Hmc-electronics 60921 Loctite 609 Retaining Compound, General Purp User Manual

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Technical Data Sheet
LOCTITE
®
609
June-2004
PRODUCT DESCRIPTION
LOCTITE
®
609 provides the following product characteristics:
Technology Acrylic
Chemical Type Methacrylate ester
Appearance (uncured) Green liquid
LMS
Fluorescence Positive under UV light
LMS
Components One component - requires no mixing
Viscosity Low
Cure Anaerobic
Secondary Cure Activator
Application Retaining
Strength Medium
LOCTITE
®
609 is designed for the bonding of cylindrical fitting
parts. The product cures when confined in the absence of air
between close fitting metal surfaces and prevents loosening
and leakage from shock and vibration. Typical applications
include rotor to shafts in fractional and subfractional
horsepower motors. Locks bushings and sleeves in housings
on shafts. Augments press fits.
Mil-R-46082B
LOCTITE
®
609 is tested to the lot requirements of Military
Specification Mil-R-46082B.
ASTM D5363
Each lot of adhesive produced in North America is tested to
the general requirements defined in paragraphs 5.1.1 and
5.1.2 and to the Detail Requirements defined in section 5.2
TYPICAL PROPERTIES OF UNCURED MATERIAL
Specific Gravity @ 25 °C 1.10
Flash Point - See MSDS
Viscosity, Cannon Fenske #300, ISO 3104, mPa·s (cP) 110 to 140
LMS
TYPICAL CURING PERFORMANCE
Cure Speed vs. Substrate
The rate of cure will depend on the substrate used. The graph
below shows the shear strength developed with time on steel
pins and collars compared to different materials and tested
according to ISO 10123.
% of Full Strength on Steel
Cure Time
100
75
50
25
0
1min 5min10min 30min 1h 3h 6h 24h 72h
Steel
Aluminum
Zinc Dichromate
Cure Speed vs. Bond Gap
The rate of cure will depend on the bondline gap. The following
graph shows shear strength developed with time on steel pins
and collars at different controlled gaps and tested according to
ISO 10123.
% of Full Strength on Steel
Cure Time
100
75
50
25
0
1min 5min10min 30min 1h 3h 6h 24h 72h
0.15mm
0.25mm
0.05mm
Cure Speed vs. Temperature
The rate of cure will depend on the temperature. The graph
below shows the shear strength developed with time at
different temperatures on steel pins and collars and tested
according to ISO 10123.
% of Full Strength on Steel
Cure Time
100
75
50
25
0
1min 5min10min 30min 1h 3h 6h 24h 72h
40°C
22°C
5°C
Cure Speed vs. Activator
Where cure speed is unacceptably long, or large gaps are
present, applying activator to the surface will improve cure
speed. The graph below shows shear strength developed with
time using Activator 7471 and 7649 on zinc dichromate steel
pins and collars and tested according to ISO 10123.
Documentation Provided By HMC Electronics
33 Springdale Ave. Canton, MA 02021
http://www.hmcelectronics.com
(800) 482-4440
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Summary of Contents

Page 1 - June-2004

Technical Data Sheet LOCTITE®609June-2004 PRODUCT DESCRIPTIONLOCTITE®609 provides the following product characteristics:Technology AcrylicChemical Typ

Page 2 - (800) 482-4440

TDS LOCTITE®609, June-2004% of Full Strength on SteelCure Time10075502501min 5min10min 30min 1h 3h 6h 24h 72hActivator 7471Activator 7649No Activator

Page 3

TDS LOCTITE®609, June-20047. Parts should not be disturbed until sufficient handlingstrength is achieved.For Disassembly1. Apply localized heat to th

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