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¸÷λ´óÏÀ£¬×î½üͶÁËһƪmaterial and design£¬ÒªÇóÐ޸쬵«²»ÖªµÀµ½Ê±ºòÒªÌύЩʲôÎļþ£¬Ð޸ĸå¼ÓDetailed responses to ReviewsÊÇ·ñ¿ÉÐУ¬»¹ÐèҪʲô¶«Î÷Âð£¿Ð»Ð»£¡ÁíÍ⣬¿´¿´ÎÒÕâReviewers' comments£¬ÊÇËã´óÐÞ»¹ÊÇСÐÞ¡£½ÓÊܵĻú»á´óÂð£¿ÎÒ²¹ÉÏÀÉìÐÔÄܵÄÊý¾Ý£¨ tensile test£©¡£Ð»Ð» Reviewer #1: 1. In general, hardness measure has large error. How can the authors ensure the accuracy of measured hardness? Only hardenss data cannot indicate strength properties completely. If the authors can obtain yield strength and ultimate strength of the fire-resistant steel, your experimental data will be full. > 2. The authors have not further prepared low Mo content (below 0.3 wt%) class fire-resistant steel ant tested its strength properties. This will not support the authors' conclusions well. > 3. Some metallographic images are not clear, which cannot clearly show different phases. > 4. There are some spelling and grammatic mistakes. > > > > Reviewer #2: The authors investigated the effect of Mo addition to the fire resistant steel and discussed different strengthen mechanisms based on the hardness data, however, the most important characteristic of fire resistant steel is that the yeild strength at 600 degree, usually this vale should be obtained using high-temperature tensile system. unfortunately I can not find such information in the present work. The value of high temperature hardness provided in the present work is not a suitable variable to evaluate the materials properties, it is necessary to conduct similar tensile tests to demonstrate the properties more clearly. |
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