Welcome to the HP MJF Handbook
Access the chapters to deepen your knowledge on HP MJF,
Design for MJF and much more - and achieve maximum results.
Material selection >
How does HP Multi Jet Fusion work
Take a quick—but close—look at how the HP Multi Jet Fusion 3D printing process works.
Material selection >
Polyamide family
Learn about the selected range of polyamide-based materials, their properties, and ideal applications that have been engineered for HP Multi Jet Fusion technology.
Design for HP Multi Jet Fusion > Design guidelines >
Best practices
What you need to know to ensure parts and features are printed to specification when designing for HP Multi Jet Fusion technology.
Design for HP Multi Jet Fusion > Design guidelines >
Design for accuracy
Learn how to avoid issues with parts and achieve maximum accuracy when designing with HP Multi Jet Fusion technology.
Design for HP Multi Jet Fusion > Design guidelines >
Design for aesthetics
Discover how to print parts for optimal appearance.
Design for HP Multi Jet Fusion > Design guidelines >
Design for cleaning
Learn how to facilitate the cleaning process and minimize cost once the part is printed.
Design for HP Multi Jet Fusion > Union joints design >
Dimensional tolerancing
Understand required tolerances and permissible ranges of variation dimensions to ensure that parts work according to the design intent.
Design for HP Multi Jet Fusion > Union joints design >
Types of fits
Explore these types of fits and design guidelines to help you save time in post-processing and assembly operations when designing mating parts
Design for HP Multi Jet Fusion > Union joints design >
Threaded unions
Learn more about design and post-processing guidelines for printing internal and external threads with HP MJF.
Design for HP Multi Jet Fusion > Union joints design >
Inserts
Threaded inserts provide a strong, reusable, and permanent thread in plastic parts. Learn more about inserts and design guidelines for HP MJF.
Design for HP Multi Jet Fusion > Union joints design >
Adhesive bondings
Discover the two main reasons for bonding parts and why a proper bonding design is critical for success.
Design for HP Multi Jet Fusion > Union joints design >
Snap-fits
Examine types of snap fits, design considerations, recommendations, and calculations when designing for HP MJF.
Design for HP Multi Jet Fusion >
Recommended formats & resolutions
Learn how to convert a 3D model into a file for 3D printing, export from CAD, and repair STL files.
Process: Tuning your MJF to the design >
General recommendations
Discover how to optimize the printing process, keeping the printer in top condition, and obtain the desired results.
Process: Tuning your MJF to the design >
Process for accuracy
Here´s the best way to maximize accuracy during the printing process.
Process: Tuning your MJF to the design >
Process for aesthetic
Maximize the look and feel of parts when 3D printing with these recommendations on printing profiles, materials, and the printing process.
Process: Tuning your MJF to the design >
Process for mechanical properties
To enhance a part's mechanical performance, evaluate these aspects before printing.
Process: Tuning your MJF to the design >
Machining recommendations
Take full advantage of the HP MJF technology by following these design and process tips when machining a 3D printed part.
Innovative designs >
Design for interlocking parts
Garner design inspiration from this chapter that combines reference and instruction.
Innovative designs >
Hinges design
Learn more about various types and designs of hinges, and view a few examples.
Innovative designs >
Design for sound
An often-overlooked aspect of a 3D printed part is the sound it makes. Learn how you can deliberately design parts to produce certain sounds.
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