10mm-1.00 x 35mm Metric Hex Bolt
Categories: Extra Fine Thread Class 8.8 Hex Bolts
- Finish: Zinc
- Material: Steel
- Brand: Midwest
- Scale: Metric
- Length: 35mm
- Diameter: 10mm
- Drive Size: 17mm Wrench/Socket
- Drive Type: Hex
- Thread Type: Extra Fine
- Package Type: HandiPack Refill Bag
Product Description:
This 10mm-1.00 x 35mm Metric Hex Bolt is crafted from durable Grade 8 steel, ensuring exceptional strength and long-lasting performance in demanding environments. Featuring a zinc finish, it offers moderate corrosion resistance, making it suitable for a variety of indoor and outdoor applications. The hex head design allows for easy installation and removal using standard wrenches or sockets, while the precise threading ensures smooth engagement with nuts for maximum holding power.
Ideal for use in automotive, construction, machinery, and industrial settings, this metric hex bolt provides reliable fastening where strength and durability are critical. The head stamping enables quick class and grade identification even after installation, helping professionals maintain quality and safety standards. Whether securing structural components or assembling equipment, this bolt delivers dependable performance for both commercial and personal projects.
With its combination of robust material, corrosion resistance, and user-friendly design, this bolt is a versatile solution for fastening needs across multiple industries. Its compatibility with standard tools and proven Grade 8 strength make it a trusted choice for professionals and DIY enthusiasts alike.
Features:
- Manufactured from Grade 8 steel for reliable strength and long‑lasting performance in demanding applications.
- Zinc finish provides moderate corrosion resistance
- Head stamping provides easy class/grade identification even after installation
- Hex head with allows for easy installation and removal with standard wrenches or sockets
- Precise threading provides smooth engagement with nuts to provide maximum holding power, ensuring components remain firmly connected under stress