Polymerρ = 1400 kg/m³ Updated 2026-07-29 Material Reference

PVC (Polyvinyl Chloride)

PVC plastic properties, density (1400 kg/m³), rigid and flexible formulations, chemical resistance, fire performance, and applications in piping, construction, and electrical conduit.

Density

1400 kg/m³

Tensile Strength

50 MPa

Overview

Polyvinyl Chloride (PVC) is one of the most produced and versatile thermoplastics, formed by polymerizing vinyl chloride monomer (VCM). Adding plasticizers produces flexible PVC; without plasticizers it is rigid PVC (uPVC), the dominant material for drainage pipe, water supply pipe, electrical conduit, window frames, and siding. PVC is inherently flame-resistant (chlorine content), strong, and low-cost.

ρ = 1300-1450 kg/m³ for rigid PVC (uPVC); denser than water (1000 kg/m³); with plasticizers, flexible PVC is ~1150-1350 kg/m³

Mechanical Properties (Rigid PVC, uPVC)

PropertyValue
Density1,380-1,430 kg/m³ (1.4 g/cm³)
Tensile Strength (ultimate)40-55 MPa (6,000-8,000 psi)
Young's Modulus2,500-4,000 MPa (2.5-4.0 GPa)
Flexural Strength70-100 MPa
Compressive Strength60-80 MPa
Elongation at Break10-50% (rigid, brittle compared to HDPE)
Hardness (Shore D)75-85
Impact Strength (notched Izod)20-60 J/m (lower than HDPE)
Coefficient of Friction0.3-0.4

PVC is Heavier Than Most Plastics

PVC's 1400 kg/m³ density comes from the heavy chlorine atoms in its molecular structure (-CH₂-CHCl-). This chlorine gives PVC its inherent fire resistance (LOI ~45%, self-extinguishing when flame removed) but also makes PVC products sink in water and generates HCl gas if burned.

Thermal Properties

PropertyValue (Rigid PVC)
Glass Transition (T_g)70-80°C
Heat Deflection Temperature (0.45 MPa)60-75°C
Continuous Service Temperature60°C max (for pressure pipe)
Melting/Processing Temp160-210°C
Thermal Conductivity0.17 W/m·K (good insulator)
Specific Heat1000 J/kg·K
Coefficient of Thermal Expansion50-80 × 10⁻⁶ /°C (~5x steel, less than HDPE)
FlammabilitySelf-extinguishing (LOI 45%)

Chemical Resistance

Rigid PVC resists a wide range of chemicals:

  • Excellent: water, dilute acids and alkalis, salt solutions, alcohols, oils, many household chemicals
  • Good: strong HCl, most dilute inorganic chemicals
  • Limited: strong oxidizers (concentrated HNO₃, H₂SO₄ above 70%), aromatic and chlorinated hydrocarbons, ketones, esters
  • Food-safe grades available for potable water and food contact

Pipe Classifications

Schedule 40 / Schedule 80 (US, ASTM D1785)

  • Most common for plumbing and industrial piping
  • Schedule 80 has thicker wall for higher pressure
  • White (Schedule 40) or dark gray (Schedule 80) typically

Pressure Classes (ISO/DIN)

  • PN6, PN10, PN16 pressure ratings (in bar at 20°C)
  • Derating required above 25°C

PVC Pipe Types by Application

UseSpecification
Potable water supplyASTM D1785, NSF-61 certified
Drain, waste, vent (DWV)ASTM D2665 (non-pressure, thin wall)
Sewer pipeASTM D3034 (gravity)
Electrical conduitSchedule 40/80 gray, UV resistant
IrrigationClass-rated thin wall
Chemical process (CPVC)Chlorinated PVC for higher temp (90°C)

Applications

Building & Construction

  • Water supply: Domestic cold water distribution (NOT hot water — use CPVC or PEX)
  • Drainage: DWV pipe for sinks, toilets, roof drains
  • Sewer: Municipal gravity sewers (often large diameter)
  • Electrical conduit: Protection for electrical wiring
  • Window profiles: Extruded uPVC window frames (excellent thermal performance, low maintenance)
  • Siding: Vinyl siding for residential buildings
  • Gutters and downspouts: Rainwater management

Industrial

  • Chemical process piping (acids, alkalis, plating solutions)
  • Ventilation ducting for corrosive fumes
  • Laboratory drainage
  • Tanks and tank linings
  • CPVC (chlorinated PVC) for hot water and corrosive fluids up to 90°C

Consumer Products

  • Vinyl flooring
  • Cable insulation (flexible PVC)
  • Medical tubing (flexible, DEHP-free grades)
  • Credit cards, packaging films

Temperature Limits

PVC pipe pressure ratings apply at 20-23°C. At 40°C, pressure rating is roughly halved; at 60°C, PVC softens significantly and loses most structural strength. Never use standard PVC for hot water lines (above ~50°C) or compressed air service (catastrophic brittle failure risk).

PVC vs HDPE vs CPVC

PropertyRigid PVCHDPECPVC
Density1400 kg/m³960 kg/m³1550 kg/m³
Pressure temp limit60°C60-80°C90°C
Joint methodSolvent cementHeat fusionSolvent cement
FlexibilityBrittleVery flexibleModerate
Fire resistanceSelf-extinguishingFlammableSelf-extinguishing
CostLowestModerateHigher
Cold impactPoorExcellentFair

Calculate PVC Pipe Weight

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Summary

Rigid PVC (uPVC, density ~1400 kg/m³) is the most widely used plastic piping material for drainage, water supply, and electrical conduit. It is strong, chemically resistant, inherently flame retardant (from chlorine), and the lowest-cost piping option. Limitations include temperature (max ~60°C for pressure service), brittleness at low temperatures (impact resistance lower than HDPE), and unsuitability for hot water or compressed air. CPVC extends the temperature range to ~90°C for hot water service.

Related Calculators & Guides

Disclaimer: Material property data is for reference and educational purposes. Verify all properties against material test reports (MTRs) and applicable ASTM/ASME standards for engineering design.