材料导报
材料導報
재료도보
MATERIALS REVIEW
2015年
16期
132-136,150
,共6页
肖晓春%丁鑫%潘一山%吴迪%赵鑫%王磊
肖曉春%丁鑫%潘一山%吳迪%趙鑫%王磊
초효춘%정흠%반일산%오적%조흠%왕뢰
超声激励%围压作用%煤岩破裂%断裂强度因子
超聲激勵%圍壓作用%煤巖破裂%斷裂彊度因子
초성격려%위압작용%매암파렬%단렬강도인자
ultrasound irradiation%confining pressure%coal failure%rupture strength factor
当超声波在煤岩固体材料中传播时,受其机械效应,煤岩基质固体颗粒间相互作用。从超声波的机械效应角度结合断裂力学,对围压影响的超声激励破岩机制进行探讨,利用 RFPA2D 岩石破裂过程分析系统对超声激励不同围压下煤岩致裂过程进行了数值试验验证。研究表明:围压降低了煤岩内部裂纹的断裂强度因子,改变裂纹尖端应力场;围压对煤岩破裂具有抑制作用,在相同功率超声作用下,围压越大,超声激励碎岩程度越低;数值实验表明,随着围压增加,超声致裂煤岩影响区域逐渐减小,煤岩破坏形式由低围压下的张拉和剪切破坏共同作用逐渐向高围压下单一剪切破坏过渡。相同有效声压作用下,煤岩破裂过程中主应力随煤岩围压升高而增大。
噹超聲波在煤巖固體材料中傳播時,受其機械效應,煤巖基質固體顆粒間相互作用。從超聲波的機械效應角度結閤斷裂力學,對圍壓影響的超聲激勵破巖機製進行探討,利用 RFPA2D 巖石破裂過程分析繫統對超聲激勵不同圍壓下煤巖緻裂過程進行瞭數值試驗驗證。研究錶明:圍壓降低瞭煤巖內部裂紋的斷裂彊度因子,改變裂紋尖耑應力場;圍壓對煤巖破裂具有抑製作用,在相同功率超聲作用下,圍壓越大,超聲激勵碎巖程度越低;數值實驗錶明,隨著圍壓增加,超聲緻裂煤巖影響區域逐漸減小,煤巖破壞形式由低圍壓下的張拉和剪切破壞共同作用逐漸嚮高圍壓下單一剪切破壞過渡。相同有效聲壓作用下,煤巖破裂過程中主應力隨煤巖圍壓升高而增大。
당초성파재매암고체재료중전파시,수기궤계효응,매암기질고체과립간상호작용。종초성파적궤계효응각도결합단렬역학,대위압영향적초성격려파암궤제진행탐토,이용 RFPA2D 암석파렬과정분석계통대초성격려불동위압하매암치렬과정진행료수치시험험증。연구표명:위압강저료매암내부렬문적단렬강도인자,개변렬문첨단응력장;위압대매암파렬구유억제작용,재상동공솔초성작용하,위압월대,초성격려쇄암정도월저;수치실험표명,수착위압증가,초성치렬매암영향구역축점감소,매암파배형식유저위압하적장랍화전절파배공동작용축점향고위압하단일전절파배과도。상동유효성압작용하,매암파렬과정중주응력수매암위압승고이증대。
When the ultrasound propagates in coal solid materials,affected by mechanical effects,coal matrix particles interact.In terms of the mechanical effect of ultrasound and fracture mechanics,the mechanism of breaking coal by ultrasonic stimulation of confining pressure is discussed,and the mechanism is verified by numerical experi-ment of the process of ultrasound irradiation coal cracking under different confining pressure by using RFPA2D.The result shows that the confining pressure reduces the fracture strength factor of internal cracks in coal,and changes the crack tip stress field.The confining pressure has an inhibitory effect on coal rock fracture.At the same ultrasound ir-radiation power input,the larger the confining pressure is,the lower fragmentation degrees is.The numerical experi-ment results show that,with the rise of the confining pressure,the ultrasound cracking affected area decreases gra-dually,and the failure form of the coal transitions from tensile and shear failure combined action under low confining pressure to single shear failure under high confining pressure.Under the same effective sound pressure,the principal stress increases with the rise of the confining pressure in the process of coal failure.