At Metalstar Prototype, we firmly believe that metal stamping is the optimal fabrication technique for bringing our clients' prototype designs to life. This versatile manufacturing process allows us to achieve a level of repeatability that simply isn't possible with many other methods, ensuring that each and every part we produce meets the exacting standards you require.
But the advantages of metal stamping go well beyond consistency. Through the strategic application of our specialized tools and presses, we can create highly complex part geometries while maintaining impressively tight tolerances. In fact, the parts we produce often exceed the manufacturing specifications laid out by our clients, delivering an unparalleled level of quality and precision.
Of course, rapid turnaround is also a crucial factor when it comes to prototype development. That's why we're proud to offer our clients exceptionally short lead times, with deep-drawn stamping parts delivered in just 10 to 15 working days for quantities up to 200 units. This lightning-fast production schedule is made possible by our robust manufacturing capabilities and our team's unwavering commitment to efficiency.
Underpinning it all, however, is our unyielding dedication to quality control. At every stage of the fabrication process, we implement rigorous inspection and testing procedures to guarantee that the finished parts exceed your expectations. This steadfast focus on quality assurance means you can have complete confidence in the parts we deliver, knowing that they will perform flawlessly in your applications.
With Metalstar Prototype, you can rest assured that your prototype designs will be brought to life with unparalleled precision, consistency, and speed. It's a level of service that simply can't be matched, and it's why we're the trusted partner of choice for discerning clients across a wide range of industries.
Material properties of some often used raw materials for deep drawn stamping prototype parts for reference.
Steel Material Properties | |||||||||
Material Grade/Description | Chemical Composition (weight %) | Tensile strength (Mpa) |
Yield strength (Mpa) |
Elongation | Remarks | ||||
(C) | (P) | (Mn) | (S) | (Si) | |||||
SAPH440 | <=0.21 | <=0.03 | <=1.5 | <=0.025 | <=0.30 | >=440 | >=305 | >=34% | |
SAPH590 | <=0.10 | <=0.02 | <=2.2 | <=0.01 | <=1.5 | >=590 | >=420 | >=20% | |
SS304 | <=0.08 | <=0.05 | <=2.0 | <=0.03 | …… | >=520 | >=310 | >=40% | |
SS316 | <=0.08 | <=0.04 | <=1.5 | <=0.04 | <=1.5 | >=520 | >=205 | >=40% | |
SS409 | <=0.08 | <=0.045 | <=1.0 | <=0.03 | <=1.0 | >=360 | >=175 | >=25% |