Page 80 - TURNING CATALOG p001-120
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ISOTURN TOOLS  JET HIGH-PRESSURE TOOLS                                                                                       USER GUIDE

                       High-Pressure Coolant                                  JHP tools provide advantageous performance,
                                                                              also when conventional pressure is applied.
                      Important Features
                   •	 Up to 200% increased cutting speed when                 Pressure vs. Flow
                                                                           •	 Each JHP tool is designed to work at a certain flow rate,
                      machining titanium and heat resistant alloys.
                   •	 Effective chip control on problematic materials.        depending on the pressure. The flow rates are listed in
                   •	 Up to 100% increased tool life when machining           the catalog pages for each tool. The user should verify
                                                                              that the pump can supply the required flow in order to
                      titanium, heat resistant alloys and alloy steel.        achieve the optimal results. The pump data sheet will
                                                                              usually list the maximum flow rate for each pressure range.
                      JHP tools are essential and important for the
                      aviation, aerospace and medical industries.             Chips & Pressure
                                                                           •	 The coolant flow will start to break the chips at a
                      The coolant channels of the JHP tools feature
                      outlets very close to the cutting edges, thus           certain pressure, depending on the specific tool and
                      gaining the following advantages:                       the workpiece material. If the chips are not breaking,
                                                                              the pressure should be increased until chip control
                   •	 Shorter machining time – cutting speed may              is achieved. As the pressure is increased, the chips
                      be increased by up to 200% when machining               become smaller and smaller. It is possible to control
                      titanium and heat resistant alloys.                     the size of the chips by modifying the pressure.

                   •	 Longer tool life – increased tool life by up to
                      100% not only on titanium and heat resistant
                      alloys, but also on stainless and alloy steels.

                   •	 Improved chip control – small chips can be obtained
                      even on the most ductile and problematic materials

                   •	 Effective cooling down of the cutting edge,
                      reducing sensitivity to heat fluctuations.

                   •	 Safer and more stable process.

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