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ASME VIII Div. 1 Pressure Vessel Equipment For Aftercooler Separator High Efficiency

ASME VIII Div. 1 Pressure Vessel Equipment For Aftercooler Separator High Efficiency

ASME VIII Div. 1 Pressure Vessel

Aftercooler Separator Pressure Vessel

High Efficiency Pressure Vessel Equipment

Place of Origin:

China

Brand Name:

YUHONG

Certification:

ASME U STAMP

Model Number:

Aftercooler Separator

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Product Details
DESIGN CODES:
ASME VIII Div. 1
APPLICABLE STANDARDS:
IBC 2018 + ASCE 7 + NACE MR 103 + MSS SP-44
DESIGN PRESSURE:
60 Bar G
DESIGN TEMPERATURE:
165 ℃
OPERATING PRESSURE:
52.4 Bar G
OPERATING TEMPERATURE:
+40/65 ℃
M.D.M.T:
-6 ℃
FLUID:
Sour HC Gas (H2S + CO2) + Free Water
CORROSION ALLOWANCE:
6 (13) Mm
FLUID STATE (LIQUID/ GAS):
LIQUID / GAS
Highlight:

ASME VIII Div. 1 Pressure Vessel

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Aftercooler Separator Pressure Vessel

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High Efficiency Pressure Vessel Equipment

Payment & Shipping Terms
Minimum Order Quantity
1 set
Price
negotiate
Packaging Details
EXPORT STANDARD
Delivery Time
90 - 180 days
Payment Terms
L/C, T/T
Supply Ability
500 SETS PER YEAR
Product Description

Pressure Vessels For Aftercooler Separator Shell, Heads Nozzle Flange Of Clading Or Stainless Steel

Aftercooler separator (often referred to as an air compressor aftercooler or moisture separator) is a device used in compressed air systems to cool the hot compressed air and remove moisture and contaminants before the air enters downstream equipment.

 

 

Function:

1. Cooling Compressed Air – After compression, air is hot (often 150–350°F). The aftercooler reduces the temperature to near ambient levels.

2. Condensing Moisture – As air cools, water vapor condenses into liquid, which is then separated and drained.

3. Removing Contaminants – Oil droplets, particulates, and other impurities are also separated.

 

Types of Aftercooler Separators:

1. Air-Cooled Aftercooler – Uses ambient air to cool compressed air via a heat exchanger (common in smaller systems).

2. Water-Cooled Aftercooler – Uses circulating water for cooling (more efficient for high-capacity systems).

3. Separator/Filter Element – Often includes a coalescing filter or centrifugal separator to remove moisture and oil.

 

Key Components:

1. Heat Exchanger – Cools the compressed air.

2. Moisture Separator – Collects condensed water.

3. Automatic Drain Valve – Removes accumulated liquid.

4. Baffles/Centrifugal Mechanism – Enhances separation efficiency.

 

Benefits:

Prevents Water Damage – Protects pneumatic tools and systems.

Improves Air Quality – Reduces corrosion and contamination.

Increases Efficiency – Dry, cool air improves system performance.

 

Applications:

·Industrial air compressors

·Pneumatic tool systems

·HVAC and refrigeration

·Process air systems

ASME VIII Div. 1 Pressure Vessel Equipment For Aftercooler Separator High Efficiency 0

 

Support and Services:Our company offers comprehensive technical support and services for our Pressure Vessel product. Our team of experts is available to assist you with installation, maintenance, troubleshooting, and any other technical inquiries you may have. We are committed to ensuring that your Pressure Vessel operates efficiently and safely at all times

Ratings& Review

Overall Rating

4.0
Based on 50 reviews for this supplier

Rating Snapshot

The following is the distribution of all ratings
5 stars
33%
4 stars
33%
3 stars
33%
2 stars
0%
1 stars
0%

All Reviews

T
Tanaka
Japan Jul 26.2025
The QA/QC system is comparable to Japanese pressure vessel manufacturers. We requested additional UT testing on all Category A joints, and they accommodated without delay. The external surface preparation (Sa2.5 blasting + epoxy coating) was executed perfectly for our coastal installation. The 200,000L capacity with such a compact footprint demonstrates excellent engineering optimization. 納期も守られました。Will consider for future LNG pre-treatment projects.
V
V*v
Russian Federation Jul 13.2025
The vessel is designed for severe cold climate—MDMT rating of -45°C suits our Siberian conditions perfectly. They provided full GOST-R certification package in addition to ASME, which saved us significant time on customs clearance. The 200 cubic meter volume is ideal for our hydrocracking pilot plant. Quality of nozzles and flanges is robust—no issues with thermal cycling. Доставка через Владивосток прошла гладко.
P
P*n
North Korea Jun 14.2025
Technical bid included HTRI thermal simulation with fouling factor 0.0002 m²·K/W for our naphtha hydrotreater. SA516 Gr485 + 1.25Cr-0.5Mo tube combination optimized for high-temperature hydrogen sulfide resistance. Delivery EXW Qingdao to CIF Ulsan was 22 days, door-to-door. Zero NCRs during FAT. Korean PM assigned spoke technical English fluently. Already approved for Phase 2 EPC.

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