Efficiency of Tool Steel Cutting by Water Jet with Recycled Abrasive Materials

被引:17
作者
Perec, Andrzej [1 ]
Radomska-Zalas, Aleksandra [1 ]
Fajdek-Bieda, Anna [1 ]
Kawecka, Elzbieta [1 ]
机构
[1] Jacob Paradies Univ, Fac Technol, PL-66400 Gorzow Wielkopolski, Poland
关键词
abrasive water jet; AWJ; cutting depth; process efficiency; molybdenum tool steel; response surface method; RSM; modeling; optimization; NUMERICAL-ANALYSIS; OPTIMIZATION; MACHINABILITY; SUPERALLOY; SIMULATION; SURFACE; TIME;
D O I
10.3390/ma15113978
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
High-pressure water jet machining is characterized by wide possibilities of cutting diverse materials together with multi-layer materials with dissimilar properties, accurate cutting complex profiles, as well as conducting them in uncommon conditions, especially in cases of thick materials. An additional advantage of water jet technology is its environmental friendliness. This paper presents tests of the cutting performance of tool steel with the use of an abrasive water jet (AWJ). The state-of-the-art has shown insufficient scientific evidence in AWJ tool steels cutting using recycled abrasive materials. Therefore, the main motivation for this paper was to carry out research from an environment aspect. The reuse of abrasives and the use of recycled materials have immense potential to reduce processing costs while remaining environmentally friendly. The RSM method was used for modeling and optimization. A response surface design (RSM) is a package of an advanced design-of-experiment (DOE) approaches that support better understanding and optimize response, exploring the relationships between several explanatory variables and one or more response variables. Based on this research, feed rate is the key factor influencing the depth of cut, while the water nozzle diameter has a secondary effect, and the concentration of abrasive has the least influence on the depth of cut. High level of variance (the percentage of variability in the reaction that is interpreted by the formula) confirms that the models fit well to the investigational data.
引用
收藏
页数:16
相关论文
共 50 条
[31]   The optimal cutting times of multipass abrasive water jet cutting [J].
Xiaojin Miao ;
Zhengrong Qiang ;
Meiping Wu ;
Lei Song ;
Feng Ye .
The International Journal of Advanced Manufacturing Technology, 2018, 97 :1779-1786
[32]   Optimization of Abrasive Water Jet Cutting Parameter for AISI 316L Stainless Steel Sheet [J].
Parthiban, A. ;
Sathish, S. ;
Chandrasekaran, M. .
JOURNAL OF APPLIED FLUID MECHANICS, 2017, 10 :15-22
[33]   The optimal cutting times of multipass abrasive water jet cutting [J].
Miao, Xiaojin ;
Qiang, Zhengrong ;
Wu, Meiping ;
Song, Lei ;
Ye, Feng .
INTERNATIONAL JOURNAL OF ADVANCED MANUFACTURING TECHNOLOGY, 2018, 97 (5-8) :1779-1786
[34]   Analysis of the Process and Results of High-Pressure Abrasive Water Jet Multilayer Cutting of Electrical Steel [J].
Szada-Borzyszkowska, Monika ;
Kacalak, Wojciech ;
Bohdal, Lukasz ;
Szada-Borzyszkowski, Wieslaw .
MATERIALS, 2024, 17 (01)
[35]   THE CHARACTERIZATION OF FRONT CUTTING GEOMETRY AND SURFACE PROPERTIES IN ABRASIVE WATER JET CUTTING OF ALUMINUM ALLOY MATERIALS [J].
Akkurt, Adnan .
SIGMA JOURNAL OF ENGINEERING AND NATURAL SCIENCES-SIGMA MUHENDISLIK VE FEN BILIMLERI DERGISI, 2014, 32 (03) :261-276
[36]   Abrasive water jet machining of fiber-reinforced composite materials [J].
Vigneshwaran, S. ;
Uthayakumar, M. ;
Arumugaprabu, V. .
JOURNAL OF REINFORCED PLASTICS AND COMPOSITES, 2018, 37 (04) :230-237
[37]   Influence of Abrasive Water Jet Parameters on Steel Surface [J].
Guo, Rui ;
Zhou, Cunlong ;
Yuan, Shengnan .
JOM, 2020, 72 (12) :4273-4280
[38]   Optimising abrasive water jet cutting parameters for direct metal laser sintered Inconel 718: a study of cutting efficiency and surface quality [J].
Salian, Prathiksha ;
Dillibabu, V. ;
Srinivas, S. ;
Khan, Muhammed Anaz .
INTERNATIONAL JOURNAL OF INTERACTIVE DESIGN AND MANUFACTURING - IJIDEM, 2024,
[39]   Study on the process of abrasive water jet cutting for zirconia ceramic tubes [J].
Wang, Pengfei ;
Miao, Xiaojin ;
Wu, Meiping ;
Zhou, Peixing .
INTERNATIONAL JOURNAL OF ADVANCED MANUFACTURING TECHNOLOGY, 2023, 126 (11-12) :5555-5569
[40]   An exploration of an abrasive water jet cutting front profile [J].
Zhang, Shijin ;
Wu, Yuqiang ;
Wang, Shu .
INTERNATIONAL JOURNAL OF ADVANCED MANUFACTURING TECHNOLOGY, 2015, 80 (9-12) :1685-1688