Abstract
The results of the first phase research and development project for developing composite materials as the basic technologies of the next generation are evaluated, and the directions of the R and D evaluation for the second phase are set up. The efforts in the first-phase R and D project are aimed at development of methods for measuring carbon fiber surface structure elements; confirmation of the relationship between adhesive shear strength and active surface area; development of methods for determining fracture toughness by standard specimens; estimation of allowable void fraction for inter-layer shear strength; defect detection and quality evaluation by electromagnetic, ultrasonic, laser holography and AE methods; development of methods for detecting resin setting reactions during the molding processes; and understanding deteriorated mechanical characteristics of the resin-based composites by environmental factors, among others. The objectives of the first-phase project have been almost achieved. It is decided that the second-phase R and D project are directed to investigations on the relationship between surface properties of the fibers in the composites and fiber/matrix adhesion; researches on mechanical characteristics involved in fracture of the structural elements; evaluation of mechanical properties of the metal-based composites and investigations on detecting their defects; elucidation of the effects
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Citation Formats
None.
Research and development of the industrial basic technologies of the next generation, 'composite materials (quality evaluation techniques)'. Evaluation of the first phase research and development; Jisedai sangyo kiban gijutsu kenkyu kaihatsu 'fukugo zairyo (hinshitsu hyoka gijutsu)'. Zenki kenkyu kaihatsu hyoka.
Japan: N. p.,
1985.
Web.
None.
Research and development of the industrial basic technologies of the next generation, 'composite materials (quality evaluation techniques)'. Evaluation of the first phase research and development; Jisedai sangyo kiban gijutsu kenkyu kaihatsu 'fukugo zairyo (hinshitsu hyoka gijutsu)'. Zenki kenkyu kaihatsu hyoka.
Japan.
None.
1985.
"Research and development of the industrial basic technologies of the next generation, 'composite materials (quality evaluation techniques)'. Evaluation of the first phase research and development; Jisedai sangyo kiban gijutsu kenkyu kaihatsu 'fukugo zairyo (hinshitsu hyoka gijutsu)'. Zenki kenkyu kaihatsu hyoka."
Japan.
@misc{etde_20091776,
title = {Research and development of the industrial basic technologies of the next generation, 'composite materials (quality evaluation techniques)'. Evaluation of the first phase research and development; Jisedai sangyo kiban gijutsu kenkyu kaihatsu 'fukugo zairyo (hinshitsu hyoka gijutsu)'. Zenki kenkyu kaihatsu hyoka}
author = {None}
abstractNote = {The results of the first phase research and development project for developing composite materials as the basic technologies of the next generation are evaluated, and the directions of the R and D evaluation for the second phase are set up. The efforts in the first-phase R and D project are aimed at development of methods for measuring carbon fiber surface structure elements; confirmation of the relationship between adhesive shear strength and active surface area; development of methods for determining fracture toughness by standard specimens; estimation of allowable void fraction for inter-layer shear strength; defect detection and quality evaluation by electromagnetic, ultrasonic, laser holography and AE methods; development of methods for detecting resin setting reactions during the molding processes; and understanding deteriorated mechanical characteristics of the resin-based composites by environmental factors, among others. The objectives of the first-phase project have been almost achieved. It is decided that the second-phase R and D project are directed to investigations on the relationship between surface properties of the fibers in the composites and fiber/matrix adhesion; researches on mechanical characteristics involved in fracture of the structural elements; evaluation of mechanical properties of the metal-based composites and investigations on detecting their defects; elucidation of the effects of environmental factors on their strength; and development of the techniques for integrating detection of molding-induced cracking and that of setting reactivity, among others. (NEDO)}
place = {Japan}
year = {1985}
month = {Mar}
}
title = {Research and development of the industrial basic technologies of the next generation, 'composite materials (quality evaluation techniques)'. Evaluation of the first phase research and development; Jisedai sangyo kiban gijutsu kenkyu kaihatsu 'fukugo zairyo (hinshitsu hyoka gijutsu)'. Zenki kenkyu kaihatsu hyoka}
author = {None}
abstractNote = {The results of the first phase research and development project for developing composite materials as the basic technologies of the next generation are evaluated, and the directions of the R and D evaluation for the second phase are set up. The efforts in the first-phase R and D project are aimed at development of methods for measuring carbon fiber surface structure elements; confirmation of the relationship between adhesive shear strength and active surface area; development of methods for determining fracture toughness by standard specimens; estimation of allowable void fraction for inter-layer shear strength; defect detection and quality evaluation by electromagnetic, ultrasonic, laser holography and AE methods; development of methods for detecting resin setting reactions during the molding processes; and understanding deteriorated mechanical characteristics of the resin-based composites by environmental factors, among others. The objectives of the first-phase project have been almost achieved. It is decided that the second-phase R and D project are directed to investigations on the relationship between surface properties of the fibers in the composites and fiber/matrix adhesion; researches on mechanical characteristics involved in fracture of the structural elements; evaluation of mechanical properties of the metal-based composites and investigations on detecting their defects; elucidation of the effects of environmental factors on their strength; and development of the techniques for integrating detection of molding-induced cracking and that of setting reactivity, among others. (NEDO)}
place = {Japan}
year = {1985}
month = {Mar}
}