CN111330710A - Working method of medicinal material pulverizer - Google Patents

Working method of medicinal material pulverizer Download PDF

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Publication number
CN111330710A
CN111330710A CN202010138121.8A CN202010138121A CN111330710A CN 111330710 A CN111330710 A CN 111330710A CN 202010138121 A CN202010138121 A CN 202010138121A CN 111330710 A CN111330710 A CN 111330710A
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China
Prior art keywords
rolling
crank
lifting
crushing
pushing
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CN202010138121.8A
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Chinese (zh)
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不公告发明人
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Individual
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Individual
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Priority to CN202010138121.8A priority Critical patent/CN111330710A/en
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B02CRUSHING, PULVERISING, OR DISINTEGRATING; PREPARATORY TREATMENT OF GRAIN FOR MILLING
    • B02CCRUSHING, PULVERISING, OR DISINTEGRATING IN GENERAL; MILLING GRAIN
    • B02C19/00Other disintegrating devices or methods
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B02CRUSHING, PULVERISING, OR DISINTEGRATING; PREPARATORY TREATMENT OF GRAIN FOR MILLING
    • B02CCRUSHING, PULVERISING, OR DISINTEGRATING IN GENERAL; MILLING GRAIN
    • B02C2/00Crushing or disintegrating by gyratory or cone crushers
    • B02C2/10Crushing or disintegrating by gyratory or cone crushers concentrically moved; Bell crushers
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B02CRUSHING, PULVERISING, OR DISINTEGRATING; PREPARATORY TREATMENT OF GRAIN FOR MILLING
    • B02CCRUSHING, PULVERISING, OR DISINTEGRATING IN GENERAL; MILLING GRAIN
    • B02C23/00Auxiliary methods or auxiliary devices or accessories specially adapted for crushing or disintegrating not provided for in preceding groups or not specially adapted to apparatus covered by a single preceding group

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  • Engineering & Computer Science (AREA)
  • Food Science & Technology (AREA)
  • Mechanical Engineering (AREA)
  • Crushing And Grinding (AREA)

Abstract

The invention relates to a pulverizer, in particular to a working method of a medicinal material pulverizer, wherein the medicinal material pulverizer comprises a complete machine support, a power mechanism, a pushing mechanism, a rolling mechanism, a crank mechanism, a connecting rod I, a slider crank, a lifting mechanism, a connecting rod II, a lifting baffle, a transmission mechanism and a pulverizing mechanism, the power mechanism is fixedly connected to the complete machine support, the pushing mechanism is rotatably connected to the complete machine support, the rolling mechanism is slidably connected to the complete machine support, a compression spring is arranged between the rolling mechanism and the complete machine support, the upper end of the rolling mechanism is in contact with the pushing mechanism, the pushing mechanism is connected to the complete machine support, the crank mechanism, the lifting mechanism and the transmission mechanism are rotatably connected to the complete machine support, medicinal materials can be pulverized for the second time according to hardness, medicinal materials with smaller hardness are pulverized once by the rolling mechanism and are directly rolled and molded, medicinal materials with larger hardness are pulverized by the crank mechanism once rolling and are pushed by the And (5) performing secondary crushing on the bean curd.

Description

Working method of medicinal material pulverizer
Technical Field
The invention relates to a pulverizer, in particular to a working method of a medicinal material pulverizer.
Background
For example, patent No. CN201420114990.7 discloses a medicinal material crusher, comprising: the feeding device and the crushing device are connected with the feeding device and are used for primarily crushing the medicinal materials into powder; the fan is provided with an air chamber, a rotating shaft and a material pushing pipe, wherein the rotating shaft is arranged in the air chamber, and the air chamber is connected with the material pushing pipe. The cyclone separator is provided with a cylinder wall, a wind-dispelling cloth bag and a material return pipe, powder with different mass is distinguished, one end of the wind-dispelling cloth bag is connected with the cylinder wall, and the material return pipe is connected with the crushing device; the utility model has the defect that the medicinal materials can not be secondarily crushed according to the hardness.
Disclosure of Invention
The invention aims to provide a medicinal material crusher, which can crush medicinal materials for the second time according to hardness, wherein the medicinal materials with lower hardness are directly rolled and molded by primary crushing, and the medicinal materials with higher hardness are distinguished by primary rolling and then crushed for the second time.
The purpose of the invention is realized by the following technical scheme:
a working method of a medicinal material pulverizer comprises a complete machine support, a power mechanism, a pushing mechanism, a rolling mechanism, a crank mechanism, a connecting rod I, a crank block, a lifting mechanism, a connecting rod II, a lifting baffle, a transmission mechanism and a pulverizing mechanism, wherein the power mechanism is connected to the complete machine support, the pushing mechanism is connected to the complete machine support, the rolling mechanism is slidably connected to the complete machine support, the upper end of the rolling mechanism is in contact with the pushing mechanism, the crank mechanism, the lifting mechanism and the transmission mechanism are rotatably connected to the complete machine support, the crank mechanism, the lifting mechanism and the transmission mechanism are respectively connected with the power mechanism through belt transmission, the upper end of the connecting rod I is hinged to an eccentric position of the crank mechanism, the lower end of the connecting rod I is hinged to the crank block, the crank block is slidably connected to the complete machine support, and the upper end of, the lower end of the connecting rod II is hinged to the lifting baffle, the lifting baffle is connected to the whole machine support in a sliding mode, the crushing mechanism is connected to the whole machine support in a rotating mode, and the transmission mechanism and the crushing mechanism are in meshing transmission through gears.
As a further optimization of the technical scheme, the invention relates to a medicinal material crusher, wherein a complete machine support comprises side plates, a connecting plate, a primary crushing barrel, a secondary crushing barrel, a connecting bending plate, a rear side plate, a circular through hole, a vertical sliding groove, a spiral groove, a feeding port, a secondary discharging port and a pushing port, the two side plates are symmetrically arranged at the left and right, the left and right ends of the connecting plate are respectively and fixedly connected to the middle ends of the two side plates, the two ends of the primary crushing barrel are respectively and fixedly connected to the two side plates, the primary crushing barrel is positioned at the lower side of the connecting plate, the two ends of the secondary crushing barrel are respectively and fixedly connected to the front ends of the two side plates, the secondary crushing barrel is positioned at the lower side of the front end of the primary crushing barrel, the two ends of the connecting bending plate are respectively and fixedly connected to the primary crushing barrel and the secondary crushing barrel, the lower end, the front end fixed connection of posterior lateral plate is on the curb plate that is located the right side, and circular through-hole is provided with two, and two circular through-holes all set up on the connecting plate, and vertical sliding tray bilateral symmetry is provided with two, and two vertical sliding trays set up respectively on two curb plates, and the helicla flute sets up on primary crushing barrel, and the pan feeding mouth sets up the middle-end in primary crushing barrel front side, and the secondary discharge gate sets up both ends around primary crushing barrel downside respectively with pushing away the material mouth.
As a further optimization of the technical scheme, the medicinal material pulverizer provided by the invention comprises a power mechanism, wherein the power mechanism comprises a motor, a power belt pulley I and a power belt pulley II, the motor is a motor with double output shafts, the diameters of the power belt pulley I and the power belt pulley II are the same, the power belt pulley I and the power belt pulley II are respectively and fixedly connected to the left end and the right end of the output shaft of the motor, and the motor is fixedly connected to a side plate on the right side.
As a further optimization of the technical scheme, the medicinal material pulverizer provided by the invention comprises a pushing mechanism, wherein the pushing mechanism comprises a pushing shaft, a pushing motor and a pushing cam, an output shaft of the pushing motor is fixedly connected to the right end of the pushing shaft, the pushing motor is fixedly connected to a side plate on the right side, the pushing cam is fixedly connected to the middle end of the pushing shaft, and two ends of the pushing shaft are respectively and rotatably connected to two side plates.
As a further optimization of the technical scheme, the invention relates to a medicinal material crusher, wherein a rolling mechanism comprises a rolling cylinder, rolling columns, rolling bending plates, two rolling wheels, rolling discs, rolling sliding bodies and rolling baffles, the rolling columns are provided with two rolling wheels, the lower ends of the two rolling columns are fixedly connected to the rolling cylinder, the upper ends of the two rolling columns are fixedly connected to the rolling bending plates, the rolling wheels are rotatably connected to the rolling bending plates, circular rotating grooves are formed in the rolling discs, the lower ends of the rolling cylinders are rotatably connected to the circular rotating grooves formed in the rolling discs, the rolling sliding bodies are fixedly connected to the rolling discs, the rolling baffles are in clearance fit with the rolling cylinder, the lower ends of the inner sides of the rolling baffles are in contact with the rolling cylinder, the lower ends of the outer sides of the rolling baffles are in contact with the rolling discs, the two rolling columns are respectively and slidably connected to the two circular through holes, all the sleeves are provided with compression springs on the two rolling columns, the compression springs are positioned between the rolling bending plate and the connecting plate, the rolling wheels are in contact with the pushing cams, and the rolling sliding bodies are in sliding connection in the spiral grooves.
As a further optimization of the technical scheme, the medicinal material crusher comprises a crank mechanism, a crank and a crank belt wheel, wherein the crank and the crank belt wheel are fixedly connected to the left end and the right end of the crank shaft respectively, the crank shaft is rotatably connected to a side plate on the right side, the crank belt wheel is in transmission connection with a power belt wheel II through a belt, the diameters of the crank belt wheel and the power belt wheel II are the same, one end of a connecting rod I is hinged to the eccentric position of the crank, the other end of the connecting rod I is hinged to a crank sliding block, the crank sliding block is connected in a material pushing opening in a sliding mode, and two sides of the crank sliding block are in.
As a further optimization of the technical scheme, the medicinal material pulverizer provided by the invention comprises a lifting mechanism, a lifting belt wheel and a lifting crank, wherein the lifting belt wheel and the lifting crank are respectively and fixedly connected to the left end and the right end of the lifting shaft, the lifting shaft is rotatably connected to a side plate on the left side, the lifting belt wheel is in transmission connection with a power belt wheel I through a belt, the diameters of the lifting belt wheel and the power belt wheel I are the same, and the upper end of a connecting rod II is hinged to the eccentric position of the lifting crank.
As a further optimization of the technical scheme, the medicinal material pulverizer provided by the invention comprises a lifting baffle plate and a lifting arc plate, wherein the lifting arc plate is fixedly connected to the lifting sliding plate, the lower end of the connecting rod ii is hinged to the lifting sliding plate, two ends of the lifting sliding plate are respectively connected to two vertical sliding grooves in a sliding manner, and the lifting arc plate and the secondary discharge hole are located at the same position.
As a further optimization of the technical scheme, the medicinal material pulverizer comprises a transmission mechanism, a transmission belt wheel and a transmission bevel gear, wherein the transmission belt wheel and the transmission bevel gear are fixedly connected to the left end and the right end of the transmission shaft respectively, the transmission shaft is rotatably connected to a side plate on the left side, and the transmission belt wheel is in transmission connection with a power belt wheel I through a belt.
As a further optimization of the technical scheme, the crushing mechanism comprises a crushing shaft, crushing conical teeth and a crushing conical body, the crushing conical teeth are fixedly connected to the upper end of the crushing shaft, the crushing conical body is fixedly connected to the middle end of the crushing shaft, the lower end of the crushing shaft is rotatably connected to a secondary crushing barrel, the crushing conical body is arranged in the secondary crushing barrel, the diameter of the upper end of the crushing conical body is smaller than that of the lower end of the crushing conical body, and the crushing conical teeth are meshed with the transmission conical teeth.
The working method of the medicinal material pulverizer comprises the following steps:
when the device is used, medicinal materials to be crushed are placed in the primary crushing barrel through the feeding port, the material pushing port and the secondary material outlet are respectively blocked by the crank slider and the lifting arc plate in an initial state, and the medicinal materials cannot fall off; starting a pushing motor, driving a pushing shaft to rotate by an output shaft of the pushing motor, driving the pushing cam to rotate by the pushing shaft, pushing the rolling wheel to move up and down by the pushing cam through the reaction force on a compression spring, driving the rolling wheel to move up and down the rolling bending plate, pushing two rolling columns to slide in two circular through holes respectively by the rolling bending plate, moving the rolling cylinder up and down, pushing the rolling disc to move up and down, generating autorotation by the rolling disc through the sliding of a rolling sliding body in a spiral groove, generating autorotation by the rolling disc while moving up and down, rolling the medicinal material in a primary crushing cylinder once by the movement of the rolling disc, separating the medicinal material which can be primarily rolled through a plurality of filtering holes arranged on the primary crushing cylinder, and not being primarily rolled and being left in the primary crushing cylinder through a plurality of filtering holes arranged on the primary crushing cylinder, when the pushing motor rotates to roll the medicinal materials, stopping the pushing motor when the rolling disc moves to the upper limit position, and starting the starting motor; when the output shaft of the motor starts to rotate, the output shaft of the motor drives a power belt pulley I and a power belt pulley II to start to rotate, the diameters of the power belt pulley I and the power belt pulley II are the same, the power belt pulley II drives a crank belt pulley to rotate, the crank belt pulley drives a crank shaft to rotate, the crank shaft drives a connecting rod I to move, the connecting rod I pushes a crank block to slide in a material pushing opening, the crank block pushes medicinal materials which cannot be preliminarily ground in a primary crushing cylinder into a connecting bending plate through a secondary discharge opening, the power belt pulley I drives a lifting belt pulley to move, the lifting belt pulley drives a lifting shaft to move, the lifting shaft drives the lifting crank to move, the lifting crank drives the connecting rod II to move, the connecting rod II drives the lifting sliding plate to slide in two vertical sliding grooves, and the lifting sliding plate drives a lifting arc plate to move, the lifting arc plate does not block a material pushing opening, the diameters of the power belt wheel I and the power belt wheel II are the same, the diameters of the pushing motor and the power belt wheel II are the same, the diameters of the crank belt wheel and the power belt wheel II are the same, the diameters of the lifting belt wheel and the power belt wheel I are the same, the transmission ratios are the same, the movement periods are synchronous, the crank slider moves to the front side limit position to push out the medicinal materials, and the lifting arc plate moves to the upper side limit position and does not block the material discharging opening; the medicinal material drops and falls to the regrinding section of thick bamboo through connecting the board of bending, driving pulley I drives driving pulley and rotates, driving pulley drives the transmission shaft and rotates, the transmission shaft drives the transmission awl tooth and rotates, the transmission awl tooth drives crushing awl tooth and rotates, it drives crushing axle and rotates to smash the awl tooth, crushing axle drives the medicinal material of smashing in with the regrinding section of thick bamboo and further smashes and pass through a plurality of filtration pore separations that set up on the regrinding section of thick bamboo, stop motor when slider crank and lift arc plug up the feed pushing opening and secondary discharge gate respectively and reply initial condition.
The medicinal material pulverizer disclosed by the invention has the beneficial effects that:
according to the medicinal material pulverizer, medicinal materials can be secondarily pulverized according to hardness, the medicinal materials with lower hardness are directly pulverized and molded by the grinding mechanism in a one-time pulverization mode, and the medicinal materials with higher hardness are divided by the crank mechanism to push the crank slide block to be secondarily pulverized through the pulverizing mechanism in the one-time pulverization mode.
Drawings
The invention is described in further detail below with reference to the accompanying drawings and specific embodiments.
FIG. 1 is a schematic view of the overall structure of the pulverizer for medicinal materials according to the present invention;
FIG. 2 is a rear view schematic diagram of the medicinal material crusher of the present invention;
FIG. 3 is a schematic view of the overall bracket structure of the present invention;
FIG. 4 is a schematic view of a primary crushing cylinder according to the present invention;
FIG. 5 is a rear view schematic of the primary grinding cylinder of the present invention;
FIG. 6 is a schematic view of the construction of the secondary grinding cylinder of the present invention;
FIG. 7 is a schematic diagram of a power mechanism according to the present invention;
FIG. 8 is a schematic view of the pushing mechanism of the present invention;
FIG. 9 is a schematic view of the rolling mechanism of the present invention;
FIG. 10 is a schematic cross-sectional view of the rolling mechanism of the present invention;
FIG. 11 is a schematic structural view of the crank mechanism of the present invention;
FIG. 12 is a schematic view of the crank block configuration of the present invention;
FIG. 13 is a schematic view of the lift mechanism of the present invention;
FIG. 14 is a schematic view of the lift stop construction of the present invention;
FIG. 15 is a schematic view of the transmission mechanism of the present invention;
figure 16 is a schematic view of the shredder mechanism of the present invention.
In the figure: a complete machine bracket 1; 1-1 of a side plate; a connecting plate 1-2; 1-3 of a primary crushing cylinder; 1-4 parts of a secondary crushing cylinder; connecting the bending plates 1-5; 1-6 parts of a rear side plate; 1-7 of a circular through hole; 1-8 of a vertical sliding groove; 1-9 of spiral groove; a feeding port is 1-10; 1-11 parts of a secondary discharge port; 1-12 parts of a material pushing port; a power mechanism 2; a motor 2-1; a power belt wheel I2-2; a power belt pulley II 2-3; a pushing mechanism 3; pushing the shaft 3-1; a push motor 3-2; pushing the cam 3-3; a rolling mechanism 4; 4-1 of a grinding cylinder; grinding the column 4-2; 4-3, rolling the bent plate; 4-4 of a rolling wheel; 4-5 of a rolling disc; rolling 4-6 parts of a sliding body; rolling 4-7 of a baffle plate; a crank mechanism 5; a crankshaft 5-1; 5-2 of a crank; 5-3 of a crank belt wheel; a connecting rod I6; a crank block 7; a lifting mechanism 8; a lifting shaft 8-1; a lifting belt wheel 8-2; 8-3 of a lifting crank; a connecting rod II 9; a lifting baffle 10; a lifting slide plate 10-1; a lifting arc plate 10-2; a transmission mechanism 11; a transmission shaft 11-1; a driving pulley 11-2; the transmission bevel gear 11-3; a crushing mechanism 12; a crushing shaft 12-1; crushing bevel teeth 12-2; and (3) crushing the conical body 12-3.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings.
The first embodiment is as follows:
the embodiment is described below with reference to fig. 1 to 16, a medicinal material crusher comprises a complete machine support 1, a power mechanism 2, a pushing mechanism 3, a rolling mechanism 4, a crank mechanism 5, a connecting rod i 6, a slider-crank 7, a lifting mechanism 8, a connecting rod ii 9, a lifting baffle 10, a transmission mechanism 11 and a crushing mechanism 12, wherein the power mechanism 2 is connected to the complete machine support 1, the pushing mechanism 3 is connected to the complete machine support 1, the rolling mechanism 4 is slidably connected to the complete machine support 1, the upper end of the rolling mechanism 4 is in contact with the pushing mechanism 3, the crank mechanism 5, the lifting mechanism 8 and the transmission mechanism 11 are rotatably connected to the complete machine support 1, the crank mechanism 5, the lifting mechanism 8 and the transmission mechanism 11 are respectively connected with the power mechanism 2 through belt transmission, the upper end of the connecting rod i 6 is hinged to an eccentric position of the crank mechanism 5, the lower end of the connecting rod i 6, the crank slider 7 is connected to the complete machine support 1 in a sliding mode, the upper end of the connecting rod II 9 is hinged to the eccentric position of the lifting mechanism 8, the lower end of the connecting rod II 9 is hinged to the lifting baffle 10, the lifting baffle 10 is connected to the complete machine support 1 in a sliding mode, the crushing mechanism 12 is connected to the complete machine support 1 in a rotating mode, and the transmission mechanism 11 and the crushing mechanism 12 are in meshing transmission through gears; can carry out the regrinding to the medicinal material according to hardness, the medicinal material that hardness is less once smashes through rolling mechanism 4 and directly rolls the shaping, and the medicinal material that hardness is great is once rolled and is promoted slider-crank 9 and distinguish by crank mechanism 7 and carry out the regrinding through rubbing crusher constructs 12.
The second embodiment is as follows:
the embodiment is described below with reference to fig. 1-16, and the embodiment further describes the first embodiment, where the complete machine support 1 includes side plates 1-1, a connecting plate 1-2, a primary crushing cylinder 1-3, a secondary crushing cylinder 1-4, connecting bending plates 1-5, rear side plates 1-6, circular through holes 1-7, vertical sliding grooves 1-8, spiral grooves 1-9, feed openings 1-10, secondary discharge openings 1-11, and material pushing openings 1-12, the side plates 1-1 are symmetrically arranged in left and right, the left and right ends of the connecting plate 1-2 are respectively and fixedly connected to the middle ends of the two side plates 1-1, the two ends of the primary crushing cylinder 1-3 are respectively and fixedly connected to the two side plates 1-1, the primary crushing cylinder 1-3 is located on the lower side of the connecting plate 1-2, two ends of a secondary crushing cylinder 1-4 are respectively fixedly connected with the front ends of two side plates 1-1, the secondary crushing cylinder 1-4 is positioned at the lower side of the front end of a primary crushing cylinder 1-3, two ends of a connecting bending plate 1-5 are respectively fixed and communicated on the primary crushing cylinder 1-3 and the secondary crushing cylinder 1-4, the lower end surfaces of the primary crushing cylinder 1-3 and the secondary crushing cylinder 1-4 are respectively provided with a plurality of filtering holes, the rear end of the connecting bending plate 1-5 is upwards inclined, the front end of a rear side plate 1-6 is fixedly connected on the side plate 1-1 positioned at the right side, two circular through holes 1-7 are respectively arranged on a connecting plate 1-2, two vertical sliding grooves 1-8 are respectively arranged on the two side plates 1-1 in a left-right symmetrical manner, the spiral groove 1-9 is arranged on the primary crushing barrel 1-3, the feeding port 1-10 is arranged at the middle end of the front side of the primary crushing barrel 1-3, and the secondary discharging port 1-11 and the material pushing port 1-12 are respectively arranged at the front end and the rear end of the lower side of the primary crushing barrel 1-3; when in use, medicinal materials to be crushed are placed in the primary crushing barrel 1-3 through the material inlet 1-10, the material pushing port 1-12 and the secondary material outlet 1-11 are respectively blocked by the crank block 7 and the lifting arc-shaped plate 10-2 in an initial state, and the medicinal materials cannot fall off.
The third concrete implementation mode:
the embodiment is described below with reference to fig. 1 to 16, and the embodiment further describes a second embodiment, where the power mechanism 2 includes a motor 2-1, a power pulley i 2-2 and a power pulley ii 2-3, the motor 2-1 is a dual output shaft motor, the diameters of the power pulley i 2-2 and the power pulley ii 2-3 are the same, the power pulley i 2-2 and the power pulley ii 2-3 are respectively fixedly connected to the left and right ends of the output shaft of the motor 2-1, and the motor 2-1 is fixedly connected to the side plate 1-1 on the right side; when the output shaft of the motor 2-1 starts to rotate, the output shaft of the motor 2-1 drives the power belt pulley I2-2 and the power belt pulley II 2-3 to start to rotate, and the diameters of the power belt pulley I2-2 and the power belt pulley II 2-3 are the same.
The fourth concrete implementation mode:
the third embodiment is further described with reference to fig. 1 to 16, in which the pushing mechanism 3 includes a pushing shaft 3-1, a pushing motor 3-2 and a pushing cam 3-3, an output shaft of the pushing motor 3-2 is fixedly connected to the right end of the pushing shaft 3-1, the pushing motor 3-2 is fixedly connected to the side plate 1-1 on the right side, the pushing cam 3-3 is fixedly connected to the middle end of the pushing shaft 3-1, and two ends of the pushing shaft 3-1 are respectively rotatably connected to the two side plates 1-1; the pushing motor 3-2 is started, the output shaft of the pushing motor 3-2 drives the pushing shaft 3-1 to rotate, and the pushing shaft 3-1 drives the pushing cam 3-3 to rotate.
The fifth concrete implementation mode:
the following describes the present embodiment with reference to fig. 1 to 16, which further describes the fourth embodiment, the rolling mechanism 4 includes two rolling cylinders 4-1, two rolling columns 4-2, two rolling bending plates 4-3, two rolling wheels 4-4, two rolling discs 4-5, two rolling sliders 4-6 and two rolling baffles 4-7, the two rolling columns 4-2 are provided, the lower ends of the two rolling columns 4-2 are both fixedly connected to the rolling cylinders 4-1, the upper ends of the two rolling columns 4-2 are both fixedly connected to the rolling bending plates 4-3, the rolling wheels 4-4 are rotatably connected to the rolling bending plates 4-3, the rolling discs 4-5 are coaxially provided with circular rotating grooves, the lower end of the rolling cylinder 4-1 is rotatably connected to the circular rotating grooves provided on the rolling discs 4-5, the rolling sliding body 4-6 is fixedly connected to a rolling disc 4-5, a rolling baffle 4-7 is fixedly connected to the rolling disc 4-5, the rolling baffle 4-7 is in clearance fit with the rolling cylinder 4-1, the lower end of the inner side of the rolling baffle 4-7 is in contact with the rolling cylinder 4-1, the lower end of the outer side of the rolling baffle 4-7 is in contact with the rolling disc 4-5, two rolling columns 4-2 are respectively in sliding connection with two circular through holes 1-7, compression springs are sleeved on the two rolling columns 4-2, the compression springs are positioned between a rolling bending plate 4-3 and a connecting plate 1-2, the rolling wheel 4-4 is in contact with a pushing cam 3-3, and the rolling sliding body 4-6 is in a spiral groove 1-9; the pushing cam 3-3 pushes the rolling wheel 4-4 to move up and down through the reaction force on the compression spring, the rolling wheel 4-4 drives the rolling bending plate 4-3 to move up and down, the rolling bending plate 4-3 pushes the two rolling columns 4-2 to respectively slide in the two circular through holes 1-7, the rolling drum 4-1 moves up and down, the rolling drum 4-1 pushes the rolling disc 4-5 to move up and down, the rolling disc 4-5 generates autorotation through the sliding of the rolling sliding body 4-6 in the spiral groove 1-9, the rolling disc 4-5 generates autorotation during up and down movement, the rolling disc 4-5 moves to roll the medicinal material in the primary crushing drum 1-3 for one time, the medicinal material which can be primarily rolled is separated through a plurality of filtering holes arranged on the primary crushing drum 1-3, can not be primarily rolled and can not be remained in the primary crushing barrel 1-3 through a plurality of filtering holes arranged on the primary crushing barrel 1-3, when the pushing motor 3-2 rotates to roll the medicinal materials, the pushing motor 3-2 is stopped when the rolling disc 4-5 moves to the upper limit position, and the starting motor 2-1 is started.
The sixth specific implementation mode:
this embodiment will be described with reference to fig. 1 to 16, and a fifth embodiment will be further described, the crank mechanism 5 comprises a crank shaft 5-1, a crank 5-2 and a crank belt wheel 5-3, the crank 5-2 and the crank belt wheel 5-3 are respectively and fixedly connected to the left end and the right end of the crank shaft 5-1, the crank shaft 5-1 is rotatably connected to a side plate 1-1 positioned on the right side, the crank belt wheel 5-3 is connected with a power belt wheel II 2-3 through belt transmission, the diameter of the crank belt wheel 5-3 is the same as that of the power belt wheel II 2-3, one end of a connecting rod I6 is hinged to the eccentric position of the crank 5-2, the other end of the connecting rod I6 is hinged to a crank sliding block 7, the crank sliding block 7 is slidably connected into a material pushing port 1-12, and two sides of the crank sliding block 7 are respectively; the power belt wheel II 2-3 drives the crank belt wheel 5-3 to rotate, the crank belt wheel 5-3 drives the crank shaft 5-1 to rotate, the crank shaft 5-1 drives the crank 5-2 to rotate, the crank 5-2 drives the connecting rod I6 to move, the connecting rod I6 pushes the crank slider 7 to slide in the material pushing opening 1-12, and the crank slider 7 pushes medicinal materials which cannot be preliminarily rolled in the primary crushing barrel 1-3 into the connecting bending plate 1-5 through the secondary discharge opening 1-11.
The seventh embodiment:
the embodiment is described below with reference to fig. 1 to 16, and the sixth embodiment is further described in the present embodiment, where the lifting mechanism 8 includes a lifting shaft 8-1, a lifting pulley 8-2 and a lifting crank 8-3, the lifting pulley 8-2 and the lifting crank 8-3 are respectively fixedly connected to the left and right ends of the lifting shaft 8-1, the lifting shaft 8-1 is rotatably connected to the left side plate 1-1, the lifting pulley 8-2 and the power pulley i 2-2 are connected by belt transmission, the diameters of the lifting pulley 8-2 and the power pulley i 2-2 are the same, and the upper end of the connecting rod ii 9 is hinged to the eccentric position of the lifting crank 8-3; the power belt wheel I2-2 drives the lifting belt wheel 8-2 to move, the lifting belt wheel 8-2 drives the lifting shaft 8-1 to move, the lifting shaft 8-1 drives the lifting crank 8-3 to move, the lifting crank 8-3 drives the connecting rod II 9 to move, the connecting rod II 9 drives the lifting sliding plate 10-1 to slide in the two vertical sliding grooves 1-8, the lifting sliding plate 10-1 drives the lifting arc-shaped plate 10-2 to move, the lifting arc-shaped plate 10-2 does not block the material pushing opening 1-12, the diameters of the power belt wheel I2-2 and the power belt wheel II 2-3 are the same, the diameters of the pushing motor 3-2 and the power belt wheel II 2-3 are the same, the diameters of the crank belt wheel 5-3 and the power belt wheel II 2-3 are the same, the diameters of the lifting belt wheel 8-2 and the power belt wheel I2-2 are the same, the transmission ratios are the same, the movement periods are synchronous, the crank slider 7 moves to the front side limit position to push out the medicinal materials, and the lifting arc-shaped plate 10-2 moves to the upper side limit position to stop the discharge port 1-11.
The specific implementation mode is eight:
the embodiment is described below with reference to fig. 1 to 16, and the seventh embodiment is further described in the present embodiment, where the lifting baffle 10 includes a lifting sliding plate 10-1 and a lifting arc plate 10-2, the lifting arc plate 10-2 is fixedly connected to the lifting sliding plate 10-1, the lower end of the connecting rod ii 9 is hinged to the lifting sliding plate 10-1, two ends of the lifting sliding plate 10-1 are respectively slidably connected to two vertical sliding grooves 1-8, and the lifting arc plate 10-2 and the secondary discharge port 1-11 are located at the same position.
The specific implementation method nine:
the present embodiment is described below with reference to fig. 1 to 16, and the eighth embodiment is further described in the present embodiment, where the transmission mechanism 11 includes a transmission shaft 11-1, a transmission pulley 11-2 and a transmission bevel gear 11-3, the transmission pulley 11-2 and the transmission bevel gear 11-3 are respectively and fixedly connected to the left end and the right end of the transmission shaft 11-1, the transmission shaft 11-1 is rotatably connected to the side plate 1-1 located on the left side, and the transmission pulley 11-2 and the power pulley i 2-2 are connected by a belt; the medicinal material drops and drops in a secondary crushing section of thick bamboo 1-4 through connecting the board of bending 1-5, and driving pulley I2-2 drives driving pulley 11-2 and rotates, and driving pulley 11-2 drives transmission shaft 11-1 and rotates, and transmission shaft 11-1 drives transmission awl tooth 11-3 and rotates.
The detailed implementation mode is ten:
the present embodiment is described below with reference to fig. 1 to 16, and the present embodiment further describes an embodiment nine, wherein the crushing mechanism 12 includes a crushing shaft 12-1, a crushing bevel gear 12-2 and a crushing cone 12-3, the crushing bevel gear 12-2 is fixedly connected to the upper end of the crushing shaft 12-1, the crushing cone 12-3 is fixedly connected to the middle end of the crushing shaft 12-1, the lower end of the crushing shaft 12-1 is rotatably connected to the secondary crushing cylinder 1-4, the crushing cone 12-3 is arranged in the secondary crushing cylinder 1-4, the diameter of the upper end of the crushing cone 12-3 is smaller than that of the lower end, and the crushing bevel gear 12-2 is meshed with the transmission bevel gear 11-3; the transmission bevel gear 11-3 drives the crushing bevel gear 12-2 to rotate, the crushing bevel gear 12-2 drives the crushing shaft 12-1 to rotate, and the crushing shaft 12-1 drives the crushing conical body 12-3 to further crush the medicinal materials in the secondary crushing barrel 1-4 and separate the medicinal materials through a plurality of filtering holes arranged on the secondary crushing barrel 1-4.
The invention relates to a medicinal material pulverizer, which has the working principle that:
when in use, medicinal materials to be crushed are placed in the primary crushing barrel 1-3 through the material inlet 1-10, and the material pushing port 1-12 and the secondary material outlet 1-11 are respectively blocked by the crank block 7 and the lifting arc-shaped plate 10-2 in an initial state, so that the medicinal materials cannot fall off; starting a pushing motor 3-2, driving a pushing shaft 3-1 to rotate by an output shaft of the pushing motor 3-2, driving a pushing cam 3-3 to rotate by the pushing shaft 3-1, driving a rolling wheel 4-4 to move up and down by the pushing cam 3-3 through a reaction force on a compression spring, driving a rolling plate 4-3 to move up and down by the rolling wheel 4-4, driving two rolling columns 4-2 to slide in two circular through holes 1-7 respectively by the rolling plate 4-3, driving a rolling cylinder 4-1 to move up and down, driving a rolling plate 4-5 to move up and down by the rolling cylinder 4-1, generating autorotation by the rolling plate 4-5 through the sliding of a rolling sliding body 4-6 in a spiral groove 1-9, and generating autorotation while the rolling plate 4-5 moves up and down, the grinding disc 4-5 moves to grind the medicinal materials in the primary grinding cylinder 1-3 for one time, the medicinal materials which can be primarily ground are separated through a plurality of filtering holes arranged on the primary grinding cylinder 1-3, the medicinal materials which cannot be primarily ground cannot be left in the primary grinding cylinder 1-3 through a plurality of filtering holes arranged on the primary grinding cylinder 1-3, when the pushing motor 3-2 rotates to grind the medicinal materials, the pushing motor 3-2 is stopped when the grinding disc 4-5 moves to the upper limit position, and the starting motor 2-1 is started; when the output shaft of the motor 2-1 starts to rotate, the output shaft of the motor 2-1 drives the power belt pulley I2-2 and the power belt pulley II 2-3 to start to rotate, the diameters of the power belt pulley I2-2 and the power belt pulley II 2-3 are the same, the power belt pulley II 2-3 drives the crank belt pulley 5-3 to rotate, the crank belt pulley 5-3 drives the crank shaft 5-1 to rotate, the crank shaft 5-1 drives the crank 5-2 to rotate, the crank 5-2 drives the connecting rod I6 to move, the connecting rod I6 pushes the crank slider 7 to slide in the material pushing port 1-12, the crank slider 7 pushes medicinal materials which cannot be preliminarily ground in the primary crushing cylinder 1-3 into the connecting bending plate 1-5 through the secondary material outlet 1-11, the power belt wheel I2-2 drives the lifting belt wheel 8-2 to move, the lifting belt wheel 8-2 drives the lifting shaft 8-1 to move, the lifting shaft 8-1 drives the lifting crank 8-3 to move, the lifting crank 8-3 drives the connecting rod II 9 to move, the connecting rod II 9 drives the lifting sliding plate 10-1 to slide in the two vertical sliding grooves 1-8, the lifting sliding plate 10-1 drives the lifting arc-shaped plate 10-2 to move, the lifting arc-shaped plate 10-2 does not block the material pushing opening 1-12, the diameters of the power belt wheel I2-2 and the power belt wheel II 2-3 are the same, the diameters of the pushing motor 3-2 and the power belt wheel II 2-3 are the same, the diameters of the crank belt wheel 5-3 and the power belt wheel II 2-3 are the same, the diameters of the lifting belt wheel 8-2 and the power belt wheel I2-2 are the same, the transmission ratios are the same, the movement periods are synchronous, the crank slider 7 moves to the front side limit position to push out the medicinal materials, and the lifting arc-shaped plate 10-2 moves to the upper side limit position to stop the discharge port 1-11; the medicinal materials fall into a secondary crushing cylinder 1-4 through a connecting bending plate 1-5, a power belt wheel I2-2 drives a transmission belt wheel 11-2 to rotate, the transmission belt wheel 11-2 drives a transmission shaft 11-1 to rotate, the transmission shaft 11-1 drives a transmission bevel gear 11-3 to rotate, the transmission bevel gear 11-3 drives a crushing bevel gear 12-2 to rotate, the crushing bevel gear 12-2 drives a crushing shaft 12-1 to rotate, the crushing shaft 12-1 drives a crushing conical body 12-3 to further crush the medicinal materials in the secondary crushing cylinder 1-4 and separate the medicinal materials through a plurality of filter holes arranged on the secondary crushing cylinder 1-4, and when the crank sliding block 7 and the lifting arc-shaped plate 10-2 respectively block the material pushing ports 1-12 and the secondary material discharging ports 1-11 and return to the initial state, the motor 2-1 is stopped.
It is to be understood that the above description is not intended to limit the present invention, and the present invention is not limited to the above examples, and that various changes, modifications, additions and substitutions which are within the spirit and scope of the present invention and which may be made by those skilled in the art are also within the scope of the present invention.

Claims (1)

1. The utility model provides a medicinal material rubbing crusher's operating method, medicinal material rubbing crusher includes complete machine support (1), power unit (2), pushing mechanism (3), rolls mechanism (4), crank mechanism (5), connecting rod I (6), slider-crank (7), elevating system (8), connecting rod II (9), lifting baffle (10), drive mechanism (11) and rubbing crusher structure (12), its characterized in that: the power mechanism (2) is connected to the whole machine support (1), the pushing mechanism (3) is connected to the whole machine support (1), the rolling mechanism (4) is connected to the whole machine support (1) in a sliding mode, the upper end of the rolling mechanism (4) is in contact with the pushing mechanism (3), the crank mechanism (5), the lifting mechanism (8) and the transmission mechanism (11) are connected to the whole machine support (1) in a rotating mode, the crank mechanism (5), the lifting mechanism (8) and the transmission mechanism (11) are connected with the power mechanism (2) through belt transmission respectively, the upper end of the connecting rod I (6) is hinged to the eccentric position of the crank mechanism (5), the lower end of the connecting rod I (6) is hinged to the crank sliding block (7), the crank sliding block (7) is connected to the whole machine support (1), the upper end of the connecting rod II (9) is hinged to the eccentric position of the lifting mechanism (8), and the lower end of the connecting rod II (9) is, the lifting baffle (10) is connected to the whole machine bracket (1) in a sliding manner, the crushing mechanism (12) is connected to the whole machine bracket (1) in a rotating manner, and the transmission mechanism (11) and the crushing mechanism (12) are in meshing transmission through gears;
the whole machine support (1) comprises side plates (1-1), a connecting plate (1-2), a primary crushing barrel (1-3), a secondary crushing barrel (1-4), a connecting bending plate (1-5), a rear side plate (1-6), circular through holes (1-7), vertical sliding grooves (1-8), spiral grooves (1-9), a feeding port (1-10), a secondary discharging port (1-11) and a material pushing port (1-12), wherein the number of the side plates (1-1) is two, the left end and the right end of the connecting plate (1-2) are respectively and fixedly connected to the middle ends of the two side plates (1-1), the two ends of the primary crushing barrel (1-3) are respectively and fixedly connected to the two side plates (1-1), and the primary crushing barrel (1-3) is positioned on the lower side of the connecting plate (1-2), two ends of a secondary crushing cylinder (1-4) are respectively and fixedly connected with the front ends of two side plates (1-1), the secondary crushing cylinder (1-4) is positioned at the lower side of the front end of a primary crushing cylinder (1-3), two ends of a connecting bending plate (1-5) are respectively fixed on the primary crushing cylinder (1-3) and the secondary crushing cylinder (1-4), the lower end surfaces of the primary crushing cylinder (1-3) and the secondary crushing cylinder (1-4) are respectively provided with a plurality of filtering holes, the rear end of the connecting bending plate (1-5) is upwards inclined, the front end of a rear side plate (1-6) is fixedly connected with the side plate (1-1) positioned on the right side, two circular through holes (1-7) are arranged, the two circular through holes (1-7) are arranged on a connecting plate (1-2), two vertical sliding grooves (1-8) are arranged in bilateral symmetry, two vertical sliding grooves (1-8) are respectively arranged on two side plates (1-1), a spiral groove (1-9) is arranged on a primary crushing barrel (1-3), a feeding port (1-10) is arranged at the middle end of the front side of the primary crushing barrel (1-3), and a secondary discharging port (1-11) and a material pushing port (1-12) are respectively arranged at the front end and the rear end of the lower side of the primary crushing barrel (1-3);
the power mechanism (2) comprises a motor (2-1), a power belt pulley I (2-2) and a power belt pulley II (2-3), the motor (2-1) is a motor with double output shafts, the diameters of the power belt pulley I (2-2) and the power belt pulley II (2-3) are the same, the power belt pulley I (2-2) and the power belt pulley II (2-3) are respectively and fixedly connected to the left end and the right end of an output shaft of the motor (2-1), and the motor (2-1) is fixedly connected to a side plate (1-1) on the right side;
the pushing mechanism (3) comprises a pushing shaft (3-1), a pushing motor (3-2) and a pushing cam (3-3), an output shaft of the pushing motor (3-2) is fixedly connected to the right end of the pushing shaft (3-1), the pushing motor (3-2) is fixedly connected to the side plate (1-1) on the right side, the pushing cam (3-3) is fixedly connected to the middle end of the pushing shaft (3-1), and two ends of the pushing shaft (3-1) are respectively and rotatably connected to the two side plates (1-1);
the rolling mechanism (4) comprises two rolling cylinders (4-1), two rolling columns (4-2), two rolling bending plates (4-3), two rolling wheels (4-4), two rolling plates (4-5), two rolling sliding bodies (4-6) and two rolling baffles (4-7), the lower ends of the two rolling columns (4-2) are fixedly connected to the rolling cylinders (4-1), the upper ends of the two rolling columns (4-2) are fixedly connected to the rolling bending plates (4-3), the rolling wheels (4-4) are rotatably connected to the rolling bending plates (4-3), circular rotating grooves are formed in the rolling plates (4-5), the lower ends of the rolling cylinders (4-1) are rotatably connected to the circular rotating grooves formed in the rolling plates (4-5), the rolling sliding bodies (4-6) are fixedly connected to the rolling discs (4-5), the rolling baffle plates (4-7) are in clearance fit with the rolling cylinders (4-1), the lower ends of the inner sides of the rolling baffle plates (4-7) are in contact with the rolling cylinders (4-1), the lower ends of the outer sides of the rolling baffle plates (4-7) are in contact with the rolling discs (4-5), the two rolling columns (4-2) are respectively in sliding connection with the two circular through holes (1-7), compression springs are sleeved on the two rolling columns (4-2) and located between the rolling bending plates (4-3) and the connecting plates (1-2), the rolling wheels (4-4) are in contact with the pushing cams (3-3), the rolling sliding bodies (4-6) are connected in the spiral grooves (1-9) in a sliding manner;
the crank mechanism (5) comprises a crank shaft (5-1), the crushing machine comprises a crank (5-2) and a crank belt wheel (5-3), wherein the crank (5-2) and the crank belt wheel (5-3) are fixedly connected to the left end and the right end of a crank shaft (5-1) respectively, the crank shaft (5-1) is rotatably connected to a side plate (1-1) on the right side, the crank belt wheel (5-3) and a power belt wheel II (2-3) are connected through belt transmission, the diameters of the crank belt wheel (5-3) and the power belt wheel II (2-3) are the same, one end of a connecting rod I (6) is hinged to the eccentric position of the crank (5-2), the other end of the connecting rod I (6) is hinged to a crank sliding block (7), the crank sliding block (7) is connected to a material pushing port (1-12) in a sliding mode, and two sides of the crank sliding block (7) are in contact with;
the lifting mechanism (8) comprises a lifting shaft (8-1), a lifting belt wheel (8-2) and a lifting crank (8-3), the lifting belt wheel (8-2) and the lifting crank (8-3) are respectively and fixedly connected to the left end and the right end of the lifting shaft (8-1), the lifting shaft (8-1) is rotatably connected to the side plate (1-1) on the left side, the lifting belt wheel (8-2) is connected with the power belt wheel I (2-2) through belt transmission, the diameters of the lifting belt wheel (8-2) and the power belt wheel I (2-2) are the same, and the upper end of the connecting rod II (9) is hinged to the eccentric position of the lifting crank (8-3);
the lifting baffle (10) comprises a lifting sliding plate (10-1) and a lifting arc-shaped plate (10-2), the lifting arc-shaped plate (10-2) is fixedly connected to the lifting sliding plate (10-1), the lower end of a connecting rod II (9) is hinged to the lifting sliding plate (10-1), two ends of the lifting sliding plate (10-1) are respectively connected in two vertical sliding grooves (1-8) in a sliding mode, and the lifting arc-shaped plate (10-2) and a secondary discharge hole (1-11) are located at the same position;
the transmission mechanism (11) comprises a transmission shaft (11-1), a transmission belt wheel (11-2) and transmission bevel teeth (11-3), the transmission belt wheel (11-2) and the transmission bevel teeth (11-3) are respectively and fixedly connected to the left end and the right end of the transmission shaft (11-1), the transmission shaft (11-1) is rotatably connected to a side plate (1-1) on the left side, and the transmission belt wheel (11-2) is in transmission connection with a power belt wheel I (2-2) through a belt;
the crushing mechanism (12) comprises a crushing shaft (12-1), crushing bevel teeth (12-2) and a crushing conical body (12-3), the crushing bevel teeth (12-2) are fixedly connected to the upper end of the crushing shaft (12-1), the crushing conical body (12-3) is fixedly connected to the middle end of the crushing shaft (12-1), the lower end of the crushing shaft (12-1) is rotatably connected to a secondary crushing barrel (1-4), the crushing conical body (12-3) is arranged in the secondary crushing barrel (1-4), the diameter of the upper end of the crushing conical body (12-3) is smaller than that of the lower end, and the crushing bevel teeth (12-2) are meshed with the transmission bevel teeth (11-3);
the working method of the medicinal material pulverizer comprises the following steps:
when in use, medicinal materials to be crushed are placed in the primary crushing barrel (1-3) through the feeding openings (1-10), the material pushing openings (1-12) and the secondary material discharging openings (1-11) are respectively blocked by the crank slide block (7) and the lifting arc-shaped plate (10-2) in an initial state, and the medicinal materials cannot fall off; starting a pushing motor (3-2), driving a pushing shaft (3-1) to rotate by an output shaft of the pushing motor (3-2), driving a pushing cam (3-3) to rotate by the pushing shaft (3-1), driving a rolling wheel (4-4) to move up and down by the pushing cam (3-3) through the reaction force on a compression spring, driving a rolling bending plate (4-3) to move up and down by the rolling wheel (4-4), driving two rolling columns (4-2) to respectively slide in two circular through holes (1-7) by the rolling bending plate (4-3), driving a rolling cylinder (4-1) to move up and down, driving the rolling plate (4-5) to move up and down by the rolling cylinder (4-1), generating autorotation by the rolling plate (4-5) through the sliding of a rolling sliding body (4-6) in a spiral groove (1-9), the grinding disc (4-5) rotates when moving up and down, the grinding disc (4-5) moves to grind the medicinal material in the primary grinding cylinder (1-3) for one time, the medicinal material which can be primarily ground is separated through a plurality of filtering holes arranged on the primary grinding cylinder (1-3), the medicinal material which cannot be primarily ground cannot be left in the primary grinding cylinder (1-3) through a plurality of filtering holes arranged on the primary grinding cylinder (1-3), when the pushing motor (3-2) rotates to grind the medicinal material, the pushing motor (3-2) is stopped when the grinding disc (4-5) moves to the upper limit position, and the starting motor (2-1) is started; when the output shaft of the motor (2-1) starts to rotate, the output shaft of the motor (2-1) drives the power belt wheel I (2-2) and the power belt wheel II (2-3) to start to rotate, the diameters of the power belt wheel I (2-2) and the power belt wheel II (2-3) are the same, the power belt wheel II (2-3) drives the crank belt wheel (5-3) to rotate, the crank belt wheel (5-3) drives the crank shaft (5-1) to rotate, the crank shaft (5-1) drives the crank (5-2) to rotate, the crank (5-2) drives the connecting rod I (6) to move, the connecting rod I (6) pushes the crank sliding block (7) to slide in the material pushing opening (1-12), and the crank sliding block (7) pushes the medicinal material which cannot be preliminarily rolled in the primary crushing barrel (1-3) into the connecting bending plate (1) through the secondary material outlet (1-11) -5), the power pulley I (2-2) drives the lifting pulley (8-2) to move, the lifting pulley (8-2) drives the lifting shaft (8-1) to move, the lifting shaft (8-1) drives the lifting crank (8-3) to move, the lifting crank (8-3) drives the connecting rod II (9) to move, the connecting rod II (9) drives the lifting sliding plate (10-1) to slide in the two vertical sliding grooves (1-8), the lifting sliding plate (10-1) drives the lifting arc-shaped plate (10-2) to move, the lifting arc-shaped plate (10-2) does not block the material pushing opening (1-12), the diameters of the power pulley I (2-2) and the power pulley II (2-3) are the same, the diameters of the pushing motor (3-2) and the power pulley II (2-3) are the same, the diameters of the crank belt wheel (5-3) and the power belt wheel (2-3) are the same, the diameters of the lifting belt wheel (8-2) and the power belt wheel (2-2) are the same, the transmission ratios are the same, the movement periods are synchronous, the crank slider (7) moves to the front side limit position to push out the medicinal materials, and the lifting arc-shaped plate (10-2) moves to the upper side limit position to stop the discharge hole (1-11); the medicinal materials fall into a secondary crushing cylinder (1-4) through a connecting bending plate (1-5), a power belt wheel I (2-2) drives a transmission belt wheel (11-2) to rotate, the transmission belt wheel (11-2) drives a transmission shaft (11-1) to rotate, the transmission shaft (11-1) drives a transmission bevel gear (11-3) to rotate, the transmission bevel gear (11-3) drives a crushing bevel gear (12-2) to rotate, the crushing bevel gear (12-2) drives a crushing shaft (12-1) to rotate, the crushing shaft (12-1) drives a crushing conical body (12-3) to further crush the medicinal materials in the secondary crushing cylinder (1-4) and separate the medicinal materials through a plurality of filtering holes arranged on the secondary crushing cylinder (1-4), and when a crank sliding block (7) and a lifting arc-shaped plate (10-2) respectively push a material opening (1-12) and a secondary material outlet (1-11) stopping the motor (2-1) when the plug returns to the initial state.
CN202010138121.8A 2018-08-01 2018-08-01 Working method of medicinal material pulverizer Withdrawn CN111330710A (en)

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CN114657036A (en) * 2022-04-01 2022-06-24 曹臣成 Pretreatment method for raw materials for making white spirit

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CN111318324B (en) * 2020-03-31 2021-07-23 温州医科大学 Traditional chinese medicine rubbing crusher based on hexagon wheel
CN117583063B (en) * 2024-01-19 2024-03-29 哈尔滨学院 Soybean product processingequipment

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JP3831616B2 (en) * 2001-01-30 2006-10-11 株式会社クボタ Foreign matter discharge mechanism in uniaxial crusher
US9180071B2 (en) * 2013-08-26 2015-11-10 Lighthouse for Nurses Medical Devices LLC Pill preparation device
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