Leveraging the Virtual Twin Experience for Decarbonization in the Metals Industry
In this article, Prashanth Mysore, Senior Director for Strategic Business Development at DELMIA, explores how Virtual Twin technology can transform your business operations, whilst also addressing decarbonization.
Practical Steps for Measuring and Reducing Your Business' Carbon Footprint
In this guide, we walk you through some basic concepts and provide a step-by-step guide for how best to decarbonize your operations quickly and on a tight budget.
Measuring your carbon emissions now
Measuring carbon emissions might seem "optional", but you'll gain significant advantages from it in the short and long-term. Here, we give you a step-by-step outline of why collecting carbon emissions data is important, and how to measure it most effectively.
How 3D Printing Can Dramatically Reduce Carbon Emissions in the Manufacturing Industry
The technology can cut carbon emissions in the four areas where traditional manufacturing cranks out carbon by the metric ton: materials, manufacturing, warehousing, and transportation.
Using Sustainable Product Configuration to Enable Customer Choice
Traditionally, when we think about the cost of a product, we're thinking mainly in financial terms. But this isn't the only form of cost. Increasingly, a new measure that's taking on more importance for buyers - and regulators - is the carbon footprint cost.
Carbon Offsetting for Manufacturing Facilities
Given the advanced state of anthropogenic climate change and widespread awareness of its human impact, it's time for manufacturing to adopt carbon offsetting practices.
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Featured Product

T.J. Davies' Retention Knobs
Our retention knobs are manufactured above international standards or to machine builder specifications. Retention knobs are manufactured utilizing AMS-6274/AISI-8620 alloy steel drawn in the United States. Threads are single-pointed on our lathes while manufacturing all other retention knob features to ensure high concentricity. Our process ensures that our threads are balanced (lead in/lead out at 180 degrees.) Each retention knob is carburized (hardened) to 58-62HRC, and case depth is .020-.030. Core hardness 40HRC. Each retention knob is coated utilizing a hot black oxide coating to military specifications. Our retention knobs are 100% covered in black oxide to prevent rust. All retention knob surfaces (not just mating surfaces) have a precision finish of 32 RMA micro or better: ISO grade 6N. Each retention knob is magnetic particle tested and tested at 2.5 times the pulling force of the drawbar. Certifications are maintained for each step in the manufacturing process for traceability.