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1.
新型珊瑚海水混凝土力学性能试验研究   总被引:2,自引:1,他引:1  
为了解决全珊瑚海水混凝土(coral aggregate seawater concrete,简称CASC)的脆性问题,采用碱式硫酸镁水泥(basic magnesium sulfate cement,简称BMSC)为胶凝材料和剑麻纤维为增韧材料制备了一种新型全珊瑚海水混凝土(NCASC),系统测定了基本力学性能,并与普通硅酸盐水泥制备的CASC、碱式硫酸镁水泥砂石混凝土(basic magnesium sulfate cement concrete,简称BMSCC)、普通砂石混凝土(ordinary portland cement concrete,简称OPC)以及普通轻骨料混凝土(lightweight aggregate concrete,简称LAC)的力学性能进行对比。结果表明:立方体抗压强度(f_(cu),m)在15~35 MPa范围内的NCASC的轴心抗压强度(f_c,m)、劈裂抗拉强度(f_(sp),m)与f_(cu),m之间具有较显著的线性关系;对于f_(cu),m为15~35 MPa的混凝土,相同强度NCASC的f_c,m高于OPC、LAC及BMSCC,其f_c,m与f_(cu),m比值最大,大致在0.85~0.96之间,NCASC的f_(sp),m比OPC和LAC高,但比BMSCC低,且随着强度的提高,OPC与NCASC的f_(sp),m间的差距在增大,而LAC和BMSCC与NCASC的f_(sp),m间的差距在缩小;在强度等级C15~C55的范围中,NCASC和CASC的f_(sp),m、f_c,m与f_(cu),m之间的关系基本可以采用相同的线性回归方程来描述,利用这两个回归线性方程得到对应于标准强度等级的CASC和NCASC的f_(sp),m和f_c,m数据,为CASC力学性能研究与结构设计提供参考依据。  相似文献   

2.
标准养护和夏季自然养护的内养护混凝土在盐渍土环境中腐蚀不同龄期,测试其抗压强度及氯离子渗透性能。结果表明:无论标准养护还是自然养护,高吸水树脂的掺加均降低了混凝土早期强度,但当高吸水树脂掺量为1kg/m3时可提高混凝土后期强度,且提升幅度对低水胶比混凝土更明显。在盐渍土腐蚀环境中,普通混凝土强度先上升后下降,而内养护混凝土强度先下降后上升。高吸水树脂能够延缓混凝土抗压强度下降的速率,提升混凝土抗氯离子渗透能力。  相似文献   

3.
珊瑚混凝土在海洋环境中氯离子扩散实验   总被引:1,自引:1,他引:0  
采用自然扩散法研究了珊瑚混凝土在海水环境中的氯离子扩散特性,探讨了养护龄期、暴露时间和环境差异性对珊瑚混凝土表观氯离子扩散系数的影响。结果表明:随着暴露时间的延长,珊瑚混凝土的表观氯离子扩散系数呈幂指数衰减规律;且延长养护龄期可降低珊瑚混凝土的表观氯离子扩散系数;随着强度等级增加,混凝土的表观氯离子扩散系数降低。我国实际海洋工程中珊瑚混凝土结构的表观氯离子扩散系数比实验室条件要提高3个数量级。因此,适当延长养护时间、提高强度等级有助于延长珊瑚混凝土结构在海洋环境的服役寿命。  相似文献   

4.
探究牡蛎壳粉可替代混凝土中河砂的可行性及其最佳掺量,将牡蛎壳加工成粒径为1~2 mm的牡蛎壳粉后,按不同梯度替代C45混凝土配合比中的河砂,并与普通混凝土试块进行比较,在实验室条件下进行了力学性能实验和溶出物实验,测试其抗压强度、抗渗性能、pH、营养盐。研究表明:(1)牡蛎壳粉可用作混凝土人工鱼礁材料,在抗压强度、抗渗性能不发生显著变化(P0.05)的前提下,牡蛎壳粉最多可替代40%的河砂;(2)牡蛎壳粉部分替代混凝土中河砂后,溶出物的pH显著(P0.05)优于普通混凝土试块中溶出物的pH,并且牡蛎壳粉替代30%的河砂时,其溶出物效果是最优的;(3)牡蛎壳粉礁块组在人工海水中会比普通混凝土礁块组更快地溶出藻类生长所需要的硅酸盐,同时溶出无机氮、磷酸盐的量比普通混凝土组要低。  相似文献   

5.
在东南亚和我国西南地区由于缺乏合适的原材料,必须采用软弱骨料配制混凝土。以东南亚某工程现场的软弱砂岩为原材料,开展碾压混凝土配制和性能试验工作,探讨了该骨料配制碾压混凝土的可行性。采用软化系数为0.71的软弱砂岩,配制强度等级分别为C18020的二级配碾压混凝土和C1807.5的三级配碾压混凝土。结果表明,采用该砂岩骨料可以配制出满足强度要求的碾压混凝土,其用水量比常规骨料高15~20 kg/m3,拌和物密度和抗压弹模较低。其中,二级配碾压混凝土采用50%粉煤灰掺量、0.55水胶比;三级配碾压混凝土采用60%粉煤灰掺量、0.65水胶比。骨料抗碾压破碎模拟试验表明该骨料在碾压过程中破坏程度很低,说明采用该软弱骨料配制碾压混凝土具有可行性。  相似文献   

6.
分析了青岛地铁3号线所在地域的环境作用,并对地铁二次衬砌混凝土的耐久性进行研究。结果表明,青岛地铁要达到100 a设计使用年限,其内陆区域段混凝土强度等级应取C45,水胶比≤0.40;近海区域段混凝土强度等级应取C50,水胶比≤0.36,并分别确定围岩侧与行车侧的混凝土钢筋保护层厚度。  相似文献   

7.
采用超声波细胞破碎和索氏回流相结合的方法对马尾藻(Sargassum sp.)总脂质进行了提取,对提取过程中的超声波细胞破碎功率和时间、料液比、溶剂等关键因素进行了优化;对总脂质中的多不饱和脂肪酸进行了分离,并分析了马尾藻脂肪酸组成成分和含量。结果显示,总脂质的最佳提取条件为超声破碎功率80 W、破碎时间20 min、料液比(m/m)1:8、石油醚(60~90℃)为溶剂、85℃水浴回流8 h;总脂质最高提取率为1.77%,其中总脂肪酸平均含量为30.84%;总脂肪酸中共含有11种成分,多不饱和脂肪酸含量约占13.21%~14.60%;薄层色谱分离出2种多不饱和脂肪酸C18:2ω6和C20:4ω6。  相似文献   

8.
在实际工程检测数据的基础上,利用M on te C arlo试验对单一构件混凝土强度推定值的保证率问题进行了分析。30片梁板实测数据分析结果表明:将构件各测区混凝土强度换算值的最小值作为该构件的混凝土强度推定值的保证率范围为79.0%~94.2%,小于《超声回弹综合法检测混凝土强度技术规程》(CECS 02:88)规定的95%保证率要求,因此,对结构性能鉴定而言该混凝土强度推定值是偏于不安全的,应引起试验检测人员的充分重视。  相似文献   

9.
文章以非虫黄藻共生型珊瑚Cladopsammia sp.为研究对象, 将对照组的海水设置为26℃恒温, 试验组从26℃升温至33℃, 以此探究海水升温对Cladopsammia sp.代谢和钙化生理的影响。结果显示: 在高温胁迫下, 虽然Cladopsammia sp.钙化相关酶(Ca2+-ATP酶和Mg2+-ATP酶)的活性出现了负响应, 但是珊瑚的呼吸速率、生长速率、组织中总蛋白和粗脂肪都没有显著改变(p>0.05)。比较历史文献结果和本研究结果表明: Cladopsammia sp.可能由于体内没有虫黄藻共生, 表现出了比大部分虫黄藻共生珊瑚更高的温度耐受能力。  相似文献   

10.
本文以徐闻4种角孔珊瑚为研究对象,研究了其ITS基因各区段的长度,碱基组成及(G+C)含量,计算了4种角孔珊瑚间的遗传距离并构建了其系统发育树.结果显示,4种角孔珊瑚的ITS基因长度在592~599bp之间,4种角孔珊瑚ITS区的(G+C)平均含量在48.5%,二异角孔珊瑚的ITS基因各个区段的(G+C)的含量与其他3...  相似文献   

11.
This article studies the strength properties of compacted sand-bentonite landfill barrier material with and without cement addition at different periods of aging. Test results indicated that strength values, both in compression and tension, increased up to threefold in cement added samples, as well as enhancing the ductile behavior. Cubic modulus, described as the slope of the elastic portion of the cubic compressive stress versus strain curves, is determined along with initial and flexural moduli, and all the strength and moduli values were correlated with each other. Finally, it is concluded that there is a marked improvement in strength properties and moduli with cement inclusion and that the effect of aging has been very effective.  相似文献   

12.
Dredged or excavated soft marine clay can be improved by mixing it with cement or lime. However, these treatments are usually expensive. It is shown in this paper that soft marine clay can be strengthened through a bioencapsulation method in which the shear strength of clay aggregates can be substantially increased after the aggregates are treated with urease-producing bacteria, calcium chloride, and urea. We found that the bioencapsulation had increased the unconfined compressive strength of marine clay aggregates with a size of 5 mm from almost zero to more than 2 MPa. The strength of the bioencapsulated clay aggregates decreases with the increase in the size of the aggregate when the size is greater than 5 mm.  相似文献   

13.
A series of tests in both laboratory and field were performed to investigate the engineering and mechanical properties, especially flexural strength, of cement-stabilized soils. The strength of cement-stabilized soils mainly depends on water-to-cement ratio and curing temperature. The higher curing temperature and the longer curing time, the higher strength in cement-stabilized soils generates. The high ratio of water-to-cement results in lower strength. The compressive strength observed in the field is similar to the strength in the laboratory. Field tests on a cement-stabilized soil layer indicate that the strength is significantly affected by the thickness of the improved layer, which is directly related to the moment of inertia. In addition, the failure shape observed in a cement-stabilized layer in the field looks likes a bending failure type, because the flexural tensile strength, rather than the compressive strength, mainly dominates the failure of cement-stabilized layer. The flexural tensile strength is closely related to the moment of inertia. Therefore, the flexural tensile strength should be considered for determining the thickness and strength in improvement of soft clay.  相似文献   

14.
ABSTRACT

A series of tests in both laboratory and field were performed to investigate the engineering and mechanical properties, especially flexural strength, of cement-stabilized soils. The strength of cement-stabilized soils mainly depends on water-to-cement ratio and curing temperature. The higher curing temperature and the longer curing time, the higher strength in cement-stabilized soils generates. The high ratio of water-to-cement results in lower strength. The compressive strength observed in the field is similar to the strength in the laboratory. Field tests on a cement-stabilized soil layer indicate that the strength is significantly affected by the thickness of the improved layer, which is directly related to the moment of inertia. In addition, the failure shape observed in a cement-stabilized layer in the field looks likes a bending failure type, because the flexural tensile strength, rather than the compressive strength, mainly dominates the failure of cement-stabilized layer. The flexural tensile strength is closely related to the moment of inertia. Therefore, the flexural tensile strength should be considered for determining the thickness and strength in improvement of soft clay.  相似文献   

15.
For the purpose of efficient utilization of sediments dredged from harbor, a new method was proposed in this study. Marine silt bricks were made by mixing sediments with cement and gypsum, placing it in a cubic mold with 240 mm in length, 115 mm in width, and 53 mm in height, and curing for certain days. To investigate the effects of cement and initial water content of soil on the mechanical behavior of marine silt bricks, unconfined compressive and flexural strength tests were carried out. Given the same curing time and cement content, the higher the initial water content, the lower the compressive and flexural strength. After 60 days of curing, the compressive strength of marine silt bricks with cement content = 20% and water content = LL (liquid limit) reached approximately 5 MPa. The flexural strength was relatively low. The flexural strength of marine silt bricks with 20% cement and water content = LL was around 1.5 MPa. The compressive and flexural strength decreased with the increase of water/cement ratio. As for the curing time, longer curing time had a positive impact on the compressive strength. The ratio of flexural to compressive strength varied slightly in the range of 0.4–0.5.  相似文献   

16.
本文利用辽东湾东岸鲅鱼圈、营口和长兴岛三地实测海冰抗压强度资料,分析了海冰破坏应力与破坏时间的关系,应变率和冰温对海冰抗压强度的影响,以及海冰生成环境对海冰抗压强度的影响。综合分析表明,三地破坏应力随破坏时间变化的整体趋势一致,应变率对三地海冰抗压强度有显著的影响,三地海冰抗压强度随温度降低总体有增大的趋势,冰龄、盐度、含沙量的差异是造成辽东湾东岸海冰抗压强度不同的主要原因。  相似文献   

17.
Compacted sand–bentonite mixtures have been used as a good alternative hydraulic barrier material to compacted clays. This study presents the results of a laboratory investigation on the strength characteristics of cement-stabilized sand–bentonite (CSB) mixtures and the effects of adding small amounts of fibers and metakaolin to the mixture material for strength improvement. The strength characteristics of the mixture materials were examined using unconfined compressive strength (UCS) tests and splitting tensile strength (STS) tests, with emphasis on evaluating the effects of different proportions of bentonite, fibers, and metakaolin within the CSB mixtures with a constant value of cement content. The test results indicated that the maximum improvements in UCS and STS were all attained in the CSB mixture with 10% bentonite content, and the inclusion of fibers and metakaolin of 1% each within the same CSB mixture led to an increase in UCS of about 40 and 70%, respectively. The addition of fibers also increased the ductility of the mixture material and was more effective for the improvement of tensile strength compared to that of metakaolin. The contribution of metakaolin to early-age strength (i.e., 3 and 7 days) of CSB mixture was found to be small due to the relatively low cement content in the mixture.  相似文献   

18.
19.
介绍了海冰观测中冰样压缩机的重要作用;阐述了冰压机各组成部分的设计原理和操作步骤;列出了表征海冰单轴抗压强度性能的部分参数和计算方法;对整机标定的方法提出了设计方案。  相似文献   

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