CN216347742U - Roasting device for production of activated powder - Google Patents

Roasting device for production of activated powder Download PDF

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Publication number
CN216347742U
CN216347742U CN202122877307.8U CN202122877307U CN216347742U CN 216347742 U CN216347742 U CN 216347742U CN 202122877307 U CN202122877307 U CN 202122877307U CN 216347742 U CN216347742 U CN 216347742U
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furnace
roasting
cover plate
cover plates
upper cover
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CN202122877307.8U
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Chinese (zh)
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洪晓婷
黄久花
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Wuxi Sanxiao New Material Co ltd
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Wuxi Sanxiao New Material Co ltd
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Abstract

The utility model relates to a roasting device for producing activated powder, which structurally comprises a roasting furnace and a cooling furnace which are communicated with each other, wherein a plurality of feeding rollers which are parallel to each other and are adjacently arranged are arranged along the insides of the roasting furnace and the cooling furnace, and the feeding rollers are used for conveying a material tray from an inlet of the roasting furnace to an outlet of the cooling furnace. The utility model has the advantages that: structural design is reasonable, and the calcination is carried out in the automatic conveyor of during operation charging tray advances roasting device and cooling, stops the calcination in 8 sections of roasting furnace units in proper order, then in 6 sections cooling furnace unit internal cooling, whether normal pay-off can conveniently be observed to convex feed roll, and the apron that detachable corresponds every unit can in time dismantle corresponding position when breaking down, in time overhauls. Can effectively ensure the production effect, improve the continuity and can not meet the production requirement.

Description

Roasting device for production of activated powder
Technical Field
The utility model relates to a roasting device for producing activated powder.
Background
The activated powder, i.e. zeolite activated powder, is a white powder with high fluidity and high adsorptivity. It can not only adsorb water, but also adsorb substances with molecular diameter smaller than the self-aperture; has the functions of reducing water content, eliminating bubbles and improving the uniformity and strength of the material. Water adsorption serves as the main function of the zeolite activated powder, and can adsorb 20% of its own weight of water even in the case of low moisture. The adsorption of the zeolite activated powder is a physical process without any side effects. Is widely applied to the production of polyurethane series products, epoxy zinc-rich paint, hollow glass adhesive tapes, cosmetics and the like.
In the prior art activation powder production line, the roasting device has the unreasonable condition of design, when breaking down, material transportation is not smooth, can't in time discover, because structural defect leads to comparatively loaded down with trivial details during the maintenance, and production effect is not good, the continuity is not enough, can't satisfy the production needs.
SUMMERY OF THE UTILITY MODEL
The utility model provides a roasting device for producing activated powder, aiming at overcoming the defects in the prior art and facilitating the discovery of production problems and the maintenance.
The technical solution of the utility model is as follows: roasting device for producing activated powder structurally comprises a roasting furnace and a cooling furnace which are communicated with each other, wherein a plurality of feeding rollers which are parallel to each other and are adjacently arranged are arranged inside the roasting furnace and the cooling furnace, and the feeding rollers are used for conveying material trays from an inlet of the roasting furnace to an outlet of the cooling furnace.
Preferably, the roasting furnace comprises a first frame, a plurality of first upper cover plates and first lower cover plates which correspond up and down are detachably arranged on the first frame, a roasting furnace unit is arranged on the inner side of each first upper cover plate, a feeding side cover plate is arranged on the side face of the outer side end of the first frame, a feeding hole matched with the feeding plate in size is formed in the feeding side cover plate, feeding rollers are uniformly distributed along gaps between all the first upper cover plates and the first lower cover plates, and two ends of each feeding roller protrude out of the outer side faces of the first upper cover plates and the first lower cover plates.
Preferably, the cooling furnace comprises a second frame, a plurality of second upper cover plates and second lower cover plates which correspond up and down are detachably arranged on the second frame, a cooling furnace unit is arranged on the inner side of each second upper cover plate, a discharging side cover plate is arranged on the side face of the outer side end of the second frame, a discharging port matched with a material tray in size is arranged on the discharging side cover plate, feeding rollers are uniformly distributed in gaps between all the second upper cover plates and the second lower cover plates, and two ends of each feeding roller protrude out of the outer side faces of the second upper cover plates and the second lower cover plates.
Preferably, the first upper cover plate and the first lower cover plate are 8 roasting furnace units in total, and the second upper cover plate and the second lower cover plate are 6 cooling furnace units in total.
The utility model has the advantages that: structural design is reasonable, and the calcination is carried out in the automatic conveyor of during operation charging tray advances roasting device and cooling, stops the calcination in 8 sections of roasting furnace units in proper order, then in 6 sections cooling furnace unit internal cooling, whether normal pay-off can conveniently be observed to convex feed roll, and the apron that detachable corresponds every unit can in time dismantle corresponding position when breaking down, in time overhauls. Can effectively ensure the production effect, improve the continuity and can not meet the production requirement.
Drawings
FIG. 1 is a schematic view of the structure of a calcining apparatus for producing activated powder according to the present invention.
In the figure, numeral 1 denotes a feed roller, 11 denotes a tray, 21 denotes a baking furnace, 211 denotes a first frame, 212 denotes a first upper cover, 213 denotes a first lower cover, 214 denotes a feed-side cover, 215 denotes a feed inlet, 22 denotes a cooling furnace, 221 denotes a second frame, 222 denotes a second upper cover, 223 denotes a second lower cover, 224 denotes a discharge-side cover, and 225 denotes a discharge outlet.
Detailed Description
The present invention will be described in further detail with reference to examples and specific embodiments.
As shown in fig. 1, the roasting apparatus for producing activated powder includes a roasting furnace 21 and a cooling furnace 22 which are communicated with each other, a plurality of feed rollers 1 which are parallel to each other and are adjacently arranged are arranged along the insides of the roasting furnace 21 and the cooling furnace 22, and a tray 11 is conveyed from an inlet of the roasting furnace 21 to an outlet of the cooling furnace 22 on the feed rollers 1.
The roasting furnace 21 comprises a first frame 211, a plurality of first upper cover plates 212 and first lower cover plates 213 which correspond up and down are detachably arranged on the first frame 211, a roasting furnace unit is arranged on the inner side of each first upper cover plate 212, a feeding side cover plate 214 is arranged on the side surface of the outer side end of the first frame 211, a feeding port 215 which is matched with the charging tray 11 in size is arranged on the feeding side cover plate 214, feeding rollers 1 are uniformly distributed along gaps between all the first upper cover plates 212 and the first lower cover plates 213, and two ends of each feeding roller 1 protrude out of the outer side surfaces of the first upper cover plates 212 and the first lower cover plates 213.
The cooling furnace 22 comprises a second frame 221, a plurality of second upper cover plates 222 and second lower cover plates 223 which correspond up and down are detachably arranged on the second frame 221, a cooling furnace unit is arranged on the inner side of each second upper cover plate 222, a discharge side cover plate 224 is arranged on the side face of the outer side end of the second frame 221, a discharge hole 225 which is matched with the material tray 11 in size is arranged on the discharge side cover plate 224, feeding rollers 1 are uniformly distributed along gaps between all the second upper cover plates 222 and the second lower cover plates 223, and two ends of each feeding roller 1 protrude out of the outer side faces of the second upper cover plates 222 and the second lower cover plates 223.
The first upper cover plate 212 and the first lower cover plate 213 are 8 roasting furnace units in total, and the second upper cover plate 222 and the second lower cover plate 223 are 6 cooling furnace units in total.
The feed roller 1 is driven by a driving wheel (not shown) inside the lower first lower cover plate 213 or the second lower cover plate 223, and all the driving wheels are driven by a driving motor (not shown) through a driving chain (not shown) to rotate.
According to above structure, during operation, charging tray 11 is automatic to be carried into roasting device and is roasted and cooled, stops the calcination in 8 sections of roasting furnace units in proper order, then cools off in 6 sections of cooling furnace units, accomplishes the calcination process, whether normal pay-off can conveniently be observed to protruding feed roll 61, the corresponding position can in time be dismantled when breaking down to detachable first upper cover plate 212, first lower cover plate 213, second upper cover plate 222 and the second lower cover plate 223 that corresponds every unit, in time overhaul.
All the above components are prior art, and those skilled in the art can use any model and existing design that can implement their corresponding functions.
The foregoing is only a preferred embodiment of the present invention, and it should be noted that, for those skilled in the art, various changes and modifications can be made without departing from the inventive concept of the present invention, and these changes and modifications are all within the scope of the present invention.

Claims (4)

1. Roasting device for producing activated powder, which is characterized by comprising a roasting furnace (21) and a cooling furnace (22) which are communicated with each other, wherein a plurality of feeding rollers (1) which are parallel to each other and are adjacently arranged are arranged inside the roasting furnace (21) and the cooling furnace (22), and the feeding rollers (1) are used for conveying a material tray (11) from an inlet of the roasting furnace (21) to an outlet of the cooling furnace (22).
2. The roasting device for producing the activated powder according to claim 1, wherein the roasting furnace (21) comprises a first frame (211), a plurality of first upper cover plates (212) and first lower cover plates (213) which correspond to each other up and down are detachably mounted on the first frame (211), a roasting furnace unit is arranged inside each first upper cover plate (212), a feeding side cover plate (214) is mounted on the side surface of the outer side end of the first frame (211), a feeding hole (215) which is matched with the material tray (11) in size is mounted on the feeding side cover plate (214), feeding rollers (1) are uniformly distributed along gaps between all the first upper cover plates (212) and the first lower cover plates (213), and two ends of each feeding roller (1) protrude out of the outer side surfaces of the first upper cover plates (212) and the first lower cover plates (213).
3. The roasting device for producing the activated powder according to claim 2, wherein the cooling furnace (22) comprises a second frame (221), a plurality of second upper cover plates (222) and second lower cover plates (223) which correspond to each other up and down are detachably mounted on the second frame (221), a cooling furnace unit is arranged on the inner side of each second upper cover plate (222), a discharge side cover plate (224) is mounted on the outer side end side of the second frame (221), a discharge hole (225) which is matched with the charging tray (11) in size is mounted on the discharge side cover plate (224), feed rollers (1) are uniformly distributed along gaps between all the second upper cover plates (222) and the second lower cover plates (223), and the two ends of each feed roller (1) protrude out of the outer side surfaces of the second upper cover plates (222) and the second lower cover plates (223).
4. The roasting apparatus for producing activated powder according to claim 3, wherein the first upper cover plate (212) and the first lower cover plate (213) are 8 pieces and have 8 roasting furnace units in total, and the second upper cover plate (222) and the second lower cover plate (223) are 6 pieces and have 6 cooling furnace units in total.
CN202122877307.8U 2021-11-22 2021-11-22 Roasting device for production of activated powder Active CN216347742U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122877307.8U CN216347742U (en) 2021-11-22 2021-11-22 Roasting device for production of activated powder

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202122877307.8U CN216347742U (en) 2021-11-22 2021-11-22 Roasting device for production of activated powder

Publications (1)

Publication Number Publication Date
CN216347742U true CN216347742U (en) 2022-04-19

Family

ID=81151755

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202122877307.8U Active CN216347742U (en) 2021-11-22 2021-11-22 Roasting device for production of activated powder

Country Status (1)

Country Link
CN (1) CN216347742U (en)

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