WO2014183498A1 - 磨盘式面包机、磨碎方法和装备有磨盘组件的容器 - Google Patents

磨盘式面包机、磨碎方法和装备有磨盘组件的容器 Download PDF

Info

Publication number
WO2014183498A1
WO2014183498A1 PCT/CN2014/073451 CN2014073451W WO2014183498A1 WO 2014183498 A1 WO2014183498 A1 WO 2014183498A1 CN 2014073451 W CN2014073451 W CN 2014073451W WO 2014183498 A1 WO2014183498 A1 WO 2014183498A1
Authority
WO
WIPO (PCT)
Prior art keywords
disc
grinding disc
shaft
sleeve
pin
Prior art date
Application number
PCT/CN2014/073451
Other languages
English (en)
French (fr)
Inventor
李晓川
Original Assignee
深圳市联创三金电器有限公司
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 深圳市联创三金电器有限公司 filed Critical 深圳市联创三金电器有限公司
Priority to KR1020157025957A priority Critical patent/KR20160010403A/ko
Priority to JP2016513207A priority patent/JP6375368B2/ja
Publication of WO2014183498A1 publication Critical patent/WO2014183498A1/zh

Links

Classifications

    • 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
    • A21BAKING; EDIBLE DOUGHS
    • A21BBAKERS' OVENS; MACHINES OR EQUIPMENT FOR BAKING
    • A21B7/00Baking plants
    • A21B7/005Baking plants in combination with mixing or kneading devices
    • 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
    • A47J43/0722Mixing, whipping or cutting tools

Definitions

  • the present invention relates to an apparatus for preparing a food having a driving mechanism, and more particularly to an apparatus for preparing a food having an abrasive member.
  • BACKGROUND OF THE INVENTION At present, a household automatic bread machine is prepared by putting flour or ready-made rice flour with water, oil, baking powder and the like into a bread bucket, stirring into dough or rice balls, and then making steps such as fermentation, acidification and baking. bread. With the improvement of people's living standards, the demand for bread with people who use rice as a staple food is increasing. But for people who use rice as their staple food, they are more willing to accept bread with a taste of rice.
  • the grinding mechanism of the bread machine for directly preparing bread by using rice or miscellaneous grains mainly uses a blade unit to rotate the rice or the grain at a high speed, and the two motors are respectively used for pulverizing and stirring, and the blade unit includes the pulverizing blade and the stirring blade.
  • the structure is complex and the cost is high.
  • the technical problem to be solved by the present invention is to provide a disc-type bread machine with a simple structure and low cost, a grinding method and a container equipped with a disc assembly.
  • a grinding disc type bread machine comprising a body, an electric motor located in the machine body, a baking chamber, a bread barrel, a grinding disc assembly, the grinding disc assembly comprising an upper grinding disc and a lower grinding disc, wherein the upper grinding disc is fixed with a blade and a sleeve,
  • the sleeve is provided with an axial groove and a diagonal groove extending obliquely upward with the end of the axial groove, the axial groove extending upward from the lowermost end of the sleeve;
  • the lower grinding plate is fixed at the bottom of the bread barrel, the shaft Passing through the lower grinding disc, the shaft is provided with a pin; the shaft is placed in the sleeve, the pin on the shaft enters the chute through the axial groove of the sleeve, and the shaft drives the upper grinding disc to rotate forward relative to the lower grinding disc by means of the pin And reverse rotation.
  • the blade is fixed perpendicularly to the upper grinding disc, and the sleeve is fixed to the upper grinding disc by means of the vane.
  • the lower end surface of the sleeve is an inclined end surface.
  • the feed opening of the upper grinding disc is located in the middle of the upper grinding disc and is plum-shaped.
  • the top surface of the lower grinding disc is located at a position corresponding to the feed opening of the upper grinding disc around the shaft as a smooth plane.
  • the inclined groove (562) has an elevation angle of 10° -30° with the horizontal plane.
  • a disc-type bread machine comprising a body, an electric motor located in the body, a baking compartment, a bread bucket and a disc assembly, the disc assembly comprising an upper disc and a lower disc; the upper disc is fixed with a blade and a first shaft , the first a pin is arranged on the shaft, a lower grinding disc is fixed on the bottom of the bread barrel, a second shaft passes through the lower grinding disc, and a lower end of the second shaft is provided with a guiding sleeve, and the guiding sleeve is provided with an axial groove and an end of the axial groove a chute extending obliquely downward, the axial groove extending downward from an uppermost end of the guide sleeve; the first shaft being disposed in the guide sleeve, the pin on the first shaft passing through the guide sleeve The axial groove enters the chute, and the second shaft drives the upper disc to rotate forward and reverse relative to the lower disc by means of a pin.
  • the upper edge of the upper disc has an upper disc sleeve, and the first shaft is fixed to the upper disc sleeve.
  • the second shaft is fixed to the guide sleeve by means of a pin.
  • the shaft drives the upper grinding disc by means of a pin, the upper grinding disc rotates forward, and the blades on the upper grinding disc stir the grain and water mixture to form a vortex shape, and the grain particles and water enter the center feeding port of the upper grinding disc, and are driven by the flowing liquid.
  • the rice grains enter the grinding disc and are ground;
  • the motor drives the axle pin to reverse for a predetermined time, the pin moves obliquely downward along the chute, lifts the upper grinding disc upward, and simultaneously drives the upper grinding disc to reverse, and the blade reverses the stirring meter. Slurry, moving the rice grains that could not be stirred by the original grinding disc to another position;
  • the second shaft drives the upper grinding disc by means of a pin, the upper grinding disc is reversed, the blades on the upper grinding disc stir the grain and water mixture to form a vortex shape, and the grain particles and water enter the center feeding port of the upper grinding disc, in the flow
  • the rice grains enter the grinding disc and are ground;
  • the motor drives the shaft pin to rotate forward for a predetermined time, the pin moves obliquely upward along the chute, lifts the upper grinding disc upward, and simultaneously drives the upper grinding disc to rotate forward, and the blade rotates forwardly. Slurry, moving the rice that could not be stirred by the original grinding disc to another position; 5) Reverse the grinding and the alternate rotation in turn to complete the grinding of the rice grains.
  • a container having a disc assembly comprising an upper disc, a shaft and a lower disc, the upper disc being fixed with a blade and a sleeve, the sleeve being provided with an axial groove and the axial groove a chute that communicates with the end, the axial groove extends upward from the lowermost end of the sleeve to the middle portion;
  • the lower grinding disc is fixed to the bottom of the container, the shaft passes through the lower grinding disc, and the shaft is provided with a pin; the shaft is placed in the sleeve The pin on the shaft enters the chute through the axial groove of the sleeve, and the shaft drives the upper disc to rotate forward and reverse by means of the pin.
  • the present invention has the following technical effects:
  • the grinding disc assembly has a simple structure, and the same blade and the same motor are used for grinding and stirring the crucible, and the cost is low;
  • the milled rice slurry is tender and smooth, and the bread made is good;
  • Figure 1 is a schematic cross-sectional structural view of a disc-type bread machine of the present invention
  • Figure 2 is an exploded perspective view of the disc assembly of the present invention
  • Figure 3 is a cross-sectional view of the disc assembly assembled on the bread bucket
  • Figure 4 is a perspective view of the grinding disc assembly
  • Figure 5 is a perspective view of the upper grinding disc with the blade and the sleeve
  • Figure 6 is a perspective view of the bottom surface of the upper grinding disc with the blade and the sleeve
  • Figure 7 is a plan view of the bottom surface of the upper grinding disc with the blade and the sleeve
  • Figure 8 is a plan view of the lower grinding disc
  • Figure 9 is a perspective view of the shaft
  • Figure 10 is a schematic view showing the state in which the disc assembly is assembled but not in operation
  • Figure 11 is an enlarged schematic view of a portion A of Figure 10;
  • Figure 12 is a schematic view showing the state of the grinding disc assembly when the upper grinding disc is rotated counterclockwise;
  • Figure 13 is a schematic view showing the state of the grinding disc assembly when the upper grinding disc is rotated clockwise;
  • Figure 14 is an exploded perspective view of another embodiment of the disc assembly
  • Figure 15 is a cross-sectional view of another embodiment of a disc assembly.
  • Figure 16 is a schematic view of a bread bucket.
  • a disc-type bread machine includes a body 1, an electric motor 2 located inside the body 1, an oven 3, a bread bucket 4, a disc assembly 5, an automatic feeding box 6, and an upper cover 7.
  • the automatic feeding box is disposed in the upper cover 7.
  • the disc assembly 5 includes an upper grinding disc 51, a shaft 52, and a lower grinding disc 53.
  • the upper grinding disc 51 is fixed with a blade 55 and a sleeve 56.
  • the sleeve 56 is provided with an axial groove 561 and a chute 562 communicating with the end of the axial groove 561.
  • the axial groove 561 is from the sleeve 56.
  • the lower end extends up to the middle.
  • the inclined angle of the inclined groove 562 relative to the horizontal plane may be selected (10-30) °, preferably 19. 3 °.
  • the setting of the chute mainly has two functions: First, when the shaft rotates against the clock, the gap between the upper and lower grinding discs is eliminated, that is, the "locking" of the upper disc; and second, because the chute exists in the up and down direction. The distance travel can overcome the machining tolerances and assembly tolerances of the upper and lower grinding discs, shafts and other components, ensuring good contact between the two grinding discs during the grinding operation.
  • the vane 55 is vertically fixed to the upper grinding disc 51, and the sleeve 56 is fixed to the upper grinding disc 51 by means of the vane 55.
  • the sleeve 56 can also be fixed to the opposite side of the blade by means of a connecting beam (not shown) and the upper grinding disc 51 to ensure that the center line of the sleeve hole is perpendicular to the upper grinding disc.
  • the blade 55 comprises two parts with an obtuse angle between the two parts, and has the following functions: First, in the grinding working state, the oblique side of the blade introduces the rice grain into the feeding port of the upper grinding disc; the second is the stirring and kneading. As shown in FIG.
  • the lower end surface 563 of the sleeve 56 is an inclined end surface, so that the lower end surface of the sleeve is not caught on the shaft pin during the sleeve and the shaft sleeve, and the sleeve and the shaft are convenient. Assembly.
  • the feed port 511 of the upper grinding disc 51 is located in the middle of the upper grinding disc 51 and is in the shape of a plum.
  • the lower grinding disc 53 is provided with a sealing ring 406 which is fixed to the bottom of the bread bucket 4 by means of screws 413.
  • the top surface of the lower grinding disc 53 is located around the shaft 52 corresponding to the inlet 511 of the upper grinding disc 51, and the portion is designed to be smooth in order to facilitate cleaning.
  • the shaft 52 passes through the lower grinding disc 53, and the shaft 52 is provided with a pin 521; the shaft 52 is placed in the sleeve 56, and the pin 521 on the shaft 52 passes through the sleeve 56.
  • the axial groove 561 enters the chute 562, and the shaft 52 can drive the upper grinding disc 51 to rotate forward and reverse by means of the pin 521.
  • the material of the upper and lower grinding discs needs to have strong wear resistance, is not easy to rust, and can be used for a long time in a high temperature baking environment below 20CTC. Stainless steel SUS316 and SUS420 can be used.
  • the vertical wall of the bread bucket 4 is designed with an inwardly protruding symmetry spoke 41, which is advantageous for increasing the blocking force when the dough is pressed, preventing the dough from rotating too fast and increasing the kneading effect.
  • 405 is an oil seal
  • 408 is an oil bearing
  • 409 is a gasket
  • 410 is an E-type buckle
  • 411 is an upper connector
  • 412 is a retaining ring.
  • the shaft 52 drives the upper grinding disc 51 by means of a pin 521, and the upper grinding disc 51 rotates counterclockwise (forward rotation), and the blades 55 on the upper grinding disc 51 agitate the grain and water mixture to form a vortex shape, and the grain particles and water enter the upper grinding disc.
  • the center feed port 511 is driven by the flowing liquid, and the rice grains are ground into the grinding disc socket.
  • the upper disc rotation speed is between 150_550 rpm, and the rotation speed is 260 rpm.
  • the motor drives the shaft pin to rotate clockwise (reverse) for a predetermined time, such as 15 seconds.
  • the pin 521 moves obliquely downward along the chute 562.
  • the grinding disc 51 is lifted up, and at the same time, the upper grinding disc 51 is rotated clockwise.
  • the position of the pin 521 in the chute 562 is converted from the pressed state shown in Fig. 12 to the upper top state shown in Fig. 13 via the gap state shown in Fig. 10.
  • the pin 521 generates an upward force F3 and a clockwise rotational power F4 to the upper grinding disc via the sleeve 56.
  • the blade reversely stirs the semi-solid rice slurry, and moves the rice grains that cannot be stirred by the original grinding disc to another position, thus disturbing the "dead corner" position that could not be ground, and preparing for the next feeding grinding. .
  • the wheat gluten and baking powder in the automatic feeding box 6 are placed in the bread bucket, at which time the upper grinding disc 51 is reversed, and the bread rice syrup and the wheat gluten are stirred.
  • the shaft 52 is reversed, the position of the pin 521 in the chute 562 is as shown in FIG. 13, and the pin 521 pushes up the upper grinding disc so that there is a certain gap between the upper and lower grinding discs. In this embodiment, the gap is 0. 5mm. In this way, the friction between the upper and lower grinding discs will be small or even zero.
  • the grinding disc having a depth of about 0. 5mm.
  • the rice granules are repeatedly ground through the grinding disc, and the processed rice syrup is placed in a 60 mesh screen, rinsed with water, and the remaining granules are very small, and there is no complete granule.
  • the grinding disc of the invention adopts a low speed working mode, and the noise is relatively small. Please refer to the following test record:
  • the rice bread is produced by the machine of the present invention, the noise is reduced, the rice flour is finely ground, and the bread taste is better.
  • FIG. 14 and 15 Another embodiment of the disc assembly 5 of the disc-type bread machine, as shown in Figs. 14 and 15, includes an upper disc 51 and a lower disc 53; the upper disc 51 is fixed with a vane 55 and a first shaft 57, the first shaft 57 A pin 571 is provided, the lower grinding disc 53 is fixed to the bottom of the bread barrel 4, the second shaft 58 passes through the lower grinding disc 53, and the upper end of the second shaft 58 is provided with a guide sleeve 59, and the guide sleeve 59 is provided with an axial groove 591.
  • the first shaft 57 is disposed in the guide sleeve 59,
  • the pin 571 on the first shaft 57 enters the chute 592 through the axial groove 591 of the guide sleeve 59.
  • the second shaft 58 drives the upper disc 51 to rotate forward and reverse with respect to the lower disc 53 by means of the pin 571.
  • An upper disc sleeve 551 may be disposed on the edge of the blade 55 of the upper grinding disc 51, and the first shaft 57 and the upper disc sleeve 551 are fixed by means of pins. In another embodiment, the first shaft 57 can also be fixed directly to the blade 55.
  • the second shaft 58 is fixed to the guide sleeve 59 by means of a pin.
  • the second shaft 58 is integral with the guide sleeve 59, the lower portion is a solid shaft, and the upper portion is a guide sleeve.
  • the second shaft 58 drives the upper grinding disc 51 by means of a pin, the upper grinding disc 51 is reversed, and the blade 55 on the upper grinding disc 51 agitates the grain and the water mixture to form a vortex shape, and the grain particles and water enter the center of the upper grinding disc.
  • Feed port 511 driven by flowing liquid, the rice grains enter the grinding disc socket and are ground; 4) After a predetermined time of operation, the motor drives the shaft pin to rotate forward for a predetermined time, and the pin moves obliquely upward along the chute 592 to lift the upper grinding disc 51 upward, and simultaneously drives the upper grinding disc 51 to rotate forward, the blade 55 Forward the agitated semi-solid rice slurry, and move the rice grains that could not be stirred by the original grinding plate to another position;

Landscapes

  • Engineering & Computer Science (AREA)
  • Food Science & Technology (AREA)
  • Mechanical Engineering (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Food-Manufacturing Devices (AREA)
  • Baking, Grill, Roasting (AREA)
  • Bakery Products And Manufacturing Methods Therefor (AREA)

Abstract

一种磨盘式面包机、磨碎方法和和装备有磨盘组件的容器,其磨盘组件(5)包括上磨盘(51)、轴(52)和下磨盘(53),上磨盘(51)上固定有叶片(55)和轴套(56);下磨盘(53)固定在面包桶(4)底部,轴(52)穿越下磨盘(53),轴(52)上设置有销(521);轴(52)置于轴套(56)内,轴(52)上的销(521)通过轴套(56)的轴向槽(561)进入斜槽(562),轴(52)借助销(521)带动上磨盘(51)正转和反转。具有以下技术效果:磨盘组件结构简单;磨出的米浆细嫩幼滑;噪音低。

Description

磨盘式面包机、 磨碎方法和装备有磨盘组件的容器 技术领域 本发明涉及有驱动机构的制备食品的器具, 特别是涉及有研磨部件的制备 食品的装置。 背景技术 目前家用自动面包机是将面粉或现成的米粉与水、 油、 发酵粉等配方放入 面包桶内, 经过搅拌成面团或米团, 再经过发酵、 放酸和烘烤等步骤制作成面包。 随着 人们生活水平的提高, 以米饭作为主食的人对面包的需求日益增加。 但对于以米饭作为 主食的人群来说, 更愿意接受具有大米口感的面包。 而且, 随时人们对营养搭配的追求, 人们也希望自己搭配谷物杂粮制作面包。 因此, 已经产生了用大米或者杂粮直接做成面 包的需求。 现有技术中, 直接用大米或杂粮制备面包的面包机的磨粉机构主要是用叶片单元高 速旋转粉碎大米或杂粮, 使用两个电机分别实施粉碎和搅拌, 且叶片单元包括粉碎叶片 和搅拌叶片, 结构复杂, 成本高。
发明内容 本发明要解决的技术问题是提供一种结构简单、 成本低的磨盘式面包机、 磨碎方法以及装备有磨盘组件的容器。
针对上述要解决的技术问题, 本发明的技术方案如下:
设计一种磨盘式面包机, 包括机体、 位于机体内的电动机、 烘烤室、 面包桶、 磨盘 组件, 所述磨盘组件包括上磨盘和下磨盘, 所述上磨盘上固定有叶片和轴套, 所述轴套 上设置有轴向槽和与该轴向槽末端相通的沿斜上方延伸的斜槽, 该轴向槽从轴套的最下 端往上延伸; 下磨盘固定在面包桶底部, 轴穿越下磨盘, 轴上设置有销; 所述轴置于轴 套内, 所述轴上的销通过轴套的轴向槽进入斜槽, 所述轴借助销带动上磨盘相对下磨盘 正向旋转和反向旋转。
所述叶片与上磨盘垂直固定, 轴套借助叶片与上磨盘固定。
所述轴套的下端面为斜端面。
所述上磨盘的进料口位于上磨盘的中间, 为梅花状。
所述下磨盘顶面位于轴周围对应上磨盘进料口的部位为光滑平面。
所述斜槽 (562 ) 与水平面的仰角为 10° -30° 。
设计一种磨盘式面包机, 包括机体、 位于机体内的电动机、 烘烤室、 面包桶和磨盘 组件, 所述磨盘组件包括上磨盘和下磨盘; 所述上磨盘上固定有叶片和第一轴, 该第一 轴上设置有销, 下磨盘固定在面包桶底部, 第二轴穿越下磨盘, 该第二轴上端设置有导 轴套, 所述导轴套上设置有轴向槽和与该轴向槽末端相通的沿斜下方延伸的斜槽, 该轴 向槽从导轴套的最上端往下延伸; 所述第一轴置于导轴套内, 所述第一轴上的销通过导 轴套的轴向槽进入斜槽,所述第二轴借助销带动上磨盘相对下磨盘正向旋转和反向旋转。
所述上磨盘上叶片边缘有上磨盘轴套, 所述第一轴与上磨盘轴套固定。
所述第二轴借助销钉与导轴套固定。
提出一种面包机的磨碎方法, 包括步骤,
1 )在面包桶内加入大米或杂粮, 参照面包配方配好小麦面筋及发酵粉放入自动投料 箱中, 盖好上面包机上盖;
2) 启动电机, 电机经传动组件带动穿越下磨盘的轴转动, 随着轴旋转, 所述轴上的 销沿着上磨盘轴套上的斜槽往斜上方移动, 上磨盘相对下磨盘向下移动, 上磨盘相对下 磨盘 "锁紧";
3)所述轴借助销驱动所述上磨盘, 上磨盘正转, 上磨盘上的叶片搅动谷物和水混和 物, 形成涡流状, 谷物颗粒和水进入上磨盘中心进料口, 在流动液体带动下, 米粒进入 磨盘牙槽并被磨碎;
4) 当工作一预定时间后, 电机带动轴销反转一预定时间, 所述销沿着斜槽往斜下方 移动, 将上磨盘向上顶起, 同时带动上磨盘反转, 叶片反转搅动米浆, 将原来上磨盘正 转所不能搅动的米粒移动至另外一个位置;
5) 再依次正转研磨、 反转交替, 完成米粒的磨碎。
提出一种面包机的磨碎方法, 包括步骤,
1 )在面包桶内加入大米或杂粮, 参照面包配方配好小麦面筋及发酵粉放入自动投料 箱中, 盖好上面包机上盖;
2)启动电动机, 电动机经传动组件带动穿越下磨盘的第二轴转动, 随着第二轴旋转, 所述第一轴上的销沿着下磨盘导轴套上的斜槽往斜下方移动, 上磨盘相对下磨盘向下移 动, 上磨盘相对下磨盘 "锁紧";
3)所述第二轴借助销驱动所述上磨盘, 上磨盘反转, 上磨盘上的叶片搅动谷物和水 混和物, 形成涡流状, 谷物颗粒和水进入上磨盘中心进料口, 在流动液体带动下, 米粒 进入磨盘牙槽并被磨碎;
4) 当工作一预定时间后, 电动机带动轴销正转一预定时间, 所述销沿着斜槽往斜上 方移动, 将上磨盘向上顶起, 同时带动上磨盘正转, 叶片正转搅动米浆, 将原来反转上 磨盘所不能搅动的米粒移动至另外一个位置; 5 ) 再依次反转研磨、 正转交替, 完成米粒的磨碎。
设计一种具有磨盘组件的容器, 所述磨盘组件包括上磨盘、 轴和下磨盘, 所述上磨 盘上固定有叶片和轴套, 所述轴套上设置有轴向槽和与该轴向槽末端相通的斜槽, 该轴 向槽从轴套的最下端往上延伸至中部; 下磨盘固定在容器底部, 所述轴穿越下磨盘, 轴 上设置有销; 所述轴置于轴套内, 所述轴上的销通过轴套的轴向槽进入斜槽, 所述轴借 助销带动上磨盘正向旋转和反向旋转。
与现有技术相比, 本发明具有以下技术效果:
1.磨盘组件结构简单, 磨碎和搅拌揉面使用同一叶片、 同一电动机, 成本低;
2.磨出的米浆细嫩幼滑, 做出的面包口感好;
3.采用低速工作方式, 降低了噪音。
附图说明
图 1是本发明磨盘式面包机的剖面结构示意图;
图 2是本发明的磨盘组件的分解示意图;
图 3是磨盘组件装配在面包桶上的剖视示意图;
图 4是所述磨盘组件的立体示意图;
图 5是带有叶片和轴套的上磨盘的立体示意图;
图 6是带有叶片和轴套的上磨盘的底面立体示意图;
图 7是带有叶片和轴套的上磨盘的底面平面示意图;
图 8是下磨盘的平面示意图;
图 9是轴的立体示意图;
图 10是所述磨盘组件装配好但未工作时的状态示意图;
图 11是图 10的 A部放大示意图;
图 12是所述上磨盘逆时针转动时磨盘组件的状态示意图;
图 13是所述上磨盘顺时针转动时磨盘组件的状态示意图;
图 14是磨盘组件另一实施例的分解示意图;
图 15是磨盘组件另一实施例的剖面示意图。
图 16是面包桶的示意图。
具体实施方式 下面结合各附图对实施例作进一步详述:
如图 1所示, 一种磨盘式面包机, 包括机体 1、 位于机体 1内的电动机 2、 烤箱 3、 面包桶 4、 磨盘组件 5、 自动投料箱 6和上盖 7。 所述自动投料箱设置在上盖 7内。 如图 2至图 4所示, 所述磨盘组件 5包括上磨盘 51、 轴 52和下磨盘 53。 如图 5至图 7所示, 所述上磨盘 51上固定有叶片 55和轴套 56,所述轴套 56上设置有轴向槽 561和与该轴向 槽 561末端相通的斜槽 562, 该轴向槽 561从轴套 56的最下端往上延伸至中部。 实施例 中, 斜槽 562相对水平面的上仰角可选取(10-30) ° , 较佳为 19. 3° 。 该斜槽的设置主 要有两个作用: 其一, 在轴逆时钟旋转时, 消除上下磨盘工作面之间的间隙, 即 "锁紧" 上磨盘; 其二, 因斜槽在上下方向存在一定距离的行程, 可以克服上下磨盘、 轴等部件 的加工公差和装配公差累积值, 确保两磨盘在磨碎工作状态时可良好接触。
所述叶片 55与上磨盘 51垂直固定, 轴套 56借助叶片 55与上磨盘 51固定。 该轴 套 56还可以在叶片相对面同时借助连接梁 (图中未示) 与上磨盘 51固定, 以充分保证 轴套孔的中心线与上磨盘垂直。叶片 55包括两部分,两部分之间呈钝角,具有以下作用: 一是在磨碎工作状态时, 叶片的斜边将米粒导入上磨盘的进料口; 二是搅拌和揉面。 如 图 6所示, 所述轴套 56的下端面 563为斜端面, 以利于在轴套与轴套合的过程中, 轴套 的下端面不会卡在轴销上, 方便轴套和轴的装配。所述上磨盘 51的进料口 511位于上磨 盘 51的中间, 为梅花状。
如图 3所示, 下磨盘 53套上密封圈 406借助螺丝 413固定在面包桶 4底部。如图 8 所示, 所述下磨盘 53顶面位于轴 52周围对应上磨盘 51进料口 511的部位, 为了便于清 洁, 该部位设计为光滑平面。 如图 4和图 9所示, 所述轴 52穿越下磨盘 53, 轴 52上设 置有销 521 ; 所述轴 52置于轴套 56内, 所述轴 52上的销 521通过轴套 56的轴向槽 561 进入斜槽 562,所述轴 52借助销 521可以带动上磨盘 51正向旋转和反向旋转。上下磨盘 的材料需要具有较强的耐磨能力,不易生锈,能在 20CTC以下的高温烘烤环境中长期使用, 可选用不锈钢 SUS316和 SUS420。 如图 16所示, 面包桶 4的立壁上设计有向内凸出的对 称辐条 41, 利于揉面时增加一定阻挡力, 防止面团过快打转, 增加揉面效果。 图 2和图 3中, 405是油封、 408是含油轴承、 409是垫片、 410是 E型扣、 411是上连接件、 412 是挡圈。
上述磨盘式面包机的工作过程如下:
1 ) 将洗干净的大米放入面包桶里, 上磨盘确保在放大米方前先放入桶内, 然后在 面包桶内装配上适量的水、 黄油、 食盐和白砂糖; 参照面包配方配好小麦面筋及发酵粉 放入自动投料箱中, 盖上面包机上盖 7。
2 ) 接通额定的电源, 按下电源键, 选至米面包工作档位, 机器开始工作。
3 ) 电机开始工作, 经传动组件带动轴 52转动。 上磨盘未转动时, 销 521位于轴向 槽 561和斜槽 562的交叉位置, 如图 10和图 11所示。 随着轴 52旋转, 销 521沿着斜槽 562往斜上方移动,上磨盘 51相对下磨盘 53向下移动,上磨盘 51相对下磨盘 53"锁紧"。 此时, 轴 52的销 521在斜槽 562中的位置如图 12所示, 销 521通过轴套 56对上磨盘产 生一个向下的锁紧力 F1和一个逆时钟的旋转动力 F2。 所述轴 52借助销 521驱动所述上 磨盘 51, 上磨盘 51逆时钟转动 (正转), 上磨盘 51上的叶片 55搅动谷物和水混和物, 形成涡流状, 谷物颗粒和水进入上磨盘中心进料口 511, 在流动液体带动下, 米粒进入磨 盘牙槽磨碎。 上磨盘转速在 150_550rpm之间, 如转速选取 260rpm。
4) 当工作一预定时间如 10 分钟后, 电机在程序的控制下带动轴销顺时钟旋转(反 转)一预定时间, 如 15秒, 销 521沿着斜槽 562往斜下方移动, 将上磨盘 51向上顶起, 同时带动上磨盘 51顺时针转动。 此时销 521在斜槽 562中的位置由图 12所示的紧压状 态经图 10所示的间隙状态转换成图 13所示的上顶状态。 如图 13所示, 销 521通过轴套 56对上磨盘产生一个向上的力 F3和一个顺时钟的旋转动力 F4。 叶片反转搅动半固态米 浆, 将原来正转上磨盘所不能搅动的米粒移动至另外一个位置, 这样就打乱了原来磨不 到的 "死角"位, 为下一次进料磨碎作准备。
5 ) 完成反转后, 再依次正转、 反转交替旋转几个周期, 如依次进行 5 分钟正转旋 转磨米, 15秒反转, 再正转 5分钟磨米和 15秒反转, 细嫩的米浆就磨成了。
6 ) 在程序的控制下, 自动投料箱 6 中的小麦面筋和发酵粉被投放至面包桶里, 此 时上磨盘 51反转, 对面包米浆和小麦面筋进行搅拌。轴 52在反转时, 销 521在斜槽 562 的位置如图 13所示, 销 521将上磨盘顶起, 使得上、 下磨盘之间存在一定的间隙, 本实 施例中, 间隙为 0. 5mm。 这样, 上下磨盘之间的摩擦力将会很小甚至为零。 由于反转时上 下磨盘之间没有摩擦力, 既有利于延长磨盘的使用寿命, 同时也可避免上、 下磨盘之间 由于摩擦产生的热量使得发酵粉死性。 发酵粉在温度高过 37°C时, 易死性, 导致面包发 不起来。
7 ) 揉面完成后, 在程序的控制下, 烤箱 3 周围的发热管发热, 将烤箱温度控制在 40°C, 对米 (面) 团进行发酵, 时间约为 1小时, 同时可根据需要, 选择是否放酸。
8 ) 发酵完成之后, 和普通面包机一样, 在程序的控下进行烘烤, 新鲜的面包就做 好了。
上下磨盘之间工作面上的磨盘牙槽深度约为 0. 5mm。 利用上述面包机及磨碎方法, 米颗粒经过磨盘反复多次研磨, 加工出来的米浆放入 60 目的筛网中, 用水冲洗, 所余颗 粒非常少, 且无 1粒完整的米粒。 本发明磨盘采用的低速工作方式, 噪音相当小。 请参 照如下试验记录:
测试过程:
a) 将 220g珍珠米加水 200g,浸水 20分钟; b ) 以 800rpm工作 10分钟 (磨盘转速 206rpm), 噪音 65db (lm), 反 转 30秒, 换成 l lOOrpm (磨盘转速 284rpm) ,正转至 15分钟, 噪音 60db (lm)。 反转 30秒, 速度 l lOOrpm (磨盘转速 284rpm) ,正转至 20分钟; 噪音 60db (lm)。反转 30秒, 速度 l lOOrpm (磨盘转速 284rpm) ,正转至 25分钟; 噪音 60db (lm)。 反转 30秒, 速度 l lOOrpm (磨盘转速 284rpm) ,正转至 30分钟, 结束。
c ) 将桶内米浆用 60目的筛网清洗, 在清洗过程中只可用水冲洗, 尽量保证未磨烂 的颗粒不被压烂。
d) 将筛网中未冲洗走的颗粒用烤箱烘干, 米粉颗粒质量约 3g。
市售利用叶片单元高速旋转粉碎大米的面包机噪音在 70db+,在同样的原料配方下, 米粉颗粒质量 33g。 上述从试验可知, 利用本发明机器制作米面包, 降低了噪音, 米粉磨 得更细、 面包口感更好。
磨盘式面包机的磨盘组件 5另一实施例如图 14和 15所示, 包括上磨盘 51和下磨 盘 53; 所述上磨盘 51上固定有叶片 55和第一轴 57, 该第一轴 57上设置有销 571, 下磨 盘 53固定在面包桶 4底部, 第二轴 58穿越下磨盘 53, 该第二轴 58上端设置有导轴套 59,所述导轴套 59上设置有轴向槽 591和与该轴向槽 591末端相通的沿斜下方延伸的斜 槽 592,该轴向槽 591从导轴套 59的最上端往下延伸;所述第一轴 57置于导轴套 59内, 所述第一轴 57上的销 571通过导轴套 59的轴向槽 591进入斜槽 592, 所述第二轴 58借 助销 571带动上磨盘 51相对下磨盘 53正向旋转和反向旋转。
所述上磨盘 51上叶片 55边缘可以设置上磨盘轴套 551,所述第一轴 57与上磨盘轴 套 551借助销钉固定。 另一实施例中, 第一轴 57也可以直接与叶片 55固定。
所述第二轴 58借助销钉与导轴套 59固定。 另一实施例中, 第二轴 58与导轴套 59 为一整体, 其下段为实心轴, 上段为导轴套。
根据上述实施例的面包机的磨碎方法, 包括以下步骤:
1 ) 在面包桶内加入大米或杂粮, 参照面包配方配好小麦面筋及发酵粉放入自动投 料箱 6中, 盖好上面包机上盖;
2 ) 启动电动机, 电动机经传动组件带动穿越下磨盘 53的第二轴 58转动, 随着第 二轴 58旋转, 所述第一轴 57上的销沿着下磨盘 53导轴套 59上的斜槽 592往斜下方移 动, 上磨盘 51相对下磨盘 53向下移动, 上磨盘 51相对下磨盘 53 "锁紧";
3 )所述第二轴 58借助销驱动所述上磨盘 51, 上磨盘 51反转, 上磨盘 51上的叶片 55搅动谷物和水混和物, 形成涡流状, 谷物颗粒和水进入上磨盘中心进料口 511, 在流 动液体带动下, 米粒进入磨盘牙槽并被磨碎; 4) 当工作一预定时间后, 电动机带动轴销正转一预定时间, 所述销沿着斜槽 592 往斜上方移动, 将上磨盘 51向上顶起, 同时带动上磨盘 51正转, 叶片 55正转搅动半固 态米浆, 将原来反转上磨盘所不能搅动的米粒移动至另外一个位置;
5 ) 再依次反转研磨、 正转交替, 完成米粒的磨碎。
以上内容是结合具体的实施例对本发明所作的进一步详细说明, 不能认定本发明的 具体实施只局限于这些说明。 对于本发明所属技术领域的普通技术人员来说, 在不脱离 本发明构思的前提下, 还可以做出若干简单推演或替换, 都应当视为属于本发明的保护 范围。

Claims

权利 要求 书
1. 一种磨盘式面包机, 包括机体 (1)、 位于机体(1) 内的电动机 (2)、 烘烤室 (3)、 面包桶 (4)和磨盘组件 (5), 所述磨盘组件 (5)包括上磨盘 (51)和下 磨盘 (53); 其特征在于: 所述上磨盘 (51) 上固定有叶片 (55) 和轴套 (56), 所述轴套 (56)上设置有轴向槽(561)和与该轴向槽(561)末端相通的沿斜上 方延伸的斜槽 (562), 该轴向槽 (561) 从轴套 (56) 的最下端往上延伸; 下磨 盘 (53) 固定在面包桶 (4)底部, 轴 (52) 穿越下磨盘 (53), 轴 (52) 上设置 有销 (521); 所述轴 (52) 置于轴套 (56) 内, 所述轴 (52) 上的销 (521) 通 过轴套 (56) 的轴向槽(561)进入斜槽 (562), 所述轴 (52)借助销 (521)带动 上磨盘 (51) 相对下磨盘 (53) 正向旋转和反向旋转。
2.如权利要求 1所述的磨盘式面包机,其特征在于:所述叶片(55)与上磨盘(51) 垂直固定, 轴套 (56) 借助叶片 (55) 与上磨盘 (51) 固定。
3.如权利要求 1所述的磨盘式面包机,其特征在于:所述轴套(56)的下端面(563) 为斜端面。
4. 如权利要求 1所述的磨盘式面包机, 其特征在于: 所述上磨盘 (51) 的进料 口 (511) 位于上磨盘 (51) 的中间, 为梅花状。
5. 如权利要求 4所述的磨盘式面包机, 其特征在于: 所述下磨盘 (53) 顶面位 于轴 (52) 周围对应上磨盘 (51) 进料口 (511) 的部位为光滑平面。
6. 如权利要求 1所述的磨盘式面包机, 其特征在于: 所述斜槽(562)与水平面 的仰角为 10° -30° 。
7. 如权利要求 1所述的磨盘式面包机,其特征在于: 所述面包桶 (4)的立壁上设 计有向内凸出的对称辐条 (41)。
8. 一种磨盘式面包机, 包括机体 (1)、 位于机体(1) 内的电动机 (2)、 烘烤室 (3)、 面包桶 (4)和磨盘组件 (5), 所述磨盘组件 (5)包括上磨盘 (51)和下 磨盘(53); 其特征在于: 所述上磨盘(51)上固定有叶片(55)和第一轴(57), 该第一轴 (57) 上设置有销 (571), 下磨盘 (53) 固定在面包桶 (4) 底部, 第 二轴 (58) 穿越下磨盘 (53), 该第二轴 (58)上端设置有导轴套 (59), 所述导 轴套 (59)上设置有轴向槽(591)和与该轴向槽(591)末端相通的沿斜下方延 伸的斜槽 (592), 该轴向槽 (591) 从导轴套 (59) 的最上端往下延伸; 所述第 一轴 (57) 置于导轴套 (59) 内, 所述第一轴 (57) 上的销 (571) 通过导轴套 (59) 的轴向槽(591)进入斜槽 (592), 所述第二轴 (58)借助销 (571)带动上 磨盘 (51) 相对下磨盘 (53) 正向旋转和反向旋转。
9. 如权利要求 8所述的磨盘式面包机, 其特征在于: 所述上磨盘 (51) 上叶片 (55)边缘有上磨盘轴套 (551), 所述第一轴 (57)与上磨盘轴套 (551) 固定。
10. 如权利要求 8所述的磨盘式面包机, 其特征在于: 所述第二轴(58)借助销 钉与导轴套 (59) 固定。
11.一种面包机的磨碎方法, 包括步骤,
1)在面包桶内加入大米或杂粮,参照面包配方配好小麦面筋及发酵粉放入 自动投料箱 (6)中, 盖好上面包机上盖;
其特征在于:
2)启动电动机, 电动机经传动组件带动穿越下磨盘(53) 的轴转动, 随着 轴旋转, 所述轴上的销沿着上磨盘 (51) 轴套上的斜槽 (562) 往斜上方移动, 上磨盘 (51) 相对下磨盘 (53) 向下移动, 上磨盘 (51) 相对下磨盘 (53) "锁 紧";
3)所述轴(52)借助销(521)驱动所述上磨盘(51), 上磨盘(51)正转, 上磨盘 (51)上的叶片 (55)搅动谷物和水混和物, 形成涡流状, 谷物颗粒和水 进入上磨盘中心进料口(511),在流动液体带动下,米粒进入磨盘牙槽并被磨碎;
4)当工作一预定时间后, 电动机带动轴销反转一预定时间, 所述销(521) 沿着斜槽(562)往斜下方移动,将上磨盘(51)向上顶起, 同时带动上磨盘(51) 反转, 叶片(55)反转搅动米浆, 将原来正转上磨盘所不能搅动的米粒移动至另 外一个位置;
5) 再依次正转研磨、 反转交替, 完成米粒的磨碎。
12.一种面包机的磨碎方法, 包括步骤,
1)在面包桶内加入大米或杂粮,参照面包配方配好小麦面筋及发酵粉放入 自动投料箱 (6)中, 盖好上面包机上盖;
其特征在于:
2) 启动电动机, 电动机经传动组件带动穿越下磨盘 (53) 的第二轴 (58) 转动, 随着第二轴 (58) 旋转, 所述第一轴 (57)上的销沿着下磨盘 (53) 导轴 套 (59) 上的斜槽 (592) 往斜下方移动, 上磨盘 (51) 相对下磨盘 (53) 向下 移动, 上磨盘 (51) 相对下磨盘 (53) "锁紧";
3) 所述第二轴 (58) 借助销驱动所述上磨盘 (51), 上磨盘 (51) 反转, 上磨盘 (51)上的叶片 (55)搅动谷物和水混和物, 形成涡流状, 谷物颗粒和水 进入上磨盘中心进料口(511),在流动液体带动下,米粒进入磨盘牙槽并被磨碎;
4)当工作一预定时间后, 电动机带动轴销正转一预定时间, 所述销沿着斜 槽 (592) 往斜上方移动, 将上磨盘 (51) 向上顶起, 同时带动上磨盘 (51) 正 转, 叶片(55)正转搅动米浆, 将原来反转上磨盘所不能搅动的米粒移动至另外 一个位置;
5) 再依次反转研磨、 正转交替, 完成米粒的磨碎。
13.一种装备有磨盘组件的容器,其特征在于:所述磨盘组件(5)包括上磨盘(51)、 轴 (52) 和下磨盘 (53), 所述上磨盘 (51) 上固定有叶片 (55) 和轴套 (56), 所述轴套(56)上设置有轴向槽(561)和与该轴向槽(561)末端相通的斜槽(562), 该轴向槽 (561) 从轴套 (56) 的最下端往上延伸; 下磨盘 (53) 固定在容器底 部, 所述轴 (52) 穿越下磨盘 (53), 轴 (52) 上设置有销 (521); 所述轴 (52) 置于轴套 (56) 内, 所述轴 (52) 上的销 (521)通过轴套 (56) 的轴向槽(561) 进入斜槽 (562), 所述轴 (52) 借助销 (521) 带动上磨盘 (51) 正转和反转。
14. 如权利要求 9所述的装备有磨盘组件的容器, 其特征在于: 所述叶片 (55) 与上磨盘 (51) 垂直固定, 轴套 (56) 借助叶片 (55) 与上磨盘 (52) 固定。
15.如权利要求 9所述的装备有磨盘组件的容器, 其特征在于: 所述轴套 (56) 的下端面 (563) 为斜端面。
16. 如权利要求 9所述的装备有磨盘组件的容器,其特征在于:所述上磨盘(51) 的进料口 (511) 位于上磨盘 (51) 的中间, 为梅花状。
17. 如权利要求 9所述的装备有磨盘组件的容器,其特征在于:所述下磨盘(53) 顶面位于轴 (52) 周围对应上磨盘 (51) 进料口 (511) 的部位为光滑平面。
18. 如权利要求 9所述的装备有磨盘组件的容器, 其特征在于: 所述斜槽(562) 与水平面的仰角为 10° -30° 。
PCT/CN2014/073451 2013-05-14 2014-03-14 磨盘式面包机、磨碎方法和装备有磨盘组件的容器 WO2014183498A1 (zh)

Priority Applications (2)

Application Number Priority Date Filing Date Title
KR1020157025957A KR20160010403A (ko) 2013-05-14 2014-03-14 연마판식 제빵기, 연마 방법 및 연마판 어셈블리가 구비된 용기
JP2016513207A JP6375368B2 (ja) 2013-05-14 2014-03-14 研磨盤型製パン機、磨砕方法及び研磨盤アセンブリを備えた容器

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN201310176276.0 2013-05-14
CN201310176276.0A CN104026996B (zh) 2013-05-14 2013-05-14 磨盘式面包机、磨碎方法和装备有磨盘组件的容器

Publications (1)

Publication Number Publication Date
WO2014183498A1 true WO2014183498A1 (zh) 2014-11-20

Family

ID=51458163

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/CN2014/073451 WO2014183498A1 (zh) 2013-05-14 2014-03-14 磨盘式面包机、磨碎方法和装备有磨盘组件的容器

Country Status (4)

Country Link
JP (1) JP6375368B2 (zh)
KR (1) KR20160010403A (zh)
CN (1) CN104026996B (zh)
WO (1) WO2014183498A1 (zh)

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2016123849A (ja) * 2014-12-31 2016-07-11 フォシャン シュンデェ メイデェァ エレクトリカル ヒーティング アプライアンシィズ マニュファクチュアリング カンパニー リミテッド 砕米機能付き粉食加工機
CN105795971A (zh) * 2014-12-31 2016-07-27 佛山市顺德区美的电热电器制造有限公司 磨盘组件和具有其的磨米面食加工机
CN112058453A (zh) * 2020-08-25 2020-12-11 杭州上恺生物科技有限公司 一种鹿茸口服液设备

Families Citing this family (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105795968B (zh) * 2014-12-31 2018-09-11 佛山市顺德区美的电热电器制造有限公司 磨米组件和具有其的磨米面食加工机
CN106308577A (zh) * 2015-06-29 2017-01-11 深圳市联创三金电器有限公司 圆盘式食品研磨装置
US20190069558A1 (en) * 2016-03-14 2019-03-07 Panasonic Intellectual Property Management Co., Ltd. Automatic bread maker
CN106880301A (zh) * 2017-04-11 2017-06-23 珠海德豪润达电气有限公司 食物加工机
CN109953650B (zh) * 2017-12-26 2023-12-15 宁波方太厨具有限公司 一种能自动加调料的炒菜料理机及其烹饪控制方法
CN109793435B (zh) * 2019-01-03 2023-12-15 廊坊宏冠塑胶制品有限公司 一种家用电动石磨豆浆机
CN113600272B (zh) * 2021-07-20 2022-10-04 江苏祥瑞药业有限公司 一种便于调节的二甲双胍缓释片生产用辅助装置
CN116078482B (zh) * 2022-12-31 2023-11-10 江苏香河农业开发有限公司 一种饲料加工研磨装置

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
NL1022362C2 (nl) * 2003-01-13 2004-07-15 Hendricus Johannes Eli Welling Voeding voor elektrische apparatuur.
CN102319030A (zh) * 2011-07-21 2012-01-18 美的集团有限公司 面包机及其磨粉方法
CN202269335U (zh) * 2011-08-25 2012-06-13 威斯达电器(中山)制造有限公司 全自动面包机
CN202505081U (zh) * 2012-01-11 2012-10-31 中意电器有限公司 一种面包机
CN203328553U (zh) * 2013-05-14 2013-12-11 深圳市联创三金电器有限公司 磨盘式面包机和装备有磨盘组件的容器

Family Cites Families (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN2254771Y (zh) * 1995-12-28 1997-05-28 白宗仁 带搅动机构的研磨器
ATE307522T1 (de) * 2003-06-30 2005-11-15 Saeco Ipr Ltd Kaffeemühle für eine kaffeemaschine
JP2009125516A (ja) * 2007-11-28 2009-06-11 Sanyo Electric Co Ltd 自動製パン器
WO2011065272A1 (ja) * 2009-11-27 2011-06-03 三洋電機株式会社 自動製パン器
JP5418212B2 (ja) * 2009-12-25 2014-02-19 三洋電機株式会社 自動製パン器
JP2012075444A (ja) * 2010-09-30 2012-04-19 Sanyo Electric Co Ltd 自動製パン器
CN202290163U (zh) * 2011-09-08 2012-07-04 天津大华油脂有限公司 一种芝麻研磨装置

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
NL1022362C2 (nl) * 2003-01-13 2004-07-15 Hendricus Johannes Eli Welling Voeding voor elektrische apparatuur.
CN102319030A (zh) * 2011-07-21 2012-01-18 美的集团有限公司 面包机及其磨粉方法
CN202269335U (zh) * 2011-08-25 2012-06-13 威斯达电器(中山)制造有限公司 全自动面包机
CN202505081U (zh) * 2012-01-11 2012-10-31 中意电器有限公司 一种面包机
CN203328553U (zh) * 2013-05-14 2013-12-11 深圳市联创三金电器有限公司 磨盘式面包机和装备有磨盘组件的容器

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2016123849A (ja) * 2014-12-31 2016-07-11 フォシャン シュンデェ メイデェァ エレクトリカル ヒーティング アプライアンシィズ マニュファクチュアリング カンパニー リミテッド 砕米機能付き粉食加工機
CN105795971A (zh) * 2014-12-31 2016-07-27 佛山市顺德区美的电热电器制造有限公司 磨盘组件和具有其的磨米面食加工机
CN105795971B (zh) * 2014-12-31 2018-07-13 佛山市顺德区美的电热电器制造有限公司 磨盘组件和具有其的磨米面食加工机
CN112058453A (zh) * 2020-08-25 2020-12-11 杭州上恺生物科技有限公司 一种鹿茸口服液设备

Also Published As

Publication number Publication date
KR20160010403A (ko) 2016-01-27
JP2016518208A (ja) 2016-06-23
JP6375368B2 (ja) 2018-08-15
CN104026996A (zh) 2014-09-10
CN104026996B (zh) 2016-03-23

Similar Documents

Publication Publication Date Title
WO2014183498A1 (zh) 磨盘式面包机、磨碎方法和装备有磨盘组件的容器
CN102319030B (zh) 面包机及其磨粉方法
CN105795970B (zh) 磨米面食加工机
CN104161474A (zh) 一种全自动研磨机
CN203468414U (zh) 一种全自动研磨机
JP5824616B2 (ja) パン生地生成機及びそのパン生地を用いた製パン機
CN107349811A (zh) 食堂用白汤制备设备
CN205627818U (zh) 一种塑料粒子多级混合搅拌装置
CN107839068B (zh) 一种施工机械用混凝土定量搅拌装置
CN106111888B (zh) 一种铸造机械混砂设备
CN205412841U (zh) 一种用于食品罐生产的搅拌装置
CN203328553U (zh) 磨盘式面包机和装备有磨盘组件的容器
CN209596965U (zh) 一种化工自动配料装置
CN204220072U (zh) 一种配料搅拌装置
CN105994521A (zh) 一种戚风蛋糕及其制备方法
CN206761548U (zh) 搅拌件、物料清洗装置及烹饪器具
CN109395658A (zh) 一种炉料湿法混合制粒机
CN105795968B (zh) 磨米组件和具有其的磨米面食加工机
CN204379074U (zh) 磨米组件和具有其的磨米面食加工机
CN203851703U (zh) 一种蛋糕混料装置
CN209123719U (zh) 一种用于食品加工的混料装置
CN208244515U (zh) 一种施肥用肥料混合搅拌装置
CN209530714U (zh) 一种涂料制备用高性能分散设备
JP5824617B2 (ja) パン生地生成機及びそのパン生地を用いた製パン機
CN204379075U (zh) 磨米组件和具有其的磨米面食加工机

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 14797037

Country of ref document: EP

Kind code of ref document: A1

ENP Entry into the national phase

Ref document number: 20157025957

Country of ref document: KR

Kind code of ref document: A

ENP Entry into the national phase

Ref document number: 2016513207

Country of ref document: JP

Kind code of ref document: A

NENP Non-entry into the national phase

Ref country code: DE

122 Ep: pct application non-entry in european phase

Ref document number: 14797037

Country of ref document: EP

Kind code of ref document: A1