首页> 外文学位 >Manupulation of microstructure, phase evolution and mechanical properties by devitrification of andesite for use as proppant.
【24h】

Manupulation of microstructure, phase evolution and mechanical properties by devitrification of andesite for use as proppant.

机译:通过对安山岩进行失透处理来控制微结构,相变和机械性能,以用作支撑剂。

获取原文
获取原文并翻译 | 示例

摘要

Small, roughly spherical ceramic particles, approximately 1mm in size are used for a number of applications including casting sands, catalysts, and cement fillers. The oil and natural gas industry utilizes such materials in tonnage quantities yearly as extraction aids. Particles intended for this application are referred to as proppants. Proppants are composed of materials that differ by density, strength and cost, and are selected on a site by site basis. Recently, competing usage and depletion of reserves of one of the most popular category of proppant materials, sintered aluminosilicates (e.g. kaolinite, bauxite) have driven the need for alternative raw materials for proppant manufacturing. Andesite, a by-product of mining operations in the south-west United States was identified as an abundant, readily available, and low cost alternative proppant material that can be fused and net-shaped into a glass which when crystallized results in microstructures which may offer substantial toughening and fracture characteristics which may serve to their advantage for use as proppants that do not decrease the permeability ("blind") the particle bed. This study addressed the devitrification behavior and its role on the mechanical properties of andesite-based glass-ceramic spheres for use as proppants. Timetemperature- transformation studies were performed to evaluate the devitrification behavior of andesite glass. Crystalline phase evolution and microstructural development were evaluated using quantitative x-ray diffraction, scanning electron microscopy, differential thermal analysis, and spectrophotometry. The andesite glass devitrification commenced with the precipitation of iron oxides (magnetite) which served as seeds for the epitaxial growth of dendritic pyroxenes. Mechanical properties, such as diametral compressive strength, fracture toughness, hardness, and fracture morphology were correlated with crystalline phase evolution. Selected heat treatments resulting in the desired combination of high strength, toughness, and coarse fragmentation of crystallized spheres were performed for subsequent evaluation of performance as a proppant using American Petroleum Institute test methodologies. For nominally 1mm diameter devitrified proppants, diametral compressive strengths of 150MPa were observed, while results of indentation fracture resistance measurements showed values of 1.5-2.0MPa˙;m. Combinations of these mechanical properties resulted in nearly 80% incidence of coarse fragmentation compared with 40% incidence in amorphous andesite proppants. Results corroborated the hypothesis that controlled devitrification resulted in substantial improvement in toughness and fracture morphology which in turn contributed to enhanced permeability of packed particle beds relative to state of the art glass proppants, and comparable to the present state of the art sintered bauxite- and kaolinite-based proppants.
机译:大约1毫米大小的近似球形的小陶瓷颗粒可用于多种应用,包括铸砂,催化剂和水泥填料。石油和天然气工业每年以吨位形式使用此类材料作为提取助剂。用于该应用的颗粒称为支撑剂。支撑剂由密度,强度和成本不同的材料组成,并根据站点进行选择。最近,竞争性使用和耗尽最流行的支撑剂材料类别之一的烧结铝硅酸盐(例如高岭石,铝土矿)已经推动了对用于支撑剂制造的替代原材料的需求。在美国西南部的采矿作业的副产品安山岩被认为是一种丰富,易于获得且低成本的替代支撑剂,可以将其熔合成网状并形成玻璃,当结晶时会形成微观结构,可能具有显着的增韧和断裂特性,可以用作不降低颗粒床渗透性(“盲”)支撑剂的优点。这项研究解决了失透行为及其对用作支撑剂的基于安山岩的玻璃陶瓷球体力学性能的作用。进行了时间温度转变研究以评估安山岩玻璃的失透行为。使用定量X射线衍射,扫描电子显微镜,差热分析和分光光度法评估了结晶相的演变和微观结构的发展。钙锰矿玻璃的失透始于铁氧化物(磁铁矿)的沉淀,而铁氧化物是树状辉石外延生长的种子。力学性能,例如直径抗压强度,断裂韧性,硬度和断裂形态与晶相演化有关。使用美国石油学会的测试方法,进行了选定的热处理,以实现高强度,韧性和结晶球的粗大碎裂的所需组合,以便随后评估其作为支撑剂的性能。对于名义上直径为1mm的失透支撑剂,观察到径向抗压强度为150MPa,而压痕抗断裂性测量的结果显示值为1.5-2.0MPa·m。这些机械性能的组合导致近80%的粗碎发生率,而无定形安山岩支撑剂的发生率为40%。结果证实了这样的假说,即控制失透导致韧性和断裂形态的实质性改善,从而相对于现有技术的玻璃支撑剂,这又提高了填充颗粒床的渗透性,与目前的烧结铝土矿和高岭石相当支撑剂。

著录项

  • 作者

    Koseski, Ryan P.;

  • 作者单位

    The Pennsylvania State University.;

  • 授予单位 The Pennsylvania State University.;
  • 学科 Materials science.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 256 p.
  • 总页数 256
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号