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Gas-liquid intensifier

Schwerll Industrial Fluid Power Equipment - Gas Liquid Intensifier
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🏆 ISO 9001:2015 ⚙️ ASME Sec. VIII 🇪🇺 PED / CE 🌐 EAC / CU-TR
Gas-liquid booster

Gas-liquid intensifier

Model / SKU: SCH-1013 | Quality: 100% FAT Inspected

When operating conditions demand that the hydraulic flow characteristics supplied by the power source exhibit ultra‑high speeds and require local control, conventional hydraulic systems can no longer meet the requirements of on‑site high‑speed control. The solution is to shorten the fluid‑transmission system’s pipeline length and increase the control pressure to achieve a higher energy‑density output. Under such conditions, a pneumatic‑hydraulic intensifier provides an excellent solution.

To 207 MPa Working Pressure
0.1–1,500 L Volume Range
-40°C to +150°C Temp Tolerance
1.5× PN Proof Hydraulic Test

Direct Factory Technical Inquiry & Fast RFQ

Contact Schwerll engineering sales directly for custom volume sizing, pressure ratings, material compatibility and volume pricing.

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⏱️ < 4h Engineering Response 🧪 100% Hydro-Tested (1.5× PN) 🔒 Strict NDA Protection

Product Specifications & Engineering Data

Authoritative technical parameters, fluid media tolerances, and structural design standards.

📐 2D/3D CAD Models Available

The SCHWERLL gas–liquid intensifier can deliver a liquid pressure of 52.5 MPa at high flow rates. To shorten the fluid‑control path, a combined design integrating the liquid intensifier with a piston accumulator was developed, resulting in the SCHWERLL gas–liquid intensifier product.

 

When operating conditions demand hydraulic flow characteristics that deliver ultra‑high speeds and require on‑site control, conventional hydraulic systems can no longer meet the requirements for rapid local control. The solution is to shorten the fluid‑power circuitry and increase control pressure to achieve a higher energy‑density output. Under such conditions, pneumatic‑hydraulic intensifiers provide an excellent answer: in high‑pressure applications, they can deliver pressure ratios of up to 1:2.5. By integrating a pneumatic‑hydraulic intensifier into the hydraulic actuator while maintaining standard hydraulic system pressures, it becomes possible to generate extremely high‑pressure, localized flow rates, thereby enabling fast‑response control. In this context, outstanding solutions have been developed for processes ranging from the forming of high‑temperature aerospace components to semi‑solid die casting of composite materials, aluminum alloys, and magnesium alloys, as well as crash‑testing applications.

 

If defects in the design and manufacturing stages lead to severe cavitation during operation, selecting a high‑quality gas–liquid booster is essential for ensuring the stable performance of the host equipment.

Frequently Asked Questions

Direct technical answers from Schwerll fluid power application engineers regarding Gas-liquid intensifier.

The SCHWERLL gas-liquid intensifier delivers a liquid pressure of 52.5 MPa at high flow rates. By integrating the intensifier directly with a piston accumulator, the fluid-control path is minimized, allowing ultra-high-speed response and localized high-pressure output. It supports pressure ratios up to 1:2.5, making it suitable for applications like high-temperature aerospace component forming, semi-solid die casting of aluminum and magnesium alloys, and crash-testing systems. Each unit is manufactured under ISO 9001 and tested per ASME/CE standards to ensure stable performance and cavitation resistance.

International Pressure Vessel Certifications

Every Schwerll accumulator is designed, inspected, and validated against international safety and quality standards.

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ISO 9001:2015

Complete Quality Management System certification across raw material testing, precision machining, honing, welding, and final FAT pressure testing.

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ASME Section VIII Div. 1

ASME U-stamp and National Board (NB) registration available for high-pressure piston series (up to 30,000 PSI / 207 MPa) for North American & offshore deployment.

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CE Pressure Equipment Directive

PED 2014/68/EU CE marking with Notified Body conformity declaration and 3.1 material test certificates for European Union export compliance.

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TSG 21 / GB Standards

Certified in compliance with China's TSG 21-2016 Special Equipment Safety Code and GB/T 20663-2017 national pressure vessel standards.

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Multi-National Registrations

Approved configurations for CU-TR/EAC (Eurasian Union), NR13 (Brazil), AS1210 (Australia), KOSHA (Korea), and DOSH (Malaysia).

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Third-Party Inspection (TPI)

Support for client-mandated witness testing by SGS, Bureau Veritas (BV), Lloyd's Register (LR), TÜV Rheinland, Intertek, or DNV.

Custom Engineering & Ordering Flow

01
Technical Parameter Submission

Provide system operating pressures (P1/P2/P0), effective gas volume, cycle frequency, hydraulic fluid type, and ambient temperature range.

02
Computerized Volume Calculation

Our engineering team performs adiabatic or isothermal gas calculation (incorporating real gas Z-factor compressibility for pressures >20 MPa).

03
Approval Drawing & Quotation

We issue general arrangement (GA) drawings, nozzle/flange connection details, and formal commercial terms within 24–48 hours.

04
Fabrication & FAT Testing

Deep hole honing (Ra ≤ 0.2 μm), ultrasonic testing (UT), magnetic particle inspection (MT), and 1.5× hydraulic proof pressure test.

05
Export Packing & Global Delivery

Solid wooden crating with desiccants, rust preventative oil, and pre-charged N2 blanket. Incoterms: FOB Tianjin/Shanghai, CIF, or DAP.

Standard Lead Time

Standard SKU2–4 Weeks
ASME / PED Certified6–8 Weeks
Custom Large Bore (>350mm)8–12 Weeks
Complete Accumulator StationProject-Specific
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