WO2017121055A1 - 容器可摇摆的食物处理装置 - Google Patents

容器可摇摆的食物处理装置 Download PDF

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Publication number
WO2017121055A1
WO2017121055A1 PCT/CN2016/081934 CN2016081934W WO2017121055A1 WO 2017121055 A1 WO2017121055 A1 WO 2017121055A1 CN 2016081934 W CN2016081934 W CN 2016081934W WO 2017121055 A1 WO2017121055 A1 WO 2017121055A1
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WIPO (PCT)
Prior art keywords
motor
eccentric shaft
container
housing
groove
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PCT/CN2016/081934
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English (en)
French (fr)
Inventor
李晓川
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深圳市联创三金电器有限公司
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Publication of WO2017121055A1 publication Critical patent/WO2017121055A1/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
    • 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
    • A47J43/07Parts or details, e.g. mixing tools, whipping tools
    • A47J43/0716Parts or details, e.g. mixing tools, whipping tools for machines with tools driven from the lower side

Definitions

  • the present invention relates to a kitchen appliance, and more particularly to a food processing apparatus having a cutting, pulverizing and or agitating function.
  • the food processing device comprises a base with a motor inside, a container detachably mounted on the base and a cutter disposed in the container.
  • the lower end of the cutter is provided with a transmission wheel
  • a top of the motor is provided with a matching driving wheel.
  • the above-mentioned driving wheel is coupled with the transmission wheel on the tool to transmit the power of the motor to the tool.
  • Use the high-speed rotating tool to quickly hit the ingredients, and use the inner wall of the container to bounce the swept food back into the whipping range of the cutter and continue to whipping until the ingredients are broken into particles, which is the expected effect of the food processing.
  • some juice machines and food processors have low-speed working conditions, which are specially used for mixing and mixing of ingredients.
  • the above-mentioned juice machine and food cooking machine are widely used, and their powerful stirring function can handle different food materials, can meet many requirements of people's treatment of food materials, and become an indispensable food helper in people's lives.
  • the conventionally developed juice machine and food cooking machine since the positions of the container, the cutter and the foodstuff are relatively fixed, the hitting of the food by the cutter and the movement mode of the inner wall of the container against the foodstuff are basically fixed. Therefore, it is often the case that some of the ingredients are not sufficiently stirred or pulverized, and there is a problem that some of the ingredients adhere to the inner wall of the container. Especially when processing thicker ingredients and performing functions such as crushing ice and dry powder, the treatment effect is even less desirable.
  • the above problems usually require stirring the ingredients by adding a stirring tool to help the ingredients to be thoroughly stirred and pulverized.
  • the technical problem to be solved by the present invention is to provide a container swingable food processing apparatus capable of sufficiently stirring or pulverizing food in view of the above-mentioned deficiencies of the prior art.
  • a container swingable food processing apparatus comprising a container, a housing, a motor and a motor housing, the container being provided with a cutter for stirring or pulverizing, the first output end of the motor being connected to the cutter,
  • the utility model comprises an eccentric shaft structure which is arranged between the second output end of the motor and the housing and is driven to swing by the second output end of the motor, and the container is detachably arranged on the motor cover.
  • the eccentric shaft structure drives the container to sway through the motor cover.
  • the eccentric shaft structure includes a runner and an eccentric shaft, and the eccentric shaft is eccentrically disposed on the runner and fixed to the runner, The runner is connected to the output shaft of the motor.
  • the eccentric shaft structure includes a gearbox, a rotor and an eccentric shaft, the rotor being coupled to a gearbox and an eccentric shaft, respectively, the gearbox being coupled to an output shaft of the motor.
  • the inner surface of the bottom plate of the casing is provided with a groove, the length of the groove is set to be larger than the revolution diameter of the eccentric shaft, and the end of the eccentric shaft is embedded in the groove and driven along the length of the groove by the motor
  • the direction slides in the groove, and the wheel is swung relative to the bottom plate in the direction of the width of the groove, thereby driving the motor cover to swing.
  • a rotating shaft is respectively disposed on opposite sides of the motor cover, and a corresponding bracket is disposed on each of the two sides of the bottom plate of the housing, and each of the brackets is respectively provided with a rotating shaft hole that cooperates with the rotating shaft, and the motor cover can be wound around The rotating shaft is rocked relative to the housing.
  • the motor cover is connected to the housing by a ball hinge or a universal joint, and the inner surface of the bottom plate of the housing is provided with a groove whose length is smaller than the revolution diameter of the eccentric shaft of the eccentric shaft structure.
  • a container swingable food processing apparatus comprising a container, a housing, a motor and a motor housing, the container being provided with a tool for stirring or pulverizing, the output of the motor being connected to the tool, and including synchronization And an eccentric shaft structure that is driven by the synchronous motor to swing relative to the housing; the container is detachably disposed on the motor housing, and the eccentric shaft structure drives the container to swing by the motor housing.
  • the synchronous motor is disposed between the motor housing and the eccentric shaft structure, and the inner surface of the bottom plate of the housing is provided with a groove, and the length of the groove is set to be larger than the revolution diameter of the eccentric shaft of the eccentric shaft structure
  • the output end of the eccentric shaft structure is embedded in the groove and is slid in the groove along the length direction of the groove under the driving of the synchronous motor, and the wheel is swung relative to the bottom plate in the direction of the groove width, thereby driving The motor cover swings.
  • the synchronous motor is disposed between the bottom plate of the casing and the eccentric shaft structure, and the bottom surface of the motor cover is provided with a groove, and the length of the groove is set to be larger than the revolution diameter of the eccentric shaft of the eccentric shaft structure.
  • the output end of the eccentric shaft structure is embedded in the groove and is slid in the groove along the length direction of the groove under the driving of the synchronous motor, and the wheel is swung relative to the bottom plate in the direction of the groove width, thereby driving the motor The cover swings.
  • the eccentric shaft structure includes an input end wheel and an output end eccentric shaft, and the eccentric shaft is eccentrically disposed on the rotating wheel and fixed to the rotating wheel.
  • a rotating shaft is respectively disposed on opposite sides of the motor cover, and a corresponding bracket is disposed on each of the two sides of the bottom plate of the housing, and each of the brackets is respectively provided with a rotating shaft hole that cooperates with the rotating shaft, and the motor cover can be wound around The rotating shaft is rocked relative to the housing.
  • the motor housing is coupled to the housing by means of a ball hinge or a universal joint.
  • the container of the food cooking machine of the invention can swing, and has the following technical effects compared with the prior art: during the stirring process, the food material can be flipped with the swing of the container, changing the relative position of the food material relative to the container and the cutter, and adjusting the foodstuff.
  • the contact position and the striking direction with the cutter realize the stirring and breaking of the food at more angles, so that the stirring and crushing of the ingredients are more sufficient.
  • Figure 1 is a perspective view of the food processing device of the present invention
  • Figure 2 is an exploded perspective view of the food processing device
  • Figure 3 is a cross-sectional view of the food processing apparatus illustrating the principle of rotating the base by rotation of the eccentric shaft structure and the container swinging to one side and the inclined stirring state of the foodstuff;
  • Figure 4 is a cross-sectional view of the food processing apparatus, illustrating the principle of rotating the base by the rotation of the eccentric shaft structure and swinging the agitating container to the intermediate position and the vertical stirring state of the foodstuff;
  • Figure 5 is a cross-sectional view of the food processing apparatus, illustrating the principle of rotating the base by the rotation of the eccentric shaft structure and the principle that the stirring container is swung to the other side and the inclined stirring state of the changing angle of the foodstuff;
  • Figure 6 is a cross-sectional view of the food processing apparatus illustrating the principle of rotation of the eccentric shaft structure driven by the synchronous motor and the assembled state.
  • a container swingable food processing apparatus includes a container 100, a container lid 101 overlying the container 100, a housing, a motor 400 and a motor housing 200, which are provided in the container 100.
  • the transmission wheel 103 at the lower end of the cutter 102 is coupled to the first output end driven wheel 401 disposed at the top of the motor 400, and the power of the motor 400 is transmitted to the cutter 102.
  • an eccentric shaft structure disposed between the second output end of the motor 400 and the housing and driven by the second output end of the motor 400 for swinging motion is disposed, and the container 100 is detachably mounted on the motor. Above the outer cover 200, the eccentric shaft structure drives the container 100 to swing by the motor housing 200.
  • the housing includes a housing 301 and a bottom plate 302.
  • the eccentric shaft structure includes a runner 502 and an eccentric shaft 503 that is eccentrically disposed above the runner 502 and is fixed to the runner, the runner 502 being coupled to the output shaft of the motor 400.
  • a groove 304 is formed on the inner surface of the bottom plate 302 of the casing, and the end of the eccentric shaft 503 is embedded in the groove 304 and slid in the groove 304 driven by the motor 400.
  • the motor housing 200 can be slanted with respect to the housing.
  • the motor housing 200 is respectively provided with a rotating shaft 201 on opposite sides thereof, and the bottom plate 302 of the housing is respectively provided with a bracket.
  • Each of the brackets is respectively provided with a rotating shaft hole 303 that cooperates with the rotating shaft 201, and the motor housing 200 is swingable relative to the housing about the rotating shaft 201.
  • the length of the groove is set to be larger than the revolution diameter of the eccentric shaft, and the end of the eccentric shaft 503 is embedded in the groove 304 and slid in the groove 304 along the length direction of the groove 304 under the driving of the motor 400.
  • the rotating wheel 502 is swung to the left and right with respect to the bottom plate 302, thereby driving the motor cover 200 to swing left and right.
  • the motor housing 200 is coupled to the housing by ball hinges or universal joints to increase the degree of freedom of the motor housing 200.
  • shortening the length of the groove 304 such as shortening to a revolution diameter smaller than the output shaft, can realize the swing of the constant trajectory of the motor housing 200 and the container 100 assembled thereto by the rotation of the eccentric shaft structure.
  • the limit value for the reduction of the length of the groove 304 is the size at which the eccentric shaft 503 of the eccentric shaft structure is fixed, at which time the motor housing 200 and the container 100 fitted thereto will be spatially oscillated with a constant circular trajectory.
  • the rotating shaft 502 of the eccentric shaft structure rotates around its own center.
  • the center position of the rotation is relatively fixed with the motor cover 200.
  • the eccentric shaft 503 of the eccentric shaft structure is fixed on the rotating wheel 502 at a position offset from the center thereof, and the center of the rotating wheel 502 is revolved. .
  • the eccentric shaft 503 of the eccentric shaft structure is embedded in the recess 304 provided in the bottom plate 302, with the result that the eccentric shaft 503 slides back and forth within the recess 304.
  • the length of the groove 304 is set to be larger than the revolution diameter of the eccentric shaft 503, which is the diameter of the circle formed by the revolution of the output shaft around the center of rotation of the wheel plus the diameter of the output shaft itself.
  • the positioning of the eccentric shaft 503 of the eccentric shaft structure by the groove 304 can be used to achieve a plane swaying motion of the eccentric shaft structure relative to the bottom plate 302 with a constant trajectory around the rotating shaft 201.
  • the motor housing 200 and the agitating container 100 mounted thereon are driven to perform a planar rocking motion.
  • the rotation of the input end wheel 502 of the eccentric shaft structure can transmit the power of the motor 400 to the eccentric shaft structure by connecting a gearbox 501 for speed increase or deceleration between the motor 400 and the wheel 502 of the eccentric shaft structure.
  • the runner 502 is mounted on the motor housing 200.
  • the gearbox 501 is typically set to a constant gear ratio, and therefore, the motor housing 200 and the rocking frequency of the container 100 mounted thereto are determined by the rotational speed of the motor 400, as in a proportional relationship.
  • the eccentric shaft structure may also not connect to the power of the motor 400.
  • a synchronous motor 600 is disposed at the bottom of the motor housing 200, and the output end 601 of the synchronous motor 600 and the rotating wheel 502 of the eccentric shaft structure are provided. Connected, the output end of the eccentric shaft structure is embedded in the recess 304 and slid in the recess 304 under the drive of the synchronous motor 600. The eccentric shaft 502 of the eccentric shaft structure is driven by the synchronous motor 600.
  • the motor housing 200 and the rocking frequency of the container 100 mounted thereon can be adjusted, so that the rocking frequency and the rotational speed of the motor 400 can be separately set, improving the operability of the entire solution.
  • the synchronous motor 600 may also be disposed on the bottom plate 302 of the housing and the eccentric shaft structure. Meanwhile, the bottom surface of the motor housing 200 is provided with a groove, and an output end of the eccentric shaft structure is embedded in the groove and slid in the groove by the synchronous motor 600.
  • the relative position between the foodstuff in the container 100 and the container 100 and the cutter 102 can be changed by the rocking motion of the entire base 200 and the container 100 fitted thereto, and the contact of the foodstuff with the cutter 102 can be adjusted. Position and hit direction to achieve more angles of mixing of the ingredients.
  • modifications may be made to the manner in which the motor housing 200 is assembled, such as a sling type, as well as a rocking function.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Food Science & Technology (AREA)
  • Food-Manufacturing Devices (AREA)

Abstract

一种容器可摇摆的食物处理装置,包括容器(100)、壳体、电机(400)和电机外罩(200),容器内设有用于搅拌或粉碎的刀具(102),电机的第一输出端与所述刀具连接;另外还包括相对壳体作摇摆运动的偏心轴结构,容器可拆装设置在电机外罩之上,偏心轴结构通过电机外罩带动容器摇摆;偏心轴结构即可被用于搅拌或粉碎的电机驱动,也可以由单独设置的同步电机(600)驱动;该装置具有以下技术效果:随着容器的摇摆而翻动,调整食材与刀具的接触位置和击打方向,实现食材更多角度的搅拌和破碎,使得食材的搅拌、粉碎更加充分。

Description

容器可摇摆的食物处理装置 技术领域
本发明涉及一种厨房电器,特别是涉及具有切削、粉碎和或搅拌功能的食物处理装置。
背景技术
食物处理装置,包括内部设有电机的机座、可拆装于机座上的容器和设于容器内的刀具,刀具下端设有一个传动轮、电机顶部设有一个与之匹配的带动轮,当容器装配于机座上时,上述带动轮与刀具上的传动轮联接,即可将电机的动力传递给刀具。利用高速旋转的刀具将食材快速击打,并利用容器内壁将被击飞的食材反弹回刀具的搅打范围内,并继续搅打,直至食材破碎呈颗粒,即达到食材处理的预期效果。当然,也有部分果汁机及食物料理机设有低速工作状态,专门用于食材的搅拌混合。
目前,上述果汁机及食物料理机应用非常广泛,其强大的搅拌功能可处理不同的食材,能满足人们对食材处理的诸多要求,成为了人们生活中不可缺少的料理帮手。但是,常规开发出的果汁机及食物料理机在工作中,由于容器、刀具和食材三者的位置相对固定,因此,刀具对食材的击打、以及容器内壁对食材反弹的运动模式基本固定,因此,时常会出现部分食材不能充分搅拌或粉碎,以及存在部分食材粘附在容器内壁的问题。尤其是在加工较粘稠的食材,以及执行碎冰和打干粉等功能时,其处理效果更不理想。目前上述问题,通常需要用通过增加搅拌工具来搅动食材,帮助食材充分搅拌、粉碎。
发明内容
本发明要解决的技术问题在于,针对现有技术的上述不足之处提出一种能将食物充分搅拌或粉碎的容器可摇摆的食物处理装置。
本发明解决所述技术问题所采用的技术方案为:
提供一种容器可摇摆的食物处理装置,包括容器、壳体、电机和电机外罩,所述容器内设有用于搅拌或粉碎的刀具,所述电机的第一输出端与所述刀具连接,还包括设置在电机第二输出端和壳体之间的、相对壳体被所述电机第二输出端驱动作摇摆运动的偏心轴结构,所述容器可拆装地设置在电机外罩之上,所述偏心轴结构通过电机外罩带动所述容器摇摆。
进一步地:
所述偏心轴结构包括转轮和偏心轴,该偏心轴偏心设置于转轮之上并与转轮固定,所述 转轮与电机的输出轴连接。
所述偏心轴结构包括变速箱、转轮和偏心轴,该转轮分别与变速箱和偏心轴连接,所述变速箱与电机的输出轴联接。
所述壳体的底板内面设有凹槽,所述凹槽的长度设定为大于所述偏心轴的公转直径,所述偏心轴末端嵌入凹槽中并在电机的驱动下沿凹槽的长度方向在凹槽中滑动,并于凹槽宽度的方向拨动转轮相对于底板摆动,从而带动电机外罩摆动。
所述电机外罩上相对两侧分别设有旋转轴,所述壳体的底板相应两侧分别设置有支架,各支架上分别设置有与所述旋转轴配合的旋转轴孔,该电机外罩可绕所述旋转轴相对所述壳体摇摆。
所述电机外罩借助球铰链或者万向节与所述壳体连接,所述壳体的底板内面设有凹槽,所述凹槽的长度小于所述偏心轴结构的偏心轴的公转直径。
提出一种容器可摇摆的食物处理装置,包括容器、壳体、电机和电机外罩,所述容器内设有用于搅拌或粉碎的刀具,所述电机的输出端与所述刀具连接,还包括同步电机,和被所述同步电机驱动相对壳体作摇摆运动的偏心轴结构;所述容器可拆装设置在电机外罩之上,所述偏心轴结构通过电机外罩带动所述容器摇摆。
进一步地:
所述同步电机设置在所述电机外罩和偏心轴结构之间,所述壳体的底板的内面设有凹槽,该凹槽的长度设定为大于所述偏心轴结构的偏心轴的公转直径,所述偏心轴结构的输出端嵌入凹槽中并在同步电机的驱动下沿凹槽的长度方向在凹槽中滑动,并于凹槽宽度的方向拨动转轮相对于底板摆动,从而带动电机外罩摆动。
所述同步电机设置在所述壳体的底板和偏心轴结构之间,所述电机外罩的底面设有凹槽,凹槽的长度设定为大于所述偏心轴结构的偏心轴的公转直径,所述偏心轴结构的输出端嵌入凹槽中并在同步电机的驱动下沿凹槽的长度方向在凹槽中滑动,并于凹槽宽度的方向拨动转轮相对于底板摆动,从而带动电机外罩摆动。
所述偏心轴结构包括输入端转轮和输出端偏心轴,该偏心轴偏心设置于转轮之上并与转轮固定。
所述电机外罩上相对两侧分别设有旋转轴,所述壳体的底板相应两侧分别设置有支架,各支架上分别设置有与所述旋转轴配合的旋转轴孔,该电机外罩可绕所述旋转轴相对所述壳体摇摆。
所述电机外罩借助球铰链或者万向节与所述壳体连接。
本发明食物料理机的容器可摇摆,与现有技术相比,具有以下技术效果:食材在搅拌的过程中,能随容器的摇摆而翻动,改变了食材相对容器和刀具的相对位置,调整食材与刀具的接触位置和击打方向,实现食材更多角度的搅拌和破碎,使得食材的搅拌、粉碎更加充分。
附图说明
图1是本发明食物处理装置的立体示意图;
图2是食物处理装置的分解示意图;
图3是食物处理装置的截面图,示意通过偏心轴结构的旋转驱动机座以及容器摇摆到一侧的原理以及食材的倾斜搅拌状态;
图4是食物处理装置的截面图,示意通过偏心轴结构的旋转驱动机座以及搅拌容器摇摆到中间位置的的原理以及食材的垂直搅拌状态;
图5是食物处理装置的截面图,示意通过偏心轴结构的旋转驱动机座以及搅拌容器摇摆到另一侧的原理以及食材的对换角度的倾斜搅拌状态;
图6是食物处理装置的截面图,示意通过同步电机驱动偏心轴结构旋转的原理以及装配状态。
具体实施方式
现结合附图,对本发明的实施例作详细说明。
如图1至5所示,一种容器可摇摆的食物处理装置,包括容器100、覆盖于容器100之上的容器盖101,壳体、电机400和电机外罩200,所述容器100内设有用于搅拌或粉碎的刀具102,刀具102下端的传动轮103与电机400顶部设置的第一输出端带动轮401联接,即可将电机400的动力传递给刀具102。另外,还包括设置在电机400第二输出端和壳体之间的、相对壳体被所述电机400第二输出端驱动作摇摆运动的偏心轴结构,所述容器100可拆装设置在电机外罩200之上,所述偏心轴结构通过电机外罩200带动所述容器100摇摆。
本实施例中,所述壳体包括外壳301和底板302。
一些实施例中,所述偏心轴结构包括转轮502和偏心轴503,该偏心轴503偏心设置于转轮502之上并与转轮固定,所述转轮502与电机400的输出轴连接。
所述壳体的底板302内面设有凹槽304,所述偏心轴503末端嵌入凹槽304中并在电机400的驱动下凹槽304中滑动。
所述电机外罩200相对壳体可以为定轴摇摆,一些实施例中,所述电机外罩200上相对两侧分别设有旋转轴201,所述壳体的底板302相应两侧分别设置有支架,各支架上分别设置有与所述旋转轴201配合的旋转轴孔303,该电机外罩200可绕所述旋转轴201相对所述壳体摇摆。此时,凹槽的长度设定为大于该偏心轴的公转直径,所述偏心轴503末端嵌入凹槽304中并在电机400的驱动下沿凹槽304的长度方向在凹槽304中滑动,并于与凹槽304垂直的方向拨动转轮502相对于底板302左右摆动,从而带动电机外罩200左右摆动。另一些实施例中,所述电机外罩200借助球铰链或者万向节与所述壳体连接,增加电机外罩200的自由度。此时,减短所述凹槽304的长度,如减短到小于该输出轴的公转直径,即可通过偏心轴结构的旋转实现电机外罩200以及装配到其上的容器100的恒定轨迹的摇摆,凹槽304长度减小的极限值为将偏心轴结构的偏心轴503固定的尺寸,此时电机外罩200以及装配到其上的容器100将以恒定的圆形轨迹做空间摇摆。
偏心轴结构的转轮502绕自身中心旋转,该旋转中心位置与电机外罩200相对固定,偏心轴结构的偏心轴503固定在转轮502上偏离其中心的位置,绕转轮502中心做公转运动。同时,偏心轴结构的偏心轴503嵌入底板302上设置的凹槽304内,结果偏心轴503在凹槽304内来回滑动。有些实施例中,凹槽304的长度设定为大于该偏心轴503的公转直径,公转直径即输出轴绕转轮的旋转中心公转形成的圆的直径加上输出轴自身的直径。
通过偏心轴结构偏心轴503的公转运动,配合凹槽304对偏心轴结构的偏心轴503的限位,可实现偏心轴结构相对底板302绕旋转轴201以恒定轨迹的平面摇摆运动。从而带动电机外罩200以及装配于其上的搅拌容器100做平面摇摆运动。
偏心轴结构的输入端转轮502的旋转可通过在电机400与偏心轴结构的转轮502之间连接一个用于增速或减速的变速箱501,将电机400的动力传递给偏心轴结构的转轮502,变速箱501安装于电机外罩200之上。变速箱501通常设置为恒定变速比,因此,电机外罩200以及装配到其上的容器100的摇摆频率由电机400的转速决定,如成正比关系。
一些实施例中,偏心轴结构也可以不接驳电机400的动力,如图6所示,在电机外罩200底部设置一个同步电机600,同步电机600的输出端601与偏心轴结构的转轮502相连,所述偏心轴结构的输出端嵌入凹槽304中并在同步电机600的驱动下在凹槽304中滑动。以同步电机600来驱动偏心轴结构的偏心轴502。如此,控制同步电机600的转速即可调节电机外罩200以及装配到其上容器100的摇摆频率,使得摇摆频率与电机400的转速可分别设定,提升整个方案的可操作性。另外,也可以将所述同步电机600设置在所述壳体的底板302和偏心轴结构之 间,所述电机外罩200的底面设有凹槽,所述偏心轴结构的输出端嵌入凹槽中并在同步电机600的驱动下在凹槽中滑动。
如图3至图5,通过整个机座200以及装配到其上的容器100的摇摆运动,可改变容器100内的食材与容器100和刀具102之间的相对位置,调整食材与刀具102的接触位置和击打方向,实现食材更多角度的搅拌。
另一些实施例中,可以对电机外罩200的装配方式做出修改,比如采用吊装式,也能实现摇摆功能。
应当理解的是,以上实施例仅用以说明本发明的技术方案,而非对其限制,对本领域技术人员来说,可以对上述实施例所记载的技术方案进行修改,或者对其中部分技术特征进行等同替换;而这些修改和替换,都应属于本发明所附权利要求的保护范围。

Claims (12)

  1. 一种容器可摇摆的食物处理装置,包括容器(100)、壳体、电机(400)和电机外罩(200),所述容器(100)内设有用于搅拌或粉碎的刀具(102),所述电机(400)的第一输出端与所述刀具(102)连接,其特征在于:还包括设置在电机(400)第二输出端和壳体之间的、相对壳体被所述电机(400)第二输出端驱动作摇摆运动的偏心轴结构,所述容器(100)可拆装地设置在电机外罩(200)之上,所述偏心轴结构通过电机外罩(200)带动所述容器(100)摇摆。
  2. 根据权利要求1所述的容器可摇摆的食物处理装置,其特征在于:所述偏心轴结构包括转轮(502)和偏心轴(503),该偏心轴(503)偏心设置于转轮(502)之上并与转轮(502)固定,所述转轮(502)与电机(400)的输出轴连接。
  3. 根据权利要求1所述的容器可摇摆的食物处理装置,其特征在于:所述偏心轴结构包括变速箱(501)、转轮(502)和偏心轴(503),该转轮(502)分别与变速箱(501)和偏心轴(503)连接,所述变速箱(501)与电机(400)的输出轴联接。
  4. 根据权利要求2或3所述的容器可摇摆的食物处理装置,其特征在于:所述壳体的底板(302)内面设有凹槽(304),所述凹槽(304)的长度设定为大于所述偏心轴(503)的公转直径,所述偏心轴(503)末端嵌入凹槽(304)中并在电机(400)的驱动下沿凹槽(304)的长度方向在凹槽(304)中滑动,并于凹槽(304)宽度的方向拨动转轮(502)相对于底板(302)摆动,从而带动电机外罩(200)摆动。
  5. 根据权利要求1所述的容器可摇摆的食物处理装置,其特征在于:所述电机外罩(200)上相对两侧分别设有旋转轴(201),所述壳体的底板(302)相应两侧分别设置有支架,各支架上分别设置有与所述旋转轴(201)配合的旋转轴孔(303),该电机外罩(200)可绕所述旋转轴(201)相对所述壳体摇摆。
  6. 根据权利要求1所述的容器可摇摆的食物处理装置,其特征在于:所述电机外罩(200)借助球铰链或者万向节与所述壳体连接,所述壳体的底板(302)内面设有凹槽(304),所述凹槽(304)的长度小于所述偏心轴结构的偏心轴(503)的公转直径。
  7. 一种容器可摇摆的食物处理装置,包括容器(100)、壳体、电机(400)和电机外罩(200),所述容器(100)内设有用于搅拌或粉碎的刀具(102),所述电机(400)的输出端与所述刀具(102)连接,其特征在于:还包括同步电机(600),和被所述同步电机(600)驱动相对壳体作摇摆运动的偏心轴结构;所述容器(100)可拆装设置在电机外罩(200)之上,所述偏心轴结构通过电机外罩(200)带动所述容器(100)摇摆。
  8. 根据权利要求7所述的容器可摇摆的食物处理装置,其特征在于:所述同步电机(600)设置在所述电机外罩(200)和偏心轴结构之间,所述壳体的底板(302)的内面设有凹槽(304),该凹槽(304)的长度设定为大于所述偏心轴结构的偏心轴(503)的公转直径,所述偏心轴结构的输出端嵌入凹槽(304)中并在同步电机(600)的驱动下沿凹槽(304)的长度方向在凹槽(304)中滑动,并于凹槽(304)宽度的方向拨动转轮(502)相对于底板(302)摆动,从而带动电机外罩(200)摆动。
  9. 根据权利要求7所述的容器可摇摆的食物处理装置,其特征在于:所述同步电机(600)设置在所述壳体的底板(302)和偏心轴结构之间,所述电机外罩(200)的底面设有凹槽,凹槽的长度设定为大于所述偏心轴结构的偏心轴(503)的公转直径,所述偏心轴结构的输出端嵌入凹槽中并在同步电机(600)的驱动下沿凹槽的长度方向在凹槽中滑动,并于凹槽宽度的方向拨动转轮相对于底板(302)摆动,从而带动电机外罩(200)摆动。
  10. 根据权利要求7所述的容器可摇摆的食物处理装置,其特征在于:所述偏心轴结构包括输入端转轮(502)和输出端偏心轴(503),该偏心轴(503)偏心设置于转轮(502)之上并与转轮(502)固定。
  11. 根据权利要求7所述的容器可摇摆的食物处理装置,其特征在于:所述电机外罩(200)上相对两侧分别设有旋转轴(201),所述壳体的底板(302)相应两侧分别设置有支架,各支架上分别设置有与所述旋转轴(201)配合的旋转轴孔(303),该电机外罩(200)可绕所述旋转轴(201)相对所述壳体摇摆。
  12. 根据权利要求7所述的容器可摇摆的食物处理装置,其特征在于:所述电机外罩(200)借助球铰链或者万向节与所述壳体连接。
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