CN210942514U - Biomass particle packing device - Google Patents
Biomass particle packing device Download PDFInfo
- Publication number
- CN210942514U CN210942514U CN201921776399.7U CN201921776399U CN210942514U CN 210942514 U CN210942514 U CN 210942514U CN 201921776399 U CN201921776399 U CN 201921776399U CN 210942514 U CN210942514 U CN 210942514U
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- hopper
- material leakage
- guide chute
- mesh screen
- collecting box
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Abstract
The utility model discloses a biomass particle packing device, which comprises a funnel-shaped hopper, wherein four first supporting columns are uniformly arranged at the bottom of a conical section of the hopper, a material leakage port is arranged at the lower end of the hopper, and a conveying belt is arranged on the ground below the material leakage port; mounting plates are arranged between every two first support columns respectively positioned at two sides of the hopper, a first air cylinder facing the material leakage opening is respectively arranged on each mounting plate, and a bag clamping plate with an arc-shaped section and matched with the outer peripheral wall of the material leakage opening is fixedly arranged at the telescopic end of each first air cylinder; the feeding device is characterized in that a guide chute is arranged above the hopper, the guide chute is obliquely and downwards arranged towards the middle of the hopper, and the guide chute comprises a mesh screen part and a guide chute part which are integrally connected. The utility model discloses guaranteed biomass fuel's finished product quality and result of use, can accomplish automatic dress package, reduced the manpower consumption of dress package in-process, improved work efficiency.
Description
Technical Field
The utility model relates to a biomass fuel packing field especially relates to a living beings granule packing device.
Background
The biomass fuel is produced through crushing timber, stalk and other material into powder and forming into fixed granular fuel with certain shape and high density. And after the production is finished, the granular fuel needs to be packaged for storage and transportation. The existing packing mode mainly packs the bags through manpower, so that the physical consumption is large and the working efficiency is low. And certain raw material powder and small pieces of impurities are mixed in the granular fuel after extrusion forming, and if the powder and the impurities are not removed, the finished product quality and the using effect of the biomass fuel are influenced.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing a living beings granule packing device solves the technical problem who mentions in the above-mentioned background art.
In order to solve the technical problem, the utility model adopts the following technical scheme:
the utility model relates to a living beings granule packing device, including leaking hopper-shaped's hopper, the bottom of the toper section of hopper evenly is provided with four first support columns, the lower extreme of hopper is provided with the drain mouth, the subaerial conveyer belt that is provided with of drain mouth below.
Be located respectively be provided with the mounting panel between per two first support columns of hopper both sides, each be provided with the orientation on the mounting panel respectively the first cylinder of drain hole, the flexible end of first cylinder is fixed be provided with the cross-section for the arc and with the profile the bag board that presss from both sides of the outer peripheral wall looks adaptation of drain hole.
A guide chute is arranged above the hopper, the guide chute is obliquely and downwards arranged towards the middle part of the hopper, and the guide chute comprises a mesh part and a guide groove part which are integrally connected; the mesh screen part is integrally positioned on the outer side of the hopper and is arranged below a discharge hole of the biomass particle forming machine, and two second support columns are symmetrically arranged at the bottom of the mesh screen part; the bottom of the guide groove part is fixedly connected with the top end of the hopper, and one end of the guide groove part, which is far away from the mesh screen part, extends to the middle of the upper part of the hopper.
Further, a vibrator is arranged at the bottom of the mesh screen part.
Still further, a support rod is fixedly arranged between the bottom of the guide groove part and the upper peripheral wall of the hopper.
Still further, the below of net sieve portion is provided with the collecting box, the bottom one end of collecting box through the hinge with be close to two of net sieve portion first support column is articulated to be connected, is close to two of net sieve portion first support column with be provided with the second cylinder between the bottom plate of collecting box, the main part of second cylinder with corresponding first support column is articulated to be connected, the flexible end of second cylinder with the bottom plate of collecting box is articulated to be connected.
Compared with the prior art, the utility model discloses a beneficial technological effect:
the utility model discloses at the during operation, the living beings granule is at first through net sieve portion, and powder raw materials and fritter impurity sieve in the living beings granule are sieved to net sieve portion, have guaranteed biomass fuel's finished product quality and result of use. Later in the living beings granule enters into the hopper through guide slot portion, the workman will be used for the braided bag cover of packing to make two clamp bag board clamp the braided bag on the periphery wall of drain hole and start first cylinder extension, later start the electric valve on the drain hole, make the living beings granule enter into the braided bag, accomplish automatic dress package, reduced the manpower consumption of dress package in-process, improved work efficiency.
Drawings
The present invention will be further explained with reference to the following description of the drawings.
FIG. 1 is a schematic structural view of the present invention;
FIG. 2 is a schematic bottom view of the hopper;
description of reference numerals: 1. a hopper; 2. a first support column; 3. a material leakage port; 4. a conveyor belt; 5. mounting a plate; 6. a first cylinder; 7. a bag clamping plate; 8. a material guide chute; 8-1, a mesh screen part; 8-2, a guide groove part; 9. a second support column; 10. a vibrator; 11. a support bar; 12. a collection box; 13. a second cylinder; 14. a discharge port; 15. an electrically operated valve.
Detailed Description
As shown in fig. 1-2, a biomass particle packing device comprises a funnel-shaped hopper 1, wherein four first support columns 2 are uniformly arranged at the bottom of a conical section of the hopper 1 along the vertical direction, and the lower ends of the four first support columns 2 are in contact with the ground to keep the whole hopper 1 stable.
The lower extreme of hopper 1 is provided with drain hole 3, install electric valve 15 on the drain hole 3 in order to control the break-make of material, the subaerial conveyer belt 4 of installing of drain hole 3 below. Be located respectively fixed mounting panel 5, each of being provided with between per two first support columns 2 of 1 both sides of hopper install the orientation respectively on the mounting panel 5 the first cylinder 6 of drain hole 3, the flexible end mounting of first cylinder 6 have the cross-section be arc and with the profile the double-layered bag board 7 of the outer peripheral wall looks adaptation of drain hole 3.
A material guide groove 8 is fixedly arranged above the hopper 1, the material guide groove 8 is obliquely and downwards arranged towards the middle part of the hopper 1, and the material guide groove 8 comprises a mesh screen part 8-1 and a guide groove part 8-2 which are integrally connected.
The net screen part 8-1 is integrally positioned on the outer side of the hopper 1 and is arranged below a discharge port 14 of the biomass particle forming machine, two second support columns 9 in the vertical direction are symmetrically and fixedly arranged at the bottom of the net screen part 8-1, and the lower ends of the two second support columns 9 are in contact with the ground. The bottom of the mesh screen part 8-1 is provided with a vibrator 10, and the vibrator 10 is beneficial to powder raw materials and small impurities in biomass particles screened by the mesh screen part 8-1 on one hand and is beneficial to downward movement of biomass fuel on the other hand, so that the material guiding is facilitated.
The bottom of the guide groove part 8-2 is fixedly connected with the top end of the hopper 1 in a welding mode, one end, far away from the mesh sieve part 8-1, of the guide groove part extends to the middle of the upper part of the hopper 1, and in addition, a support rod 11 is fixedly arranged between the bottom of the guide groove part 8-2 and the peripheral wall of the upper part of the hopper 1, so that the guide groove part is favorable for keeping a stable state at the top of the hopper 1.
As a further improvement of the utility model, a collecting box 12 is arranged below the net sieve part 8-1, one end of the bottom of the collecting box 12 is hinged with two first supporting columns 2 close to the net sieve part 8-1 through hinges. A second cylinder 13 is arranged between the two first supporting columns 2 close to the mesh screen part 8-1 and the bottom plate of the collecting box 12, the main body of the second cylinder 13 is hinged with the corresponding first supporting column 2, and the telescopic end of the second cylinder 13 is hinged with the bottom plate of the collecting box 12. The collecting box 12 can collect the powdery raw materials and small impurities screened by the mesh screen part 8-2, and the collecting box 12 can be driven by the second air cylinder to turn downwards, so that the collected powdery raw materials and small impurities are treated in a centralized manner.
The working process of the utility model is as follows:
the extrusion-molded biomass particles are discharged from a discharge port 14 of a forming machine and firstly pass through a screen part 8-1, the materials are sieved by a screen mesh part, powder raw materials and small impurities in the biomass particles fall into a collecting box below the screen mesh part, and then the biomass particles enter a hopper through a guide groove part. After the packaging is finished, the electric valve is closed, the first cylinder is started to shrink, the whole bag of biomass particles after the packaging is transmitted to the next station by the conveying belt, and then the operation is repeated to guarantee the next bag.
The above-mentioned embodiments are only intended to describe the preferred embodiments of the present invention, but not to limit the scope of the present invention, and those skilled in the art should also be able to make various modifications and improvements to the technical solution of the present invention without departing from the spirit of the present invention, and all such modifications and improvements are intended to fall within the scope of the present invention as defined in the appended claims.
Claims (4)
1. The utility model provides a living beings granule packing apparatus which characterized in that: the hopper comprises a hopper (1) with a funnel shape, four first supporting columns (2) are uniformly arranged at the bottom of a conical section of the hopper (1), a material leakage opening (3) is formed in the lower end of the hopper (1), and a conveying belt (4) is arranged on the ground below the material leakage opening (3);
mounting plates (5) are arranged between every two first support columns (2) respectively positioned at two sides of the hopper (1), a first air cylinder (6) facing the material leakage opening (3) is respectively arranged on each mounting plate (5), and a bag clamping plate (7) which is arc-shaped in cross section and is matched with the outer peripheral wall of the material leakage opening (3) in outline is fixedly arranged at the telescopic end of each first air cylinder (6);
a guide chute (8) is arranged above the hopper (1), the guide chute (8) is obliquely and downwards arranged towards the middle part of the hopper (1), and the guide chute (8) comprises a mesh screen part (8-1) and a guide chute part (8-2) which are integrally connected; the whole mesh screen part (8-1) is positioned outside the hopper (1) and is arranged below a discharge hole of the biomass particle forming machine, and two second support columns (9) are symmetrically arranged at the bottom of the mesh screen part (8-1); the bottom of the guide groove part (8-2) is fixedly connected with the top end of the hopper (1), and one end of the guide groove part, which is far away from the mesh screen part (8-1), extends to the middle of the upper part of the hopper (1).
2. The biomass particle packaging device of claim 1, wherein: the bottom of the mesh screen part (8-1) is provided with a vibrator (10).
3. The biomass particle packaging device of claim 1, wherein: a support rod (11) is fixedly arranged between the bottom of the guide groove part (8-2) and the upper peripheral wall of the hopper (1).
4. The biomass particle packaging device of claim 1, wherein: the net sieve part is characterized in that a collecting box (12) is arranged below the net sieve part (8-1), one end of the bottom of the collecting box (12) is hinged to two first supporting columns (2) close to the net sieve part (8-1) through hinges, two first supporting columns (2) close to the net sieve part (8-1) are hinged to the bottom plate of the collecting box (12), a second cylinder (13) is arranged between the first supporting columns (2) and the bottom plate of the collecting box (12), the main body of the second cylinder (13) is hinged to the first supporting columns (2) correspondingly, and the telescopic end of the second cylinder (13) is hinged to the bottom plate of the collecting box (12).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201921776399.7U CN210942514U (en) | 2019-10-22 | 2019-10-22 | Biomass particle packing device |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201921776399.7U CN210942514U (en) | 2019-10-22 | 2019-10-22 | Biomass particle packing device |
Publications (1)
Publication Number | Publication Date |
---|---|
CN210942514U true CN210942514U (en) | 2020-07-07 |
Family
ID=71380353
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
CN201921776399.7U Active CN210942514U (en) | 2019-10-22 | 2019-10-22 | Biomass particle packing device |
Country Status (1)
Country | Link |
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CN (1) | CN210942514U (en) |
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2019
- 2019-10-22 CN CN201921776399.7U patent/CN210942514U/en active Active
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