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15篇 您的检索式:作者名="Rossignolo"
    题名 作者 年代 出处 被引量
1Effect of[beta]-naphthoflavone oAhR-regulatedgenes (CYP1A1,1A2,1B1,2S1,Nrf2,and GST) and antioxidant enzymes in various brain regions of pig显示文摘Nannelli A Rossignolo F Tolando R 0,,03:1
2Durability of Polymer-Modified Lightweight Aggregate Concrete显示文摘 Marcos V C 2004Cement and Concrete Composites2004,26,5:1
3Mechanical properties of polymer-modified lightweight aggregate concrete 显示文摘Rossignolo J A 2002Cement and Concrete Composition2002,32,:1
4Interracial interactions in concretes with silica fume and SBR latex 显示文摘Rossignolo J A 2009Construction and Building Materials2009,23,2:1
5Properties of high - performance LWAC for precast structures with Brazilian light- weight aggregates 显示文摘Rossignolo J A Agnesini M V C Morais J A 2003Cement and Concrete Composites2003,25,1:1
6Mechanical properties of polymermodified lightweight aggregate concrete显示文摘Rossignolo J A 2002Cement and Concrete Research2002,32,:1
7!nterfacial Interactions in Concretes with Silica Fume and SBR Latex 显示文摘Joo Adriano Rossignolo 2009Construction and Building Materials2009,,23:1
8Mechanical properties of polymer-modified lightweight aggregate concrete显示文摘AGNESINI M V C ROSSIGNOLO J A 2002Cement and Con- crete Research2002,32,3:1
9Durability of polymer-mod- ified lightweight aggregate concrete显示文摘AGNESINI M V C ROSSIGNOLO J A 2004Cement and Concrete Com- posites2004,26,4:1
10Interfacial interactions in concretes withsilica fume and SBR latex 显示文摘Rossignolo J A 2009Construction andBuilding Materials2009,23,2:1
11Mechanical properties of polymer modified lightweight aggregate concrete显示文摘Rossignolo J A 2002Cement and Concrete Research2002,32,:1
12Mechanical properties of polymer-modified lightweight aggregate concrete显示文摘ROSSIGNOLO J A AGNESINI M V C 2002Cement and Concrete Research2002,32,3:1
13Durability of polymer-modified lightweight aggregate concrete显示文摘ROSSIGNOLO J A AGNESINI M 2004Cement andConcrete Composites2004,26,4:1
14Mechanical properties of polymer-modified lightweight aggregate concrete显示文摘Rossignolo J A 2002Cement and Concrete Composition2002,32,:1
15Incorporation of SCBA in Red Ceramics and Sintering in Microwave Oven显示文摘The present study investigated the incorporation of sugarcane bagasse ash(SCBA)in red ceramics,sintered in conventional oven and microwave oven,aiming to provide an alternative product,and a sintering process with higher energy efficiency in the production of red ceramics.The raw materials were characterized by XRF,XRD,thermogravimetry,particle size distribution and specific mass analyses.The specimens were shaped by extrusion in two different compositions,red clay and red clay with addition of 20%SCBA and sintered at temperatures from 700 to 1100℃.The conventional sintering occurred for 60 min with heating rate of 10℃/min.In the microwave oven the sintering occurred in a hybrid way,with heating rate of 50℃/min for 5,10 and 15 mins.After sintering the tests of linear shrinkage,compressive strength,water absorption,apparent porosity and apparent specific mass were performed.The addition of SCBA causes an increase in the values of water absorption and decreases the compressive strength and specific mass of the red ceramic.This occurs due to the creation of pores inside the material from the volatilization of organic matter present in the ashes.The sintering in microwave oven,when compared to conventional sintering,promotes an increase in the values of compressive strength and specific mass and reduction of water absorption values of ceramics,probably due to the refinement of the microstructure and the higher densification.Thus the incorporation of ashes can be partially compensated by a more efficient sintering.The use of SCBA and the sintering in microwave oven,showed to be viable alternatives in the development of a more sustainable and light material,promoting the management of waste,reduction in the consumption of raw materials and energy saving.Gabriela Pitolli Lyra Valdemir Santos Eliria Maria de Jesus Agnolon Pallone Ruth Herta Goldschmidt Aliaga Kiminami Bruno Carlos De Santis João Adriano Rossignolo 2021Non-Metallic Material Science2021,3,2:0
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