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APP Brochure

MIM Design Guide

Our quick guide walks you through design recommendations, typical attributes and material properties.

APP Brochure

APP Brochure

Development, Engineering, and Production of Precision Metal Components using Metal Injection Molding (MIM).

PrintAlloy

PrintAlloy®

Learn how to get metal components that have MIM metallurgical properties in 5-10 days.

ProtoMIM

ProtoMIM®

Learn how you can get Metal Injection Molded (MIM) Components in 3 to 6 weeks.

MIM Stainless Steel Alloy Selection Guide

MIM Stainless Steel Data Sheet

APP Material Data Sheet for MIM Stainless Steels.

MIM Low Alloy Steel Alloy Selection Guide

MIM Low Alloy Steel Data Sheet

APP Material Data Sheet for Low Alloy Steels.

Tool Steel Alloy Selection Guide

Tool Steel Data Sheet

APP Material Data Sheet for MIM Tool Steels.

Bioimplantable Alloy Selection Guide

Bioimplantable Data Sheet

APP Material Data Sheet for Bioimplantable Alloys.

White Paper - Don Heaney

White Paper - Don Heaney

Qualification Method Powder Injection Molded Components.

Metal Injection Molding of Co-28Cr-6Mo

Metal Injection Molding of Co-28Cr-6Mo

Metal injection molding of gas- and water-atomized Co-28Cr6Mo powders is evaluated.

White Paper

Mechanical Properties of Metal Injection Moulded 316L Stainless Steel

Stainless steel 316L MIM components can be made from either prealloyed powders or from master alloys blended with carbonyl iron powder.

White Paper

Mechanical Properties Comparison (MIM) and (Printalloy®) 17-4PH components

APP has developed a 3-D metal powder printing technology and is able to produce low cost metal components.

White Paper - Investment Casting

MIM vs Investment Casting

Learn about the Advantages of Metal Injection Molding.

White Paper - Nickel & Molybdenum P/M Steels

Nickel & Molybdenum P/M Steels

The effect of nickel on the mechanical behavior of molybdenum P/M steels.

White Paper -

White Paper

Comparison of Metal Injection Molding (MIM) mechanical properties of low-alloy steels 4140 and 4605.

Printalloy® 3-D Metal Powder Printing – Initial Capabilities

Printalloy® 3-D Metal Powder Printing – Initial Capabilities

APP has developed a 3-D metal powder printing technology and is able to produce low cost metal components that meet the metallurgical properties of MPIF Standard 35 for metal injection molding.

Surface Finish Comparison between Metal Injection Molded (MIM) and 3D Printed (Printalloy®) 17-4PH components

Surface Finish Comparison

Surface Finish Comparison between Metal Injection Molded (MIM) and 3D Printed (Printalloy®) 17-4PH components.

Defect-free Sintering of Two Material Powder Injection Molded Components (Part I)

Defect-free Sintering (Part I)

This paper describes an experimental technique to determine the suitability of two materials to be combined via PIM.

Defect-free Sintering of Two Material Powder Injection Molded Components (Part II)

Defect-free Sintering (Part II)

In this paper, a model to ascertain the suitability of material systems to be co-sintered without defects such as delamination or interface pores is presented.

Isotropic Forming of Porous Structures via Metal Injection Molding

Isotropic Forming of Porous Structures

Porous 316L stainless steel structures have been fabricated via metal injection molding (MIM) for both water- and gas-atomized powders.

Binder Jet 3d Metal Printing

Binder Jet 3d Metal Printing

Binder jet 3D metal printing is the ultimate bridge between prototypes and production of metal injection molded parts.

Creating a MIM Component For Better Dental Surgery Outcomes

Creating a MIM Component For Better Dental Surgery Outcomes

Learn how APP developed a critical component for a leading dental OEM.

Quality Certifications - ISO 9001

Quality Certifications

Advanced Powder Products ISO 9001 Quality Certification

Quality Certifications - ISO 13485:2016

Quality Certifications

Advanced Powder Products ISO 13485 Quality Certification