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These bearings support high axial loads and offer low friction operation. Their self-aligning design makes them suitable for use where housing alignment with the shaft is difficult to maintain or where the shaft deflects under heavy loads.

Angular contact ball bearings are designed to accommodate combined loads, simultaneously supporting axial and radial forces. The contact angle between the balls and raceways allows for high axial load capacity and stiffness.

Tapered roller bearings accommodate combined loads, handling both radial and axial forces simultaneously. Their design ensures efficient load distribution and smooth operation in applications requiring durability.

Cylindrical roller bearings are designed to withstand predominantly radial loads, withstanding limited axial loads in certain designs. These bearings offer high precision, minimal noise, and reduced vibration, especially compared to ball bearings of similar dimensions.

These roller bearings offer high resistance to impact and vibration at low speeds. They are self-aligning and mainly handle large radial loads, along with a fair axial load.

This deep groove radial ball bearing is engineered for smooth and efficient rotation in various applications. It is constructed with hardened steel races and precision-ground balls for optimal performance and durability.

This T-handle hex wrench is made from a lightweight and durable titanium alloy. Its sliding T-handle provides increased leverage and improved access to fasteners in tight spaces.

This double flat box wrench is made of titanium alloy. It is designed for high-torque applications, offering superior strength, corrosion resistance and durability.

This combination wrench conforms to DIN 3113 standards, featuring an open-end on one side and a box-end on the other. It is constructed from durable 40Cr steel, offering high torque capacity for various applications.

This specialized tool is designed for removing gears, bearings, and press-fit parts in hazardous environments. It is constructed from non-ferrous metals to eliminate the risk of sparks during operation.

This hand saw is designed for use in environments where flammable or explosive materials are present. Its non-sparking construction minimizes the risk of ignition, making it suitable for industries like oil refineries and chemical plants.

This non-sparking screwdriver is made from aluminum bronze or beryllium copper. It is forged to be non-sparking and non-magnetic.

These non-sparking pliers are designed for stripping insulation from electrical wires in hazardous environments. They are made from non-ferrous materials to eliminate the risk of sparks.

These diagonal cutting pliers are made from aluminum bronze or beryllium copper. They are designed for use in environments where sparks could cause ignition or explosion.

These non-sparking scissors are made from aluminum bronze or beryllium copper. Forged for durability, they are designed for use in environments where sparks could pose a risk.

This non-sparking bar is designed for use in environments where flammable or explosive materials are present. It is constructed from non-ferrous metals such as aluminum bronze or beryllium copper alloys, which do not produce sparks when struck against hard surfaces, reducing the risk of ignition.

This non-sparking chisel is made from aluminum bronze or beryllium copper. It is forged for enhanced durability and designed for use in environments where flammable or explosive materials are present.

This half-round file is constructed from beryllium copper for non-sparking performance. It is designed for shaping, deburring, and smoothing metal, wood, or plastic in hazardous environments.