WO2020103907A1 - 厨师机动力机构以及厨师机 - Google Patents

厨师机动力机构以及厨师机

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Publication number
WO2020103907A1
WO2020103907A1 PCT/CN2019/119972 CN2019119972W WO2020103907A1 WO 2020103907 A1 WO2020103907 A1 WO 2020103907A1 CN 2019119972 W CN2019119972 W CN 2019119972W WO 2020103907 A1 WO2020103907 A1 WO 2020103907A1
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WO
WIPO (PCT)
Prior art keywords
gear
transmission
power mechanism
drive
stirring
Prior art date
Application number
PCT/CN2019/119972
Other languages
English (en)
French (fr)
Inventor
王文惠
Original Assignee
深圳市品慕科技有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 深圳市品慕科技有限公司 filed Critical 深圳市品慕科技有限公司
Publication of WO2020103907A1 publication Critical patent/WO2020103907A1/zh

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    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02KDYNAMO-ELECTRIC MACHINES
    • H02K7/00Arrangements for handling mechanical energy structurally associated with dynamo-electric machines, e.g. structural association with mechanical driving motors or auxiliary dynamo-electric machines
    • H02K7/10Structural association with clutches, brakes, gears, pulleys or mechanical starters
    • H02K7/116Structural association with clutches, brakes, gears, pulleys or mechanical starters with gears
    • H02K7/1163Structural association with clutches, brakes, gears, pulleys or mechanical starters with gears where at least two gears have non-parallel axes without having orbital motion
    • H02K7/1166Structural association with clutches, brakes, gears, pulleys or mechanical starters with gears where at least two gears have non-parallel axes without having orbital motion comprising worm and worm-wheel

Definitions

  • the invention relates to the technical field of power mechanisms, in particular to a cook machine power mechanism and a cook machine.
  • one of the objects of the present invention is to provide a power mechanism, which solves the problem of insufficient power of the chef machine through the power mechanism.
  • the present invention provides a chef machine power mechanism for a chef machine.
  • the chef machine power mechanism includes a driving device, a transmission mechanism and a stirring mechanism, and the driving device is used to drive the transmission mechanism to drive The stirring mechanism is driven to rotate.
  • the driving device includes a DC motor, the DC motor is provided with an output shaft, and the output shaft sleeve is provided with a worm; the DC motor drives the output shaft to rotate in a first plane perpendicular to the output shaft to drive The worm rotates in the first plane.
  • the transmission mechanism includes a first transmission assembly and a second transmission assembly, the first transmission assembly is connected to the driving device, the first transmission assembly is driven by the driving device; the first transmission assembly Connected with a second transmission assembly, the first drive assembly drives the second transmission assembly.
  • the first transmission assembly includes a helical gear and a first gear
  • the first gear is fixed with the helical gear
  • the helical gear meshes with the worm to drive the first gear in
  • the second plane rotates.
  • the second plane is perpendicular to the first plane.
  • the first gear drives the second transmission assembly to move the stirring mechanism to rotate in the same direction as the first gear.
  • the second transmission assembly includes a second gear and a transmission shaft, the transmission shaft is fixedly connected to the second gear; the second gear meshes with the first gear of the first transmission assembly, the The first gear drives the second gear to rotate in the second plane to drive the transmission shaft to rotate, the stirring mechanism includes a rotating disk and a stirring rod connected to the rotating disk; the transmission shaft and the The rotating disc is fixedly connected to drive the stirring rod to rotate around the transmission shaft.
  • the second transmission assembly includes an internal gear;
  • the stirring mechanism includes a third gear, the third gear is connected to the stirring rod, and meshes with the internal gear; when the third gear follows The stirring rod rotates around the transmission shaft, and the third gear rotates in rotation under the meshing action of the internal gear and drives the transmission shaft in rotation.
  • a groove matching the transmission shaft is provided in the middle of the rotating disk; the transmission shaft is inserted into the groove to drive the rotating disk to rotate.
  • the transmission mechanism further includes a first bevel gear and a second bevel gear, and the first bevel gear and the second bevel gear are connected to drive the second gear.
  • first bevel gear is sleeved on the transmission shaft, and is located on the side of the second gear away from the internal gear.
  • the second gear is provided with a bearing portion, the bearing portion is fixed to the first bevel gear, and the rotation of the first bevel gear rotates as the second gear rotates.
  • the second bevel gear is meshed with the first bevel gear, and the first bevel gear and the second bevel gear are vertically connected.
  • the helical gear is provided with a notch matching the tooth shape of the first gear, and the first gear is inserted into the notch and fixedly connected with the helical gear.
  • the transmission mechanism is also sleeved with a protective shell.
  • the present invention also provides a cooker machine, including any of the cooker machine power mechanisms described above.
  • the beneficial effects of the present invention are: using a DC motor, the kinetic energy output is more stable, has better speed regulation characteristics, and the cooker machine can have more working mode choices.
  • the DC motor outputs kinetic energy through the worm, and the kinetic energy output is smoother.
  • FIG. 1 is a schematic structural diagram of a chef machine according to an embodiment of the present invention
  • FIG. 2 is a front view of the power mechanism of the cook machine according to the embodiment of the present invention.
  • FIG. 3 is a rear view of the power mechanism of the chef according to the embodiment of the invention.
  • FIG. 4 is an exploded view of the power mechanism of the cook machine according to an embodiment of the present invention.
  • FIG. 5 is a schematic diagram of a driving device according to an embodiment of the invention.
  • FIG. 6 is a schematic diagram of a protective case according to an embodiment of the invention.
  • the invention discloses a chef machine power mechanism and a chef machine using the device.
  • the chef machine power mechanism uses a DC motor to drive the stirring mechanism to rotate, providing more power and stability, and at the same time can make the speed regulation more flexible and the stirring function more wide.
  • FIG. 1 is a schematic structural diagram of a chef machine according to an embodiment of the present invention.
  • the cook machine 4 includes a base 46, a main body 42 provided on the base 46, and a cook machine power mechanism 41 provided on the main body 42.
  • the chef machine power mechanism 41 is used to be fixed with the stirring accessory 44.
  • the stand 46 is also used to place the mixing drum 45.
  • the chef machine power mechanism 41 drives the stirring accessory 44 to rotate in the stirring bucket 45 where the stirring items are placed to realize the stirring function.
  • Stirring items can be eggs, flour, cream, etc.
  • the chef machine 4 can work with different mixing accessories 44 in different mixing modes to achieve various mixing functions such as egg-beating, kneading, whipping cream, and the like.
  • FIGS. 2-5 are respectively a front view, a rear view, an exploded view, and a schematic diagram of the driving device of the chef machine power mechanism 41 of the present invention.
  • the main body 42 includes a mounting bracket 47.
  • the power mechanism of the cooker includes a stirring mechanism 3, a driving device 1 installed on the mounting frame 43, and a transmission mechanism 2.
  • the driving device 1 is mounted on the mounting frame 43.
  • the driving device 1 is a source of kinetic energy of the power mechanism of the cooker, and is used to drive the transmission mechanism 2 to drive the stirring mechanism 3 to rotate.
  • the driving device 1 may be a device that converts electrical energy into mechanical energy.
  • the drive device 1 in this embodiment is a brushed DC motor 11.
  • the DC motor 11 has a larger torque, more powerful output kinetic energy, good starting characteristics and speed regulation characteristics, and more stirring modes can be set.
  • the DC motor 11 is provided with an output shaft 13, and the DC motor 11 outputs kinetic energy through the output shaft 13.
  • the output shaft 13 is provided with a worm 12, and the rotation of the output shaft 13 drives the worm 12 to rotate in the first plane.
  • the transmission mechanism 2 includes a first transmission assembly 21 and a second transmission assembly 22.
  • the first transmission assembly 21 and the second transmission assembly 22 are disposed on the mounting frame 47.
  • the first transmission assembly 21 moves under the drive of the driving device 1 and drives the second transmission assembly 22 to move.
  • the first transmission assembly 21 includes a helical gear 211 and a first gear 212.
  • the helical gear 211 and the first gear 212 are sleeved and fixed on a fixed shaft 213 fixed at one end to the mounting frame 47, and the helical gear 211 and the first gear 212 are fixedly connected.
  • the helical gear 211 is vertically arranged and meshed with the worm 12.
  • the helical gear 211 is provided with a notch 2111 that matches the gear shape of the first gear 212.
  • the notch 2111 is provided at the end of the helical gear 211 away from the worm 12.
  • the first gear 212 is inserted into the helical gear 211 through the slot 2111 to be fixedly connected with the helical gear 211 and away from the worm 12.
  • the first gear 212 includes straight teeth parallel to the direction of the fixed shaft 213.
  • the DC motor 11 drives the worm 12 to rotate
  • the worm 12 drives the helical gear 21 to rotate and simultaneously drives the first gear 212 to rotate.
  • the helical gear 211 and the first gear 212 rotate coaxially in a second plane, and the second plane is perpendicular to the first plane in which the worm 12 rotates.
  • the second transmission assembly 22 includes a transmission shaft 222 and a second gear 221.
  • the second gear 221 is fixedly connected to the transmission shaft 222. Among them, the second gear 221 meshes with the first gear 212.
  • the transmission shaft 222 penetrates the mounting frame 47.
  • the second gear 221 is sleeved on the transmission shaft 222 and is located on the mounting frame 47 on the side where the first transmission assembly 21 is provided.
  • the second gear 221 includes a bearing portion 2211 and a tooth portion disposed on the outer periphery of the bearing portion 2211 and parallel to the transmission shaft 222.
  • the bearing portion 2211 is provided with a locking groove 2212, and the transmission shaft 222 vertically protrudes from the protruding rod 2213.
  • the protruding rod 2213 cooperates with the locking groove 2212 to fix the second gear 221 to the transmission shaft 222, so that The shaft 222 rotates synchronously.
  • the gear radius of the second gear 221 is greater than that of the first gear 212, the linear velocity of the first gear 212 is equal to the linear velocity of the second gear 221, and the angular velocity of the second gear 221 is smaller than that of the first gear 212 to obtain a larger torque.
  • the second transmission assembly 22 further includes an internal gear 223 that is fixedly mounted on the mounting frame 47 away from the second gear 221.
  • the stirring mechanism 3 is disposed on the side of the second gear 221 away from the mounting frame 47.
  • the stirring mechanism 3 includes a rotating disk 33, a stirring rod 32, and a third gear 31 whose teeth are parallel to the internal gear 223.
  • the rotating disk 33 is disposed at one end of the transmission shaft 222, and an internal gear 223 is also provided between the rotating disk 33 and the mounting frame 47.
  • the internal gear 223 is fixed to the transmission shaft 222, and the rotating disk 33 is provided with a groove 331 matching the transmission shaft 222. Synchronous rotation.
  • the stirring rod 32 is connected to the edge of the rotating disk 33 and rotates around the transmission shaft 222 while the rotating disk 33 rotates.
  • the stirring rod 32 is used for plugging in with the stirring accessory 44.
  • the third gear 31 is fixedly connected to the stirring rod 32, and the third gear 31 is disposed between the chamber formed by the internal gear 223 and the rotating disk 33 and meshes with the internal gear 223.
  • the stirring rod 32 rotates coaxially with the third gear 31.
  • the third gear 31 rotates around the transmission shaft 222 together with the rotating disk 33.
  • the third gear 31 is meshed with the internal gear 223.
  • the gears of the third gear 31 alternately rotate the gears in contact with the internal gear 223 during the rotation around the transmission shaft 222 to drive the third gear 31 to rotate.
  • the stirring rod 32 fixedly connected to the third gear 31 performs a rotation motion. In the process of using the cooker machine, in addition to the rotation of the stirring accessory connected to the stirring rod 32 around the transmission shaft 222, the stirring accessory itself also rotates due to the rotation of the stirring rod 32, so that the stirring is more adequate.
  • the transmission mechanism 2 further includes a first bevel gear 34 disposed on the transmission shaft 222.
  • the first bevel gear 34 is located on the mounting frame 47 away from the internal gear 223.
  • the first bevel gear 34 is fixedly connected to the carrying portion 2211 so that the first bevel gear 34 and the second gear 221 rotate coaxially.
  • the stirring mechanism 3 further includes a second bevel gear 35 for fixing with the stirring fitting 44.
  • the second bevel gear 35 and the first bevel gear 34 are perpendicular to each other and mesh with the first bevel gear 34.
  • the first bevel gear 34 and the second gear 221 rotate coaxially, driving the second bevel gear 35 to rotate in a direction perpendicular to the direction in which the first bevel gear 34 rotates, thereby driving the stirring accessory 44 to stir.
  • the rotation plane of the second bevel gear 35 and the rotation plane of the output shaft 13 of the DC motor 11 are parallel to each other.
  • the transmission mechanism 2 is further provided with a protective shell 48 for protecting the internal gears of the transmission mechanism and reducing the emission of mechanical noise.
  • the chef machine main body 42 of the chef machine 4 is equipped with a chef machine power mechanism 41, and the stirring rod 32 of the chef machine power mechanism 41 extends into the mixing barrel.
  • the chef machine power mechanism 41 uses a DC motor 11 and the kinetic energy output is more stable. With better speed regulation characteristics, the chef machine 4 can have more working mode choices.
  • the DC motor 11 outputs kinetic energy through the worm 12.
  • the continuous uninterrupted spiral teeth of the worm 12 make the kinetic energy output more stable.
  • the transmission mechanism 2 only needs two transmission components to complete the change of the kinetic energy output direction and the speed reduction and speed regulation, which reduces the overall weight of the chef machine, is easy to maintain, and has a lower cost.

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  • Engineering & Computer Science (AREA)
  • Power Engineering (AREA)
  • Food-Manufacturing Devices (AREA)
  • Toys (AREA)
  • Mixers Of The Rotary Stirring Type (AREA)

Abstract

一种厨师机动力机构,以及使用了该动力机构的厨师机。该厨师机动力机构包括驱动装置(1)、传动机构(2)以及搅拌机构(3),所述驱动装置(1)用于驱动所述传动机构(2)传动,以带动所述搅拌机构(3)旋转;所述驱动装置(1)包括直流电动机(11),所述直流电动机(11)设有输出轴(13),输出轴(13)套设有蜗杆(12);所述传动机构(2)包括第一传动组件(21)、第二传动组件(22),所述蜗杆(12)用于驱动所述第一传动组件(21)运动,所述第一传动组件(21)用于驱动所述第二传动组件(22)运动,所述第二传动组件(22)用于驱动搅拌机构(3)旋转。该机构结构精简,设计合理,传动效率高,操作方便,容易维修,适用于各个场合。

Description

厨师机动力机构以及厨师机 技术领域
本发明涉及动力机构技术领域,尤其涉及一种厨师机动力机构以及厨师机。
背景技术
目前,人们对饮食的要求越来越高,烹饪的手段也越来越多。随着烹饪手段的不断增加,也对厨房用具提出了更多的要求。厨师机作为现代厨房十分常见的厨房用具,能够自动揉面、打蛋和搅拌等功能,为厨房工作带来了方便。但是,现有的厨师机通常采用交流电机作为驱动,但交流电机和调速性较差往往会出现驱动速度难以调整,无法满足多种搅拌功能的需求。
发明内容
为了克服现有技术的不足,本发明的目的之一在于提供一种动力机构,通过动力机构解决厨师机动力不足问题。
为实现上述目的,本发明提供一种厨师机动力机构,用于厨师机,所述厨师机动力机构包括驱动装置、传动机构以及搅拌机构,所述驱动装置用于驱动所述传动机构传动,以带动所述搅拌机构旋转。
进一步地,所述驱动装置包括直流电动机,所述直流电动机设有输出轴,输出轴套设有蜗杆;所述直流电动机驱动所述输出轴在垂直于所述输出轴的第一平面旋转以带动所述蜗杆在所述第一平面旋转。
进一步地,所述传动机构包括第一传动组件和第二传动组件,所述第一传动组件与所述驱动装置连接,所述第一传动组件由所述驱动装置驱动;所述第一传动组件与第二传动组件连接,所述第一驱动组件带动所述第二传动组件。
进一步地,所述第一传动组件包括斜形齿轮和第一齿轮,且所述第一齿轮与所述斜形齿轮相固定,所述斜形齿轮与所述蜗杆啮合驱动所述第一齿轮在第二平面旋转,所述第二平面与所述第一平面垂直,所述第一齿轮驱动所述第二传动组件运动以带动所述搅拌机构与所述第一齿轮同向旋转。
进一步地,所述第二传动组件包括第二齿轮和传动轴,所述传动轴与所述第二齿轮固定连接;所述第二齿轮与第一传动组件的所述第一齿轮啮合,所述第一齿轮带动所述第二齿轮在所述第二平面旋转,以带动所述传动轴旋转,所述搅拌机构包括旋转盘和连接在所述旋转盘的搅拌杆;所述传动轴与所述旋转盘固定连接,以带动所述搅拌杆绕所述传动轴旋转。
进一步地,所述第二传动组件包括内齿轮;所述搅拌机构包括第三齿轮,所述第三齿轮和所述搅拌杆连接,且与所述内齿轮啮合;当所述第三齿轮随着所述搅拌杆绕所述传动轴旋转,所述第三齿轮在所述内齿轮啮合作用下做自转运动旋转而带动所述传动轴做自转运动。
进一步地,所述旋转盘中间设有与所述传动轴相匹配的凹槽;所述传动轴插入所述凹槽,以带动所述旋转盘旋转。
进一步地,所述传动机构还包括第一锥形齿轮和第二锥形齿轮,所述第一锥形齿轮和所述第二锥形齿轮连接,以带动所述第二齿轮。
进一步地,所述第一锥形齿轮套设在所述传动轴,且位于所述第二齿轮远离内齿轮一侧。
进一步地,所述第二齿轮设有承载部,所述承载部与所述第一锥形齿轮固定,第一锥形齿轮转动随着所述第二齿轮转动而转动。
进一步地,所述第二锥形齿轮与所述第一锥形齿轮啮合连接,且所述第一锥形齿轮和第二锥形齿轮垂直连接。
进一步地,所述斜形齿轮设有与所述第一齿轮的齿形相匹配的槽口,所述第一齿轮插入所述槽口与所述斜形齿轮固定连接。
进一步地,所述传动机构还套设有保护壳。
本发明还提供一种厨师机,包括上述任意一项所述的厨师机动力机构。
相比现有技术,本发明的有益效果在于:使用直流电动机,动能输出更稳定,有更好的调速特性,厨师机可以有更多的工作模式选择。直流电动机通过蜗杆输出动能,动能输出更流畅。
附图说明
图1为本发明实施例的厨师机结构示意图;
图2为本发明实施例的厨师机动力机构主视图;
图3为本发明实施例的厨师机动力机构后视图;
图4为本发明实施例的厨师机动力机构爆炸图;
图5为本发明实施例的驱动装置示意图;
图6为本发明实施例的保护壳示意图;
图中:1、驱动装置;11、直流电动机;12、蜗杆;13、输出轴;2、传动机构;21、第一传动组件;211、斜形齿轮;2111;槽口;212、第一齿轮;213、固定轴;22第二传动组件;221、第二齿轮;2211、承载部;2212、卡扣槽;2213、凸出杆;222、传动轴;223、内齿轮;3、搅拌机构;31、第三齿轮、32搅拌杆;33、旋转盘;331、凹槽;34、第一锥形齿轮;35、第二锥形齿轮。4、厨师机;41、厨师机动力机构;42主体;43安装架;44、搅拌配件;45、搅拌桶;46、 机座;47、安装架;48、保护壳。
具体实施方式
下面,结合附图以及具体实施方式,对本发明做进一步描述,需要说明的是,在不相冲突的前提下,以下描述的各实施例之间或各技术特征之间可以任意组合形成新的实施例。
本发明公开了一种厨师机动力机构和使用该装置的厨师机,该厨师机动力机构利用直流电机驱动搅拌机构旋转,提供的功率更大跟稳定,同时可以使得调速更加灵活,搅拌功能更广。
请参看图1,图1为本发明的实施例的厨师机结构示意图。厨师机4包括机座46、设置于机座46的主体42和设置在主体42的厨师机动力机构41。其中,厨师机动力机构41用于与搅拌配件44相固定。机座46还用于放置搅拌桶45。厨师机动力机构41带动搅拌配件44在放置有搅拌物品在搅拌桶45内旋转来实现搅拌功能。搅拌物品可以为鸡蛋、面粉、奶油等。厨师机4可以搭配不同的搅拌配件44在不同的搅拌模式下工作,以实现打蛋、揉面、打奶油等多种搅拌功能。
请参看图2-5,图2-5分别为本发明的厨师机动力机构41的主视图、后视图、爆炸图以及驱动装置示意图。主体42包括安装架47。厨师机动力机构包括及搅拌机构3、设置于安装架43的驱动装置1和传动机构2。驱动装置1安装在安装架43。驱动装置1是厨师机动力机构的动能来源,用于驱动传动机构2带动搅拌机构3进行旋转。具体的,驱动装置1可为将电能转化为机械能的设备。在本实施例的驱动装置1为有刷直流电动机11。直流电动机11的转矩更大,输出动能更强劲,具有良好的启动特性和调速特性,可以设置更多的搅拌模式。直流电动机11设有输出轴13,直流电动机11通过输出轴13输出动能。输出轴 13设有蜗杆12,输出轴13旋转带动蜗杆12在第一平面旋转。
本实施例中,传动机构2包括第一传动组件21和第二传动组件22。第一传动组件21和第二传动组件22设置于安装架47。第一传动组件21在驱动装置1驱动下运动,并带动第二传动组件22运动。第一传动组件21包括斜形齿轮211和第一齿轮212。斜形齿轮211和第一齿轮212套设固定于一端固定在安装架47的固定轴213,且斜形齿轮211和第一齿轮212固定连接。其中,斜形齿轮211与蜗杆12垂直设置并啮合。具体的,斜形齿轮211设有与第一齿轮212的齿轮形状匹配的槽口2111。槽口2111设置于斜形齿轮211远离蜗杆12的一端。第一齿轮212通过槽口2111插入斜形齿轮211以与斜齿轮211固定连接,并远离蜗杆12。第一齿轮212包括与固定轴213方向平行的直齿。直流电动机11驱动蜗杆12旋转时,蜗杆12带动斜形齿轮21旋转从而同时带动第一齿轮212旋转。其中,斜形齿轮211与第一齿轮212在第二平面同轴旋转,第二平面垂直于蜗杆12旋转的第一平面。
第二传动组件22包括传动轴222和第二齿轮221。第二齿轮221与传动轴222固定连接。其中,第二齿轮221与第一齿轮212啮合。传动轴222贯穿安装架47。第二齿轮221套设在传动轴222,且位于安装架47设有第一传动组件21一侧。第二齿轮221包括承载部2211、设置于承载部2211外周的并与传动轴222平行的齿部。承载部2211设有卡扣槽2212,传动轴222垂直突出凸出杆2213,凸出杆2213与卡扣槽2212配合而将第二齿轮221固定于传动轴222,以便实现第二齿轮221和传动轴222同步旋转。第二齿轮221齿轮半径大于第一齿轮212,第一齿轮212线速度等于第二齿轮221线速度相同,第二齿轮221角速度小于第一齿轮212,以得到较大转矩。第二传动组件22还包括内齿轮223,内齿轮223固定安装在安装架47远离第二齿轮221一侧。
在本实施例中,搅拌机构3设置在安装架47远离的第二齿轮221一侧,搅拌机构3包括旋转盘33、搅拌杆32以及齿部平行于内齿轮223的第三齿轮31。旋转盘33设置在传动轴222一端,且旋转盘33与安装架47之间还设置有内齿轮223。内齿轮223固定于传动轴222,旋转盘33设有与传动轴222匹配的凹槽331,凹槽331与传动轴222远离直流电动机11的一端固定连接,以带动旋转盘33与传动轴222以同步旋转。搅拌杆32连接在旋转盘33的边缘,在旋转盘33进行旋转同时绕传动轴222旋转。搅拌杆32用于与搅拌配件44插接。第三齿轮31与搅拌杆32固定连接,且第三齿轮31设置在内齿轮223与旋转盘33组合成的腔室之间,并与内齿轮223啮合。搅拌杆32与第三齿轮31同轴旋转。第三齿轮31与旋转盘33一齐绕传动轴222旋转。第三齿轮31与内齿轮223啮合连接,第三齿轮31的齿轮在绕传动轴222旋转过程中,不断交替与内齿轮223接触的齿轮,带动第三齿轮31做自转运动。与第三齿轮31固定连接的搅拌杆32做自转运动。在厨师机的使用过程中,搅拌杆32连接的搅拌配件除了绕传动轴222做旋转运动,搅拌配件本身也因为搅拌杆32的自转而做自转运动,使搅拌更加充分。
在本实施例中,传动机构2还包括设置于传动轴222上的第一锥形齿轮34,第一锥形齿轮34位于安装架47远离内齿轮223一侧。第一锥形齿轮34与承载部2211固定连接,以使第一锥形齿轮34与第二齿轮221做同轴旋转。搅拌机构3还包括第二锥形齿轮35,用于与搅拌配件44相固定。第二锥形齿轮35与第一锥形齿轮34相互垂直且与第一锥形齿轮34啮合。第一锥形齿轮34与第二齿轮221做同轴旋转,带动第二锥形齿轮35沿着垂直第一锥形齿轮34旋转的方向进行旋转运动,从而带动搅拌配件44搅拌。第二锥形齿轮35旋转平面与直流电动机11的输出轴13旋转平面相互平行。
如图6所示的实施例,在一些实施例中,传动机构2还套设有保护壳48,用于保护传动机构的内部齿轮,且减少机械噪声的发出。
上述实施例中,厨师机4的厨师机主体42安装有厨师机动力机构41,厨师机动力机构41的搅拌杆32延伸进入搅拌桶,厨师机动力机构41使用直流电动机11,动能输出更稳定,有更好的调速特性,厨师机4可以有更多的工作模式选择。直流电动机11通过蜗杆12输出动能。蜗杆12连续不间断的螺旋齿使动能输出更稳定。传动机构2的仅需要两个传动组件就能完成动能输出方向的改变和减速调速,减小了厨师机整体的重量,维修易,成本更低。
上述实施方式仅为本发明的优选实施方式,不能以此来限定本发明保护的范围,本领域的技术人员在本发明的基础上所做的任何非实质性的变化及替换均属于本发明所要求保护的范围。

Claims (14)

  1. 一种厨师机动力机构,用于厨师机,其特征在于,所述厨师机动力机构包括驱动装置、传动机构以及搅拌机构,所述驱动装置用于驱动所述传动机构传动,以带动所述搅拌机构旋转。
  2. 根据权利要求1所述的厨师机动力机构,其特征在于,所述驱动装置包括直流电动机,所述直流电动机设有输出轴,输出轴套设有蜗杆;所述直流电动机驱动所述输出轴在垂直于所述输出轴的第一平面旋转以带动所述蜗杆在所述第一平面旋转。
  3. 根据权利要求2所述的厨师机动力机构,其特征在于,所述传动机构包括第一传动组件和第二传动组件,所述第一传动组件与所述驱动装置连接,所述第一传动组件由所述驱动装置驱动;所述第一传动组件与第二传动组件连接,所述第一传动组件带动所述第二传动组件。
  4. 根据权利要求3所述的厨师机动力机构,其特征在于,所述第一传动组件包括斜形齿轮和第一齿轮,且所述第一齿轮与所述斜形齿轮相固定,所述斜形齿轮与所述蜗杆啮合驱动所述第一齿轮在第二平面旋转,所述第二平面与所述第一平面垂直,所述第一齿轮驱动所述第二传动组件运动以带动所述搅拌机构与所述第一齿轮同向旋转。
  5. 根据权利要求4所述的厨师机动力机构,其特征在于,所述第二传动组件包括第二齿轮和传动轴,所述传动轴与所述第二齿轮固定连接;所述第二齿轮与第一传动组件的所述第一齿轮啮合,所述第一齿轮带动所述第二齿轮在所述第二平面旋转,以带动所述传动轴旋转,所述搅拌机构包括旋转盘和连接在所述旋转盘的搅拌杆;所述传动轴与所述旋转盘固定连接,以带动所述搅拌杆绕所述传动轴旋转。
  6. 根据权利要求5所述的厨师机动力机构,其特征在于,所述第二传动组件包括内齿轮;所述搅拌机构包括第三齿轮,所述第三齿轮和所述搅拌杆连接,且与所述内齿轮啮合;当所述第三齿轮随着所述搅拌杆绕所述传动轴旋转,所述第三齿轮在所述内齿轮啮合作用下做自转运动旋转而带动所述传动轴做自转运动。
  7. 根据权利要求6所述的厨师机动力机构,其特征在于,所述旋转盘中间设有与所述传动轴相匹配的凹槽;所述传动轴插入所述凹槽,以带动所述旋转盘旋转。
  8. 根据权利要求7所述的厨师机动力机构,其特征在于,所述传动机构还包括第一锥形齿轮和第二锥形齿轮,所述第一锥形齿轮和所述第二锥形齿轮连接,以带动所述第二齿轮。
  9. 根据权利要求8所述的厨师机动力机构,其特征在于,所述第一锥形齿轮套设在所述传动轴,且位于所述第二齿轮远离内齿轮一侧。
  10. 根据权利要求9所述的厨师机动力机构,其特征在于,所述第二齿轮设有承载部,所述承载部与所述第一锥形齿轮固定,第一锥形齿轮转动随着所述第二齿轮转动而转动。
  11. 根据权利要求8所述的厨师机动力机构,其特征在于,所述第二锥形齿轮与所述第一锥形齿轮啮合连接,且所述第一锥形齿轮和第二锥形齿轮垂直连接。
  12. 根据权利要求4所述的厨师机动力机构,其特征在于,所述斜形齿轮设有与所述第一齿轮的齿形相匹配的槽口,所述第一齿轮插入所述槽口与所述斜形齿轮固定连接。
  13. 根据权利要求3所述的厨师机动力机构,其特征在于,所述传动机构还套设有保护壳。
  14. 一种厨师机,其特征在于:所述厨师机包括上述权利要求1-13任意一项所述的厨师机动力机构。
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