CN210425985U - A cooling and drying device for white sugar processing - Google Patents

A cooling and drying device for white sugar processing Download PDF

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Publication number
CN210425985U
CN210425985U CN201920924833.5U CN201920924833U CN210425985U CN 210425985 U CN210425985 U CN 210425985U CN 201920924833 U CN201920924833 U CN 201920924833U CN 210425985 U CN210425985 U CN 210425985U
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granulated sugar
sliding plate
white granulated
box body
roller
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CN201920924833.5U
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刘巧龙
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Abstract

The utility model discloses a cooling and drying device for white granulated sugar processing, its structure includes the chassis, the drying chamber, the feed inlet, the discharge gate, the air-supply line, the wind collecting pipe, the fan, a pedestal, control panel and power cord, the drying chamber has been set up at the inboard top of chassis, white granulated sugar drops in the mechanism is scattered in stirring in the drying chamber behind the feed inlet, first cylinder and second cylinder syntropy rotate and stir the white granulated sugar that bonds, the white granulated sugar after stirring drops in the rack of mechanism falls in the sieve, the rotation through driving gear and drive gear makes first connection and second connecting rod promote the rack, make the slow sieve of white granulated sugar fall on first slide, then the white granulated sugar passes through first slide, follow the discharge gate roll-off behind second slide and the third slide, the inconvenient white granulated sugar that will bond has been solved and has broken up, make the relatively poor problem of white granulated sugar drying efficiency.

Description

A cooling and drying device for white sugar processing
Technical Field
The utility model relates to a white granulated sugar processing technology field, concretely relates to a cooling and drying device for white granulated sugar processing.
Background
White granulated sugar is one of sugar, the granules of the white granulated sugar are crystalline, uniform, pure in color and pure in sweetness, the sweetness of the white granulated sugar is slightly lower than that of brown sugar, the white granulated sugar is commonly used in cooking, and the white granulated sugar has the effects of tonifying middle-jiao and Qi, harmonizing stomach and moistening lung, nourishing yin and arresting sweating; the white granulated sugar is mainly produced by using cane sugar as a raw material, the sugar production process of the cane sugar is more common by a lime method, a sulfurous acid method plus a syrup floating method and a carbonic acid method, and no matter which method is used, the principle of the method is basically that the sugar is cooled and dried by a cooling and drying device to be convenient for storing the sugar through the process steps of juice extraction, cleaning, evaporation, crystallization, honey separation and drying.
SUMMERY OF THE UTILITY MODEL
Technical problem to be solved
In order to overcome the defects of the prior art, the cooling and drying device for processing the white granulated sugar is provided, and the problem that the bonded white granulated sugar is inconvenient to break up and the drying efficiency of the white granulated sugar is poor is solved.
(II) technical scheme
The utility model discloses a following technical scheme realizes: the utility model provides a cooling and drying device for white granulated sugar processing, which comprises an underframe, a drying chamber, a feed inlet, a discharge outlet, an air inlet pipe, an air collecting pipe, a fan, a base, a control panel and a power cord, wherein the top of the inner side of the underframe is locked and fixed with the drying chamber through a bolt, the feed inlet is embedded at the inner side of the top of the drying chamber, the discharge outlet is welded at the inner side of the bottom of the drying chamber, the air inlet pipe is inserted and connected at the top of the front side of the drying chamber in a transition fit mode, the air collecting pipe is welded at the bottom of the air inlet pipe, an air inlet is arranged at the inner side of the bottom of the air collecting pipe, the bottom of the air inlet is locked and fixed with the air outlet of the top of the fan through a bolt, the front side of the bottom of the fan is connected with the base through a bolt, the, the drying chamber is composed of a box body, a cylindrical filter screen, a mounting seat, a motor, a rotating block, a stirring mechanism, a screening mechanism, a first sliding plate, a second sliding plate and a third sliding plate, a feed inlet is embedded in the middle of the top of the box body, the bottom side of the outer portion of the box body is locked and fixed with an underframe through bolts, a discharge outlet is welded in the middle of the bottom of the box body, an air inlet pipe is inserted in the top of the front side of the box body in a transition fit mode, the outer side of the inner portion of the box body is locked and fixed with the cylindrical filter screen for preventing white granulated sugar from blowing out through bolts, the mounting seat penetrates through the right side of the cylindrical filter screen, the right side of the mounting seat and the box body are of an integrated structure, the left side of the mounting seat is locked and fixed with the motor for generating kinetic energy through bolts, and the rotating block is, the utility model discloses a rotating block, including the rotating block, the rotating block outside is connected with stirring the transmission of mechanism that looses, rotating block outside front portion is connected with the transmission of sifting mechanism, first slide right side is run through in the tube-shape filter screen to first slide right side is connected with the box, first slide bottom is provided with the second slide, second slide left side is run through in the tube-shape filter screen to second slide left side is connected with the box, second slide bottom is provided with the third slide, third slide right side is run through in the tube-shape filter screen to third slide right side is connected with the box, motor and second button all are connected with the power cord electricity.
Further, it comprises first drive belt, first cylinder, the cover body, second drive belt and second cylinder to stir scattered mechanism, turning block outside middle part is connected with first cylinder transmission through first drive belt, both sides middle part is connected with the cover body rotation around the first cylinder, cover body top and box looks welding, first drive belt rear side is provided with the second drive belt, first cylinder front middle part is connected with the second cylinder transmission through the second drive belt, both sides middle part is connected with the cover body rotation around the second cylinder.
Furthermore, the screening mechanism consists of a third transmission belt, a driving gear, a first fixed rod, a first connecting rod, a second connecting rod, a transmission gear, a second fixed rod, a net rack, a screen and a support rod, wherein the front part of the outer side of the rotating block is in transmission connection with the middle part of the rear side of the driving gear through the third transmission belt, the middle part of the rear side of the driving gear is in rotation connection with the first fixed rod, the right side of the first fixed rod penetrates through the tubular filter screen, the right end surface of the first fixed rod is welded with the box body, the left side of the front part of the driving gear is in rotation connection with the first connecting rod, the left side of the first connecting rod is in rotation connection with the second connecting rod, the rear part of the right side of the second connecting rod is in rotation connection with the transmission gear, the top of the transmission gear is meshed, and second dead lever right-hand member face welds with the box mutually, the junction of first connecting rod and second connecting rod rotates with the rack and is connected, the screen cloth has been inlayed to the inside bottom side of rack, screen cloth bottom left side and bracing piece sliding connection, the bracing piece left side is run through in the tube-shape filter screen to the bracing piece left end face welds with the box mutually.
Furthermore, an air outlet round hole is formed in the rear side of the box body, and a dust filter screen is installed on the inner side of the air outlet round hole.
Further, the middle sides of the first roller and the second roller are on the same vertical line with the middle side of the bottom of the feed inlet.
Furthermore, the angles formed by the first sliding plate, the second sliding plate and the third sliding plate and the horizontal plane are all 30 degrees, and the surfaces of the first sliding plate, the second sliding plate and the third sliding plate are all smooth.
Furthermore, the driving gear and the transmission gear are equal in shape and size, and the centers of the driving gear and the transmission gear are on the same vertical line.
Further, the motor is a servo motor.
Further, the materials used for the first roller and the second roller are both aluminum alloy.
(III) advantageous effects
Compared with the prior art, the utility model, following beneficial effect has:
1) the drying chamber is arranged at the top of the inner side of the bottom frame, white granulated sugar falls into the stirring mechanism in the drying chamber after passing through the feed inlet, the first roller and the second roller rotate in the same direction to stir the bonded white granulated sugar, the stirred white granulated sugar falls into the net rack of the screening mechanism, the first connection and the second connection rod push the net rack through the rotation of the driving gear and the transmission gear, the white granulated sugar slowly falls on the first sliding plate, then the white granulated sugar slides out from the discharge port after passing through the first sliding plate, the second sliding plate and the third sliding plate, the problem that the bonded white granulated sugar is inconvenient to break up and the drying efficiency of the white granulated sugar is poor is solved.
Drawings
Other features, objects and advantages of the invention will become more apparent upon reading of the detailed description of non-limiting embodiments with reference to the following drawings:
fig. 1 is a schematic structural view of the present invention;
FIG. 2 is a schematic structural view of the interior of the drying chamber of the present invention;
FIG. 3 is a schematic structural view of the dispersing mechanism of the present invention;
FIG. 4 is a schematic structural view of the sifting mechanism of the present invention;
fig. 5 is a schematic structural view of the net rack of the present invention.
In the figure: a chassis-1, a drying chamber-2, a feed inlet-3, a discharge outlet-4, an air inlet pipe-5, an air collecting pipe-6, a fan-7, a base-8, a control panel-9, a power cord-10, a box body-21, a cylindrical filter screen-22, a mounting seat-23, a motor-24, a rotating block-25, a stirring mechanism-26, a screening mechanism-27, a first sliding plate-28, a second sliding plate-29, a third sliding plate-30, a first button-91, a second button-92, a first transmission belt-261, a first roller-262, a cover body-263, a second transmission belt-264, a second roller-265, a third transmission belt-271, a driving gear-272, a first fixed rod-273, a first connecting rod-274, a second transmission belt-274, a third transmission belt-271, a driving gear-, A second connecting rod-275, a transmission gear-276, a second fixed rod-277, a net rack-278, a screen-279 and a support rod-280.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention more clearly understood, the present invention is further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the invention and are not intended to limit the invention.
Referring to fig. 1, fig. 2, fig. 3, fig. 4 and fig. 5, the present invention provides a cooling and drying device for processing white granulated sugar: comprises an underframe 1, a drying chamber 2, a feed inlet 3, a discharge port 4, an air inlet pipe 5, an air collecting pipe 6, a fan 7, a base 8, a control panel 9 and a power cord 10, the top of the inner side of the underframe 1 is locked and fixed with the drying chamber 2 through bolts, the feed inlet 3 is embedded at the middle side of the top of the drying chamber 2, the discharge port 4 is welded at the middle side of the bottom of the drying chamber 2, the air inlet pipe 5 is inserted and connected at the top of the front side of the drying chamber 2 in a transition fit mode, the air collecting pipe 6 is welded at the bottom of the air inlet pipe 5, an air inlet is arranged at the middle side of the bottom of the air collecting pipe 6, the bottom of the air inlet is locked and fixed with the air outlet of the top of the fan 7 through bolts, the front side of the bottom of the fan 7 is connected with the base 8 through bolts, the bottom of the, The first button 91 and the second button 92 are electrically connected with a power line 10, the drying chamber 2 is composed of a box body 21, a cylindrical filter screen 22, a mounting seat 23, a motor 24, a rotating block 25, a stirring mechanism 26, a screening mechanism 27, a first sliding plate 28, a second sliding plate 29 and a third sliding plate 30, a feed inlet 3 is embedded in the inner side of the top of the box body 21, the bottom side of the outer portion of the box body 21 is locked and fixed with the bottom frame 1 through bolts, a discharge outlet 4 is welded in the middle side of the bottom of the box body 21, an air inlet pipe 5 is inserted in the top of the front side of the box body 21 in a transition fit mode, the outer side of the inner portion of the box body 21 is locked and fixed with the cylindrical filter screen 22 for preventing white granulated sugar from blowing out through bolts, the mounting seat 23 penetrates through the right side of the cylindrical filter screen 22, the right side of the mounting seat 23 and the box body 21 are in an integrated, the middle part of the outer side of the rotating block 25 is in transmission connection with the stirring mechanism 26, the front part of the outer side of the rotating block 25 is in transmission connection with the screening mechanism 27, the right side of the first sliding plate 28 penetrates through the cylindrical filter screen 22, the right side of the first sliding plate 28 is connected with the box body 21, the bottom of the first sliding plate 28 is provided with a second sliding plate 29, the left side of the second sliding plate 29 penetrates through the cylindrical filter screen 22, the left side of the second sliding plate 29 is connected with the box body 21, the bottom of the second sliding plate 29 is provided with a third sliding plate 30, the right side of the third sliding plate 30 penetrates through the cylindrical filter screen 22, the right side of the third sliding plate 30 is connected with the box body 21, and.
The stirring mechanism 26 is composed of a first transmission belt 261, a first roller 262, a cover body 263, a second transmission belt 264 and a second roller 265, the middle part of the outer side of the rotating block 25 is in transmission connection with the first roller 262 through the first transmission belt 261, the middle parts of the front side and the rear side of the first roller 262 are in transmission connection with the cover body 263, the top of the cover body 263 is welded with the box body 21, the second transmission belt 264 is arranged on the rear side of the first transmission belt 261, the middle side of the front part of the first roller 262 is in transmission connection with the second roller 265 through the second transmission belt 264, and the middle parts of the front side and the rear side of the second roller 265 are in transmission connection with the cover body 263.
Wherein, the sifting mechanism 27 is composed of a third transmission belt 271, a driving gear 272, a first fixed rod 273, a first connecting rod 274, a second connecting rod 275, a transmission gear 276, a second fixed rod 277, a net rack 278, a screen 279 and a support rod 280, the front part of the outer side of the rotating block 25 is in transmission connection with the middle part of the rear side of the driving gear 272 through the third transmission belt 271, the middle part of the rear side of the driving gear 272 is in rotational connection with the first fixed rod 273, the right side of the first fixed rod 273 penetrates through the cylindrical filter screen 22, the right end surface of the first fixed rod 273 is welded with the box 21, the left side of the front part of the driving gear 272 is in rotational connection with the first connecting rod 274, the left side of the first connecting rod 274 is in rotational connection with the second connecting rod 275, the right rear part of the second connecting rod 275 is in rotational connection with the transmission gear 276, the top of, the right side of the second fixed rod 277 penetrates through the cylindrical sieve 22, the right end surface of the second fixed rod 277 is welded with the box 21, the joint of the first connecting rod 274 and the second connecting rod 275 is rotatably connected with the net rack 278, the bottom side of the inside of the net rack 278 is embedded with the screen 279, the left side of the bottom of the screen 279 is slidably connected with the support rod 280, the left side of the support rod 280 penetrates through the cylindrical sieve 22, and the left end surface of the support rod 280 is welded with the box 21.
Wherein, the box 21 rear side is provided with the round hole of giving vent to anger to the round hole inboard of giving vent to anger is installed the dust filter screen, and the gas in the box 21 of being convenient for circulates.
Wherein, the middle sides of the first roller 262 and the second roller 265 are on the same vertical line with the middle side of the bottom of the feed inlet 3, which is convenient for dispersing white granulated sugar.
The angles formed by the first sliding plate 28, the second sliding plate 29 and the third sliding plate 30 and the horizontal plane are all 30 degrees, and the surfaces are smooth, so that the white granulated sugar can slowly slide off, and the cooling and drying efficiency is better.
The driving gear 272 and the transmission gear 276 have the same shape and size, and the centers of the driving gear 272 and the transmission gear 276 are on the same vertical line, which is beneficial to the first connecting rod 274 and the second connecting rod 275 to drive the rack 278 to move.
The motor 24 is a servo motor.
Wherein, the materials used for the first roller 262 and the second roller 265 are aluminum alloy.
Figure BDA0002100025950000071
According to the table above show, first cylinder 262 and second cylinder 265 aluminum alloy make, when guaranteeing corrosion-resistant, its quality is lighter.
The first roller 262 and the second roller 265 are made of aluminum alloy, the aluminum alloy has low density, but higher strength, which is close to or exceeds that of high-quality steel, and good plasticity, and can be processed into various sections, which has excellent electrical conductivity, thermal conductivity and corrosion resistance, and is widely used in industry, the usage amount is second to that of steel, and some aluminum alloys can obtain good mechanical property, physical property and corrosion resistance by heat treatment.
The working principle is as follows: firstly, a user places the design at a position where white granulated sugar needs to be cooled and dried, then connects a power line 10 with an external power supply, presses a first button 91 to electrify a fan 7, sucks external air flow after the fan 7 is electrified, discharges the air flow into a box body 21 through an air collecting pipe 6 and an air inlet pipe 5, and cools and dries the white granulated sugar in the box body 21; then the user presses the second button 92 to electrify the motor 24, and the user pours the white granulated sugar into the cover body 263 through the feeding hole 3; after the motor 24 is powered on, the rotating block 25 is driven to rotate, so that the rotating block 25 drives the first driving belt 261 and the third driving belt 271 to rotate, the first driving belt 261 drives the first roller 262 to rotate, so that the first roller 262 drives the second roller 265 to rotate through the second driving belt 264, and the bonded white granulated sugar is stirred up under the rotation of the first roller 262 and the second roller 265; the motor 24 drives the driving gear 272 to rotate through the third driving belt 271, the driving gear 272 drives the first connecting rod 274 and the second connecting rod 275 to drive the net rack 278 to slide on the supporting rod 280 through the cooperation with the transmission gear 276, when the scattered white granulated sugar falls into the net rack 278, the white granulated sugar slowly falls on the first sliding plate 28 through the left-right movement of the net rack 278, and then the white granulated sugar slides out of the discharge port 4 after passing through the first sliding plate 28, the second sliding plate 29 and the third sliding plate 30 under the action of gravity to collect the white granulated sugar.
The basic principle and the main characteristics of the utility model and the advantages of the utility model have been shown and described above, and the utility model discloses the standard part that uses all can purchase from the market, and dysmorphism piece all can be customized according to the record of the description with the drawing, and the concrete connection mode of each part all adopts conventional means such as ripe bolt rivet among the prior art, welding, and machinery, part and equipment all adopt prior art, conventional model, and conventional connection mode in the prior art is adopted in addition to circuit connection, and the details are not repeated here.
It is obvious to a person skilled in the art that the invention is not restricted to details of the above-described exemplary embodiments, but that it can be implemented in other specific forms without departing from the spirit or essential characteristics of the invention. The present embodiments are therefore to be considered in all respects as illustrative and not restrictive, the scope of the invention being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference sign in a claim should not be construed as limiting the claim concerned. Furthermore, it should be understood that although the present description refers to embodiments, not every embodiment may contain only a single embodiment, and such description is for clarity only, and those skilled in the art should integrate the description, and the embodiments may be combined as appropriate to form other embodiments understood by those skilled in the art.

Claims (7)

1. A cooling and drying device for processing white granulated sugar comprises an underframe (1), a feed inlet (3), a discharge outlet (4), an air inlet pipe (5), an air collecting pipe (6), a fan (7), a base (8), a control panel (9) and a power line (10), wherein the top of the inner side of the underframe (1) is locked and fixed with a drying chamber (2) through bolts, the feed inlet (3) is embedded in the top of the drying chamber (2), the discharge outlet (4) is welded in the bottom of the drying chamber (2), the air inlet pipe (5) is inserted and connected in the top of the front side of the drying chamber (2) in a transition fit manner, the air collecting pipe (6) is welded at the bottom of the air inlet pipe (5), an air inlet is arranged at the bottom of the air collecting pipe (6), the bottom of the air inlet is locked and fixed with the air outlet of the top of the fan (7) through bolts, the front side of the bottom of the fan, a control panel (9) is arranged on the bottom side of the left part of the drying chamber (2), a first button (91) and a second button (92) are arranged on the left side of the control panel (9), a power line (10) is arranged on the bottom side of the right part of the drying chamber (2), and the fan (7), the first button (91) and the second button (92) are all electrically connected with the power line (10);
the method is characterized in that: the drying chamber (2) is composed of a box body (21), a cylindrical filter screen (22), a mounting seat (23), a motor (24), a rotating block (25), a stirring mechanism (26), a screening mechanism (27), a first sliding plate (28), a second sliding plate (29) and a third sliding plate (30), wherein a feeding hole (3) is embedded in the top of the box body (21), the bottom side of the outside of the box body (21) is fixedly locked with an underframe (1) through bolts, a discharging hole (4) is welded in the middle side of the bottom of the box body (21), an air inlet pipe (5) is inserted in the top of the front side of the box body (21) in a transition fit mode, the outside of the inside of the box body (21) is fixedly locked with the cylindrical filter screen (22) for preventing white granulated sugar from blowing out through bolts, the mounting seat (23) penetrates through the right side of the cylindrical filter screen (22), and the right side of the mounting seat (23) and the box body (, the left side of the mounting seat (23) is locked and fixed with a motor (24) used for generating kinetic energy through bolts, the output end of the front part of the motor (24) is inserted with a rotating block (25) in a transition fit mode, the middle part of the outer side of the rotating block (25) is in transmission connection with a stirring mechanism (26), the front part of the outer side of the rotating block (25) is in transmission connection with a screening mechanism (27), the right side of a first sliding plate (28) penetrates through a cylindrical filter screen (22), the right side of the first sliding plate (28) is connected with a box body (21), a second sliding plate (29) is arranged at the bottom of the first sliding plate (28), the left side of the second sliding plate (29) penetrates through the cylindrical filter screen (22), the left side of the second sliding plate (29) is connected with the box body (21), a third sliding plate (30) is arranged at the bottom of the second sliding plate (29), and the right side of the, and the right side of the third sliding plate (30) is connected with the box body (21), and the motor (24) and the second button (92) are both electrically connected with the power line (10).
2. A cooling and drying device for white granulated sugar processing according to claim 1, characterized in that: the stirring mechanism (26) consists of a first transmission belt (261), a first roller (262), a cover body (263), a second transmission belt (264) and a second roller (265), the middle part of the outer side of the rotating block (25) is in transmission connection with the first roller (262) through the first transmission belt (261), the middle parts of the front side and the rear side of the first roller (262) are in transmission connection with the cover body (263), the top of the cover body (263) is welded with the box body (21), the second transmission belt (264) is arranged on the rear side of the first transmission belt (261), the middle part of the front side of the first roller (262) is in transmission connection with the second roller (265) through the second transmission belt (264), and the middle parts of the front side and the rear side of the second roller (265) are in transmission connection with the cover body (263).
3. A cooling and drying device for white granulated sugar processing according to claim 1, characterized in that: the screening mechanism (27) consists of a third transmission belt (271), a driving gear (272), a first fixed rod (273), a first connecting rod (274), a second connecting rod (275), a transmission gear (276), a second fixed rod (277), a net rack (278), a screen (279) and a support rod (280), the front part of the outer side of the rotating block (25) is in transmission connection with the middle part of the rear side of the driving gear (272) through the third transmission belt (271), the middle part of the rear side of the driving gear (272) is in rotational connection with the first fixed rod (273), the right side of the first fixed rod (273) penetrates through the cylindrical filter screen (22), the right end face of the first fixed rod (273) is welded with the box body (21), the left side of the front part of the driving gear (272) is in rotational connection with the first connecting rod (274), the left side of the first connecting rod (274) is in rotational connection with the second connecting rod (275), and the rear part of the right side of the, the top of the transmission gear (276) is meshed with the driving gear (272), the middle of the rear side of the transmission gear (276) is rotatably connected with a second fixing rod (277), the right side of the second fixing rod (277) penetrates through the cylindrical filter screen (22), the right end face of the second fixing rod (277) is welded with the box body (21), the joint of the first connecting rod (274) and the second connecting rod (275) is rotatably connected with the net rack (278), a screen mesh (279) is embedded at the bottom side inside the net rack (278), the left side of the bottom of the screen mesh (279) is slidably connected with a support rod (280), the left side of the support rod (280) penetrates through the cylindrical filter screen (22), and the left end face of the support rod (280) is welded with the box body (21).
4. A cooling and drying device for white granulated sugar processing according to claim 1, characterized in that: an air outlet round hole is formed in the rear side of the box body (21), and a dust filter screen is installed on the inner side of the air outlet round hole.
5. A cooling and drying device for white granulated sugar processing according to claim 2, characterized in that: the middle sides of the first roller (262) and the second roller (265) are on the same vertical line with the middle side of the bottom of the feed opening (3).
6. A cooling and drying device for white granulated sugar processing according to claim 1, characterized in that: the angles formed by the first sliding plate (28), the second sliding plate (29) and the third sliding plate (30) and the horizontal plane are all 30 degrees, and the surfaces are smooth.
7. A cooling and drying device for white granulated sugar processing according to claim 3, characterized in that: the driving gear (272) and the transmission gear (276) are equal in shape and size, and the centers of the driving gear (272) and the transmission gear (276) are on the same vertical line.
CN201920924833.5U 2019-06-19 2019-06-19 A cooling and drying device for white sugar processing Expired - Fee Related CN210425985U (en)

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Application Number Priority Date Filing Date Title
CN201920924833.5U CN210425985U (en) 2019-06-19 2019-06-19 A cooling and drying device for white sugar processing

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Application Number Priority Date Filing Date Title
CN201920924833.5U CN210425985U (en) 2019-06-19 2019-06-19 A cooling and drying device for white sugar processing

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CN210425985U true CN210425985U (en) 2020-04-28

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