CN213996084U - Efficient molding powder production line - Google Patents

Efficient molding powder production line Download PDF

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Publication number
CN213996084U
CN213996084U CN202022198447.8U CN202022198447U CN213996084U CN 213996084 U CN213996084 U CN 213996084U CN 202022198447 U CN202022198447 U CN 202022198447U CN 213996084 U CN213996084 U CN 213996084U
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China
Prior art keywords
feeding
grinding
grinding device
screening
motor
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CN202022198447.8U
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Chinese (zh)
Inventor
罗大昌
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Hangzhou Fuyang Changsheng Auto Parts Hardware Co Ltd
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Hangzhou Fuyang Changsheng Auto Parts Hardware Co Ltd
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Priority to CN202022198447.8U priority Critical patent/CN213996084U/en
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Abstract

The utility model discloses an efficient molding powder production line, which comprises a feeding device and a primary grinding device connected with the feeding device; the grinding device is characterized in that the primary grinding device is connected with a secondary grinding device; and the primary grinding device and the secondary grinding device are both connected with a plastic powder screening device. The utility model discloses can realize automated production, it is effectual to grind, has reduced workman's intensity of labour, has improved production efficiency.

Description

Efficient molding powder production line
Technical Field
The utility model relates to a mould powder production line technical field, specifically indicate a powder production line is moulded to efficient.
Background
All need in the production of moulding powder to mould powder and grind and screen, then can use, but among the prior art, mould powder all only once grinds and screens, then will screen out not up to standard moulding powder and carry to grinding case through the manual mode and grind and screen again to workman's intensity of labour has been increased, has reduced the efficiency of grinding and the quality of grinding. Therefore, an efficient molding powder production line is provided.
Disclosure of Invention
The utility model aims at providing an efficient moulding powder production line for solving the above problems.
In order to achieve the above purpose, the utility model provides a following technical scheme: an efficient molding powder production line comprises a feeding device and a primary grinding device connected with the feeding device; the grinding device is characterized in that the primary grinding device is connected with a secondary grinding device; the primary grinding device and the secondary grinding device are both connected with a plastic powder screening device; the plastic powder screening device comprises a fixed frame and a screening box arranged on the fixed frame; the screening box is provided with a feeding shell and a screening assembly; a feeding motor and a feeding hopper are arranged on the feeding shell; a feeding shaft is arranged on the feeding motor; the feeding shaft is provided with a spiral feeding sheet, and the sieving assembly arranged on the sieving box comprises a sieve screen, a driving disc and a driven disc which are arranged on the sieve screen; the feeding shaft is connected with the driving disc; a screw rod is arranged between the driving disc and the driven disc; the screening box is also provided with a cover plate through a bolt; the screening box is also provided with a fine material outlet; a coarse material outlet is formed in the cover plate; the screening box is also connected with a recovery pipe; the recovery pipe is connected with the secondary grinding device and the feeding device.
Preferably, the feeding device comprises a feeding shell and a feeding motor arranged on the feeding shell; a feeding rotating shaft is arranged on the feeding motor; the feeding rotating shaft is provided with a spiral feeding sheet; the feeding shell is also provided with a discharge hopper and a feeding pipe; the feeding pipe is connected with the primary grinding device.
Preferably, the primary grinding device and the secondary grinding device both comprise a grinding outer shell and a grinding motor arranged on the grinding outer shell; a rotating shaft is arranged on the grinding motor; a plurality of grinding discs are arranged on the rotating shaft; the grinding shell is also connected with a fan and a discharge pipe; the discharging pipe is connected with the plastic powder screening device.
The utility model has the advantages that: this mould powder production line can realize automated production, and it is effectual to grind, has reduced workman's intensity of labour, has improved production efficiency.
Drawings
Figure 1 is a schematic structural view of the present invention,
fig. 2 is a schematic structural diagram of the feeding device of the present invention.
Fig. 3 is a schematic structural view of the primary grinding device of the present invention.
Fig. 4 is a schematic structural view of the plastic powder sieving device of the present invention.
Fig. 5 is a schematic structural diagram of the sieving assembly of the present invention.
Illustration of the drawings: 1, a feeding device; 101 feeding a shell; 102 a feed motor; 103 a feeding rotating shaft; 104 spirally feeding the material sheets; 105 a discharge hopper; 106 a feeding pipe; 2, a primary grinding device; 201 grinding the outer shell; 202 grinding the motor; 203 grinding disc; 204 fan; 205 a discharge pipe; 206 a rotating shaft; 3, a secondary grinding device; 4, a plastic powder screening device; 401 fixing a frame; 402 a screening box; 403 a feed housing; 404 a feed motor; 405 a feed hopper; 406 a feed shaft; 407 spirally feeding the tablets; 408 a cover plate; 409 a fine material outlet; 410 a coarse material outlet; 411 a recovery tube; 5, sieving the component; 501, screening a screen; 502 a driving disk; 503 driven disk; 504 screw.
Detailed Description
The following we will further describe an efficient molding powder production line of the present invention with reference to the accompanying drawings.
Referring to the attached figure 1, a high-efficiency molding powder production line comprises a feeding device 1 and a primary grinding device 2 connected with the feeding device 1; the grinding device is characterized in that the primary grinding device 2 is connected with a secondary grinding device 3; the primary grinding device 2 and the secondary grinding device 3 are both connected with a plastic powder screening device 4; the secondary grinding device 3 is connected behind the primary grinding device 2, so that the grinding effect can be improved; all be connected with moulding powder sieving mechanism 4 on primary grinding device 1 and secondary grinder 3 to can be with the timely filtration of moulding powder up to standard, will not up to standard continue to grind, improve the efficiency and the effect of grinding.
Referring to fig. 2, the feeding device 1 includes a feeding housing 101 and a feeding motor 102 mounted on the feeding housing 101; a feeding rotating shaft 103 is arranged on the feeding motor 102; a spiral feeding sheet 104 is arranged on the feeding rotating shaft 103; the feeding shell 101 is also provided with a discharge hopper 105 and a feeding pipe 106; the feeding pipe 106 is connected with the primary grinding device 2; the feeding motor 102 drives the feeding rotating shaft 103 to rotate, and the feeding rotating shaft 103 drives the spiral feeding piece 104 to rotate, so that automatic feeding is realized.
Referring to fig. 3, each of the primary grinding device 2 and the secondary grinding device 3 includes a grinding outer shell 201 and a grinding motor 202 mounted on the grinding outer shell 201; a rotating shaft 206 is arranged on the grinding motor 202; a plurality of grinding discs 203 are arranged on the rotating shaft 206; the grinding outer shell 201 is also connected with a fan 204 and a discharge pipe 205; the discharge pipe 205 is connected with the plastic powder screening device 4; drive axis of rotation 206 through grinding motor 202 and rotate, axis of rotation 206 drives abrasive disc 203 and rotates to the realization grinds moulding powder.
Referring to fig. 4, the molding powder screening apparatus 4 includes a fixing frame 401 and a screening box 402 mounted on the fixing frame 401; the screening box 402 is provided with a feeding shell 403 and a screening assembly 5; the feeding shell 403 is provided with a feeding motor 404 and a feeding hopper 405; a feeding shaft 406 is arranged on the feeding motor 404; a spiral feeding sheet 407 is arranged on the feeding shaft 406; a cover plate 408 is further mounted on the screening box 402 through bolts; the screening box 402 is also provided with a fine material outlet 409; a coarse material outlet 410 is formed in the cover plate 408; a recovery pipe 411 is also connected to the screening box 402; the recovery pipe 411 is connected with the secondary grinding device 3 and the feeding device 1; the feeding motor 404 drives the feeding shaft 406 to rotate, and the feeding shaft 406 drives the spiral feeding sheet 407 to rotate, so that the molding powder is brought into the screen 501 for screening; through set up fine material export 409 on screening case 402, set up coarse fodder export 410 on the apron 408, can separate moulding powder thickness through screen cloth 501, make unqualified moulding powder can follow coarse fodder export 410 and get into secondary grinding device 3 and grind, improve the efficiency of grinding.
Referring to fig. 5, the screen assembly 5 mounted on the screen box 402 includes a screen 501, a driving disk 502 and a driven disk 503 mounted on the screen 501; the feeding shaft 406 is connected with the driving disc 502; a screw rod 504 is arranged between the driving disc 502 and the driven disc 503; the screw 504 is arranged between the driving disc 502 and the driven disc 503, so that the driving disc 502 drives the driven disc 503 to rotate, and plastic powder is screened.
The working process of the utility model, firstly, place the plastic powder strip in the blowing hopper 105 of the feeding device 1, then the feeding motor 102 drives the feeding shaft 103 to rotate, the feeding shaft 103 drives the screw feeding piece 104 to convey the plastic powder strip to the feeding pipe 106, then the plastic powder strip is sucked into the primary grinding device 2 through the fan 204 on the grinding shell 201, the grinding motor 202 drives the rotating shaft 206 to rotate, the rotating shaft 206 drives the grinding disc 203 to rotate to grind the plastic powder strip, then the ground plastic powder enters the feeding hopper 405 on the plastic powder screening device 4 through the discharging pipe 205, the feeding motor 404 drives the feeding shaft 406 to rotate, the feeding shaft 406 drives the screw feeding piece 407 to rotate to convey the plastic powder to the screen 501, then the feeding shaft 406 drives the driving disc 502 to rotate, the driving disc 502 drives the driven disc 503 to rotate through the screw 504, thereby the screen 501 screens the molding powder, the molding powder which meets the standard is discharged from the fine material outlet 409 through the screen 501, the molding powder which does not meet the standard is pushed forwards by the increase of the subsequent molding powder, and is discharged from the coarse material outlet 410 to the screening device 4 and enters the recycling pipe 411, then the molding powder in the recovery pipe 411 is sucked into the secondary grinding device 3 by the fan 204, the secondary grinding device 3 moves according to the primary grinding device 2, the molding powder is ground again, and then enters the feed hopper 405 of the molding powder screening device 1 from the discharge pipe 205 after grinding, then the molding powder is screened according to the same steps of the previous molding powder screening device 1, the produced molding powder which does not reach the standard again enters a recovery pipe 411 from a coarse material outlet 410, and then conveyed to the feeding device 1 through the recycling pipe 411, and the plastic powder which does not reach the standard is conveyed to the primary grinding device 2 again for grinding, so that the grinding and screening are continuously and repeatedly carried out.
The above-mentioned embodiment is right the utility model discloses an explanation, it is not right the utility model discloses a limited, any right the scheme after the simple transform of the utility model all belongs to the protection scope of the utility model.

Claims (3)

1. An efficient molding powder production line comprises a feeding device (1) and a primary grinding device (2) connected with the feeding device (1); the grinding machine is characterized in that the primary grinding device (2) is connected with a secondary grinding device (3); the primary grinding device (2) and the secondary grinding device (3) are both connected with a plastic powder screening device (4); the plastic powder screening device (4) comprises a fixed frame (401) and a screening box (402) arranged on the fixed frame (401); the screening box (402) is provided with a feeding shell (403) and a screening assembly (5); a feeding motor (404) and a feeding hopper (405) are arranged on the feeding shell (403); a feeding shaft (406) is arranged on the feeding motor (404); a spiral feeding sheet (407) is arranged on the feeding shaft (406); the screening assembly (5) installed on the screening box (402) comprises a screen (501), a driving disc (502) and a driven disc (503) which are installed on the screen (501); the feeding shaft (406) is connected with the driving disc (502); a screw rod (504) is arranged between the driving disc (502) and the driven disc (503); a cover plate (408) is further mounted on the screening box (402) through bolts; the screening box (402) is also provided with a fine material outlet (409); a coarse material outlet (410) is formed in the cover plate (408); the screening box (402) is also connected with a recovery pipe (411); the recovery pipe (411) is connected with the secondary grinding device (3) and the feeding device (1).
2. A high efficiency molding powder production line as claimed in claim 1, wherein: the feeding device (1) comprises a feeding shell (101) and a feeding motor (102) arranged on the feeding shell (101); a feeding rotating shaft (103) is arranged on the feeding motor (102); a spiral feeding sheet (104) is arranged on the feeding rotating shaft (103); the feeding shell (101) is also provided with a discharge hopper (105) and a feeding pipe (106); the feeding pipe (106) is connected with the primary grinding device (2).
3. A high efficiency molding powder production line as claimed in claim 1, wherein: the primary grinding device (2) and the secondary grinding device (3) both comprise a grinding outer shell (201) and a grinding motor (202) installed on the grinding outer shell (201); a rotating shaft (206) is arranged on the grinding motor (202); a plurality of grinding discs (203) are arranged on the rotating shaft (206); the grinding outer shell (201) is also connected with a fan (204) and a discharge pipe (205); the discharge pipe (205) is connected with the molding powder screening device (4).
CN202022198447.8U 2020-09-30 2020-09-30 Efficient molding powder production line Active CN213996084U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022198447.8U CN213996084U (en) 2020-09-30 2020-09-30 Efficient molding powder production line

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022198447.8U CN213996084U (en) 2020-09-30 2020-09-30 Efficient molding powder production line

Publications (1)

Publication Number Publication Date
CN213996084U true CN213996084U (en) 2021-08-20

Family

ID=77298608

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202022198447.8U Active CN213996084U (en) 2020-09-30 2020-09-30 Efficient molding powder production line

Country Status (1)

Country Link
CN (1) CN213996084U (en)

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