人民黄河
人民黃河
인민황하
Yellow River
2014年
7期
121-123,127
,共4页
宓永宁%王振国%孙荣华%赵津霆%邵欣
宓永寧%王振國%孫榮華%趙津霆%邵訢
복영저%왕진국%손영화%조진정%소흔
特细砂砂浆%灰砂比%粉煤灰掺量%配合比设计
特細砂砂漿%灰砂比%粉煤灰摻量%配閤比設計
특세사사장%회사비%분매회참량%배합비설계
super fine sand mortar%cement-sand ratio%dosage of fly ash%mixture ratio design
采用特细砂作为细骨料配制水泥砌筑砂浆,探求其质量是否能满足工程建设要求。通过试验研究了灰砂比、水泥用量、用水量、砂子用量等因素对特细砂砂浆性能的影响,并对砌筑砂浆配合比进行了设计。结果表明:用特细砂配制的砂浆7、28 d 抗压强度比用中砂配制的砂浆的强度小。灰砂比为1:2.8和1:3.2时,P. S42.5水泥配制的砂浆的抗压强度大于P. S32.5水泥配制的砂浆。砂浆强度与灰砂比密切相关,灰砂比是衡量砂浆强度的一个计算变量。粉煤灰掺量在30%以内,砂浆的抗压强度都比不掺粉煤灰时有所增大,掺量为10%的砂浆抗压强度增长的速率最快,其抗压强度也最大。
採用特細砂作為細骨料配製水泥砌築砂漿,探求其質量是否能滿足工程建設要求。通過試驗研究瞭灰砂比、水泥用量、用水量、砂子用量等因素對特細砂砂漿性能的影響,併對砌築砂漿配閤比進行瞭設計。結果錶明:用特細砂配製的砂漿7、28 d 抗壓彊度比用中砂配製的砂漿的彊度小。灰砂比為1:2.8和1:3.2時,P. S42.5水泥配製的砂漿的抗壓彊度大于P. S32.5水泥配製的砂漿。砂漿彊度與灰砂比密切相關,灰砂比是衡量砂漿彊度的一箇計算變量。粉煤灰摻量在30%以內,砂漿的抗壓彊度都比不摻粉煤灰時有所增大,摻量為10%的砂漿抗壓彊度增長的速率最快,其抗壓彊度也最大。
채용특세사작위세골료배제수니체축사장,탐구기질량시부능만족공정건설요구。통과시험연구료회사비、수니용량、용수량、사자용량등인소대특세사사장성능적영향,병대체축사장배합비진행료설계。결과표명:용특세사배제적사장7、28 d 항압강도비용중사배제적사장적강도소。회사비위1:2.8화1:3.2시,P. S42.5수니배제적사장적항압강도대우P. S32.5수니배제적사장。사장강도여회사비밀절상관,회사비시형량사장강도적일개계산변량。분매회참량재30%이내,사장적항압강도도비불참분매회시유소증대,참량위10%적사장항압강도증장적속솔최쾌,기항압강도야최대。
It mixed cement masonry mortar by using super fine sand as fine aggregate and explored whether the quality could meet the requirement in project construction. It researched the influence of the cement-sand ratio,dosage of cement,water and sand to the performances of fine sand mortar through experiment and designed the masonry mortar mixture. The results show that 7 days and 28 days compressive strength of mortar pre-pared with special fine sand are smaller than prepared with medium sand. Cement-sand ratio of 1: 1. 28 and 1: 1. 32,compressive strength of mortar prepared with P. S42. 5 cement is greater than prepared with P. S32. 5 cement. Mortar strength is closely related to the cement-sand ratio,and the cement-sand ratio is one of its calculation variables. When the dosage of fly ash is within 30% ,the compressive strength of mortar is greater than that of without mixing fly ash. For The dosage of 10% mortar,its compressive strength growth rate is the biggest and it has the biggest compressive strength.