Machining with electron beam research paper

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Features the Newly Developed LN3X CNC Controller The LN3X CNC Controller developed by Sodick is installed to permit rapid and highly flexible configuration of dedicated setup systems appropriate to the machining process.
The newly developed CNC Controller incorporates various leading-edge technologies, including motion control to optimize high speed and high accuracy, more rapid internal control, 1 Gbps high speed serial communications technology with a track record in Si-LINK, and proprietary advanced control.

The rake face which directs the flow of newly formed chip, is oriented at a certain angle is called the rake angle "α". It is measured relative to the plane perpendicular to the work surface. The rake angle can be positive or negative. The flank of the tool provides a clearance between the tool and the newly formed work surface, thus protecting the surface from abrasion, which would degrade the finish. This angle between the work surface and the flank surface is called the relief angle. There are two basic types of cutting tools:

Electron Beam Welding is a method which uses a focussed stream of high energy electrons generated by a filament and directed to the joint requiring to be welded. The heating is very localised and the bulk of the assembly therefore remains cold and stable. This results in a very narrow weld with a minimal heat affected zone. There is no need to use filler metal as the parent metal of the assembly is melted. As this is a line of sight method it is not possible to weld around corners or re-entrant angles. Weld depths of up to 30mm can be produced and computer controls ensure minimal operator dependence, thus providing good reproducibility throughout a batch of components, even though this is a piece part process. Since the heat input is very localised it is possible to weld together previously heat treated components, which is a very economical method for producing composite gear shafts, with for example a case hardened gear on a hardened and tempered shaft.

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Peak Thrust 192 kN (41,500 lbf)

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machining with electron beam research paper

Machining with electron beam research paper

The rake face which directs the flow of newly formed chip, is oriented at a certain angle is called the rake angle "α". It is measured relative to the plane perpendicular to the work surface. The rake angle can be positive or negative. The flank of the tool provides a clearance between the tool and the newly formed work surface, thus protecting the surface from abrasion, which would degrade the finish. This angle between the work surface and the flank surface is called the relief angle. There are two basic types of cutting tools:

Action Action

machining with electron beam research paper

Machining with electron beam research paper

Action Action

machining with electron beam research paper

Machining with electron beam research paper

Features the Newly Developed LN3X CNC Controller The LN3X CNC Controller developed by Sodick is installed to permit rapid and highly flexible configuration of dedicated setup systems appropriate to the machining process.
The newly developed CNC Controller incorporates various leading-edge technologies, including motion control to optimize high speed and high accuracy, more rapid internal control, 1 Gbps high speed serial communications technology with a track record in Si-LINK, and proprietary advanced control.

Action Action

machining with electron beam research paper
Machining with electron beam research paper

The rake face which directs the flow of newly formed chip, is oriented at a certain angle is called the rake angle "α". It is measured relative to the plane perpendicular to the work surface. The rake angle can be positive or negative. The flank of the tool provides a clearance between the tool and the newly formed work surface, thus protecting the surface from abrasion, which would degrade the finish. This angle between the work surface and the flank surface is called the relief angle. There are two basic types of cutting tools:

Action Action

Machining with electron beam research paper

Action Action

machining with electron beam research paper

Machining with electron beam research paper

Use one of your book credits to continue reading from where you left off, or restart the preview.

Action Action

machining with electron beam research paper

Machining with electron beam research paper

Features the Newly Developed LN3X CNC Controller The LN3X CNC Controller developed by Sodick is installed to permit rapid and highly flexible configuration of dedicated setup systems appropriate to the machining process.
The newly developed CNC Controller incorporates various leading-edge technologies, including motion control to optimize high speed and high accuracy, more rapid internal control, 1 Gbps high speed serial communications technology with a track record in Si-LINK, and proprietary advanced control.

Action Action

machining with electron beam research paper

Machining with electron beam research paper

Peak Thrust 192 kN (41,500 lbf)

Action Action

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Machining with electron beam research paper

Electron Beam Welding is a method which uses a focussed stream of high energy electrons generated by a filament and directed to the joint requiring to be welded. The heating is very localised and the bulk of the assembly therefore remains cold and stable. This results in a very narrow weld with a minimal heat affected zone. There is no need to use filler metal as the parent metal of the assembly is melted. As this is a line of sight method it is not possible to weld around corners or re-entrant angles. Weld depths of up to 30mm can be produced and computer controls ensure minimal operator dependence, thus providing good reproducibility throughout a batch of components, even though this is a piece part process. Since the heat input is very localised it is possible to weld together previously heat treated components, which is a very economical method for producing composite gear shafts, with for example a case hardened gear on a hardened and tempered shaft.

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Machining with electron beam research paper

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