外文翻译-花岗岩的一些强度特性对颚式破碎机性能的影响.doc
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1、Influence of some rock strength properties onjaw crusher performance in granite quarryAbstract: The influence of rock strength properties on Jaw Crusher performance was carried out to determine the effect of rock strength on crushing time and grain size distribution of the rocks. Investigation was c
2、onducted on four different rock samplesnamely marble, dolomite, limestone and granite which were representatively selected from fragmented lumps in quarries. Unconfined compressive strength and Point load tests were carried out on each rock sample as well as crushing time and size analysis. The resu
3、lts of the strength parameters of each sample were correlated with the crushing time and the grain size distribution of the rock types. The results of the strength tests show that granite has the highest mean value of 101.67 MPa for Unconfined Compressive Strength (UCS) test, 6.43 MPa for Point Load
4、 test while dolomite has the least mean value of 30.56 MPa for UCS test and 0.95 MPa for Point Load test. According to the International Society for Rock Mechanic (ISRM) standard, the granite rock sample may be classified as having very high strength and dolomite rock sample, low strength. Also, the
5、 granite rock has the highest crushing time (21.0 s) and dolomite rock has the least value (5.0 s). Based on the results of the investigation, it was found out that there is a great influence of strength properties on crushing time of rock types.Keywords: rock strength; jaw crusher; crushing time; g
6、rain size distribution; efficiency1 IntroductionThe strength of a material refers to the materials ability to resist an applied force. Strength property of rock is the ability of the rock material to resist failure when load is applied without yielding or fracture. The mechanical properties of rock
7、depend upon the interaction between the crystals, particles and cementation material of which it is composed. The yield strength of a material is an adequate indicator of the materials mechanical strength and is the parameter that predicts plastic deformation in the material, from which one can make
8、 informed decisions on how to increase the strength of a material depending on its micro-struc- tural properties and the desired end effect.Strength is considered in terms of compressive strength, tensile strength, and shear strength, namely the limit states of compressive stress, tensile stress and
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