Fragmentation characteristics of abrasive particles for hard rock drilling with waterjet energy parameter

The use of abrasive waterjets (AWJs) for rock drilling offers advantages in urbanized areas, locations that are vulnerable to damage, and piling operations. However, the overall operational cost of AWJ systems remains high compared to that of conventional drilling methods, which constrains the long-...

全面介紹

書目詳細資料
發表在:Journal of Rock Mechanics and Geotechnical Engineering
Main Authors: Hyun-Jong Cha, Jun-Sik Park, Tae-Min Oh
格式: Article
語言:英语
出版: Elsevier 2025-05-01
主題:
在線閱讀:http://www.sciencedirect.com/science/article/pii/S1674775524004773
_version_ 1849317820538552320
author Hyun-Jong Cha
Jun-Sik Park
Tae-Min Oh
author_facet Hyun-Jong Cha
Jun-Sik Park
Tae-Min Oh
author_sort Hyun-Jong Cha
collection DOAJ
container_title Journal of Rock Mechanics and Geotechnical Engineering
description The use of abrasive waterjets (AWJs) for rock drilling offers advantages in urbanized areas, locations that are vulnerable to damage, and piling operations. However, the overall operational cost of AWJ systems remains high compared to that of conventional drilling methods, which constrains the long-term industrial application of AWJs. For instance, the abrasive costs account for over 60% of the total process cost, but the recycling of abrasives remaining after drilling could significantly reduce machining costs. In this study, the post-impact characteristics of abrasives were explored, aiming to enhance their recyclability. The physical properties and particle distribution of used abrasives vary depending on the jet energy, ultimately affecting their recyclability and recycling rate. The particle properties of used abrasives (particle size distribution, particle shape, and mean particle size) were compared under different waterjet energy variables (standoff distance (SOD) and water pressure) and test conditions (dry and underwater). Furthermore, the collision stages of the abrasive particles within a waterjet system were classified and analyzed. The results revealed that abrasive fragmentation predominantly occurred due to internal collisions within the mixing chamber. In addition, an attempt was made to optimize the waterjet parameters for an economical and efficient operation. The findings of this study could contribute to enhancing the cost-effectiveness of AWJ systems for rock drilling applications.
format Article
id doaj-art-a74cefbd933d4278a1fa1ba2ca3ef4e2
institution Directory of Open Access Journals
issn 1674-7755
language English
publishDate 2025-05-01
publisher Elsevier
record_format Article
spelling doaj-art-a74cefbd933d4278a1fa1ba2ca3ef4e22025-09-02T19:52:37ZengElsevierJournal of Rock Mechanics and Geotechnical Engineering1674-77552025-05-011752713272610.1016/j.jrmge.2024.09.037Fragmentation characteristics of abrasive particles for hard rock drilling with waterjet energy parameterHyun-Jong Cha0Jun-Sik Park1Tae-Min Oh2Department of Civil and Environmental Engineering, Pusan National University, Busan, 46241, South KoreaDepartment of Civil and Environmental Engineering, Pusan National University, Busan, 46241, South KoreaCorresponding author.; Department of Civil and Environmental Engineering, Pusan National University, Busan, 46241, South KoreaThe use of abrasive waterjets (AWJs) for rock drilling offers advantages in urbanized areas, locations that are vulnerable to damage, and piling operations. However, the overall operational cost of AWJ systems remains high compared to that of conventional drilling methods, which constrains the long-term industrial application of AWJs. For instance, the abrasive costs account for over 60% of the total process cost, but the recycling of abrasives remaining after drilling could significantly reduce machining costs. In this study, the post-impact characteristics of abrasives were explored, aiming to enhance their recyclability. The physical properties and particle distribution of used abrasives vary depending on the jet energy, ultimately affecting their recyclability and recycling rate. The particle properties of used abrasives (particle size distribution, particle shape, and mean particle size) were compared under different waterjet energy variables (standoff distance (SOD) and water pressure) and test conditions (dry and underwater). Furthermore, the collision stages of the abrasive particles within a waterjet system were classified and analyzed. The results revealed that abrasive fragmentation predominantly occurred due to internal collisions within the mixing chamber. In addition, an attempt was made to optimize the waterjet parameters for an economical and efficient operation. The findings of this study could contribute to enhancing the cost-effectiveness of AWJ systems for rock drilling applications.http://www.sciencedirect.com/science/article/pii/S1674775524004773Hard rock drillingAbrasive waterjet (AWJ)Abrasive recyclingUnderground construction
spellingShingle Hyun-Jong Cha
Jun-Sik Park
Tae-Min Oh
Fragmentation characteristics of abrasive particles for hard rock drilling with waterjet energy parameter
Hard rock drilling
Abrasive waterjet (AWJ)
Abrasive recycling
Underground construction
title Fragmentation characteristics of abrasive particles for hard rock drilling with waterjet energy parameter
title_full Fragmentation characteristics of abrasive particles for hard rock drilling with waterjet energy parameter
title_fullStr Fragmentation characteristics of abrasive particles for hard rock drilling with waterjet energy parameter
title_full_unstemmed Fragmentation characteristics of abrasive particles for hard rock drilling with waterjet energy parameter
title_short Fragmentation characteristics of abrasive particles for hard rock drilling with waterjet energy parameter
title_sort fragmentation characteristics of abrasive particles for hard rock drilling with waterjet energy parameter
topic Hard rock drilling
Abrasive waterjet (AWJ)
Abrasive recycling
Underground construction
url http://www.sciencedirect.com/science/article/pii/S1674775524004773
work_keys_str_mv AT hyunjongcha fragmentationcharacteristicsofabrasiveparticlesforhardrockdrillingwithwaterjetenergyparameter
AT junsikpark fragmentationcharacteristicsofabrasiveparticlesforhardrockdrillingwithwaterjetenergyparameter
AT taeminoh fragmentationcharacteristicsofabrasiveparticlesforhardrockdrillingwithwaterjetenergyparameter