8 x 3/4 Slotted Flat Stove Bolts

Brand: Midwest

SKU: 61368

Product Attributes:
  • Finish: Zinc Plated
  • Material: Steel
  • Color: Silver
  • Brand: Midwest
  • Scale: Standard
  • Length: 3/4"
  • Head Type: Flat
  • Drive Size: #4 Slotted
  • Drive Type: Slotted
  • Package Type: Refill Box

Product Description:

These 8 x 3/4 Slotted Flat Stove Bolts from Midwest are durably crafted from steel with a zinc-plated finish, offering reliable strength and excellent corrosion resistance. Featuring a flat head with a classic slotted drive, these stove bolts provide a secure fit ideal for maintenance and repairs, especially in heating appliances and high-heat environments. Their versatile design makes them suitable for a wide range of fastening applications where durability and dependable performance are essential.

Perfect for both professional and DIY use, these stove bolts ensure easy installation and long-lasting hold, making them a trusted choice for securing stove components and other repair needs. Whether used in residential, commercial, or industrial settings, they deliver consistent quality and strength to keep your projects securely fastened.

Features:

  • Durably crafted from steel with a zinc-plated finish, these 8 x 3/4 slotted flat stove bolts deliver reliable strength and corrosion resistance, making them perfect for secure fastening in a variety of applications.
  • Crafted with a flat head and slotted drive, these stove bolts provide a classic, secure fit perfect for maintenance and repairs in heating appliances.
  • Designed for versatility, these stove bolts provide a dependable fastening solution that combines classic style with lasting durability for all your repair and maintenance needs.
  • Provides dependable fastening solutions for various repair and maintenance needs, ensuring long-lasting performance across multiple applications.
  • Ideal for securely fastening stove components, these 8 x 3/4 slotted flat stove bolts offer reliable strength and easy installation, ensuring durable performance in high-heat environments.