Best Weld-on Bucket Edges for Skid Steers and Loaders

When choosing a weld-on bucket edge, you want reliability, longevity, and compatibility with your equipment. The following selections are all designed to be welded or bolted onto standard skid steer and loader buckets, with variations in length, thickness, and hardness to suit different digging and material handling tasks. This guide highlights five solid options, detailing key features to help you compare performance, wear resistance, and installation requirements.

Summary of chosen products

Product Size Material Mount Approx. Hardness
Mytee 60″x4″x1/2″ Cutting Edge 60″ x 4″ x 1/2″ 16Mn Steel Weld-On / Bolt-On 36-40 HRC
Mytee 84″x4″x1/2″ Cutting Edge 84″ x 4″ x 1/2″ 16Mn Steel Bolt-On / Weld-On Noted: 343 MPA yield
Titan Attachments 72″ Cutting Edge 72″ x 4″ 1055 Carbon Steel Weld-On / Bolt-On Unpainted
Mytee 24″x4″x1/2″ Universal Edge 24″ x 4″ x 1/2″ Boron Steel Weld-On Minimum 500 HB
Titan Attachments 60″ Cutting Edge 60″ x 4″ 1055 Carbon Steel Weld-On / Bolt-On Unpainted

Mytee Products 60″ Weld-On Cutting Edge

Mytee Products 60

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The 60″ Mytee edge is a weld-on, single bevel blade crafted from 16Mn steel, offering a balance of toughness and wear resistance. Its 4″ width and 1/2″ thickness provide substantial material thickness for standard skid steer buckets. Heat-treated construction enhances durability against repeated impacts in material handling and digging. A hardness range of 36-40 HRC indicates good resistance to wear without compromising structural integrity. The option to bolt-on provides installation flexibility for equipment that requires non-weld installations.

Mytee Products 84″ Weld/Bolt-On Cutting Edge

Mytee 84-Inch Bucket Edge

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This 84″ edge is designed to fit wider buckets, offering a robust 4″ width and 1/2″ thickness. Constructed from 16Mn steel, it supports both weld-on and bolt-on mounting, giving installers options based on prior gear compatibility and maintenance schedules. While the listed yield strength is 343 MPa, the element that stands out is its size and mounting versatility, providing enhanced coverage and impact resistance across larger loading zones. It’s well-suited for heavy-duty excavation and loader work where increased edge life reduces downtime.

Titan Attachments 72″ Cutting Edge

Titan 72-Inch Cutting Edge

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The Titan Attachments 72″ edge features 1055 carbon steel and comes unpainted, which can simplify welding work and heat treatment during installation. The edge is 4″ wide and 72″ long, designed for weld-on applications with bolt-on capabilities after drilling holes. Carbon steel offers solid toughness and impact resistance, suitable for mid-to-heavy duty use. The unpainted finish allows for direct editing and coating as needed, maximizing corrosion protection in aggressive working environments.

Mytee Products 24″x4″x1/2″ Weld-On Edge

Mytee 24-Inch Weld-On Edge

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This 24″ universal edge uses boron steel, delivering excellent wear resistance with a minimum hardness of 500 HB. The 4″ width and 1/2″ thickness provide reliable durability for smaller or more precise buckets, making it an ideal option for lighter or more maneuverable skid steer setups. The weld-on mounting ensures a strong, permanent connection, and boron steel is known for maintaining sharp edges over many cycles of digging and pushing.

Titan Attachments 60″ Cutting Edge

Titan 60-Inch Cutting Edge

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The 60″ Titan edge uses 1055 carbon steel and is offered unpainted for easy welding and coating post-installation. With a 60″ length and 4″ width, this weld-on or bolt-on option suits a broad range of bucket sizes and loader configurations. The unpainted surface allows for custom finishing, reducing prep work during installation, and is designed to withstand heavy pushing and digging with dependable edge life.

Buying Guide

Key considerations when selecting a weld-on bucket edge include material, hardness, and mounting method. Material choices like 16Mn steel, 1055 carbon steel, and boron steel offer different balances of toughness and wear resistance. Heat treating can improve edge life, while hardness ratings (where provided) help estimate wear performance in abrasive materials. Mounting options (weld-on vs bolt-on) affect installation time, bucket compatibility, and serviceability; weld-on edges generally offer a stronger, permanent bond, while bolt-on edges allow easier removal for maintenance or replacement.

Size and thickness influence performance. Longer edges cover more bucket surface, distributing load and reducing wear on the bucket lip, while thicker edges resist deformation and cracking under heavy loads. A 4″ width is common for many skid steer buckets, but larger or smaller widths may be preferable for specific bucket profiles or material handling tasks. When choosing, consider frequent work conditions (rocky soil, concrete debris, dense material) and the expected duty cycle.

Installation considerations include ensuring compatibility with existing mounting holes, whether the edge is designed as weld-on, bolt-on, or both, and the preparation required for welding or drilling. Surface treatment matters for corrosion resistance; some edges come unpainted to allow direct welding or coating. For environments with moisture or chemicals, applying a protective coating after installation helps prolong edge life.

Performance perspectives vary: 16Mn steel edges provide a robust balance of toughness and wear resistance, suitable for mixed tasks; 1055 carbon steel edges offer high strength and are popular for larger or more aggressive material handling; boron steel edges emphasize wear resistance for lighter to mid-range use. Matching edge characteristics to your bucket size, loader capacity, and job site material will optimize durability and uptime.

To ensure optimal results, follow the manufacturer’s installation guidelines, verify proper alignment with mounting holes, and perform periodic inspections for wear, cracks, or deformation. Regular maintenance, including cleaning the edge after use and applying protective coatings, can extend service life and reduce the need for frequent replacements.

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