Block Roll Forming Machine Design System

Gypsum block is a kind of high performance, a new type of environmental protection wall materials recycled. As the country to vigorously develop new wall materials, gypsum block will get more and more widely used, however, roof panel roll forming machine at present, the gypsum block production technology is still relatively backward, the low level of automation. This article of gypsum block molding machine is committed to improving the level of automation and production efficiency of gypsum block production line.


First of all, this article in the China metallurgical group, a construction institute of SG - type 2, on the basis of gypsum block molding machine equipment, to improve and perfect, design the SG - A1 type full automatic gypsum block production equipment. SG - A1 machine adopt the "vertical pouring, horizontal parting" new forming method, make the gypsum block molding metal roll forming machine are easier to implement assembly line production, effectively improve the production efficiency of the production line.

According to the production status, SG - A1 type forming machine added automatic sweep plasma device and the remaining material recycling equipment, molding process automation control. Secondly, combining with the SG - type 2 molding machine hydraulic system, according to the structural characteristics of SG - A1, new machine model of the hydraulic system is designed. Detailed introduces the hydraulic system design principle, composition and working process of each circuit element, and analysis of the SG - type 2 molding machine with SG - A1 type forming characteristics.

The results show that the SG - A1 molding machine hydraulic system load is small, fast response and control precision, high reliability and can adapt to the continuity of production. In this paper, the hydraulic system simulation analysis on the key control circuit, using Simulink simulation purlin roll forming machine function, control level in the hydraulic system of scraper movement synchronization circuit modeling, and use the common control method, simulation of the system is obtained under the open loop and closed loop state of Bode diagram, the step response curve. Simulation results show that the system running under the design parameters in this paper, the system is stable, control precision is more ideal, meet the needs of actual production.   http://www.broswright.com/prolist/

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