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Dive into the research topics where Cheng Long Wang is active.

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Featured researches published by Cheng Long Wang.


Key Engineering Materials | 2009

Research of Equipment Selection and Matching Expert System in Fully Mechanized Caving Face Based on Ontology

Zhi Hai Liu; Qing Liang Zeng; Cheng Long Wang; Yu Shan Li

The technologies of expert system, ontology modeling and reasoning are studied and applied in this paper. A framework of ontology-based expert system for equipment selection and matching in fully mechanized caving face is built up. The OWL(Web Ontology Language) based equipment knowledge base is set up, and the redundant test is made in the protégé environment. The equipment selection and matching rules are built up by using SWRL(Semantic Web Rule Language). By using JAVA language, the output of equipment selection expert system is optimized based on the theory of Analytic Hierarchy Process. At last, the functions of the expert system are achieved under JESS(Java Expert System Shell) environment. Practical application shows that the equipments selected and matched by ontology-based expert system are more realistic.


Applied Mechanics and Materials | 2012

Induction Heating Furnace Temperature Control Based on the Fuzzy PID

Xue Gang Hou; Cheng Long Wang

Induction heating furnace temperature control is a complex nonlinear hysteretic inertial process, its difficult to obtain an accurate mathematical model because the temperature and disturb from outside is complicated. The normal PID control algorithm is hard to satisfy the standards of control. The fuzzy PID controller provided in this article is a combination between fuzzy control and the traditional PID control. The Fuzzy control theory is used to setting the ratio, the integral and the differential coefficient of the PID control. In the run-up stage, rapidity is guaranteed, overstrike and the steady-state error is up to the mustard. An example indicates that fuzzy PID control is superior to the normal PID controller.


Key Engineering Materials | 2008

Transformation from Monoclinic LiMnO2 to Spinel LixMn2O4 during Electrochemical Cycling

Yi Jie Gu; Y.B. Chen; H.K. Wu; X.W. Huang; X.B. Liu; Hong Zhi Cui; Yanmin Wang; Z.N. Yang; Cheng Long Wang; H. Huo

The monoclinic LiMn0.9Cr0.1O2 irreversibly transforms to spinel-like structure m-LiMnO2 during the electrochemical cycling. Experimental results indicated that the (440) interplanar distance of LixMn2O4 at the charged state increases as the cycle number increases, while the (440) interplanar distance of LixMn2O4 at the discharged state decreases as the cycle number increases.A model for the transformation of monoclinic LiMn0.9Cr0.1O2 to the spinel LiMn2O4 is suggested. According to the suggested model, there may exist two types of s-LixMn2O4 when m-LiMnO2 transforms into s-LixMn2O4. The two types of spinel LixMn2O4 develop the nanodomain.


Applied Mechanics and Materials | 2013

Research and Application of Music Digitalization Based on MATLAB

Meng Chen; Cheng Long Wang; Qing Tian Zeng; Hai Zhong Zhang

Research and Application of Music Digitalization Based on MATLAB is introduced in this paper. Firstly, music theory and key technology of Music Digitalization based on MATLAB in the process are given. Secondly, an example is introduced to illustrate the process of music analysis and synthesis based on MATLAB. Finally, conclusions and Outlook are introduced.


Applied Mechanics and Materials | 2012

Design and Realization of Performance Testing System for New Developed Hydraulic Pumps and Valves

Cheng Long Wang; Qing Liang Zeng; Xin Zhang; Zhi Hai Liu

In order to ensure the performance of new products, a performance testing system including the design principle, design of hydraulic system and establishment of the computer data acquisition and processing system is given, which can be used to simulate the actual working conditions of a variety of hydraulic components and also used for the loading test. According to application, it shows that the performance testing system can work as an effective approach for quality checking for the new produced hydraulic components before they were put into the market.


Applied Mechanics and Materials | 2012

The Development of the Durable Test-Bed of the Hydraulic Pump

Li Rong Wan; Hong Xi Kang; Zhi Hai Liu; Cheng Long Wang

An energy recovery method during the durable test is put forward in this essay, and the durable test-bed of the hydraulic pump is developed. The efficiency and accuracy data acquisition is realized by using High-Speed High-Resolution sensor and data collection module. Control automation is come true by using PLC, industrial tablet PC and electric command device. The instrument panel constructed by LabWindows/CVI made the operation more concision, flexible and easy-to-use. This test bed has been put into use for a year and shows that the system can realize duration and efficient test of hydraulic pump easily and reliable.


Advanced Materials Research | 2012

Design and Implementation of the Integrated Test Platform for the Hydraulic Components

Zhi Hai Liu; Qing Liang Zeng; Cheng Long Wang; Hong Xi Kang

In this paper, a new type of hydraulic test bed is developed which can be used for performance testing of hydraulic valves, hydraulic motor and hydraulic pump. The composition structure diagram of hydraulic system, power supply system, and the signal flow diagram of data acquisition system were designed. The characteristics of the LabWindows/CVI development tools and the usage of Prodave MPI/IE 6 network communication tools were introduced, also the database storage and access technology in LabWindows/CVI environment. It was proved through the practical application that the test bed is reliable and has the merit of higher precision and automation level, and simple operation.


Advanced Materials Research | 2012

Design and Realization of Durability Test-Bed for New Developed Hydraulic Pump

Cheng Long Wang; Qing Liang Zeng; Zhi Hai Liu; Hong Xi Kang

In order to satisfy the practical requirement, Durability test-bed for new developed hydraulic pump is designed which mainly includes design of hydraulic systems, design of data acquisition and processing system and design of test bench and electronic control system. According to application, it shows that the Durability test-bed is effective for durability test of new developed hydraulic pump and it can help to improve the design of hydraulic pump


Advanced Materials Research | 2012

Design of Performance Testing Bed for Hydraulic Products of Engineering Machinery

Zhi Hai Liu; Qing Liang Zeng; Hong Xi Kang; Cheng Long Wang

Hydraulic test platform is a very important testing tool for hydraulic products of engineering machinery. In this paper, a new type of hydraulic test bed is developed which can be used for performance testing of hydraulic valves, hydraulic motor and hydraulic pump. The composition structure diagram of hydraulic system, power supply system, and the signal flow diagram of data acquisition system were designed. The communication between sensors and computer via RS232 were researched. At last, the hydraulic test software is developed by using Labwindows/CVI and Simense PLC.


Advanced Materials Research | 2011

Hydraulic Support Development Based on Virtual Prototype Collaborative Development Platform

Cheng Long Wang; Qing Liang Zeng; Zhi Hai Liu; Xiao Wang Wu

In this paper, based on virtual prototype Collaborative Development Platform for Hydraulic support, a new technology way to the design and study of the mining hydraulic support is provided.The function constitute of the platform which can support the whole multi-disciplinary collaborative development procedure of Hydraulic support are given. The Development of Hydraulic support based on virtual prototype Collaborative Development Platform is given, which includes the following key steps: Team member management modeling, Process management modeling and Co-simulation. The development of hydraulic support shows the effectiveness of the virtual prototype collaborative development for hydraulic support.

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Dive into the Cheng Long Wang's collaboration.

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Qing Liang Zeng

Shandong University of Science and Technology

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Zhi Hai Liu

Shandong University of Science and Technology

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Hong Xi Kang

Shandong University of Science and Technology

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Li Rong Wan

Shandong University of Science and Technology

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Guang Yu Zhou

Shandong University of Science and Technology

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H. Huo

Chinese Academy of Sciences

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X.B. Liu

Chinese Academy of Sciences

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X.W. Huang

Shandong University of Science and Technology

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Yanmin Wang

Shandong University of Science and Technology

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Yu Shan Li

Shandong University of Science and Technology

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