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UPDATES - UNIFORM SOIL GROUPS, MAXIMUM DENSITY OF GRAVEL, PERCENT COMPACTION

机译:更新 - 均匀的土壤组,砾石最大密度,百分比压实

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A proposal to use uniform soil groups for ASTM, AWWA, and ASCE pipe installation standards, manuals, and documents was first presented at the ASCE Conference "Pipelines 2009." Since then two ASTM standards and an AWWA specification have been changed to incorporate the proposed soil groups. Currently, work is under way to use the uniform soil groups in three AWWA manuals and one additional ASTM standard. ASTM D 4253 has been the standard for determining the laboratory maximum density for cohesionless soils. The procedure used a vibratory table that involves an expensive and time consuming calibration process. There is now a new improved procedure, described in ASTM D7382, that replaces the vibratory table with a vibrating hammer. Also known as an impact drill, the tool creates a pulsing, hammering motion while the shaft rotates. The equipment is more durable than the vibrating table and provides more consistent results. The procedure uses a standard sand as a calibration procedure. Instead of the myriad phrases used for describing degree of compaction, the term "percent compaction" should be used as standard terminology. ASTM recommends using percent compaction followed by the standard used to determine the maximum density, e.g. "95% (D 698)." Relative density is the ASTM and soil mechanics term for evaluating the in place density of cohesionless soils. The procedure is entirely different from using a Proctor type test to judge compaction. Currently, the approach determines the minimum density of the soil as well as the maximum density and the in place density is compared to the two. Typically, 70% "relative density" is roughly equivalent to 95 percent Proctor. This provides a source of confusion for contractors who are not familiar with the term and assume the soil does not need much compaction. A dding to the confusion, some agencies use the term "relative compaction" instead of percent Proctor. The use of "percent compaction" for cohesionless soils using only the laboratory maximum density as the control value is useful for pipeline installation work. The same relationship as "percent Proctor" is used except a different laboratory test is used as the maximum value. A new ASTM Manual 70 "Quality Control of Soil Compaction Using ASTM Standards" is now available and presents useful information on the applicability of various ASTM standards for evaluating soil compaction.
机译:在ASCE会议“2009年流水线”中首先首先向ASTM,AWWA和ASCE管道安装标准,手册和文件使用均匀土壤组的提案。从那时起,已经改变了两个ASTM标准和AWWA规范以纳入所提出的土壤群体。目前,正在使用三个AWWA手册中的统一土壤组和一个额外的ASTM标准。 ASTM D 4253是确定粘性土壤的实验室最大密度的标准。该过程使用振动表,涉及昂贵且耗时的校准过程。现在有一种新的改进程序,在ASTM D7382中描述,其用振动锤取代振动台。又称冲击钻,工具在轴旋转时产生脉冲,锤击运动。该设备比振动表更耐用,并提供更一致的结果。该程序使用标准沙子作为校准程序。代替用于描述压缩程度的无数短语,术语“百分比压缩”应用作标准术语。 ASTM建议使用百分比压缩,然后是用于确定最大密度的标准,例如, “95%(D 698)。”相对密度是用于评估粘性土壤的适当密度的ASTM和土壤力学术语。该过程完全不同于使用Proctor类型测试来判断压缩。目前,该方法决定了土壤的最小密度以及最大密度,并将其置位与两者相比。通常,70%“相对密度”大致相当于95%的ProCTOR。这为不熟悉该术语的承包商提供了混淆的源泉,并且假设土壤不需要多大压实。一些代理商使用术语“相对压实”而不是Proctor百分比。使用仅使用实验室最大密度的粘性土壤“百分比压实”,因为控制值可用于管道安装工作。除了不同的实验室测试之外,使用与“百分比Proctor”相同的关系用作最大值。现在,新的ASTM手册70“使用ASTM标准的土壤压实质量控制”并提供有关各种ASTM标准的适用性评估土壤压实的有用信息。

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