This patent application claims priority to Chinese Patent Application No. 202210950191.2 filed with the China National Intellectual Property Administration on Aug. 8, 2022, the entire disclosure of which is hereby incorporated herein by reference.
The invention relates to the field of juice extractors and, in particular, to a juice extractor assembly with a large-diameter feeding pipe.
At present, with the increasing acceptance of self-squeezed juice, juicers are becoming more and more popular as small household appliances. In the process of upgrading the juicer, customers put forward higher requirements for the convenience of product use. For example, reducing the workload of pre-grinding ingredients requires the juicer to be able to process larger food ingredients, which has a great impact on juicing. Therefore, it is necessary to design a juice extractor assembly with the function of automatically cutting large pieces of food.
In order to solve the above problems, the present invention provides a juice extractor assembly with a large-diameter feeding pipe with the function of automatically cutting large food materials.
In order to achieve the above-mentioned purpose, the present invention includes a screw, one of the end faces of the screw is a feeding end, and the feeding end of the screw is connected with a rotating blade. The rotating blade can be covered with a cover matched with the juice extractor body. The cover can cover the rotating blade completely in the horizontal and vertical directions. The cover can include a feed port connected with a feed pipe. The function of the rotating blade is to crush and cut the ingredients put into the juicer by rotating, so that there is no need to preprocess the large pieces of ingredients. The rotating blade can also reduce the workload, realize automatic cutting, and also play a stirring role. The function of the cover is to cooperate with the rotating blade to cut the ingredients. The function of the feeding tube is to feed the material. There is no limit to the length and size of the feed pipe, so the feed pipe can also temporarily serve as a storage for the food. The material is placed in the feed pipe, and the food will fall layer by layer with the cutting process of the rotating blade, which further optimizes the automatic cutting function and optimizes the user experience.
In order to adapt to the cutting of large pieces of food, a feed inlet can expose rotating blades in both the horizontal and vertical directions of the cover. The transition position between the feed pipe and the cover can be an inwardly angular protrusion. The cutting efficiency of placing ingredients from the horizontal or vertical direction alone is too low or impossible to cut, but by cutting the ingredients from both horizontal and vertical directions at the same time, large pieces of ingredients can be trapped closer to the rotating blade. In order to obtain the largest cutting volume, the design features of this juicer correspond to the area of cutting large pieces of food, so there are certain requirements for the size of the feeding port. At the same time, the extruding ribs provided can limit 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 extruding ribs and the rotating blades.
In order to simplify the structure, the cover and the feed pipe can be conformed, and, as a non-limiting example, the ratio of the maximum diameter of the feed pipe to the cover can be greater than ¼. Combining two structural components into one structure saves costs, and at the same time can ensure the strength of the structure such as the cover to the greatest extent. On the other hand, setting the size ratio of the feed pipe to the cover reasonably cannot only ensure the connection strength of the cover but can also ensure that the inner diameter of the feeding tube is large enough to accommodate a whole orange, small apple, and other ingredients.
In order to achieve a better cutting and crushing effect and make it easier for the cut food to fall into the juice extractor, the cover can include vertical grooves distributed around the inner wall of the cover. The function of the vertical grooves is to further cooperate with the rotating blades, through the vertical grooves set at intervals, to block the ingredients from rotating with the blades, so as to achieve the effect of crushing and cutting. The round table structure with a small top and a large bottom can guide the ingredients to slide down and enter the juicing area.
In order to facilitate the cutting of food, the rotating blades can be inclined to the direction of rotation of the screw. This incline can make the food cut by the rotating blades pressed down into the juice extraction area by the side facing the food of the rotating blades under the rotation of the screw.
In order to make the rotating blade sharper and faster, the rotating blade can be provided with an acute cutting angle θ on the upper edge of the screw in the direction of rotation.
In order to make the connection between the rotating blade and the screw more stable, a thickening zone gradually increasing from top to bottom is provided at the bottom position of the rotating blade in contact with the screw. The thickening zone can increase the bearing strength of the rotating blade.
In order to connect the screw and the rotating blade, the rotating blade can include a groove on the end face of the rotating blade connected to the screw, and the screw can include a protrusion matching the groove on the end face contacting with the rotating blade. The screw and the rotating blade can be connected through the groove and the projection, so as to ensure the rotational power of the rotating blade.
In order to propel, cut, and squeeze food materials, the screw can be enlarged in one direction. The enlarged section close to the rotating blade is the feeding zone, and the stable section away from the rotating blade is the squeezing zone. The squeezing zone can include a plurality of spiral ribs, and the feeding zone can include spiral pushing ribs. The middle of the screw can include a drive shaft. The drive shaft and the rotating blade are connected by a flat key. The rotating blades are connected by a tool fixing screw, which fastens the rotating blade and is threadedly connected with the drive shaft. Two center-symmetric screwing holes can be arranged on the upper surface of the tool fixing screw. The function of the push rib is to use the spiral to push the cut food to the squeezing area. The function of the spiral rib is to squeeze the food and push the food out. The drive shaft and the rotation blades are driven by flat keys to further ensure the rotational power of the rotating blades.
In order to fix the rotating blade on the screw, the orientation of the bottom of the rotating blade is consistent with the orientation of the pushing rib on the end surface of the feeding end. The end face of the rotating blade and the pushing rib is in the same straight line, which facilitates the setting of the protrusion and the groove.
The juice extractor assembly of the large-diameter feeding pipe 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 having a feeding pipe on the rotating blade, and the rotating blade is in the direction of rotation of the screw. The sharp angle is set on the edge of the juice extractor. When the juicer is working, the large pieces of food are fed into the feed pipe, and then cut by the sheer force between the rotating blade and the feed port, and fall into the screw part. It should be noted that the diameter of the feeding tube can reach more than 70 cm.
When in use, unpretreated small apples, oranges and other fruits can be directly put into the feeding tube, which optimizes the user experience. At the same time, the screw is divided into a feeding zone and a squeezing zone. The feeding zone is equipped with pushing ribs with the functions of chopping and pushing, while the squeezing zone is equipped with spiral ribs with pressing and pushing functions. The food residue is finally pushed out from the bottom, the structure is simplified, and the pressing efficiency is high.
The drawings described herein are for illustrative purposes only of selected embodiments and not all possible implementations, and are not intended to limit the scope of the present disclosure.
In order to further explain the technical means and effects of the present invention to achieve the intended purpose of the invention, the specific implementation, structure, features and effects of the present invention will be described in detail below in conjunction with the accompanying drawings and preferred embodiments.
As shown in
As shown in
As shown in
As shown in
As shown in
In the actual product, by determining the diameter of the feed pipe to be 70-74 cm, it is ensured that it can directly accommodate ingredients such as small apples and oranges, and juice extraction without pretreatment is realized.
As shown in
With reference to
As shown in
With continued reference to
With reference to
As shown in
With continued reference to
The above descriptions are only preferred embodiments of the present invention, and do not limit the present invention in any form. Although the present invention has been disclosed as above with preferred embodiments, it is not intended to limit the present invention. Any person skilled in the art, without departing from the scope of the technical solution of the present invention, should be able to make use of the above-disclosed technical content with some changes or modifications to make equivalent embodiments that belong to equivalent changes. Technical Essence of the Present Invention Any brief modifications, equivalent changes and modifications made to the above embodiments still belong to the scope of the technical solution of the present invention.
Number | Date | Country | Kind |
---|---|---|---|
202210950191.2 | Aug 2022 | CN | national |