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Machine Tap FANAR M22x1.5 (model E1-131001-0225) — M22 x 1.5 metric thread
Machine Tap FANAR M22x1.5 (model E1-131001-0225) — M22 x 1.5 metric thread
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Machine Tap FANAR M22x1.5 (model E1-131001-0225) — M22 x 1.5 metric thread
Leave your address - as soon as the price of the product goes down, you'll know about it right away
Machine Tap FANAR M22x1.5 (model E1-131001-0225) — M22 x 1.5 metric thread
Machine Tap FANAR M22x1.5 (model E1-131001-0225) — M22 x 1.5 metric thread
Machine tap FANAR M22x1.5 (model E1-131001-0225) is a precision cutting tool engineered to produce internal metric threads M22 × 1.5. Intended for machine tapping operations, this tap provides consistent thread form and dimensional accuracy when used with appropriate tapping holders and machine settings. It is suitable for machining steel, cast iron and non-ferrous metals depending on the chosen cutting parameters and cutting fluid.
The FANAR M22x1.5 machine tap features a robust geometry optimized for machine use, offering reliable chip evacuation and reduced risk of thread deformation. Its design supports repeatable thread quality and stable cutting performance across a range of workpiece materials when correct speeds and feeds are applied. The tool is compatible with standard machine tapping setups and can be integrated into automated or manual machining cycles.
Mount the tap in a suitable tapping holder or machine spindle ensuring correct axial alignment. Select cutting speed, feed and cutting fluid appropriate for the workpiece material. Advance the tap under controlled feed to maintain thread pitch, retract periodically if necessary for chip removal, and complete the cut with steady axial pressure. After threading, inspect the thread with gauges or mating parts and apply rust protection if required.
Use recommended cutting speeds and feeds for the specific material, ensure secure clamping of the workpiece, and employ appropriate cutting fluid to extend tool life and improve surface finish. When tapping blind holes, monitor chip evacuation closely to avoid breakage; for through holes, ensure chips can exit freely.
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