广东工业大学学报 ›› 2021, Vol. 38 ›› Issue (04): 103-110.doi: 10.12052/gdutxb.200105
• • 上一篇
夏勇, 陈嘉健, 李子宏, 马岸民
Xia Yong, Chen Jia-jian, Li Zi-hong, Ma An-min
摘要: 掺入石材废渣粉可以改善纤维砂浆或纤维混凝土的力学性能, 但同时显著降低其新拌性能。为探索掺入石材废渣粉置换等体积标准砂的聚丙烯纤维砂浆新拌性能的控制因素, 测量了20组不同水灰比、不同石材废渣粉置换量下纤维砂浆的流速、扩展度、粘聚性、粘附性和填充密度, 计算出平均液层厚度和平均泥浆层厚度。结果显示平均液层厚度和平均泥浆层厚度与流速、扩展度、粘聚性、粘附性测量结果有良好的相关性。通过线性回归分析, 纤维砂浆流速和粘附性的控制因素是平均液层厚度, 而扩展度和粘聚性的控制因素是平均液层厚度和平均泥浆层厚度。
中图分类号:
[1] 中国砂石协会. 全国各地砂石价格和供需关系分析及对混凝土价格的影响[J]. 商品混凝土, 2018(7): 9-10. [2] 王刚. 工业设计视角下石材工业余料的升级利用探析[J]. 装饰, 2017(11): 130-131. WANG G. Exploration on upgrading of leftover material in stone industry from the industrial design perspective [J]. Art and Design, 2017(11): 130-131. [3] LI L G, WANG Y M, TAN Y P, et al. Adding granite dust as paste replacement to improve durability and dimensional stability of mortar [J]. Powder Technology, 2018, 333: 269-276. [4] 王宇谋. 花岗岩石粉对砂浆性能的影响研究[D]. 广州: 广东工业大学, 2018. [5] 鞠丽艳, 张雄. 废石粉在商品砂浆中的应用研究[J]. 新型建筑材料, 2002(12): 42-43. [6] 周鹏. 切割花岗岩石粉对干混砌筑砂浆性能的影响[J]. 福建建材, 2015(12): 13-14. [7] 杨舜龙, 张春成, 栾亚红, 等. 石粉对机制砂自密实砂浆性能的影响[J]. 商品混凝土, 2018(11): 41-44. YANG S L, ZHANG C C, LUAN Y H, et al. Effect of stone powder on the performance of manufactured-sand self-compacting mortar [J]. Ready-Mixed Concrete, 2018(11): 41-44. [8] 郭育霞, 贡金鑫, 李晶. 石粉掺量对混凝土力学性能及耐久性的影响[J]. 建筑材料学报, 2009, 12(3): 266-271. GUO Y X, GONG J X, LI J. Influence of mass fractions of limestone powder on mechanical property and durability of concrete [J]. Journal of Building Materials, 2009, 12(3): 266-271. [9] 霍曼琳, 王娅丽, 肖瑜, 等. 采石场废弃石粉对混凝土基本性能影响的试验研究[J]. 兰州交通大学学报, 2015, 34(4): 57-61. HUO M L, WANG Y L, XIAO Y, et al. A Study on the influencing of waste stone powder produced in quarries on concrete basic performance [J]. Journal of Lanzhou Jiaotong University, 2015, 34(4): 57-61. [10] SADEK D M, EL-ATTAR M M, ALI H A. Reusing of marble and granite powders in self-compacting concrete for sustainable development [J]. Journal of Cleaner Production, 2016, 121: 19-32. [11] 孙虎. 石材加工业废料在水泥混凝土工业中的应用研究[D]. 广州: 华南理工大学, 2010. [12] 陈家珑. 合理利用人工砂中的石粉[J]. 新型建筑材料, 2004(5): 48-50. [13] 任静. 石屑对混凝土性能影响的研究[D]. 哈尔滨: 哈尔滨工业大学, 2009. [14] 史才军, 王德辉, 贾煌飞, 等. 石灰石粉在水泥基材料中的作用及对其耐久性的影响[J]. 硅酸盐学报, 2017, 45(11): 1582-1593. SHI C J, WANG D H, JIA H F, et al. Role of limestone powder and its effect on durability of cement-based materials [J]. Journal of the Chinese Ceramic Society, 2017, 45(11): 1582-1593. [15] LI L G, ZHAO Z W, ZHU J, et al. Combined effects of water film thickness and polypropylene fibre length on fresh properties of mortar [J]. Construction and Building Materials, 2018, 174: 586-593. [16] LI L G, ZHAO Z W, ZHU J, et al. Roles of water film thickness and polypropylene fibre content in fresh properties of mortar [J]. Advances in Cement Research, 2017, 29(2): 71-80. [17] LI L G, CHU S H, ZENG K L, et al. Roles of water film thickness and fibre factor in workability of polypropylene fibre reinforced mortar [J]. Cement and Concrete Composites, 2018, 93: 196-204. [18] 刘华新, 杨剑伟, 王学志, 等. 纤维材料与再生混凝土组合应用研究进展[J]. 硅酸盐通报, 2017, 36(2): 507-514. LIU H X, YANG J W, WANG X Z, et al. Research progress on fiber materials and recycled concrete combination application [J]. Bulletin of The Chinese Ceramic Society, 2017, 36(2): 507-514. [19] 冯玲. 聚丙烯纤维再生混凝土的力学性能试验研究[D]. 西安: 西安建筑科技大学, 2012. [20] KWAN A K H, LI L G. Combined effects of water film thickness and paste film thickness on rheology of mortar [J]. Materials and Structures, 2012, 45(9): 1359-1374. [21] 温梦丹, 陈嘉健, 高御审, 等. 基于水膜厚度假设分析磨细高炉矿渣对水泥浆性能影响[J]. 广东工业大学学报, 2018, 35(4): 119-126. WEN M D, CHEN J J, GAO Y S, et al. Effect of ground granulated blast furnace slag on properties based on analysis of water film thickness hypothesis [J]. Journal of Guangdong University of Technology, 2018, 35(4): 119-126. [22] WONG H H C, KWAN A K H. Packing density of cementitious materials: part 1—measurement using a wet packing method [J]. Materials and Structures, 2008, 41(4): 689-701. [23] KWAN A K H, WONG H H C. Packing density of cementitious materials: part 2—packing and flow of OPC+PFA+CSF [J]. Materials and Structures, 2008, 41(4): 773-784. |
[1] | 温梦丹, 陈嘉健, 高御审, 马岸民. 基于水膜厚度假设分析磨细高炉矿渣对水泥浆性能影响[J]. 广东工业大学学报, 2018, 35(04): 119-126. |
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