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Yellow zinc-plated steel is more corrosion resistant than nickel-plated steel.
Made of yellow zinc-plated steel, these metric leveling mounts are more corrosion resistant than nickel-plated steel leveling mounts.
Nickel-plated steel has some corrosion resistance.
Black-oxide steel has a dull shine for areas where appearance is a concern.
An economical choice for applications in corrosive environments that don't require high load capacities, these mounts have a plastic base.
Made of 303/304 stainless steel, these mounts resist corrosion from water and most chemicals.
Made of 303 stainless steel, these metric mounts resist corrosion from water and most chemicals.
Made entirely of 316 stainless steel, these mounts have superior corrosion resistance.
Made entirely of 316 stainless steel, these metric mounts have superior corrosion resistance.
Broader, stronger threads enable faster adjustments and higher load capacities than standard V-shaped threads.
Punch-out holes in the base let you bolt down these mounts to keep your equipment stationary.
Punch-out holes in the base let you bolt down these metric mounts to keep your equipment stationary.
Well-suited to damp environments, these mounts have a stainless steel stud and nut for corrosion resistance.
Well-suited to damp environments, these metric mounts have a stainless steel stud and nut for corrosion resistance.
An offset mounting hole allows for installation without moving your machine.
Made of 303 stainless steel, these mounts resist corrosion from water and most chemicals.
Made entirely of 316 stainless steel, these mounts are our most resistant to corrosion from chemicals, solvents, and water.
Well-suited to damp environments, these mounts have a stainless steel nut for excellent corrosion resistance.
Ready for installation on the bottom of machines and equipment without feet, these mounts come with their own bracket.
These mounts have fine threads that give you precise leveling control.
Designed for use in sanitary and food processing areas, these mounts level tanks and machinery on uneven floors and create space to clean underneath.
Adjust the swivels on these mounts to level equipment on uneven surfaces for protection during earthquakes.
A two-piece design requires less clearance than one-piece mounts and simplifies installation—raise your machine just enough to slide the base underneath, then insert the stud from above.
All-stainless steel construction stands up to water and chemicals and won't rust or corrode.
Higher deflection ratings translate to greater vibration and shock isolation.
Thread these mounts into machinery to level them on uneven floors in sanitary environments such as food-processing areas.
Bolt these mounts down to keep your equipment stationary.
Cover the bottom of furniture legs.
A swiveling base compensates for angled legs and uneven surfaces.
Attach to the end of a screw or threaded stud to apply uniform pressure on uneven and angled surfaces. Also known as toggle and swivel-foot pads.
The contact area is covered in plastic to protect soft metal and polished surfaces. Attach these tips to the end of a screw or threaded stud to apply uniform pressure on uneven and angled surfaces. Also known as toggle and swivel-foot pads.
Attach to the end of a screw or threaded stud—the serrated face swivels to grip uneven and angled surfaces. Also known as toggle and swivel-foot pads.
Replace a fixed clamping surface with a swiveling pad that compensates for uneven workpieces.
Add mounting feet and casters to T-slotted framing structures to level equipment, anchor legs to the floor, or add mobility.
Floor locks bolt or weld to the underside of your equipment and have a spring-loaded base with a nonskid floor pad to keep equipment stationary.