High strength & fast curing Retaining compound 648

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US $0.5-10 / Pieces | 10 Piece/Pieces (Min. Order)
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Overview
Quick Details
CAS No.:
mixcure
Other Names:
retaining adhesive
Place of Origin:
Shandong, China (Mainland)
Classification:
Other Adhesives
Main Raw Material:
Acrylic
Usage:
Construction, Packing, Transportation, cylindrical metal assemblies
Brand Name:
Jinhui
Model Number:
648
Type:
Liquid Glue
Calor:
green
Viscosty:
550 mPa.s
Fill gap:
0.15 mm
Temperature:
-54~175 °C
Fixture time/full cure time:
5 min / 24 h
Tensile shear strength:
26 N/mm2
SupplyAbility
SupplyAbility:
10 Ton/Tons per Month
Packaging & Delivery
Packaging Details
10ml / 50ml / 250ml / 20kg
Port
Qingdao
Lead Time :
3 days

 

High strength & fast curing Retaining compound 648

 

Retaining compound 648

 

1, Press fit,high strength & fast curing

 

2, Withstands temperatures up to 175oC.

 

3, Gaps fill up to 0.15mm, fixtures in 5 minutes.

 

4, Typical applications include holding gears onto gearbox and rotors on motor shafts

 

 

 

 Product description

 

Chemical Type

Methacrylate

Appearance (uncured)

Brown liquid

Components

One component

Strength

High

Viscosity

Medium

Cure

Anaerobic

Application

Retaining

 

 

Typical application

 

JH648 is designed for the bonding of cylindrical fitting parts. The largest bond gaps can approach 0.15mm. It suggest that the continue work temperature was 175°C. It cures when confined in the absence of air between close fitting metal surfaces and prevents loosening and leakage from shock and vibration.

 

 

Typical properties of uncured material

 

Gravity @25°C

1.1

Viscosity, 25°C, mPa•s (cP)

1000 to 5000

Flash point

>93°C

Cure speed

Fixture cure time 3 minutes, full cure time is 24 hours

 

 

Typical properties of cured material (Low carbonate grit blasted steel, @22°C, after 24hr full cured)

 

Temperature (°C)

-50 —175

Shear strength ISO-10964 (N/mm2)

≥12.4

Coefficient of Thermal Expansion, ASTM D 696, K-1

80*10-6

Coefficient of Thermal Conductivity, ASTM C 177, W/(m•K)

0.10