Crushing and screening parts, matched to the circuit.
Wear components for rock, sand, and gravel operations, specified against the abrasion and impact your circuit actually sees rather than against a catalog page.

Aggregate wear parts
What we pour here.
The same part number does not behave the same way in two plants, because the feed is different. A liner running clean river gravel is losing material to sliding abrasion; the same liner in shot rock is being gouged and hit. Those are two different material decisions, and getting it wrong the expensive way means either a part that wears out early or one that cracks.
Typical parts
- VSI shoes and anvils
- Blow bars
- Feed disks
- Chute liners
Materials
- High-chrome iron
- Alloy steel
Grades and mechanical properties on the data sheets
What decides the job
Three things worth settling before the quote.
01
Abrasion against impact
Hardness resists abrasion and toughness survives impact, and you cannot maximise both in one alloy. Where the part sits in the circuit decides which way the compromise goes.
02
Change-out time
A part that lasts twice as long is worth more than its price difference if replacing it stops the plant for a shift. That belongs in the conversation before the quote.
03
Fit and mounting
A wear part that does not seat correctly wears wrong regardless of the metal it is made from, so mounting and fit get checked against the machine it returns to.
How it gets made
Poured, treated, and inspected on one site.
Chemistry is read before tap, heat treatment runs to a written recipe, and UT · RT · MT · PA testing is done here rather than sent out. Everything stays tied to the heat number for 20 years.
Send the drawing or the specification.
Tell us what the part has to survive and engineering comes back with a material, a process, and a price.
Technical review within 48 hours