M5X8mm – Grade 10.9 – White Zinc – Hexagon bolt

$0.0331 - $0.0828
Add to cart

M5X10mm – Grade 10.9 – White Zinc – Hexagon bolt

$0.0331 - $0.0828
Add to cart

M5X12mm – Grade 10.9 – White Zinc – Hexagon bolt

$0.0378 - $0.0944
Add to cart

M5X16mm – Grade 10.9 – White Zinc – Hexagon bolt

$0.0403 - $0.1061
Add to cart

M5X20mm – Grade 10.9 – White Zinc – Hexagon bolt

$0.0423 - $0.1113
Add to cart

M5X25mm – Grade 10.9 – White Zinc – Hexagon bolt

$0.0482 - $0.1268
Add to cart

M5X30mm – Grade 10.9 – White Zinc – Hexagon bolt

$0.0556 - $0.1462
Add to cart

M5X35mm – Grade 10.9 – White Zinc – Hexagon bolt

$0.0634 - $0.1669
Add to cart

M5X40mm – Grade 10.9 – White Zinc – Hexagon bolt

$0.0708 - $0.1863
Add to cart

M5X45mm – Grade 10.9 – White Zinc – Hexagon bolt

$0.0747 - $0.1967
Add to cart

M5X50mm – Grade 10.9 – White Zinc – Hexagon bolt

$0.0806 - $0.2122
Add to cart

M5X60mm – Grade 10.9 – White Zinc – Hexagon bolt

$0.1052 - $0.2769
Add to cart

M6X10mm – Grade 10.9 – White Zinc – Hexagon bolt

$0.0189 - $0.0497
Add to cart

M6X12mm – Grade 10.9 – White Zinc – Hexagon bolt

$0.0193 - $0.0507
Add to cart

M6X16mm – Grade 10.9 – White Zinc – Hexagon bolt

$0.0199 - $0.0523
Add to cart

M6X20mm – Grade 10.9 – White Zinc – Hexagon bolt

$0.0212 - $0.0559
Add to cart

M6X25mm – Grade 10.9 – White Zinc – Hexagon bolt

$0.0238 - $0.0626
Add to cart

M6X30mm – Grade 10.9 – White Zinc – Hexagon bolt

$0.0277 - $0.0730
Add to cart

M6X35mm – Grade 10.9 – White Zinc – Hexagon bolt

$0.0303 - $0.0797
Add to cart

M6X40mm – Grade 10.9 – White Zinc – Hexagon bolt

$0.0330 - $0.0869
Add to cart

M6X45mm – Grade 10.9 – White Zinc – Hexagon bolt

$0.0356 - $0.0937
Add to cart

M6X50mm – Grade 10.9 – White Zinc – Hexagon bolt

$0.0385 - $0.1014
Add to cart

M8X12mm – Grade 10.9 – White Zinc – Hexagon bolt

$0.0336 - $0.0885
Add to cart

M8X16mm – Grade 10.9 – White Zinc – Hexagon bolt

$0.0348 - $0.0916
Add to cart

Grade 10.9 Performance Characteristics

Grade 10.9 fasteners represent a significant step up in performance. They are typically specified in applications where size constraints limit the use of larger bolts, necessitating a smaller bolt with higher strength. The material is heat-treated to achieve high hardness, making it critical to follow precise torque specifications during installation to avoid failure.

Mechanical Properties Specification

The "10.9" marking indicates specific metallurgical properties defined by ISO 898-1 standards:
Property Value Engineering Implication
Tensile Strength 1000 N/mm² (Min) The absolute breaking point. Extremely resistant to snapping under tension.
Yield Strength 900 N/mm² (Min) Calculated as 90% of tensile strength. Allows for very high pre-load clamping force.
Material Base Low Carbon Alloy Steel Contains alloy elements (like Boron or Manganese) for deep hardenability.

Quality Assurance

Given the critical nature of these bolts, material verification is often required. We can provide an EN 10204 3.1 Material Certificate upon request. Please note that third-party inspection services require an additional fee.

Critical Industrial Applications

Due to their high yield strength, Grade 10.9 bolts are essential in sectors involving high stress and vibration:
  • Automotive Suspension: Control arms, struts, and brake calipers where failure is not an option.
  • Heavy Trucking: Chassis assembly and wheel hubs.
  • Construction Equipment: Hydraulic rams and pivot points on excavators and cranes.
  • Wind Energy: Turbine nacelle assembly and blade root connections.

Frequently Asked Questions

What is Hydrogen Embrittlement?

High-strength bolts (Grade 10.9 and 12.9) are susceptible to hydrogen embrittlement during the zinc plating process (acid pickling). This can cause the bolt to crack unexpectedly under load. High-quality 10.9 zinc plated bolts undergo a "de-embrittlement baking" process immediately after plating to drive out the hydrogen and ensure safety.

Can I reuse Grade 10.9 bolts?

It depends on the application, but caution is advised. If a Grade 10.9 bolt has been torqued near its yield point, it may have undergone permanent deformation or fatigue. In critical safety applications (like automotive engines or suspension), it is standard practice to replace the bolts rather than reuse them.

Should I use washers with Grade 10.9 bolts?

Yes, but you must use hardened washers (typically HV 300). Using standard mild steel washers with a Grade 10.9 bolt is dangerous because the high clamping force will crush the soft washer, leading to a loss of preload and potentially loosening the joint.