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Socket Head Cap Screws Technical Datasheets

Socket Head Cap Screws are precision-engineered machine screws featuring a cylindrical head with an internal drive, allowing high tightening torque while requiring minimal installation space. They are widely used in machinery, automation equipment, tooling, robotics, automotive systems, aerospace assemblies, and other high-performance engineering applications where strength and precision are essential.

Horizon Inc supplies Socket Head Cap Screws manufactured to internationally recognized DIN and ISO standards in alloy steel, stainless steel, and titanium.

Allen Socket Head Cap Screw
DIN 912
Torx Socket Head Cap Screw
ISO 14579

DIN 912 / ISO 4762 Allen Socket Head Cap Screw

The most widely used cylindrical socket head cap screw with an internal hex (Allen) drive. Designed for high-strength fastening where reliable clamping force and compact head dimensions are required.

Applications

  • Machine tools
  • Industrial equipment
  • Automation systems
  • Gearboxes
  • Fixtures
  • Tooling
  • Heavy machinery

ISO 14579 Torx Socket Head Cap Screw

Socket head cap screw with an internal Torx (Hexalobular) drive that provides improved torque transmission, reduced cam-out, and longer tool life, making it suitable for automated assembly and high-volume production.

Applications

  • Automotive
  • Robotics
  • Electronics
  • Medical equipment
  • Aerospace
  • Precision assemblies
MaterialCharacteristicsTypical Applications
Alloy SteelHigher tensile strengthMechanical equipment
Stainless Steel 304 (A2)Corrosion resistantGeneral outdoor & food equipment
Stainless Steel 316 (A4)Superior corrosion resistanceMarine & chemical industries
TitaniumExceptional strength-to-weight ratio and corrosion resistanceAerospace, medical devices, marine, motorsports
  • Plain
  • Zinc Plated (Blue/White)
  • Yellow Zinc Plated
  • Black Oxide
  • Zinc Nickel
  • Mechanical Galvanized
  • Hot Dip Galvanized (selected standards)
  • Geomet®
  • Dacromet®
  • PTFE Coated
  • Stainless Steel Passivated

Carbon Steel

  • Class 10.9
  • Class 12.9

Stainless Steel

  • A2-70
  • A4-70

Industrial Machinery

Secure fastening of machine components subjected to high loads and vibration.

Robotics & Automation

Compact fastening solution for robotic arms, automation systems, and precision mechanisms.

Aerospace

Lightweight titanium and high-strength alloy steel socket screws for critical assemblies.

Automotive

Engine components, transmission systems, tooling, and precision mechanical assemblies.

Electronics

Assembly of equipment where compact heads and precise fastening are required.

Tool & Die

Fixtures, moulds, dies, and precision tooling requiring repeatable tightening torque.

  • High tensile strength for demanding applications
  • Compact cylindrical head allows installation in restricted spaces
  • Excellent torque transmission
  • Suitable for precision machining applications
  • Available in corrosion-resistant stainless steel and titanium
  • Reliable performance under vibration
  • Widely standardized under DIN and ISO specifications
  • Easy maintenance and repeated assembly
  • Suitable for manual and automated assembly

✓ Do’s

  • Use the correct size Allen key or Torx bit to ensure full engagement with the internal drive.
  • Clean internal threads before installation to remove dirt, oil, and burrs.
  • Tighten using the recommended torque values based on material, size, and lubrication.
  • Apply suitable thread lubricant or anti-seize when installing stainless steel or titanium screws to prevent galling.
  • Ensure mating surfaces are clean and flat for uniform clamping force.
  • Use calibrated torque tools for critical assemblies.
  • Select the correct screw length to achieve adequate thread engagement without bottoming out.
  • Use thread-locking compounds where vibration resistance is required.

✗ Don’ts

  • Do not use worn or damaged Allen keys or Torx bits.
  • Do not overtighten beyond the recommended torque.
  • Do not install screws into damaged or contaminated threads.
  • Do not mix incompatible materials where galvanic corrosion may occur.
  • Do not use impact tools unless the application specifically permits them.
  • Never reuse severely stretched or damaged high-strength screws in critical applications.
  • Avoid forcing misaligned components together using the screw.
ProblemPossible CauseRecommended Solution
Rounded internal hex or Torx recessIncorrect or worn driverUse the correct size, high-quality driver and replace worn tools.
Screw loosens during serviceInsufficient preload or vibrationTighten to the specified torque and use a suitable thread-locking compound or locking washer.
Thread galling (especially stainless steel or titanium)Dry installation or excessive frictionApply anti-seize lubricant and avoid high-speed installation.
Screw breaks during tighteningOver-tightening or incorrect property classUse the correct strength grade and follow recommended tightening torque.
Difficulty engaging threadsCross-threading or damaged internal threadsInspect, clean, and realign components before installation.
Cam-out or slipping during tighteningIncorrect driver size or poor engagementEnsure the tool is fully seated before applying torque.
Corrosion around fastenerUnsuitable material selectionSelect corrosion-resistant materials such as A4 stainless steel or titanium where required.
Uneven clamping forceDirty mating surfaces or improper tightening sequenceClean the joint surfaces and tighten evenly using the correct sequence.

What is the difference between DIN 912 and ISO 4762?

ISO 4762 is the international standard that largely replaces DIN 912. Both standards are dimensionally interchangeable for most industrial applications.

What is the difference between Allen and Torx socket screws?

Allen screws use an internal hex drive, whereas Torx socket screws use a six-lobed drive that offers improved torque transfer, reduced cam-out, and longer tool life.

Which material should I choose?

12.9 Alloy Steel – Maximum strength
10.9 Alloy Steel – General heavy-duty applications
A2 Stainless Steel – General corrosion resistance
A4 Stainless Steel – Marine and chemical environments
Titanium Grade 5 – High strength with reduced weight

Are Socket Head Cap Screws suitable for high-vibration applications?

Yes. Their high clamping force makes them suitable for applications subjected to vibration. Where additional security is required, they can be used with thread-locking compounds or locking washers.

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