CN219929949U - Natural shell powder calcines integrative device of ionization powder - Google Patents

Natural shell powder calcines integrative device of ionization powder Download PDF

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Publication number
CN219929949U
CN219929949U CN202223052385.5U CN202223052385U CN219929949U CN 219929949 U CN219929949 U CN 219929949U CN 202223052385 U CN202223052385 U CN 202223052385U CN 219929949 U CN219929949 U CN 219929949U
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shell
calcining
powder
plate
roller
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CN202223052385.5U
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Chinese (zh)
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陈磊
付小辞
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Guangdong Aicheng New Materials Co ltd
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Shenzhen City Future Green Environmental Protection Technology Co ltd
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Abstract

The utility model discloses a natural shell powder calcining and ionizing powder pressing integrated device, which belongs to the technical field of shell powder pressing, and comprises a shell powder pressing device assembly, wherein the shell powder pressing device assembly comprises a base assembly, a conveying device, a calcining device and a powder pressing device, a shell is added into a material containing box to calcine the shell through a calcining mechanism, a sliding block is enabled to rotate the material containing box along a rotating shaft through the extension of a telescopic rod, the sliding block is enabled to rotate on the outer wall of a shaft body, the calcined shell can be enabled to be poured onto the upper end face of the conveying device from an inclined plate, the shell is conveyed to the calcining device to be crushed through the rotation of a side plate, a roller is driven to rotate through the rotating shaft, each pressing roller is enabled to be pressed from the bottom of an L-shaped plate, the shell is crushed and leaked into the inside of a chute from a through hole on the bottom plate of the L-shaped plate, the shell is enabled to be calcined and pressed into the powder pressing device through cooling of a fan, the shell is enabled to be carried to the powder pressing device after being cooled, and the shell is enabled not to be cooled, and the like, so that the working efficiency is increased.

Description

Natural shell powder calcines integrative device of ionization powder
Technical Field
The utility model belongs to the technical field of shell powder pressing, and particularly relates to a natural shell powder calcining and ionizing powder pressing integrated device.
Background
Shells are the outer shells of mollusks living in the water and are calcifications of the soft parts of the body formed by the secretions of one particular gland cell of the mollusk. Compared with natural calcium carbonate mineral substances in nature, the shell has a unique multi-scale and multi-level 'brick-mud' assembly structure, has good toughness, high strength and other excellent characteristics due to the multi-level layered structure, and is powder prepared by crushing shells of oyster, freshwater mussel, clams, snails and the like after meat removal. Belonging to mineral supplement.
The shell powder is powder prepared by crushing and grinding shells, 95% of the powder comprises calcium carbonate, chitin, a small amount of amino acid and polysaccharide substances, and the powder can be used as high-grade materials for foods, cosmetics and interior decoration, and is applied to livestock and poultry feeds, food calcium source additives, ornament processing, drying agents and the like.
The existing shell powder pressing device is used for heating and pressing powder to be operated separately, so that the shell can be pressed after being cooled, the production time is wasted undoubtedly, and the production efficiency is reduced.
Disclosure of Invention
Aiming at the problems that the prior shell powder pressing device is used for heating and pressing powder separately, the shell can be pressed after being cooled, the production time is wasted undoubtedly, and the production efficiency is reduced, the utility model provides a natural shell powder calcining and ionizing powder pressing integrated device which comprises a shell powder pressing device assembly, wherein the shell powder pressing device assembly comprises a base assembly, a conveying device, a calcining device and a powder pressing device, and the components are matched for use, so that the problems that the prior shell powder pressing device can be used for heating and pressing powder separately, the powder pressing can be carried out after the shell is cooled, the production time is wasted undoubtedly, and the production efficiency is reduced are effectively solved.
In order to solve the problems, the utility model adopts the following technical scheme.
The utility model provides a natural shell powder calcines ionization powder integrative device, includes shell powder device assembly, shell powder device assembly include base assembly, conveyor, calcination device and powder device, conveyor assemble the up end near center department at base assembly, calcination device and powder device assemble in conveyor's both sides, powder device include L template, L template bottom be equipped with a plurality of second support columns, and both sides are equipped with symmetrical baffle around the L template, the bottom plate of L template is for being provided with a plurality of small holes, the outer wall of both sides baffle is equipped with symmetrical connecting plate, the center department of both sides connecting plate is equipped with the roller, the both ends of roller are equipped with symmetrical axis of rotation, and axis of rotation and connecting plate rotate to be connected, and the axis of rotation of one side pierces through the connecting plate and is connected with the motor, the outer wall of roller is equipped with a plurality of elastic bars, the top of every elastic bar is equipped with U type cardboard, and the center department of every U type cardboard is equipped with rotatable compression roller, and elastic bar, U type cardboard and compression roller vertical length are greater than the length between axis of rotation and the L template, can avoid the L template to damage when the compression through the elastic bar to shrink the big bottom plate.
Preferably, the base assembly comprises a base body, a fan is assembled at the position, close to the center, of the upper end face of the base body, a chute is arranged on one side of the upper end face of the base body, and the chute is used for assembling the conveying device, the calcining device and the powder pressing device through the upper end face of the base body.
Preferably, the conveying device comprises symmetrical side plates, a plurality of rotating rollers are assembled at the centers of the side plates at two sides, the rotating rollers are made of stainless steel, first support columns which are bilaterally symmetrical are assembled at the bottoms of the side plates at two sides, and the upper end faces of the base assemblies can be installed through the first support columns.
Preferably, the calcination device include flourishing magazine, flourishing magazine one side be provided with the swash plate, flourishing magazine inboard bottom be equipped with calcination mechanism, flourishing magazine is close to the bottom of one side and is equipped with the telescopic link, the top of telescopic link rotates and is connected with the axis body, the outer wall fixedly connected with slider of axis body, flourishing magazine's bottom is provided with the spout, slider and spout sliding connection flourishing magazine bottom's another side are equipped with the fixed plate, be equipped with the pivot between fixed plate and the flourishing magazine and make flourishing magazine rotate along the pivot through the extension of telescopic link to can make the shell after calcining fall to conveyor's up end from the swash plate.
Preferably, the conveying device is assembled at the upper end of the fan, and the second support column, the first support column, the telescopic rod and the fixing plate are connected with the upper end face of the base body.
Advantageous effects
Compared with the prior art, the utility model has the beneficial effects that:
(1) According to the utility model, shells are added into the material containing box, the shells are calcined through the calcining mechanism, the sliding block rotates on the outer wall of the shaft body through the extension of the telescopic rod, the material containing box rotates along the rotating shaft, so that the calcined shells can be poured onto the upper end face of the conveying device from the inclined plate, the shells are conveyed to the calcining device to be crushed through the rotation of the side plate, the rotating shaft drives the roller to rotate, each pressing roller presses the bottom of the L-shaped plate, the shells are crushed and leak into the chute from the through hole in the bottom plate of the L-shaped plate, the calcining and powder pressing are integrated, the shells above are cooled through the fan, and the shells are conveyed to the powder pressing device to be crushed without waiting for cooling, so that the working efficiency is improved.
(2) According to the utility model, the vertical lengths of the elastic rod, the U-shaped clamping plate and the pressing roller are slightly larger than the length between the rotating shaft and the bottom plate of the L-shaped plate, the pressing roller can scratch the bottom plate of the L-shaped plate when rotating, the U-shaped clamping plate can be contracted inwards through the elastic rod when scratching, the shells are rolled through the elasticity of the elastic rod, and the bottom plate of the L-shaped plate can be prevented from being damaged due to overlarge rotating force.
Drawings
FIG. 1 is a schematic diagram of a device for calcining, ionizing and compacting natural shell powder;
FIG. 2 is a schematic view of a base assembly according to the present utility model;
FIG. 3 is a schematic view of a conveying device according to the present utility model;
FIG. 4 is a schematic view of the calcining apparatus according to the present utility model;
fig. 5 is a schematic structural view of the powder compacting device in the utility model.
The correspondence between the reference numerals and the component names in the drawings is as follows:
1. a shell powder pressing device assembly;
2. a base assembly; 21. a base; 22. a fan; 23. a chute;
3. a conveying device; 31. a side plate; 32. a rotating roller; 33. a first support column;
4. a calcining device; 41. a material containing box; 42. a sloping plate; 43. a calcining mechanism; 44. a telescopic rod; 45. a fixing plate;
46. a rotating shaft; 47. a chute; 48. a slide block; 49. a shaft body;
5. a powder pressing device; 51. an L-shaped plate; 52. a baffle; 53. a second support column; 54. a connecting plate; 55. a motor;
56. a rotating shaft; 57. a roller; 58. an elastic rod; 59. a U-shaped clamping plate; 510. and (3) a press roller.
Detailed Description
The utility model is further described in connection with the following specific utility model.
Example 1
Referring to fig. 1, which is a schematic structural diagram of a device for calcining, ionizing and compacting natural shell powder according to a preferred embodiment of the present utility model, the device for calcining, ionizing and compacting natural shell powder according to this embodiment includes a shell compacting device assembly 1, wherein the shell compacting device assembly 1 includes a base assembly 2, a conveying device 3, a calcining device 4 and a compacting device 5, the conveying device 3 is assembled on an upper end surface of the base assembly 2 near the center, and the calcining device 4 and the compacting device 5 are assembled on two sides of the conveying device 3.
As shown in fig. 2, which is a schematic diagram of a base assembly structure in the present utility model, the base assembly 2 includes a base 21, a fan 22 is mounted on an upper end surface of the base 21 near a center, and a chute 23 is disposed on one side of the upper end surface of the base 21; the heated shell can be cooled by the fan 22, and the shell powder can be discharged through the chute 23.
As shown in fig. 3, which is a schematic structural diagram of a conveying device in the present utility model, the conveying device 3 includes symmetrical side plates 31, a plurality of rotating rollers 32 are assembled at the centers of the side plates 31, the rotating rollers 32 are made of stainless steel, and the bottoms of the side plates 31 are assembled with first support columns 33 which are symmetrical left and right; the heated shell can be conveyed to the compacting device 5 by rotation of the rotating roller 32.
As shown in fig. 4, which is a schematic structural diagram of the calcining device in the present utility model, the calcining device 4 includes a material containing box 41, one side of the material containing box 41 is provided with a sloping plate 42, the bottom of the inner side of the material containing box 41 is provided with a calcining mechanism 43, the bottom of the material containing box 41 close to one side is provided with a telescopic rod 44, the top of the telescopic rod 44 is rotatably connected with a shaft body 49, the outer wall of the shaft body 49 is fixedly connected with a sliding block 48, the bottom of the material containing box 41 is provided with a sliding groove 47, the sliding block 48 is slidably connected with the sliding groove 47, the other side of the bottom of the material containing box 41 is provided with a fixing plate 45, and a rotating shaft 46 is arranged between the fixing plate 45 and the material containing box 41; the shell inside the housing 41 can be calcined by the calcining mechanism 43, and the housing 41 is used for housing the shell to be pressed with powder.
As shown in fig. 5, which is a schematic structural diagram of the powder pressing device of the present utility model, the powder pressing device 5 includes an L-shaped plate 51, a plurality of second supporting columns 53 are assembled at the bottom of the L-shaped plate 51, symmetrical baffles 52 are assembled at the front and rear sides of the L-shaped plate 51, a plurality of holes are formed in the bottom plate of the L-shaped plate 51, symmetrical connecting plates 54 are assembled at the outer walls of the two baffles 52, rollers 57 are assembled at the centers of the two connecting plates 54, symmetrical rotating shafts 56 are assembled at the two ends of the rollers 57, the rotating shafts 56 are rotatably connected with the connecting plates 54, one rotating shaft 56 penetrates through the connecting plates 54 and is connected with a motor 55, a plurality of elastic rods 58 are assembled at the outer wall of the rollers 57, a U-shaped clamping plate 59 is assembled at the top end of each elastic rod 58, a rotatable pressing roller 510 is assembled at the center of each U-shaped clamping plate 59, and the vertical lengths of the elastic rods 58, the U-shaped clamping plates 59 and the pressing rollers 510 are slightly longer than the lengths between the rotating shafts 56 and the bottom plate of the L-shaped plate 51; the bottom plate of the L-shaped plate 51 is used for placing shells, shell powder is leaked downwards through the leak holes in the bottom plate of the L-shaped plate 51, and the rotary shaft 56 drives the roller 57 to rotate so that each press roller 510 is pressed from the bottom of the L-shaped plate 51.
The conveying device 3 is assembled at the upper end of the fan 22, and the second support column 53, the first support column 33, the telescopic rod 44 and the fixing plate 45 are connected with the upper end surface of the base 21.
Working principle: to the inside of flourishing magazine 41 adds the shell, calcine the shell through calcining mechanism 43, the extension through telescopic link 44 makes slider 48 rotate at the outer wall of axis body 49, flourishing magazine 41 rotates along pivot 46, thereby can make the shell after calcining fall to conveyor's 3 up end from swash plate 42, carry the shell to calcine device 4 through the rotation of curb plate 31 pulverize, drive roller 57 through axis of rotation 56 and rotate and make every compression roller 510 from the bottom of L template 51 upper pressure, pulverize the shell and leak into chute 23 inside from the through-hole on the bottom plate of L template 51, can make calcination and dust integration, and cool down the shell of top through fan 22, make the shell not use after waiting the shell cooling carry to dust device 5 pulverize, work efficiency has been increased.
Example 2
As shown in fig. 1-5, which are schematic structural views of an integrated device for calcining and ionizing natural shell powder according to another preferred embodiment of the present utility model, in the integrated device for calcining and ionizing natural shell powder according to this embodiment, on the basis of example 1, the vertical lengths of the elastic rod 58, the U-shaped clamping plate 59 and the pressing roller 510 are slightly longer than the length between the rotating shaft 56 and the bottom plate of the L-shaped plate 51, so that the pressing roller 510 can scratch the bottom plate of the L-shaped plate 51 during rotation, and the U-shaped clamping plate 59 can shrink inwards through the elastic rod 58 and roll shells through the elastic force of the elastic rod 58, so that damage to the bottom plate of the L-shaped plate 51 due to excessive rotating force can be avoided.
The foregoing is a further elaboration of the present utility model in connection with the detailed description, and it is not intended that the utility model be limited to the specific embodiments shown, but rather that a number of simple deductions or substitutions be made by one of ordinary skill in the art without departing from the spirit of the utility model, should be considered as falling within the scope of the utility model as defined in the appended claims.

Claims (5)

1. The integrated device for calcining, ionizing and compacting the natural shell powder comprises a shell compacting device assembly (1), wherein the shell compacting device assembly (1) comprises a base assembly (2), a conveying device (3), a calcining device (4) and a compacting device (5), the conveying device (3) is assembled at the position, close to the center, of the upper end face of the base assembly (2), the calcining device (4) and the compacting device (5) are assembled at two sides of the conveying device (3),
the method is characterized in that:
the powder pressing device (5) include L template (51), L template (51) bottom be equipped with a plurality of second support column (53), and both sides are equipped with symmetrical baffle (52) around L template (51), the bottom plate of L template (51) is for being provided with a plurality of small openings, the outer wall of both sides baffle (52) is equipped with symmetrical connecting plate (54), the center department of both sides connecting plate (54) is equipped with roller (57), axis of rotation (56) of symmetry are equipped with at the both ends of roller (57), and axis of rotation (56) are connected with connecting plate (54) rotation, and axis of rotation (56) of one side pierce through connecting plate (54) and be connected with motor (55), the outer wall of roller (57) is equipped with a plurality of elastic bars (58), the top of every elastic bar (58) is equipped with U type cardboard (59), and the center department of every U type cardboard (59) is equipped with rotatable compression roller (510), and U type cardboard (59) and compression roller (510) vertical length are greater than the length between axis of rotation (56) and the L template (51).
2. The integrated device for calcining, ionizing and compacting natural shell powder according to claim 1, wherein: the base assembly (2) comprises a base body (21), a fan (22) is assembled at the position, close to the center, of the upper end face of the base body (21), and a chute (23) is arranged on one side of the upper end face of the base body (21).
3. The integrated device for calcining and ionizing powder pressing of natural shell powder according to claim 2, wherein: the conveying device (3) comprises symmetrical side plates (31), a plurality of rotating rollers (32) are arranged at the centers of the side plates (31) at the two sides, the rotating rollers (32) are made of stainless steel, and first support columns (33) which are bilaterally symmetrical are arranged at the bottoms of the side plates (31).
4. A natural shell powder calcination ionization compaction integrated apparatus according to claim 3, wherein: calcination device (4) include flourishing magazine (41), one side of flourishing magazine (41) be provided with swash plate (42), the inboard bottom of flourishing magazine (41) is equipped with calcination mechanism (43), the bottom that flourishing magazine (41) is close to one side is equipped with telescopic link (44), the top of telescopic link (44) is rotated and is connected with axis body (49), the outer wall fixedly connected with slider (48) of axis body (49), the bottom of flourishing magazine (41) is provided with spout (47), slider (48) and spout (47) sliding connection, the other side of flourishing magazine (41) bottom is equipped with fixed plate (45), be equipped with pivot (46) between fixed plate (45) and flourishing magazine (41).
5. The integrated device for calcining and ionizing powder pressing of natural shell powder according to claim 4, wherein: the conveying device (3) is assembled at the upper end of the fan (22), and the second support column (53), the first support column (33), the telescopic rod (44) and the fixing plate (45) are connected with the upper end face of the base body (21).
CN202223052385.5U 2022-11-15 2022-11-15 Natural shell powder calcines integrative device of ionization powder Active CN219929949U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202223052385.5U CN219929949U (en) 2022-11-15 2022-11-15 Natural shell powder calcines integrative device of ionization powder

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202223052385.5U CN219929949U (en) 2022-11-15 2022-11-15 Natural shell powder calcines integrative device of ionization powder

Publications (1)

Publication Number Publication Date
CN219929949U true CN219929949U (en) 2023-10-31

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ID=88492091

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202223052385.5U Active CN219929949U (en) 2022-11-15 2022-11-15 Natural shell powder calcines integrative device of ionization powder

Country Status (1)

Country Link
CN (1) CN219929949U (en)

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GR01 Patent grant
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Effective date of registration: 20240109

Address after: Room 707, No. 198 Dongfeng West Road, Yuexiu District, Guangzhou City, Guangdong Province, 510000 (office only)

Patentee after: Guangdong Aicheng New Materials Co.,Ltd.

Address before: 518000 14A, Building C, Jingang Haoting, No. 1001, Jintian Road, Shuiwei Community, Futian Street, Futian District, Shenzhen, Guangdong

Patentee before: SHENZHEN CITY FUTURE GREEN ENVIRONMENTAL PROTECTION TECHNOLOGY CO.,LTD.

TR01 Transfer of patent right