Abstract: Disclosed is a nano pulverizing device for processing reconstituted rice flour which includes a bottom plate, support legs are fixedly connected to corners of a lower surface of the bottom plate, a housing is arranged on an upper surface of the bottom plate, and a rotating motor is arranged on the lower surface of the bottom plate. The rotating motor penetrates through the lower surface of the bottom plate and extends to the upper surface of the bottom plate, and a crushing device is rotationally connected to one end, extending to the upper surface of the bottom plate, of the rotating motor. A support frame is fixedly connected to an inner wall of the housing, a support plate is fixedly connected to a lower surface of the support frame, and a flexible plate is fixedly connected to a lower surface of the support plate.
Type:
Application
Filed:
October 24, 2023
Publication date:
April 24, 2025
Applicant:
Harbin University Of Commerce
Inventors:
Na ZHANG, Yang YANG, Xin BIAN, Chunmin MA, Xiaofei LIU, Bing WANG, Fenglian CHEN, Yinyuan HE
Abstract: An immobilized enzymolysis equipment for reconstituted rice milk powder includes a bottom box, a heating device is arranged on an upper surface of the bottom box, and a splash-proof device is arranged on an upper surface of the heating device. Support legs are fixedly connected to corners of a lower surface of the bottom box. A rotating motor is arranged on a bottom surface of an inner cavity of the bottom box. The rotating motor is provided to achieve the effect of rotating a centrifugal device. The centrifugal device is rotationally connected to one side, extending to the upper surface of the bottom box, of the rotating motor, so as to achieve water-milk separation of reconstituted milk powder.
Type:
Application
Filed:
July 24, 2023
Publication date:
April 18, 2024
Applicant:
Harbin University Of Commerce
Inventors:
Na ZHANG, Yang YANG, Xin BIAN, Chunmin MA, Xiaofei LIU, Bing WANG, Yinyuan HE
Abstract: The present disclosure provides an analysis method for a closed-loop supply chain (CLSC) with dual recycling channels. The analysis method includes: step S1: constructing recycling function models for dual recycling channels; step S2: constructing a decision model for a non-subsidized CLSC with dual recycling channels and a decision model for a subsidized CLSC with dual recycling channels respectively; step S3: obtaining optimal decisions of a manufacturer, the retailer and the online recycling platform in the non-subsidized CLSC with dual recycling channels and optimal decisions of the manufacturer, the retailer and the online recycling platform in the subsidized CLSC with dual recycling channels; and step S4: determining an influence law of a subsidy on the optimal decisions of the manufacturer, the retailer and the online recycling platform in the CLSC with dual recycling channels through a comparative analysis.