cutting-tool edge - meaning and definition. What is cutting-tool edge
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What (who) is cutting-tool edge - definition

TOOL THAT IS USED TO REMOVE MATERIAL FROM THE WORKPIECE BY MEANS OF SHEAR DEFORMATION
Metalwork cutting tool; Cutting tools; Flute (cutting tool); Cutting tool; Cutting tool (metalworking)
  • Cutting edge profile with parameters

Cutting Edge (recordings)         
SERIES OF ALBUMS
Cutting Edge 1; Cutting Edge 2; Cutting Edge 1 and 2; Cutting Edge 3; Cutting Edge Fore; Cutting Edge 3 and Fore
Cutting Edge is a series of recordings made by the British rock band Delirious?. The songs were originally written for a regular youth event, Cutting Edge, in the band's home town of Littlehampton.
Cutting tool (machining)         
In the context of machining, a cutting tool or cutter is typically a hardened metal tool that is used to cut, shape, and remove material from a workpiece by means of machining tools as well as abrasive tools by way of shear deformation. The majority of these tools are designed exclusively for metals.
cutting edge         
WIKIMEDIA DISAMBIGUATION PAGE
Cutting-edge; Cutting Edge; Cutting edge (disambiguation); The Cutting Edge (disambiguation)
Note: The spelling 'cutting-edge' is used for meaning 3.
1.
If you are at the cutting edge of a particular field of activity, you are involved in its most important or most exciting developments.
This shipyard is at the cutting edge of world shipbuilding technology.
= forefront
N-SING: usu at/on the N of n
2.
If someone or something gives you a cutting edge, they give you an advantage over your competitors.
If Pearce had been fit, we would have won. We missed the cutting edge he would have given us.
N-SING
3.
Cutting-edge techniques or equipment are the most advanced that there are in a particular field.
What we are planning is cutting-edge technology never seen in Australia before...
ADJ: usu ADJ n

Wikipedia

Cutting tool (machining)

In the context of machining, a cutting tool or cutter is typically a hardened metal tool that is used to cut, shape, and remove material from a workpiece by means of machining tools as well as abrasive tools by way of shear deformation. The majority of these tools are designed exclusively for metals.

There are several different types of single-edge cutting tools that are made from a variety of hardened metal alloys that are ground to a specific shape in order to perform a specific part of the turning process resulting in a finished machined part. Single-edge cutting tools are used mainly in the turning operations performed by a lathe in which they vary in size as well as alloy composition depending on the size and the type of material being turned. These cutting tools are held stationary by what is known as a tool post, which is what manipulates the tools to cut the material into the desired shape. Single-edge cutting tools are also the means of cutting material performed by shaping machines and planing machines, which remove material by means of one cutting edge.

Milling and drilling tools are often multipoint tools. Drilling is exclusively used to make holes in a workpiece. All drill bits have two cutting edges that are ground into two equally tapered angles which cuts through the material by applying downward rotational force. Endmills or milling bits, which also cut material by rotational force. Although these tools are not made to put holes in a workpiece. They cut by horizontal shear deformation in which the workpiece is brought into the tool as it's rotating. This is known as the tool path which is determined by the axis of the table that is holding the workpiece in place. This table is designed to accept a variety of vises and clamping tools so that it can move into the cutter at various angles and directions while the workpiece remains still. There are several different types of endmills that perform a certain type of milling action.

Grinding stones are tools that contain several different cutting edges which encompasses the entirety of the stone. Unlike metallic cutting tools, these grinding stones never go dull. In fact the formation of cutting edges of metallic cutting tools are achieved by the use of grinding wheels and other hard abrasives. There are several different types of grinding stone wheels that are used to grind several different types of metals. Although these stones are not metal, they need to be harder than the metal that they grind. In contrast to the grinding stone, if the hardness of the metal exceeds that of the stone, the metal will cut the stone. This is not ideal. Each grain of abrasive functions as a microscopic single-point cutting edge (although of high negative rake angle), and shears a tiny chip.

Cutting tool materials must be harder than the material which is to be cut, and the tool must be able to withstand the heat and force generated in the metal-cutting process. Also, the tool must have a specific geometry, with clearance angles designed so that the cutting edge can contact the workpiece without the rest of the tool dragging on the workpiece surface. The angle of the cutting face is also important, as is the flute width, number of flutes or teeth, and margin size. In order to have a long working life, all of the above must be optimized, plus the speeds and feeds at which the tool is run.