Guia de dureza do TPU - Escolha de Shore A 85A a 98A para a sua aplicação

TPU (Thermoplastic Polyurethane) offers an incredible range of flexibility, from rubber-band elastic to nearly rigid. Understanding Shore hardness ratings helps you select the perfect material for your application. This guide covers everything from Shore 85A to 98A.

Guia de dureza do TPU - Escolha de Shore A 85A a 98A para a sua aplicação

Understanding Shore A Hardness

The Shore A scale measures the hardness of flexible materials. Lower numbers indicate softer, more flexible materials:

  • 85A: Very soft, extremely flexible
  • 90A: Soft, moderate flexibility
  • 95A: Medium-soft, some rigidity
  • 98A: Semi-rigid, limited flexibility

Compared to TPE, TPU offers better layer adhesion and easier printing.

TPU Hardness Guide — Choosing Shore A 85A to 98A for Your Application - technical

Shore 85A: Maximum Flexibility

Caraterísticas

  • Extremely soft and rubbery
  • Excellent elongation (>500%)
  • High elasticity and recovery
  • Most challenging to print

Best Applications

  • Gaskets and seals
  • Phone cases with maximum grip
  • Vibration dampeners
  • Wearable devices

Printing Considerations

  • Requires direct drive extruder
  • Very slow speeds (10-20mm/s)
  • Minimal retraction
  • 220-240°C nozzle temperature

Like nylon, TPU benefits from dry storage.

Shore 90A: Balanced Flexibility

Caraterísticas

  • Soft but manageable
  • Good elongation (400-500%)
  • Excellent recovery
  • Moderate print difficulty

Best Applications

  • Flexable hinges
  • Footwear soles
  • Protective bumpers
  • Flexible couplings

Printing Considerations

  • Direct drive recommended
  • Moderate speeds (15-25mm/s)
  • Standard retraction settings
  • 220-235°C nozzle temperature

Shore 95A: Semi-Flexible

Caraterísticas

  • Noticeable stiffness
  • Moderate elongation (300-400%)
  • Good dimensional stability
  • Easier to print

Best Applications

  • Functional prototypes
  • Twistable components
  • Semi-rigid seals
  • Impact-resistant parts

Printing Considerations

  • Can work on Bowden setups
  • Normal speeds (20-30mm/s)
  • Standard settings mostly work
  • 225-240°C nozzle temperature

Shore 98A: Nearly Rigid

Caraterísticas

  • Minimal flexibility
  • Low elongation (200-300%)
  • High dimensional accuracy
  • Easy to print

Best Applications

  • Semi-rigid enclosures
  • Functional brackets
  • Snap-fit components
  • Impact protection

Printing Considerations

  • Works on most printers
  • Normal printing speeds
  • Standard settings acceptable
  • 230-245°C nozzle temperature

Application Selection Guide

Application Recommended Reason
Gaskets 85-90A Maximum sealing
Phone cases 90-95A Balance of grip and protection
Hinges 90-95A Flexibility without fatigue
Bumpers 95-98A Impact absorption
Snap fits 95-98A Predictable flex
Tires 85-90A Maximum grip

FAQ

Guia de dureza do TPU - Escolha de Shore A 85A a 98A para a sua aplicação
Guia de dureza do TPU - Escolha de Shore A 85A a 98A para a sua aplicação
How do you know whether TPU Hardness Guide — Choosing Shore A 85A to 98A for Your Application fits a part?

TPU Hardness Guide — Choosing Shore A 85A to 98A for Your Application fits a part when its load capacity, temperature range, moisture exposure, wear behavior, and processing method match the real service conditions.

What properties should be checked for TPU Hardness Guide — Choosing Shore A 85A to 98A for Your Application?

Verificar a resistência, a rigidez, a resistência ao impacto, a resistência ao calor, a absorção de humidade, a estabilidade dimensional, a fricção, o desgaste e a compatibilidade química.

What is the biggest selection risk for TPU Hardness Guide — Choosing Shore A 85A to 98A for Your Application?

O maior risco é escolher a partir de um valor da folha de dados sem considerar o ambiente real, o método de processamento, a geometria da peça e a utilização a longo prazo.

When should TPU Hardness Guide — Choosing Shore A 85A to 98A for Your Application be tested before production?

Recomenda-se a realização de ensaios quando a peça é sujeita a carga, calor, produtos químicos, humidade, tolerâncias apertadas, requisitos regulamentares ou um novo ambiente de funcionamento.

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