Research on pneumatic control technology of medium and large diameter double-sided polishing machine

Author(s):  
Shuo Zhang ◽  
Hongwei Shi ◽  
Chunyang Wang ◽  
Zebiao Shan ◽  
Dasen Wang
2022 ◽  
Vol 2022 ◽  
pp. 1-9
Author(s):  
Dongshuang Liu ◽  
Xinrong Liu ◽  
Zuliang Zhong ◽  
Yafeng Han ◽  
Fei Xiong ◽  
...  

Due to the complex construction conditions of shield tunnels, ground disturbance is inevitable during the construction process, which leads to surface settlement and, in serious cases, damage to surrounding buildings (structures). Therefore, it is especially important to effectively control the constructive settlement of subway tunnels when crossing settlement-sensitive areas such as high-density shantytowns. Based on the project of Wuhan Metro Line 8 Phase I, the shield of Huangpu Road Station-Xujiapang Road Station interval crossing high-density shantytowns, we study the disturbance control technology of oversized diameter mud and water shield crossing unreinforced settlement-sensitive areas during the construction process. By optimizing the excavation parameters and evaluating the ground buildings, the excavation process can be monitored at the same time, and the water pressure, speed, and tool torque required during the excavation during the construction process can be finely adjusted; the control of tunneling process parameters can provide reference and basis for analyzing the construction control of large-diameter shield through old shantytowns.


2012 ◽  
Vol 233 ◽  
pp. 177-180
Author(s):  
Jian Xin Liu ◽  
Jian Jun Lv ◽  
Ping Tan

In order to improve die/mold polishing worker’s environment and polishing automation level, we introduce a kind of low cost automatic polishing machine (LCAPM) with compliant actuator. The actuator is composed of a Tripod mechanism driven by pneumatic cylinders. Proportional valve is used to guarantee precision of cylinder’s position, and a 3D force sensor is used to adjust polishing contact force between grind stone tool and workpiece. Structure of LCAPM is described in detail; pneumatic control circuit and cylinder’s position are modeled in succession. Finally, a computing case of cylinder’s position for given workpiece is shown.


2018 ◽  
Vol 2018 ◽  
pp. 1-18 ◽  
Author(s):  
Weijian Yu ◽  
Fangfang Liu

The purpose of this paper is to solve the problem that deep and close-distance cavern and roadway group were easily affected by the adjacent chamber or roadway excavation disturbance and low stability and significant deformation of surrounding rock occurred. The stability and control technology of surrounding rock in the main shaft and auxiliary shaft system has been analyzed by the adjacent chamber and roadway group of −850 m level in Qujiang Mine, China, as an engineering background. Firstly, the numerical calculation of the excavation chamber was, respectively, carried out in different ways with the propagation theory of the excavation disturbance wave. The results show that the interaction of adjacent chamber excavation was more intense. When excavated at the same time, there is a large increase in the movement of the sides and the roof-floor of the chamber and roadway. Then, the mechanism of interaction between low-high stress and excavation disturbance was considered, the corresponding control principles were provided, and a set of critical technologies and equipment were designed according to the deformation characteristics of the large deformation soft surrounding rock. Finally, the comprehensive control method was put forward with the water pump house as an example, that is, anchor, metal net, grouting, combined anchor cable and large-diameter anchor cable. And the related support parameters were determined by the internal damage of the surrounding rock chamber. The numerical simulation results show that the surrounding rock deformation of the chamber and roadway reduced with the revised support program, which the expansion of the rock mass loose circle prevented effectively. The site test shows that the convergence rate of surrounding rock with the improved support was less than 0.2 mm/d, and the rock deformation of chamber and roadway suppressed significantly.


2011 ◽  
Vol 189-193 ◽  
pp. 1687-1690
Author(s):  
Yi Bian ◽  
Zhi Ping Zhong ◽  
Xiao Hui Ma ◽  
Yue Wen Zhai

Using the method of physical simulation, the vertical extrusion process of thick-walled seamless steel pipe is studied. According to the study and analysis focusing on the die structure and lubrication condition, optimized die parameter which is used for hot extrusion of ferrous metal and a reasonable die - billet composite lubrication program are achieved. Necessary reference and basis are provided to master not only the extrusion process of large diameter thick-walled long pipe, but also the quality control technology.


2010 ◽  
Vol 44-47 ◽  
pp. 3702-3705
Author(s):  
Jian Liu ◽  
Yuan Jun Lv

Pneumatic control technology of Test Equipment has been introduced which is used to Test product‘s hardness. The structure and working principle of detector is introduced, its pneumatic loop and PLC control loop have been designed and optimized by way of the software of FluidSIM-P which belongs to FESTO in Germany. Now, the detector has gained good effect on detecting a kind of vehicle parts, the simulation result is similar to Actual Use result in factory, The research and application in this method are help for developing new electromechanical equipment.


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