60
Views
54
CrossRef citations to date
0
Altmetric
Articles

Abrasion resistance and fracture toughness of white cast irons

Pages 412-419 | Published online: 19 Jul 2013

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (6)

P. S. M. Jena, Rajesh Kumar Rai & J. K. Sahu. (2018) Improvement of toughness of high chromium white cast iron: duplex ferritic-austenitic matrix. Materials Science and Technology 34:3, pages 299-304.
Read now
O Yılmaz, M. Ozenbaş & M. H. Korkut. (2002) Microstructural characteristics of gas tungsten arc synthesised Fe-Cr-Si-C coating. Materials Science and Technology 18:10, pages 1209-1216.
Read now
George Laird & Ömer N. Doğan. (1996) Solidification structure versus hardness and impact toughness in high-chromium white cast irons. International Journal of Cast Metals Research 9:2, pages 83-102.
Read now
C. P. Tabrett, I. R. Sare & M. R. Ghomashchi. (1996) Microstructure-property relationships in high chromium white iron alloys. International Materials Reviews 41:2, pages 59-82.
Read now
M. Radulovic, M. Fiset & K. Peev. (1994) Effect of rare earth elements on microstructure and properties of high chromium white iron. Materials Science and Technology 10:12, pages 1057-1062.
Read now
W. L. Bradley & M. N. Srinivasan. (1990) Fracture and fracture toughness of cast irons. International Materials Reviews 35:1, pages 129-161.
Read now

Articles from other publishers (48)

Xiaobo Zhai, Xin Chen, Fangyuan Zheng, Dongli Han, Junchi Zheng, Xin Ye, Xiaolin Li & Liqun Zhang. (2023) Designing a Coupling Agent with Aliphatic Polyether Chain and Exploring Its Effect on Silica/Natural Rubber Nanocomposites under the Action of Non-Rubber Contents. Polymers 15:3, pages 674.
Crossref
Mohammad Jobayer Huq, Kazumichi Shimizu, Kenta Kusumoto & Riki Hendra Purba. (2022) Three-Body Abrasive Wear Performance of High Chromium White Cast Iron with Different Ti and C Content. Lubricants 10:12, pages 348.
Crossref
Riki Hendra Purba, Kazumichi Shimizu, Kenta Kusumoto, Yila Gaqi & Mohammad Jobayer Huq. (2022) Tribological Characteristics of High-Chromium Based Multi-Component White Cast Irons. Crystals 12:10, pages 1488.
Crossref
Abhi-Shek Jain, Muhammad Ikhmal Mustafa, Mohd Izzat Iskandar Mohd Sazili, Haiwei Chang & Ming-Xing Zhang. (2022) Effects of destabilization and tempering on microstructure and mechanical properties of a hypereutectic high-chromium cast iron. Journal of Materials Science 57:32, pages 15581-15597.
Crossref
Guofeng Yuan, Xiaogang Wang, Xiaoyu Zhu & Peisheng Han. (2022) Microstructure and Sliding Wear Behavior of High Chromium Cast Iron Strengthened Low Carbon Steel Composite. Journal of Materials Engineering and Performance 31:7, pages 5511-5522.
Crossref
Maziar Jokari-Sheshdeh, Yahia Ali, Santiago Corujeira Gallo, Weikang Lin & J.D. Gates. (2022) Comparing the abrasion performance of NiHard-4 and high-Cr-Mo white cast irons: The effects of chemical composition and microstructure. Wear 492-493, pages 204208.
Crossref
Riki Hendra Purba, Kazumichi Shimizu, Kenta Kusumoto, Yila Gaqi & Takayuki Todaka. (2022) Effect of boron addition on three-body abrasive wear characteristics of high chromium based multi-component white cast iron. Materials Chemistry and Physics 275, pages 125232.
Crossref
Takayuki Todaka, Kazumichi Shimizu, Kenta Kusumoto, Riki Hendra Purba & Yila Gaqi. (2021) Effect of Carbon Content on Three-body Abrasive Wear Characteristics of 28Cr-3Ni Cast Alloys. ISIJ International 61:8, pages 2274-2283.
Crossref
S. Reyna, A. Bedolla-Jacuinde, F.V. Guerra, I. Mejía & M. García. (2021) Effect of amount and distribution of primary TiC on the wear behavior of a 12%Cr–3%C white iron under dry sliding conditions’. Wear 476, pages 203718.
Crossref
Baochao Zheng, Jiandong Xing, Wei Li, Xiaohui Tu & Yongxin Jian. (2020) Effect of chromium-induced (Fe, Cr)3C toughness improvement on the two-body abrasive wear behaviors of white cast iron. Wear 456-457, pages 203363.
Crossref
Kaushal Kishore, Udit Kumar, Nanda Dinesh & Manashi Adhikary. (2020) Effect of Soaking Temperature on Carbide Precipitation, Hardness, and Wear Resistance of High-Chromium Cast Iron. Journal of Failure Analysis and Prevention 20:1, pages 249-260.
Crossref
K. Wieczerzak & P. Bała. (2019) Hypoeutectic Fe-Cr-Ni-Mo-C alloys additionally strengthened by the Frank-Kasper phases – Design by means of the CALPHAD approach. Calphad 64, pages 248-257.
Crossref
Juliano Soyama, Thiago Pama Lopes, Guilherme Zepon, Claudio Shyinti Kiminami, Walter José Botta & Claudemiro Bolfarini. (2018) Wear Resistant Duplex Stainless Steels Produced by Spray Forming. Metals and Materials International 25:2, pages 456-464.
Crossref
Yanwei Li, Yugui Li, Peisheng Han & Xiaogang Wang. (2018) Effect of hot rolling on microstructure and properties of high-chromium cast iron hardfacing cladding plate. Materials Research Express 6:3, pages 036523.
Crossref
Yongcun Li, Ping Li, Ke Wang, Haizhi Li, Mengying Gong & Weiping Tong. (2018) Microstructure and mechanical properties of a Mo alloyed high chromium cast iron after different heat treatments. Vacuum 156, pages 59-67.
Crossref
O. A. Zambrano, K. F. Gallardo, D. M. Polania, S. A. Rodríguez & J. J. Coronado. (2017) The Role of the Counterbody’s Oxide on the Wear Behavior of HSS and Hi-Cr. Tribology Letters 66:1.
Crossref
Alejandro Urrutia, Diego Celentano & Dayalan Gunasegaram. (2017) Modeling and Simulation of the Gray-to-White Transition during Solidification of a Hypereutectic Gray Cast Iron: Application to a Stub-to-Carbon Connection Used in Smelting Processes. Metals 7:12, pages 549.
Crossref
Oscar Fabián Higuera-Cobos, Florina-Diana Dumitru & Dairo Hernán Mesa-Grajales. (2016) Mejoramiento de la resistencia al desgaste abrasivo de la fundición al alto cromo ASTM A-532 a través de ciclos de tratamiento térmico. Revista Facultad de Ingeniería 25:41, pages 93-103.
Crossref
Jian Yang, Jianjun Tian, Feifei Hao, Ting Dan, Xuejun Ren, Yulin Yang & Qingxiang Yang. (2014) Microstructure and wear resistance of the hypereutectic Fe–Cr–C alloy hardfacing metals with different La2O3 additives. Applied Surface Science 289, pages 437-444.
Crossref
M. Filipovic, Z. Kamberovic, M. Korac & M. Gavrilovski. (2013) Correlation of microstructure with the wear resistance and fracture toughness of white cast iron alloys. Metals and Materials International 19:3, pages 473-481.
Crossref
J. Q. Xu, Y. Y. Chen, W. Wang, K. P. Liu, H. S. Liu & Y. D. Xiao. (2010) Sliding friction properties of austenite- and martensite-based white cast iron containing 8.5% chromium. Journal of Materials Science 45:22, pages 6108-6114.
Crossref
Ji Hui Kim, Kang Hee Ko, Seung Dae Noh, Gyung Guk Kim & Seon Jin Kim. (2009) The effect of boron on the abrasive wear behavior of austenitic Fe-based hardfacing alloys. Wear 267:9-10, pages 1415-1419.
Crossref
Qing-yu Hou, Zhen-yi Huang & Jing-tao Wang. (2009) Application of Rietveld refinement to investigate the high chromium white cast iron austempered at different temperatures. Journal of Iron and Steel Research International 16:4, pages 33-38.
Crossref
A. Ziadi, F. J. Belzunce & C. Rodriguez. (2007) The effects of heat treatment on the mechanical properties of multicomponent white cast irons. Journal of Materials Science 42:17, pages 7579-7585.
Crossref
S. Chatterjee & T.K. Pal. (2006) Solid particle erosion behaviour of hardfacing deposits on cast iron—Influence of deposit microstructure and erodent particles. Wear 261:10, pages 1069-1079.
Crossref
Serdar Osman Yılmaz. (2005) Wear behavior of gas tungsten arc deposited FeCrC, FeCrSi, and WCo coatings on AISI 1018 steel. Surface and Coatings Technology 194:2-3, pages 175-183.
Crossref
Soner Buytoz, M. Mustafa Yildirim & Hulya Eren. (2005) Microstructural and microhardness characteristics of gas tungsten are synthesized Fe–Cr–C coating on AISI 4340. Materials Letters 59:6, pages 607-614.
Crossref
A.H. Kasama, A.J. Mourisco, C.S. Kiminami, W.J. Botta Fo & C. Bolfarini. (2004) Microstructure and wear resistance of spray formed high chromium white cast iron. Materials Science and Engineering: A 375-377, pages 589-594.
Crossref
Khaled M. Ibrahim & A. Abbas Mohammed. (2003) Correlation between Microstructure and Mechanical Properties of High C-Cr Cast Steel. steel research international 74:10, pages 646-651.
Crossref
S. Chatterjee & T.K. Pal. (2003) Wear behaviour of hardfacing deposits on cast iron. Wear 255:1-6, pages 417-425.
Crossref
M.H. Korkut, O. Yilmaz & S. Buytoz. (2002) Effect of aging on the microstructure and toughness of the interface zone of a gas tungsten arc (GTA) synthesized Fe–Cr–Si–Mo–C coated low carbon steel. Surface and Coatings Technology 157:1, pages 5-13.
Crossref
Yingfeng Guan & Zhanpeng Jin. (1999) Study on the structure and properties of high chromium white cast iron and its tempering standard. Journal of Central South University of Technology 6:1, pages 8-12.
Crossref
B.K. Arnold, T. Heijkoop, P.G. Lloyd, G. Rubenis & I.R. Sare. (1997) Wear of cast-bonded components in a coal pulvesier mill. Wear 203-204, pages 663-670.
Crossref
Sunghak Lee, Seong-Hun Choo, Nack J. Kim, Eung-Ryul Baek & Sangho Ahn. (1996) Correlation of microstructure and fracture toughness in high-chromium white iron hardfacing alloys. Metallurgical and Materials Transactions A 27:12, pages 3881-3891.
Crossref
K. Nagarathnam & K. Komvopoulos. (1995) Microstructural and microhardness characteristics of laser-synthesized Fe-Cr-W-C Coatings. Metallurgical and Materials Transactions A 26:8, pages 2131-2139.
Crossref
I. R. Sare & B. K. Arnold. (1995) The influence of heat treatment on the high-stress abrasion resistance and fracture toughness of alloy white cast irons. Metallurgical and Materials Transactions A 26:7, pages 1785-1793.
Crossref
I. R. S Are & B. K. Arnold. (1995) The effect of heat treatment on the gouging abrasion resistance of alloy white cast irons. Metallurgical and Materials Transactions A 26:2, pages 357-370.
Crossref
DR Petersen, RE Link & G Laird. (1995) Repetitive- and Single-Blow Impact Testing of Wear-Resistant Alloys. Journal of Testing and Evaluation 23:5, pages 333.
Crossref
M. Radulovic, M. Fiset, K. Peev & M. Tomovic. (1994) The influence of vanadium on fracture toughness and abrasion resistance in high chromium white cast irons. Journal of Materials Science 29:19, pages 5085-5094.
Crossref
K. Peev, M. Radulovic & M. Fiset. (1994) Modification of Fe-Cr-C alloys using mischmetal. Journal of Materials Science Letters 13:2, pages 112-114.
Crossref
Xi Jun-Tong, Zhou Qing-De, Liu Shi-Hui & Song Guang-Shun. (1993) Influence of retained austenite on the wear resistance of high chromium cast iron under various impact loads. Wear 162-164, pages 83-88.
Crossref
Liqun Xu, Cathy Vose & David StJohn. (1993) Abrasive wear study of selected white cast irons as liner materials for the mining industry. Wear 162-164, pages 820-832.
Crossref
I.R. Sare, B.K. Arnold, G.A. Dunlop & P.G. Lloyd. (1993) Repeated impact-abrasion testing of alloy white cast irons. Wear 162-164, pages 790-801.
Crossref
G. Laird, R. L. Nielsen & N. H. Macmillan. (1991) On the nature of eutectic carbides in Cr-Ni white cast irons. Metallurgical Transactions A 22:8, pages 1709-1719.
Crossref
I.R. Sare & B.K. Arnold. (1989) Gouging abrasion of wear-resistant alloy white cast irons. Wear 131:1, pages 15-37.
Crossref
Roy Elliott. 1988. Cast Iron Technology. Cast Iron Technology 1 45 .
. 1987. Microstructure and Wear of Materials. Microstructure and Wear of Materials 132 350 .
I.R. Sare. (1983) Repeated impact-abrasion of ore-crushing hammers. Wear 87:2, pages 207-225.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.