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Anti-collision Silicone Block for Charging Piles

Anti-collision Silicone Block for Charging Piles, Medical-Grade Silicone, Safe, Reliable and Durable
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  • Anti collision silicone pad

  • Qiniu

Medical Device Silicone Accessory - Anti-Collision Silicone Pad

The medical device anti-collision silicone pad is a medical-grade silicone protective accessory exclusively designed for various medical devices, integrally compression-molded from medical-grade silicone rubber. It is primarily used for buffer protection of collision-prone parts of medical device bodies, edges, corners and operation ends, integrating the properties of high elasticity and shock absorption, impact resistance, wear and slip resistance, and disinfection resistance. Adapted to the anti-collision needs of medical devices including monitors, physiotherapy instruments, surgical equipment, rehabilitation devices and clinical analyzers, it not only protects device housings and precision components from collision damage, but also avoids bump damage and abnormal noise caused by contact between the device and walls, hospital beds, cabinets and the human body. Complying with medical hygiene and device protection standards, it is a commonly used matching part for the overall protection of medical devices.

Core Material Properties

The entire product is made of medical-grade silicone rubber—methyl vinyl silicone rubber for standard versions, and custom modified reinforced versions for wear-resistant and high-impact scenarios. All versions comply with medical biocompatibility standards including ISO9001 and FDA, being plasticizer-free, odorless and free of harmful substance leaching. Its core properties are tailored to the use and protection needs of medical devices:
High Elasticity & Shock Absorption, Excellent Impact Resistance

Medical silicone with a Shore hardness of 30°~50° features excellent elasticity and resilience with a permanent compression set of ≤5%, which can effectively absorb collision impact force during device movement and placement (impact strength ≥10kJ/m²). It converts rigid collisions into flexible buffering, avoiding paint chipping and deformation of device edges, corners and bodies caused by bumps, and preventing damage to precision components from vibration.
Wear & Slip Resistance, Strong Adhesion

The surface is treated with micro-matte/raised dot anti-slip textures with a high static friction coefficient, which prevents displacement when attached to the bottom, edges and corners of devices. Meanwhile, it resists daily friction and scratch with no surface wear or chipping after long-term use, adapting to scenarios where medical devices are frequently moved and placed. The non-slip design at the bottom also enhances the stability of device placement and prevents device tipping over.
Resistant to High-Frequency Medical Disinfection, Easy to Clean & Maintain

Withstands mainstream medical disinfection methods such as 75% alcohol wiping, iodophor disinfection and ultraviolet disinfection. The silicone remains undeformed, unaged and non-sticky after repeated disinfection with no disinfectant residue; the smooth, pore-free and dead-angle-free surface allows for easy removal of dust and medicinal liquid stains with a single wipe, meeting the high hygiene requirements of hospital clinics, operating rooms and wards.
Temperature & Weather Resistant, Stable Performance

The operating temperature range covers -60℃~200℃, withstanding the constant temperature environment of hospitals, device working temperature rise and disinfection temperature. It does not harden or crack at low temperatures, and does not soften or deform at high temperatures; it resists erosion by moisture, ozone and conventional medical media (normal saline, disinfectants), with no yellowing or cracking after long-term use and a long service life.
Excellent Biocompatibility, No Contact Risks

No irritation or sensitization when in contact with the human body, medical bed linens and cabinets, avoiding bump and scratch injuries when the device contacts patients and medical staff. Meanwhile, no harmful substances leach out to contaminate the clinical environment, complying with the safety standards for medical accessories in skin and indirect contact.


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