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Page Title: HEATUP AND COOLDOWN RATE LIMITS
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Minimum  Pressurization-Temperature  Curves  Summary
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Material Science Volume 2 of 2
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Exceeding  Heatup  and  Cooldown  Rates

DOE-HDBK-1017/2-93 Brittle Fracture HEATUP AND COOLDOWN RATE LIMITS HEATUP AND COOLDOWN RATE LIMITS Personnel  operating  a  reactor  plant  must  be  aware  of  the  heatup  and  cooldown rates for the system.   If personnel exceed these rates, major damage could occur under certain conditions. EO  1.12 IDENTIFY  the  basis  used  for  determining  heatup  and  cooldown rate  limits. EO  1.13 IDENTIFY the three components that will set limits on the heatup and  cooldown  rates. EO  1.14 STATE  the  action  typically  taken  upon  discovering  the  heatup  or cooldown  rate  has been  exceeded. EO  1.15 STATE  the  reason  for  using  soak  times. EO  1.16 STATE  when  soak  times become  very  significant. Basis Figure 6   Heatup and Cooldown Rate Limits Heatup  and  cooldown  rate  limits,  as shown in Figure 6, are based upon the impact on the future fatigue life of the plant. The   heatup   and   cooldown limits  ensure  that  the  plant's  fatigue life   is  equal   to  or   greater   than  the plant's operational life. Large components    such    as    flanges,    the reactor   vessel   head,   and   even   the reactor  vessel  itself  are  the  limiting components. Usually     the     most limiting component will set the heatup and cooldown rates. Thermal   stress   imposed   by   a   rapid temperature  change  (a  fast  ramp  or even a step change) of approximately 20°F   (depending  upon  the  plant)  is insignificant     (106     cycles     allowed depending upon component) and has no effect on the design life of the plant. Rev. 0 Page 11 MS-04

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