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JANUS ENGINEERING AG

Welcome to JANUS Engineering AG, Germany, your partner for NX (UNIGRAPHICS) and Teamcenter with focus on manufacturing.

We offer you products and services for implementation, customization and automation for your CAD/CAM Technology needs. With long years of experience we know the requirements and can offer you well-proven solutions enabling you to benefit most from the potential of your CAD/CAM system.

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JANUS ENGINEERING AG

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Welcome to celeritive university

Learn about using VoluMill & VoluTurn Today!

Celeritive University delivers the tools and training that enable you and your organization to use our technologies effectively. 

Whether you’re looking for specific training courses, ways to improve the proficiency of experienced users, or a custom corporate learning and adoption program, Celeritive University can help you drive the ROI of your software investment.

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Getting Started with NEXION Essentials

In this video you will learn the basics of using VoluMill NEXION Essentials.

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Transitioning to VoluMill from Traditional Roughing

Transitioning to VoluMill from Traditional Roughing

This video helps a new VoluMill user figure out how to use his/her CNC machining experience to set optimized milling parameters for VoluMill.

The traditional parallel offset roughing tool path is far less efficient than VoluMill.  Consequently, the cut depths, speeds, and feeds used in the traditional roughing operations are not the best values to be used for VoluMill operations.  However, a solid understanding of volumetric milling and high speed milling will allow the user to calculate conservative starting VoluMill parameters from traditional parameters that have proven reliable.

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The Mechanics of Milling (Work) - Part 5

The Mechanics of Milling (Work)

This is 5 of 5 videos that illustrates how work is also affected by step over settings and that this directly impacts heat generated during milling

During milling, a tool cannot work efficiently if the speed is not increased with lighter step overs.  Conventional milling practices recommend surface speed based on material type, but light step over settings typically used with high speed milling requires much higher speeds to work efficiently.  Consequently, even in the same material, speed needs to be adjusted appropriately for a given step over.

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The Mechanics of Milling (Force) - Part 4

Milling Forces

This is 4 of 5 videos that illustrates how cutting forces are affected by step over settings and introduces the chip thinning effect

The load generated by chip formation varies throughout the cut.  The maximum force is where the cutting edge of the tool first enters the material and decreases to zero when the tool rotates out of the cut.  Chin thinning occurs when step over is less than half the tool diameter, and this requires an adjustment to the feed per tooth so that maximum chip thickness is retained.

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Step Over Options within VoluMill NX CAM

Step Over Options inside of VoluMill for Siemens NX

In this video we discuss the Step Over Options inside of VoluMill for Siemens NX

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VoluMill Technology - Part 1

VoluMill Science-based toolpath

This is 1 of 5 videos that introduces the technology of VoluMill.

This video introduces the necessity of constant material removal rate and encourages the CNC programmer to learn some scientific principles behind milling so VoluMill can be used to its potential.

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VoluMill Cut Levels in NX CAM

VoluMill cut levels in Siemens NX CAM

This video reviews and demonstrates the Cut Level functions for VoluMill for Siemens NX

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Technology Expert Siemens NX CAM

Technology Expert Siemens NX CAM

In this video we will review and demonstrate the Technology Expert, a utility which provides cutting parameters to be used in VoluMill.

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Working with the tool axis and MCS

Tool Axis and MCS

How to use and manipulate the MCS inside of VoluMill for Siemens NX.

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Programming your first part with VoluMill

Programming your first part with VoluMill

In this brief video you will learn how to program your first part using VoluMill for Siemens NX CAM.

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