The 9300T Series 3-Leg Mechanical Extractor is a high-precision tool designed to facilitate extraction in tight spaces and difficult-to-access situations.
This extractor features three swinging legs that provide stable support, greatly improving work efficiency.
The legs are designed with very fine tips, allowing optimal access to small spaces without damaging surrounding surfaces.
In addition, the spindle has a square head, which provides a better grip with the wrench, increasing precision and safety in the process.
Its gold brass finish not only gives it a professional appearance, but also adds corrosion resistance and durability to the tool.
This design ensures that the extractor works effectively in a wide range of applications, whether in mechanical workshops, industrial maintenance or DIY jobs.
Recommendations for use:
Make sure the legs of the extractor are positioned correctly around the part to be removed before applying force.
Use a quality wrench on the spindle to ensure a good grip and prevent premature wear of the extractor.
Check the size and capacity of the extractor to make sure it is suitable for the task at hand.
Apply force gradually to avoid damage to the part you are removing or the tool.
Test less critical areas before using the extractor on delicate components.
Maintenance recommendations:
Clean the legs and spindle after each use to prevent dirt or grease buildup, which can interfere with operation.
Lubricate the spindle periodically to maintain smooth movement and extend tool life.
Store the extractor in a dry place away from moisture to prevent rust and deterioration of the brass finish.
Bullet points
Swing leg design allows flexible adjustment to various positions and angles, improving extraction precision.
Square head spindle, which facilitates the use of a wrench to apply more torque, making the process more efficient and safer.
Greater precision thanks to the thin legs that access tight spaces without damaging parts or components.
Stability and control due to the three support points, which evenly distribute the applied force, reducing the risk of slipping or accidental movements.