CN107940972B - Hot-spraying fodder dryer - Google Patents

Hot-spraying fodder dryer Download PDF

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Publication number
CN107940972B
CN107940972B CN201711154383.8A CN201711154383A CN107940972B CN 107940972 B CN107940972 B CN 107940972B CN 201711154383 A CN201711154383 A CN 201711154383A CN 107940972 B CN107940972 B CN 107940972B
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Prior art keywords
rotating
linkage
sliding
plate
fixer
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CN107940972A (en
Inventor
费军
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Anhui Rongguo Environmental Intelligent Technology Co., Ltd.
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Anhui Rongguo Environmental Intelligent Technology Co Ltd
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Publication of CN107940972A publication Critical patent/CN107940972A/en
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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F26DRYING
    • F26BDRYING SOLID MATERIALS OR OBJECTS BY REMOVING LIQUID THEREFROM
    • F26B17/00Machines or apparatus for drying materials in loose, plastic, or fluidised form, e.g. granules, staple fibres, with progressive movement
    • F26B17/18Machines or apparatus for drying materials in loose, plastic, or fluidised form, e.g. granules, staple fibres, with progressive movement with movement performed by rotating helical blades or other rotary conveyors which may be heated moving materials in stationary chambers, e.g. troughs
    • F26B17/22Machines or apparatus for drying materials in loose, plastic, or fluidised form, e.g. granules, staple fibres, with progressive movement with movement performed by rotating helical blades or other rotary conveyors which may be heated moving materials in stationary chambers, e.g. troughs the axis of rotation being vertical or steeply inclined
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F26DRYING
    • F26BDRYING SOLID MATERIALS OR OBJECTS BY REMOVING LIQUID THEREFROM
    • F26B25/00Details of general application not covered by group F26B21/00 or F26B23/00
    • F26B25/001Handling, e.g. loading or unloading arrangements
    • F26B25/002Handling, e.g. loading or unloading arrangements for bulk goods
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F26DRYING
    • F26BDRYING SOLID MATERIALS OR OBJECTS BY REMOVING LIQUID THEREFROM
    • F26B25/00Details of general application not covered by group F26B21/00 or F26B23/00
    • F26B25/04Agitating, stirring, or scraping devices

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Fodder In General (AREA)
  • Drying Of Solid Materials (AREA)

Abstract

The invention discloses a hot-spraying feed dryer, which structurally comprises an external running machine, a cooling pipe, a drying pipe, a processing chamber, a maintenance door and a processing device, wherein one end of the cooling pipe, which is far away from the external running machine, is welded on the side surface of the processing chamber, which is far away from the maintenance door, one end of the drying pipe, which is far away from the external running machine, is locked on the upper end surface of the processing chamber through screws, the side surface of the external running machine is meshed with the cooling pipe and the drying pipe, and the processing chamber is provided with the maintenance door. Meanwhile, the discharging speed is accelerated.

Description

hot-spraying fodder dryer
Technical Field
The invention discloses a hot-spraying feed dryer, and belongs to the field of feed dryers.
Background
The dryer has several modes, such as belt drying, roller drying, box drying, tower drying and the like; the heat source is coal, electricity, gas and the like; the materials are in a hot air flow type, a radiation type and the like in the drying process, the hot air roller drying is that hot air flows forwards from the tail part and is fully contacted with the materials, and the heat transfer quantity is fully utilized through heat conduction, convection and radiation; the heat energy is directly transmitted to the material, so that the moisture of the material is continuously evaporated in the barrel, and the air inducing device at the feeding port draws out a large amount of moisture and wet air flow, thereby preventing secondary pollution caused by dust discharge.
In the prior art, materials are not dried uniformly, the materials are not cooled, the taste of the feed cannot be improved, and the nutrition of the feed cannot be fully exerted; meanwhile, the material shaking design is not added during material discharging, so that the drying effect cannot be further enhanced and the discharging speed cannot be accelerated.
disclosure of Invention
Aiming at the defects in the prior art, the invention aims to provide a hot-spraying feed dryer to solve the problems that the materials are not uniformly dried, the materials are not cooled, the taste of the feed cannot be improved, and the nutrition of the feed cannot be fully exerted; meanwhile, the material shaking design is not added during material discharging, and the drying effect and the discharging speed cannot be further enhanced.
In order to achieve the purpose, the invention is realized by the following technical scheme: a hot-spraying feed dryer structurally comprises an operation outdoor unit, a cooling pipe, a drying pipe, a processing chamber, a maintenance door and a processing device, wherein one end of the cooling pipe, far away from the operation outdoor unit, is welded on the side surface, far away from the maintenance door, of the processing chamber, one end of the drying pipe, far away from the operation outdoor unit, is locked on the upper end surface of the processing chamber through a screw, the cooling pipe and the drying pipe are meshed on the side surface of the operation outdoor unit, the processing chamber is provided with the maintenance door, the maintenance door is installed inside the processing chamber and communicated with the operation outdoor unit through the cooling pipe and the drying pipe, the processing device comprises a rotating mechanism, a feeding barrel, a blanking device, a sliding material structure, a fixing device, a rotating mechanism, a shaking device and an auxiliary rotating spiral rod, the feeding barrel, the blanking device, the sliding material structure, the fixing device, the rotating mechanism, the shaking device and the, the feeding barrel is arranged above the blanking device and is communicated with the blanking device, the blanking device is elastically connected with a fixer, the fixer is positioned below the blanking device, the sliding structure is fixedly connected with the fixer, one end of the sliding structure, which is far away from the fixer, is arranged on a shaker, the fixer is in an L-shaped structure, the puller winds the rotating mechanism, the rotating mechanism is mutually engaged with the auxiliary rotating spiral rod, the puller is in transmission connection with the shaker, the auxiliary rotating spiral rod is positioned in the middle of the feeding barrel, the blanking device, the sliding structure, the fixer, the rotating mechanism, the puller and the shaker, the blanking device consists of a rotating rod shaft and a material turning bucket, and the material turning bucket is glued at one end, which is far away from the rotating mechanism, of the rotating rod shaft, the fixing device is composed of a pressure spring, a pressure spring slider and a pressure spring support plate, the pressure spring is arranged above the pressure spring slider, and the lower surface of the pressure spring slider is connected with the upper surface of one end, far away from the spiral feeding pipe, of the pressure spring support plate through high temperature.
Furthermore, the material sliding structure comprises a material receiving hopper and a spiral feeding pipe, the upper end of the spiral feeding pipe is fixedly connected to the side face of the bottom end of the material receiving hopper, and the bottom end of the spiral feeding pipe penetrates through the shaker.
Further, slewing mechanism includes linkage pivot, linkage dwang, linkage returning face plate, linkage pivot and linkage dwang upper end swing joint, linkage dwang bottom swing joint has the linkage returning face plate, the linkage returning face plate is established inside the shaker.
further, the shaker comprises a material receiving barrel, a material sliding plate, a pressure supporting plate and a shaking spring device, wherein the pressure supporting plate and the shaking spring device are arranged inside the material receiving barrel, the material sliding plate is movably connected with the linkage turnover plate, one end, far away from the linkage turnover plate, of the material sliding plate is fastened on the discharge port, and the lower surface of one end, far away from the discharge port, of the material sliding plate is movably connected with the pressure supporting plate.
Further, supplementary rotatory hob includes rotatory apical axis, supplementary rotatory slide bar, supplementary slider, rotatory apical axis and supplementary rotatory slide bar swing joint, connect the contact of feed cylinder bottom and rotatory apical axis, the sand grip of supplementary rotatory slide bar and the spout swing joint of supplementary slider.
Advantageous effects
Before the hot-spraying feed dryer is used, a power supply is connected to preheat equipment, and an operating external machine is started to operate; the drying and cooling opening is realized after the operation of the external machine is started, materials are sent into the feeding barrel at regular time through the feeding machine, the sent materials are stored in the feeding barrel, gravity pressure is applied while the materials are stored, the blanking machine presses down the fixer through the pressure of the materials, and the pressure spring is compressed to drive the sliding of the pressure spring slider; the blanking device moves downwards to drive the rotating mechanism meshed with the blanking device to move downwards, the auxiliary rotating screw rod is pushed downwards while the rotating mechanism moves downwards, the auxiliary rotating screw rod is in transmission operation to drive the rotating mechanism to rotate, namely, the rotation is realized, the rotation drives the linkage rotating rod to push the linkage turnover plate downwards, and one end of the linkage turnover plate, which is far away from the material sliding structure, is propped by the sliding material plate, so that the linkage turnover plate is inclined;
meanwhile, the auxiliary rotating screw rod is pushed when the rotating mechanism moves downwards, the rotating mechanism is also pushed by the auxiliary rotating screw rod due to inertia, the rotating mechanism is meshed with the rotating rod shaft to rotate, the overturning hopper is driven to overturn by the rotation of the rotating rod shaft, the overturning hopper is matched with the receiving hopper by the compression of the fixer at the same time, the overturning hopper overturns and pours the materials onto the receiving hopper, the receiving hopper designed by the hourglass slowly drops the materials from the spiral feeding pipe, the cold air conveyed by the cooling pipe is cooled during the downward sliding of the spiral feeding pipe, then the materials are continuously conveyed into the shaker, the materials are slid out of the discharging port from the sliding plate by the inclined linkage overturning plate, the auxiliary rotating sliding rod is pulled by the rotation of the linkage rotating shaft, the rotating top shaft is driven to shake the shaking spring device in the receiving barrel, the material shaking by the sliding material plate and the pressure support plate is driven, the discharging of the material is accelerated, and finally the material arrangement is carried out by the staff; after the material is discharged, the blanking device loses gravity to apply pressure, the integral structure returns, and the material is sent into the blanking device at regular time by the feeding device to perform circulating operation
According to the invention, the overturning of the turning hopper is driven by the rotation of the rotating rod shaft, the materials are discharged at intervals and dried, a small amount of uniform drying is performed on the materials by combining the hourglass design of the receiving hopper, and meanwhile, the materials are conveyed and cooled by spiral conveying, so that the taste of the feed is improved, the nutrition of the feed can be fully exerted, the material shaking design is added during the material discharging, the drying effect is further enhanced, and the discharging speed is accelerated.
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 a hot spray fodder dryer according to the present invention.
FIG. 2 is a first schematic structural diagram of a processing apparatus according to the present invention.
FIG. 3 is a schematic structural diagram of a second processing apparatus according to the present invention.
in the figure: the device comprises an external machine 1, a cooling pipe 2, a drying pipe 3, a processing chamber 4, a maintenance door 5, a processing device 6, a rotating mechanism 60, a feeding cylinder 61, a blanking device 62, a sliding material structure 63, a fixer 64, a rotating mechanism 65, a puller 66, a shaker 67, an auxiliary rotating spiral rod 68, a rotating rod shaft 620, a tipping bucket 621, a pressure spring 640, a pressure spring slider 641, a pressure spring support plate 642, a receiving bucket 630, a spiral feeding pipe 631, a linkage rotating shaft 650, a linkage rotating rod 651, a linkage turnover plate 652, a receiving cylinder 670, a sliding material plate 671, a pressure support plate 672, a shaking spring 673, a rotating top shaft 680, an auxiliary rotating sliding rod 681, an auxiliary sliding block 682 and a discharging port 40.
Detailed Description
In order to make the technical means, the creation characteristics, the achievement purposes and the effects of the invention easy to understand, the invention is further described with the specific embodiments.
Example (b):
Referring to fig. 1-3, the present invention provides a hot spray fodder dryer: the structure of the device comprises an outer machine 1, a cooling pipe 2, a drying pipe 3, a processing chamber 4, a maintenance door 5 and a processing device 6, wherein one end of the cooling pipe 2 far away from the outer machine 1 is welded on the side surface of the processing chamber 4 far away from the maintenance door 5, the drying pipe 3 is arranged on the side surface of the drying pipe 3 far away from the outer machine 1, the cooling pipe 2 and the drying pipe 3 are meshed on the side surface of the outer machine 1, the maintenance door 5 is arranged on the processing chamber 4, the maintenance door 5 is arranged in the processing chamber 4 and communicated with the outer machine 1 through the cooling pipe 2 and the drying pipe 3, the processing device 6 consists of a rotating mechanism 60, a feeding barrel 61, a blanking device 62, a sliding material structure 63, a fixer 64, a rotating mechanism 65, a pulling mechanism 66, a shaker 67 and an auxiliary spiral rotating rod 68, and the feeding barrel 61, the blanking device 62 and the sliding material structure 63, Fixer 64, slewing mechanism 65, pulling device 66, shaker 67 are equipped with a pair respectively to the relative arrangement, rotary mechanism 60 and blanking ware 62 mesh, rotary mechanism 60 and supplementary rotatory hob 68 swing joint, it establishes in blanking ware 62 top to go into feed cylinder 61, and both link up each other, blanking ware 62 and fixer 64 elastic connection, fixer 64 is located blanking ware 62 below, smooth material structure 63 and fixer 64 fixed connection, the one end that smooth material structure 63 kept away from fixer 64 is established on shaker 67, fixer 64 is L shape structure, pulling device 66 winding slewing mechanism 65, slewing mechanism 65 and supplementary rotatory hob 68 intermeshing, pulling device 66 is connected with shaker 67 transmission, supplementary rotatory hob 68 is located and goes into feed cylinder 61, blanking ware 62, smooth material structure 63, fixer 64, The middle parts of the rotating mechanism 65, the pulling device 66 and the shaking device 67, the blanking device 62 comprises a rotating rod shaft 620 and a material turning hopper 621, the material turning hopper 621 is glued at one end of the rotating rod shaft 620 far away from the rotating mechanism 60 and is positioned below the charging barrel 61, the fixing device 64 comprises a pressure spring 640, a pressure spring slider 641 and a pressure spring support plate 642, the pressure spring 640 is arranged above the pressure spring slider 641, the lower surface of the pressure spring slider 641 is connected with the upper surface of one end of the pressure spring support plate 642 far away from the spiral feeding pipe 631 at high temperature, the material sliding structure 63 comprises a material receiving hopper 630 and a spiral feeding pipe 631, the upper end of the spiral feeding pipe 631 is fixedly connected with the side surface of the bottom end of the material receiving hopper 630, the bottom end of the spiral feeding pipe 631 penetrates through the shaking device 67, the hourglass blanking design enables materials to fall uniformly, and prolongs the drying time, the screw feeding realizes the conveying and cooling of materials, meanwhile, the screw design prolongs the cooling time, so that the materials can be sufficiently cooled, the rotating mechanism 65 comprises a linkage rotating shaft 650, a linkage rotating rod 651 and a linkage turnover plate 652, the linkage rotating shaft 650 is movably connected with the upper end of the linkage rotating rod 651, the linkage turnover plate 652 is movably connected with the bottom of the linkage rotating rod 651, the linkage turnover plate 652 is arranged inside the shaker 67, the conveying of auxiliary materials is realized through rotation, meanwhile, the shaking of the materials is realized through pulling, the use is convenient, the utilization rate is high, the shaker 67 comprises a material receiving cylinder 670, a material sliding plate 671, a pressure support plate 672 and a shaking spring device 673, the pressure support plate 672 and the shaking spring device 673 are arranged inside the material receiving cylinder 670, the material sliding plate 671 is movably connected with the linkage turnover plate 652, one end of the material sliding plate 671, which is far away from the linkage turnover plate 652, is fastened on the, one end lower surface and the pressure backup pad 672 swing joint of discharge gate 40 are kept away from to flitch 671 for to the shake of material, realize that the material is dried more evenly the transport speed of having accelerated the material simultaneously, supplementary rotatory hob 68 is including rotatory apical axis 680, supplementary rotatory slide bar 681, supplementary slider 682, rotatory apical axis 680 and supplementary rotatory slide bar 681 swing joint, connect feed cylinder 670 bottom and rotatory apical axis 680 to contact, the sand grip of supplementary rotatory slide bar 681 and the spout swing joint of supplementary slider 682 are installed and are used for the supplementary rotation that drives at the equipment center.
the running outdoor unit 1 disclosed by the patent realizes full contact with materials, and fully utilizes heat transfer through heat conduction, convection and radiation; the heat energy is directly transferred to the material, so that the moisture of the material is continuously evaporated in the cylinder, and meanwhile, the machine can achieve the refrigeration effect through vapor compression or absorption type circulation.
Before use, the power supply is connected to preheat equipment, and the operation of the operating external unit 1 is started; the drying and cooling can be started after the operation of the external machine 1 is started, materials are fed into the feeding barrel 61 at regular time through the feeding machine, the fed materials are stored in the feeding barrel 61, gravity pressing is realized while the materials are stored, the blanking machine 62 presses down the fixer 64 through the pressing of the materials, and the pressure spring 640 is compressed to drive the pressure spring slider 641 to slide; the blanking device 62 moves downwards to drive the rotating mechanism 60 meshed with the blanking device 62 to move downwards, the auxiliary rotating screw rod 68 is pushed downwards while the rotating mechanism 60 moves downwards, the auxiliary rotating screw rod 68 performs transmission operation to drive the rotating mechanism 65 to rotate, namely 650 is rotated, the 650 rotates to drive the linkage rotating rod 651 to push down the linkage turnover plate 652, and one end, far away from the sliding structure 63, of the linkage turnover plate 652 is propped against by the sliding material plate 671, so that the linkage turnover plate 652 is inclined;
Meanwhile, when the rotating mechanism 60 moves downwards, the auxiliary rotating screw rod 68 is pushed, because the rotating mechanism 60 is also pushed up by the inertia auxiliary rotating screw rod 68, the rotating mechanism 60 and the rotating rod shaft 620 are meshed to rotate, the turning hopper 621 is driven to turn through the rotation of the rotating rod shaft 620, the turning hopper 621 and the receiving hopper 630 are in a matched state through the compression of the fixer 64 at the same time, the material is turned and poured onto the receiving hopper 630 by the turning hopper 621, the receiving hopper 630 designed in a hourglass slowly drops the material from the spiral feeding pipe 631, during the downward sliding of the spiral feeding pipe 631, the cold air conveyed by the cooling pipe 2 is cooled, then the material is continuously conveyed into the shaker 67, the material slides down from the material sliding plate 671 through the inclined linkage turning plate 652 and flows out of the material outlet, and simultaneously the auxiliary rotating sliding rod 681 is pulled through the rotation of the linkage rotating shaft 650, so that the rotating top shaft 680 is rotated, the rotation of the rotary top shaft 680 drives the shaking spring device 673 in the receiving cylinder 670 to shake, so that the material is shaken by the material sliding plate 671 and the pressure supporting plate 672, the material discharging is accelerated, and finally the material is finished by workers; the blanking device 62 loses gravity to apply pressure after the material is discharged, the whole structure returns, and the material is sent into the blanking device at regular time by the feeding device to perform circular operation.
The problems solved by the invention are that the materials are not dried uniformly in the prior art, the materials are not cooled, the taste of the feed cannot be improved, and the nutrition of the feed cannot be fully exerted; meanwhile, the material shaking design is not added during material discharging, the drying effect cannot be further enhanced, the discharging speed cannot be increased, the turnover of the turning hopper is driven by the rotation of the rotary rod shaft, the materials are dried at intervals, a small amount of uniform drying is performed on the materials by combining the hourglass design of the receiving hopper, and meanwhile, the materials are conveyed and cooled by spiral conveying, so that the taste of the feed is improved, the nutrition of the feed can be fully exerted, the material shaking design is added during material discharging, the drying effect is further enhanced, and the discharging speed is increased.
while there have been shown and described what are at present considered the fundamental principles and essential features of the invention and its advantages, it will be apparent to those skilled in the art that the invention is not limited to the details of the foregoing exemplary embodiments, but is capable of other specific forms without departing from the spirit or essential characteristics thereof. 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 (1)

1. the utility model provides a hot spray fodder drying-machine, its structure is including the outer machine of operation (1), cooling tube (2), drying tube (3), treatment chamber (4), maintenance door (5), processing apparatus (6), the one end welding that the outer machine of operation (1) was kept away from in cooling tube (2) is in the side of keeping away from maintenance door (5) in treatment chamber (4), the one end that the outer machine of operation (1) was kept away from in drying tube (3) passes through the screw locking at the up end of treatment chamber (4), characterized in that:
the side of the outer machine (1) of operation is engaged with a cooling pipe (2) and a drying pipe (3), the processing chamber (4) is provided with a maintenance door (5), the maintenance door (5) is installed on the side of the processing chamber (4), the cooling pipe (2), the drying pipe (3) and the outer machine (1) of operation are communicated, the processing device (6) is composed of a rotating mechanism (60), a charging barrel (61), a blanking device (62), a sliding structure (63), a fixer (64), a rotating mechanism (65), a pulling device (66), a shaking device (67) and an auxiliary rotating spiral rod (68), the charging barrel (61), the blanking device (62), the sliding structure (63), the fixer (64), the rotating mechanism (65), the pulling device (66) and the shaking device (67) are respectively provided with a pair and are oppositely arranged, the rotating mechanism (60) is engaged with the blanking device (62), rotary mechanism (60) and supplementary rotatory hob (68) swing joint, it establishes in blanking ware (62) top to go into feed cylinder (61), and both link up each other, blanking ware (62) and fixer (64) elastic connection, fixer (64) are located blanking ware (62) below, smooth material structure (63) and fixer (64) fixed connection, the one end that fixer (64) were kept away from in smooth material structure (63) is established on shaker (67), fixer (64) are L shape structure, winding slewing mechanism (65) of puller (66), slewing mechanism (65) and supplementary rotatory hob (68) intermeshing, puller (66) and shaker (67) transmission are connected, supplementary rotatory hob (68) are located into feed cylinder (61), blanking ware (62), smooth material structure (63), The middle parts of the fixer (64), the rotating mechanism (65), the pulling device (66) and the shaker (67);
The blanking device (62) consists of a rotating rod shaft (620) and a material turning hopper (621), the material turning hopper (621) is hinged to one end, far away from the rotating mechanism (60), of the rotating rod shaft (620) and is positioned below the material inlet cylinder (61), the fixer (64) consists of a pressure spring (640), a pressure spring slider (641) and a pressure spring support plate (642), the pressure spring (640) is arranged above the pressure spring slider (641), and the lower surface of the pressure spring slider (641) is connected with the upper surface of one end, far away from the spiral feeding pipe (631), of the pressure spring support plate (642); the material sliding structure (63) comprises a material receiving hopper (630) and a spiral feeding pipe (631), the upper end of the spiral feeding pipe (631) is fixedly connected to the side face of the bottom end of the material receiving hopper (630), and the bottom end of the spiral feeding pipe (631) penetrates through a shaker (67);
The rotating mechanism (65) comprises a linkage rotating shaft (650), a linkage rotating rod (651) and a linkage turning plate (652), the linkage rotating shaft (650) is movably connected with the upper end of the linkage rotating rod (651), the bottom of the linkage rotating rod (651) is movably connected with the linkage turning plate (652), and the linkage turning plate (652) is arranged inside the shaker (67);
The shaking device (67) comprises a material receiving barrel (670), a material sliding plate (671), a pressure supporting plate (672) and a shaking spring device (673), the pressure supporting plate (672) and the shaking spring device (673) are arranged inside the material receiving barrel (670), the material sliding plate (671) is movably connected with the linkage turnover plate (652), one end, far away from the linkage turnover plate (652), of the material sliding plate (671) is buckled on the material outlet (40), and the lower surface of one end, far away from the material outlet (40), of the material sliding plate (671) is movably connected with the pressure supporting plate (672); the auxiliary rotary screw rod (68) comprises a rotary top shaft (680), an auxiliary rotary sliding rod (681) and an auxiliary sliding block (682), the rotary top shaft (680) is movably connected with the auxiliary rotary sliding rod (681), the bottom of the material receiving barrel (670) is in contact with the rotary top shaft (680), and a convex strip of the auxiliary rotary sliding rod (681) is movably connected with a sliding groove of the auxiliary sliding block (682);
Before use, a power supply is connected to preheat a drying pipe (3) of the hot-spray feed dryer, and an operation external machine is started to operate; the drying and cooling opening is realized after the operation of the external machine is started, materials are sent into the feeding barrel at regular time through the feeding machine, the sent materials are stored in the feeding barrel, gravity pressure is applied while the materials are stored, the blanking machine presses down the fixer through the pressure of the materials, and the pressure spring is compressed to drive the sliding of the pressure spring slider; the blanking device moves downwards to drive the rotating mechanism meshed with the blanking device to move downwards, the auxiliary rotating screw rod is pushed downwards while the rotating mechanism moves downwards, the auxiliary rotating screw rod is in transmission operation to drive the rotating mechanism to rotate, so that the linkage rotating rod is driven to push the linkage turnover plate downwards, one end of the linkage turnover plate, which is far away from the sliding structure, is propped by the sliding plate, and the linkage turnover plate is inclined;
Meanwhile, the auxiliary rotating screw rod is pushed when the rotating mechanism moves downwards, the rotating mechanism is also pushed by the auxiliary rotating screw rod due to inertia, the rotating mechanism is meshed with the rotating rod shaft to rotate, the overturning hopper is driven to overturn by the rotation of the rotating rod shaft, the overturning hopper is matched with the receiving hopper by the compression of the fixer at the same time, the material is overturned and poured onto the receiving hopper by the overturning hopper, the receiving hopper designed by the hourglass slowly drops the material from the spiral feeding pipe, the cold air conveyed by the cooling pipe is cooled during the downward sliding of the spiral feeding pipe, then the material is continuously conveyed into the shaker, the material slides out of the discharging port from the sliding plate by the inclined linkage overturning plate, the auxiliary rotating sliding rod is pulled by the rotation of the linkage rotating shaft, the rotating top shaft is driven to shake the shaking spring device in the receiving barrel, the material shaking by the sliding material plate and the pressure support plate is driven, the discharging of the material is accelerated, and finally the material arrangement is carried out by the staff; the blanking device loses gravity and exerts pressure after the material is discharged, the integral structure returns, and the material is sent into the blanking device at regular time by the feeding device to perform circulating operation.
CN201711154383.8A 2017-11-18 2017-11-18 Hot-spraying fodder dryer Active CN107940972B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201711154383.8A CN107940972B (en) 2017-11-18 2017-11-18 Hot-spraying fodder dryer

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Application Number Priority Date Filing Date Title
CN201711154383.8A CN107940972B (en) 2017-11-18 2017-11-18 Hot-spraying fodder dryer

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CN107940972A CN107940972A (en) 2018-04-20
CN107940972B true CN107940972B (en) 2019-12-06

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CN112333950A (en) * 2018-08-21 2021-02-05 张旺 Controller

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN87207794U (en) * 1987-05-04 1988-01-20 广东省农业机械研究所 Granulated fodder drying and cooling facilities
CN2071316U (en) * 1988-08-26 1991-02-13 华南农业大学 Cooling and drying machine for granular feedstuff
US7234247B2 (en) * 2000-06-16 2007-06-26 Maguire Stephen B Low pressure dryer
CN204255033U (en) * 2014-10-24 2015-04-08 山东盛日电力集团有限公司 Vertical coal briquette drying oven
CN104534815A (en) * 2014-11-20 2015-04-22 常州华灏针织有限公司 Powder drying device

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