CN-224221896-U - Prevent accumulational alloy stick blank shaping sieve material device
Abstract
The utility model discloses an alloy rod blank forming and screening device for preventing accumulation, which relates to the technical field of alloy rod processing and comprises a device shell, a first screening component and a second screening component, wherein the first screening component is arranged above the inside of the device shell, a first cleaning frame is fixed on the right side surface of a sealing cover, the utility model discloses a device, including first sieve material subassembly, electric telescopic handle, air suction pipe, guide board, electric telescopic handle's output is fixed with the putty board, the below of first sieve material subassembly is provided with the second sieve material subassembly, the below left and right sides of second sieve material subassembly all is provided with the guide board, the inside bottom at the device shell is fixed to the guide board, the air suction pipe is installed to the right-hand member of device shell, the internally mounted of air suction pipe has the control valve. This prevent accumulational alloy stick blank shaping screening device can avoid piling up the raw materials on screening bucket and the arc sieve to and avoid screening bucket and arc sieve to be blocked by the raw materials, conveniently discharge the raw materials in screening bucket and the arc sieve.
Inventors
- LI HAOWEI
- ZENG ZHICHENG
Assignees
- 成都名钨科技有限责任公司
Dates
- Publication Date
- 20260512
- Application Date
- 20250528
Claims (8)
- 1. Prevent piled up alloy rod blank shaping sieve material device, including device shell (1), first sieve material subassembly and second sieve material subassembly, its characterized in that: A first screening component is arranged above the inside of the device shell (1), a sealing cover (9) is arranged at the left end of the device shell (1) in a clamping manner, and a first cleaning frame (10) is fixed on the right side surface of the sealing cover (9); A second screening component is arranged below the first screening component, guide plates (14) are arranged on the left side and the right side of the lower part of the second screening component, the guide plates (14) are fixed at the bottom end of the inside of the device shell (1), the device is characterized in that an electric telescopic rod (15) is fixed on the lower surface of the device shell (1), a blanking plate (16) is fixed at the output end of the electric telescopic rod (15), an air suction pipe (17) is arranged at the right end of the device shell (1), and a control valve is arranged in the air suction pipe (17).
- 2. The device for preventing stacked alloy rod blanks from forming and screening materials is characterized in that the first screening component comprises a receiving ring (2), a motor (3), a screening barrel (4), a baffle plate (5), a cover plate (6), a wire rod (7), a connecting wire (8) and a second cleaning frame (11), the receiving ring (2) is fixed on the right wall of the inside of the device shell (1), the motor (3) is fixed on the right side face of the device shell (1), the screening barrel (4) is fixed at the output end of the motor (3), the baffle plate (5) is connected to the outer end of the screening barrel (4) in a rotating mode, the cover plate (6) is arranged on the outer side of the baffle plate (5), the wire rod (7) is fixed on the inner side face of the screening barrel (4), the wire rod (7) is coiled with the connecting wire (8), one end of the wire rod (7) is fixedly connected with the baffle plate (5), and the second cleaning frame (11) for preventing the second screening component from being blocked is fixed on the outer side face of the screening barrel (4).
- 3. The alloy rod blank forming and screening device for preventing accumulation according to claim 2, wherein the inner side surface of the receiving ring (2) is attached to the outer side surface of the right end of the screening barrel (4).
- 4. A stacking-preventing alloy rod blank forming and screening device according to claim 2 is characterized in that the cover plate (6) is rotatably arranged at the left end of the screening barrel (4).
- 5. The device for forming and sieving alloy rod blanks to be prevented from piling up according to claim 2, wherein a feed inlet is formed in the left end of the device housing (1), the left end of the sieving barrel (4) is located in the feed inlet, and the transverse center line of the sealing cover (9) coincides with the transverse center line of the sieving barrel (4).
- 6. The alloy rod blank forming and screening device for preventing accumulation according to claim 2, wherein the outer side surface of the first cleaning frame (10) is attached to the inner side surface of the screening barrel (4).
- 7. The alloy rod blank forming and screening device for preventing accumulation according to claim 1, wherein the second screening assembly comprises a side plate (12) and an arc-shaped screen plate (13), and the arc-shaped screen plate (13) is fixed on the right side surface of the side plate (12).
- 8. The alloy rod blank forming and screening device for preventing accumulation according to claim 7 is characterized in that the side plates (12) are connected with the device shell (1) in a clamping connection mode.
Description
Prevent accumulational alloy stick blank shaping sieve material device Technical Field The utility model relates to the technical field of alloy rod processing, in particular to an alloy rod blank forming and screening device capable of preventing accumulation. Background The alloy rod is an alloy material prepared from a hard compound of refractory metal and bonding metal through a powder metallurgy process, has a series of excellent properties such as high hardness, wear resistance, heat resistance, corrosion resistance and the like, and is required to be screened by an alloy rod blank forming screening device when being processed; the Chinese patent publication No. CN209238376U discloses a low oxygen vacuum sieving device for producing hard alloy round bars, which comprises a sieving chamber, wherein a control switch is fixedly arranged at the position above the front surface of the sieving chamber, a feed inlet is formed at the position of one side of the front surface of the sieving chamber, which is close to the control switch, a sealing cover is arranged in the feed inlet, and a groove is formed at the position of the front surface of the sieving chamber, which is close to the lower part of the feed inlet. The utility model is provided with the filter assembly, so that a user can conveniently replace steel wire screens with different grain sizes to conveniently obtain hard alloy round bar raw materials with different grain sizes, a rotating mechanism, a rotating plate, a rotating rod, a mounting block and a bearing seat, wherein the stirring teeth rotate along with the round screen cylinder to stir the hard alloy raw materials in the round screen cylinder, so that the hard alloy raw materials are screened more uniformly; In combination with the use of the existing scheme and actual production and processing, the existing alloy rod blank forming and screening device has the advantages that raw materials are piled on a screening structure in the screening process, the screening structure is easy to be blocked, and raw materials left by the screening structure are inconvenient to discharge, so that the problem of piling up of the alloy rod blank forming and screening device is solved conveniently. Disclosure of utility model The utility model aims to provide an alloy rod blank forming and screening device for preventing accumulation, which solves the problems that in the prior art, raw materials are accumulated on a screening structure in the screening process, the screening structure is easy to be blocked, and raw materials left by the screening structure are inconvenient to discharge. In order to achieve the aim, the utility model provides the following technical scheme that the alloy rod blank forming screening device for preventing accumulation comprises a device shell, a first screening component and a second screening component: A first screening component is arranged above the inside of the device shell, a sealing cover is arranged at the left end of the device shell in a clamping manner, and a first cleaning frame is fixed on the right side surface of the sealing cover; a second screening component is arranged below the first screening component, guide plates are arranged on the left side and the right side of the lower part of the second screening component, the guide plates are fixed at the bottom end of the inside of the device shell, the device is characterized in that an electric telescopic rod is fixed on the lower surface of the device shell, a blanking plate is fixed at the output end of the electric telescopic rod, an air suction pipe is arranged at the right end of the device shell, and a control valve is arranged in the air suction pipe. Preferably, the first screening subassembly is including accepting ring, motor, screening bucket, baffle, apron, line pole, connecting wire and second clearance frame, the inside right wall of device shell is fixed with accepts the ring, the right flank of device shell is fixed with the motor, the output of motor is fixed with screening bucket, and the outer end rotation of screening bucket is connected with the baffle, the outside of baffle is provided with the apron, the medial surface of screening bucket is fixed with the line pole, the outside of line pole is coiled and is had the connecting wire, the one end and the baffle fixed connection of the long-pending line pole of connecting wire, the lateral surface of screening bucket is fixed with the second clearance frame that is used for avoiding the jam of second screening subassembly. Preferably, the inner side surface of the bearing ring is attached to the outer side surface of the right end of the screening barrel. Preferably, the cover plate is rotatably mounted at the left end of the screening barrel. Preferably, a feeding hole is formed in the left end of the device shell, the left end of the screening barrel is located in the feeding hole, and the transverse center line of the sealing cover