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12篇 您的检索式:作者名="Montrelay"
    题名 作者 年代 出处 被引量
1Thermo-Mechanical Characterization of Plasticized PLA:Is the Miscibility the only Significant Factor? 显示文摘Pillin I Montrelay N Grohens Y 2006Polymer2006,47,:1
2Could Biopolymers Reinforced by Randomly Scat- tered Flax Fiber be Used in Structural Applications 显示文摘Edwin Bodros Isabelle Pillin Nicolas Montrelay Bodros 2007Composites Science and Technology2007,67,:1
3Thermo-me-chanical Characterization of Plasticized PLA:Is the Miscibility the Only Significant Factor 显示文摘Pillin I Montrelay N Grohens Y 2006Polymer2006,47,13:1
4Could biopolymers reinforced by randomly scattered flax fiber be used in structural applications 显示文摘Bodros E Pillin I Montrelay N 2007Composites Science and Technology2007,67,:1
5Thermo-me- chanical characterization of plasticized PLA : Is the miscibil- ity the only significant factor 显示文摘PHILLIN I MONTRELAY N GROHENS Y 2006Polymer2006,47,13:1
6Thermo-me- chanical characterization of plasticized PLA: Is the miscibili- ty the only significant factor? 显示文摘PILLIN I MONTRELAY N GROHENS Y 2006Polymer2006,47,13:1
7Could biopolymers reinforced by randomly scattered flax fiber be used in structural applications 显示文摘Edwin Bodros Isabelle PiUin Nicolas Montrelay 2007Composites Science and Technology2007,67,:1
8Effect of thermo-mechanical cycles on the physico-chemical properties of poly(lactic acid)显示文摘Isabelle Pillin Nicolas Montrelay Alain Bourmaud Yves Grohens 2007Polymer Degradation and Stability2007,,2:1
9Thermo-mechanical characterization of plasticized PLA: Is the miscibility the only significant factor?显示文摘Isabelle Pillin Nicolas Montrelay Yves Grohens 2006Polymer2006,,13:1
10Could biopolymers reinforced by randomly scattered flax fibre be used in structural applications?显示文摘Bodros E Pillin I Montrelay N 2007Composites Science and Technology2007,67,34:1
11Thermo-mechanical characterization of plasticized PLA: Is the miscibility the only significant factor显示文摘Pillin I Montrelay N Grohens Y 2006Polymer2006,47,13:1
12Effect of Substitution of Cement by Mineral Powders on the Physico-mechanical Properties and Microstructure of Sand Concretes显示文摘The approach that contributes to the development of eco-materials in construction is the use of mineral powders,which can improve mechani­cal properties and reduce cement consumption.This article aims to study the effect of substitution by mass of cement with mineral powders on the physicomechanical properties and microstructure of sand concretes.The used mineral powders are A:the limestone,B:the natural pozzolan,C:the hydraulic lime,D:(1/3 limestone+1/3 natural pozzolan+1/3 hydraulic lime),and E:(1/2 natural pozzolan+1/2 hydraulic lime).The studied percentages are 5%,10%and 15%,in both separated and combined states.The studied properties are workability,compressive strength,the elastic­ity modulus in compression,shrinkage and microstructure analysis.The objective is to target the optimal percentage of the substitution of cement with mineral powders,which ensures the best compromise between the main properties of the studied sand concretes.The obtained results show that the optimal percentage is in favor of the substitution of cement by 10%D(1/3 limestone,1/3 natural pozzolan and 1/3 hydraulic lime).Even the 15%of mineral powder D,presented similar performances compared to the sand concrete(without mineral powders).Finally,in the context of the development of eco-materials,it should be noted that the 10%D and 15%D(1/3 limestone,1/3 natural pozzolan and 1/3 hydraulic lime)contribute to decrease the use of cement and consequently to reduce of CO2 emissions.Belkacem Belhadj Justin Houessou Nicolas Montrelay Michèle Quéneudec 2022Journal of Architectural Environment & Structural Engineering Research2022,5,4:0
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