Other language title :
اراﺋﻪ ﯾﮏ روش ﺟﺪﯾﺪ آزﻣﺎﯾﺸﮕﺎﻫﯽ ﺑﺮاي اﻧﺪازه ﮔﯿﺮي ﭼﻘﺮﻣﮕﯽ ﺷﮑﺴﺖ دﯾﻨﺎﻣﯿﮑﯽ ﺳﻨﮓﻫﺎ ﺑﺎ اﺳﺘﻔﺎده از آزﻣﻮن ﺳﻘﻮط وزﻧه
Title of article :
Development of a New Experimental Technique for Dynamic Fracture Toughness Measurement of Rocks using dro‎p Weight Test
Author/Authors :
Khandouzi, G School of Mining Engineering - College of Engineering - University of Tehran - Tehran, Iran , Memarian, H School of Mining Engineering - College of Engineering - University of Tehran - Tehran, Iran , Khosravi, M.H School of Mining Engineering - College of Engineering - University of Tehran - Tehran, Iran
Pages :
12
From page :
909
To page :
920
Abstract :
The dynamic fracture characteristics of rock specimens play an important role in analyzing the fracture issues such as blasting, hydraulic fracturing, and design of supports. Several experimental methods have been developed for determining the dynamic fracture properties of the rock samples. However, many used setups have been manufactured for metal specimens, and are not suitable and efficient for rocks. In this work, a new technique is developed to measure the dynamic fracture toughness of rock samples and fracture energy by modifying the drop weight test machine. The idea of wave transmission bar from the Hopkinson pressure bar test is applied to drop weight test. The intact samples of limestone are tested using the modified machine, and the results obtained are analyzed. The results indicate that the dynamic fracture toughness and dynamic fracture energy have a direct linear relationship with the loading rate. The dynamic fracture toughness and dynamic fracture energy of limestone core specimens under the loading rates of 0.12- 0.56kN/μS are measured between 9.6-18.51MPa√m and 1249.73-4646.08J/m2, respectively. In order to verify the experimental results, a series of numerical simulation are conducted in the ABAQUS software. Comparison of the results show a good agreement where the difference between the numerical and experimental outputs is less than 4%. It can be concluded that the new technique on modifying the drop weight test can be applicable for measurement of the dynamic behavior of rock samples. However, more tests on different rock types are recommended for confirmation of the application of the developed technique for a wider range of rocks.
Farsi abstract :
ﺧﺼﻮﺻﯿﺎت ﺷﮑﺴﺖ دﯾﻨﺎﻣﯿﮑﯽ ﻧﻤﻮﻧﻪ ﻫﺎي ﺳﻨﮕﯽ ﻧﻘﺶ ﻣﻬﻤﯽ در ﺗﺤﻠﯿﻞ ﻣﻮﺿﻮﻋﺎت ﺷﮑﺴﺖ از ﻗﺒﯿﻞ اﻧﻔﺠﺎر، ﺷﮑﺴﺖ ﻫﯿﺪروﻟﯿﮑﯽ و ﻃﺮاﺣﯽ ﻧﮕﻬﺪارﻧﺪه ﻫﺎ اﯾﻔﺎ ﻣﯽﮐﻨﺪ. ﭼﻨﺪﯾﻦ روش آزﻣﺎﯾﺸﮕﺎﻫﯽ ﺑﺮاي اﻧﺪازه ﮔﯿﺮي ﺧﺼﻮﺻﯿﺎت ﺷﮑﺴﺖ دﯾﻨﺎﻣﯿﮑﯽ ﻧﻤﻮﻧﻪ ﻫﺎي ﺳﻨﮕﯽ ﺗﻮﺳﻌﻪ ﯾﺎﻓﺘﻪ اﺳﺖ. ﺑﺎ اﯾﻦ وﺟﻮد، ﺑﺴﯿﺎري از دﺳﺘﮕﺎهﻫﺎي آزﻣﺎﯾﺸﮕﺎﻫﯽ ﺑﺮاي ﻧﻤﻮﻧﻪﻫﺎي ﻓﻠﺰي ﺳﺎﺧﺘﻪ ﺷﺪه و ﺑﺮاي ﻧﻤﻮﻧﻪﻫﺎي ﺳﻨﮕﯽ ﻣﻨﺎﺳﺐ و ﮐﺎرآﻣﺪ ﻧﯿﺴﺖ. در اﯾﻦ ﻣﻘﺎﻟﻪ، روش ﺟﺪﯾﺪي ﺑﺮاي اﻧﺪازه ﮔﯿﺮي ﭼﻘﺮﻣﮕﯽ ﺷﮑﺴﺖ دﯾﻨﺎﻣﯿﮑﯽ و اﻧﺮژي ﺷﮑﺴﺖ ﻧﻤﻮﻧﻪ ﺳﻨﮕﯽ ﺑﺎ آزﻣﻮن ﺳﻘﻮط وزﻧﻪ اﺻﻼح ﺷﺪه ﺗﻮﺳﻌﻪ ﯾﺎﻓﺘﻪ اﺳﺖ. اﯾﺪه ﻣﯿﻠﻪ اﻧﺘﻘﺎل دﻫﻨﺪه ﻣﻮج از آزﻣﻮن ﻫﺎﭘﮑﯿﻨﺴﻮن ﮔﺮﻓﺘﻪ ﺷﺪه و در اﺻﻼح آزﻣﻮن ﺳﻘﻮط وزﻧﻪ ﺑﮑﺎر ﺑﺮده ﺷﺪه اﺳﺖ. ﯾﮏ ﻧﻤﻮﻧﻪ ﺳﻨﮓ آﻫﮏ ﺑﺎ دﺳﺘﮕﺎه اﺻﻼح ﺷﺪه ﺳﻘﻮط وزﻧﻪ ﺗﺴﺖ ﺷﺪه و ﻧﺘﺎﯾﺞ ﺑﺪﺳﺖ آﻣﺪه ﺗﺤﻠﯿﻞ ﺷﺪه اﺳﺖ. ﻧﺘﺎﯾﺞ ﻧﺸﺎن داد ﮐﻪ ﭼﻘﺮﻣﮕﯽ ﺷﮑﺴﺖ دﯾﻨﺎﻣﯿﮑﯽ و اﻧﺮژي ﺷﮑﺴﺖ دﯾﻨﺎﻣﯿﮑﯽ ﺑﺎ ﻧﺮخ ﺑﺎرﮔﺰاري ﯾﮏ راﺑﻄﻪ ﺧﻄﯽ دارﻧﺪ. ﭼﻘﺮﻣﮕﯽ ﺷﮑﺴﺖ دﯾﻨﺎﻣﯿﮑﯽ و اﻧﺮژي ﺷﮑﺴﺖ دﯾﻨﺎﻣﯿﮑﯽ ﻧﻤﻮﻧﻪ ﺳﻨﮓ آﻫﮏ در ﻧﺮخﻫﺎي ﺑﺎرﮔﺰاري 0/12 ﺗﺎ 0/56 ﮐﯿﻠﻮﻧﯿﻮﺗﻦ ﺑﺮ ﻣﯿﮑﺮوﺛﺎﻧﯿﻪ ﺑﻪ ﺗﺮﺗﯿﺐ ﺑﯿﻦ ﻣﻘﺎدﯾﺮ 9/6 ﺗﺎ 18/51 ﻣﮕﺎﭘﺎﺳـــﮑﺎل در رادﯾﮑﺎل ﻣﺘﺮ و 1249/73 ﺗﺎ 4646/08 ژول ﺑﺮ ﻣﺘﺮﻣﺮﺑﻊ اﻧﺪازه ﮔﯿﺮي ﺷﺪه اﺳﺖ. ﻧﻬﺎﯾﺘﺎ ﺟﻬﺖ اﻋﺘﺒﺎرﺳﻨﺠﯽ ﻧﺘﺎﯾﺞ دﺳﺘﮕﺎه اﺻﻼح ﺷﺪه ﺳﻘﻮط وزﻧﻪ، ﯾﮏ ﺳﺮي ﺷﺒﯿﻪ ﺳﺎزي ﻋﺪدي در ﻣﺤﯿﻂ ﻧﺮم اﻓﺰار آﺑﺎﮐﻮس اﻧﺠﺎم ﺷﺪه اﺳﺖ. ﻣﻘﺎﯾﺴﻪ ﻧﺘﺎﯾﺞ اﻧﻄﺒﺎق ﺧﻮﺑﯽ را ﺑﯿﻦ ﻣﻘﺎدﯾﺮ ﺑﺪﺳﺖ آﻣﺪه آزﻣﺎﯾﺸﮕﺎﻫﯽ و ﻣﺪﻟﺴﺎزي ﻋﺪدي ﻧﺸﺎن ﻣﯽدﻫﺪ، ﺑﻄﻮرﯾﮑﻪ اﺧﺘﻼف ﺑﯿﻦ ﻧﺘﺎﯾﺞ آزﻣﺎﯾﺸﮕﺎﻫﯽ و ﻋﺪدي ﮐﻤﺘﺮ از 4 در ﺻﺪ ا ﺳﺖ. ﺑﻨﺎﺑﺮاﯾﻦ ﻣﯽﺗﻮان ﻧﺘﯿﺠﻪ ﮔﯿﺮي ﮐﺮد ﮐﻪ ﺗﮑﻨﯿﮏ ﺟﺪﯾﺪ در ا ﺻﻼح آزﻣﻮن ﺳﻘﻮط وزﻧﻪ ﻣﯽﺗﻮاﻧﺪ در اﻧﺪازه ﮔﯿﺮي ﺑﻬﺘﺮ رﻓﺘﺎر دﯾﻨﺎﻣﯿﮑﯽ ﻧﻤﻮﻧﻪﻫﺎي ﺳﻨﮕﯽ در آزﻣﺎﯾ ﺸﮕﺎه ﮐﺎرﺑﺮدي ﺑﺎ ﺷﺪ. ﺑﺎ اﯾﻦ وﺟﻮد، ﺟﻬﺖ ﺗﺎﺋﯿﺪ ﮐﺎراﯾﯽ ﺗﮑﻨﯿﮏ ﺗﻮ ﺳﻌﻪ ﯾﺎﻓﺘﻪ در داﻣﻨﻪ و ﺳﯿﻊﺗﺮي از ﺳﻨﮓﻫﺎ، ﻧﯿﺎز ﺑﻪ اﻧﺠﺎم آزﻣﻮن ﻫﺎي ﺑﯿ ﺸﺘﺮ ﺑﺮ روي ﻧﻤﻮﻧﻪ ﻫﺎي ﻣﺘﻨﻮع ﺳﻨﮓ ﺧﻮاﻫﺪ ﺑﻮد
Keywords :
Limestone , Numerical simulation , dro‎p weight , Dynamic fracture toughness
Journal title :
Journal of Mining and Environment
Serial Year :
2020
Record number :
2529814
Link To Document :
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