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Loctite 640: what it is for and how to use it

2026-07-14 · TECTUL · Leer esta guía en español

Loctite 640 is a high-strength, slow-cure anaerobic retaining compound that bonds coaxial cylindrical parts — bearings on shafts, bushings, sleeves, liners, rotors and gears — by filling the clearance between both surfaces and transmitting load over the full 360°. It replaces the forced interference fit: instead of pressing the bearing onto the shaft, the retainer cures inside the gap between the metals and locks out slippage, vibration and leakage through clearance.

Direct verdict: use LOCTITE® 640 when you need high strength together with a long time to position the part (large assemblies, critical alignment, or active metals such as brass); if you need fast fixturing, choose a quick-setting retainer; if you must fill larger gaps, choose a retainer with higher gap-filling capacity. The 640 is made for assembly that cannot be rushed and still must hold. This article explains what an anaerobic retainer is, how to apply it, and when the 640 wins over an interference fit or a key.

What an anaerobic retainer is and how it works

A retaining compound is a single-part adhesive that stays liquid while exposed to air and cures (hardens) only when it is confined between two metal surfaces with no oxygen present. That reaction is anaerobic curing: the metal ions of the parts trigger polymerization of the monomer — in the 640, a urethane-methacrylate base — and the liquid becomes a rigid thermoset that completely fills the diametral gap between shaft and housing.

The mechanical outcome is the point: while an interference fit bears only on the roughness peaks of two pressed metals, the retainer forms a continuous film contacting 100 % of the overlap surface. Load is spread around the whole circumference (360°), the micromovements that cause fretting wear are eliminated, and the joint is sealed against moisture, preventing corrosion at the interface. That is why a retained assembly usually withstands more torque and more axial push-out than the same assembly held by mechanical grip alone.

LOCTITE 640 technical specifications

The values below come from Henkel's official technical data sheet (TDS) for LOCTITE® 640 and from testing per ISO 10123 (shear strength on pin-and-collar specimens). The compressive shear strength shown is on steel, cured 24 h at 22 °C.

PropertyValueStandard / condition
ChemistryUrethane methacrylate, anaerobic, 1-partHenkel TDS
AppearanceGreen liquid, fluorescent under UV lightHenkel TDS
Viscosity @ 25 °C450 to 750 mPa·s (low)ISO 3104 (Cannon-Fenske)
Compressive shear strength22 N/mm² (3,190 psi)ISO 10123, steel, 24 h @ 22 °C
Maximum diametral clearance0.1 mm (0.004")Henkel TDS
Fixture time on steelApprox. 2 hHenkel TDS (slow cure)
Full functional cure24 h at 22 °CHenkel TDS
Service temperature-55 °C to +175 °CHenkel TDS
Secondary cureActivator 7471 / 7649Inactive metals or large gaps

The 640 is deliberately slow-curing: fixture time on steel is about 2 hours, which gives time to place and align the part before the adhesive grabs. It is the opposite of a fast retainer, which locks the position within minutes and does not forgive an assembly error.

How to use LOCTITE 640 step by step

The procedure is short, but every step drives the final strength. Cleanliness and clearance are the factors that matter most.

  1. Clean and degrease. Remove oil, grease and rust from both surfaces (shaft and housing) with a cleaner-degreaser and let dry. A retainer will not cure well over an oil film.
  2. Check the clearance. Confirm that the diametral gap between parts does not exceed 0.1 mm. If it is larger, or the metal is inactive (stainless steel, anodized aluminum, chrome-plated surfaces, titanium), apply Activator 7471 or 7649 to the surface to speed up and complete the cure.
  3. Apply the product. For slip fits, deposit the retainer around the pin and on the leading edge of the collar. For press fits, coat both mating faces.
  4. Assemble with a twist. Assemble immediately, rotating one part slightly against the other to spread the adhesive around the full circumference and avoid dry zones.
  5. Cure without disturbing. Do not disturb the assembly until handling strength is reached; allow 24 h for full functional cure before loading. Heat speeds it up. To disassemble, apply localized heat and separate while hot.

When to choose 640 over another retainer

Within the family of high-strength Loctite® retainers, the choice is decided by three variables: fixture speed, gap to fill, and the positioning time the assembly needs. The 640 sits at the end of maximum strength with the longest positioning time.

CriterionLOCTITE 640Fast-setting retainerHigh gap-fill retainer
StrengthHighHighHigh
Fixture on steelSlow (approx. 2 h)Fast (minutes)Medium
Time to positionLongShortMedium
Best forLarge parts, active metals (brass), critical alignmentSeries production, fast assemblyWorn or out-of-tolerance parts

Practical rule: if the assembly needs unhurried positioning or alignment, or the part is large-diameter or brass, use 640. If line speed is the priority, choose a fast-setting retainer. If the clearance exceeds what the 640 allows because the parts are worn, choose a retainer formulated for higher gap fill. When unsure of the exact reference, always verify the manufacturer's TDS; retainers do not all share the same maximum gap or speed.

Retainer vs interference fit vs key

All three methods fix a hub to a shaft, but they behave differently in allowable clearance, concentricity, disassembly and cost. The retainer does not always replace the others: it often complements them (for example, a press fit reinforced with 640).

AspectRetainer (LOCTITE 640)Interference fitKey
Allowable clearanceTolerates gap up to 0.1 mm; fills itRequires controlled negative allowanceRequires a machined keyway
ConcentricityHigh; 360° contactHigh if the fit is uniformLower; the keyway adds imbalance
Load distributionWhole overlap surfaceRoughness peaksLocalized at the key
DisassemblyWith heat (approx. 232 °C) and separationWith press or pullerBy removing the key
Cost / machiningLow; looser tolerancesHigh; tight tolerancesHigh; keyway machining
Anti-fretting sealingYes; seals the interfacePartialNo

An interference fit demands tight tolerances and a press; a key transmits torque but decenters and bears at a single point. The retainer achieves concentricity and load spread with looser tolerances and no extra machining, in exchange for waiting out the cure. That is why the 640 is common to mount bearings on shafts and in housings, retain bushings and sleeves, and restore the fit of worn parts without re-machining.

Common mistakes when using a retainer

Purchasing recommendation

Choose LOCTITE® 640 when the job calls for high strength and slow cure to position: bearings and bushings on large shafts, brass or other active-metal assemblies, and repairs where alignment leaves no room for error. For that profile, its 22 N/mm² shear strength (ISO 10123), the up-to-0.1 mm clearance and the -55 to +175 °C range cover most industrial assemblies. When ordering, state the real diametral clearance, the metal type (active or inactive) and whether you need activator. At TECTUL you will find the Loctite 640 page with a downloadable official TDS; if your assembly needs a different set speed or higher gap fill, confirm it before buying so you do not lock the part in the wrong position.

loctite 640loctite 640
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Sources and reference standards