Bionic design and test of polycrystalline diamond compact bit for hard rock drilling in coal mine

For hard rock drilling in coal mine, the drilling efficiency and service life of polycrystalline diamond compact bit are very low. To overcome these shortcomings, the bionic technology is applied to the design and processing of polycrystalline diamond compact bit. The bit body and polycrystalline di...

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Bibliographic Details
Main Author: Chuanliu Wang
Format: Article
Language:English
Published: SAGE Publishing 2020-05-01
Series:Advances in Mechanical Engineering
Online Access:https://doi.org/10.1177/1687814020923180
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spelling doaj-85e2fb29093f4d378b6c0dd1272bee902020-11-25T03:54:36ZengSAGE PublishingAdvances in Mechanical Engineering1687-81402020-05-011210.1177/1687814020923180Bionic design and test of polycrystalline diamond compact bit for hard rock drilling in coal mineChuanliu WangFor hard rock drilling in coal mine, the drilling efficiency and service life of polycrystalline diamond compact bit are very low. To overcome these shortcomings, the bionic technology is applied to the design and processing of polycrystalline diamond compact bit. The bit body and polycrystalline diamond compact cutter are designed as bionic structures, and the test of the bionic polycrystalline diamond compact bit is carried out. Test results show that, when drilling in fine sandstone with hardness greater than 9, the performance of the bionic polycrystalline diamond compact bit is significantly improved. Comparing with the Φ113-mm concave polycrystalline diamond compact bit, the service life and drilling efficiency of the A-type bionic polycrystalline diamond compact bit increase by 54% and 230%, respectively, the service life and drilling efficiency of the B-type bionic polycrystalline diamond compact bit increase by 345% and 204%, respectively, which show that the bionic design of polycrystalline diamond compact bit can provide a new research idea for hard rock drilling in coal mine. Also the test results indicate that, when processing the bionic polycrystalline diamond compact cutter, the linear cutting process will cause thermal damage to the diamond layer of polycrystalline diamond compact cutter, while the cold grinding process shows higher comprehensive performance, therefore the one-time synthesis of bionic polycrystalline diamond compact cutter is the future research direction.https://doi.org/10.1177/1687814020923180
collection DOAJ
language English
format Article
sources DOAJ
author Chuanliu Wang
spellingShingle Chuanliu Wang
Bionic design and test of polycrystalline diamond compact bit for hard rock drilling in coal mine
Advances in Mechanical Engineering
author_facet Chuanliu Wang
author_sort Chuanliu Wang
title Bionic design and test of polycrystalline diamond compact bit for hard rock drilling in coal mine
title_short Bionic design and test of polycrystalline diamond compact bit for hard rock drilling in coal mine
title_full Bionic design and test of polycrystalline diamond compact bit for hard rock drilling in coal mine
title_fullStr Bionic design and test of polycrystalline diamond compact bit for hard rock drilling in coal mine
title_full_unstemmed Bionic design and test of polycrystalline diamond compact bit for hard rock drilling in coal mine
title_sort bionic design and test of polycrystalline diamond compact bit for hard rock drilling in coal mine
publisher SAGE Publishing
series Advances in Mechanical Engineering
issn 1687-8140
publishDate 2020-05-01
description For hard rock drilling in coal mine, the drilling efficiency and service life of polycrystalline diamond compact bit are very low. To overcome these shortcomings, the bionic technology is applied to the design and processing of polycrystalline diamond compact bit. The bit body and polycrystalline diamond compact cutter are designed as bionic structures, and the test of the bionic polycrystalline diamond compact bit is carried out. Test results show that, when drilling in fine sandstone with hardness greater than 9, the performance of the bionic polycrystalline diamond compact bit is significantly improved. Comparing with the Φ113-mm concave polycrystalline diamond compact bit, the service life and drilling efficiency of the A-type bionic polycrystalline diamond compact bit increase by 54% and 230%, respectively, the service life and drilling efficiency of the B-type bionic polycrystalline diamond compact bit increase by 345% and 204%, respectively, which show that the bionic design of polycrystalline diamond compact bit can provide a new research idea for hard rock drilling in coal mine. Also the test results indicate that, when processing the bionic polycrystalline diamond compact cutter, the linear cutting process will cause thermal damage to the diamond layer of polycrystalline diamond compact cutter, while the cold grinding process shows higher comprehensive performance, therefore the one-time synthesis of bionic polycrystalline diamond compact cutter is the future research direction.
url https://doi.org/10.1177/1687814020923180
work_keys_str_mv AT chuanliuwang bionicdesignandtestofpolycrystallinediamondcompactbitforhardrockdrillingincoalmine
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