The utility model provides a broken anti-blocking high-efficient feed mechanism of steel scrap, includes feed arrangement and quartering hammer, the quartering hammer is provided with the feed inlet, feed arrangement includes conveying part and water conservancy diversion part, conveying part and water conservancy diversion part slope set up, water conservancy diversion part one end with conveying part swing joint, the other end with the feed inlet butt of quartering hammer, be provided with the guiding gutter that is used for steel scrap raw materials to carry out the water conservancy diversion on the surface of water conservancy diversion part. Further, the conveying component comprises a conveying motor and a conveying belt, and the conveying belt is in transmission connection with the conveying motor. Further, a buffer baffle plate for buffering scrap steel raw materials is arranged on the conveying belt. Further, a hydraulic rod is further arranged between the flow guiding component and the breaking hammer, one end of the hydraulic rod is connected with the breaking hammer, and the other end of the hydraulic rod is connected with the bottom of the flow guiding component. Further, a vibrator for assisting blanking is further arranged at the bottom of the flow guiding component. Further, a blocking roller for limiting the material height is arranged above the flow guiding component. Further, a shielding curtain for placing broken flowers and fires is arranged above the flow guiding component. Further, a discharge hole for releasing broken materials is arranged below the breaking hammer. The utility model has the advantages that: 1. the structure that the guide part is abutted