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Silicone Compression Molding

HCR / SOLID SILICONE · MANUFACTURING CAPABILITY

Compression Molding for Custom Silicone Parts

Controlled heat, pressure and cure cycles for durable custom components, thick sections and cost-effective production.

Request a Drawing ReviewExplore Products
Drawing-led engineeringMaterial-specific reviewPrototype to productionProject-defined inspection
PROCESS OVERVIEW

How the Process Supports Your Part

Compression molding places a measured charge of high-consistency silicone rubber into a heated precision tool. The press closes, the material flows through the cavity, and the part cures under defined time, temperature and pressure. It is a practical route for robust geometries, larger components, fabric-reinforced parts and programs that value tooling economy.

Final feasibility, tolerance, tooling and test recommendations are confirmed after reviewing the actual drawing, material and service environment.

LSAN Silicone project evidence

LSAN Silicone supports custom silicone component development from Nanjing, China, drawing on more than 30 years of silicone manufacturing experience and a 5,000 m² production facility.

Company information last reviewed August 2026. Process claims and material declarations are supplied only when supported by the specific project documents.

BEST-FIT COMPONENTS

Where This Capability Adds Value

Gaskets, seals and O-rings

Reviewed around geometry, material behavior, service conditions and measurable acceptance criteria.

Bellows, boots and protective covers

Reviewed around geometry, material behavior, service conditions and measurable acceptance criteria.

Vibration isolators and thick molded parts

Reviewed around geometry, material behavior, service conditions and measurable acceptance criteria.

Fabric-reinforced diaphragms

Reviewed around geometry, material behavior, service conditions and measurable acceptance criteria.

Low- to medium-volume industrial programs

Reviewed around geometry, material behavior, service conditions and measurable acceptance criteria.

Parts requiring inserts or secondary trimming

Reviewed around geometry, material behavior, service conditions and measurable acceptance criteria.

RFQ INPUTS

Information Our Engineers Need

Clear inputs reduce assumptions, shorten DFM review and produce a more meaningful quotation.

Part data2D drawing plus STEP/STP model or a dimensioned sample
MaterialHCR silicone grade, cure system and required declarations
HardnessTarget Shore A and acceptable range
PerformanceTemperature, media, pressure, compression and service life
AppearanceColor, surface finish, flash limit and cosmetic zones
VolumePrototype quantity, annual demand and order pattern
DESIGN GUIDANCE

DFM Points Reviewed Before Tooling

  • Place parting lines away from sealing and visible surfaces.
  • Use consistent walls and practical radii to support material flow and release.
  • Define critical dimensions separately from reference dimensions.
  • Call out insert preparation, bonding requirements and pull-out expectations.
  • Agree on flash, gate evidence and post-cure requirements before tooling release.
QUALITY PLANNING

Controls Defined Around Part Risk

  • Incoming material identity and lot traceability
  • Tool-temperature and cure-cycle control
  • First-piece and in-process dimensional inspection
  • Visual inspection for flash, voids, short fill and contamination
  • Project-specific post-cure and functional testing

Any dimensional capability, inspection frequency or certification statement must be agreed for the actual part and material.

DEVELOPMENT PATH

From Drawing Review to Repeatable Production

Drawing and requirement review

Document decisions and release the next stage only after review.

Material and molding-route recommendation

Document decisions and release the next stage only after review.

DFM, shrinkage and parting-line review

Document decisions and release the next stage only after review.

Tool design and approval

Document decisions and release the next stage only after review.

First-article molding and dimensional report

Document decisions and release the next stage only after review.

Process validation and controlled production

Document decisions and release the next stage only after review.

APPLICATION CONTEXT

Industries and Application Scenarios

Medical equipment housings and seals

Material and process recommendations remain project-specific.

Aerospace environmental protection

Material and process recommendations remain project-specific.

Defense and ruggedized electronics

Material and process recommendations remain project-specific.

Robotics bellows and vibration control

Material and process recommendations remain project-specific.

Industrial valves and machinery

Material and process recommendations remain project-specific.

Food-processing equipment components

Material and process recommendations remain project-specific.

Industry references describe typical application contexts and do not imply approval for a regulated end use.

ENGINEERING FAQ

Common Questions

When is compression molding preferred?

It is often selected for HCR silicone, larger or thicker parts, reinforced structures and programs where robust tooling economics matter more than the fastest cycle time.

Can you mold complex shapes?

Yes, provided draft, undercuts, parting strategy, venting and demolding are reviewed during DFM.

Can inserts be molded in?

Metal, plastic or fabric inserts may be possible after reviewing thermal compatibility, surface preparation and mechanical retention.

Is post-curing always required?

No. The need depends on material, cure system, application and customer specification.

What is needed for a quotation?

Send a drawing or sample, material and hardness target, service conditions, annual volume and required inspection documents.

START A PROJECT

Send Your Drawing for Engineering Review

Tell us what the component must do, where it operates and how many parts you need. Our team will review the manufacturing route and the assumptions that need confirmation.

Recommended attachment: STEP/STP or PDF drawing with material, hardness, tolerances, service environment and annual quantity.

Request a Quote

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