Anaerobic structural adhesive 324 JINHUI Structural Adhesive 324 Impact resistance structural adhesive JH324

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US $0.75-7.5 / Piece | 10 Piece/Pieces (Min. Order)
Supply Ability:
15 Ton/Tons per Month
Port:
Qingdao
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Overview
Quick Details
CAS No.:
mixture
Other Names:
anaerobic adhesive
Place of Origin:
Shandong, China (Mainland)
Classification:
Other Adhesives
Main Raw Material:
Acrylic
Usage:
Construction, Packing, Transportation, Other
Brand Name:
Jinhui
Model Number:
324
Type:
liquid
Color:
yellow
Viscosity:
15000 mPa.s
Tensile shear strength:
14 N/mm2
Gap fill:
0.5 mm
Temperature range:
-54~155 oC
Fixture time/Full cure time:
3min/24h
Packaging & Delivery
Packaging Details
10ML / 50ML / 250ML / 1L
Delivery Time
3 days

JINHUI Structural Adhesive 324 Impact resistance structural adhesive JH324

 

JH324 Structural adhesive

 

1, Impact resistance;

 

2, Bonding most materials, can be used with activator JH7649;

 

3, Suitable for larger gap fill.

 

4, Rigid, flexible,excellent solvent resistance

 

 

Product description

Chemical Type

Modified acrylic ester

Appearance (uncured)

Clear amber liquid

Components

One component

Viscosity

Medium

Strength

High

Cure

Anaerobic with activator

Application

Structural adhesive

 

 

Typical application

 

JH324 suitable for larger gap fill .It typical applications include bonding dissimilar materials such as metals and glass and where fast fixturing is required between close fitting parts. It is the ideal choice for the wide gap. The product cures when confined between close fitting parts with the aid of Activator7649.

 

 

Typical properties of uncured material

 

Gravity @25°C

1.09

Viscosity, 25°C, mPa•s (cP):

10,000 to 20,000

Flash point

>93°C

Cure speed

Full cure speed 24hr, fixture cure speed 5min

 

 

 

Typical properties of cured material (25°C, after 24hr full cured)

 

Temperature (°C)

-50 —120

Tensile shear strength (N/mm2)

11-19

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

80*10-6

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

0.10