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Factory address:Economic Development Zone, LuoTian County, Huanggang City, HuBei Prov., China 438000.
Office address: Room 701, Block 3, WeiLaiZhiGuang, Guanggu Avenue No.3 , Hongshan District, Wuhan, Hubei Pro., China430074
Technical Specifications for the 150 Series Liquid-Phase Gas Booster
The HYDR-STAR liquid-driven gas booster is a hydraulically powered gas pressurization unit characterized by its high boosting pressure and substantial gas flow output. It is designed to meet the demands of high-flow, high-temperature applications across a wide range of industrial uses. With a maximum hydraulic drive pressure of up to 4000 psi, it can generate output pressures exceeding 20,000 psi.
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Technical Specifications for the 150 Series Liquid-Phase Gas Booster
Product Overview
The HYDR-STAR liquid-driven gas booster is a hydraulically powered gas pressurization unit characterized by its high boosting pressure and substantial gas flow output. It is designed to meet the demands of large-flow, high-temperature applications across various industrial uses. This booster can generate hydraulic pressures as high as 4000 psi, enabling it to produce output pressures exceeding 20,000 psi. Notably, the gas pressurization section is engineered for virtually maintenance-free operation, eliminating any risk of gas contamination during use. The device is ideal for boosting gases such as air, carbon dioxide, and other inert gases, making it equally suitable for pressurizing and transporting a wide range of industrial gases at extremely high pressures. Externally, the booster is equipped with a water-cooling jacket, which utilizes circulating cooling water to effectively reduce gas temperatures, ensuring that the output gas remains within safe thermal limits. This cooling mechanism also prevents high-temperature effects on critical components, thereby maintaining their structural integrity and significantly extending the lifespan of the equipment. Finally, the pressurization head features a robust double-acting, piston-style design. Both the forward and return strokes of the booster are fully capable of generating pressurized gas output, dramatically enhancing the overall efficiency of the system.
Feature Overview
Suitable for a variety of gases including hydrogen, helium, nitrogen, natural gas, and more;
Maximum gas output pressure is 3200 bar (46,400 psi).
Gas output flow rate up to 600 standard cubic meters per hour;
Materials and seals are suitable for use in high-pressure hydrogen environments;
Suitable for heavy-duty continuous operation;
Piston structures are more economical and offer greater stability and reliability compared to diaphragms.
The structure is compact, making it easy to mount multiple boosters in a centralized arrangement.
Easy to maintain, with the ability to quickly replace the seal online;
Gas-liquid isolation design and a lubrication-free structure ensure the purity of the gas.
The design includes a water-cooling system to ensure the output gas does not overheat.
ATEX and CE compliant.
The advantages of the HYDR-STAR gas booster
Ultra-high-pressure cylinder barrels, particularly those used in ultra-high-pressure gas boosters, are highly susceptible to fatigue failure due to the continuous cycling of high- and low-pressure gases inside the cylinder. This can lead to leaks through the pressure-bearing walls, cracking, and even the risk of catastrophic rupture. The HYDR-SRAR booster’s high-pressure cylinder is crafted from a high-strength, high-toughness alloy steel and undergoes specialized anti-fatigue treatment, enabling it to effectively withstand stress-induced fatigue during the boosting process—and significantly extending the cylinder’s fatigue life.
Under the friction and compression of the high-pressure piston, the inner wall of the ultra-high-pressure gas booster cylinder is prone to surface fatigue failure, resulting in peeling or pitting on the cylinder's inner surface. This accelerates seal wear, leading to leaks—or even severe damage like "pulling" the cylinder.
The high-pressure cylinder liner of the HYDR-STAR booster has undergone a specialized internal surface hardening treatment, which enhances both the strength and hardness of the liner’s inner surface while maintaining its corrosion resistance. This process prevents peeling and pitting, significantly reducing wear and tear over time.
The high-pressure cylinder liner of the HYDR-STAR booster is finished with a grinding process and subsequently undergoes a specialized polishing treatment. This ensures the inner surface of the cylinder achieves an exceptionally smooth finish, while also optimizing the micro-surface gap ratio within the liner walls. As a result, zero leakage of the piston is guaranteed, and the lifespan of the piston seals is significantly extended.
The HYDR-STAR booster features a specially designed air-pressure piston seal, combining proprietary technology with imported materials from Europe and America. This results in excellent sealing performance, high reliability, extended service life, and significantly lower replacement costs over time.
The HYDR-STAR booster gas booster cylinder features a long-stroke, low-clearance design, resulting in exceptionally high volumetric efficiency and enabling both superior gas output performance and impressive gas compression ratios.
Technical Specifications of the 150 Series
Turbocharger Model | Structural form | Minimum intake pressure bar (psi) | Maximum intake pressure bar (psi) | The most Tall Lose Outlet air pressure bar (psi) | Output pressure formula | Stroke displacement L | Gas piston diameter mm | Gas inlet | Gas outlet |
HDGB150-63 | Double-acting | 7(100) | 1034 (15,000) | 1034 (15,000) | 4.87 Pa + Ps | 1.55 | 63 out of 63 | MF 12 | MF 12 |
HDGB150-90 | Double-acting | 7(100) | 690(10,000) | 690(10,000) | 2.39 Pa + Ps | 3.17 | 90/90 | MF 12 | MF 12 |
HDGB150-150 | Double-acting | 4.8(70) | 310(4500) | 310(4500) | 0.86 Pa + Ps | 8.83 | 150/150 | NPT 1 | NPT 3/4 |
HDGB150-150/90 | Two-stage | 3.5(50) | 0.48 Pa | 690(10,000) | 2.39 Pa + 2.77 Ps | 4.41 | 150/90 | MF 12 | MF 12 |
HDGB150-150/63 | Two-stage | 3.5(50) | 0.18 Pa | 1034 (15,000) | 4.87 Pa + 5.66 Ps | 4.41 | 150/63 | NPT 1 | MF 12 |
HDGB150-90/63 | Two-stage | 3.5(50) | 2.3 Pa | 1034 (15,000) | 4.87 Pa + 2 Ps | 1.58 | 90/63 | MF 12 | MF 12 |
The maximum cycle rate is 25 cycles per minute, with a maximum drive hydraulic pressure of 250 bar. The drive cylinder has a diameter of 150 mm and a stroke length of 250 mm.
For more detailed technical specifications, please contact HYDR-STAR.
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