KEYWORDS: Raw materials, Glasses, Sensors, Heat treatments, Finite element methods, Glass molding, Control systems, Teeth, Stress analysis, Power supplies
The wallboard extrusion molding technology is oriented to sustainable development and is committed to green production. In order to meet the process requirements, the existing molding machine is optimized. Based on the working principle of the wallboard extrusion molding machine, improve the overall movement and lifting function, connect the screw feed rod with the bottom end of the hopper, improve the utilization rate of raw materials, and add a pressure sensitive sensor to control the supply of raw materials to avoid waste of raw materials. Through the action of gravity and inclined plane component, it is convenient for the equipment to discharge the plate, and the finite element analysis of the screw feed rod is carried out to verify the feasibility and effectiveness of the system, optimize the operation process of old-fashioned industrial production equipment, and realize automatic supply to a certain extent.
Lightweight wall forming machine is the use of fly ash and other industrial waste for lightweight wall panel extrusion manufacturing of automated molding equipment, there are equipment automation, low degree of mechanization, product quality can not be controlled and other shortcomings. This paper completes the innovative design of the lightweight wall forming machine by establishing a three-dimensional model of the lightweight wall forming machine, performing motion analysis and force analysis of the spiral reamer of the equipment, and completing the control circuit design of the device, based on the mechanical analysis and finite element analysis of the spiral reamer and vibration cavity, the rationality of the innovative design structure of the lightweight wall forming machine is verified. The innovative design of the lightweight wall forming machine can achieve automatic production, high production efficiency, can achieve continuous board making, is conducive to improving the surface light sensitivity of the wall panel, increase production efficiency.
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