WO2023197604A1 - 一种破壁机用刀体装置和杯体 - Google Patents

一种破壁机用刀体装置和杯体 Download PDF

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Publication number
WO2023197604A1
WO2023197604A1 PCT/CN2022/132877 CN2022132877W WO2023197604A1 WO 2023197604 A1 WO2023197604 A1 WO 2023197604A1 CN 2022132877 W CN2022132877 W CN 2022132877W WO 2023197604 A1 WO2023197604 A1 WO 2023197604A1
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WIPO (PCT)
Prior art keywords
grinding wheel
upper movable
lower fixed
groove
movable grinding
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PCT/CN2022/132877
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English (en)
French (fr)
Inventor
涂小丽
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涂小丽
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Publication date
Application filed by 涂小丽 filed Critical 涂小丽
Publication of WO2023197604A1 publication Critical patent/WO2023197604A1/zh

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    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47JKITCHEN EQUIPMENT; COFFEE MILLS; SPICE MILLS; APPARATUS FOR MAKING BEVERAGES
    • A47J43/00Implements for preparing or holding food, not provided for in other groups of this subclass
    • A47J43/04Machines for domestic use not covered elsewhere, e.g. for grinding, mixing, stirring, kneading, emulsifying, whipping or beating foodstuffs, e.g. power-driven
    • A47J43/046Machines for domestic use not covered elsewhere, e.g. for grinding, mixing, stirring, kneading, emulsifying, whipping or beating foodstuffs, e.g. power-driven with tools driven from the bottom side

Definitions

  • the invention relates to a knife body device and a cup body for a wall breaking machine.
  • soymilk/juice machines also known as wall-breaking machines
  • wall-breaking machines The working principle of the soymilk/juice machines (also known as wall-breaking machines) currently on the market relies on high-speed rotation of blades to break food in order to make drinks such as juice or soy milk.
  • they do not have grinding wheels, making it inconvenient to further mix the liquid material.
  • the crushed particles are smaller and more uniform, and the pulping is more fine. Therefore, how to overcome the above-mentioned existing defects has become an important issue that those skilled in the art need to solve urgently.
  • the present invention overcomes the shortcomings of the above technology and provides a knife body device and a cup body for a wall breaking machine.
  • a cutter body device for a wall breaking machine including a lower fixed grinding wheel 1.
  • the middle part of the lower fixed grinding wheel 1 is connected to an upper movable grinding wheel 3 that can rotate around a vertical axis and is located above the lower fixed grinding wheel 1 through a rotating connection mechanism 2.
  • a grinding chamber 4 is formed between the upper movable grinding wheel 3 and the lower fixed grinding wheel 1.
  • the upper end of the upper movable grinding wheel 3 is provided with a communication hole 31 to facilitate the liquid material to enter and exit the grinding chamber 4.
  • the outer periphery of the grinding chamber 4 There is a gap 41 to facilitate the entry and exit of liquid materials.
  • the upper end of the upper movable grinding wheel 3 is provided with an upper cutter body 5 for rotating together with the upper movable grinding wheel 3.
  • the lower end of the upper movable grinding wheel 3 is provided with an upper cutter body 5 for rotating the upper movable grinding wheel 3.
  • a screen portion 30 is detachably installed on the upper end of the upper movable grinding wheel 3, and the communication holes 31 are provided on the screen portion 30. of mesh.
  • the upper blade body 5 is provided with two left and right transverse blade portions 51 extending outward, and two front and rear vertical blade portions 52 extending upward.
  • the driving part 32 includes a blade 321 protruding from the lower end of the upper movable grinding wheel 3 for driving the liquid material in the grinding chamber 4 to flow rapidly when the upper movable grinding wheel 3 rotates.
  • a flow guide channel 322 extending from the middle of the lower end of the upper movable grinding wheel 3 toward the outer circumferential direction is formed between adjacent blades 321 .
  • the lower end of the upper movable grinding wheel 3 is provided with a first boss 33 located in the middle and a first groove 34 surrounding the outer circumference of the first boss 33, and the blade 321 is provided on the first boss 33.
  • a plurality of circumferentially arranged first racks 341 are protruding from the first groove 34 for dividing the first groove 34 into a plurality of small grids.
  • the upper end of the lower fixed grinding wheel 1 is provided with a second groove 11 in the middle and a second boss 12 surrounding the outer periphery of the second groove 11.
  • a plurality of second racks 111 are arranged in a circle.
  • a first guide channel 112 extending from the middle of the lower fixed grinding wheel 1 to the outer circumferential direction is formed between adjacent second racks 111.
  • the second boss 12 is concave.
  • a number of second guide channels 121 are provided in a circumferential arrangement and extend from the middle portion of the lower fixed grinding wheel 1 to the outer circumferential direction.
  • the second boss 12 between adjacent second guide channels 121 is concavely provided with a plurality of arc-shaped grooves 122 arranged concentrically from the middle portion of the lower fixed grinding wheel 1 toward the outer circumferential direction.
  • the middle part of the lower fixed grinding wheel 1 is provided with a downwardly extending tube body part 13, and the rotary connection mechanism 2 includes a number of bearings 21 installed in the channel of the tube body part 13 and rotatably connected to the The upper end of the shaft 22 in the bearing 21 is fixedly connected to the upper movable grinding wheel 3 or the upper end of the shaft 22 is fixedly connected to the upper cutter body 5.
  • the outer wall of the tube body 13 There is an external thread 131 for connecting the nut 14.
  • the lower end of the shaft body 22 is fixedly connected with a connecting spline 23.
  • the bottom of the lower fixed grinding wheel 1 is provided with an upward recess around the outer circumference of the tube body 13.
  • the annular groove 15 into which the upper end of the sealing ring 151 sinks.
  • the connection mechanism 2 includes a number of bearings 21 installed in the channel of the tube body 13 and a shaft 22 rotatably connected in the bearings 21.
  • the upper end of the shaft 22 is fixedly connected to the upper movable grinding wheel 3 or The upper end of the shaft body 22 is fixedly connected to the upper cutter body 5.
  • the outer wall of the tube body 13 is provided with an external thread 131 for connecting the nut 14.
  • the lower end of the shaft body 22 is fixedly connected to a connecting shaft.
  • the bottom of the lower fixed grinding wheel 1 is recessed upward with an annular groove 15 surrounding the outer circumference of the tube body 13 for the upper end of the sealing ring 151 to sink into.
  • the tube body 13 is formed from the cup body.
  • the inner bottom of the cup body 6 penetrates downward and is locked and fixed by the nut 14 .
  • the sealing ring 151 of the annular groove 15 is pressed by the inner bottom of the cup body 6 .
  • the structure of the cutter body device of the wall breaking machine in this case is simple and easy to implement.
  • the upper movable grinding wheel can rotate around the vertical axis relative to the lower fixed grinding wheel, which is convenient for rotating and grinding the liquid material entering the grinding chamber.
  • the setting of the cutter body is convenient for rotating together with the upper movable grinding wheel, thereby rotating and crushing the particles in the liquid material above the upper movable grinding wheel, and the setting of the connecting hole and the gap is convenient for the convenient discharging of the liquid material.
  • the setting of the driving part facilitates the rapid flow of liquid material in the grinding chamber through the driving part when the upper movable grinding wheel rotates, and has good practicability.
  • the arrangement of the first boss and the first groove at the lower end of the upper movable grinding wheel in this case facilitates the high and low flow disturbance of the liquid material flowing between the first boss and the first groove, which is conducive to increasing the flow of the liquid material.
  • the pressure of the liquid material makes the grinding effect better.
  • the setting of the first rack in the first groove facilitates the high and low disturbance of the liquid material flowing circumferentially in the first groove when the upper movable grinding wheel rotates. The flow is conducive to increasing the pressure on the liquid material, thereby improving the effect of grinding the liquid material in the grinding chamber, and has good practicability.
  • the arrangement of the second groove and the second boss of the lower fixed grinding wheel in this case facilitates the high and low flow disturbance of the liquid material flowing between the second groove and the second boss, which is conducive to increasing the impact on the liquid.
  • the pressure of the material makes the grinding effect better.
  • the setting of the second rack in the second groove facilitates the high and low flow disturbance of the liquid material flowing circumferentially in the second groove when the upper movable grinding wheel rotates. , which is conducive to increasing the pressure on the liquid material, thereby improving the effect of grinding the liquid material in the grinding chamber, and has good practicability.
  • the middle part of the lower fixed grinding wheel in the second guide channel extends toward the outer circumferential direction, which facilitates the grinding of the liquid material in the second guide channel. The liquid material flowing circumferentially in the two grooves is guided to change the direction of movement so as to facilitate entry and exit of the second groove, which has good practicability.
  • the structure of the cup body of the wall breaking machine in this case is simple and easy to implement.
  • the external thread of the tube body is arranged to facilitate downward penetration from the inner bottom of the cup body and is locked and fixed by a nut.
  • the setting of the sealing ring which facilitates the sealed connection between the bottom of the lower fixed grinding wheel and the inner bottom of the cup body, and the connection is convenient; in addition, the setting of the knife body device facilitates the rotation, crushing and grinding of the particles of the liquid material in the cup body.
  • the crushed particles in the liquid material are smaller and more uniform, the pulping is more delicate, and the practicability is good.
  • Figure 1 is a diagram of the cup used for the wall breaking machine in this case.
  • Figure 2 is one of the diagrams of the cutter body device of the wall breaking machine in this case.
  • Figure 3 is the second diagram of the cutter body device of the wall breaking machine in this case.
  • FIG. 4 is a cross-sectional view at line A-A in FIG. 3 .
  • Figure 5 is a diagram of the upper movable grinding wheel in this case.
  • Figure 6 is a diagram of the lower fixed grinding wheel in this case.
  • a cutter body device for a wall breaking machine includes a lower fixed grinding wheel 1.
  • the middle part of the lower fixed grinding wheel 1 is connected to a lower fixed grinding wheel through a rotary connection mechanism 2, which can rotate around the vertical axis and is located on the lower fixed grinding wheel.
  • the upper movable grinding wheel 3 above 1 has a grinding chamber 4 formed between the upper movable grinding wheel 3 and the lower fixed grinding wheel 1.
  • the upper end of the upper movable grinding wheel 3 is provided with a connection to facilitate the entry and exit of liquid materials into the grinding chamber 4.
  • the outer circumference of the grinding chamber 4 is provided with a gap 41 to facilitate the entry and exit of liquid materials
  • the upper end of the upper movable grinding wheel 3 is provided with an upper cutter body 5 for rotating together with the upper movable grinding wheel 3, the upper movable grinding wheel 3
  • the lower end is provided with a driving part 32 for driving the liquid material in the grinding chamber 4 to flow rapidly when the upper movable grinding wheel 3 rotates.
  • the structure of the cutter body device of the wall breaking machine in this case is simple and easy to implement.
  • the upper movable grinding wheel 3 can rotate around the vertical axis relative to the lower fixed grinding wheel 1, which facilitates the rotation of the liquid material entering the grinding chamber 4.
  • the upper cutter body 5 is arranged to rotate together with the upper movable grinding wheel 3, thereby rotating and crushing the particles in the liquid material above the upper movable grinding wheel 3, and the connecting hole 31 and the
  • the setting of the gap 41 facilitates the convenient entry and exit of the liquid material into the grinding chamber 4, and the setting of the driving part 32 facilitates the rapid driving of the liquid material in the grinding chamber 4 through the driving part 32 when the upper movable grinding wheel 3 rotates.
  • the upper movable grinding wheel 3 and the upper cutter body 5 may be integrally manufactured or separately manufactured and then connected and fixed together through connectors.
  • the upper blade body 5 is provided with two left and right transverse blade portions 51 extending outward, and two front and rear vertical blade portions 52 extending upward to facilitate rotation and grinding of the liquid material. Particles.
  • the driving part 32 includes a blade 321 protruding from the lower end of the upper movable grinding wheel 3 for driving the liquid material in the grinding chamber 4 to flow rapidly when the upper movable grinding wheel 3 rotates. It is easy to implement.
  • the blades 321 are arranged in several circumferential directions, and a flow guide channel 322 extending from the middle of the lower end of the upper movable grinding wheel 3 to the outer circumferential direction is formed between adjacent blades 321. In this way, It is convenient for the plurality of blades 321 to drive the liquid material in the grinding chamber 4 to flow rapidly along the guide channel 322 when the upper movable grinding wheel 3 rotates.
  • the lower end of the upper movable grinding wheel 3 is provided with a first boss 33 in the middle and a first groove 34 surrounding the outer circumference of the first boss 33.
  • the blades 321 Disposed on the first boss 33 , a plurality of circumferentially arranged first racks 341 are protruding from the first groove 34 for dividing the first groove 34 into a plurality of small grids.
  • the arrangement of the first boss 33 and the first groove 34 at the lower end of the upper movable grinding wheel 3 in this case facilitates the lifting and lowering of the liquid material flowing between the first boss 33 and the first groove 34. Turbulence is conducive to increasing the pressure on the liquid material and making the grinding effect better.
  • the arrangement of the first rack 341 in the first groove 34 facilitates the rotation of the upper movable grinding wheel 3 to the first groove.
  • the liquid material flowing in the circumferential direction in 34 undergoes high and low flow disturbances, which is beneficial to increasing the pressure on the liquid material, thereby improving the effect of grinding the liquid material in the grinding chamber 4, and has good practicability.
  • the upper end of the lower fixed grinding wheel 1 is provided with a second groove 11 in the middle and a second boss 12 surrounding the outer circumference of the second groove 11.
  • a plurality of second racks 111 arranged in a circumferential manner are protruding in the groove 11.
  • a first guide channel 112 extending from the middle part of the lower fixed grinding wheel 1 to the outer circumferential direction is formed between adjacent second racks 111.
  • the second boss 12 is recessed with a plurality of second guide channels 121 arranged in a circumferential manner and extending from the middle part of the lower fixed grinding wheel 1 to the outer circumferential direction.
  • the arrangement of the second groove 11 and the second boss 12 of the lower fixed grinding wheel 1 in this case facilitates high and low disturbance of the liquid material flowing between the second groove 11 and the second boss 12. flow, which is conducive to increasing the pressure on the liquid material and making the grinding effect better.
  • the arrangement of the second rack 111 in the second groove 11 facilitates the rotation of the upper movable grinding wheel 3 to the second groove 11
  • the liquid material flowing in the mid-circumferential direction is disturbed by high and low flow, which is beneficial to increase the pressure on the liquid material, thereby improving the effect of grinding the liquid material in the grinding chamber 4, and has good practicality.
  • the arrangement of the middle part extending toward the outer circumferential direction facilitates the diversion of the liquid material flowing circumferentially in the second groove 11 and changes its direction of movement so as to facilitate entry and exit of the second groove 11, which is of good practicality.
  • the second boss 12 between adjacent second guide channels 121 is concavely provided with a number of arc-shaped grooves 122 concentrically arranged from the middle part of the lower fixed grinding wheel 1 to the outer circumferential direction. It is convenient to disturb the liquid material and is beneficial to increase the pressure on the liquid material, thereby improving the effect of grinding the liquid material in the grinding chamber 4 and having good practicability.
  • a downwardly extending tube body portion 13 is provided in the middle of the lower fixed grinding wheel 1, and the rotary connection mechanism 2 includes a 13.
  • the upper end of the shaft 22 is fixedly connected to the upper movable grinding wheel 3 or the upper end of the shaft 22 is connected to the upper knife.
  • the body 5 is fixedly connected.
  • the outer wall of the tube body 13 is provided with an external thread 131 for connecting the nut 14.
  • the bottom of the shaft body 22 is fixedly connected with a coupling spline 23.
  • the lower end of the lower fixed grinding wheel 1 faces upward.
  • An annular groove 15 is provided around the outer circumference of the tube body 13 for the upper end of the sealing ring 151 to sink into, which facilitates rotational connection during implementation and connection with the cup body 6 shown in Figure 1 .
  • this case also discloses a cup for a wall breaking machine, which includes a cup body 6 and a cutter body device, wherein the middle part of the lower fixed grinding wheel 1 of the cutter body device has a downwardly extending
  • the rotary connection mechanism 2 includes a number of bearings 21 installed in the channel of the pipe body part 13 and a shaft body 22 rotatably connected in the bearings 21, the upper end of the shaft body 22 is connected to
  • the upper movable grinding wheel 3 is fixedly connected or the upper end of the shaft body 22 is fixedly connected to the upper cutter body 5.
  • An external thread 131 for connecting the nut 14 is provided on the outer wall of the tube body 13.
  • the shaft body The lower end of 22 is fixedly connected with a coupling spline 23, and the bottom of the lower fixed grinding wheel 1 is recessed upward with an annular groove 15 surrounding the outer circumference of the tube body 13 for the upper end of the sealing ring 151 to sink into.
  • the tube body 13 penetrates downward from the inner bottom of the cup body 6 and is locked and fixed by the nut 14 .
  • the sealing ring 151 of the annular groove 15 is pressed by the inner bottom of the cup body 6 .
  • the structure of the cup used for the wall breaking machine in this case is simple and easy to implement.
  • the external thread 131 of the tube body 13 is provided so that it can penetrate downward from the inner bottom of the cup body 6 and be locked and fixed by the nut 14.
  • the setting of the sealing ring 151 facilitates the sealing connection between the bottom of the lower fixed grinding wheel 1 and the inner bottom of the cup body 6, and the connection is convenient; in addition, the setting of the cutter body device facilitates the liquid in the cup body 6.
  • the particles of the material are rotated, crushed and ground, so that the crushed particles in the liquid material are smaller and more uniform, the pulping is more delicate, and the practicability is good.
  • This case involves structural innovation, can be manufactured and mass produced, and is in line with industrial practicality.

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

Abstract

一种破壁机用刀体装置和杯体,刀体装置包括有下固定磨轮(1),下固定磨轮(1)中部通过转动连接机构(2)连接有能够绕竖轴转动并且位于下固定磨轮(1)上方的上活动磨轮(3),上活动磨轮(3)与下固定磨轮(1)之间形成有磨腔(4),上活动磨轮(3)的上端设有便于液料进出所述磨腔(4)的连通孔(31),磨腔(4)外周处设有便于液料进出的间隙(41),上活动磨轮(3)的上端设有用于与上活动磨轮(3)一起转动的上刀体(5),上活动磨轮(3)下端设有用于上活动磨轮(3)转动时驱动磨腔(4)中液料快速流动的驱动部(32)。从而便于使液料中粉碎颗粒更小、更均匀、打浆更细腻。

Description

一种破壁机用刀体装置和杯体 技术领域
本发明涉及一种破壁机用刀体装置和杯体。
背景技术
现在市面上的豆浆机/果汁机(又称破壁机),其工作原理都是靠刀片高速转动打碎食物,以便制作果汁或者豆浆等饮品,但其没有磨轮,不便于进一步使液料中粉碎颗粒更小、更均匀、打浆更细腻。因此,如何克服上述存在的缺陷,已成为本领域技术人员亟待解决的重要课题。
技术问题
本发明克服了上述技术的不足,提供了一种破壁机用刀体装置和杯体。
技术解决方案
一种破壁机用刀体装置,包括有下固定磨轮1,所述下固定磨轮1中部通过转动连接机构2连接有能够绕竖轴转动并且位于下固定磨轮1上方的上活动磨轮3,所述上活动磨轮3与所述下固定磨轮1之间形成有磨腔4,所述上活动磨轮3的上端设有便于液料进出所述磨腔4的连通孔31,所述磨腔4外周处设有便于液料进出的间隙41,所述上活动磨轮3的上端设有用于与上活动磨轮3一起转动的上刀体5,所述上活动磨轮3下端设有用于上活动磨轮3转动时驱动所述磨腔4中液料快速流动的驱动部32。
优选的,所述上活动磨轮3上端的连通孔31为若干个,或者所述上活动磨轮3上端可拆卸安装有筛网部30,所述连通孔31为设置在所述筛网部30上的网孔。
优选的,所述上刀体5上设有向外侧延伸的左右两个横刀部51、向上侧延伸的前后两个立刀部52。
优选的,所述驱动部32包括有凸设在所述上活动磨轮3下端用于上活动磨轮3转动时驱动所述磨腔4中液料快速流动的叶片321。
优选的,所述叶片321为圆周排列的若干个,相邻叶片321之间形成有从所述上活动磨轮3下端中部向外周方向延伸的导流通道322。
优选的,所述上活动磨轮3的下端设有位于中部的第一凸台33和围绕在所述第一凸台33外周的第一凹槽34,所述叶片321设置在所述第一凸台33上,所述第一凹槽34中凸设有周向排列的若干用于将第一凹槽34分隔为若干小格的第一齿条341。
优选的,所述下固定磨轮1的上端设有位于中部的第二凹槽11和围绕在所述第二凹槽11外周的第二凸台12,所述第二凹槽11中凸设有呈圆周排列的若干第二齿条111,相邻第二齿条111之间形成有从所述下固定磨轮1中部向外周方向延伸的第一导向通道112,所述第二凸台12上凹设有呈圆周排列的若干分别从所述下固定磨轮1中部向外周方向延伸的第二导向通道121。
优选的,相邻第二导向通道121之间的第二凸台12上凹设有从所述下固定磨轮1中部向外周方向同心排列的若干弧形凹沟122。
优选的,所述下固定磨轮1的中部设有向下延伸的管体部13,所述转动连接机构2包括有安装在所述管体部13通道中的若干轴承21和转动连接在所述轴承21中的轴体22,所述轴体22的上端与所述上活动磨轮3固定连接或者所述轴体22的上端与所述上刀体5固定连接,所述管体部13外侧壁上设有用于连接螺母14的外螺纹131,所述轴体22的下端固定连接有连轴花键23,所述下固定磨轮1的底部向上凹设有围绕在所述管体部13外周用于供密封圈151上端陷入其中的环形凹槽15。
本案还保护一种破壁机用杯体,包括有杯本体6和刀体装置,其中,所述刀体装置的下固定磨轮1的中部设有向下延伸的管体部13,所述转动连接机构2包括有安装在所述管体部13通道中的若干轴承21和转动连接在所述轴承21中的轴体22,所述轴体22的上端与所述上活动磨轮3固定连接或者所述轴体22的上端与所述上刀体5固定连接,所述管体部13外侧壁上设有用于连接螺母14的外螺纹131,所述轴体22的下端固定连接有连轴花键23,所述下固定磨轮1的底部向上凹设有围绕在所述管体部13外周用于供密封圈151上端陷入其中的环形凹槽15,所述管体部13从所述杯本体6的内底部向下穿出并通过螺母14锁紧固定,所述环形凹槽15的密封圈151被所述杯本体6的内底部压紧。
有益效果
1、本案破壁机用刀体装置结构简单易实现,所述上活动磨轮能够相对所述下固定磨轮绕竖轴转动,便于对进入所述磨腔中的液料进行转动研磨,所述上刀体的设置,便于与所述上活动磨轮一起转动,从而对所述上活动磨轮上方的液料中颗粒进行转动搅碎,而所述连通孔和所述间隙的设置,便于液料方便的进出所述磨腔,所述驱动部的设置,便于所述上活动磨轮转动时通过所述驱动部驱动所述磨腔中液料快速流动,实用性好。
2、所述上活动磨轮上端的连通孔为若干个,或者所述上活动磨轮上端可拆卸安装有筛网部,所述连通孔为设置在所述筛网部上的网孔,如此,根据需要而设计所述连通孔的大小,使其对从所述连通孔进入所述磨腔的液体中大颗粒进行过滤,使大颗粒不能通过所述连通孔进入所述磨腔中而避免下固定磨轮和上活动磨轮之间阻力过大而卡死,实用性好。
3、本案所述上活动磨轮下端的第一凸台和第一凹槽的设置,便于对所述第一凸台与第一凹槽之间流动的液料进行高低扰流,有利于增加对液料的压力,使研磨效果更好,所述第一凹槽中第一齿条的设置,便于所述上活动磨轮转动时对所述第一凹槽中周向流动的液料进行高低扰流,有利于增加对液料的压力,从而提高所述磨腔研磨液料的效果,实用性好。
4、本案所述下固定磨轮的第二凹槽和第二凸台的设置,便于对所述第二凹槽与第二凸台之间流动的液料进行高低扰流,有利于增加对液料的压力,使研磨效果更好,所述第二凹槽中第二齿条的设置,便于所述上活动磨轮转动时对所述第二凹槽中周向流动的液料进行高低扰流,有利于增加对液料的压力,从而提高所述磨腔研磨液料的效果,实用性好,所述第二导向通道所述下固定磨轮中部向外周方向延伸的设置,便于对所述第二凹槽中周向流动的液料进行导流,使其改变运动方向,以便于进出所述第二凹槽,实用性好。
5、本案破壁机用杯体结构简单易实现,所述管体部的外螺纹设置,便于从所述杯本体的内底部向下穿出并通过螺母锁紧固定,所述密封圈的设置,便于所述下固定磨轮底部与所述杯本体内底部的密封连接,其连接方便;另,所述刀体装置的设置,便于所述杯本体中液料的颗粒进行转动搅碎和研磨,使液料中粉碎颗粒更小、更均匀、打浆更细腻,实用性好。
附图说明
图1是本案的破壁机用杯体示图。
图2是本案的破壁机用刀体装置示图之一。
图3是本案的破壁机用刀体装置示图之二。
图4是图3中A-A处剖示图。
图5是本案的上活动磨轮示图。
图6是本案的下固定磨轮示图。
本发明的实施方式
如图1至图6所示,一种破壁机用刀体装置,包括有下固定磨轮1,所述下固定磨轮1中部通过转动连接机构2连接有能够绕竖轴转动并且位于下固定磨轮1上方的上活动磨轮3,所述上活动磨轮3与所述下固定磨轮1之间形成有磨腔4,所述上活动磨轮3的上端设有便于液料进出所述磨腔4的连通孔31,所述磨腔4外周处设有便于液料进出的间隙41,所述上活动磨轮3的上端设有用于与上活动磨轮3一起转动的上刀体5,所述上活动磨轮3下端设有用于上活动磨轮3转动时驱动所述磨腔4中液料快速流动的驱动部32。
如上所述,本案破壁机用刀体装置结构简单易实现,所述上活动磨轮3能够相对所述下固定磨轮1绕竖轴转动,便于对进入所述磨腔4中的液料进行转动研磨,所述上刀体5的设置,便于与所述上活动磨轮3一起转动,从而对所述上活动磨轮3上方的液料中颗粒进行转动搅碎,而所述连通孔31和所述间隙41的设置,便于液料方便的进出所述磨腔4,所述驱动部32的设置,便于所述上活动磨轮3转动时通过所述驱动部32驱动所述磨腔4中液料快速流动,实用性好。
如上所述,具体实施时,所述上活动磨轮3与所述上刀体5可以为一体制造或单独制造后通过连接件连接固定在一起。
如图2所示,具体实施时,所述上活动磨轮3上端的连通孔31为若干个,或者所述上活动磨轮3上端可拆卸安装有筛网部30,所述连通孔31为设置在所述筛网部30上的网孔,如此,根据需要而设计所述连通孔31的大小,使其对从所述连通孔31进入所述磨腔4的液体中大颗粒进行过滤,使大颗粒不能通过所述连通孔31进入所述磨腔4中而避免下固定磨轮1和上活动磨轮3之间阻力过大而卡死,实用性好。
如图2所示,具体实施时,所述上刀体5上设有向外侧延伸的左右两个横刀部51、向上侧延伸的前后两个立刀部52,便于转动搅碎液料中颗粒。
如图5所示,具体实施时,所述驱动部32包括有凸设在所述上活动磨轮3下端用于上活动磨轮3转动时驱动所述磨腔4中液料快速流动的叶片321,其实施方便。
如图5所示,具体实施时,所述叶片321为圆周排列的若干个,相邻叶片321之间形成有从所述上活动磨轮3下端中部向外周方向延伸的导流通道322,如此,便于上活动磨轮3转动时通过该若干叶片321驱动所述磨腔4中液料沿着导流通道322快速流动。
如图5所示,具体实施时,所述上活动磨轮3的下端设有位于中部的第一凸台33和围绕在所述第一凸台33外周的第一凹槽34,所述叶片321设置在所述第一凸台33上,所述第一凹槽34中凸设有周向排列的若干用于将第一凹槽34分隔为若干小格的第一齿条341。
如上所述,本案所述上活动磨轮3下端的第一凸台33和第一凹槽34的设置,便于对所述第一凸台33与第一凹槽34之间流动的液料进行高低扰流,有利于增加对液料的压力,使研磨效果更好,所述第一凹槽34中第一齿条341的设置,便于所述上活动磨轮3转动时对所述第一凹槽34中周向流动的液料进行高低扰流,有利于增加对液料的压力,从而提高所述磨腔4研磨液料的效果,实用性好。
如图6所示,具体实施时,所述下固定磨轮1的上端设有位于中部的第二凹槽11和围绕在所述第二凹槽11外周的第二凸台12,所述第二凹槽11中凸设有呈圆周排列的若干第二齿条111,相邻第二齿条111之间形成有从所述下固定磨轮1中部向外周方向延伸的第一导向通道112,所述第二凸台12上凹设有呈圆周排列的若干分别从所述下固定磨轮1中部向外周方向延伸的第二导向通道121。
如上所述,本案所述下固定磨轮1的第二凹槽11和第二凸台12的设置,便于对所述第二凹槽11与第二凸台12之间流动的液料进行高低扰流,有利于增加对液料的压力,使研磨效果更好,所述第二凹槽11中第二齿条111的设置,便于所述上活动磨轮3转动时对所述第二凹槽11中周向流动的液料进行高低扰流,有利于增加对液料的压力,从而提高所述磨腔4研磨液料的效果,实用性好,所述第二导向通道121所述下固定磨轮1中部向外周方向延伸的设置,便于对所述第二凹槽11中周向流动的液料进行导流,使其改变运动方向,以便于进出所述第二凹槽11,实用性好。
如图6所示,具体实施时,相邻第二导向通道121之间的第二凸台12上凹设有从所述下固定磨轮1中部向外周方向同心排列的若干弧形凹沟122,便于对液料进行扰料,有利于增加对液料的压力,从而提高所述磨腔4研磨液料的效果,实用性好。
如图3、图4、图6所示,具体实施时,所述下固定磨轮1的中部设有向下延伸的管体部13,所述转动连接机构2包括有安装在所述管体部13通道中的若干轴承21和转动连接在所述轴承21中的轴体22,所述轴体22的上端与所述上活动磨轮3固定连接或者所述轴体22的上端与所述上刀体5固定连接,所述管体部13外侧壁上设有用于连接螺母14的外螺纹131,所述轴体22的底部固定连接有连轴花键23,所述下固定磨轮1的下端向上凹设有围绕在所述管体部13外周用于供密封圈151上端陷入其中的环形凹槽15,便于具体实施时的转动连接,便于与图1所示的杯本体6的连接。
如图1至图6所示,本案还公开一种破壁机用杯体,包括有杯本体6和刀体装置,其中,所述刀体装置的下固定磨轮1的中部设有向下延伸的管体部13,所述转动连接机构2包括有安装在所述管体部13通道中的若干轴承21和转动连接在所述轴承21中的轴体22,所述轴体22的上端与所述上活动磨轮3固定连接或者所述轴体22的上端与所述上刀体5固定连接,所述管体部13外侧壁上设有用于连接螺母14的外螺纹131,所述轴体22的下端固定连接有连轴花键23,所述下固定磨轮1的底部向上凹设有围绕在所述管体部13外周用于供密封圈151上端陷入其中的环形凹槽15,所述管体部13从所述杯本体6的内底部向下穿出并通过螺母14锁紧固定,所述环形凹槽15的密封圈151被所述杯本体6的内底部压紧。
如上所述,本案破壁机用杯体结构简单易实现,所述管体部13的外螺纹131设置,便于从所述杯本体6的内底部向下穿出并通过螺母14锁紧固定,所述密封圈151的设置,便于所述下固定磨轮1底部与所述杯本体6内底部的密封连接,其连接方便;另,所述刀体装置的设置,便于所述杯本体6中液料的颗粒进行转动搅碎和研磨,使液料中粉碎颗粒更小、更均匀、打浆更细腻,实用性好。
如上所述,本案保护的是一种破壁机用刀体装置和杯体,一切与本案相同或相近似的技术方案都应示为落入本案的保护范围内。
工业实用性
本案涉及结构创新,能实施制造,批量生产,符合工业实用性。

Claims (10)

  1. 一种破壁机用刀体装置,其特征在于包括有下固定磨轮(1),所述下固定磨轮(1)中部通过转动连接机构(2)连接有能够绕竖轴转动并且位于下固定磨轮(1)上方的上活动磨轮(3),所述上活动磨轮(3)与所述下固定磨轮(1)之间形成有磨腔(4),所述上活动磨轮(3)的上端设有便于液料进出所述磨腔(4)的连通孔(31),所述磨腔(4)外周处设有便于液料进出的间隙(41),所述上活动磨轮(3)的上端设有用于与上活动磨轮(3)一起转动的上刀体(5),所述上活动磨轮(3)下端设有用于上活动磨轮(3)转动时驱动所述磨腔(4)中液料快速流动的驱动部(32)。
  2. 根据权利要求1所述的一种破壁机用刀体装置,其特征在于所述上活动磨轮(3)上端的连通孔(31)为若干个,或者所述上活动磨轮(3)上端可拆卸安装有筛网部(30),所述连通孔(31)为设置在所述筛网部(30)上的网孔。
  3. 根据权利要求1所述的一种破壁机用刀体装置,其特征在于所述上刀体(5)上设有向外侧延伸的左右两个横刀部(51)、向上侧延伸的前后两个立刀部(52)。
  4. 根据权利要求1所述的一种破壁机用刀体装置,其特征在于所述驱动部(32)包括有凸设在所述上活动磨轮(3)下端用于上活动磨轮(3)转动时驱动所述磨腔(4)中液料快速流动的叶片(321)。
  5. 根据权利要求4所述的一种破壁机用刀体装置,其特征在于所述叶片(321)为圆周排列的若干个,相邻叶片(321)之间形成有从所述上活动磨轮(3)下端中部向外周方向延伸的导流通道(322)。
  6. 根据权利要求5所述的一种破壁机用刀体装置,其特征在于所述上活动磨轮(3)的下端设有位于中部的第一凸台(33)和围绕在所述第一凸台(33)外周的第一凹槽(34),所述叶片(321)设置在所述第一凸台(33)上,所述第一凹槽(34)中凸设有周向排列的若干用于将第一凹槽(34)分隔为若干小格的第一齿条(341)。
  7. 根据权利要求1所述的一种破壁机用刀体装置,其特征在于所述下固定磨轮(1)的上端设有位于中部的第二凹槽(11)和围绕在所述第二凹槽(11)外周的第二凸台(12),所述第二凹槽(11)中凸设有呈圆周排列的若干第二齿条(111),相邻第二齿条(111)之间形成有从所述下固定磨轮(1)中部向外周方向延伸的第一导向通道(112),所述第二凸台(12)上凹设有呈圆周排列的若干分别从所述下固定磨轮(1)中部向外周方向延伸的第二导向通道(121)。
  8. 根据权利要求7所述的一种破壁机用刀体装置,其特征在于相邻第二导向通道(121)之间的第二凸台(12)上凹设有从所述下固定磨轮(1)中部向外周方向同心排列的若干弧形凹沟(122)。
  9. 根据权利要求1-8任意一项所述的一种破壁机用刀体装置,其特征在于所述下固定磨轮(1)的中部设有向下延伸的管体部(13),所述转动连接机构(2)包括有安装在所述管体部(13)通道中的若干轴承(21)和转动连接在所述轴承(21)中的轴体(22),所述轴体(22)的上端与所述上活动磨轮(3)固定连接或者所述轴体(22)的上端与所述上刀体(5)固定连接,所述管体部(13)外侧壁上设有用于连接螺母(14)的外螺纹(131),所述轴体(22)的下端固定连接有连轴花键(23),所述下固定磨轮(1)的底部向上凹设有围绕在所述管体部(13)外周用于供密封圈(151)上端陷入其中的环形凹槽(15)。
  10. 一种破壁机用杯体,其特征在于包括有杯本体(6)和权利要求1-8任意一项所述的刀体装置,其中,所述刀体装置的下固定磨轮(1)的中部设有向下延伸的管体部(13),所述转动连接机构(2)包括有安装在所述管体部(13)通道中的若干轴承(21)和转动连接在所述轴承(21)中的轴体(22),所述轴体(22)的上端与所述上活动磨轮(3)固定连接或者所述轴体(22)的上端与所述上刀体(5)固定连接,所述管体部(13)外侧壁上设有用于连接螺母(14)的外螺纹(131),所述轴体(22)的下端固定连接有连轴花键(23),所述下固定磨轮(1)的底部向上凹设有围绕在所述管体部(13)外周用于供密封圈(151)上端陷入其中的环形凹槽(15),所述管体部(13)从所述杯本体(6)的内底部向下穿出并通过螺母(14)锁紧固定,所述环形凹槽(15)的密封圈(151)被所述杯本体(6)的内底部压紧。
PCT/CN2022/132877 2022-04-15 2022-11-18 一种破壁机用刀体装置和杯体 WO2023197604A1 (zh)

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CN105392397A (zh) * 2013-07-18 2016-03-09 皇家飞利浦有限公司 豆浆制作器
CN206507827U (zh) * 2016-11-22 2017-09-22 东莞优乐家智能家电有限公司 一种电机下置的磨盘式破壁料理机
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