Multi-cavity moulds designed for precision and performance

At SIMON, we design and manufacture multi-cavity moulds tailored to a wide range of industries. Thanks to our in-depth expertise in the technical constraints specific to these tools, we deliver a high level of precision and performance — from design to mould machining.

We guarantee the precision, reliability, and repeatability of the cavities, even for complex parts with tight tolerances.

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Our strengths

Because we understand our clients’ production constraints, in the event of breakage or wear, we offer interchangeable cavities or replaceable cavity inserts, thus minimizing production downtime and avoiding complete mould stop.

Committed to a true partnership with our clients, we apply our expertise to meet their industrial requirements, ensuring continuity, quality, and productivity.

Contact us

+33 3 84 42 11 97

From our form

SIMON SAS

Our high-performance injection moulds
Versatility, precision, and productivity.Discover our range of moulds designed to meet the most demanding requirements of the plastics industry. Each solution is designed to combine technical performance, durability, and production speed.
FAQ

Multi-cavity moulds

A multi-cavity mould is a tool designed to produce multiple parts with each injection cycle. Each cavity forms an individual part.

This type of mould is ideal for high-volume production, as it significantly increases productivity while reducing the unit cost.

At SIMON, these moulds are engineered with exceptional precision to ensure repeatability and uniformity of the parts, even in complex configurations or with tight tolerances.

SIMON’s multi-cavity moulds offer numerous advantages: time savings on each cycle, reduced production costs, optimized material usage, and high dimensional accuracy.

Thanks to our expertise, we ensure long-term cavity stability, extended durability, and compatibility with demanding materials such as recycled or bio-based plastics.

Our tooling solutions are tailored to meet the requirements of the most demanding sectors, including cosmetics, food, and technical industries.

Yes, this is one of the key features of SIMON moulds. In the event of wear or a defect on a cavity, we design interchangeable cavity inserts that allow for quick intervention without disassembling the entire mould.

This solution significantly reduces production downtime and ensures greater tool availability. It is especially valued in industrial environments where continuous production is critical.

Precision is ensured through a fully controlled process: 3D CAD-assisted design, high-precision machining, in-house metrology-based quality control, and IMM testing.

Each mould is fine-tuned and validated to guarantee perfect repeatability of injected parts. Even with complex geometries, our moulds maintain tight tolerances and consistent quality. This makes SIMON a trusted partner for high-demand technical production.

SIMON designs multi-cavity moulds for a wide range of industrial sectors: cosmetics (bottles, caps, lids), food (thin-wall packaging, seals), healthcare (technical components), and industry (functional parts).

Each mould is tailored to your specific requirements in terms of output rate, material, and precision. With our custom approach, we support both major groups and manufacturers seeking optimization and performance.

Discover SIMON’s Expertise

We develop custom injection moulds for complex or high-speed applications.

Multi Cavity
Moulds

Responds to high production volumes. Increased productivity & optimized part price.

Thin Wall
Moulds

Ultra-fast cycle times, precision centering and the ability to produce and decorate packaging at the same time.

Stack
Moulds

Double the output while maintaining the size of the injection molding machine.

Unscrewing
Moulds

Ideal for technical or tight plastic threads. Electric unscrewing to guarantee precise release and repeatability.

Moulds With
Inserts

Industrial flexibility thanks to the possibility of using a single base mould for several cavity sizes.

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Copyright ©2026. All rights reserved.