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GEOMETRY OF SINGLE POINT TURNING TOOLS(单点旋转工具的几何)
GEOMETRY OF SINGLE POINT TURNING TOOLS
LEARNING OBJECTIVES
Introduction to Features of single point cutting tool.
Concept of rake and clearance angle and its importance
System of description of Tool geometry – ASA, ORS and NSA systems
Interrelation between different Systems of Nomenclature.
Tool geometry is basically referred to some specific angles or slope of the salient faces
and edges of the tools at their cutting point.
Both material and geometry of the cutting tools play very important roles on their
performances in achieving effectiveness, efficiency and overall economy of machining.
Cutting tools may be classified according to the number of major cutting edges (points)
involved as follows:
Single point cutting tools : Examples: turning tools, shaping, planning and
slotting tools and boring tools
Double or Two point cutting tools : Example : drills
Multipoint (more than two) cutting tool: Example: Milling cutters, Broaching tools,
Hobs, Gear shaping cutters etc.
The geometry of a single point cutting tool is determined by the following features:
Face or rake surface, which is the surface of cutting tool along which the chips move
Flank surface that face the workpiece. There are two flank surfaces, namely principal
and auxiliary flank surfaces.
Cutting edge that remove material from the workpiece. There are two cutting edges.
The principal cutting edge performs the function of major material removal and is
formed by the intersection line of rake face with the principal flank surface. The auxiliary
cutting edge, often called as end cutting edge, is formed by intersection of rake face
with the auxiliary flank surface.
Corner or cutting point, which is meeting point of the principal and auxiliary cutting
edges. Often a nose radius
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