Loctite EA 9309.3NA AERO EPOXY PASTE ADHESIVE

Harmonization Code : 3506.91.90.99 | Prepared glues and other prepared adhesives, not elsewhere specified or included; products suitable for use as glues or adhesives, put up for retail sale as glues or adhesives, not exceeding a net weight of 1 kg ; Adhesives based on polymers of headings 3901 to 3913 or on rubber; Other ; Other

Loctite EA 9309.3NA AERO EPOXY PASTE ADHESIVE

Main features

  • High Aluminum Shear and Peel Strength
  • Glass-Bead Bondline Control
  • Humidity and Fluid Resistance

Product Description

LOCTITE® EA 9309.3NA AERO is a toughened, two-part epoxy paste adhesive for bonding metal skins and honeycomb core. The formulation contains 5 mil / 0.13 mm glass beads to control bondline thickness and forms tough, permanently flexible joints. It combines high shear and peel strength on aluminum with resistance to humidity, water, and common fluids. The adhesive uses a 100:22 mix ratio by weight and provides a 35-minute pot life for a 450 g mass at 77°F / 25°C. It may be cured for 3–5 days at 77°F / 25°C or for 1 hour at 180°F / 82°C to achieve normal performance.

Key features

  • High shear and peel strength: Delivers strong aluminum bonding performance under the documented substrate preparation, cure, and test conditions.
  • Controlled bondline thickness: Contains 5 mil / 0.13 mm glass beads to support consistent adhesive spacing.
  • Environmental resistance: Cured joints resist humidity, water, and most common fluids.

Applications / Suitable for

  • Bonding metal skins to honeycomb core
  • Aluminum joints requiring combined shear and peel performance
Product Family

LOCTITE EA 9309.3NA

Catalog Product

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TDS, SDS & Technical Documents

Technical Specifications

Physical Properties
Viscosity (Part A)Viscosity (Part A)
150,000 to 380,000 mPa.s
Viscosity (Part B)Viscosity (Part B)
10 to 20 mPa.s
General Properties
Mix RatioMix Ratio
100:22

Additional Information

Technical properties

As-supplied / before-processing properties

Uncured component and mixed-material properties for LOCTITE® EA 9309.3NA AERO. Component identity, temperature, batch size, test method, and processing condition are retained where provided.

Property Value Unit Method / condition
Product form Two-part toughened epoxy paste adhesive As supplied
Color — Part A Pink-red As supplied
Color — Part B Blue As supplied
Viscosity — Part A 1,500–3,800 Poise 77°F; Brookfield HBT, spindle 7 at 20 rpm
Viscosity — Part B 0.1–0.2 Poise 77°F; Brookfield LVF, spindle 1 at 60 rpm
Viscosity — Part A 150–300 Pa·s 25°C; Brookfield HBT, spindle 7 at 2.1 rad/s
Viscosity — Part B 0.01–0.02 Pa·s 25°C; Brookfield LVF, spindle 1 at 6.3 rad/s
Density — Part A 1.15 g/mL Component value
Density — Part B 1.0 g/mL Component value
Mix ratio — Part A:Part B 100:22 Parts by weight Volume measurement is not recommended for structural applications unless special precautions are used to assure the correct ratio
Pot life 35 minutes 450 g mass at 77°F / 25°C; ASTM D2471 in a water bath
Glass-bead size for bondline control 5 / 0.13 mil / mm Glass beads incorporated into the formulation for bondline-thickness control
Handling-strength time 12 hours At 77°F / 25°C; support tooling or cure pressure may then be removed, but full bond strength has not been reached
Ambient cure schedule 3–5 days 77°F / 25°C to achieve normal performance
Heat-cure schedule 1 hour 180°F / 82°C to achieve normal performance
Warranty life — Part A 1 year Stored below 77°F / 25°C
Warranty life — Part B 1 year Stored below 77°F / 25°C
Technical properties

After-processing / final-state properties

Typical cured-material and bonded-joint properties. Results remain specific to the stated substrate, surface preparation, cure, specimen geometry, conditioning, test temperature, and method.

Property Value Unit Method / condition
Tensile lap shear strength 5,470 / 37.7 psi / MPa ASTM D1002; tested at −67°F / −55°C after 30-minute soak; 2024-T3 clad aluminum, FPL per ASTM D2651; cured 72 hours at 77°F / 25°C under 10 psi / 0.7 bar
Tensile lap shear strength 4,753 / 32.8 psi / MPa ASTM D1002; tested at 77°F / 25°C; 2024-T3 clad aluminum, FPL per ASTM D2651; cured 72 hours at 77°F / 25°C under 10 psi / 0.7 bar
Tensile lap shear strength 934 / 6.4 psi / MPa ASTM D1002; tested at 180°F / 82°C; 2024-T3 clad aluminum, FPL per ASTM D2651; cured 72 hours at 77°F / 25°C under 10 psi / 0.7 bar
Hot/wet tensile lap shear strength 4,757 / 32.8 psi / MPa ASTM D1002; tested at 77°F / 25°C after 750 hours at 160°F / 71°C and 85% RH; 2024-T3 clad aluminum, FPL; cured 72 hours at 77°F / 25°C under 10 psi / 0.7 bar
Tensile lap shear strength 5,000 / 34.5 psi / MPa ASTM D1002; tested at 77°F / 25°C; 2024-T3 bare aluminum, PAA per ASTM D3933; cured 2 hours at 150°F / 66°C under 10 psi / 0.7 bar
Tensile lap shear strength 1,000 / 6.9 psi / MPa ASTM D1002; tested at 180°F / 82°C; 2024-T3 bare aluminum, PAA; cured 2 hours at 150°F / 66°C under 10 psi / 0.7 bar
Tensile lap shear strength — control 4,800 / 33.1 psi / MPa ASTM D1002; tested at 77°F / 25°C; 2024-T3 Alclad aluminum, PAA; cured 5 days at 77°F / 25°C; no exposure conditioning
Tensile lap shear strength — hydraulic oil exposure 4,600 / 31.7 psi / MPa ASTM D1002; tested at 77°F / 25°C after 7 days in hydraulic oil at 77°F / 25°C; 2024-T3 Alclad, PAA; cured 5 days at 77°F / 25°C
Tensile lap shear strength — JP-4 fuel exposure 4,700 / 32.3 psi / MPa ASTM D1002; tested at 77°F / 25°C after 7 days in JP-4 fuel at 77°F / 25°C; 2024-T3 Alclad, PAA; cured 5 days at 77°F / 25°C
Tensile lap shear strength — anti-icing fluid exposure 4,500 / 31.3 psi / MPa ASTM D1002; tested at 77°F / 25°C after 7 days in anti-icing fluid at 77°F / 25°C; 2024-T3 Alclad, PAA; cured 5 days at 77°F / 25°C
Tensile lap shear strength — Hydrocarbon III exposure 4,300 / 29.6 psi / MPa ASTM D1002; tested at 77°F / 25°C after 7 days in Hydrocarbon III at 77°F / 25°C; 2024-T3 Alclad, PAA; cured 5 days at 77°F / 25°C
Tensile lap shear strength — Skydrol 500 exposure 4,600 / 31.7 psi / MPa ASTM D1002; tested at 77°F / 25°C after 7 days in Skydrol 500 at 77°F / 25°C; 2024-T3 Alclad, PAA; cured 5 days at 77°F / 25°C
Tensile lap shear strength — water exposure 4,700 / 32.4 psi / MPa ASTM D1002; tested at 77°F / 25°C after 30 days in water at 77°F / 25°C; 2024-T3 Alclad, PAA; cured 5 days at 77°F / 25°C
Tensile lap shear strength — hot/wet exposure 5,100 / 35.2 psi / MPa ASTM D1002; tested at 77°F / 25°C after 30 days at 120°F / 49°C and 98% RH; 2024-T3 Alclad, PAA; cured 5 days at 77°F / 25°C
Tensile lap shear strength — salt-spray exposure 5,000 / 32.4 psi / MPa ASTM D1002; tested at 77°F / 25°C after 30 days in 5% NaCl salt spray at 105°F / 41°C; 2024-T3 Alclad, PAA; cured 5 days at 77°F / 25°C
Creep deflection 0.00056 / 0.0142 in / mm Measured at 77°F / 25°C after 192 hours under a 1,600 psi / 11.0 MPa load
T-peel strength 31 / 138 lbf/in / N/25 mm ASTM D1876; tested at −67°F / −55°C after 30-minute soak; 0.020 in / 0.51 mm 2024-T3 clad aluminum, PAA; cured 72 hours at 77°F / 25°C under 28 in-Hg / 711 mm-Hg vacuum
T-peel strength 48 / 214 lbf/in / N/25 mm ASTM D1876; tested at 77°F / 25°C; 0.020 in / 0.51 mm 2024-T3 clad aluminum, PAA; cured 72 hours at 77°F / 25°C under 28 in-Hg / 711 mm-Hg vacuum
T-peel strength 21 / 93 lbf/in / N/25 mm ASTM D1876; tested at −67°F / −55°C after 30-minute soak; 0.020 in / 0.51 mm 2024-T3 bare aluminum, PAA; cured 2 hours at 180°F / 82°C under 28 in-Hg / 711 mm-Hg vacuum
T-peel strength 32 / 142 lbf/in / N/25 mm ASTM D1876; tested at 77°F / 25°C; 0.020 in / 0.51 mm 2024-T3 bare aluminum, PAA; cured 2 hours at 180°F / 82°C under 28 in-Hg / 711 mm-Hg vacuum
Floating roller peel strength 94 / 418 lbf/in / N/25 mm ASTM D3167; tested at 77°F / 25°C; 2024-T3 bare aluminum, 0.025 in / 0.64 mm and 0.063 in / 1.6 mm adherends, PAA; cured 72 hours at 77°F / 25°C under 28 in-Hg / 711 mm-Hg vacuum
Service temperature Approximately 180 / 82 °F / °C Defined as the temperature at which the adhesive retains 1,000 psi / 6.9 MPa by ASTM D1002
Tensile strength 4,670 / 32.2 psi / MPa ASTM D638; 0.125 in / 3.18 mm casting; cured 72 hours at 77°F / 25°C; tested at 77°F / 25°C
Tensile modulus 334 / 2,303 ksi / MPa ASTM D638; 0.125 in / 3.18 mm casting; cured 72 hours at 77°F / 25°C; tested at 77°F / 25°C
Shear modulus 122 / 841 ksi / MPa ASTM D638; cured 72 hours at 77°F / 25°C; tested at 77°F / 25°C
Poisson’s ratio 0.36 ASTM D638; cured 72 hours at 77°F / 25°C
Elongation at break 10 % ASTM D638; cured 72 hours at 77°F / 25°C
Shore D hardness 80 Shore D ASTM D2240; cured 72 hours at 77°F / 25°C; tested at 77°F / 25°C
Glass transition temperature — dry 142 / 61 °F / °C DMTA, single cantilever; cured 72 hours at 77°F / 25°C; 5°C/min heating rate, 1 Hz, 0.1% strain; specimen 1 × 0.49 × 0.063 in / 25.4 × 12.4 × 1.6 mm
Glass transition temperature — wet 147 / 64 °F / °C DMTA, single cantilever; cured 72 hours at 77°F / 25°C; conditioned at 160°F / 71°C and 85% RH until saturation; moisture uptake 2.5%
Glass transition temperature — dry 178 / 81 °F / °C DMTA, single cantilever; cured 1 hour at 180°F / 82°C; 5°C/min heating rate, 1 Hz, 0.1% strain
Glass transition temperature — wet 147 / 64 °F / °C DMTA, single cantilever; cured 1 hour at 180°F / 82°C; conditioned at 160°F / 71°C and 85% RH until saturation; moisture uptake 2.5%
Moisture uptake 2.5 % Conditioned at 160°F / 71°C and 85% RH until saturation for wet Tg testing
Compressive strength 7,500 / 51.7 psi / MPa ASTM D695; 0.5 in / 12.7 mm casting; tested at 77°F / 25°C
Compressive modulus 245 / 1,688 ksi / MPa ASTM D695; 0.5 in / 12.7 mm casting; tested at 77°F / 25°C
Dielectric constant 4.33 ASTM D149 / D150; 0.1 kHz
Dielectric constant 4.29 ASTM D149 / D150; 1.0 kHz
Dielectric constant 4.17 ASTM D149 / D150; 10.0 kHz
Dissipation factor 0.018 ASTM D149 / D150; 0.1 kHz
Dissipation factor 0.014 ASTM D149 / D150; 1.0 kHz
Dissipation factor 0.028 ASTM D149 / D150; 10.0 kHz
Volume resistivity 1.36 × 1014 ohm·cm Electrical properties tested per ASTM D149 / D150
Surface resistivity 4.94 × 1014 ohm Electrical properties tested per ASTM D149 / D150
Thermal conductivity 4.50 × 10−4 cal/s·cm·°C Bulk cured-material value; test method and additional specimen conditions are not stated in the bulletin

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