CN112046995A - A material transfer device for capsule preparation in-process is used - Google Patents

A material transfer device for capsule preparation in-process is used Download PDF

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Publication number
CN112046995A
CN112046995A CN202010911594.7A CN202010911594A CN112046995A CN 112046995 A CN112046995 A CN 112046995A CN 202010911594 A CN202010911594 A CN 202010911594A CN 112046995 A CN112046995 A CN 112046995A
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block
groove
movable
sealing plate
rack
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CN112046995B (en
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刘兵
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Lin Baoling
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刘兵
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65GTRANSPORT OR STORAGE DEVICES, e.g. CONVEYORS FOR LOADING OR TIPPING, SHOP CONVEYOR SYSTEMS OR PNEUMATIC TUBE CONVEYORS
    • B65G7/00Devices for assisting manual moving or tilting heavy loads
    • B65G7/02Devices adapted to be interposed between loads and the ground or floor, e.g. crowbars with means for assisting conveyance of loads
    • B65G7/04Rollers
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65DCONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
    • B65D88/00Large containers
    • B65D88/54Large containers characterised by means facilitating filling or emptying
    • B65D88/64Large containers characterised by means facilitating filling or emptying preventing bridge formation
    • B65D88/68Large containers characterised by means facilitating filling or emptying preventing bridge formation using rotating devices

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Basic Packing Technique (AREA)

Abstract

The invention discloses a material transfer device used in a capsule preparation process, which comprises a frame main body, a containing barrel, a placing box, a first sealing plate, a second sealing plate and a sealing plate positioning mechanism.

Description

A material transfer device for capsule preparation in-process is used
Technical Field
The invention relates to the technical field of capsule production equipment, in particular to a material transfer device used in a capsule preparation process.
Background
Capsules (capsules) are solid preparations prepared by filling a medicament into hollow hard capsules or sealing the medicament into elastic soft capsules, wherein the materials for forming the hollow hard capsule shells or the elastic soft capsule shells are gelatin, glycerol, water and other medicinal materials, but the proportions of the components are different, the preparation methods are different, and the capsules are generally divided into hard capsules and soft capsules; the hard capsule is also called as a hollow capsule and consists of two parts, namely a cap body; the soft capsule is prepared by processing a film-forming material and contents into a product at the same time; for hard capsules, one is a gelatin capsule according to the raw material classification: gelatin capsules are the two-part capsules most popular in the world; the capsule is composed of two sections of precisely processed capsule shells, and the size of the capsule is various, including capsules of 000# and 00# and the like. The capsule can be colored and printed to present a unique customized appearance, and the other is a plant capsule which is a hollow capsule made of plant cellulose or water-soluble polysaccharide serving as a raw material so as to meet the requirements of all-natural positioning and capsule preparation solutions; it retains the advantages of all standard empty capsules: convenient taking, effectively covering taste and smell, transparent and visible contents and the like, and simultaneously has the connotation which the traditional gelatin capsule does not have.
In the hard capsule manufacturing process, powder raw materials for manufacturing capsules need to be conveyed from a storage tank to stirring processing equipment for stirring processing, in the process, a discharge port at the bottom end of the storage tank is opened, materials flow into a trolley of a transport vehicle, when the materials are stacked in a vehicle, workers can level the materials by hands, and in the material conveying process, the materials are always exposed in the air, so that impurities in the air are difficult to adhere to the materials, the production quality of the capsules is inevitably influenced, and the economic benefit of the production work is reduced.
Disclosure of Invention
The present invention is directed to a material transfer device for use in capsule manufacturing process to solve the above problems of the background art.
In order to achieve the purpose, the invention provides the following technical scheme: a material transfer device used in a capsule preparation process comprises a frame main body, a containing cylinder, a placing box, a first sealing plate, a second sealing plate and a sealing plate positioning mechanism;
the frame main body is welded with a containing cylinder, a containing box is arranged on the side of the containing cylinder, the containing box is provided with a first sliding groove, a connecting rod is arranged in the first sliding groove in a sliding mode, one end of the connecting rod is provided with a handle, the other end of the connecting rod is arranged on a first sealing plate, and a sliding clamping block is arranged on the connecting rod;
a feeding circular hole penetrates through the first sealing plate, a second sliding groove is formed in the side position of the feeding circular hole in the first sealing plate, a second sealing plate is arranged in the second sliding groove in a sliding connection mode, an L-shaped connecting rod is arranged on the side of the second sealing plate, a handle and a sliding clamping block are also arranged on the L-shaped connecting rod, and a connecting block is arranged on the bottom end face of the second sealing plate;
the other end of the connecting block is arranged on the movable square body, the movable square body is movably arranged in the placing box, a cone is integrally formed on the movable square body, a rotating shaft is arranged in the movable square body, a first gear is sleeved on the rotating shaft, a rotating disc is arranged at the other end of the rotating shaft, and a stirring plate is welded on the outer side wall of the rotating disc at equal intervals;
the first gear is meshed and connected with a first rack, the first rack is arranged on one side of the movable plate, a second rack is arranged on the other side of the movable plate, a second gear is meshed and connected with a second gear, the second gear is arranged at one end of the crank, the crank is arranged in the placing box in a penetrating mode and movably arranged in a movable groove, the movable groove is arranged on one side of the placing box, and limiting clamping blocks are integrally formed on two sides of the second rack;
the sealing plate positioning mechanism is arranged on the placing box.
Preferably, the sealing plate positioning mechanism comprises a fixed block, a knob, a third gear, a rotating round block, a third rack, an extrusion chute, a movable extrusion block, a first T-shaped movable fixture block, an arc extrusion groove, an arc buffer groove, a second T-shaped movable fixture block, a fixed square groove, a slot and a square through groove, the fixed block is arranged on the placing box, the fixed block is internally provided with the slot, the fixed block is inserted and connected with an insertion shaft, one end of the insertion shaft is provided with the knob, is sleeved with the third gear, the other end of the insertion shaft is provided with the rotating round block, the third gear is meshed and connected with the third rack, one side of the third rack is provided with the extrusion chute, one end of the third rack is connected with a first reset spring, one side of the third rack is movably provided with the movable extrusion block, two sides of the movable extrusion block are symmetrically provided with convex blocks, and the convex blocks are connected, and the activity of the one end of activity extrusion piece sets up in the extrusion chute, the activity of the other end of activity extrusion piece is provided with the movable fixture block of first T type, symmetrical connection is provided with third reset spring on the movable fixture block of first T type to the one end of the movable fixture block of first T type is provided with the slope, be provided with arc extrusion groove on the rotation boss, the avris in arc extrusion groove is provided with the arc dashpot, the avris activity of rotating the boss is provided with the movable fixture block of second T type, is provided with fourth reset spring on the movable fixture block of second T type to the one end activity of the movable fixture block of second T type sets up in arc extrusion groove, one side of the movable fixture block of second T type is provided with fixed square groove, the slot sets up in the slip fixture block to the slip fixture block is provided with square through groove at the avris of slot.
Preferably, the one end of second shrouding is provided with first semicircle, and the radius of first semicircle equals with the radius of feeding round hole, and the one end of first shrouding is provided with the second semicircle, and the radius of second semicircle equals with the radius that holds a section of thick bamboo.
Preferably, the square through grooves and the fixed square grooves are arranged at corresponding positions and have the same number of groups, and the cross sections of the notches of the square through grooves are the same as that of the notches of the fixed square grooves, namely the cross sections of the square through grooves and the notches of the fixed square grooves are equal in length and width.
Preferably, the tooth form angle coefficient and the modulus of the third rack and the third gear are the same.
Compared with the prior art, the invention has the beneficial effects that:
1. according to the capsule filling machine, due to the arrangement of the first sealing plate and the feeding circular hole, when materials are conveyed into the containing cylinder, the contact between the materials and air is avoided, and further, the pollution of impurities and dust in the air to the materials is avoided;
2. through the activity square body that sets up, the cone with homogenize the board, when carrying out material transfer and load the work, to preventing that the material from piling up the phenomenon, only need through the crank that sets up, drive first rack, the transmission effect of second rack and second gear, can realize, need not the bare-handed material that homogenizes of staff at this in-process, avoid the direct contact of staff's hand and material, further avoid the staff to cause the pollution to the material when transporting material work.
Drawings
FIG. 1 is a left side schematic view of a connection structure according to the present invention;
FIG. 2 is a right side schematic view of a connection structure according to the present invention;
FIG. 3 is a top view of the connecting structure inside the storage box of the present invention;
FIG. 4 is a partial cross-sectional view of the connection structure of the first sealing plate, the second sealing plate and the movable cube of the present invention;
FIG. 5 is an enlarged view of a portion of the connection structure of FIG. 4 according to the present invention;
FIG. 6 is a bottom view of the connecting structure inside the storage box of the present invention;
fig. 7 is a partial sectional view of the connection structure of the sealing plate positioning mechanism of the present invention.
In the figure: frame main part 1, hold a section of thick bamboo 2, place case 3, handle 4, slip fixture block 5, first shrouding 6, feeding round hole 7, second shrouding 8, connecting block 9, activity square 10, cone 11, first gear 12, carousel 13, stir board 14 evenly, first rack 15, fly leaf 16, second rack 17, second gear 18, crank 19, spacing fixture block 20, shrouding positioning mechanism 21, fixed block 2101, knob 2102, third gear 2103, rotation circle piece 2104, third rack 2105, extrusion chute 2106, activity extrusion piece 2107, first T type activity fixture block 2108, arc extrusion groove 2109, arc buffer slot 2110, second T type activity fixture block 1, fixed square slot 2112, slot 2113, square through groove 2114.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below. The embodiments of the present invention, and all other embodiments obtained by a person of ordinary skill in the art without any inventive work, belong to the scope of protection of the present invention.
Referring to fig. 1 to 7, the present invention provides a technical solution: the invention relates to a material transfer device used in a capsule preparation process, which comprises a frame main body (1), a containing cylinder (2), a placing box (3), a first sealing plate (6), a second sealing plate (8) and a sealing plate positioning mechanism (21);
a containing cylinder (2) is welded on the frame main body (1), a placing box (3) is arranged at the side of the containing cylinder (2), the placing box (3) is provided with a first sliding groove, a connecting rod is arranged in the first sliding groove in a sliding manner, one end of the connecting rod is provided with a handle (4), the other end of the connecting rod is arranged on a first sealing plate (6), and a sliding clamping block (5) is arranged on the connecting rod;
a feeding round hole (7) is arranged on the first sealing plate (6) in a penetrating mode, a second sliding groove is formed in the side position of the feeding round hole (7) on the first sealing plate (6), a second sealing plate (8) is arranged in the second sliding groove in a sliding connection mode, an L-shaped connecting rod is arranged on the side of the second sealing plate (8), a handle (4) and a sliding clamping block (5) are also arranged on the L-shaped connecting rod, and a connecting block (9) is arranged on the bottom end face of the second sealing plate (8);
the other end of the connecting block (9) is arranged on a movable square body (10), the movable square body (10) is movably arranged in the placing box (3), a cone (11) is integrally formed on the movable square body (10), a rotating shaft is arranged in the movable square body (10), a first gear (12) is sleeved on the rotating shaft, a rotating disc (13) is arranged at the other end of the rotating shaft, and stirring plates (14) are welded on the outer side wall of the rotating disc (13) at equal intervals;
a first rack (15) is arranged on the first gear (12) in a meshed connection mode, the first rack (15) is arranged on one side of the movable plate (16), a second rack (17) is arranged on the other side of the movable plate (16), a second gear (18) is arranged on the second rack (17) in a meshed connection mode, the second gear (18) is arranged at one end of the crank (19), the crank (19) penetrates through the placing box (3), the crank (19) is movably arranged in the movable groove, the movable groove is arranged on one side of the placing box (3), and limiting clamping blocks (20) are integrally formed on two sides of the second rack (17);
the closing plate positioning mechanism (21) is arranged on the placing box (3).
Furtherly, the one end of second shrouding (8) is provided with first semicircle, and the radius of first semicircle and the radius of feeding round hole (7) equal, and the one end of first shrouding (6) is provided with the second semicircle, and the radius of second semicircle equals with the radius that holds a section of thick bamboo (2).
Furthermore, the square through grooves (2114) and the fixed square grooves (2112) are arranged at corresponding positions and are arranged in the same number, and the cross-sectional shapes of the notches of the square through grooves (2114) are the same as that of the fixed square grooves (2112), namely the cross-sections of the square through grooves and the fixed square grooves are equal in length and width.
Furthermore, the sealing plate positioning mechanism (21) comprises a fixing block (2101), a knob (2102), a third gear (2103), a rotating round block (2104), a third rack (2105), an extrusion chute (2106), a movable extrusion block (2107), a first T-shaped movable fixture block (2108), an arc extrusion groove (2109), an arc buffer groove (2110), a second T-shaped movable fixture block (2111), a fixed square groove (2112), a slot (2113) and a square through groove (2114), the fixing block (2101) is arranged on the placing box (3), a clamping groove is arranged in the fixing block (2101), an inserting shaft is inserted in the fixing block (2101), one end of the inserting shaft is provided with the knob (2102), the third gear (2103) is sleeved and arranged, the other end of the inserting shaft is provided with the rotating round block (2104), the third gear (2103) is engaged and connected with the third rack (2105), one side of the third rack (2105) is provided with the extrusion chute (2106), one end of a third rack (2105) is connected with a first return spring, one side of the third rack (2105) is movably provided with a movable extrusion block (2107), two sides of the movable extrusion block (2107) are symmetrically provided with a bump, the bump is connected with a second return spring, one end of the movable extrusion block (2107) is movably arranged in an extrusion chute (2106), the other end of the movable extrusion block (2107) is movably provided with a first T-shaped movable fixture block (2108), the first T-shaped movable fixture block (2108) is symmetrically connected with a third return spring, one end of the first T-shaped movable fixture block (2108) is provided with a slope, the rotating circular block (2104) is provided with an arc extrusion groove (2109), the side of the arc extrusion groove (2109) is provided with an arc buffer groove (2110), the side of the rotating circular block (2104) is movably provided with a second T-shaped movable fixture block (2111), and the second T-shaped movable fixture block (2111) is provided with a fourth return spring, and one end of the second T-shaped movable fixture block (2111) is movably arranged in the arc-shaped extrusion groove (2109), one side of the second T-shaped movable fixture block (2111) is provided with a fixed square groove (2112), the slot (2113) is arranged in the sliding fixture block (5), and the side of the sliding fixture block (5) at the slot (2113) is provided with a square through groove (2114).
Furthermore, the tooth form angle coefficient and the modulus of the third rack (2105) and the third gear (2103) are the same.
The working principle is as follows: when the invention is used for transferring capsule production materials, the materials in the storage tank are moved into the containing cylinder 2, the first sealing plate 6 is pushed by the handle 4, when the port of the containing cylinder 2 is sealed by the first sealing plate 6, the position is fixed by the arranged sealing plate positioning mechanism 21, in the process, when the sliding fixture block 5 reaches the clamping groove position in the fixing block 2101, the knob 2102 is rotated, the knob 2102 drives the third gear 2103 and the rotating round block 2104 to rotate, the third gear 2103 drives the third rack 2105 to transmit, so that the extrusion block 2106 arranged on the third rack 2105 extrudes the movable extrusion block chute 2107, the movable extrusion block 2107 extrudes the first T-shaped movable fixture block 2108, meanwhile, the arc-shaped extrusion groove 2109 on the round block 2104 is rotated to extrude the second T-shaped movable fixture block 2111, and the second T-shaped movable fixture block 2111 is inserted in the slot 2113, the fixed square groove 2112 on the second T-shaped movable fixture block 2111 is aligned with the square through groove 2114, then the first T-shaped movable fixture block 2108 passes through the square through groove 2114 to be clamped in the fixed square groove 2112, so as to realize the position fixation of the first sealing plate 6, then the material can be conveyed by aligning the discharge port on the material storage tank with the feeding round hole 7 on the first sealing plate 6, when the materials are accumulated in the containing barrel 2, the crank 19 drives the second gear 18, the second gear 17, the transmission action of the first rack 15 and the first gear 12 through forward and backward rotation of the crank 19, then the rotating disc 13 and the stirring plate 14 are driven to rotate, further the accumulated materials are stirred uniformly, in the process, the hands are prevented from stirring uniformly, further the materials are prevented from being in direct contact with air, when in the transfer work, the handle 4 on the other side is pushed to push the second sealing plate 8 to the feeding round hole 7 on the first sealing plate 6, and then the feeding round hole 7 is shielded, then the position of the first sealing plate 6 is fixed through the sealing plate positioning mechanism 21, and further when the material is transported, the material is prevented from being exposed in the air, so that the material is prevented from being polluted, when the material is transported to a working site, the knob 2102 is rotated reversely, so that the positioning function of the sealing plate positioning mechanism 21 can be relieved, and the position fixing of the first sealing plate 6 and the second sealing plate 8 is relieved, therefore, according to the invention, on one hand, the material is mainly prevented from contacting with the air when the material is transported into the containing cylinder 2 through the arranged first sealing plate 6 and the feeding round hole 7, and further the material is prevented from being polluted by impurities and dust in the air, after the material in the containing cylinder 2 is filled, when the material in the containing cylinder 2 needs to be transported, the feeding round hole 7 on the first sealing plate 6 is blocked through the arranged second sealing plate 8, further, the materials can not contact with impurities and dust in the air in the transferring and conveying process, so that the quality damage of the materials can not be caused during the transferring work, the production quality of the capsules can be further ensured, and the production economic benefit can be ensured; on the other hand, through the activity square body 10 that sets up, cone 11 and the board 14 that homogenizes, when carrying out material transfer and packing work, to preventing that the material from piling up the phenomenon, only need through the crank 19 that sets up, drive first rack 15, the transmission of second rack 17 and second gear 18, can realize, it goes to homogenize the material to need not the staff bare-handed at this in-process, avoid the direct contact of staff's hand and material, further avoid the staff to cause the pollution to the material when transporting material work, further avoid the staff to cause the material to pollute
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.

Claims (5)

1. A material transfer device for capsule preparation in-process use which characterized in that: comprises a frame main body (1), a containing cylinder (2), a placing box (3), a first sealing plate (6), a second sealing plate (8) and a sealing plate positioning mechanism (21);
the frame main body (1) is welded with a containing cylinder (2), a placing box (3) is arranged on the side of the containing cylinder (2), the placing box (3) is provided with a first sliding groove, a connecting rod is arranged in the first sliding groove in a sliding manner, one end of the connecting rod is provided with a handle (4), the other end of the connecting rod is arranged on a first sealing plate (6), and a sliding clamping block (5) is arranged on the connecting rod;
a feeding circular hole (7) is arranged on the first sealing plate (6) in a penetrating mode, a second sliding groove is formed in the side position of the feeding circular hole (7) on the first sealing plate (6), a second sealing plate (8) is arranged in the second sliding groove in a sliding connection mode, an L-shaped connecting rod is arranged on the side of the second sealing plate (8), a handle (4) and a sliding clamping block (5) are also arranged on the L-shaped connecting rod, and a connecting block (9) is arranged on the bottom end face of the second sealing plate (8);
the other end of the connecting block (9) is arranged on a movable square body (10), the movable square body (10) is movably arranged in the placing box (3), a cone (11) is integrally formed on the movable square body (10), a rotating shaft is arranged in the movable square body (10), a first gear (12) is sleeved on the rotating shaft, a rotating disc (13) is arranged at the other end of the rotating shaft, and stirring plates (14) are welded on the outer side wall of the rotating disc (13) at equal intervals;
the first gear (12) is meshed and connected with a first rack (15), the first rack (15) is arranged on one side of the movable plate (16), a second rack (17) is arranged on the other side of the movable plate (16), the second rack (17) is meshed and connected with a second gear (18), the second gear (18) is arranged at one end of the crank (19), the crank (19) penetrates through the placing box (3), the crank (19) is movably arranged in the movable groove, the movable groove is arranged on one side of the placing box (3), and limiting clamping blocks (20) are integrally formed on two sides of the second rack (17);
the sealing plate positioning mechanism (21) is arranged on the placing box (3).
2. A material transfer device for use in a capsule preparation process, according to claim 1, wherein: the sealing plate positioning mechanism (21) comprises a fixing block (2101), a knob (2102), a third gear (2103), a rotating round block (2104), a third rack (2105), an extrusion chute (2106), a movable extrusion block (2107), a first T-shaped movable fixture block (2108), an arc extrusion groove (2109), an arc buffer groove (2110), a second T-shaped movable fixture block (2111), a fixed square groove (2112), a slot (2113) and a square through groove (2114), the fixing block (2101) is arranged on the placing box (3), a clamping groove is arranged in the fixing block (2101), an inserting shaft is inserted in the fixing block (2101), one end of the inserting shaft is provided with the knob (2102), the third gear (2103) is sleeved and arranged, the other end of the inserting shaft is provided with the rotating round block (2104), the third gear (2103) is engaged and connected with the third rack (2105), one side of the third rack (2105) is provided with the extrusion chute (2106), and one end of the third rack (2105) is connected with a first return spring, one side of the third rack (2105) is movably provided with a movable extrusion block (2107), two sides of the movable extrusion block (2107) are symmetrically provided with bumps, the bumps are connected with a second return spring, one end of the movable extrusion block (2107) is movably arranged in the extrusion chute (2106), the other end of the movable extrusion block (2107) is movably provided with a first T-shaped movable fixture block (2108), the first T-shaped movable fixture block (2108) is symmetrically connected with a third return spring, one end of the first T-shaped movable fixture block (2108) is provided with a slope, the rotating circular block (2104) is provided with an arc extrusion groove (2109), the side of the arc extrusion groove (2109) is provided with an arc buffer groove (2110), the side of the rotating circular block (2104) is movably provided with a second T-shaped movable fixture block (2111), a fourth return spring is arranged on the second T-shaped movable fixture block (2111), one end of the second T-shaped movable fixture block (2111) is movably arranged in the arc-shaped extrusion groove (2109), one side of the second T-shaped movable fixture block (2111) is provided with a fixed square groove (2112), the slot (2113) is arranged in the sliding fixture block (5), and the side of the sliding fixture block (5) in the slot (2113) is provided with a square through groove (2114).
3. A material transfer device for use in a capsule preparation process, according to claim 1, wherein: the one end of second shrouding (8) is provided with first semicircle, and the radius of first semicircle equals with the radius of feeding round hole (7), and the one end of first shrouding (6) is provided with the second semicircle, and the radius of second semicircle equals with the radius that holds a section of thick bamboo (2).
4. A material transfer device for use in a capsule preparation process according to claim 2, wherein: the square through grooves (2114) and the fixed square grooves (2112) are arranged at corresponding positions and are arranged in the same number, and the cross sections of the notches of the square through grooves (2114) are the same as that of the fixed square grooves (2112), namely the cross sections of the square through grooves and the fixed square grooves are equal in length and width.
5. A material transfer device for use in a capsule preparation process according to claim 2, wherein: the tooth form angle coefficient and the modulus of the third rack (2105) and the third gear (2103) are the same.
CN202010911594.7A 2020-09-02 2020-09-02 A material transfer device for capsule preparation in-process is used Active CN112046995B (en)

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Cited By (2)

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CN112775829A (en) * 2021-01-05 2021-05-11 泰州市第一铝材厂有限公司 Polishing device for aluminum product type wrap angle for special assembly line
CN112918990A (en) * 2021-01-26 2021-06-08 杨慧 Roller transport table convenient to tealeaves transportation

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