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ASME SB171 C46400 Tube Sheet for Heat Exchanger, Air Cooler & Pressure Vessel

ASME SB171 C46400 Tube Sheet for Heat Exchanger, Air Cooler & Pressure Vessel

  • ASME SB171 C46400 Tube Sheet for Heat Exchanger, Air Cooler & Pressure Vessel
  • ASME SB171 C46400 Tube Sheet for Heat Exchanger, Air Cooler & Pressure Vessel
  • ASME SB171 C46400 Tube Sheet for Heat Exchanger, Air Cooler & Pressure Vessel
  • ASME SB171 C46400 Tube Sheet for Heat Exchanger, Air Cooler & Pressure Vessel
ASME SB171 C46400 Tube Sheet for Heat Exchanger, Air Cooler & Pressure Vessel
Product Details:
Place of Origin: China
Brand Name: YUHONG
Certification: ASME II, ASME III, ABS, LR, DNV, GL , BV, CCS, KR, NK, TUV, PED, GOST, ISO , TS
Model Number: ASME SB171 C46400 Naval Brass Tube Sheet
Payment & Shipping Terms:
Minimum Order Quantity: 1 PC
Price: Negotiable
Packaging Details: Wooden case with waterproof package in side
Delivery Time: Depends on quantity
Payment Terms: T/T,L/C
Supply Ability: According To Client's Request
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Detailed Product Description
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ASME SB171 C46400 Tube Sheet

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Heat Exchanger Tube Sheet

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Pressure Vessel Tube Sheet

ASME SB171 C46400 Naval Brass Tube Sheet
Corporate Profile & Supply Capabilities

Yuhong Group Co., Ltd. is a premier engineering manufacturer specializing in thermal management systems and high-pressure process equipment. Our comprehensive manufacturing portfolio features shell and tube heat exchangers, industrial pressure vessels, and air-cooled heat exchangers. To provide complete downstream integration, we supply high-integrity replacement tube bundles, U-tubes, straight heat exchanger tubes, finned tubes, and heavy-duty components including precision-machined tube sheets, baffles, and pressure vessel heads.

Product Overview

The ASME SB171 C46400 Tube Sheet serves as the critical structural interface managing tube-to-shell integrity within high-velocity thermal systems. Fabricated exclusively from premium Naval Brass, this component delivers excellent corrosion performance under severe brackish, marine, and fresh-water conditions. C46400 alloy exhibits inherent resistance to dezincification and bio-fouling, making these tube sheets the industrial standard for marine condensers, oil coolers, and power-plant heat exchangers operating within corrosive chloride environments.

Material Specification and Chemical Composition

Our raw material sourcing and forging protocols strictly adhere to the ASME Section II, Part B specification. The structural reliability of the C46400 alloy relies on its exact metallurgical composition, balancing structural alpha-beta phase distribution and corrosion inhibition.

Standard ASME SB171 / SB171M (Plate and Sheet for Pressure Vessels, Condensers, and Heat Exchangers)
Alloy Grade C46400 (Naval Brass)
Nominal Composition Copper (Cu) 59.0% - 62.0%, Tin (Sn) 0.5% - 1.0%, Zinc (Zn) Remainder, Lead (Pb) ≤ 0.20%, Iron (Fe) ≤ 0.10%
Inspection and Testing Requirements

To ensure zero-defect integration inside shell-and-tube configurations, all plates undergo strict non-destructive and destructive testing matrix regimes before multi-axis CNC drilling operations:

  • Mechanical Testing (ASME SB171 / ASTM E8): Tensile Strength ≥ 345 MPa; Yield Strength ≥ 150 MPa; Elongation ≥ 35%
  • Ultrasonic Examination (ASME Section V, Article 5): 100% volumetric scanning for internal voids, laminations, and structural inclusions
  • Dimensional Inspection (TEMA Class R, C, B Standards): Ligament width tolerances within hundredths of a millimeter; exact perpendicularity
Industrial Application Scenarios

ASME SB171 C46400 Naval Brass tube sheets are explicitly specified for industrial heat transfer configurations where thermal conductivity must be paired with seawater erosion resistance. Typical installations include steam surface condensers in power generation plants, marine lube oil cooling units on offshore platforms, central fresh-water coolers, and chemical processing evaporators handling mildly acidic or chlorinated aqueous solutions.

Technical Highlights and Custom Engineering
  • Dezincification Resistance via Tin Alloying: The deliberate inclusion of 0.5% - 1.0% Tin (Sn) chemically modifies the crystal lattice, suppressing the leaching of zinc in high-chloride waters and maintaining the mechanical integrity of the tube-to-tube-sheet joints.
  • CNC High-Precision Drilling: Our manufacturing plant utilizes advanced multi-axis CNC drilling centers to execute tube-hole preparation. We guarantee ultra-tight ligament tolerances as demanded by TEMA Class R standards, reducing stress concentration during subsequent tube rolling or structural welding.
  • Custom Processing: Yuhong Group supplies C46400 sheets up to 150mm thickness, complete with customized weld-overlay (cladding), precision-machined double-grooves for tube expansion, and integrated sealing faces for custom header gaskets.
Technical FAQ & Search Intent Insights
Q: What causes tube sheet ligament failure in marine heat exchangers?
A: Failure typically stems from galvanic corrosion, dezincification, or inadequate ligament thickness tolerances during drilling. Using ASME SB171 C46400 Naval Brass provides a homogeneous microstructure that resists zinc depletion, while strict compliance with TEMA ligament dimensions prevents localized mechanical stress cracks.
Q: Why select ASME SB171 C46400 over standard brass for tube sheets?
A: Standard brass lacks sufficient tin additions, leaving it vulnerable to rapid dezincification in saline environments. The ASME SB171 specification mandates strict composition and mechanical thresholds, ensuring the plate withstands high pressure-vessel design conditions while resisting chloride-induced stress corrosion cracking.
ASME SB171 C46400 Naval Brass Tube Sheet product image

Contact Details
Yuhong Group Co.,Ltd

Contact Person: Mr. Jikin Cai

Tel: +86-13819835483

Fax: 0086-574-88017980

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