Medical device manufacturing tubing Imavacfit®
siliconestainless steelpolyester

Medical device manufacturing tubing - Imavacfit® - Ami Polymer Pvt Ltd - silicone / stainless steel / polyester
Medical device manufacturing tubing - Imavacfit® - Ami Polymer Pvt Ltd - silicone / stainless steel / polyester
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Characteristics

Applications
for medical device manufacturing
Material
silicone, stainless steel, polyester
Configuration
spiral
Options
braid-reinforced
External diameter

Max.: 62 mm
(2.4 in)

Min.: 13 mm
(0.5 in)

Inner diameter

Max.: 50 mm
(2 in)

Min.: 6 mm
(0.2 in)

Description

Overview
Imavacfit® is a platinum cured silicone hose reinforced with SS 316L helical wire and polyester braiding, engineered for pressurized fluid transfer and high-vacuum applications. It provides higher burst pressure and improved vacuum resistance compared to Imavac® while maintaining chemical compatibility and hygienic properties suitable for pharmaceutical, food and biotech environments.

Applications
  • Pharmaceutical processing
  • Powder and fluid transfer
  • High vacuum pump systems
  • Food processing
  • Load cell applications
  • Biotechnology
  • Bulk transfer
  • Fermentations and bioreactors

Certifications
  • TOXIKON base E&L studies available on inner liner
  • NSF-51 certification on resin liner
  • Conforms to US FDA 21 CFR 177.2600 food grade standard
  • Conforms to USP Class VI
  • Conforms to ISO 10993
  • RoHS certified, free of restricted heavy metals
  • Free of phthalate, bisphenol and volatile plasticizers
  • TSE/BSE certification (free of animal-derived material)


Key Features
  • Higher burst pressure compared to Imafit® and Imavac®
  • Designed for high vacuum rating applications
  • Antistatic properties to dissipate static electrical charge
  • No taste or odor imparted
  • Lot traceable
  • Temperature range: -80°C to 230°C
  • Optional SS316L Tri-clover end with RA ≤ 0.5 at bore
  • Sterilizable by autoclave, ethylene oxide gas and gamma radiation


Standard sizes available
  • 1 | 0613VF | 6 x 13 mm | 1/4” ID | Max working pressure 12.5 bar @27°C | Min burst 48.5 bar @27°C | Bend radius 60 mm | Vacuum 760 Hg
  • 2 | 0916VF | 9 x 16 mm | 11/32” ID | Max working pressure 12.0 bar @27°C | Min burst 48 bar @27°C | Bend radius 70 mm | Vacuum 760 Hg
  • 3 | 1220VF | 12 x 20 mm | 1/2” ID | Max working pressure 11.0 bar @27°C | Min burst 41.5 bar @27°C | Bend radius 70 mm | Vacuum 760 Hg
  • 4 | 1624VF | 16 x 24 mm | 5/8” ID | Max working pressure 10.5 bar @27°C | Min burst 36 bar @27°C | Bend radius 85 mm | Vacuum 760 Hg
  • 5 | 1927VF | 19 x 27 mm | 3/4” ID | Max working pressure 9.0 bar @27°C | Min burst 34.5 bar @27°C | Bend radius 95 mm | Vacuum 760 Hg
  • 6 | 2535VF | 25 x 35 mm | 1” ID | Max working pressure 8.5 bar @27°C | Min burst 34.5 bar @27°C | Bend radius 140 mm | Vacuum 760 Hg
  • 7 | 3242VF | 32 x 42 mm | 1¼” ID | Max working pressure 8.5 bar @27°C | Min burst 34.5 bar @27°C | Bend radius 150 mm | Vacuum 600 Hg
  • 8 | 3850VF | 38 x 50 mm | 1½” ID | Max working pressure 7.5 bar @27°C | Min burst 32 bar @27°C | Bend radius 175 mm | Vacuum 600 Hg
  • 9 | 5062VF | 50 x 62 mm | 2” ID | Max working pressure 6.5 bar @27°C | Min burst 28 bar @27°C | Bend radius 245 mm | Vacuum 550 Hg


Technical specifications
  • Material: Platinum cured silicone
  • Reinforcement: SS 316L helical wire and polyester braiding
  • Temperature range: -80°C to 230°C
  • Sterilization: Autoclave, ethylene oxide gas, gamma radiation
  • Certifications: US FDA 21 CFR 177.2600, USP Class VI, ISO 10993, NSF-51 (resin liner), RoHS
  • Properties: High burst pressure, high vacuum rating, antistatic, no taste or odor, lot traceable
  • Optional end fittings: Available with SS316L Tri-clover end, RA ≤ 0.5 at bore
  • Intended use: Pressurized fluid transfer and vacuum applications in pharmaceutical, food, biotech and related industries
*Prices are pre-tax. They exclude delivery charges and customs duties and do not include additional charges for installation or activation options. Prices are indicative only and may vary by country, with changes to the cost of raw materials and exchange rates.