TECNOTHANE® MPT 1013 G

TECNOTHANE® MPT 1013 G is an MDI-based polyurethane with a polyether backbone.

Polymer Name: Polyurethane (MDI-based)

End Uses: High Stress Technical Part, Industrial Parts, Marine Applications, Offshore Applications, Skateboards, Wheels

Technical Data Sheet
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Identification & Functionality

Blend
No
Chemical Family
Polymer Name
Single Ingredient
Yes
Technologies
Product Families

Features & Benefits

Applications & Uses

Plastics & Elastomers End Uses
Markets
Applications
Application Information

Tecnothane® MPT1013G has been developed to be an all-purpose system for high-demanding applications operating at low temperature, underwater, or under hydrolytic environments. It excels in elasticity and dynamic properties, with a good balance of mechanical properties. It fits well with many different tough applications like wheels, technical parts, skating, and offshore. “G” series is designed for improved abrasion resistance.

Technical Details & Test Data

Typical Properties

The purpose of the following table is only to provide indicative data about material properties. Typical properties are referred to samples prepared according to internal conditions and measured thirty days after post curing.

ISO 7619-1  
Hardness (ShA) 60±2 65±2 70±2 75±2 80±2 85±2 90±2 95±2 >98
Hardness (ShD) / / / 26±2 33±2 37±2 40±2 51±2 60±2
ISO 2781  
Density (g/cm³) 1.12
ISO 37 (Tensile)  
Modulus 50% (N/mm²) 2 2 3 3 4 5 6 7 9
Modulus 100% (N/mm²) 3 3 4 5 6 8 9 10 15
Modulus 300% (N/mm²) 10 12 13 15 16 18 20 23 30
Tensile strength (N/mm²) 32 33 35 36 36 38 40 43 45
Elongation (%) 615 600 580 550 530 510 490 480 450
ISO 34-1 (Tear strength)  
DIE B/a (kN/m), 90° without nick 34 39 44 52 62 69 79 90 120
DIE B/b (kN/m), 90° with nick 20 25 29 32 43 47 55 65 100
DIE C (kN/m), crescent with nick 38 43 49 56 67 73 85 100 115
ISO 4662  
Rebound resilience (%) 80 78 76 75 73 70 65 55 /
ISO 815  
Compression set at 70ºC / 23h (%) 12 13 14 14 15 15 16 18 27
ISO 4649  
Abrasion resistance (mg) 40 38 35 35 28 28 30 32 45
Casting Information
Hardness (ShA) MPT1013G RH7001 R143CL Catalyst (%) Molds T (°C) Pot life (sec) Demolding (min)
60 100.00 206.40 4.40 * 70–90 430–500 150–200
65 100.00 176.00 5.80 * 70–90 400–460 120–180
70 100.00 138.60 7.40 * 80–95 360–400 90–120
75 100.00 116.30 8.50 * 80–95 300–360 70–100
80 100.00 96.60 9.30 * 85–95 270–300 50–80
85 100.00 77.30 10.20 * 90–105 240–270 45–70
90 100.00 50.80 11.40 * 95–105 210–240 30–60
95 100.00 23.50 12.80 * 95–105 110–130 15–25
60ShD 100.00 0.00 13.80 * 105–120 90–105 15–20

The amount of main components is given on parts by weight.
*Pot life and demolding time are referred to the system without catalyst. TecnoKat D5 can be used to adjust pot life and demolding time.

Post Curing Information

Do not allow excessive cooling of molded parts between demolding and post-curing.

Hardness (ShA) Temperature (°C) Time (hours)
From 55 to 74 70 16
Higher than 75 90 16

For hardness ≤ 78 ShA it is recommended to wait 24 h at room temperature, before post-curing cycle.
For hardness above 93 ShA, two annealing steps are recommended to quickly reach the best performances; let the material cool down to room temperature in between the 2 post curing processes.

Packaging & Availability

Regional Availability
  • Global
Packaging Information
Materials are available in following packaging: 25, 50 or 200 kg

Storage & Handling

Handling Information
  • In order to allow complete melting, pre-heat materials at following conditions (melting times are referred to 200 kg drums,stored at 20°C)
Pre-heating temperature (°C) 75
Pre-heating time (hours) 16
  • After pre-heating, make sure all materials are completely melted.
  • Well mix melted material by drilling or rolling the drum
  • Load materials to the machine immediately after mixing.
  • Materials must be stored under nitrogen blanket after use.

Other

Physical Properties
ValueUnitsTest Method / Conditions
Viscosity1250.0-450.0 mPa.smPa.s