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springs111Òø³æ (ÕýʽдÊÖ)
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Materials and DesignÐ޸ĺóÔÙÉóµÄÒâ¼û
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×òÌìÊÕµ½Ð޸ĺóÔÙÉóµÄÉó¸åÒâ¼û£¬¸Ð¾õ²»ÊǺܺûشðÕâÑùµÄÎÊÌ⣬ÎÒÏë´Ó3¸ö·½Ãæ»Ø´ð£º1£©×Ðϸ¶Ô±ÈʵÑéÊý¾ÝûÓÐÎÊÌ⣬2£©MoµÄ¹ÌÈÜÇ¿»¯¶ÔÇü·þÇ¿¶ÈµÄÓ°Ï죬ÔÚ¸ßÎÂʱҪԶÃ÷ÏÔÓëÊÒΣ¨RT£©£¬3£©¸ü¶àµÄÉîÈëµÄÔÒòÓдýÓÚ¸üÉîÈëµÄÑо¿£¡ÓоÑéµÄ´óÏÀ·ÖÎö£¬ÕâÑù»Ø´ðµÄÊÇ·ñ¿ÉÐС£Éó¸åÈËÌáµÄÎÊÌâÊÇ´óÎÊÌ⣬»¹ÊÇСÎÊÌ⣬Ð޸ĺó½ÓÊܵĻú»á´ó²»´ó£¬Ð»Ð»£¡ ÁíÍ⣬µÚÒ»´ÎÉó¸åÒâ¼ûûÓÐÕâÒ»ÌõµÄ£¡ Reviewers' comments: > > > Reviewer #1: In Fig.5, hardness of Fe-Mo-C steels at RT to 200¡æ has a minimum value at 0.5wt% Mo.But the hardness of the steels increases at 300~600¡æ with the increasing of Mo content. In Fig.6(a), the yield strength(YS)of Fe-Mo-C steels at RT also has a minimum value at 0.5wt% Mo. But the ultimate tensile strength (UTS) of the steels increases with the increasing of Mo content. Moreover, in Fig.6(b), YS and UTS of the steels increase with the increasing of Mo content at 600¡æ. And there is no minimum value at 0.5wt% Mo. Why do the properties of the steels have a minimum value at 0.5wt% Mo in some conditions? But there is no minimum value in other conditions. > > > Reviewer #2: The paper can be considered to accept. > [ Last edited by springs111 on 2011-8-12 at 15:37 ] |
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