CN223521897U - Special grain loading machine - Google Patents

Special grain loading machine

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Publication number
CN223521897U
CN223521897U CN202423115340.7U CN202423115340U CN223521897U CN 223521897 U CN223521897 U CN 223521897U CN 202423115340 U CN202423115340 U CN 202423115340U CN 223521897 U CN223521897 U CN 223521897U
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CN
China
Prior art keywords
driving
shaft
gear
bin
dust collection
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
CN202423115340.7U
Other languages
Chinese (zh)
Inventor
冯双星
王文波
郁洪志
冯双印
王文月
王建伟
张海生
周涛
孙佳霖
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
China Grain Reserves Yutian Direct Warehouse Co ltd
Liaoning Naili Machinery Co ltd
Original Assignee
China Grain Reserves Yutian Direct Warehouse Co ltd
Liaoning Naili Machinery Co ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by China Grain Reserves Yutian Direct Warehouse Co ltd, Liaoning Naili Machinery Co ltd filed Critical China Grain Reserves Yutian Direct Warehouse Co ltd
Priority to CN202423115340.7U priority Critical patent/CN223521897U/en
Application granted granted Critical
Publication of CN223521897U publication Critical patent/CN223521897U/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02ATECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
    • Y02A40/00Adaptation technologies in agriculture, forestry, livestock or agroalimentary production
    • Y02A40/10Adaptation technologies in agriculture, forestry, livestock or agroalimentary production in agriculture
    • Y02A40/51Adaptation technologies in agriculture, forestry, livestock or agroalimentary production in agriculture specially adapted for storing agricultural or horticultural products

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  • Filling Or Emptying Of Bunkers, Hoppers, And Tanks (AREA)

Abstract

The utility model relates to the technical field of a bin loader, in particular to a special grain bin loader which comprises a supporting conveying frame, a belt conveyor, an installation half gear, a driving motor, a driving shaft, a driving gear, a connecting frame, an adjusting motor, an adjusting shaft, an adjusting gear, a transmission shaft, a transmission half gear, a material guiding frame, an installation component, a dust collection component, a driving component and a cleaning component, wherein the supporting conveying frame is arranged on the belt conveyor; when the bin loader is in use, the angle of the material guide frame can be flexibly adjusted through the synergistic effect of the driving motor and the adjusting motor, so that grains are guided and conveyed in multiple directions and multiple angles through the material guide frame, the problem of accumulation of grains in a storage bin is effectively avoided, and the bin loading efficiency and the uniformity of grain storage are improved.

Description

Special grain loading machine
Technical Field
The utility model relates to the technical field of a bin loader, in particular to a special grain bin loader.
Background
The special grain loading machine is used as a novel grain processing device, and aims to realize rapid and uniform grain loading in a mechanized and automatic mode, and the device is usually combined with various functions such as conveying, adjusting and controlling so as to ensure smooth flow and uniform distribution of grains in the loading process.
In the in-service use process, traditional loading machine often adopts fixed guide frame structure, lacks nimble regulating ability, leads to grain to appear locally easily piling up or flowing unsmoothly phenomenon at the loading in-process, and this has not only influenced the storage quality of grain, still probably causes the damage and the waste of grain storage facility, and then inconvenient improvement loading efficiency and the even problem of storing of grain.
Therefore, the problem of inconvenient improvement loading efficiency and even grain storage can be designed, a special grain loading machine can be designed, driving motor starts, its output passes through the drive shaft and drives drive gear rotation, drive gear meshes with the installation half gear, thereby the drive installation axle is rotatory, the installation axle then carries out longitudinal angle's regulation through link drive guide frame, ensure that grain can evenly distributed, simultaneously, accommodate motor also starts, its output passes through the regulating spindle and drives the regulating gear rotation, adjust gear meshes with the transmission half gear, and then drive transmission shaft is rotatory, the horizontal angle adjustment of guide frame is realized to transmission shaft rethread link, in this way, through driving motor and accommodate motor's synergism, can nimble adjust the angle of guide frame, make grain carry out multidirectional multi-angle's guide through the guide frame and carry, the accumulation problem of grain in the storage bin has effectively been avoided, the uniformity of grain storage has been improved loading efficiency.
Disclosure of utility model
In order to overcome the problem that in the using process of the bin loader, the traditional bin loader often adopts a fixed material guide frame structure, lacks flexible adjusting capability, and causes the phenomenon that grains are easily accumulated locally or flow is not smooth in the bin loading process, so that the storage quality of the grains is influenced, damage and waste of grain storage facilities are possibly caused, and further the bin loading efficiency and the uniform grain storage are inconvenient to improve.
The technical scheme includes that the grain special-purpose bin loader comprises a supporting conveying frame, a belt conveyor, a mounting half gear, a driving motor, a driving shaft, a driving gear, a connecting frame, an adjusting motor, an adjusting shaft, an adjusting gear, a transmission shaft, a transmission half gear, a material guiding frame, a mounting assembly, a dust collection assembly, a driving assembly and a cleaning assembly, wherein the belt conveyor is arranged in the supporting conveying frame, two groups of mounting assemblies are arranged on two sides of the bottom wall of the upper end of the supporting conveying frame, the driving motor is arranged on one side of the mounting assembly, the driving shaft is arranged at the output end of the driving motor, the driving gear is arranged at one end of the driving shaft, the mounting half gear is arranged on the side wall of the mounting assembly, the mounting half gear is meshed with the driving gear, the connecting frame is arranged on the side wall of the mounting shaft, the adjusting motor is arranged above the connecting frame, the adjusting shaft is arranged at one end of the adjusting shaft, the transmission shaft is arranged on the bottom wall of the connecting frame, the transmission half gear is arranged on the side wall of the transmission shaft, the transmission half gear is meshed with the adjusting gear, the material guiding frame is arranged at the lower end of the transmission shaft, the dust collection assembly is arranged on the bottom wall of the supporting conveying frame, the dust collection assembly is arranged on the side wall, and the driving assembly is arranged on the side wall of the cleaning assembly.
Preferably, when the loading machine is in the in-process of using, grain is firstly carried to the inside of storing the storehouse in succession through belt conveyor, in order to prevent that grain from piling up in storing the storehouse in part, driving motor starts, its output passes through the drive shaft and drives drive gear rotation, drive gear meshes with the installation half-gear mutually, thereby the drive installation axle is rotatory, the installation axle then carries out longitudinal angle's regulation through the link drive guide frame, ensure that grain can evenly distributed, simultaneously, accommodate motor also starts, its output passes through the regulating spindle and drives the regulating gear rotation, regulating gear meshes with the transmission half-gear mutually, and then drive the transmission shaft rotation, the transverse angle of guide frame is realized to the transmission shaft rethread link, in this way, through driving motor and accommodate motor's synergism, can nimble adjust the angle of guide frame, make grain carry out multidirectional multi-angle's guide transport through the guide frame, effectively avoided grain piling up problem in storing the storehouse, improve the uniformity of storehouse efficiency and grain storage, in addition, can carry out high-efficient collection and handling to the dust through dust, simultaneously, start drive assembly then can drive the subassembly and rotate, and adjust the subassembly and carry the clearance subassembly through the dust clearance belt that can effectively clear up the surface.
Preferably, the mounting assembly comprises mounting blocks and mounting shafts, two groups of mounting blocks are arranged on two sides of the bottom wall of the upper end of the supporting conveying frame, the mounting shafts are arranged in the mounting blocks, and two ends of each mounting shaft are rotatably connected with the interiors of the two groups of mounting blocks.
The dust collection assembly comprises a collection bin, a dust collector and a dust collection hose, wherein the collection bin is arranged on the bottom wall of the supporting conveying frame, the dust collectors are arranged on two sides of the collection bin, and the dust collection hose is arranged on one side of the dust collector.
The dust collection assembly preferably further comprises dust collection side pipes, one end of each dust collection hose is provided with the dust collection side pipes, two groups of the dust collection side pipes are arranged, and the two groups of the dust collection side pipes are respectively arranged on two sides of the material guide frame.
The collecting bin is arranged on one side of the collecting bin, the driving shaft is arranged at the output end of the driving motor, and the driving gear is arranged at one end of the driving shaft.
Preferably, the driving assembly further comprises a driven shaft and a driven gear, the driven shaft is arranged in the collecting bin, one end of the driven shaft is provided with the driven gear, and the driving gear is meshed with the driven gear.
The cleaning assembly comprises a cleaning rolling brush, wherein the cleaning rolling brush is arranged on the side wall of the driven shaft and is arranged in the collecting bin.
The utility model has the beneficial effects that:
When the bin loader is in use, grains are continuously conveyed to the inside of the storage bin through the belt conveyor, in order to prevent the grains from being locally piled up in the storage bin, the driving motor is started, the output end of the driving motor drives the driving gear to rotate through the driving shaft, the driving gear is meshed with the mounting half gear, the mounting shaft is driven to rotate, the mounting shaft drives the material guide frame to adjust the longitudinal angle through the connecting frame, grains can be uniformly distributed, meanwhile, the adjusting motor is started, the output end of the adjusting motor drives the adjusting gear to rotate through the adjusting shaft, the adjusting gear is meshed with the transmission half gear, the driving shaft is further driven to rotate, and the transverse angle of the material guide frame is adjusted through the connecting frame.
Drawings
FIG. 1 shows a schematic view of a first perspective construction of a grain-specific loader according to the present utility model;
FIG. 2 shows a schematic view of a first partial perspective view of a grain-specific loader according to the present utility model;
FIG. 3 is a schematic view showing a second partial perspective view of a grain-specific loader according to the present utility model;
FIG. 4 shows a third partial perspective view of a grain-specific loader according to the present utility model;
The reference numerals are 1, a supporting conveying frame, 2, a belt conveyor, 3, a mounting half gear, 4, a driving motor, 5, a driving shaft, 6, a driving gear, 7, a connecting frame, 8, a regulating motor, 9, a regulating shaft, 10, a regulating gear, 11, a transmission shaft, 12, a transmission half gear, 13, a material guiding frame, 101, a mounting block, 102, a mounting shaft, 201, a collecting bin, 202, a dust collector, 203, a dust collecting hose, 204, a dust collecting side pipe, 301, a driving motor, 302, a driving shaft, 303, a driving gear, 304, a driven shaft, 305, a driven gear and 401, and cleaning a rolling brush.
Detailed Description
The utility model is further described below with reference to the drawings and examples.
Referring to fig. 1-4, the utility model provides an embodiment of a special grain bin loader, which comprises a supporting conveying frame 1, a belt conveyor 2, a mounting half gear 3, a driving motor 4, a driving shaft 5, a driving gear 6, a connecting frame 7, an adjusting motor 8, an adjusting shaft 9, an adjusting gear 10, a transmission shaft 11, a transmission half gear 12, a material guiding frame 13, a mounting component, a dust collection component, a driving component and a cleaning component, wherein the belt conveyor 2 is arranged in the supporting conveying frame 1, two groups of mounting components are arranged on two sides of the bottom wall of the upper end of the supporting conveying frame 1, one side of the mounting component is provided with the driving motor 4, the output end of the driving motor 4 is provided with the driving shaft 5, one end of the driving shaft 5 is provided with the driving gear 6, the side wall of the mounting component is provided with the mounting half gear 3, the mounting half gear 3 is meshed with the driving gear 6, the side wall of the mounting shaft 102 is provided with the connecting frame 7, the adjusting motor 8 is arranged above the connecting frame 7, the output end of the adjusting motor 8 is provided with the adjusting shaft 9, one end of the adjusting shaft 9 is provided with the adjusting gear 10, the bottom wall 11 is provided with the bottom wall 11 of the transmission shaft 7 is provided with the driving half gear 12, the bottom wall 11 is provided with the driving component is meshed with the side wall 11, and the dust collection component is provided with the side wall 11 is meshed with the driving component is provided with the side wall 12.
Referring to fig. 2, the installation assembly comprises an installation block 101 and an installation shaft 102, two groups of installation blocks 101 are arranged on two sides of the bottom wall of the upper end of the supporting conveying frame 1, the installation shaft 102 is arranged in the installation block 101, two ends of the installation shaft 102 are rotatably connected with the interiors of the two groups of installation blocks 101, the installation shaft 102 can be firmly installed through the installation blocks 101, the dust collection assembly comprises a collection bin 201, a dust collector 202 and a dust collection hose 203, the collection bin 201 is arranged on the bottom wall of the supporting conveying frame 1, the dust collectors 202 are arranged on two sides of the collection bin 201, the dust collection hose 203 is arranged on one side of the dust collector 202, the dust collectors 202 are started to collect dust in the collection bin 201 through the dust collection hose 203, the dust collection assembly further comprises a dust collection side pipe 204, one end of the dust collection hose 203 is provided with the dust collection side pipe 204, the dust collection side pipe 204 is provided with two groups, the two groups of dust collection side pipes 204 are respectively arranged on two sides of the guide frame 13, when grains are guided into the guide frame 13, a certain amount of dust is generated along with falling of grains, the dust collection bin 202 is started, and the dust collectors 202 are required to be quickly sucked into the collection bin 201 through the dust collection hoses, and the dust collection hoses 201 are required to be quickly sucked into the dust collection bin 13.
Referring to fig. 3-4, in this embodiment, the driving assembly includes a driving motor 301, a driving shaft 302, and a driving gear 303, one side of the collecting bin 201 is provided with the driving motor 301, an output end of the driving motor 301 is provided with the driving shaft 302, one end of the driving shaft 302 is provided with the driving gear 303, after the driving motor 301 is started, the driving shaft 302 drives the driving gear 303 to rotate, the driving assembly further includes a driven shaft 304 and a driven gear 305, the driven shaft 304 is provided with the driven gear 305 at one end of the driven shaft 304, the driving gear 303 is meshed with the driven gear 305, the driven gear 305 and the driven shaft 304 are further driven to rotate synchronously, the cleaning assembly includes a cleaning roller brush 401, a cleaning roller brush 401 is provided on a side wall of the driven shaft 304, the cleaning roller brush 401 is provided in the collecting bin 201, the driven shaft 304 drives the cleaning roller brush 401 to start to rotate in an adjusting manner, the cleaning roller brush 401 can effectively contact and clean residues and dust on a surface of a conveying belt, and the cleaned dust is directly collected in the collecting bin 201 below, and efficient automatic cleaning and dust collecting of the conveying belt is achieved.
When the bin loader is in use, grains are continuously conveyed into the storage bin through the belt conveyor 2, in order to prevent the grains from being locally accumulated in the storage bin, the driving motor 4 is started, the output end of the driving motor is used for driving the driving gear 6 to rotate through the driving shaft 5, the driving gear 6 is meshed with the mounting half gear 3, so that the mounting shaft 102 is driven to rotate, and the mounting shaft 102 is used for driving the material guide frame 13 to adjust the longitudinal angle through the connecting frame 7, so that the grains can be uniformly distributed;
Meanwhile, the regulating motor 8 is started, the output end of the regulating motor drives the regulating gear 10 to rotate through the regulating shaft 9, the regulating gear 10 is meshed with the transmission half gear 12, the transmission shaft 11 is further driven to rotate, and the transmission shaft 11 is connected with the connecting frame 7 to realize the transverse angle regulation of the material guiding frame 13, so that the angle of the material guiding frame 13 can be flexibly regulated through the synergistic effect of the driving motor 4 and the regulating motor 8, so that grains are guided and conveyed in multiple directions and multiple angles through the material guiding frame 13, the problem of accumulation of the grains in a storage bin is effectively avoided, and the loading efficiency and the uniformity of grain storage are improved;
In addition, when grains are guided into the guide frame 13, a certain amount of dust is generated along with the falling of the grains, at the moment, only the dust collectors 202 at the two sides are started, and the dust collectors 202 can rapidly and effectively suck the dust at the two sides of the guide frame 13 into the collecting bin 201 through the dust collecting hose 203 and the dust collecting side pipe 204, so that the efficient collection and treatment of the dust are realized;
And, after the driving motor 301 is started, the driving shaft 302 drives the driving gear 303 to rotate, and then drives the driven gear 305 and the driven shaft 304 to synchronously rotate, and finally the cleaning rolling brush 401 on the driven shaft 304 starts to regulate and rotate, and the rotating process enables the cleaning rolling brush 401 to effectively contact and clean residues and dust on the surface of the conveying belt, and the cleaned dust is directly collected into the collecting bin 201 below, so that efficient automatic cleaning and centralized dust treatment of the conveying belt are realized.
Through the steps, when the bin loader is in use, grains are continuously conveyed to the inside of the storage bin through the belt conveyor 2, the driving motor 4 is started to prevent grains from being locally piled up in the storage bin, the output end of the driving motor 4 drives the driving gear 6 to rotate through the driving shaft 5, the driving gear 6 is meshed with the mounting half gear 3, thereby the mounting shaft 102 is driven to rotate, the mounting shaft 102 drives the material guide frame 13 through the connecting frame 7 to adjust the longitudinal angle, grains can be uniformly distributed, meanwhile, the adjusting motor 8 is also started, the output end of the adjusting motor drives the adjusting gear 10 to rotate through the adjusting shaft 9, the adjusting gear 10 is meshed with the transmission half gear 12, the driving shaft 11 is further driven to rotate, the transverse angle of the material guide frame 13 is adjusted through the connecting frame 7, and thus, the angle of the material guide frame 13 can be flexibly adjusted through the cooperative action of the driving motor 4 and the adjusting motor 8, the grains are conveyed through the material guide frame 13 in a multi-direction mode, the piling problem of the grains in the storage bin is effectively avoided, the bin loading efficiency and the uniformity of the grains in the storage are improved, the dust collection component can be effectively cleaned, and the dust collection component can be effectively cleaned by the driving component can be effectively cleaned, and the dust collection component can be effectively cleaned, and the dust can be effectively cleaned, and the surface can be cleaned, and the dust can be effectively cleaned, and the components can be effectively cleaned.
The embodiments of the present utility model have been described in detail with reference to the drawings, but the present utility model is not limited to the above embodiments, and various changes can be made within the knowledge of those skilled in the art without departing from the spirit of the present utility model.

Claims (7)

1. The special grain bin loader comprises a supporting conveying frame (1), and is characterized by further comprising a belt conveyor (2), an installation half gear (3), a driving motor (4), a driving shaft (5), a driving gear (6), a connecting frame (7), an adjusting motor (8), an adjusting shaft (9), an adjusting gear (10), a transmission shaft (11), a transmission half gear (12), a material guiding frame (13), an installation component, a dust collection component, a driving component and a cleaning component, wherein the belt conveyor (2) is arranged in the supporting conveying frame (1), two groups of installation components are arranged on two sides of the bottom wall of the upper end of the supporting conveying frame (1), one side of the installation component is provided with the driving motor (4), the output end of the driving motor (4) is provided with the driving shaft (5), one end of the driving shaft (5) is provided with the driving gear (6), the side wall of the installation component is provided with the installation half gear (3), the installation half gear (3) is meshed with the driving gear (6), the connecting frame (7) is arranged on the side wall of the installation shaft (102), the adjusting motor (8) is arranged above the connecting frame (7), the adjusting motor (8) is arranged at one end of the adjusting shaft (9), be provided with transmission shaft (11) on the diapire of link (7), be provided with transmission half gear (12) on the lateral wall of transmission shaft (11), transmission half gear (12) and adjusting gear (10) meshing, the lower extreme of transmission shaft (11) is provided with guide frame (13), is provided with dust absorption subassembly on the diapire of support carriage (1), and dust absorption subassembly's inside is provided with drive assembly, is provided with cleaning assembly on drive assembly's the lateral wall.
2. The special grain bin loader according to claim 1, wherein the mounting assembly comprises mounting blocks (101) and mounting shafts (102), two groups of mounting blocks (101) are arranged on two sides of the bottom wall of the upper end of the supporting conveying frame (1), the mounting shafts (102) are arranged in the mounting blocks (101), and two ends of the mounting shafts (102) are rotatably connected with the interiors of the two groups of mounting blocks (101).
3. The grain special bin loader according to claim 1, wherein the dust collection assembly comprises a collection bin (201), a dust collector (202) and a dust collection hose (203), the collection bin (201) is arranged on the bottom wall of the support conveying frame (1), the dust collectors (202) are arranged on two sides of the collection bin (201), and the dust collection hose (203) is arranged on one side of the dust collector (202).
4. The grain-dedicated bin loader according to claim 3, wherein the dust collection assembly further comprises dust collection side pipes (204), one end of the dust collection hose (203) is provided with the dust collection side pipes (204), the dust collection side pipes (204) are provided with two groups, and the two groups of dust collection side pipes (204) are respectively arranged on two sides of the material guide frame (13).
5. A grain special-purpose bin loader according to claim 3, wherein the driving assembly comprises a driving motor (301), a driving shaft (302) and a driving gear (303), the driving motor (301) is arranged on one side of the collecting bin (201), the driving shaft (302) is arranged at the output end of the driving motor (301), and the driving gear (303) is arranged at one end of the driving shaft (302).
6. The grain-dedicated storage machine according to claim 3, wherein the driving assembly further comprises a driven shaft (304) and a driven gear (305), the driven shaft (304) is arranged in the collection bin (201), the driven gear (305) is arranged at one end of the driven shaft (304), and the driving gear (303) is meshed with the driven gear (305).
7. The grain special-purpose bin loader according to claim 6, wherein the cleaning assembly comprises a cleaning rolling brush (401), the cleaning rolling brush (401) is arranged on the side wall of the driven shaft (304), and the cleaning rolling brush (401) is arranged in the collecting bin (201).
CN202423115340.7U 2024-12-17 2024-12-17 Special grain loading machine Active CN223521897U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202423115340.7U CN223521897U (en) 2024-12-17 2024-12-17 Special grain loading machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202423115340.7U CN223521897U (en) 2024-12-17 2024-12-17 Special grain loading machine

Publications (1)

Publication Number Publication Date
CN223521897U true CN223521897U (en) 2025-11-07

Family

ID=97537872

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202423115340.7U Active CN223521897U (en) 2024-12-17 2024-12-17 Special grain loading machine

Country Status (1)

Country Link
CN (1) CN223521897U (en)

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