日本機械学会論文集 A編
Online ISSN : 1884-8338
Print ISSN : 0387-5008
リサイクル成形のメゾ因子による異方性制御と疲労き裂進展に及ぼす有効配向性の発現 : テトラポット状強化材, アラミド繊維による異方性の抑止
福永 久雄鈴木 秀人松村 亜紀子原口 忠男
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63 巻 (1997) 613 号 p. 1880-1885

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The fatigue reliability of recycled advanced fiber-reinforced thermoplastic (FRTP) resin was examined, with a focus on the effects of the mesoscopic factor on the Fatigue Crack Propagation property. The main results were as follows : (1) In spite of the low weight percentage of carbon fiber, the rate of decreace the FCP property of PPS/ZW+CF materials was similar to that for PPS/GF materials with high weight percentages of glass fibers. The rate of decrease of the mechanical property of PA46/AF materials were low, but the rate of decrease of the FCP property of PA46/AF materials was very high remarkably. (2) The carbon fibers in PPS/ZW+CF materials were not oriented in one direction because of the three dimensimality of the zinc oxide whiskers in the molding process, and effective orientation of the carbon fibers appeared on FCP resistance. (3) The value of da/dN was constant on the FCP property of PPS/ZW+CF materials at low stress intensity factor range (ΔK) because of microcrack initiation. (4) Aramide fibers (AF) were not broken and not unidirectionally oriented because of their flexibility during molding at high temperatures. The FCP property of recycled PA46/AF materials was influenced by the winding shape of the AF.

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