| name | adhesive-selection |
| description | Adhesive selection — epoxy/acrylic/polyurethane/silicone, lap shear strength, peel strength, surface preparation, ASTM D1002/D1876/D903, bonded joint design, thermal limits, aerospace/structural bonding. |
| metadata | {"priority":7,"promptSignals":{"phrases":["adhesive selection","adhesive bonding","structural adhesive","lap shear adhesive","epoxy adhesive","adhesive joint design"],"minScore":3}} |
Adhesive Selection — Complete Skill
Adhesive Chemistry Types
Epoxy (Structural — Highest Strength)
1K (single component): heat cure 120–180°C; shelf stable; aerospace qualification
2K (two component): room temperature cure or heat cure; mix ratio critical; immediate use
Key properties:
- Lap shear strength: 15–35 MPa (aluminum); 20–45 MPa (steel)
- Tensile strength: 35–60 MPa (bulk)
- Peel strength: 0.5–2.0 kN/m (lower than acrylics; brittle peel failure)
- Service T: -55°C to +120°C (standard); up to +200°C (high-T grades)
- Chemical resistance: excellent (acids, bases, solvents)
- Elongation: 1–5% (rigid; brittle without toughener)
- Toughened epoxy: +rubber particles or CTBN; elongation 5–15%; peel ↑↑
Applications: aerospace primary structure, tooling, structural assemblies
Structural Acrylic (MMA — Methyl Methacrylate)
Two-component (bead-on-bead): activator on one surface; adhesive on other
Properties:
- Lap shear: 15–25 MPa
- Elongation: 50–200% (much more flexible than epoxy → better peel)
- Peel: 4–10 kN/m
- T range: -55°C to +120°C
- Cure time: 5–90 min (fast cure; less prep required)
- Gap filling: fills 0.1–5 mm gaps (forgiving)
Applications: marine, truck body, assembly where thermal cycling + peel important
Polyurethane (PU)
Flexible structural adhesive:
- Lap shear: 5–20 MPa
- Elongation: 100–400% (very flexible)
- Peel: 5–15 kN/m
- T range: -40°C to +90°C
- Moisture sensitive during cure; CO₂ bubbles if substrate wet
- Good for dissimilar materials (CTE mismatch absorption)
Applications: automotive windshield (ELV), trim, flexible assemblies
Silicone
Not structural — primarily sealing:
- Shear strength: 0.5–3 MPa (very low)
- Elongation: 200–600% (excellent flexibility)
- T range: -60°C to +260°C (silicone) or to +300°C (high-T)
- UV/weather resistant; excellent for outdoor sealing
Use only for: sealing, electronics potting, gasket replacement, vibration damping
Cyanoacrylate (Instant Adhesive)
- Rapid bond (1–60 sec); requires close fit (gap < 0.1 mm)
- Lap shear: 5–25 MPa (brittle)
- T limit: 70–120°C
- Poor chemical resistance, moisture sensitivity long term
- Use for: fast assembly, small parts, difficult-to-clamp
Anaerobic
- Cures in absence of oxygen in metal contact
- Threadlocking (Loctite 243), retaining compounds (Loctite 638)
- Shear: 5–25 MPa; T: 150°C max (Loctite 272: 230°C)
Surface Preparation (Critical)
Rule: adhesive strength is only as good as weakest boundary layer
Bare aluminum (etching):
- Degrease (MEK, acetone, or IPA wipe)
- Etch: chromic/sulfuric acid (FPL etch) or phosphoric acid anodize (PAA) for aerospace
- Bond within 4 hr of prep (prevent oxide regrowth)
Lap shear improvement: clean → 8 MPa; PAA prep → 35 MPa
Steel:
- Degrease + abrade (80-grit), or grit blast (Ra 6–10 μm)
- Acid pickle or phosphate conversion coating
CFRP/GRP composites:
- Abrade (80–120 grit); avoid exposing fibers → generates loose debris
- Solvent wipe (acetone)
- Peel ply removal (preferred over sanding; produces fresh, clean surface)
Primer: epoxy primer for elevated-T service; promotes adhesion + prevents corrosion
Joint Design Principles
Lap joint geometry:
Shear stress in overlap: τ_avg = F / (b × L) [Pa; b = width; L = overlap length]
End stress concentration: τ_max / τ_avg = k_s (depending on overlap L, adhesive modulus, substrates)
Design approach:
Overlap L ≥ 20–30 t_adherend (substrate thickness) to reduce peel
Chamfer or thin substrate at overlap ends to reduce peel stress
Avoid purely peel loading (adhesive peel strength ≪ shear strength)
Tapered (scarf) joint:
Shear stress uniform along bond length; no peel stress concentration
Preferred for high-performance structural applications
Hartsmith design approach (structural adhesive):
τ_design = τ_fail / 3 (factor of safety = 3)
Overlap length: L = 3 × F / (τ_fail × b)
Failure Modes
Cohesive failure: fracture within adhesive layer → adhesive not over-designed
Adhesive failure: fracture at adhesive-substrate interface → surface prep inadequate
Substrate failure: substrate fails before adhesive → optimal (adhesive over-designed)
Target: cohesive failure at > 80% of joint area → good surface prep
Standard Test Methods
| Test | Standard | Measures |
|---|
| Lap shear | ASTM D1002 | Tensile shear strength [MPa] |
| T-peel | ASTM D1876 | Peel flexibility [N/m] |
| Climbing drum peel | ASTM D1781 | Peel for thick laminates |
| 180° peel | ASTM D903 | Peel strength [N/m] |
| Tensile (butt joint) | ASTM D897 | Normal tensile strength [MPa] |
| Wedge test | ASTM D3762 | Environmental durability |
| Mode I | ASTM D5528 | G_IC for composites |
Environmental Durability
Moisture: most significant degrader; water weakens adhesive-metal interface
Testing: 1000 hr salt spray (ASTM B117); 1000 hr humidity (ASTM D2247: 100% RH, 38°C)
Requirement: retain > 60% of dry lap shear after exposure
Applications and Selection Guide
| Application | Recommended adhesive | Reason |
|---|
| Aerospace primary structure | 1K epoxy | Highest strength; qualified |
| Automotive body | Structural acrylic MMA | Fast; flexible; peel |
| Marine | Polyurethane or modified epoxy | Flexibility; UV resistance |
| Electronics | Epoxy or silicone | Potting; T range |
| Threadlocking | Anaerobic | Self-locking; correct Loctite grade |
| Fast assembly (light load) | Cyanoacrylate | Speed |
Output
Provide: adhesive type and specific product grade, lap shear strength [MPa] at operating T, peel strength [kN/m], service temperature range [°C], elongation [%], recommended surface preparation procedure, joint geometry (overlap L [mm], width b [mm]), design shear stress [MPa] with safety factor, expected failure mode (cohesive/adhesive), environmental test requirement (ASTM B117/D2247), and applicable standard (ASTM D1002/D1876/D903).