2013
DOI: 10.1007/s11665-013-0539-6
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Erosive Wear Behavior of Nickel-Based High Alloy White Cast Iron Under Mining Conditions Using Orthogonal Array

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Cited by 38 publications
(15 citation statements)
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“…The harsh ploughing marks were also largely observed on the wear surfaces of the sample. The different type of material removal mechanisms like large pile-up or ploughing, crates, leading to the formation of platelet (flake), cutting action, lip fragmentation and indentations are responsible in solid particle erosion of SS 304 [8,15,[23][24][25]. The material removal mechanism mostly depends on the sample surface properties and the impact angle of a solid particle on the surface of wear substrate [24].…”
Section: Surface Morphology Using Semmentioning
confidence: 99%
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“…The harsh ploughing marks were also largely observed on the wear surfaces of the sample. The different type of material removal mechanisms like large pile-up or ploughing, crates, leading to the formation of platelet (flake), cutting action, lip fragmentation and indentations are responsible in solid particle erosion of SS 304 [8,15,[23][24][25]. The material removal mechanism mostly depends on the sample surface properties and the impact angle of a solid particle on the surface of wear substrate [24].…”
Section: Surface Morphology Using Semmentioning
confidence: 99%
“…At 60° impact angle it is observed that the mixed type of material removal mechanism takes place. At 60° impact angle the micro ploughing, cutting action and large chips forming leads to consequently removal of the material from the sample surface [8,23]. The surface topography/morphologies at 90° impact angle were shown in Fig.…”
Section: Surface Morphology Using Semmentioning
confidence: 99%
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“…The NH4CI were subjected to an erosive wear behavior of the mining operation to find optimum condition using an L9 orthogonal array. The angle 30° degrees of implement shows the less removal of material [5]. NH4CI reinforcement with Titanium.…”
Section: Introductionmentioning
confidence: 98%
“…Austenitic cast iron with high nickel content is characterized by good wear resistance, good mechanical and physical properties, and excellent manufacturability, and it is widely used in the chemical, paper, internal combustion engine and other industries because it can resist serious friction, acid-alkali corrosion, and erosion by seawater [1][2][3][4]. However, such a cast iron generally contains 13.5wt%-36wt% nickel, which is expensive.…”
Section: Introductionmentioning
confidence: 99%