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關(guān)于Materials and Design的技術(shù)審查 已有2人參與
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最近投稿Materials and Design,大約一周后收到了技術(shù)審查,給出的評語如下: Comments: Language: * In its current state, the level of English throughout your manuscript does not meet the journal's desired standard. Please check the manuscript and refine the language carefully. Technical: PASS (是否表示技術(shù)審查通過?既然通過了,為什么語言還要修改潤色呢?) 大致意思可能是說,英語水平不符合該期刊的要求和標(biāo)準(zhǔn),讓我認(rèn)真修改并對語言進(jìn)行潤色。但是技術(shù)審查編輯似乎沒有給出具體的修改意見或建議。我自認(rèn)為書面英語表達(dá)還算規(guī)范(下文給出了該稿件的摘要,各位幫忙把把脈吧),之前在Construction and Buliding Materials上發(fā)表過論文,評審專家還夸獎了我的英語表達(dá)水平,說論文讀起來感覺很好,寫得較為流暢,F(xiàn)在這個期刊突然給出這個意見,我感覺莫衷一是,關(guān)鍵是沒有給出具體的修改建議。請各位大俠高人多加指點(diǎn)。非常感謝大家的幫助! "ABSTRACT: Compressive strength is the most commonly used property for characterizing performance of cement-based materials (CBM). For the purpose of predicting compressive strength, it has been correlated to semi-adiabatic temperature evolution induced by early-age hydration of CBM. In this study, semi-adiabatic temperature evolutions and compressive strength developments of a series of mortar and concrete mixtures have been experimentally investigated. The results indicated that, the both properties are strongly dependent on composition of comentitious materials and water-cementitious materials ratio. Estimated results of temperature rise and compressive strength from modified equations match well with the measured data. A general linear relationship between compressive strength and peak value of temperature rise is presented and verified. The linear correlation is not fundamentally affected by mixture components and proportions of CBM, but is influenced by initial and exposed temperature conditions. Predicting compressive strength of CBM from its early-age hydration-related temperature evolution will reduce actual test work." |
銅蟲 (著名寫手)
納米蟲

新蟲 (初入文壇)
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