Effect of Si and Al Additions to Steel on Machinability in Gear Cutting

IF 0.3 4区 材料科学 Q4 METALLURGY & METALLURGICAL ENGINEERING
T. Aiso, T. Matsumura
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引用次数: 0

Abstract

The influence of Si and Al additions to 0.55 mass% C steel on machinability is discussed in cutting with a fly tool of TiAlN coated high speed steel, as performed in gear cutting. Three model steels are prepared with controlling nearly the same hardness to study the effects of the alloying elements: one reference steel with C as the only alloying element (Base steel), and two steels alloyed also with 1 mass% Si or Al. The cutting tests are performed to obtain the cutting forces, observe the cutting chips and analyze the damage on the rake faces of the tools. The orthogonal cutting data in the cutting force simulation are identified to minimize the discrepancies between the measured and the simulated forces for the tested steels. When cutting the Base steel, few adhered materials form and the coated thin layer is worn mainly by abrasion. When cutting the Si alloyed steel, the coating surface is covered by adhered layers containing Si–O, Fe 2 SiO 4 and FeO, which contribute to the lowest friction and protect the coated thin layer from wear. When cutting the Al alloyed steel, an Al 2 O 3 layer forms on the coating. The Al 2 O 3 layer induces high friction, large cutting forces and cutting heat, resulting in the rapid substrate softening and coating fracture.
钢中添加Si和Al对齿轮切削加工性的影响
以齿轮切削为例,讨论了在0.55质量% C钢中添加Si和Al对其切削性能的影响。为研究合金元素对切削力的影响,制备了硬度几乎相同的三种模型钢:一种基准钢(基体钢),唯一的合金元素为C,两种钢的合金元素均为1质量%的Si或Al。通过切削试验,获得了切削力,观察了切削切屑,分析了刀具前刀面的损伤。对切削力模拟中的正交切削数据进行了识别,以尽量减少被试钢的实测力与模拟力之间的差异。在切削基体钢时,很少形成粘附物,涂层薄层主要是磨损。在切削Si合金钢时,涂层表面被含有Si - o、fe2、sio4和FeO的粘附层覆盖,这有助于降低摩擦,保护涂层薄层不受磨损。当切削铝合金钢时,涂层上形成一层al2o3层。al2o3层产生高摩擦、大切削力和切削热,导致基体快速软化和涂层断裂。
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来源期刊
CiteScore
0.70
自引率
33.30%
发文量
74
审稿时长
6-12 weeks
期刊介绍: The journal ISIJ International first appeared in 1961 under the title Tetsu-to-Hagané Overseas. The title was changed in 1966 to Transactions of The Iron and Steel Institute of Japan and again in 1989 to the current ISIJ International. The journal provides an international medium for the publication of fundamental and technological aspects of the properties, structure, characterization and modeling, processing, fabrication, and environmental issues of iron and steel, along with related engineering materials. Classification I Fundamentals of High Temperature Processes II Ironmaking III Steelmaking IV Casting and Solidification V Instrumentation, Control, and System Engineering VI Chemical and Physical Analysis VII Forming Processing and Thermomechanical Treatment VIII Welding and Joining IX Surface Treatment and Corrosion X Transformations and Microstructures XI Mechanical Properties XII Physical Properties XIII New Materials and Processes XIV Social and Environmental Engineering.
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