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Ultra Q™ Process

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<div class="htmlview paragraph">Hayes Lemmerz has made an enormous leap in technology by creating a new “4 in 1” disc rotor that solves brake industry noise, dimension accuracy, thermal diffusivity and “hot spot” rotor problems. By closely adhering to a disciplined system of concurrent planning, product development and production feasibility studies (which included material development and CAE design and dynamometer and vehicle tests), Hayes has solved the brake industry's top four warranty concerns. Development of several propriety manufacturing methods, production system/equipment and quality assurance procedures followed to bring this product from the Development Laboratory to the Production Plants.</div> <div class="htmlview paragraph">Hayes' new brake rotor is designed with damped iron composition, 72 curve fin rotor geometry and is then processed using Hayes' patented ULTRA-Q process. The 72 curve fin rotor design, developed through previous Hayes efforts (<span class="xref">Ref-1</span>,<span class="xref">2</span>,<span class="xref">3</span>,<span class="xref">4</span>) creates a 100 degrees F cooler running rotor. Hayes now adds the strength of the ULTRA-Q process to create a highly damped, thermal diffused and dimensionally accurate rotor.</div> <div class="htmlview paragraph">In this paper, Hayes summarizes high damping, one of the four impressive characteristics of its patented rotor: (1) high cooling (2) high damping (3) high thermal diffusivity and (4) highly accurate dimensions. Customers interested in resolving one or more of the above issues may purchase Hayes' rotor with any of these characteristics.</div>
Title: Ultra Q™ Process
Description:
<div class="htmlview paragraph">Hayes Lemmerz has made an enormous leap in technology by creating a new “4 in 1” disc rotor that solves brake industry noise, dimension accuracy, thermal diffusivity and “hot spot” rotor problems.
By closely adhering to a disciplined system of concurrent planning, product development and production feasibility studies (which included material development and CAE design and dynamometer and vehicle tests), Hayes has solved the brake industry's top four warranty concerns.
Development of several propriety manufacturing methods, production system/equipment and quality assurance procedures followed to bring this product from the Development Laboratory to the Production Plants.
</div> <div class="htmlview paragraph">Hayes' new brake rotor is designed with damped iron composition, 72 curve fin rotor geometry and is then processed using Hayes' patented ULTRA-Q process.
The 72 curve fin rotor design, developed through previous Hayes efforts (<span class="xref">Ref-1</span>,<span class="xref">2</span>,<span class="xref">3</span>,<span class="xref">4</span>) creates a 100 degrees F cooler running rotor.
Hayes now adds the strength of the ULTRA-Q process to create a highly damped, thermal diffused and dimensionally accurate rotor.
</div> <div class="htmlview paragraph">In this paper, Hayes summarizes high damping, one of the four impressive characteristics of its patented rotor: (1) high cooling (2) high damping (3) high thermal diffusivity and (4) highly accurate dimensions.
Customers interested in resolving one or more of the above issues may purchase Hayes' rotor with any of these characteristics.
</div>.

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