Vaste buisvormige schelpen en buiswarmtewisselaars BEM-type PED 97/23/CE, ASME Viii Div.1

Heat Exchanger
July 03, 2025
Category Connection: TEMA warmtewisselaar
Brief: Discover the high-performance PED 2014/68/EU & ASME U Stamp Certified BEM Exchanger, designed for chemical cooling with ASTM SB338 Grade 2 Titanium Seamless Tubes. Ideal for demanding environments, this heat exchanger offers exceptional corrosion resistance and durability.
Related Product Features:
  • Certified to PED 2014/68/EU and ASME U Stamp standards for compliance with international regulations.
  • Constructed with ASTM SB338 Grade 2 Titanium Seamless Tubes for superior corrosion resistance.
  • BEM Type configuration as per TEMA standards, ensuring reliable and efficient heat exchange.
  • Features a fixed tubesheet design for stability and ease of maintenance.
  • High tensile strength (≥ 345 MPa) and yield strength (≥ 275 MPa) for durability under pressure.
  • Lightweight with a density of 4.51 g/cm³, enhancing installation and operational efficiency.
  • Suitable for harsh environments in industries like chemical processing, petrochemical, and power generation.
  • Includes comprehensive components like stationary head, shell, baffles, and nozzles for complete functionality.
FAQS:
  • What industries commonly use the BEM Exchanger with ASTM SB338 Grade 2 Titanium?
    This heat exchanger is widely used in chemical processing, petrochemical, power generation, desalination, oil and gas, marine, and aerospace industries due to its corrosion resistance and durability.
  • What are the key mechanical properties of the ASTM SB338 Grade 2 Titanium tubes?
    The tubes feature a tensile strength of ≥ 345 MPa, yield strength of ≥ 275 MPa, elongation of ≥ 20%, and a density of 4.51 g/cm³, ensuring high performance under extreme conditions.
  • How does the BEM Type configuration benefit heat exchanger performance?
    The BEM Type design, per TEMA standards, includes a fixed tubesheet and one-pass shell, offering easy maintenance, stability, and efficient heat transfer in demanding applications.