CN109895436B - Asbestos fiber compressor - Google Patents

Asbestos fiber compressor Download PDF

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Publication number
CN109895436B
CN109895436B CN201711303490.2A CN201711303490A CN109895436B CN 109895436 B CN109895436 B CN 109895436B CN 201711303490 A CN201711303490 A CN 201711303490A CN 109895436 B CN109895436 B CN 109895436B
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China
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box
compression box
cylinder
fixedly arranged
compression
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CN201711303490.2A
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Chinese (zh)
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CN109895436A (en
Inventor
李卿安
孟红云
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Jingmen Zhicheng Electromechanical Equipment Co ltd
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Jingmen Zhicheng Electromechanical Equipment Co ltd
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Publication of CN109895436A publication Critical patent/CN109895436A/en
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Abstract

The utility model provides an asbestos fiber compressor, it includes pay-off weighing machine and compression mechanism, pay-off weighing machine includes dust removal case (1), belt conveyor (2), a pair of baffle (3), support frame (4) and weighing box (5), dust removal case (1) fixed mounting is on support frame (4), and open at dust removal case (1) top has A dust removal mouth (6), belt conveyor (2) horizontal installation is on support frame (4), the discharge end of belt conveyor (2) is located dust removal case (1), a pair of baffle (3) are through a set of J shape support arm (9) fixed mounting respectively on support frame (4) to be located belt conveyor (2) top both sides, A rotary valve (10) are installed on support frame (4); the advantages are that: the asbestos fiber can be pressed into fiber blocks at one time, so that the compression efficiency and the qualification rate are greatly improved, and meanwhile, the influence of asbestos fiber dust on human health is effectively reduced.

Description

Asbestos fiber compressor
Technical Field
The invention relates to the field of asbestos fiber processing equipment, in particular to an asbestos fiber compressor.
Background
At present, most existing asbestos fiber compressors compress step by step, so that manpower is wasted, dust of asbestos fibers is large, serious threat is caused to health of human bodies, and the yield is low.
Disclosure of Invention
The object of the present invention is to provide an asbestos fiber compressor which addresses the above-mentioned drawbacks.
The invention comprises a feeding weighing mechanism and a compression mechanism,
the feeding and weighing mechanism comprises a dust removing box, a belt conveyor, a pair of baffles, a supporting frame and a weighing box, wherein the dust removing box is fixedly arranged on the supporting frame, the top of the dust removing box is provided with an A dust removing port, the belt conveyor is horizontally arranged on the supporting frame, the discharge end of the belt conveyor is positioned in the dust removing box, the pair of baffles are respectively and fixedly arranged on the supporting frame through a group of J-shaped supporting arms and positioned on two sides of the top of the belt conveyor, A rotary valves are arranged on the supporting frame and positioned at the discharge end of the belt conveyor, the weighing box is fixedly arranged on the supporting frame, the feed end of the top of the weighing box is communicated with the discharge end of the bottom of the dust removing box, the bottom of the weighing box is provided with B rotary valves,
the compression mechanism comprises an A compression box, a B compression box and a C compression box, wherein the A compression box is fixedly arranged on a support frame, one side of the A compression box is provided with an opening, a feeding end at the top of the A compression box is communicated with a discharging end at the bottom of a weighing box, an A cylinder is fixedly arranged on the support frame and positioned at one side of the A compression box, an A pushing and pressing block is positioned in the A compression box, one side of the A pushing and pressing block is fixedly connected with a piston rod of the A cylinder, the top of the A pushing and pressing block is fixedly provided with a baffle plate,
the B compression box is fixedly arranged on the support frame, the feeding end at one side of the B compression box is communicated with the discharging end at the other side of the A compression box, a pair of hollow cylinders are vertically and fixedly arranged on the B compression box, a pair of cylinder racks are respectively positioned in the pair of hollow cylinders, one ends of the pair of cylinder racks are fixedly arranged on the B pushing block, a pair of parallel gears are respectively movably arranged on the pair of hollow cylinders, the pair of parallel gears are respectively meshed with the pair of cylinder racks, the cylinder barrel of the B cylinder is vertically and fixedly arranged on the B compression box, the B cylinder is positioned between the pair of hollow cylinders, the piston rod of the B cylinder is fixedly connected with the B pushing block, the B pushing block is positioned in the B compression box,
the C compression case is hollow structure to fixed mounting is on the support frame, and C compression case one end is opened there is uncovered, and the other end is opened there is the discharge gate, and the feed end at C compression case top is linked together with the discharge end of B compression case bottom, and C cylinder fixed mounting is on the support frame, and the piston rod of C cylinder bulldozes the piece fixed connection with C, and C bulldozes the piece and is located the uncovered of C compression case one end, B flashboard valve fixed mounting in C compression case one side.
The other side of the compression box B is provided with a dust removing port B.
The device is also provided with a travel switch and a contact, wherein the travel switch is fixedly arranged at the top of the hollow cylinder, and the contact is fixedly arranged at the top of the cylindrical rack.
The other side of the compression box C is provided with an opening, and a sealing cover is covered on the opening.
The invention has the advantages that: the asbestos fiber can be pressed into fiber blocks at one time, so that the compression efficiency and the qualification rate are greatly improved, and meanwhile, the influence of asbestos fiber dust on human health is effectively reduced.
Description of the drawings
Fig. 1 is a schematic diagram of the structure of the present invention.
FIG. 2 is a schematic diagram of the structure of the feeding weighing mechanism of the present invention.
FIG. 3 is a schematic diagram of the feeding mechanism of the present invention.
Fig. 4 is a schematic view of the compressing mechanism of the present invention.
Fig. 5 is a partially hidden structure schematic view of the compression mechanism of the present invention.
Fig. 6 is a schematic diagram of the structure of the compression box of the present invention B.
Detailed Description
As shown in the drawings, the invention comprises a feeding weighing mechanism and a compression mechanism,
the feeding and weighing mechanism comprises a dust removing box 1, a belt conveyor 2, a pair of baffle plates 3, a supporting frame 4 and a weighing box 5, wherein the dust removing box 1 is fixedly arranged on the supporting frame 4, the top of the dust removing box 1 is provided with an A dust removing opening 6, the belt conveyor 2 is horizontally arranged on the supporting frame 4, the discharge end of the belt conveyor 2 is positioned in the dust removing box 1, the pair of baffle plates 3 are respectively and fixedly arranged on the supporting frame 4 through a group of J-shaped supporting arms 9 and positioned on two sides of the top of the belt conveyor 2, an A rotary valve 10 is arranged on the supporting frame 4 and positioned at the discharge end of the belt conveyor 2, the weighing box 5 is fixedly arranged on the supporting frame 4, the feed end at the top of the weighing box 5 is communicated with the discharge end at the bottom of the dust removing box 1, the bottom of the weighing box 5 is provided with a B rotary valve 11,
the compression mechanism comprises an A compression box 12, a B compression box 13 and a C compression box 14, wherein the A compression box 12 is fixedly arranged on a support frame 4, one side of the A compression box 12 is provided with an opening, the feeding end at the top of the A compression box 12 is communicated with the discharging end at the bottom of a weighing box 5, an A cylinder 15 is fixedly arranged on the support frame 4 and positioned at one side of the A compression box 12, an A pushing block 16 is positioned in the A compression box 12, one side of the A pushing block 16 is fixedly connected with a piston rod of the A cylinder 15, the top of the A pushing block 16 is fixedly provided with a baffle 17,
the B compression box 13 is fixedly arranged on the support frame 4, the feeding end of one side of the B compression box 13 is communicated with the discharging end of the other side of the A compression box 12, a pair of hollow cylinders 20 are vertically and fixedly arranged on the B compression box 13, a pair of cylinder racks 21 are respectively positioned in the pair of hollow cylinders 20, one ends of the pair of cylinder racks 21 are fixedly arranged on the B pushing block 22, a pair of parallel gears 23 are respectively movably arranged on the pair of hollow cylinders 20, the pair of parallel gears 23 are respectively meshed with the pair of cylinder racks 21, the cylinder barrel of the B cylinder 24 is vertically and fixedly arranged on the B compression box 13, the B cylinder 24 is positioned between the pair of hollow cylinders 20, the piston rod of the B cylinder 24 is fixedly connected with the B pushing block 22, the B pushing block 22 is positioned in the B compression box 13,
the C compression case 14 is hollow structure to fixed mounting is on support frame 4, and C compression case 14 one end is opened there is the opening, and the other end is opened there is discharge gate 25, and the feed end at C compression case 14 top is linked together with the discharge end of B compression case 13 bottom, and C cylinder 26 fixed mounting is on support frame 4, and the piston rod and the C bulldozing piece 27 fixed connection of C cylinder 26, and C bulldozes the piece 27 and is located the opening of C compression case 14 one end, and B flashboard valve 28 fixed mounting is in C compression case 14 one side.
The other side of the B compression box 13 is provided with a B dust removing opening 29.
It also has a travel switch 30 and a contact 31, wherein the travel switch 30 is fixedly arranged on the top of the hollow cylinder 20, and the contact 31 is fixedly arranged on the top of the cylindrical rack 21.
The other side of the compression box 14 is open, and a sealing cover 32 covers the opening.
The working mode is as follows: the asbestos fiber raw material is input along the feeding end of the belt conveyor 2, a pair of baffles 3 prevent the asbestos fiber raw material from overflowing from the belt conveyor 2, the A rotary valve 10 is opened, the B gate valve 28 seals the discharging hole 25 of the C compression box 14, the asbestos fiber raw material enters the dust removal box 1 from the discharging end of the belt conveyor 2, the dust removal fan is communicated with the A dust removal hole 6 of the dust removal box 1, and dust flying from the asbestos fiber raw material is sucked out; the asbestos fiber raw materials continuously enter the weighing box 5, when the weight measured by the weighing box 5 reaches a required value, the rotary valve A10 is closed to stop feeding, the rotary valve B11 is opened, asbestos fibers in the weighing box 5 are poured into a compression cavity of the compression box A12, the cylinder A15 drives the pushing block A16 to compress the asbestos fibers in the compression cavity of the compression box A12 to one side and push the asbestos fibers into the compression box B13, the baffle 17 seals the compression box A12 to prevent the residual materials from entering, the cylinder B24 on the compression box B13 drives the pushing block B22 to compress the asbestos fibers downwards, the asbestos fibers are pressed into the compression box C14, the pushing block A16 returns to the initial position under the driving of the cylinder A15, the baffle 17 releases the seal of the compression box 12, the cylinder C26 at one end of the compression box C14 drives the pushing block C27 to compress the asbestos fibers in the compression box C14, the valve B28 is opened after the compression is completed, and the pushing block C pushes the compressed asbestos fibers to be output from the discharge port 25; the B pushing block 22 returns to the initial position under the drive of the B cylinder 24, the C pushing block 27 returns to the initial position under the drive of the C cylinder 26, and the pair of parallel gears 23 enable the pair of cylindrical racks 21 to run synchronously so as to prevent the B pushing block 22 from skewing; when the material blockage occurs in the invention, the blockage can be cleaned by opening the sealing cover 32.

Claims (3)

1. An asbestos fiber compressor is characterized by comprising a feeding weighing mechanism and a compressing mechanism,
the feeding and weighing mechanism comprises a dust removing box (1), a belt conveyor (2), a pair of baffle plates (3), a supporting frame (4) and a weighing box (5), wherein the dust removing box (1) is fixedly arranged on the supporting frame (4), an A dust removing opening (6) is formed in the top of the dust removing box (1), the belt conveyor (2) is horizontally arranged on the supporting frame (4), the discharge end of the belt conveyor (2) is positioned in the dust removing box (1), the pair of baffle plates (3) are respectively and fixedly arranged on the supporting frame (4) through a group of J-shaped supporting arms (9) and are positioned on two sides of the top of the belt conveyor (2), A rotary valves (10) are arranged on the supporting frame (4) and are positioned at the discharge end of the belt conveyor (2), the weighing box (5) is fixedly arranged on the supporting frame (4), the feed end at the top of the weighing box (5) is communicated with the discharge end at the bottom of the dust removing box (1), B rotary valves (11) are arranged at the bottom of the weighing box (5),
the compression mechanism comprises an A compression box (12), a B compression box (13) and a C compression box (14), wherein the A compression box (12) is fixedly arranged on a support frame (4), one side of the A compression box (12) is provided with an opening, a feeding end at the top of the A compression box (12) is communicated with a discharging end at the bottom of a weighing box (5), an A cylinder (15) is fixedly arranged on the support frame (4) and positioned at one side of the A compression box (12), an A pushing block (16) is positioned in the A compression box (12), one side of the A pushing block (16) is fixedly connected with a piston rod of the A cylinder (15), a baffle (17) is fixedly arranged at the top of the A pushing block (16),
the B compression box (13) is fixedly arranged on the support frame (4), a feeding end at one side of the B compression box (13) is communicated with a discharging end at the other side of the A compression box (12), a pair of hollow cylinders (20) are vertically and fixedly arranged on the B compression box (13), a pair of cylinder racks (21) are respectively positioned in the pair of hollow cylinders (20), one ends of the pair of cylinder racks (21) are fixedly arranged on the B pushing block (22), a pair of parallel gears (23) are respectively movably arranged on the pair of hollow cylinders (20), the pair of parallel gears (23) are respectively meshed with the pair of cylinder racks (21), a cylinder barrel of a B cylinder (24) is vertically and fixedly arranged on the B compression box (13), a piston rod of the B cylinder (24) is fixedly connected with the B pushing block (22), the B pushing block (22) is positioned in the B compression box (13),
the C compression box (14) is fixedly arranged on the support frame (4), one end of the C compression box (14) is provided with an opening, the other end of the C compression box is provided with a discharge hole (25), the feed end at the top of the C compression box (14) is communicated with the discharge end at the bottom of the B compression box (13), the C cylinder (26) is fixedly arranged on the support frame (4), a piston rod of the C cylinder (26) is fixedly connected with the C pushing block (27), the C pushing block (27) is positioned in the opening at one end of the C compression box (14), and the B gate valve (28) is fixedly arranged at one side of the C compression box (14);
the other side of the compression box (13) is provided with a dust removing port (29);
the device is further provided with a travel switch (30) and a contact (31), wherein the travel switch (30) is fixedly arranged at the top of the hollow cylinder (20), and the contact (31) is fixedly arranged at the top of the cylindrical rack (21).
2. An asbestos fiber compressor according to claim 1, wherein the other side of the C compression tank (14) is open and the open top is covered with a sealing cover (32).
3. An asbestos fiber compressor according to claim 1, wherein the PLC controls the start and stop of the a rotary valve (10), B rotary valve (11), a cylinder (15), B cylinder (24) and C cylinder (26) via relays, respectively.
CN201711303490.2A 2017-12-11 2017-12-11 Asbestos fiber compressor Active CN109895436B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201711303490.2A CN109895436B (en) 2017-12-11 2017-12-11 Asbestos fiber compressor

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201711303490.2A CN109895436B (en) 2017-12-11 2017-12-11 Asbestos fiber compressor

Publications (2)

Publication Number Publication Date
CN109895436A CN109895436A (en) 2019-06-18
CN109895436B true CN109895436B (en) 2023-11-10

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201711303490.2A Active CN109895436B (en) 2017-12-11 2017-12-11 Asbestos fiber compressor

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Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
AT523274B1 (en) * 2020-02-28 2021-07-15 Wiesbauer Andreas Plant for pressing artificial mineral fiber waste

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH10277785A (en) * 1997-04-01 1998-10-20 Masamichi Suzuki Industrial waste compressing and cutting device
CN201342798Y (en) * 2009-02-09 2009-11-11 孙朝琼 Fully-closed environmental-friendly trash vertical briquetting machine
CN202499604U (en) * 2012-03-21 2012-10-24 河南省通信电缆有限公司 Automatic pressing plate for subscriber line rewinding machine
CN202657332U (en) * 2012-06-05 2013-01-09 苏州广泽自动化包装系统设备有限公司 Compression packing machine
CN207607153U (en) * 2017-12-11 2018-07-13 荆门市至诚机电设备有限公司 A kind of asbestos fibre compressor

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH10277785A (en) * 1997-04-01 1998-10-20 Masamichi Suzuki Industrial waste compressing and cutting device
CN201342798Y (en) * 2009-02-09 2009-11-11 孙朝琼 Fully-closed environmental-friendly trash vertical briquetting machine
CN202499604U (en) * 2012-03-21 2012-10-24 河南省通信电缆有限公司 Automatic pressing plate for subscriber line rewinding machine
CN202657332U (en) * 2012-06-05 2013-01-09 苏州广泽自动化包装系统设备有限公司 Compression packing machine
CN207607153U (en) * 2017-12-11 2018-07-13 荆门市至诚机电设备有限公司 A kind of asbestos fibre compressor

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