Mathey Dearman Super Duty Gusseted V w/Solid Acme Rod - 4241
The Mathey Dearman Super Duty Gusseted V w/Solid Acme Rod 4241 is designed to provide enhanced stability and precise alignment for pipes ranging from 16" to 26" in diameter. This versatile tool features a gusseted V and a solid Acme rod, delivering superior strength and smooth adjustments for heavy-duty pipe fitting and welding tasks. The solid Acme rod ensures long-lasting durability, while the gusseted V design secures pipes firmly for optimal alignment. Ideal for demanding industrial applications, the 4241 is built for reliable, long-term performance.
Key Features:
- Designed for pipe diameters from 16" to 26".
- Gusseted V design ensures secure and stable pipe positioning.
- Solid Acme rod for smooth adjustments and durability.
- Perfect for heavy-duty pipe alignment and welding tasks.
- Built to withstand tough industrial environments.
- Provides reliable, long-lasting performance and support.
- Easy to use and adjust, improving operational efficiency.
Mathey Dearman Super Duty Gusseted V w/Solid Acme Rod - 4241
The Mathey Dearman Super Duty Gusseted V w/Solid Acme Rod 4241 is designed to provide enhanced stability and precise alignment for pipes ranging from 16" to 26" in diameter. This versatile tool features a gusseted V and a solid Acme rod, delivering superior strength and smooth adjustments for heavy-duty pipe fitting and welding tasks. The solid Acme rod ensures long-lasting durability, while the gusseted V design secures pipes firmly for optimal alignment. Ideal for demanding industrial applications, the 4241 is built for reliable, long-term performance.
Key Features:
- Designed for pipe diameters from 16" to 26".
- Gusseted V design ensures secure and stable pipe positioning.
- Solid Acme rod for smooth adjustments and durability.
- Perfect for heavy-duty pipe alignment and welding tasks.
- Built to withstand tough industrial environments.
- Provides reliable, long-lasting performance and support.
- Easy to use and adjust, improving operational efficiency.