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Online since: May 2013
Authors: Teng Ma
Study on Adhesion-resistant Materials for Improving the Restoration of Exercise-induced Muscle Tendon Fracture
Teng Ma
Luo Yang Normal University, China
matenglnu@126.com
Keywords: Adhesion prevention materials; Muscle tendon fracture; Tissue engineering; Restoration
Abstract.
The application of adhesion prevention materials in the part of tendon surrounding was the hotspot of recent research.
At present, the research about adhesion prevention materials has made remarkable achievements.
However, the materials studied in exercise-induced tendon rupture were cut both ways, therefore, as a material for adhesion prevention and functional reconstruction to treatment of tendon rupture.
There are still many unsolved problems in the application of adhesion prevention materials.
The application of adhesion prevention materials in the part of tendon surrounding was the hotspot of recent research.
At present, the research about adhesion prevention materials has made remarkable achievements.
However, the materials studied in exercise-induced tendon rupture were cut both ways, therefore, as a material for adhesion prevention and functional reconstruction to treatment of tendon rupture.
There are still many unsolved problems in the application of adhesion prevention materials.
Online since: October 2014
Authors: Nikolay Vatin, Vera Murgul, Mijat Jocovic, Boban Melovic
Training aimed at implementing of CRM in the civil engineering sector should comprise the following:
- Civil engineering material salesmen;
- Civil engineering service salesmen;
- Sales managers in civil engineering companies;
- Employees in sales services of the civil engineering companies;
In case all civil engineering companies want more success in sales, improving working systems, if they wish to increase productivity and volume of sales, then CRM is one of the most convenient strategies.
Applied Mechanics and Materials.
Applied Mechanics and Materials.
Journal of Applied Engineering Science, Vol. 12 (2) (2014), pp 121-128 [14] Pavlicic, N., Perazic, M., Djuric-Jocic, D., Knezevic, M: Engineering education in the field of civil engineering, Journal of Applied Engineering Science, Vol. 12, № 1, (2014) pp 11-18 [15] L.
Advanced Materials Research 842, (2014), pp. 470-476
Applied Mechanics and Materials.
Applied Mechanics and Materials.
Journal of Applied Engineering Science, Vol. 12 (2) (2014), pp 121-128 [14] Pavlicic, N., Perazic, M., Djuric-Jocic, D., Knezevic, M: Engineering education in the field of civil engineering, Journal of Applied Engineering Science, Vol. 12, № 1, (2014) pp 11-18 [15] L.
Advanced Materials Research 842, (2014), pp. 470-476
Online since: May 2012
Authors: You Hong Zhang, Wan Lei Liu, Chun Guo Yue, Shi Ying Zhang, Xin Long Chang, Qian Zhang
The corrosion fatigue character of aluminum alloy material was investigated.
Introduction Corrosion is one of the most damaging mechanisms in engineering structures.
Experimental procedure The material used in this investigation was LY12CZ aluminum alloy.
The application of the two key assessment parameters were discussed, and the two key assessment parameters can described the pitting damage more generally and exactly.
The application of the two key assessment parameters were discussed, and the two key assessment parameters can described the pitting damage more generally and exactly.
Introduction Corrosion is one of the most damaging mechanisms in engineering structures.
Experimental procedure The material used in this investigation was LY12CZ aluminum alloy.
The application of the two key assessment parameters were discussed, and the two key assessment parameters can described the pitting damage more generally and exactly.
The application of the two key assessment parameters were discussed, and the two key assessment parameters can described the pitting damage more generally and exactly.
Online since: August 2013
Authors: Jin Wei Yu
Green design for concurrent engineering is a new product exploitation and designmode.
The Main Content of Green Design Concurrent Engineering.
(3) Green material design – green materials should have good performance, higher resource utilization, no side effects on the environment of the material.
Therefore, pay attention to the compatibility of materials and environment, the development of new materials and environment-friendly green materials is an important part of the study.
Concurrent engineering and green design has a very close relationship, that is, agricultural products, green design for concurrent engineering has a more urgent needs.
The Main Content of Green Design Concurrent Engineering.
(3) Green material design – green materials should have good performance, higher resource utilization, no side effects on the environment of the material.
Therefore, pay attention to the compatibility of materials and environment, the development of new materials and environment-friendly green materials is an important part of the study.
Concurrent engineering and green design has a very close relationship, that is, agricultural products, green design for concurrent engineering has a more urgent needs.
Online since: January 2026
Authors: Isiaka Oluwole Oladele, Yemi Audu, Chioma Ifeyinwa Madueke
Bamboo in Composite Materials: Applications, Advantages and Processing
Audu Yemi1,2,a*, Oladele Isiaka Oluwole2,b and Madueke Chioma Ifeyinwa1,c
1Department of Materials and Metallurgical Engineering, Federal University Oye-Ekiti, Ekiti State, Nigeria
2Department of Metallurgical and Materials Engineering, Federal University of Technology, Akure, Ondo State, Nigeria
a*yemi.audu@fuoye.edu.ng, biooladele@futa.edu.ng, cchioma.madueke@fuoye.edu.ng
*Correspondence: yemi.audu@fuoye.edu.ng
Keywords: bamboo composites, natural fibers, green materials, mechanical properties, sustainable manufacturing.
Below are key sectors where these materials are making significant technical contributions. 3.1.
These findings suggest that bamboo-based materials could serve as effective scaffolds for orthopedic applications, providing a promising avenue for future research and development in biomedical engineering. 3.4.
Materials, 9(6), 435
Review on the application of bamboo-based materials in construction engineering.
Below are key sectors where these materials are making significant technical contributions. 3.1.
These findings suggest that bamboo-based materials could serve as effective scaffolds for orthopedic applications, providing a promising avenue for future research and development in biomedical engineering. 3.4.
Materials, 9(6), 435
Review on the application of bamboo-based materials in construction engineering.
Online since: December 2025
Edited by: Khadija Haboubi, Mujtahid Kaavessina, Somrerk Chandra-Ambhorn
This special edition presents a collection of contemporary research results across key areas of materials science, with a focus on structural metals, bio-based polymers, functional materials for sensing and photovoltaics, and catalytic materials and processes.
The edition is intended to serve as a valuable resource for researchers, engineers, and students seeking insight into innovative approaches to materials development, sustainable technologies, and their functional applications across diverse fields.
The edition is intended to serve as a valuable resource for researchers, engineers, and students seeking insight into innovative approaches to materials development, sustainable technologies, and their functional applications across diverse fields.
Online since: February 2011
Authors: Pei Hua Zhang, Zheng Guo, Jin Jing Chen
Material and structure are two key factors of the scaffold.
Experimental Materials and scaffold preparation.
The tubal knitted scaffold fabricated from PLA yarns, which possesses the sufficient internal space, can be conveniently combined with other materials for the use in tendon tissue engineering.
Tateishi: Materials Science and Engineering C Vol. 17 (2001), p. 63 [3] H.
Wang: Key Engineering Materials Vol. 288-289 (2005), p. 7 [8] S.
Experimental Materials and scaffold preparation.
The tubal knitted scaffold fabricated from PLA yarns, which possesses the sufficient internal space, can be conveniently combined with other materials for the use in tendon tissue engineering.
Tateishi: Materials Science and Engineering C Vol. 17 (2001), p. 63 [3] H.
Wang: Key Engineering Materials Vol. 288-289 (2005), p. 7 [8] S.
Online since: May 2011
Authors: Chun Jiang Zhou, Jing Qiao Zou
The Analysis of Tool Key Technology in High Speed Machining
Chunjiang Zhoua Jingqiao Zoub
Zhejiang Institute of Mechanical and Electrical Engineering,
Hangzhou,310053,PR China
azcj7012231@126.com bzoujq@163.com
Key words: High speed machining, Tool material, Tool shank, Dynamic balance
Abstract: High speed machining is one of the advanced manufacturing technologies which have developed quickly in recent years.
Tool Material Technology in HSM The tool materials of HSM are developing from aluminum, non-ferrous metal to black metal, high temperature alloys, titanium alloys and composite materials.
The toughness and hardness of tool materials as well as cutting efficiency improved significantly because of the development of fine and ultrafine particulate material.
It is key element to select the materials for high-speed machining tool according to the nature of the work piece and the processing options, not only for the technical requirements, but the requirements of economic and environmental protection.
Therefore, comprehensively considering the properties of tool material, PCBN, ceramic cutting tools, coated carbide, and TIC (N)-based cemented carbide cutting tools are suitable for high-speed processing of steel and other ferrous metal; and PCD cutting tools are suitable for aluminum, magnesium, copper and other non-ferrous materials, alloys and non-metallic materials.
Tool Material Technology in HSM The tool materials of HSM are developing from aluminum, non-ferrous metal to black metal, high temperature alloys, titanium alloys and composite materials.
The toughness and hardness of tool materials as well as cutting efficiency improved significantly because of the development of fine and ultrafine particulate material.
It is key element to select the materials for high-speed machining tool according to the nature of the work piece and the processing options, not only for the technical requirements, but the requirements of economic and environmental protection.
Therefore, comprehensively considering the properties of tool material, PCBN, ceramic cutting tools, coated carbide, and TIC (N)-based cemented carbide cutting tools are suitable for high-speed processing of steel and other ferrous metal; and PCD cutting tools are suitable for aluminum, magnesium, copper and other non-ferrous materials, alloys and non-metallic materials.
Online since: December 2016
Authors: Yun Xin Wu, Hai Gong, Yang Li, Qun Ming Li
The difficulty of materials inner stress detection is a barrier to engineering equipment research.
However, the inability of inner stress detection has been a barrier of researching, designing and manufacturing for engineering structure and complex equipment, and it seriously affects the new material research [2].
This spectrometer could be used to detect inner stress field and macro stress field of material/component [3], damage defects (cracks) and the surrounding stress field of component, stress of material composition phase and crystal structure (texture) [4]; It could be used to serve precise design and manufacturing of engineering component, accurate assessment of service performance, integrated design of materials-component and engineering requirement of major equipment safe operation [5]; It could also be used to explore mutual effects of internal interphase stress and develop scientific laws, such as the formation and evolution of damage mechanism of material/component under the action of cyclic stress [6].
Kowari – The Residual-Stress Diffractometer for Engineering Applications at OPAL.
Ottauia, Applications of neutron diffraction to engineering problems
However, the inability of inner stress detection has been a barrier of researching, designing and manufacturing for engineering structure and complex equipment, and it seriously affects the new material research [2].
This spectrometer could be used to detect inner stress field and macro stress field of material/component [3], damage defects (cracks) and the surrounding stress field of component, stress of material composition phase and crystal structure (texture) [4]; It could be used to serve precise design and manufacturing of engineering component, accurate assessment of service performance, integrated design of materials-component and engineering requirement of major equipment safe operation [5]; It could also be used to explore mutual effects of internal interphase stress and develop scientific laws, such as the formation and evolution of damage mechanism of material/component under the action of cyclic stress [6].
Kowari – The Residual-Stress Diffractometer for Engineering Applications at OPAL.
Ottauia, Applications of neutron diffraction to engineering problems
Online since: September 2013
Authors: Dong Xiao Niu, Qing Guo Ma, Hui Jian Fu, Da Chun Zhao, Ya Li Zhu
RWJFHS-V Seven Elements Pyramid Model (Pyramid Model, or Hierarchical Model) integrates the environment, funds, materials, key-events and other elements, forming a new generation of value engineering system.
It covers the key elements required for enterprise development.
Industrial engineering handbook[M].
Value engineering[M].
Applied Mechanics and Materials, 2013, 268: 2022-2025.
It covers the key elements required for enterprise development.
Industrial engineering handbook[M].
Value engineering[M].
Applied Mechanics and Materials, 2013, 268: 2022-2025.