Recent Posts
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Meet TYM at K 2025 -The World’ s No.1 Trade Fair for Plastics and Rubber
Welcome to the World’s No.1 Trade Fair for Plastics and Rubber -K 2025, taking place from October 8–15, 2025 at Messe Düsseldorf, Germany. As a professional LSR injection molding machine, mold, and robot solution provider, TYM Technology Co., Ltd. is proud to present our latest innovations at Booth 16E77.
09/23/2025
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ISO 9001, CE, CCC: What These Certifications Actually Mean for Your Equipment Purchase
When you're evaluating LSR injection molding machines from an overseas supplier, certification logos on a company website can start to blur together. ISO 9001, CE, CCC — they all sound reassuring, but they don't all mean the same thing, and they don't all matter for the same reasons. Understanding what each certification actually covers will help you ask better questions during due diligence and avoid assuming a certificate guarantees something it doesn't.
07/17/2026
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Turnkey LSR Injection Molding Solutions
Launching a liquid silicone rubber (LSR) injection molding operation involves far more than simply purchasing a machine. From material selection and mold design to automation integration and staff training, the journey from concept to full-scale production presents numerous challenges—each with the potential to delay your time-to-market and inflate your budget.
07/14/2026
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Industrial Silicone Seals & Waterproof Parts: LSR Guide
This guide helps product and sourcing engineers who need reliable industrial sealing components-gaskets, O-rings, grommets, and enclosure seals-understand why LSR injection molding is the preferred process for waterproof parts at volume, and how to specify them.
07/10/2026
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LSR Prototype to Production: Timeline & Process
A typical liquid silicone rubber (LSR) part moves from prototype to mass production in about 10-18 weeks, spanning design/DFM, prototyping, production mold fabrication, T1 sampling and validation, and pilot-to-ramp - with mold build and validation being the longest stages.
07/07/2026
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LSR Injection Molding Machine Parameters Explained
An LSR injection molding machine spec sheet lists dozens of numbers, but only a handful decide whether your silicone parts cure fully, stay flash-free and cost little to run. This 2026 guide explains the parameters that matter most, so engineers and buyers can compare machines on the specs that actually affect part quality, not marketing figures.
07/02/2026
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Automatic vs Semi-Automatic Silicone Molding Lines
This guide is for production and procurement decision-makers sizing a new LSR line—comparing the two configurations across throughput, quality, cost, and payback so you can match the investment to real demand.
07/01/2026
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LSR Cold Runner Systems: Cut Waste & Cost
LSR cold runner system is the single fastest way to cut material waste and labor out of liquid silicone rubber molding. By keeping the silicone liquid until it reaches the cavity, it eliminates cured runners and trimming entirely. This guide helps process engineers and buyers decide when a cold runner pays for itself.
06/30/2026
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How to Select LSR Injection Molding Machine Tonnage
Choosing the right clamping force is the single most consequential spec decision when buying a liquid silicone rubber (LSR) injection molding machine. Pick too little and you fight flash on every shot; pick too much and you pay for energy and floor space you never use.
06/29/2026
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Liquid Silicone Rubber Market 2026: Size, Growth & Demand Drivers
The global liquid silicone rubber (LSR) market is valued at roughly USD 3.4-3.8 billion in 2026 and growing about 7-9% annually, led by medical-grade demand (~44% of revenue) and rising EV production. Asia-Pacific dominates manufacturing capacity.
06/26/2026
The Core Technology of TYM Solid-to-Liquid Silicone Molding Equipment
Solid-to-liquid silicone molding technology is a new type of silicone processing technology, which can directly convert solid silicone into liquid silicone for injection molding, avoiding the complex process of traditional solid silicone processing and improving production efficiency. TYM, as a leader in the field of silicone intelligent equipment, has independently developed core technologies for solid-to-liquid silicone molding equipment, breaking through technical bottlenecks and providing efficient and energy-saving solutions for enterprises.
The core technology of TYM solid-to-liquid silicone molding equipment is the integrated solid-to-liquid conversion system, which adopts advanced heating and mixing technology to quickly convert solid silicone into uniform liquid silicone without adding any additives, ensuring the purity and performance of the silicone material. The conversion system has a high conversion efficiency, which can complete the conversion of solid silicone into liquid silicone in a short time, and the conversion temperature is controllable, avoiding the damage of silicone material performance caused by excessive temperature.
Another core technology is the high-precision injection control system. TYM solid-to-liquid silicone molding equipment is equipped with a high-precision screw and sensor, which can accurately control the injection amount, injection speed and pressure, ensuring the uniformity and consistency of product quality. The system can automatically adjust parameters according to the characteristics of the silicone material and the requirements of the product, avoiding product defects caused by parameter fluctuations, and improving the qualification rate of products.
In addition, TYM solid-to-liquid silicone molding equipment also adopts intelligent control technology and energy-saving technology. The intelligent control system can realize automatic feeding, conversion, injection and molding, reducing manual operation links and improving production efficiency. The energy-saving system adopts advanced frequency conversion technology, which can reduce energy consumption by 20%-30% compared with traditional equipment, reducing production costs for enterprises. TYM’s core technologies have obtained multiple national patents, and the equipment has the advantages of high efficiency, energy saving, and high precision, which are widely used in various fields such as electronics, automotive, and medical care.
