WO2024031503A1 - 大口径进料管的榨汁机组件 - Google Patents

大口径进料管的榨汁机组件 Download PDF

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Publication number
WO2024031503A1
WO2024031503A1 PCT/CN2022/111651 CN2022111651W WO2024031503A1 WO 2024031503 A1 WO2024031503 A1 WO 2024031503A1 CN 2022111651 W CN2022111651 W CN 2022111651W WO 2024031503 A1 WO2024031503 A1 WO 2024031503A1
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Prior art keywords
rotating blade
screw
cover
feed pipe
juicer
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PCT/CN2022/111651
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English (en)
French (fr)
Inventor
闵泳镀
童凯勇
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宁波凯普电子有限公司
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Publication of WO2024031503A1 publication Critical patent/WO2024031503A1/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
    • A47J19/00Household machines for straining foodstuffs; Household implements for mashing or straining foodstuffs
    • A47J19/02Citrus fruit squeezers; Other fruit juice extracting devices
    • A47J19/025Citrus fruit squeezers; Other fruit juice extracting devices including a pressing screw
    • 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
    • A47J19/00Household machines for straining foodstuffs; Household implements for mashing or straining foodstuffs
    • A47J19/02Citrus fruit squeezers; Other fruit juice extracting 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

Definitions

  • the present invention relates to the field of juicers, and in particular, to a juicer assembly of a large-diameter feed pipe.
  • juicers are becoming more and more popular as small household appliances.
  • customers have put forward higher requirements for the convenience of product use.
  • reducing the workload of pre-crushing ingredients requires the juicer to handle ingredients with larger tubers, which has a great impact on juicing.
  • the machine's feeding and juice pre-processing design puts forward higher requirements. Therefore, it is necessary to design a juicer component with the function of automatically cutting large pieces of food.
  • the present invention provides a juicer assembly with a large-diameter feeding tube that has the function of automatically cutting large pieces of food.
  • the invention designs a large-diameter feed pipe juicer assembly, including a screw.
  • One end face of the screw is a feeding end.
  • the feeding end of the screw is connected with a rotating blade, which rotates.
  • the blades are covered with a cover that matches the juicer body.
  • the cover completely covers the rotating blades in both horizontal and vertical directions.
  • the cover is provided with a feed port, and a feed pipe is connected to the feed port.
  • the function of the rotating blade is to squeeze and cut the ingredients put into the juicer by rotating, thereby eliminating the need to preprocess large pieces of ingredients, reducing the workload, achieving automatic cutting, and also serving as a stirring function.
  • the function of the cover is to cooperate with the rotating blade to shear or squeeze the food.
  • the function of the feed pipe is to feed the food.
  • the length and size of the feed pipe are not limited, so the feed pipe can also temporarily serve as a storage for the food.
  • food is placed in the feeding tube, and the food will fall layer by layer along with the cutting process of the rotating blades, further optimizing the automatic cutting function and optimizing the user experience.
  • the feed port In order to adapt to the cutting of large pieces of food, the feed port exposes rotating blades in both the horizontal and vertical directions of the cover, and the transition position between the feed port and the cover is provided with an angular protrusion inward. Squeeze the ridges.
  • the cutting efficiency of placing ingredients from the horizontal or vertical direction alone is too low or impossible to cut.
  • large pieces of ingredients can sink into the feed to the maximum extent when the rotating blades are not in the feed port.
  • the design features of this juicer correspond to the scene of using large pieces of food for cutting, so there are certain requirements for the size of the feed port.
  • the squeezing ribs provided at the same time can restrict the falling large pieces of food in the feed port, so that the large pieces of food can be crushed and cut through the cooperation of the squeezing ribs and the rotating blades.
  • the cover and the feed pipe are integrated, and the ratio of the maximum diameter of the feed pipe and the cover is greater than one quarter.
  • Combining two structural members into one structure saves costs and at the same time ensures the strength of the cover and other structures to the greatest extent.
  • reasonably setting the size ratio of the feed pipe and the cover can not only ensure that the feed pipe and the cover are
  • the connection strength of the cover also ensures that the inner diameter of the feed tube is large enough to accommodate a whole orange, small apple and other ingredients.
  • the cover is provided with vertical grooves distributed around the circumference of the inner wall of the cover. Round cone shape with a small one and a big one.
  • the function of the vertical grooves is to further cooperate with the rotating blades.
  • the vertical grooves arranged at intervals block the rotation of the food materials with the rotating blades to achieve the effect of squeezing and cutting.
  • the circular cone structure with a small top and a large bottom can guide the ingredients to slide down and enter the juice extraction area.
  • the rotating blades are inclined toward the rotation direction of the screw. This allows the ingredients cut by the rotating blades to be pressed downward into the juice extraction area by the side of the rotating blades facing the ingredients under the rotation of the screw.
  • the rotating blades are provided with an acute cutting angle ⁇ on the upper edge in the rotation direction of the screw.
  • the rotating blade In order to make the connection between the rotating blade and the screw more stable, the rotating blade is provided with a thickened area that gradually increases from top to bottom at the bottom position where it contacts the screw. This thickened area increases the load-bearing strength of the rotating blades.
  • the rotating blade In order to connect the screw and the rotating blade, the rotating blade is provided with a groove on the end surface connected to the screw, and the screw is provided with a convex block that matches the groove on the end surface in contact with the rotating blade.
  • the screw and the rotating blade are connected through grooves and bumps to ensure the rotational power of the rotating blade.
  • the screw In order to advance, cut and squeeze the food ingredients, as well as drive the screw assembly, the screw is enlarged in one direction.
  • the enlarged section close to the rotating blade is the feeding area, and the stable section away from the rotating blade is the pressing area.
  • the pressing area is provided with a plurality of spiral ribs, and the feeding area is provided with spiral pushing ribs;
  • a driving shaft is provided in the middle of the screw, and the driving shaft and the rotating blade are connected by a flat key, and the driving shaft is connected with the rotating blade through a flat key.
  • the rotating blades are connected through tool fixing screws.
  • the tool fixing screws fasten the rotating blades and are threadedly connected to the drive shaft.
  • the upper surface of the tool fixing screws is provided with two centrally symmetrical screwing holes.
  • the function of the pusher ribs is to use a spiral to push the cut ingredients to the pressing area, and also play a cutting role in the process.
  • the function of the spiral ribs is to squeeze the ingredients and push the ingredients out.
  • the drive shaft and rotation The blades are driven by flat keys to further ensure the rotational power of the rotating blades.
  • the bottom direction of the rotating blade is consistent with the direction of the pushing rib on the end face of the feeding end.
  • the end faces of the rotating blades and the pushing ribs are made to be in the same straight line, which facilitates the setting of the bumps and grooves.
  • the large-diameter feed tube juicer assembly designed by the present invention is designed to be connected with a rotating blade at the feeding end of the screw, and is covered with a cover with a feeding pipe on the rotating blade.
  • the rotating blade rotates in the rotation direction of the screw.
  • the edge of the juicer is set at an acute angle.
  • the screw is divided into a feeding area and a pressing area.
  • the feeding area is equipped with propelling ribs with chopping and pushing functions, while the pressing area is equipped with spiral ribs with squeezing and pushing functions.
  • the food residue is finally pushed out from the lower end. , streamlined structure and high pressing efficiency.
  • Figure 1 is an exploded view of Embodiment 1;
  • FIG. 1 is an overall structural diagram of Embodiment 1;
  • FIG. 3 is a schematic structural diagram of the cover in Embodiment 1;
  • Figure 4 is a side view of Embodiment 1;
  • Figure 5 is a top view of Embodiment 1;
  • Figure 6 is a cross-sectional view of Embodiment 1;
  • Figure 7 is a schematic structural diagram of the rotating blades and drive shaft in Embodiment 1;
  • the juicer assembly of the large-diameter feed tube described in this embodiment includes a screw 1.
  • One end surface of the screw 1 is a feeding end 2.
  • the screw 1 is connected to its feeding end 2.
  • the rotating blade 3 is covered with a cover 19 that matches the juicer body.
  • the cover 19 completely covers the rotating blade 3 in both horizontal and vertical directions.
  • the cover 19 is provided with a feed port 20.
  • the feed port 20 A feed pipe 21 is connected to it.
  • the rotating blades 3 are inclined toward the rotation direction of the screw 1.
  • the rotary blade 3 is provided with an acute cutting angle ⁇ on the edge in the rotation direction of the screw 1 .
  • the rotary blade is provided with a thickening area that gradually increases from top to bottom at the bottom position in contact with the screw.
  • the feed port 20 exposes the rotating blades 3 in both the horizontal and vertical directions of the cover 19, and the ratio of the maximum diameter of the feed pipe 21 to the cover 19 More than a quarter of the time, the transition position between the feed port 20 and the cover 19 is provided with an inwardly angular extrusion rib 24 .
  • the cover 19 and the feed pipe 21 are integrated.
  • the cover 19 is in the shape of a truncated cone with a small top and a large bottom.
  • the cover 19 is provided with vertical grooves 22 evenly distributed around the circumference of the inner wall of the cover 19 .
  • the rotary blade 3 is provided with a groove 4 on the end surface connected to the screw 1, and the screw 1 is provided with a protrusion 5 that matches the groove 4 on the end surface in contact with the rotary blade 3.
  • the screw 1 is in a one-way enlarged shape, the enlarged section close to the rotating blade 3 is the feeding area 6, and the stable section away from the rotating blade 3 is the pressing area 7.
  • the area 7 is provided with a plurality of spiral ribs 8, and the feeding area 6 is provided with a spiral pushing rib 9;
  • the screw 1 is provided with a driving shaft 14 in the middle, and the driving shaft 14 and the rotating blade 3 pass through a flat key.
  • the drive shaft 14 and the rotating blade 3 are connected through the tool fixing screw 17, the tool fixing screw 17 buckles the rotating blade 3 and is threadedly connected to the drive shaft 14, the upper surface of the tool fixing screw 17 is provided with two centrally symmetrical Screw hole 18.
  • the bottom direction of the rotating blade 3 is consistent with the direction of the pushing rib 9 on the end face of the feeding end 2 .
  • the diameter of the feed tube is determined to be 70-74 cm to ensure that it can directly accommodate small apples, oranges and other ingredients, achieving juice extraction without pre-processing.

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  • Engineering & Computer Science (AREA)
  • Food Science & Technology (AREA)
  • Mechanical Engineering (AREA)
  • Apparatuses For Bulk Treatment Of Fruits And Vegetables And Apparatuses For Preparing Feeds (AREA)
  • Food-Manufacturing Devices (AREA)

Abstract

一种大口径进料管(21)的榨汁机组件,其中,在螺杆(1)的送料端(2)连接有旋转叶片(3),在旋转叶片(3)上盖有带进料管(21)的罩盖(19),旋转叶片(3)在螺杆(1)的旋转方向的边沿上锐角设置。榨汁机工作时,大块食材被放入进料管(21)中,然后被旋转叶片(3)与进料口(20)之间的剪切力所切削,并落入螺杆(1)部位,螺杆(1)分为送料区(6)和压榨区(7),送料区(6)上设有具备切碎和推进功能的推料筋条(9),而压榨区(7)上设有具备压榨和推进功能的螺旋筋条(8)。上述组件在一定程度上实现了食材切削的自动化,优化了用户体验,提高了榨汁效率。

Description

大口径进料管的榨汁机组件 技术领域
本发明涉及榨汁机领域,尤其涉及一种大口径进料管的榨汁机组件。
背景技术
目前,随着自榨果汁接受度的越来越高,榨汁机作为家用小电器也越来越普及。在榨汁机的更新换代过程中,顾客对产品使用的便利性提出了更高的要求,例如减少食材预粉碎的工作量,就要求榨汁机能处理更大块茎的食材,这就对榨汁机的进料以及榨汁前处理设计提出了更高的要求,因此,有必要设计一种具有自动切削大块食材功能的榨汁机组件。
发明内容
为了解决上述问题,本发明提供了一种具有自动切削大块食材功能的大口径进料管的榨汁机组件。
为了到达上述目的,本发明设计的大口径进料管的榨汁机组件,包括螺杆,所述的螺杆的其中一端面为送料端,所述的螺杆在其送料端上连接有旋转叶片,旋转叶片上盖有与榨汁机机身配合的罩盖,罩盖在水平和竖直方向上都完全覆盖旋转叶片,罩盖上设有进料口,进料口上连接有进料管。旋转叶片的作用是通过旋转将放入榨汁机中的食材进行挤碎切削,从而无需对大块的食材进行预处理,减少工作量,实现自动切削,同时也起到了搅拌作用。罩盖的作用是与旋转叶片配合,对食材进行剪切或挤压,进料管的作用是进料,进料管的长度和大小不设限,因此进料管同时可以暂时充当食材的储物仓,将食材放置在进料管内,食材会随着旋转叶片的切削过程逐层落下,进一步优化了自动切削功能,优化了用户体验。
为了适应大块食材的切削,所述的进料口在罩盖的水平和竖直两个方向上皆暴露出旋转叶片,进料口与罩盖的过渡位置设置有向内呈棱角凸起的挤凸棱。单独从水平或竖直方向放置食材的切削效率太低或无法切削, 而同时从水平或竖直两个方向对食材进行切削,大块食材可以在旋转叶片不在进料口时最大程度地陷入进料口中,从而获得最大的切削体积,该榨汁机的设计特点对应的是使用大块食材进行切削的场景,因此对进料口的大小有一定的要求。同时设置的挤凸棱可以将下落的大块食材限制在进料口内,从而通过挤凸棱与旋转叶片的配合将大块食材挤碎切削。
为了精简结构,所述的罩盖与进料管是一体的,且进料管与罩盖的最大直径之比大于四分之一。将两个结构构件为一个结构节省成本,同时也能最大程度的保证罩盖等结构的强度,另一方面,合理的设置进料管与罩盖的尺寸比,不但能确保进料管与罩盖的连接强度,还能保证进料管的内径足够的大,可以容纳一整颗桔子、小苹果等食材。
为了达到更好的切削挤碎效果,并使被切削的食材更容易落入榨汁机,所述的罩盖上设有绕罩盖内壁圆周分布的竖凹槽,所述的罩盖为上小下大的圆台型。竖凹槽的作用是进一步与旋转叶片配合,通过间隔设置的竖凹槽,阻挡食材的随旋转叶片,达到挤碎切削的效果。而上小下大的圆台结构能引导食材向下滑落进入到与榨汁区域。
为了有利于食材的切削,所述的旋转叶片向螺杆的旋转方向倾斜。这使得被旋转叶片切削下的食材在螺杆的旋转下被旋转叶片迎向食材的一侧面向下压入榨汁区域中。
为了使旋转叶片更锋利、快捷,所述的旋转叶片在螺杆的旋转方向的上端边沿上设有切削锐角θ。
为了使旋转叶片与螺杆连接更稳定,所述的旋转叶片在与螺杆接触的底部位置设置从上到下逐渐增大的增厚区。该增厚区增大了旋转叶片的承力强度。
为了连接螺杆和旋转叶片,所述的旋转叶片在和螺杆连接的端面上设有凹槽,螺杆在和旋转叶片接触的端面上设有和凹槽配合的凸块。螺杆和 旋转叶片通过凹槽和凸块传动连接,从而保证旋转叶片的转动动力。
为了对食材进行推进、切割和压榨,以及对螺杆组件的驱动,所述的螺杆呈单向放大状,其靠近旋转叶片的放大段为送料区,而远离旋转叶片的平稳段为压榨区,所述的压榨区上设有多条螺旋筋条,所述的送料区上设有螺旋推料筋条;所述的螺杆中间设有驱动轴,驱动轴与旋转叶片通过平键连接,驱动轴与旋转叶片之间通过刀具固定螺丝连接,刀具固定螺丝扣住旋转叶片并与驱动轴螺纹连接,刀具固定螺丝上表面设有两个呈中心对称的拧接孔。推料筋条的作用是使用螺旋将切削下的食材推进至压榨区,在这过程中间也起到切割作用,螺旋筋条的作用是对食材进行压榨,并将食材榨推出,驱动轴与旋转叶片之间通过平键传动,进一步保证旋转叶片的转动动力。
为了将旋转叶片固定在螺杆上,所述的旋转叶片的底部朝向与推料筋条在送料端的端面上的朝向一致。使得旋转叶片与推料筋条的端面呈同一条直线,方便凸块与凹槽的设置。
本发明所设计的大口径进料管的榨汁机组件,在螺杆的进料端设计连接有旋转叶片,并在旋转叶片上盖有带进料管的罩盖,旋转叶片在螺杆的旋转方向的边沿上锐角设置,榨汁机工作时,大块食材被入进料管中,然后被旋转叶片与进料口之间的剪切力所切削,并落入螺杆部位,这在一定程度上实现了食材切削的自动化。需要特别说明的是,其进料管直径可达70厘米以上,使用时可以直接将未经预处理的小苹果、桔子等水果,投入到进料管中,优化了用户体验。同时,螺杆分为送料区和压榨区,送料区上设有具备切碎和推进功能的推进筋条,而压榨区上设有具备压榨和推进功能的螺旋筋条,食材渣最后被从下端推出,结构精简,压榨效率高。
附图说明
图1是实施例1的爆炸图;
图2是实施例1的整体结构图;
图3是实施例1中罩盖的结构示意图;
图4是实施例1的侧视图;
图5是实施例1的俯视图;
图6是实施例1的剖视图;
图7是实施例1中旋转叶片和驱动轴的结构示意图;
具体实施方式
为更进一步阐述本发明为实现预定发明目的所采取的技术手段及功效,以下结合附图及较佳实施例,对依据本发明的具体实施方式、结构、特征及其功效,详细说明如后。
实施例1。
如图1、图2所示,本实施例描述的大口径进料管的榨汁机组件,包括螺杆1,螺杆1的其中一端面为送料端2,螺杆1在其送料端2上连接有旋转叶片3。旋转叶片3上盖有与榨汁机机身配合的罩盖19,罩盖19在水平和竖直方向上都完全覆盖旋转叶片3,罩盖19上设有进料口20,进料口20上连接有进料管21。
如图4,图5所示,所述的旋转叶片3向螺杆1的旋转方向倾斜。所述的旋转叶片3在螺杆1的旋转方向的边沿上设有切削锐角θ。所述的旋转叶片在与螺杆接触的底部位置设置从上到下逐渐增大的增厚区。
如图2、图3所示,所述的进料口20在罩盖19的水平和竖直两个方向上皆暴露出旋转叶片3,且进料管21与罩盖19的最大直径之比大于四分之一,进料口20与罩盖19的过渡位置设置有向内呈棱角凸起的挤凸棱24。所述的罩盖19与进料管21是一体的。所述的罩盖19为上小下大的圆台型。所述的罩盖19上设有绕罩盖19内壁圆周均匀分布的竖凹槽22。
如图6所示,所述的旋转叶片3在和螺杆1连接的端面上设有凹槽4, 螺杆1在和旋转叶片3接触的端面上设有和凹槽4配合的凸块5。
如图6、图7所示,所述的螺杆1呈单向放大状,其靠近旋转叶片3的放大段为送料区6,而远离旋转叶片3的平稳段为压榨区7,所述的压榨区7上设有多条螺旋筋条8,所述的送料区6上设有螺旋推料筋条9;所述的螺杆1中间设有驱动轴14,驱动轴14与旋转叶片3通过平键15连接,驱动轴14与旋转叶片3之间通过刀具固定螺丝17连接,刀具固定螺丝17扣住旋转叶片3并与驱动轴14螺纹连接,刀具固定螺丝17上表面设有两个呈中心对称的拧接孔18。所述的旋转叶片3的底部朝向与推料筋条9在送料端2的端面上的朝向一致。
在实际产品中,通过确定进料管的直径为70-74厘米,确保其能直接容纳小苹果、桔子等食材,实现无需预处理的榨汁。
以上所述,仅是本发明的较佳实施例而已,并非对本发明作任何形式上的限制,虽然本发明已以较佳实施例揭示如上,然而并非用以限定本发明。任何本领域技术人员,在不脱离本发明技术方案范围内,应当可利用上述揭示的技术内容经些许变更或修饰作出属于等同变化的等效实施例,但凡是未脱离本发明技术方案内容,依据本发明的技术实质对以上实施例所作的任何简介修改、等同变化与修饰,均仍属于本发明技术方案的范围内。

Claims (10)

  1. 一种大口径进料管的榨汁机组件,包括螺杆(1),其特征在于,所述的螺杆(1)的其中一端面为送料端(2),所述的螺杆(1)在其送料端(2)上连接有旋转叶片(3),旋转叶片(3)上盖有与榨汁机机身配合的罩盖(19),罩盖(19)在水平和竖直方向上都完全覆盖旋转叶片(3),罩盖(19)上设有进料口(20),进料口(20)上连接有进料管(21)。
  2. 根据权利要求1所述的大口径进料管的榨汁机组件,其特征在于,所述的进料口(20)在罩盖(19)的水平和竖直两个方向上皆暴露出旋转叶片(3),,进料口(20)与罩盖(19)的过渡位置设置有向内呈棱角凸起的挤凸棱(24)。
  3. 根据权利要求1所述的大口径进料管的榨汁机组件,其特征在于,所述的罩盖(19)与进料管(21)是一体的,且进料管(21)与罩盖(19)的最大直径之比大于四分之一。
  4. 根据权利要求1所述的大口径进料管的榨汁机组件,其特征在于,所述的罩盖(19)为上小下大的圆台型,罩盖(19)上设有绕罩盖(19)内壁圆周均匀分布的竖凹槽(22)。
  5. 根据权利要求1-4任意一项所述的大口径进料管的榨汁机组件,其特征在于,所述的旋转叶片(3)向螺杆(1)的旋转方向倾斜。
  6. 根据权利要求5所述的大口径进料管的榨汁机组件,其特征在于,所述的旋转叶片(3)在螺杆(1)的旋转方向的上端边沿上设有切削锐角θ。
  7. 根据权利要求5所述的大口径进料管的榨汁机组件,其特征在于,所述的旋转叶片(3)在与螺杆(1)接触的底部位置设置从上到下逐渐增大的增厚区(23)。
  8. 根据权利要求5中任意一项所述的大口径进料管的榨汁机组件,其特征 在于,所述的旋转叶片(3)在和螺杆(1)连接的端面上设有凹槽(4),螺杆(1)在和旋转叶片(3)接触的端面上设有和凹槽(4)配合的凸块(5)。
  9. 根据权利要求8所述的大口径进料管的榨汁机组件,其特征在于,所述的螺杆(1)呈单向放大状,其靠近旋转叶片(3)的放大段为送料区(6),而远离旋转叶片(3)的平稳段为压榨区(7),所述的压榨区(7)上设有多条螺旋筋条(8),所述的送料区(6)上设有螺旋推料筋条(9);所述的螺杆(1)中间设有驱动轴(14),驱动轴(14)与旋转叶片(3)通过平键(15)连接,驱动轴(14)与旋转叶片(3)之间通过刀具固定螺丝(17)连接,刀具固定螺丝(17)扣住旋转叶片(3)并与驱动轴(14)螺纹连接,刀具固定螺丝(17)上表面设有两个呈中心对称的拧接孔(18)。
  10. 根据权利要求9所述的大口径进料管的榨汁机组件,其特征在于,所述的旋转叶片(3)的底部朝向与推料筋条(9)在送料端(2)的端面上的朝向一致。
PCT/CN2022/111651 2022-08-08 2022-08-11 大口径进料管的榨汁机组件 WO2024031503A1 (zh)

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