CN220482511U - Automatic feeding equipment is used in production of ethylene propylene diene monomer sponge - Google Patents

Automatic feeding equipment is used in production of ethylene propylene diene monomer sponge Download PDF

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Publication number
CN220482511U
CN220482511U CN202322111142.2U CN202322111142U CN220482511U CN 220482511 U CN220482511 U CN 220482511U CN 202322111142 U CN202322111142 U CN 202322111142U CN 220482511 U CN220482511 U CN 220482511U
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hopper
sliding
seat
electric push
feeding
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CN202322111142.2U
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Chinese (zh)
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曹国军
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Suqian Jingxian Technology Co ltd
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Suqian Jingxian Technology Co ltd
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Abstract

The utility model relates to the field of rubber sponge production and feeding, in particular to automatic feeding equipment for ethylene propylene diene monomer sponge production, which comprises a base, a dumping structure, a fixing structure, a sliding structure and a plurality of supporting seats, wherein the fixing structure is fixedly arranged at the top end of the base, a hopper is arranged at the top end of a screw extruder body, the top end of the hopper is fixedly connected with the top end of the fixing structure, the sliding structure is slidably arranged at one side of the fixing structure, and the dumping structure is rotatably connected with the sliding structure. The device connects the feeding cylinder with the sliding seat, and the sliding seat can be pushed to the top end of the sliding frame by operating the first electric push rod; and the second electric push rod is operated, so that the top end opening of the feeding barrel is aligned to the inside of the hopper, materials are poured into the hopper, feeding in the hopper is realized, workers are not required to carry in hands in the whole process, automatic feeding is realized by controlling the second electric push rod, and the labor intensity of the workers is greatly reduced.

Description

Automatic feeding equipment is used in production of ethylene propylene diene monomer sponge
Technical Field
The utility model relates to the field of rubber sponge production and feeding, in particular to automatic feeding equipment for ethylene propylene diene monomer sponge production.
Background
Ethylene propylene diene monomer is synthesized by taking ethylene and propylene as main raw materials, has the characteristics of ageing resistance, corrosion resistance, ozone resistance and the like, and has various advantages. In the production of ethylene propylene diene monomer sponge, an extruder is generally required, and the product is produced through the processing of the extruder.
The hopper of the extruder is generally added manually, the volume in the hopper is large, the extruder is required to work for 1-1.5 hours by the added materials in the hopper, and the labor intensity of workers can be greatly increased by the feeding mode in the hopper.
Disclosure of Invention
The utility model aims to provide automatic feeding equipment for producing ethylene propylene diene monomer sponge.
To achieve the purpose, the utility model adopts the following technical scheme:
the utility model provides an automatic feed equipment is used in production of EPDM rubber sponge, including the base, empty structure, fixed knot constructs, sliding structure and a plurality of supporting seat, fixed knot constructs fixed mounting in the top of base, through a plurality of supporting seat fixed connection between screw extruder body and the base, screw extruder body is located fixed knot constructs inside, and the top of screw extruder body is provided with the hopper, the top and the top fixed connection of fixed knot constructs of hopper, sliding structure slidable installs in one side of fixed knot constructs, empty structure and sliding structure rotatable coupling.
Further, fixed knot constructs including spacing and carriage, and spacing and carriage equal fixed mounting are in the base top, and are located the both sides of hopper respectively, and the top of spacing and the top fixed connection of carriage, the top of hopper and the top fixed connection of spacing are close to and pass through a plurality of support bars fixed connection between the supporting seat of hopper and the top of spacing.
Further, the sliding structure comprises a sliding seat and a plurality of first electric push rods, the sliding seat is slidably arranged on the sliding frame, and the sliding seat is fixedly connected with the bottom end of the sliding frame through the plurality of first electric push rods.
Further, the top of slide is provided with the rotation axis, and the bottom of slide is provided with swivelling joint seat one.
Further, empty the structure and include a feeding section of thick bamboo and electric putter two, electric putter two's bottom and rotatable coupling seat one rotatable coupling, electric putter two's output and the bottom rotatable coupling of a feeding section of thick bamboo, the outer fringe of a feeding section of thick bamboo is provided with the connecting seat, connecting seat and rotatable coupling of rotation axis.
Further, the bottom of the feeding barrel is provided with an output end which is rotatably connected with the second electric push rod.
The utility model has the beneficial effects that: the device connects the feeding cylinder with the sliding seat, and the sliding seat can be pushed to the top end of the sliding frame by operating the first electric push rod; and the second electric push rod is operated, so that the top end opening of the feeding barrel is aligned to the inside of the hopper, materials are poured into the hopper, feeding in the hopper is realized, workers are not required to carry in hands in the whole process, automatic feeding is realized by controlling the second electric push rod, and the labor intensity of the workers is greatly reduced.
Drawings
In order to more clearly illustrate the technical solution of the embodiments of the present utility model, the drawings that are required to be used in the embodiments of the present utility model will be briefly described below.
FIG. 1 is a schematic perspective view of the present utility model;
FIG. 2 is a schematic view of a partial perspective structure of the present utility model;
FIG. 3 is a schematic view of a partial perspective structure of the present utility model;
FIG. 4 is a schematic view of a partial perspective structure of the present utility model;
in the figure: 1. a base; 2. a support base; 2a, supporting strips; 3. a fixed structure; 3a, a limiting frame; 3b, a sliding frame; 4. a sliding structure; 4a, an electric push rod I; 4b, a sliding seat; 4b1, a rotation shaft; 4b2, rotating the first connecting seat; 5. a dumping structure; 5a, feeding cylinder; 5a1, a connecting seat; 5a2, a rotary connecting seat II; 5b, an electric push rod II; 6. a screw extruder body; 7. and (3) a hopper.
Detailed Description
The technical scheme of the utility model is further described below by the specific embodiments with reference to the accompanying drawings.
Wherein the drawings are for illustrative purposes only and are shown in schematic, non-physical, and not intended to be limiting of the present patent; for the purpose of better illustrating embodiments of the utility model, certain elements of the drawings may be omitted, enlarged or reduced in size and do not represent the actual product dimensions.
Referring to the automatic feed equipment for ethylene propylene diene monomer sponge production shown in fig. 1 to 4, including base 1, empty structure 5, fixed knot constructs 3, sliding structure 4 and a plurality of supporting seat 2, fixed knot constructs 3 fixed mounting in the top of base 1, through a plurality of supporting seat 2 fixed connection between screw extruder body 6 and the base 1, screw extruder body 6 is located the inside of fixed knot constructs 3, the top of screw extruder body 6 is provided with hopper 7, the top of hopper 7 and the top fixed connection of fixed knot constructs 3 for the position of hopper 7 obtains fixedly, when empty structure 5 operation, the material in the empty structure 5 can be accurate pour in hopper 7, guarantee simultaneously that hopper 7 can not receive the influence of impact between material and the hopper 7 and take place to rock. The sliding structure 4 is slidably arranged on one side of the fixed structure 3, and when the sliding structure 4 operates, materials can be conveyed to the top end of the fixed structure 3 from the bottom end of the fixed structure 3, so that the materials are poured into the hopper 7 in the next step, manual carrying is not needed, and the labor intensity of workers is reduced. Dumping structure 5 and sliding structure 4 rotatable coupling, when dumping structure 5 operation, dumping structure 5 can rotate round the axis with sliding structure 4 junction for dumping structure 5 in the material get into hopper 7, get into screw extruder body 6 inside from hopper 7 again, carry out the processing to the material.
Fixed knot constructs 3 including spacing 3a and carriage 3b, spacing 3a and carriage 3b equal fixed mounting in base 1 top, and be located the both sides of hopper 7 respectively, the top of spacing 3a and the top fixed connection of carriage 3b, the top of hopper 7 and the top fixed connection of spacing 3a for the position of hopper 7 obtains fixedly, and makes hopper 7 can bear the impact force that the material produced with hopper 7 inner wall when pouring into hopper 7, guarantees that hopper 7 can not take place to rock, and the material in the dumping structure 5 can accurately get into inside the hopper 7. The supporting seat 2 near the hopper 7 is fixedly connected with the top end of the limit frame 3a through the supporting bars 2a, and the supporting bars 2a are used for supporting the fixed structure 3, so that the fixed structure 3 is more stable, and the sliding structure 4 and the dumping structure 5 can move stably during operation.
The sliding structure 4 comprises a sliding seat 4b and a plurality of first electric push rods 4a, the sliding seat 4b is slidably arranged on the sliding frame 3b, the sliding seat 4b is fixedly connected with the bottom end of the sliding frame 3b through the plurality of first electric push rods 4a, when the plurality of first electric push rods 4a are operated, the extending ends of the plurality of first electric push rods 4a extend, the plurality of first electric push rods 4a can push the sliding seat 4b to move towards the top end direction of the sliding frame 3b along the outer wall of the sliding frame 3b, and the dumping structure 5 connected with the sliding structure 4 can pour materials into the hopper 7 during dumping.
The top of slide 4b is provided with rotation axis 4b1, and the bottom of slide 4b is provided with rotatory connecting seat 4b2, all is used for rotating with dumping structure 5 to be connected, when dumping structure 5 operates for dumping structure 5 can take place to rotate, pours the material into hopper 7 inside.
The dumping structure 5 comprises a feeding barrel 5a and an electric push rod II 5b, the bottom end of the electric push rod II 5b is rotatably connected with a first rotary connecting seat 4b2, the output end of the electric push rod II 5b is rotatably connected with the bottom end of the feeding barrel 5a, the outer edge of the feeding barrel 5a is provided with a connecting seat 5a1, the connecting seat 5a1 is rotatably connected with a rotary shaft 4b1, when the electric push rod II 5b is operated, the extending end of the electric push rod II 5b extends, the electric push rod II 5b can drive the feeding barrel 5a to move, and then the connecting seat 5a1 is driven to rotate around the central axis of the rotary shaft 4b1, so that materials in the feeding barrel 5a are dumped into the hopper 7.
The bottom of the feeding barrel 5a is provided with 5a2,5a2 and the output end of the electric push rod II 5b are rotatably connected, when the material in the feeding barrel 5a is poured into the hopper 7, the bottom of the electric push rod II 5b rotates around the rotary connecting seat I4 b2, and the output end of the electric push rod II 5b rotates around the electric push rod 5a 2.
Working principle: firstly, a plurality of first electric push rods 4a are operated, the output ends of the first electric push rods 4a extend, the sliding seat 4b is pushed to slide along the sliding frame 3b until the sliding seat 4b slides to the top end of the sliding frame 3b, then the second electric push rods 5b are operated, the extending ends of the second electric push rods 5b extend, the bottom ends of the second electric push rods 5b rotate around the first rotary connecting seat 4b2, meanwhile, the extending ends of the second electric push rods 5b rotate around the second rotary connecting seat 5a2, the second electric push rods 5b drive the feeding cylinder 5a to move, the connecting seat 5a1 rotates around the rotary shaft 4b1, finally the opening of the feeding cylinder 5a faces the inside of the hopper 7, materials in the feeding cylinder 5a are poured into the inside of the hopper 7, and then the materials enter the screw extruder body 6 for processing.
The device connects the feeding cylinder with the sliding seat, and the sliding seat can be pushed to the top end of the sliding frame by operating the first electric push rod; and the second electric push rod is operated, so that the top end opening of the feeding barrel is aligned to the inside of the hopper, materials are poured into the hopper, feeding in the hopper is realized, workers are not required to carry in hands in the whole process, automatic feeding is realized by controlling the second electric push rod, and the labor intensity of the workers is greatly reduced.
The foregoing is merely a preferred embodiment of the present utility model, and it should be noted that modifications and variations could be made by those skilled in the art without departing from the technical principles of the present utility model, and such modifications and variations should also be regarded as being within the scope of the utility model.

Claims (3)

1. The utility model provides an automatic feed equipment is used in production of EPDM rubber sponge, a serial communication port, including base (1), empty structure (5), fixed knot constructs (3), sliding structure (4) and a plurality of supporting seat (2), fixed knot constructs (3) fixed mounting in the top of base (1), through a plurality of supporting seat (2) fixed connection between screw extruder body (6) and base (1), screw extruder body (6) are located the inside of fixed knot constructs (3), the top of screw extruder body (6) is provided with hopper (7), the top and the top fixed connection of fixed knot constructs (3) of hopper (7), sliding structure (4) slidable install in one side of fixed knot constructs (3), empty structure (5) and sliding structure (4) rotatable coupling, fixed knot constructs (3) including spacing (3 a) and sliding frame (3 b), spacing (3 a) and sliding frame (3 b) all fixed mounting are in the top of base (1), and are located the both sides of hopper (7) respectively, the top of spacing (3 a) and the top of sliding frame (3 b) fixed connection's top and the top of hopper (3 a) are connected fixedly with the top of (7), be close to between the top of supporting seat (2) and spacing (3 a) of hopper (7) through a plurality of support bars (2 a) fixed connection, sliding structure (4) are including slide (4 b) and a plurality of electric putter one (4 a), slide (4 b) slidable install in slide (3 b), through a plurality of electric putter one (4 a) fixed connection between the bottom of slide (4 b) and slide (3 b), empty structure (5) are including feed cylinder (5 a) and electric putter two (5 b), the bottom and the rotatable connection of rotary connection seat one (4 b 2) of electric putter two (5 b), the output of electric putter two (5 b) is rotatable connected with the bottom of feed cylinder (5 a), the outer fringe of feed cylinder (5 a) is provided with connecting seat (5 a 1), connecting seat (5 a 1) and rotation axis (4 b 1) rotatable connection.
2. The automatic feeding device for ethylene propylene diene monomer sponge production according to claim 1, wherein a rotating shaft (4 b 1) is arranged at the top end of the sliding seat (4 b), and a rotary connecting seat I (4 b 2) is arranged at the bottom end of the sliding seat (4 b).
3. An automated feeding device for ethylene propylene diene monomer sponge production according to claim 2, wherein the bottom end of the feeding cylinder (5 a) is provided with 5a2,5a2 and the output end of the electric push rod II (5 b) are rotatably connected.
CN202322111142.2U 2023-08-08 2023-08-08 Automatic feeding equipment is used in production of ethylene propylene diene monomer sponge Active CN220482511U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202322111142.2U CN220482511U (en) 2023-08-08 2023-08-08 Automatic feeding equipment is used in production of ethylene propylene diene monomer sponge

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202322111142.2U CN220482511U (en) 2023-08-08 2023-08-08 Automatic feeding equipment is used in production of ethylene propylene diene monomer sponge

Publications (1)

Publication Number Publication Date
CN220482511U true CN220482511U (en) 2024-02-13

Family

ID=89828922

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202322111142.2U Active CN220482511U (en) 2023-08-08 2023-08-08 Automatic feeding equipment is used in production of ethylene propylene diene monomer sponge

Country Status (1)

Country Link
CN (1) CN220482511U (en)

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