The Pilger Die is more than just a tool; it’s the beating heart of cold tube reduction. Crafted with incredible hardness and precision down to the micron level, it takes raw metal and turns it into seamless, high-strength tubes. Designed to meet the rigorous demands of stainless steel, titanium, and special alloys, Pilger Dies provide an unmatched surface finish and consistent dimensions—cycle after cycle.
Whether it’s for medical implants or aerospace-grade tubing, when perfection is a must, Pilger Dies to ensure excellence with every single pass.
Shaping The Future Of Tubing – Pilger Dies Built For Extreme Precision And Performance.A Pilger Die Plays A Crucial Role In The Cold Pilgering Process, Which Is All About Precisely Reducing The Diameter And Wall Thickness Of Metal Tubes. It Works By Applying A Series Of Compressive Forces As The Tube Moves Between The Die And The Mandrel. This Technique Is Vital For Creating Seamless Tubes That Meet Tight Tolerances And Boast Excellent Surface Finishes. You’ll Find Pilger Dies Bein Continue
Pilger Dies Are Precision Tools Used In Cold Pilger Mills To Effectively Reduce And Shape Metal Tubes With Remarkable Accuracy. At Velani Metal Industries, We Offer Pilger Dies That Are Not Only Durable But Also Resistant To Wear, Crafted From Premium Tool Steel. Our Offered Range Is Manufactured Using Optimum Quality Components And Advanced Technology Under The Vigilance Of Skilled Professionals. Apart From This, Provided Range Is Praised In The Market For Its Easy Usage And Sturdiness. This Gu Continue
We Are Remarkable Company, Engaged In Offering Superior Assortment Of Pilger Die Which Is Known For Its Flawless Range, This Range Of Products Is Available In Various Specifications To Our Customers. Our Offered Range Is Also Verified On Several Testing Parameters In Accordance To The International Quality Standards. The Provided Range Is Incredibly Much Appreciated By Our Clients For Its Optimum Performance. Also, Our Offered Range Can Be Availed By Our Clients At Reasonable Rates. Continue