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A portable juicer

A juice machine, portable technology, applied in the field of portable screw squeeze juice machine, can solve the problems of host penetration, juice waste, limited actual capacity, etc., to improve the crushing rate of extrusion, avoid juice waste, and improve the juice yield Effect

Active Publication Date: 2022-03-15
JOYOUNG CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Although this setting reduces the occupied space of the whole machine, the actual capacity of the juice receiving container to hold the juice is very limited, and the amount of juice that the user can make at one time is very small
Moreover, the user should always pay attention to the liquid level of the juice in the juice receiving container when squeezing the juice. When the liquid level is higher than the upper port of the slag receiving container, the juice will immediately enter the slag receiving container, resulting in waste of juice and affecting user experience.
[0004] In addition, in the existing portable juicer, the driving part is set on the upper end of the screw, and usually in order to save material and weight, a hollow cavity that penetrates up and down is set on the screw body, the upper end is used for transmission connection with the output shaft of the motor, and the lower end forms a In this way, when the juice in the extrusion component is too much and cannot be discharged in time, the juice will often flow up through the hollow cavity, which not only causes waste of juice, but also cannot fully discharge the juice into the juice receiving container, and the hollow The juice in the cavity may continue to rise to the output shaft of the motor, and further penetrate into the motor through the host, causing damage to the motor and affecting the service life of the product
Moreover, in the existing portable juicer, when the main unit is placed above the extruding assembly, the center of gravity is relatively high from the horizontal tabletop, and the juicer is not stable enough when it is running, and there is often the possibility of toppling over.
Moreover, the structural proportion of the whole machine is not coordinated, which affects the assembly of functional components and the reliability of force.

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0037] Such as Figure 1 to Figure 6 As shown, a portable screw extruder juice machine includes a host 1, an extrusion assembly and a juice receiving container 4 arranged under the host, and the extrusion assembly includes a screw 2 and an extrusion barrel 3 sleeved outside the screw , the host is provided with a motor 11, a circuit board 13 and a battery 12, the output shaft of the motor is output downward from the bottom of the motor body and is connected to the upper end of the screw 2 through transmission, the screw includes a screw body 21, and the screw body is provided with a screw 22. The upper end of the screw body is provided with a transmission hole connected to the output shaft of the motor, and the bottom of the extrusion cylinder is provided with a slag receiving container 5, which is located in the juice receiving container, and the main machine is provided with a longitudinally penetrating inlet The feed channel 14, the screw 2 and the extrusion barrel 3 cooper...

Embodiment 2

[0061] Such as Figure 6 As shown, this embodiment optimizes the whole structure of the juicer on the basis of Embodiment 1, and provides a portable screw squeezer with a higher juice yield. A slag container 5, the slag receiving container 5 is located in the juice receiving container 4, the upper port of the slag receiving container 5 is not set higher than the upper port of the juice receiving container 4, the extrusion barrel includes a partition bottom wall, the The partition bottom wall separates the extruding assembly from the slag receiving container. Above the partition bottom wall is the extrusion crushing area defined by the extrusion barrel, and below the partition bottom wall is the slag receiving area defined by the slag receiving container. Outside the extrusion barrel 3 and The region and the area other than the dregs receiving container 5 are all juice receiving areas defined by the juice receiving container. In order to maximize the juice receiving area, durin...

Embodiment 3

[0069] Such as Figure 7 As shown, the difference between the present embodiment and the first embodiment lies in that the juice sealing structure is different. In this embodiment, the juice sealing structure includes an isolation space, the side wall of the extrusion cylinder extends downwards to form an annular surround 311, and the lower end of the annular surround 311 is provided with an inner flanging 3111, and the inner flanging is connected with the slag The container 5 is arranged in a gap, and the annular surrounding edge 311, the inner flange 3111, the bottom wall 32 of the extrusion cylinder and the upper end of the side wall of the slag receiving container are enclosed to form the isolation space, so that the installation and fixation of the slag receiving container is more stable, and the isolation space The contact area between the lower end and the juice is reduced, which can also prevent the juice from entering the isolation space, thereby further preventing th...

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PUM

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Abstract

The invention provides a portable raw juice machine, which includes a main unit, an extrusion assembly and a juice container arranged under the main unit. The motor, the output shaft of the motor is connected to the upper end of the screw by transmission, wherein a slag receiving container is provided at the bottom of the extrusion cylinder, the slag receiving container is located in the juice receiving container, and the upper port of the slag receiving container is not higher than the upper end of the juice receiving container Port setting, the extrusion cylinder includes a partition bottom wall, during the juice extraction process, the partition bottom wall cooperates with the screw to form a first closed cavity, and the partition bottom wall cooperates with the slag receiving container to form a second closed cavity, the The original juice machine also includes a juice sealing structure that prevents juice from entering the first closed cavity and the second closed cavity. The first closed cavity and the second closed cavity are separated and set by the partition bottom wall, so that the arrangement of the extrusion and crushing function area and the slag and juice connection function area of ​​the whole machine is more reasonable, and the space utilization rate is higher.

Description

technical field [0001] The invention belongs to the field of food processing machines, and in particular relates to a portable screw extruding juicer which can produce pure juice separated from juice slag anytime and anywhere. Background technique [0002] Existing screw extruding type raw juice machines generally include a main machine, a juice extracting assembly connected to the main machine, and a container for receiving juice and slag. The screw in the juice collection chamber and the extruding barrel sleeved outside the screw, the user puts in the material from the feeding channel on the upper cover, and the material enters the extrusion crushing gap between the screw and the extruding barrel after passing through the feeding channel The extruded juice is discharged into the juice receiving container from the outlet at the lower end of the side wall of the juice collecting chamber, and the pomace in the squeezed crushing gap passes through the slag discharge port at th...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): A47J19/02
CPCA47J19/025
Inventor 王旭宁赵国锋张玉印
Owner JOYOUNG CO LTD
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