CN223653179U - Fruit beating machine - Google Patents

Fruit beating machine

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Publication number
CN223653179U
CN223653179U CN202423176066.4U CN202423176066U CN223653179U CN 223653179 U CN223653179 U CN 223653179U CN 202423176066 U CN202423176066 U CN 202423176066U CN 223653179 U CN223653179 U CN 223653179U
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CN
China
Prior art keywords
rotating
side wall
rod
gear
bearing seat
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Application number
CN202423176066.4U
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Chinese (zh)
Inventor
崔鹏
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Yongshan Lixiang Agriculture Co ltd
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Yongshan Lixiang Agriculture Co ltd
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Application filed by Yongshan Lixiang Agriculture Co ltd filed Critical Yongshan Lixiang Agriculture Co ltd
Priority to CN202423176066.4U priority Critical patent/CN223653179U/en
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Publication of CN223653179U publication Critical patent/CN223653179U/en
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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
    • Y02WCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO WASTEWATER TREATMENT OR WASTE MANAGEMENT
    • Y02W30/00Technologies for solid waste management
    • Y02W30/50Reuse, recycling or recovery technologies
    • Y02W30/64Paper recycling

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  • Crushing And Grinding (AREA)

Abstract

The utility model discloses a fruit beating machine, which comprises a movable base, wherein the end surface of the movable base is connected with a connecting shell, the end surface of the connecting shell is connected with a stacking funnel, a beating structure capable of continuously feeding is connected in an inner cavity of the connecting shell and below the stacking funnel, the tail end of the beating structure is connected with a controllable slag removing structure, the side wall of the connecting shell and below the controllable slag removing structure is connected with a receiving groove, and the side wall of the connecting shell is connected with a controller.

Description

Fruit beating machine
Technical Field
The utility model relates to the technical field of fruit production, in particular to a fruit beater.
Background
The fruit beating machine is a device for beating fruits, namely a process for crushing and beating fruits, so that different requirements are met, and the portable fruit beating machine is portable and needs to be improved, and is specifically as follows:
Because current fruit beating machine all carries out the beating to the fruit through the puddler, needs to throw into beating machine through the manual work with fruit a small amount in the time of the son beating simultaneously, therefore the device can consume certain labour when using, and the fruit thick liquid that squeezes out simultaneously has led to the fruit thick liquid waste of a certain amount because can not fully separate fruit sediment and fruit thick liquid.
Disclosure of utility model
The present utility model provides a fruit beater to solve the above-mentioned problems.
In order to achieve the above purpose, the present utility model provides the following technical solutions:
The fruit beating machine comprises a movable base, wherein a connecting shell is connected to the end face of the movable base, a stacking hopper is connected to the end face of the connecting shell, a beating structure capable of continuously feeding is connected to the inner cavity of the connecting shell and positioned below the stacking hopper, a controllable slag removing structure is connected to the tail end of the beating structure, a receiving groove is connected to the side wall of the connecting shell and positioned below the controllable slag removing structure, and a controller is connected to the side wall of the connecting shell;
The pulping structure comprises a driving motor, the driving motor is connected to the end face of a movable base through a connecting seat, the driving end of the driving motor is connected with a driving rod through a coupling, the side wall of the driving rod is connected with a driving belt pulley, the side wall of the driving belt pulley is connected with a driven belt pulley through a connecting belt, the center of the driven belt pulley is connected with a rotating rod, one end of the rotating rod is connected with a driven bevel gear through a driving bevel gear in a meshed manner, the center of the driven bevel gear is connected with a connecting rod, the side wall of the connecting rod is connected with a transmission bevel gear through a rotating bevel gear in a meshed manner, the center of the transmission bevel gear is connected with a transmission rod, the end face of the connecting rod is connected with a rotating cam, the bottom of the rotating cam is connected with a connecting deflector rod, the bottom of the connecting deflector rod is connected with a movable connecting plate through a connecting plate, one end of the transmission rod is connected with a transmission gear through a rotating gear in a meshed manner, the center of the rotating gear and the transmission gear is connected with a connecting roller in an inner cavity of a shell, one end of the rotating rod is connected with a grinding roller through a connecting gear, the rotating roller is connected with the inner cavity of the shell, the grinding roller is connected with the inner cavity of the grinding roller, and the inner cavity of the grinding roller is connected with the inner cavity of the grinding roller, and the inner cavity is connected with the grinding roller is connected with the inner cavity of the grinding roller;
The controllable slag removal structure comprises a rotating motor, the rotating motor is connected to the side wall of the inner cavity of the connecting shell, a driving rotary rod is connected to a driving end of the rotating motor through a coupling, a driving belt gear is connected to the side wall of the driving rotary rod, a driven belt gear is connected to the side wall of the driving belt gear through symmetrical engagement of a connecting belt, an adjusting screw is connected to the center of the driven belt gear, a fixed disc is connected to the other end of the adjusting screw, the tail end of the rotating screw is connected to the side wall of the fixed shell in a rotating mode, a movable disc is connected to the side wall of the adjusting screw, a pressure sensor is connected to the center of the movable disc, and a movable plug plate is connected to the other end of the pressure sensor and located at the tail end of the rotating screw.
As a preferable scheme of the utility model, the driving motor is connected with the controller through a wire and is electrically connected in a connection mode, and the connecting rotating rod is connected to the side wall of the connecting shell through a bearing seat, wherein the connecting mode of the connecting rotating rod and the bearing seat is rotary connection.
As a preferable scheme of the utility model, a connecting sliding groove is formed at the bottom of the rotating cam and corresponds to the connecting deflector rod, wherein the connecting deflector rod is in sliding connection with the connecting sliding groove, a connecting sliding rail is arranged at the bottom of the stacking hopper and corresponds to the movable connecting plate, and the movable connecting plate is in sliding connection with the connecting sliding rail.
As a preferable scheme of the utility model, a plurality of groups of cutting blades are connected to the side wall of the blade connecting roller, the blade connecting roller is connected to the side wall of the connecting shell through a bearing seat, the blade connecting roller is connected with the bearing seat in a rotating way, the crushing roller is connected to the side wall of the connecting shell through the bearing seat, and the crushing roller is connected with the bearing seat in a rotating way.
As a preferable scheme of the utility model, the rotary auger is connected to the side wall of the connecting shell through the bearing seat, wherein the rotary auger is connected with the bearing seat in a rotary way, and the outer wall of the fixed shell is provided with a filtering hole corresponding to the pulp discharge hole.
As a preferable scheme of the utility model, the rotating motor is connected with the controller through a wire and is electrically connected in a connection mode, and the driving rotating rod is connected to the side wall of the connecting shell through a bearing seat, wherein the connection mode of the driving rotating rod and the bearing seat is rotary connection.
As a preferable scheme of the utility model, the adjusting screw rod is connected to the side wall of the fixed disc through the bearing seat, wherein the connecting mode of the adjusting screw rod and the bearing seat is rotary connection, the connecting mode of the adjusting screw rod and the movable disc is threaded connection, and the pressure sensor is connected with the controller through a lead and is electrically connected.
According to the utility model, through the beating structure, the driving motor in the beating structure is utilized to press the fruits and feed the fruits into the fixed shell intermittently through the transmission structure, so that the blades are prevented from being blocked by the connecting roller, the crushing roller and the rotary auger when the fruits are beaten, the automation performance of the device is further improved, and the output of labor force is reduced.
According to the utility model, through the controllable slag removing structure, the rotating motor and the pressure sensor in the controllable slag removing structure are utilized to pass through the transmission structure, and the pomace is discharged into the receiving groove under the continuous rotation of the rotating auger, so that the pulp in the pomace can be more fully extracted, and the waste of the pulp is reduced.
Drawings
FIG. 1 is a schematic diagram of an isometric structure of the present utility model;
FIG. 2 is a schematic cross-sectional view of FIG. 1;
FIG. 3 is a schematic view of the beating structure of the present utility model;
FIG. 4 is a schematic cross-sectional view of FIG. 3;
FIG. 5 is a schematic diagram of a controllable slag removal structure according to the present utility model;
fig. 6 is a schematic view of a portion of the structure of fig. 5.
In the figure, 1, a movable base, 2, a connecting shell, 3, a stacking hopper, 4, a beating structure, 5, a controllable slag removing structure, 6, a receiving groove, 7, a controller, 401, a driving motor, 402, a driving rod, 403, a driving belt pulley, 404, a driven belt pulley, 405, a rotating rod, 406, a driving bevel gear, 407, a driven bevel gear, 408, a connecting rod, 409, a rotating bevel gear, 410, a driving bevel gear, 411, a driving rod, 412, a rotating cam, 413, a connecting deflector rod, 414, a movable connecting plate, 415, a rotating gear, 416, a driving gear, 417, a blade connecting roller, 418, a driving gear, 419, a driven gear, 420, a crushing roller, 421, a rotating auger, 422, a fixed shell, 423, a pulp discharging hole, 501, a rotating motor, 502, a driving rotating rod, 503, a driving belt gear, 504, a connecting belt, 505, a driven belt gear, 506, an adjusting screw, 507, a fixed disc, 508, a movable disc, 509, a pressure sensor, 510 and a movable plug plate.
Detailed Description
The technical solutions of the embodiments of the present utility model will be clearly and completely described below in conjunction with the embodiments of the present utility model, and it is apparent that the described embodiments are only some embodiments of the present utility model, but not all embodiments, and all other embodiments obtained by those skilled in the art without making any inventive effort based on the embodiments of the present utility model are within the scope of protection of the present utility model.
Referring to fig. 1-6, the present utility model provides a technical solution:
Fruit beating machine, including removing base 1, be connected with on the terminal surface of removing base 1 and connect casing 2, be connected with windrow funnel 3 on the terminal surface of connecting casing 2, connect in the inner chamber of casing 2 and be located windrow funnel 3's below and be connected with sustainable feed's beating structure 4, the tail end connection of beating structure 4 has controllable slagging-off structure 5, connect on casing 2's the lateral wall and be located controllable slagging-off structure 5's below and be connected with and connect silo 6, be connected with controller 7 on connection casing 2's the lateral wall.
In this embodiment, referring to fig. 1, 2, 3 and 4, the beating structure 4 comprises a driving motor 401, the driving motor 401 is connected to the end face of the moving base 1 through a connecting seat, the driving end of the driving motor 401 is connected with a driving rod 402 through a coupling, a driving pulley 403 is connected to the side wall of the driving rod 402, a driven pulley 404 is connected to the side wall of the driving pulley 403 through a connecting belt, a rotating rod 405 is connected to the center of the driven pulley 404, one end of the rotating rod 405 is connected to the driven bevel gear 407 through a driving bevel gear 406 in a meshed manner, a connecting rod 408 is connected to the center of the driven bevel gear 407 through a connecting bevel gear 406, a driving bevel gear 410 is connected to the side wall of the connecting rod 408 through a rotating bevel gear 409 in a meshed manner, a transmission rod 411 is connected to the center of the connecting rod 408, a rotating cam 412 is connected to the end face of the connecting rod 408, a connecting rod 413 is connected to the bottom of the rotating cam 412 through a connecting plate, a moving connecting plate 414 is arranged at the bottom of the stacking hopper 3, one end of the transmission rod 411 is connected to a transmission gear 416 through a rotating gear 415 in a meshed manner, a rotating gear 415 and a rotating gear 416 is connected to the center of the rotating shaft 416 and a grinding roller housing 2 is connected to the inner cavity 420, a grinding roller 421 is connected to the inner cavity 2 through a rotating blade housing 421 is connected to the inner cavity 418, and the inner cavity 420 is connected to the inner cavity 2 is connected to the inner cavity of the grinding roller housing 2, and the inner cavity 418 is connected to the inner cavity 2, a pulp outlet 423 is provided on the outer wall of the fixed housing 422 and below the rotary auger 421.
Based on the above structure and the connection relation of the above structure, the driving motor 401 is controlled by the controller 7, when the driving end of the driving motor 401 rotates, the driving rod 402, the driving belt pulley 403, the driven belt pulley 404, the rotating rod 405, the driving bevel gear 406, the driven bevel gear 407, the connecting rod 408, the rotating bevel gear 409, the transmission bevel gear 410, the transmission rod 411 and the rotating cam 412 are sequentially driven to rotate, when the rotating cam 412 rotates, the movable connecting plate 414 can be pushed and pulled at the bottom of the stacking hopper 3 through the connecting deflector 413, fruits in the stacking hopper 3 can be intermittently fed into the fixed shell 422, the blades connecting roller 417, the crushing roller 420 and the rotating auger 421 are prevented from being blocked when the fruits are beaten, when the transmission rod 411 rotates, the rotating gear 415, the transmission gear 416 and the blades connecting roller 417 are driven to rotate, the fruits falling from the stacking hopper 3 can be primarily crushed, when the rotating rod 405 rotates, the driving gear 418, the driven gear 420 and the crushing roller 420 are driven to rotate, then the primarily crushed fruits can be further crushed, when the connecting deflector 413 rotates, the driving rod 421 drives the pulp to rotate, and the crushed fruits can be discharged from the pulp, and the pulp can be discharged from the pulp outlet 5 through the pulp discharging structure.
The driving motor 401 is connected with the controller 7 through a wire, the connection mode is electrically connected, the operation of the driving motor 401 can be controlled through the controller 7, the connection rotating rod 408 is connected on the side wall of the connecting shell 2 through a bearing seat, the connection mode of the connection rotating rod 408 and the bearing seat is rotary connection, the bottom of the rotating cam 412 is provided with a connection sliding groove corresponding to the connection shifting rod 413, the connection mode of the connection shifting rod 413 and the connection sliding groove is sliding connection, when the driving motor 401 operates, the connection mode of the connection rotating rod 408 and the rotating cam 412 can be driven to rotate, the bottom of the stacking hopper 3 is correspondingly provided with a connection sliding rail with the movable connecting plate 414, the connection mode of the movable connecting plate 414 and the connection sliding rail is sliding connection, when the rotating cam 412 rotates, the movable connecting plate 414 can be driven to move, a plurality of cutting blades are connected on the side wall of the blade connection roller 417, the blade connection roller 417 is connected on the side wall of the connecting shell 2 through the bearing seat, the connection mode of the blade connection roller 417 and the bearing seat is rotary connection, the connection mode of the crushing roller 420 is the side wall of the connecting shell 2 through the bearing seat, the connection mode of the crushing roller 420 and the bearing seat is rotary connection of the connecting shell 2, the connection mode of the connection sliding rail can be driven to rotate the connecting roller 420 and the movable connecting roller 423 with the outer wall of the filter auger 421 through the shell 421 is rotary connection of the shell 421, and the filter roller 423 can be driven to rotate, when the filter roller is connected to the rotary opening and the filter roller 421 through the rotary connection of the rotary opening and the corresponding shell 421.
In this embodiment, referring to fig. 1, 2, 5 and 6, the controllable slag removing structure 5 includes a rotating motor 501, the rotating motor 501 is connected to a side wall connected to an inner cavity of the housing 2, a driving end of the rotating motor 501 is connected to a driving rotating rod 502 through a coupling, a driving belt gear 503 is connected to a side wall of the driving rotating rod 502, a driven belt gear 505 is symmetrically engaged and connected to a side wall of the driving belt gear 503 through a connecting belt 504, an adjusting screw 506 is connected to a center of the driven belt gear 505, the other end of the adjusting screw 506 is connected to a fixed disc 507, a tail end of the rotating screw 421 is rotatably connected to a side wall of the fixed housing 422, a moving disc 508 is connected to a side wall of the adjusting screw 506, a pressure sensor 509 is connected to a center of the moving disc 508, and a moving plug 510 is connected to a tail end of the rotating screw 421.
Based on the above structure and the connection relation of the above structure, when the pressure sensor 509 senses a certain pressure, the controller 7 controls the rotating motor 501, when the driving end of the rotating motor 501 rotates, the driving rod 502, the driving belt gear 503, the connecting belt 504, the driven belt gear 505 and the adjusting screw 506 are sequentially driven to rotate, when the adjusting screw 506 rotates, the moving disc 508, the pressure sensor 509 and the moving plug 510 are driven to move on the side wall of the adjusting screw 506, a gap is formed between the moving plug 510 and the shell at the tail end of the rotating screw 421, and when the rotating screw 421 continuously rotates, the fruit residues are discharged into the receiving groove 6.
The rotating motor 501 is connected with the controller 7 through a wire, the pressure sensor 509 is electrically connected, the operation of the rotating motor 501 and the pressure sensor 509 can be controlled by the controller 7, the driving rotating rod 502 is connected to the side wall of the connecting shell 2 through a bearing seat, the driving rotating rod 502 is rotationally connected with the bearing seat, the adjusting screw 506 is connected to the side wall of the fixed disc 507 through the bearing seat, the adjusting screw 506 is rotationally connected with the bearing seat, the adjusting screw 506 is in threaded connection with the movable disc 508, and the driving rotating rod 502 and the adjusting screw 506 can be driven to rotate when the rotating motor 501 operates.
When using fruit beating machine, at first, switch on the device for the device is in the state of work, through controller 7 control driving motor 401, when driving motor 401's drive end rotates, drive lever 402 drives drive pulley 403 and rotates, drive pulley 403 drives driven pulley 404 and rotates, driven pulley 404 drives dwang 405 and rotates, dwang 405 drives drive bevel gear 406 and drives driven bevel gear 407 and rotate, driven bevel gear 407 drives the link up bull stick 408 and rotates, link up bull stick 408 drives and rotates bevel gear 409, rotate bevel gear 409 and drives drive bevel gear 410 and rotate, drive bevel gear 410 drives the transfer line 411 and rotates, link up bull stick 40 drives the rotation cam 412 and rotates, when rotating cam 412 rotates, can push and pull movable link plate 414 in the bottom of windrow material funnel 3 through link up driving lever 413, make the fruit in the windrow material funnel 3, can intermittently feed in fixed housing 422, prevent fruit when beating, link up roller 417, grinding roller 420 and rotation auger 421 die, when drive bevel gear 415 and knife link up roller 416 rotate, can drive the rotation gear 415 and drive the rotation, link up bull stick 40 and drive rotation cam 412 and rotate, can carry out the rotation of the fruit pulp in the windrow material funnel 418 from the coarse, can be carried out the fruit pulp grinder, can be rotated from the roller 421 to the coarse grinding roller 418, can be carried out the rotation, and the fruit pulp is carried out the coarse grinding structure is further in the grinding and can be carried out, and the fruit pulp is smashed from the pulp is smashed and is rotated and is broken down in the pulp and is moved down, and is broken down, and can be moved down from the pulp and is moved down, and is broken down by the pulp, and is broken and is moved by the pulp, and is broken down, and is moved by the fruit pulp, and is broken down.
When pressure sensor 509 senses certain pressure, through controller 7 control rotation motor 501, when the drive end of rotation motor 501 rotates, and then drive bull stick 502 in proper order, drive belt gear 503, connecting belt 504, driven belt gear 505 and accommodate the lead screw 506 rotation, when accommodate the lead screw 506 rotation, drive and remove disc 508, pressure sensor 509 and remove the cock plate 510 and remove on accommodate the lateral wall of lead screw 506, make and remove the cock plate 510 and rotate and appear the clearance between the screw 421 tail end casing, rotate the screw 421 and last to rotate down, the fruit pulp is discharged and is connect in the silo 6, can more abundant squeeze fruit pulp in the fruit pulp, reduce the waste of fruit pulp.
Although embodiments of the present utility model have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made therein without departing from the principles and spirit of the utility model, the scope of which is defined in the appended claims and their equivalents.

Claims (8)

1.果实打浆机,包括移动底座(1),其特征在于:所述移动底座(1)的端面上连接有连接壳体(2),所述连接壳体(2)的端面上连接有堆料漏斗(3),所述连接壳体(2)的内腔中并且位于堆料漏斗(3)的下方连接有可持续进料的打浆结构(4),所述打浆结构(4)的尾端连接有可控制除渣结构(5),所述连接壳体(2)的侧壁上并且位于可控制除渣结构(5)的下方连接有接料槽(6),所述连接壳体(2)的侧壁上连接有控制器(7);1. A fruit pulping machine, comprising a movable base (1), characterized in that: a connecting shell (2) is connected to the end face of the movable base (1), a material hopper (3) is connected to the end face of the connecting shell (2), a continuously feeding pulping structure (4) is connected in the inner cavity of the connecting shell (2) and below the material hopper (3), a controllable slag removal structure (5) is connected to the tail end of the pulping structure (4), a receiving trough (6) is connected on the side wall of the connecting shell (2) and below the controllable slag removal structure (5), and a controller (7) is connected on the side wall of the connecting shell (2). 所述打浆结构(4)包括驱动电机(401),所述驱动电机(401)通过连接座连接在移动底座(1)的端面上,所述驱动电机(401)的驱动端通过联轴器连接有驱动杆(402),所述驱动杆(402)的侧壁上连接驱动带轮(403),所述驱动带轮(403)的侧壁上通过衔接皮带连接有从动带轮(404),所述从动带轮(404)的中心处连接有转动杆(405),所述转动杆(405)的一端通过驱动锥齿轮(406)啮合连接有从动锥齿轮(407),所述从动锥齿轮(407)的中心处连接有衔接转杆(408),所述衔接转杆(408)的侧壁上通过转动锥齿轮(409)啮合连接有传动锥齿轮(410),所述传动锥齿轮(410)的中心处连接有传动杆(411),所述衔接转杆(408)的端面上连接有转动凸轮(412),所述转动凸轮(412)的底部连接有衔接拨杆(413),所述衔接拨杆(413)的底部通过连接板连接有移动连板(414),所述移动连板(414)设置在堆料漏斗(3)的底部,所述传动杆(411)的一端通过转动齿轮(415)啮合连接有传动齿轮(416),所述转动齿轮(415)和传动齿轮(416)的中心处并且位于连接壳体(2)的内腔中连接有刀片衔接辊(417),所述转动杆(405)的一端通过驱动齿轮(418)啮合连接有从动齿轮(419),所述驱动齿轮(418)和从动齿轮(419)的中心处并且位于连接壳体(2)的内腔中连接有粉碎辊(420),所述驱动杆(402)的一端并且位于连接壳体(2)的内腔中连接有转动绞龙(421),所述刀片衔接辊(417)、粉碎辊(420)和转动绞龙(421)的外部并且位于连接壳体(2)的内腔中连接有固定壳体(422),所述固定壳体(422)的外壁上并且位于转动绞龙(421)的下方设置有果浆出料口(423)。The pulping structure (4) includes a drive motor (401), which is connected to the end face of the movable base (1) via a connecting seat. The drive end of the drive motor (401) is connected to a drive rod (402) via a coupling. A drive pulley (403) is connected to the side wall of the drive rod (402), and a driven pulley (404) is connected to the side wall of the drive pulley (403) via a connecting belt. A rotating rod (405) is connected to the center of the driven pulley (404), and one end of the rotating rod (405) is connected to a drive cone. A driven bevel gear (407) is meshed with a gear (406). A connecting rod (408) is connected to the center of the driven bevel gear (407). A transmission bevel gear (410) is meshed with the side wall of the connecting rod (408) via a rotating bevel gear (409). A transmission rod (411) is connected to the center of the transmission bevel gear (410). A rotating cam (412) is connected to the end face of the connecting rod (408). A connecting lever (413) is connected to the bottom of the rotating cam (412). The bottom of the material hopper (3) is connected to a movable connecting plate (414) via a connecting plate. The movable connecting plate (414) is located at the bottom of the material hopper (3). One end of the transmission rod (411) is connected to a transmission gear (416) via a rotating gear (415). A blade connecting roller (417) is connected at the center of the rotating gear (415) and the transmission gear (416) and located in the inner cavity of the connecting housing (2). One end of the rotating rod (405) is connected to a driven gear (419) via a driving gear (418). The driving gear (418) A crushing roller (420) is connected at the center of the driven gear (419) and in the inner cavity of the connecting housing (2). A rotating auger (421) is connected at one end of the drive rod (402) and in the inner cavity of the connecting housing (2). A fixed housing (422) is connected outside the blade connecting roller (417), the crushing roller (420) and the rotating auger (421) and in the inner cavity of the connecting housing (2). A pulp outlet (423) is provided on the outer wall of the fixed housing (422) and below the rotating auger (421). 2.根据权利要求1所述的果实打浆机,其特征在于:所述可控制除渣结构(5)包括转动电机(501),所述转动电机(501)连接在连接壳体(2)内腔的侧壁上,所述转动电机(501)的驱动端通过联轴器连接有驱动转杆(502),所述驱动转杆(502)的侧壁上连接有驱动皮带齿轮(503),所述驱动皮带齿轮(503)的侧壁上通过连接皮带(504)对称啮合连接有从动皮带齿轮(505),所述从动皮带齿轮(505)的中心处连接有调节丝杆(506),所述调节丝杆(506)的另一端连接有固定圆盘(507),所述转动绞龙(421)尾端转动连接在固定壳体(422)的侧壁上,所述调节丝杆(506)的侧壁上连接有移动圆盘(508),所述移动圆盘(508)的中心处连接有压力感应器(509),所述压力感应器(509)的另一端并且位于转动绞龙(421)的尾端连接有移动塞板(510)。2. The fruit pulping machine according to claim 1, characterized in that: the controllable slag removal structure (5) includes a rotating motor (501), the rotating motor (501) is connected to the side wall of the inner cavity of the connecting housing (2), the driving end of the rotating motor (501) is connected to a driving rod (502) through a coupling, a driving belt gear (503) is connected to the side wall of the driving rod (502), and a driven belt gear (505) is symmetrically meshed with the side wall of the driving belt gear (503) through a connecting belt (504). An adjusting screw (506) is connected to the center of the moving belt gear (505). The other end of the adjusting screw (506) is connected to a fixed disc (507). The tail end of the rotating auger (421) is rotatably connected to the side wall of the fixed housing (422). A movable disc (508) is connected to the side wall of the adjusting screw (506). A pressure sensor (509) is connected to the center of the movable disc (508). The other end of the pressure sensor (509) and located at the tail end of the rotating auger (421) is connected to a movable stopper plate (510). 3.根据权利要求2所述的果实打浆机,其特征在于:所述驱动电机(401)通过导线与控制器(7)相连接并且连接方式为电性连接,所述衔接转杆(408)通过轴承座连接在连接壳体(2)的侧壁上,其中衔接转杆(408)与轴承座的连接方式为转动连接。3. The fruit pulping machine according to claim 2, characterized in that: the drive motor (401) is connected to the controller (7) by a wire and the connection method is electrical connection, the connecting rod (408) is connected to the side wall of the connecting housing (2) by a bearing seat, wherein the connection method between the connecting rod (408) and the bearing seat is rotational connection. 4.根据权利要求2所述的果实打浆机,其特征在于:所述转动凸轮(412)的底部并且与衔接拨杆(413)对应开设有连接滑槽,其中衔接拨杆(413)与连接滑槽的连接方式为滑动连接,所述堆料漏斗(3)的底部并且与移动连板(414)对应设置有衔接滑轨,其中移动连板(414)与衔接滑轨的连接方式为滑动连接。4. The fruit pulping machine according to claim 2, characterized in that: a connecting groove is provided at the bottom of the rotating cam (412) and corresponding to the connecting lever (413), wherein the connecting lever (413) and the connecting groove are connected in a sliding connection manner; a connecting rail is provided at the bottom of the material hopper (3) and corresponding to the movable connecting plate (414), wherein the movable connecting plate (414) and the connecting rail are connected in a sliding connection manner. 5.根据权利要求2所述的果实打浆机,其特征在于:所述刀片衔接辊(417)的侧壁上连接有多组切割刀片,所述刀片衔接辊(417)通过轴承座连接在连接壳体(2)的侧壁上,其中刀片衔接辊(417)与轴承座的连接方式为转动连接,所述粉碎辊(420)通过轴承座连接在连接壳体(2)的侧壁上,其中粉碎辊(420)与轴承座的连接方式为转动连接。5. The fruit pulping machine according to claim 2, characterized in that: multiple sets of cutting blades are connected to the side wall of the blade connecting roller (417), the blade connecting roller (417) is connected to the side wall of the connecting housing (2) through a bearing seat, wherein the blade connecting roller (417) and the bearing seat are connected by a rotatable connection, and the crushing roller (420) is connected to the side wall of the connecting housing (2) through a bearing seat, wherein the crushing roller (420) and the bearing seat are connected by a rotatable connection. 6.根据权利要求2所述的果实打浆机,其特征在于:所述转动绞龙(421)通过轴承座连接在连接壳体(2)的侧壁上,其中转动绞龙(421)与轴承座的连接方式为转动连接,所述固定壳体(422)的外壁上并且与果浆出料口(423)对应开设有过滤孔。6. The fruit pulping machine according to claim 2, characterized in that: the rotating auger (421) is connected to the side wall of the connecting housing (2) through a bearing seat, wherein the rotating auger (421) and the bearing seat are connected by a rotating connection, and a filter hole is provided on the outer wall of the fixed housing (422) corresponding to the pulp outlet (423). 7.根据权利要求2所述的果实打浆机,其特征在于:所述转动电机(501)通过导线与控制器(7)相连接并且连接方式为电性连接,所述驱动转杆(502)通过轴承座连接在连接壳体(2)的侧壁上,其中驱动转杆(502)与轴承座的连接方式为转动连接。7. The fruit pulping machine according to claim 2, characterized in that: the rotating motor (501) is connected to the controller (7) by a wire and the connection method is electrical connection, the driving rod (502) is connected to the side wall of the connecting housing (2) by a bearing seat, wherein the connection method between the driving rod (502) and the bearing seat is rotational connection. 8.根据权利要求2所述的果实打浆机,其特征在于:所述调节丝杆(506)通过轴承座连接在固定圆盘(507)的侧壁上,其中调节丝杆(506)与轴承座的连接方式为转动连接,所述调节丝杆(506)与移动圆盘(508)的连接方式为螺纹连接,所述压力感应器(509)通过导线与控制器(7)相连接并且连接方式为电性连接。8. The fruit pulping machine according to claim 2, characterized in that: the adjusting screw (506) is connected to the side wall of the fixed disc (507) through a bearing seat, wherein the adjusting screw (506) and the bearing seat are connected by rotation, the adjusting screw (506) and the movable disc (508) are connected by thread, and the pressure sensor (509) is connected to the controller (7) through a wire and the connection method is electrical connection.
CN202423176066.4U 2024-12-23 2024-12-23 Fruit beating machine Active CN223653179U (en)

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CN202423176066.4U CN223653179U (en) 2024-12-23 2024-12-23 Fruit beating machine

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