Engineered to Fit, Designed to Perform
AGM H2OLock injection molded desiccants may be produced in virtually any shape or size, allowing their integration directly into existing components and assemblies. As a result, injection molded desiccants become a design component themselves, as opposed to traditional desiccants that otherwise require protective housing and separate installation. This revolutionary approach not only simplifies assembly but also maximizes space efficiency, making it particularly valuable in applications where every millimeter counts, such as aerospace systems and compact electronic devices.
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Strong and Durable
The exceptional structural properties of H2OLock injection molded desiccant set it apart from conventional alternatives, with impressive compressive strength of 6000 PSI and flexural strength of 2000 PSI. This remarkable durability means the material can serve as a load-bearing component while simultaneously providing superior moisture protection, effectively eliminating the need for separate structural and desiccant elements. This dual functionality not only reduces material costs and assembly complexity but also enhances overall product reliability by minimizing potential failure points.
AGM’s H2OLock Injection Molded Desiccant:
- Maximizes space efficiency in confined designs
- Can be molded into any shape or size through injection molding
- Functions as both a structural and moisture control element
- Delivers consistent moisture protection across the entire component
- Reduces assembly time and costs by integrating moisture control directly into components
- Eliminates the need for separate structural supports and protective housings

Adsorption in Any Shape
The performance capabilities of this desiccant are equally impressive, featuring an outstanding moisture capacity of 2.50 g/in³ that ensures reliable protection in even the most demanding environments. The synergistic combination of the 4A molecular sieve and hygroscopic nylon binder creates a uniform distribution of desiccant properties throughout the material, resulting in consistent moisture management across the entire component. This makes it particularly valuable in critical applications such as pharmaceutical packaging, sensitive electronics, and aerospace instruments, where maintaining precise moisture control can mean the difference between success and failure.