Bromobutyl rubber pistons Description
Characteristics of medical bromobutyl rubber pistons
Biocompatibility: Medical bromobutyl rubber must pass rigorous biocompatibility testing to ensure that it does not cause adverse reactions when in contact with the human body.
High airtightness: In medical devices such as ventilators and anesthesia machines, airtightness is crucial. Bromobutyl rubber pistons provide excellent airtightness and prevent gas leakage.
Chemical resistance: Medical devices are often exposed to a variety of disinfectants and cleaning agents, and bromobutyl rubber pistons are resistant to these chemicals.
High temperature and steam resistance: Bromobutyl rubber pistons are stable during the high-temperature sterilization of medical devices and will not be deformed or damaged by high temperatures.
Aging and UV resistance: Medical bromobutyl rubber pistons have good aging resistance and can maintain performance even after prolonged use and multiple sterilizations.
Elasticity and resiliency: In medical devices, pistons need to maintain a good seal under pressure changes, and the elasticity and resilience of bromobutyl rubber ensure this.
| Product name | Bromobutyl rubber pistons |
| Product material | Chlorobutyl rubber or bromobutyl rubber |
| Hardness (Shore A) | 60 to 90 Shore A |
| Applicable temperature °C | -200°C to +260°C |
| Color | Black, orange, blue, yellow, green, custom |
| Size | Standard/ Custom |
| Advantage | High-temperature resistance, wear resistance, corrosion resistance |
| Application | Medical syringes |
| Certification | ISO: 9001, ISO: 14001, IATF: 16949 |
Application of medical bromobutyl rubber pistons
Syringes and syringes: Medical bromobutyl rubber pistons are used to make the pistons of syringes to ensure precision and tightness when injecting drugs.
Respiratory equipment: In ventilators and anesthesia machines, bromobutyl rubber pistons are used to control the flow of gases and ensure the safety and effectiveness of patient breathing.
Hemodialysis machine: During hemodialysis, bromobutyl rubber pistons are used to control the flow of blood and dialysate to ensure the safety of the dialysis process.
Medical device seals: In various medical devices, such as endoscopes, surgical instruments, etc., bromobutyl rubber pistons are used as seals to prevent cross-infection.
Manufacturing process
Raw material selection: Choose brominated butyl rubber suitable for medical use, ensuring its purity and biocompatibility.
Formulation design: According to the specific requirements of medical equipment, the formulation of bromobutyl rubber is designed, and the necessary additives are added to improve the performance.
Mixing and mixing: Bromobutyl rubber is mixed with additives and homogeneously mixed by a rubber mixer.
Molding: The rubber is molded into the desired piston shape using specific molds and processes.
Vulcanization: Through the vulcanization process, the rubber is made to achieve the desired hardness and elasticity.
Post-processing: including cleaning, grinding, inspection, and packaging, ensuring that each piston meets the high standards of the medical industry.

Maintenance and benefits
Easy to clean and disinfect: Bromobutyl rubber pistons are easy to clean and can withstand multiple disinfection methods.
Long life: Due to its chemical resistance and aging resistance, bromobutyl rubber pistons have a long service life.
Reduced maintenance costs: Due to its durability, the maintenance cost and frequency of replacement of medical equipment is reduced.
Improved patient safety: By providing reliable sealing performance, bromobutyl rubber pistons help improve the overall safety of medical devices.
Conclusion
Medical bromobutyl rubber pistons are an indispensable component in medical devices, and their superior performance provides a safe, reliable, and efficient solution for the medical industry. With the development of medical technology and the improvement of performance requirements for medical devices, bromobutyl rubber pistons will continue to play an important role in ensuring patient safety and improving medical efficiency.
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