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Metal Castings

AMFAS offers a wide range of metal castings capabilities. We have extensive knowledge in die casting and employ many modern technologies to ensure that you part will perform to your expectations. We also provide parts that have been sandcast or investment cast. See our full capabilities below:

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Die Casting

Die Casting is a similar process to that of injection molding. A die or mold is used to inject molten metal into the tool which then cools until the part can be removed and handled without distortion. This is typically used for high-volume applications due to the tooling investment being typically between $10K to $100K for the mold die. The mold die is commonly made from high performance tool steels, and its lifespan consists of millions of shots until the steel tool begins to deteriorate.

Deterioration of a mold die is due to the high temperatures of the molten metals, and the constant heating/cooling of the steel die which causes the steel to progressively crack on its outer surfaces until the cast part is no longer acceptable. AMFAS has often refurbished sections of the tool to save our customers the expense of a new tool. Parts produced from diecasting are very consistent and offer the lowest cost to cast a part.

Equipment: 280T to 2000T high pressure die casting machines, robotic material handling, centralized furnace, and dumping furnaces.

Die Casting Capabilities

Thinnest Wall Thickness
0.8–1.0mm (.03")
Largest Size
1000 × 500mm (40" × 20")
Minimum Weight
20g (0.04 lb)
Maximum Weight
25kg (55 lb)
Materials
Aluminum alloys, Brass, Bronze, Magnesium alloys, Zinc alloys

Mold Flow Analysis

Amfas uses the most modern and effective simulation tools to ensure you receive an ideal finished casting. Mold flow simulation is accurate in determining a casting’s final quality prior to building any tooling. This results in time, material, and tooling savings up front.

Sand Casting

In the case of sand casting, sand as the mold die. A pattern of the actual part is made typically from wood or metal with two halves representing the part needed. These patterns are then used to make a temporary die made of sand. A binder is added to the sand which causes the sand to stick together when compressed. The two halves of the sand mold are joined together, and the molten metal is poured into the sand mold. Within a few minutes the metal cools and the sand mold is removed using vibration and mechanical means (hammer, chisel, etc.), being careful not to damage the casting. The sand is then pulverized, sifted, and reused.

Sand Casting Molds
investment casting

Investment Casting

Investment casting offers high precision and repeatability but tends to be labor intensive. Wax or Styrene patterns are molded which represent the actual part desired. These patterns are then bonded to a tree using the same wax or molten styrene in order to simultaneously cast as many parts as possible. This tree comprising of parts is dipped into a thin mud slurry to provide a coating on all the surfaces. The mud coating will reveal the smallest details of the part when casting. Once dry, the coated tree is packed into a cylinder and packed with sand to support the coated parts. The container is then placed into a very hot furnace to melt and burn out the wax, or styrene, patterns. Immediately after removal from the furnace, the molten metal is poured into the hollow tree. Vacuum at the base of the sand/coating container removes air that may cause imperfections. The parts are allowed to cool and are then removed from the sand/investment using mechanical means. The sand is easily vibrated loose and reused. The tree must often be cut with saws and the coating chipped away carefully with impact tools. The process can be very labor intensive and involve high skill levels, however,

Investment casting can produce parts in almost any metal with features that cannot be easily machined or diecast.

Amfas will advise the best casting option given the material, part geometry, volumes, and other considerations. With extensive experience in all types of casting, we will provide the best value option for your needs.

Gravity Casting

At Amfas, Gravity Casting is a core metal casting capability designed to deliver structurally sound, cost-efficient components for OEM and industrial applications. Also known as Permanent Mold Casting, this process involves pouring molten metal into reusable steel molds using gravity alone—without external pressure. The result is improved mechanical strength, better dimensional consistency, and reduced porosity compared to traditional sand casting.

Our process begins with precision mold design and preparation. The permanent mold is preheated and coated to ensure optimal metal flow and smooth release. Molten metal—most commonly aluminum alloys—is then poured into the mold cavity. Because the mold is reusable and metallic, it provides controlled cooling and repeatable production cycles, resulting in consistent part quality across medium-volume runs.

Amfas primarily supports aluminum gravity casting due to aluminum’s strength-to-weight ratio and corrosion resistance. We also work with other alloys based on application requirements. Gravity casting offers a strategic balance between sand casting and high-pressure die casting—providing stronger parts and better surface finish than sand casting, while requiring lower tooling investment than pressure die casting.

Typical applications include automotive housings, pump and valve bodies, gear housings, brackets, and industrial structural components. The process is ideal for parts requiring moderate wall thickness, heat treatment capability, and secondary machining.

gravity casting

Frequently Asked Questions

We combine U.S.-based engineering expertise with global foundry networks in Asia and Mexico, optimizing cost, quality, and production efficiency for OEMs.

Amfas offers a multi-process foundry model — including sand, investment, and gravity casting — all managed under U.S.-led engineering oversight for consistent quality.

Every batch undergoes dimensional checks, metallurgical testing, and process validation under our U.S.-supervised quality system. Amfas engineers stationed on-site verify cast integrity before shipment.

Yes — our engineering team collaborates early to refine casting designs, reduce defects like porosity or shrinkage, and improve mold performance.

With multi-region foundry capacity, local stocking programs, and streamlined logistics, we shorten production cycles and accelerate delivery for OEM customers.

We cast aluminum, stainless steel, carbon steel, and ductile iron, with post-process options including CNC machining, shot blasting, powder coating, and plating. Amfas has also developed custom alloy formulations for critical performance requirements.

We strategically balance production between Mexico and Asia, ensuring tariff-safe sourcing, continuity, and predictable landed costs.

Yes — from design and pattern development to melting, machining, finishing, and logistics, we manage the complete lifecycle under one quality-managed system with continuous audits.

Our global foundry network supports low to high-volume runs, allowing OEMs to scale production efficiently without compromising timelines or quality.

Because Amfas delivers foundry precision with engineering control — combining global scale, process versatility, and consistent U.S.-led quality assurance.

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