Heat Shrink Tubing

Image Part Number Description / PDF Quantity Rfq
F10511/2 BK005

F10511/2 BK005

Alpha Wire

HEATSHRINK 1-1/2" X 100' BLACK

0

SPCM170 NC180

SPCM170 NC180

Alpha Wire

HEATSHRINK 1.7" PO BK 48"

0

SPC300 NC196

SPC300 NC196

Alpha Wire

HEATSHRINK 3" PO BLACK 12"

0

SPCM800 NC180

SPCM800 NC180

Alpha Wire

HEATSHRINK .8" PO BK 48"

0

SPCM400 NC196

SPCM400 NC196

Alpha Wire

HEATSHRINK .4" PO BK 12"

0

F2213/4 OR003

F2213/4 OR003

Alpha Wire

FIT SHRINK TUBING 250 FT

0

SPCM170 NC196

SPCM170 NC196

Alpha Wire

HEATSHRINK 1.7" PO BK 12"

0

SPCM200 NC196

SPCM200 NC196

Alpha Wire

HEATSHRINK 2" PO BK 12"

0

SPCM150 NC180

SPCM150 NC180

Alpha Wire

HEATSHRINK 1.5" PO BK 48"

0

SPCM800 NC196

SPCM800 NC196

Alpha Wire

HEATSHRINK .8" PO BK 12"

0

SPCM400 NC180

SPCM400 NC180

Alpha Wire

HEATSHRINK .4" PO BK 48"

11

F2213IN WH107

F2213IN WH107

Alpha Wire

FIT SHRINK TUBING 2" X 4'

0

SPCM110 BK196

SPCM110 BK196

Alpha Wire

HEATSHRINK 1.1" PO BK 12"

0

F22111/2 OR015

F22111/2 OR015

Alpha Wire

FIT SHRINK TUBING 125 FT

0

SPCM110 BK180

SPCM110 BK180

Alpha Wire

HEATSHRINK 1.1" PO BK 48"

0

F2211/8 OR103

F2211/8 OR103

Alpha Wire

FIT SHRINK TUBING 1/4" X 4'

0

F2212IN OR015

F2212IN OR015

Alpha Wire

FIT SHRINK TUBING 125 FT

0

SPC300 NC180

SPC300 NC180

Alpha Wire

HEATSHRINK 3" PO BLACK 48"

2

SPCM150 NC196

SPCM150 NC196

Alpha Wire

HEATSHRINK 1.5" PO BK 12"

0

SPCM130 BK196

SPCM130 BK196

Alpha Wire

HEATSHRINK 1.3" PO BK 12"

0

Heat Shrink Tubing

1. Overview

Heat shrink tubing is a type of polymer material that contracts radially when heated, forming a tight, protective covering over cables, wires, and components. Its ability to provide insulation, mechanical protection, and environmental sealing makes it indispensable in modern electronics, telecommunications, automotive, and aerospace industries.

2. Main Types and Functional Classification

TypeFunctional FeaturesApplication Examples
PVC Heat ShrinkLow-cost, flexible, good dielectric propertiesConsumer electronics, automotive wiring
Polyolefin TubingHigh abrasion resistance, UV stabilityIndustrial machinery, outdoor cable joints
Fluoropolymer TubingChemical resistance, high-temperature toleranceAerospace hydraulics, semiconductor equipment
Adhesive-Lined TubingSealing against moisture and dustMarine cables, underground sensors
Split Braided TubingEasy installation without disconnecting componentsRetrofit cable protection in robotics

3. Structure and Composition

Typical heat shrink tubing features a three-layer structure:

  • Base Material: Cross-linked polymer (PVC/Polyolefin/PTFE) for mechanical strength
  • Adhesive Layer: Thermoplastic adhesive for sealing (in dual-wall variants)
  • Outer Coating: UV-resistant or flame-retardant additives for environmental protection
The cross-linking process through irradiation or chemical methods enables shape memory functionality.

4. Key Technical Parameters

ParameterSignificanceTypical Range
Shrink TemperatureDetermines activation threshold80-200 C
Shrink RatioIndicates dimensional contraction capability2:1 to 6:1
Operating TemperatureDefines service life limits-55 C to +150 C
Dielectric StrengthMeasures insulation performance15-100kV/mm
Flame RetardancySafety compliance indicatorUL94 V-0/V-2 rated

5. Application Fields

Major industries include:

  • Automotive: Engine compartment wiring harnesses
  • Aerospace: Avionic system insulation
  • Telecommunications: Fiber optic cable splices
  • Medical: Equipment probe cable protection
  • Renewable Energy: Solar panel connector sealing
Case Study: Tesla Model S uses adhesive-lined polyolefin tubing for battery management system wiring.

6. Leading Manufacturers

ManufacturerRepresentative ProductKey Feature
3MHPST-High Performance150 C operating temp, 4:1 ratio
HellermannTytonSecureSeal ADIP68-rated adhesive lining
Sumitomo ElectricFluoroResin FEP200 C with chemical inertness
Alpha WireECO SCLHalogen-free, RoHS compliant

7. Selection Guidelines

Critical factors to consider:

  • Environmental conditions (temperature, chemicals, UV exposure)
  • Mechanical protection requirements
  • Electrical insulation specifications
  • Regulatory certifications (UL/CSA/REACH)
  • Installation method feasibility
Note: For underwater applications, specify adhesive-lined tubing with min. 3mm wall thickness.

8. Industry Trends

Emerging developments include:

  • Nano-coated variants for EMI shielding
  • Bio-based polymers for sustainability
  • Smart tubing with embedded sensors
  • High-expansion ratios (up to 12:1) for complex geometries
  • Low-halogen options meeting stricter fire safety codes
Market growth projected at 6.2% CAGR through 2030, driven by EV and 5G infrastructure demands.

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