Hongrita spotlights LSR molding capabilities at FAKUMA 2026
Hongrita will exhibit at FAKUMA 2026 in Friedrichshafen, Germany, from Oct. 12-16, 2026, using the plastics-processing trade show to present its liquid silicone rubber and liquid injection molding capabilities. The company is highlighting high-cavitation tooling, an in-house valve cold-runner system, and integrated molding cells as buyers weigh project-specific requirements.
Why it matters: - FAKUMA 2026 gives buyers a place to compare liquid silicone rubber and liquid injection molding suppliers inside a broader plastics-processing setting. - Hongrita is using the show to position its LSR/LIM capabilities for sourcing teams that need to evaluate tooling, process control, and production-cell design. - The company’s long-running presence at FAKUMA signals continuity in the European plastics market.
What happened: - Hongrita is listed as an exhibitor at FAKUMA 2026 in Hall A5, Stand A5-5218 at Messe Friedrichshafen. - The show runs from Oct. 12 to 16, 2026, in Friedrichshafen, Germany. - Hongrita has participated in FAKUMA continuously since 2014. - Hongrita is presenting itself as a leading liquid injection molding manufacturer from China. - More information is available in the company’s announcement.
The details: - Hongrita says its LSR/LIM scope includes high precision, reduced flash and waste, shorter cycle times, and consistent quality. - The company also lists multi-component molding and overmolding among its LSR/LIM capabilities. - Hongrita uses an in-house-developed valve cold-runner system for LSR molds. - The runner system is designed to support very complex LSR parts with finer details and tighter tolerances. - Hongrita says the system also supports controlled material delivery in high-cavitation and multi-material tooling. - Hongrita’s tooling scope includes high-cavitation LSR, two-component LSR/LSR, and LSR/thermoplastic configurations. - One published example, the LSR Harness Plug, uses 64 cavities, LSR hardness 40, and a 20-second cycle. - That example combines automatic and ejection-system demoulding with a no-flash configuration. - The Harness Plug is described as a sealing grommet for wire harnesses in automotive, electronics, and home-appliance applications. - Another published example, the 2K LSR Pacifier Mold, uses 4+4 cavities, an LSR+LSR material combination, and a 45-second cycle. - Hongrita’s equipment-integration scope combines patented molds, customized molding machines, turntables, self-developed supporting equipment, and detection and control systems. - The company says detection systems, control systems, and management software connect anomaly identification, process actions, and production management in one environment.
Between the lines: - FAKUMA’s focus on injection molding, extrusion, tools, materials, process engineering, and services makes the show a natural place to test whether Hongrita’s technical claims fit a specific project. - The published tooling examples show how Hongrita frames its capabilities around cavitation, cycle time, and demolding, but those figures are part-specific and not a universal benchmark. - Hongrita’s emphasis on integrated cells suggests it wants to be evaluated as a systems supplier, not just a mold maker. - The company’s 2022 Shenzhen Specialised and New SMEs designation and its historical LSR development milestones add company context, but buyers still need current validation data for any new program.
What's next: - Sourcing teams can use the FAKUMA meetings to test how Hongrita would approach part geometry, material selection, cavity balance, curing behavior, flash control, and demolding. - New projects will still require mold-design review, material confirmation, process planning, inspection criteria, and production-cell definition. - Buyers should treat Hongrita’s published examples as reference points and verify whether the same approach applies to their own parts.
The bottom line: - Hongrita is using FAKUMA 2026 to present a broad LSR/LIM capability set, but the real decision point remains whether its tooling and process setup can be validated for each specific part.
Disclaimer: This article was produced by AGP Wire with the assistance of artificial intelligence based on original source content and has been refined to improve clarity, structure, and readability. This content is provided on an “as is” basis. While care has been taken in its preparation, it may contain inaccuracies or omissions, and readers should consult the original source and independently verify key information where appropriate. This content is for informational purposes only and does not constitute legal, financial, investment, or other professional advice.
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