The Experts below are selected from a list of 6 Experts worldwide ranked by ideXlab platform

Liu Feng-hai - One of the best experts on this subject based on the ideXlab platform.

  • Analysis of Boron in Nickel Based Alloy Steel by ICP-AES Method
    Equipment Manufacturing Technology, 2020
    Co-Authors: Liu Feng-hai
    Abstract:

    The ICP-AES method is used to measure the boron in nickel based Alloy.The sample is dissolved in nitric acid and hydrochloric acid at low temperature under the heating condition.The work conditions for the instruments are determined and a set of analytical method established through series of experiment.The satisfactory results are achieved by standard Steel analysis.This method is believed to be fast and accurate and can basically meet the requirements of production.

S.j. Martill - One of the best experts on this subject based on the ideXlab platform.

  • Principles of Engineering Manufacture (Third Edition) - 9 – Mechanics of Cutting
    Principles of Engineering Manufacture, 1996
    Co-Authors: Stewart C. Black, Vic Chiles, A.j. Lissaman, S.j. Martill
    Abstract:

    The range of cutting forces acting upon a cutting tool is studied, and it is necessary to evaluate the effect of these upon the machine tool and analyze the cutting process. These forces can be resolved to determine the total resultant force acting. This can be very large and can easily cause significant deformation of the work piece, thus finishing cuts are usually taken with small forces to minimize the forces acting and to provide accurate cutting conditions. For most work piece materials, higher cutting speeds mean lower cutting forces, the higher temperatures on the flow zone and reduced contact area contribute toward this effect. The decrease in force varies with the type and condition of the material, and the range of cutting speeds in use. For heat-resistant Nickel-Based Alloy Steel, the initial chip forming force can be ten times stronger than that required to cut unAlloyed aluminum.

Stewart C. Black - One of the best experts on this subject based on the ideXlab platform.

  • Principles of Engineering Manufacture (Third Edition) - 9 – Mechanics of Cutting
    Principles of Engineering Manufacture, 1996
    Co-Authors: Stewart C. Black, Vic Chiles, A.j. Lissaman, S.j. Martill
    Abstract:

    The range of cutting forces acting upon a cutting tool is studied, and it is necessary to evaluate the effect of these upon the machine tool and analyze the cutting process. These forces can be resolved to determine the total resultant force acting. This can be very large and can easily cause significant deformation of the work piece, thus finishing cuts are usually taken with small forces to minimize the forces acting and to provide accurate cutting conditions. For most work piece materials, higher cutting speeds mean lower cutting forces, the higher temperatures on the flow zone and reduced contact area contribute toward this effect. The decrease in force varies with the type and condition of the material, and the range of cutting speeds in use. For heat-resistant Nickel-Based Alloy Steel, the initial chip forming force can be ten times stronger than that required to cut unAlloyed aluminum.

Vic Chiles - One of the best experts on this subject based on the ideXlab platform.

  • Principles of Engineering Manufacture (Third Edition) - 9 – Mechanics of Cutting
    Principles of Engineering Manufacture, 1996
    Co-Authors: Stewart C. Black, Vic Chiles, A.j. Lissaman, S.j. Martill
    Abstract:

    The range of cutting forces acting upon a cutting tool is studied, and it is necessary to evaluate the effect of these upon the machine tool and analyze the cutting process. These forces can be resolved to determine the total resultant force acting. This can be very large and can easily cause significant deformation of the work piece, thus finishing cuts are usually taken with small forces to minimize the forces acting and to provide accurate cutting conditions. For most work piece materials, higher cutting speeds mean lower cutting forces, the higher temperatures on the flow zone and reduced contact area contribute toward this effect. The decrease in force varies with the type and condition of the material, and the range of cutting speeds in use. For heat-resistant Nickel-Based Alloy Steel, the initial chip forming force can be ten times stronger than that required to cut unAlloyed aluminum.

A.j. Lissaman - One of the best experts on this subject based on the ideXlab platform.

  • Principles of Engineering Manufacture (Third Edition) - 9 – Mechanics of Cutting
    Principles of Engineering Manufacture, 1996
    Co-Authors: Stewart C. Black, Vic Chiles, A.j. Lissaman, S.j. Martill
    Abstract:

    The range of cutting forces acting upon a cutting tool is studied, and it is necessary to evaluate the effect of these upon the machine tool and analyze the cutting process. These forces can be resolved to determine the total resultant force acting. This can be very large and can easily cause significant deformation of the work piece, thus finishing cuts are usually taken with small forces to minimize the forces acting and to provide accurate cutting conditions. For most work piece materials, higher cutting speeds mean lower cutting forces, the higher temperatures on the flow zone and reduced contact area contribute toward this effect. The decrease in force varies with the type and condition of the material, and the range of cutting speeds in use. For heat-resistant Nickel-Based Alloy Steel, the initial chip forming force can be ten times stronger than that required to cut unAlloyed aluminum.