TB Series | Temperature Control Steam Trap

Steam Traps TB Series | Temperature Control Steam Trap TBH71

Steam Traps TB Series | Temperature Control Steam Trap

TBH71

  • SCCV System
  • Stainless Steel
  • Supports condensate recovery
  • Horizontal installation
  • Vertical installation
  • Bypass function
  • Auto blow-off
    Steam Traps TB Series | Temperature Control Steam Trap TBH71

    Features/Applications

    Features

    • Complete steam containment

      The temperature control trap operates with an adjustable subcooling of condensate. Thus maintaining a certain condensate level in the trap. This mechanism provides a 100% tight sealing and effectively prevents steam loss during operation.

    • Suitable for high pressure, high temperature ranges and superheated steam

       

    • Superb durability

      The MIYAWAKI SCCV (Self Closing and Centering Valve) System has the effect of increasing durability by achieving soft closing during operation.
      Consisting of a free rotating valve that is centered and guided by the condensate flow, hence perfectly fitted in the valve seat even under extreme conditions of high pressure applications. This significantly reduces wear and erosion of the valve components.

    • Quick startup

      Swiftly discharges the initial cold condensate and air.

    • Energy saving effect

      A significant energy saving effect is achieved by controlling the temperature of discharged condensate.

    • With low operating noise and very little flash steam

        

    tb_SCCV.png
     

    Typical applications

    Suitable for ultra-high pressure and high temperature uses such as superheated lines, turbine headers, and other such applications.

    Dimensions/Weight

    Dimensions/Weight

    Flanged

    TBH71_FF.png

     

    Size Dimensions (mm) Dimensions (in) Weight
    L H1 H2 W L H1 H2 W (kg) (lb)
    1/2” 260 195 33 140 10.2 7.7 1.3 5.5

    16,0

    35.3
    3/4” 17,0 37.5
    1” 19,0 42.0

     

    Socket Weld

    TBH71_SW.png

     

    Size Dimensions (mm) Dimensions (in) Weight
    L H1 H2 W L H1 H2 W (kg) (lb)
    1/2” 250 195 33 140 9.8 7.7 1.3 5.5 13,0 28.7
    3/4”
    1”

    Specifications

    Model Connection

    Max. operating

    pressure

    Max. operating

    differential pressure

    Max. operating

    temperature

    Adjustable range

    Standard set

    temperature

    Body

    material

    Type Size

    PMO

    (MPa)

    PMO

    (psig)

    (MPa) (psig)

    TMO

    (℃)

    TMO

    (℉)

    (℃) (℉) (℃) (℉)
    TBH71-80F

    Flanged

    FF,RF

    1/2” 8,0 1160 8,0 1160 470 878 100 - 260 212 - 500

    210

    (at 6,5MPa)

    410
    (at 943psig)

    Cast

    steel

    WC6

    3/4”
    1”
    TBH71-80W

    Socket Weld

    SW

    1/2”
    3/4”
    1”
    TBH71-105F

    Flanged

    FF,RF

    1/2” 10,5 1522 10,5 1522 100 - 280 212 - 536

    230

    (at 8,0MPa)

    446
    (at 1160psig)
    20
    25
    TBH71-105W

    Socket Weld

    SW

    1/2”
    3/4”
    1”
    *Available flange standards: ASME/JPI 600lb, 900lb, 1500lb,  DIN PN63, 100, 160,  JIS 30K, 40K, 63K 
    *Socket weld standards:   ASME 2500lb, JPI 2500lb, JIS sch 160

    ●Maximum allowable pressure (PMA): 11,8MPa (1711psig) (at 425℃ (800℉))
    ●Maximum allowable temperature (TMA): 593℃ (1099℉) (at 1,3MPa (189psig))
    ●Minimum operating differential pressure (⊿PMN): 1.0MPa (145psig) ⊿PMN is the minimum operating differential pressure between the trap inlet and outlet.

    ●In the absence of any particular instructions for the set temperature, the product is adjusted to the standard factory set temperature above for shipment.
    ●Please use a set temperature that is at least 30℃ (86℉) lower than the saturation temperature for the steam pressure in use.
    *The body of the TBH71 can also be manufactured using chromium molybdenum forged alloy steel product A182 F22.

    Discharge Capacity

    TBH71.png
     

    ●⊿t is the difference between the temperature of a temperature control trap when the valve is initially opened and condensate temperature. The temperature difference (⊿t) upon the initial passage of air is great, and indicates that the flow rate will also increase.

    Download

    * Membership registration is required to download the documents.

    Features

    • Complete steam containment

      The temperature control trap operates with an adjustable subcooling of condensate. Thus maintaining a certain condensate level in the trap. This mechanism provides a 100% tight sealing and effectively prevents steam loss during operation.

    • Suitable for high pressure, high temperature ranges and superheated steam

       

    • Superb durability

      The MIYAWAKI SCCV (Self Closing and Centering Valve) System has the effect of increasing durability by achieving soft closing during operation.
      Consisting of a free rotating valve that is centered and guided by the condensate flow, hence perfectly fitted in the valve seat even under extreme conditions of high pressure applications. This significantly reduces wear and erosion of the valve components.

    • Quick startup

      Swiftly discharges the initial cold condensate and air.

    • Energy saving effect

      A significant energy saving effect is achieved by controlling the temperature of discharged condensate.

    • With low operating noise and very little flash steam

        

    tb_SCCV.png
     

    Typical applications

    Suitable for ultra-high pressure and high temperature uses such as superheated lines, turbine headers, and other such applications.

    Dimensions/Weight

    Flanged

    TBH71_FF.png

     

    Size Dimensions (mm) Dimensions (in) Weight
    L H1 H2 W L H1 H2 W (kg) (lb)
    1/2” 260 195 33 140 10.2 7.7 1.3 5.5

    16,0

    35.3
    3/4” 17,0 37.5
    1” 19,0 42.0

     

    Socket Weld

    TBH71_SW.png

     

    Size Dimensions (mm) Dimensions (in) Weight
    L H1 H2 W L H1 H2 W (kg) (lb)
    1/2” 250 195 33 140 9.8 7.7 1.3 5.5 13,0 28.7
    3/4”
    1”
    Model Connection

    Max. operating

    pressure

    Max. operating

    differential pressure

    Max. operating

    temperature

    Adjustable range

    Standard set

    temperature

    Body

    material

    Type Size

    PMO

    (MPa)

    PMO

    (psig)

    (MPa) (psig)

    TMO

    (℃)

    TMO

    (℉)

    (℃) (℉) (℃) (℉)
    TBH71-80F

    Flanged

    FF,RF

    1/2” 8,0 1160 8,0 1160 470 878 100 - 260 212 - 500

    210

    (at 6,5MPa)

    410
    (at 943psig)

    Cast

    steel

    WC6

    3/4”
    1”
    TBH71-80W

    Socket Weld

    SW

    1/2”
    3/4”
    1”
    TBH71-105F

    Flanged

    FF,RF

    1/2” 10,5 1522 10,5 1522 100 - 280 212 - 536

    230

    (at 8,0MPa)

    446
    (at 1160psig)
    20
    25
    TBH71-105W

    Socket Weld

    SW

    1/2”
    3/4”
    1”
    *Available flange standards: ASME/JPI 600lb, 900lb, 1500lb,  DIN PN63, 100, 160,  JIS 30K, 40K, 63K 
    *Socket weld standards:   ASME 2500lb, JPI 2500lb, JIS sch 160

    ●Maximum allowable pressure (PMA): 11,8MPa (1711psig) (at 425℃ (800℉))
    ●Maximum allowable temperature (TMA): 593℃ (1099℉) (at 1,3MPa (189psig))
    ●Minimum operating differential pressure (⊿PMN): 1.0MPa (145psig) ⊿PMN is the minimum operating differential pressure between the trap inlet and outlet.

    ●In the absence of any particular instructions for the set temperature, the product is adjusted to the standard factory set temperature above for shipment.
    ●Please use a set temperature that is at least 30℃ (86℉) lower than the saturation temperature for the steam pressure in use.
    *The body of the TBH71 can also be manufactured using chromium molybdenum forged alloy steel product A182 F22.

    TBH71.png
     

    ●⊿t is the difference between the temperature of a temperature control trap when the valve is initially opened and condensate temperature. The temperature difference (⊿t) upon the initial passage of air is great, and indicates that the flow rate will also increase.

    * Membership registration is required to download the documents.

    Contact