설명
LW-5.3/16 질소 압축기 – 까다로운 산업 분야에 적합한 고압 무오일 N2 부스터
Engineered to deliver 5.3 m³/min at 1.60 MPa discharge pressure, the LW-5.3/16 is a two-stage, two-row oil-free piston nitrogen compressor purpose-built for high-pressure nitrogen injection, gas cylinder filling, and specialized petrochemical inerting operations. Zero oil contamination, compact footprint, and optimized for medium-duty industrial service at elevated pressure.

제품 개요
그만큼 LW-5.3/16 nitrogen compressor occupies a specialized niche within our oil-free piston compressor portfolio, engineered for applications that demand both moderate flow capacity and significantly elevated discharge pressure. With a rated capacity of 5.3 m³/min and an impressive 1.60 MPa discharge pressure, this unit bridges the gap between conventional low-pressure nitrogen boosters and ultra-high-pressure gas filling systems.
What distinguishes the LW-5.3/16 is its completely oil-free compression mechanism utilizing self-lubricating PTFE composite piston rings and rider bands. This design philosophy eliminates any possibility of hydrocarbon contamination in the nitrogen product stream, making the unit immediately suitable for high-purity nitrogen cylinder filling, pharmaceutical-grade inerting, and electronics manufacturing where even trace oil content would compromise product integrity. The native oil-free certification achieves ISO 8573-1 Class 0 compliance without requiring additional downstream purification equipment.
Its 2단 2열(two 列 级) configuration is thermodynamically optimized for the high pressure ratio required to reach 1.60 MPa. The staged compression approach divides the total pressure burden between a low-pressure cylinder and a high-pressure cylinder, with an inter-stage cooler removing the heat of compression to maintain gas temperatures within safe limits. This thermal management is critical for preserving the integrity of the PTFE sealing elements under the demanding conditions of high-pressure operation. The compact dimensions—1947 × 1900 × 2580 mm—and manageable weight of 3.97 tonnes make the LW-5.3/16 suitable for installations where space is at a premium.

Technical Specifications – LW-5.3/16
| 매개변수 | 값 | 단위 |
|---|---|---|
| 모델 | LW-5.3/16 | – |
| 무늬 | 2단, 2열(two 列 级) | – |
| 용량 | 5.3 | m³/min |
| 토출 압력 | 1.60 | MPa |
| 압축기 크기 (길이 × 너비 × 높이) | 1947 × 1900 × 2580 | mm |
| 무게 | 3.97 | 티 |
| 힘 | 55 | 킬로와트 |
| 전압 | 380 | 다섯 |
| 가스 매체 | 질소(N₂) | – |
| 매끄럽게 하기 | 오일 프리 | – |
* 모든 사양은 표준 참조 조건(ISO 1217, 부록 C)에서 측정되었습니다. 실제 성능은 현장 고도, 주변 온도 및 흡입구 조건에 따라 달라질 수 있습니다.
주요 특징 및 엔지니어링 장점
1. 고압 무유 PTFE 밀봉 기술
The LW-5.3/16 employs a specialized self-lubricating piston ring and rider band system manufactured from high-performance PTFE composites reinforced with glass fiber and bronze particulates. This material formulation is specifically engineered for high-pressure service, achieving a coefficient of friction below 0.08 without any external hydrocarbon lubrication. The rings are dimensionally stable at temperatures up to 180°C, which is essential for managing the thermal loads associated with 1.60 MPa discharge pressure. For operators requiring high-purity nitrogen, this design delivers ISO 8573-1 클래스 0 준수, eliminating the need for costly downstream oil-filtration systems.
2. 극한 압력비에 대한 2단 압축
그만큼 2단계 압축 아키텍처 is indispensable for achieving the 1.60 MPa discharge pressure from typical inlet conditions of 0.05–0.10 MPa. By dividing the overall pressure ratio between a low-pressure cylinder and a high-pressure cylinder, the LW-5.3/16 maintains manageable discharge temperatures per stage. A dedicated high-efficiency shell-and-tube intercooler between stages removes the heat of compression, keeping gas temperatures below 160°C even at maximum continuous load. This thermal management strategy is critical for preserving PTFE ring integrity under high-pressure conditions and extends valve plate service life by approximately 35% compared to single-stage designs attempting equivalent pressure ratios.
3. Compact Design with Robust Construction
Despite its high-pressure capability, the LW-5.3/16 maintains a remarkably compact footprint of 1947 × 1900 × 2580 mm. This dimensional efficiency is achieved through a vertically oriented crankcase design that minimizes longitudinal space requirements while providing adequate maintenance access. The main frame is cast from GG25 회주철 with integral cooling water passages, and the two-row opposed-cylinder arrangement provides natural first-order force cancellation. At 3.97 tonnes, the unit can be transported and positioned using standard forklift equipment, eliminating the need for specialized rigging during installation or relocation.
4. Standard 380V Direct-On-Line Motor Drive
The LW-5.3/16 is powered by a 55 kW, 380V, 50Hz three-phase induction motor conforming to IEC 60034-1 efficiency class IE3. The standard low-voltage configuration integrates directly into existing 380V industrial distribution panels without requiring medium-voltage infrastructure or step-down transformers. This electrical simplicity reduces both capital expenditure and commissioning complexity, making the LW-5.3/16 an attractive option for facilities upgrading from high-pressure bottled nitrogen or membrane separation systems to on-site compression.

응용 시나리오
고압 질소 실린더 충전소
The LW-5.3/16 is ideally suited for 질소 실린더 충전 작업 where high-pressure gas must be compressed into standard industrial cylinders at 15–20 MPa. The 1.60 MPa discharge pressure serves as the primary booster stage, feeding a downstream high-pressure compressor or booster pump that achieves the final cylinder charging pressure. The oil-free design is mandatory in cylinder filling applications because any oil contamination would compromise the purity of nitrogen delivered to end-users in food processing, medical, and electronics industries. The 5.3 m³/min capacity supports filling rates of 20–30 cylinders per hour, making it suitable for medium-scale filling stations serving regional industrial gas markets.

Specialized Petrochemical High-Pressure Inerting
In petrochemical operations involving high-pressure reactors, catalyst regeneration systems, and hydrocracking units, nitrogen is required at elevated pressures for reactor inerting, catalyst preservation, and emergency depressurization. The LW-5.3/16 high-pressure nitrogen compressor delivers the 1.60 MPa pressure necessary to overcome reactor operating pressures and maintain positive inert gas flow. The oil-free certification is critical in these applications because any hydrocarbon contamination would poison precious metal catalysts, degrade product quality, and create safety hazards in hydrogen-rich process environments.
Pharmaceutical High-Pressure Inerting & Blanketing
Pharmaceutical manufacturing facilities require high-purity nitrogen at elevated pressures for reactor blanketing, powder conveying, and sterile packaging operations. The LW-5.3/16’s 1.60 MPa discharge pressure is sufficient to drive pneumatic conveying systems that transport active pharmaceutical ingredients (APIs) between process vessels without contamination risk. The oil-free design ensures compliance with FDA 21 CFR 211.72 (equipment cleaning and maintenance) and EU GMP Annex 1 (manufacture of sterile medicinal products), where any oil contamination would render batches unfit for human use.
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Electronics High-Pressure Process Gas Supply
반도체 제조 시설과 전자 제품 조립 공장에는 고압 질소가 필요합니다. wafer handling, chemical vapor deposition (CVD) chamber purging, and lead-free soldering operations. The LW-5.3/16’s 1.60 MPa pressure supports the high-flow pneumatic actuators and process gas manifolds used in advanced packaging lines. The oil-free certification is non-negotiable in electronics applications because even trace oil contamination can cause solder joint defects, delamination of conformal coatings, and catastrophic failure of sensitive optical components.
자재 및 시공
The LW-5.3/16 is constructed from premium materials selected for high-pressure nitrogen compatibility, thermal stability, and extended service life:
| 요소 | 재료 | 사양 |
|---|---|---|
| 실린더 블록 | 회색 주철 | GG25 / HT250, 일체형 냉각수 재킷 |
| 크랭크 샤프트 | 단조 합금강 | 42CrMo4, Q&T, ISO 1940 G2.5 동적 평형 |
| 피스톤 링 | PTFE-유리-청동 복합재 | Self-lubricating, high-temp rated to 180°C |
| 라이더 밴드 | PTFE 복합재 | Piston guidance, anti-scuffing, wear rate <0.05 mm/1000h |
| 밸브 플레이트 | 스테인리스 스틸 | SS316, 동심원형 스프링 장착 설계 |
| 커넥팅 로드 | 배빗 베어링이 적용된 단조강 | 정밀 가공 및 오일 윤활 방식의 빅 엔드 |
| 인터쿨러 | 탄소강 쉘 / SS316 튜브 | ASME VIII Div.1, 1.5배 수압 시험, 30분 유지 |
| High-Pressure Cylinder Head | Forged Steel | Normalized, 100% UT inspected |
All pressure-bearing components are designed and fabricated in accordance with ASME BPVC 섹션 VIII 부문 1 또는 중국 GB 150 표준을 준수합니다. 모든 용접 이음매는 ASME 섹션 V, 2항에 따라 100% 방사선 투과 검사(RT)를 거치며, 완성된 모든 압력 용기는 최대 허용 작동 압력(MAWP)의 1.5배에 해당하는 압력으로 최소 30분 동안 수압 시험을 거칩니다.

설치 및 유지 관리 지침
Foundation & Spatial Requirements
The LW-5.3/16 has a dry weight of 3.97 tonnes and a low center of gravity due to its compact vertical design. A reinforced concrete pad of 5–6 tonnes is sufficient for stable operation, mounted on elastomeric vibration isolators (natural frequency 8–12 Hz). The two-row opposed-cylinder arrangement inherently cancels first-order inertial forces, minimizing vibration transmission. Required clearances: 1.0 m on the non-drive side for valve maintenance, 0.8 m on the drive side for motor access, and 1.5 m overhead for routine service.
Cooling Water Specifications
냉각수 수요는 대략 다음과 같습니다. 15 m³/h at an inlet temperature not exceeding 32°C. The water distribution circuit feeds the cylinder jackets and intercooler in parallel. Acceptable water quality: pH 6.5–8.5, total hardness < 300 mg/L as CaCO₃, chloride < 50 mg/L, suspended solids < 30 mg/L. For installations without reliable municipal water supply, a compact closed-loop cooling tower with a 0.5 m³ buffer tank is recommended.
예방 정비 일정
| 간격 | 서비스 항목 | 조치 필요 |
|---|---|---|
| 일일 | Visual & Operational Check | Inspect for leaks, abnormal noise, cooling water flow, discharge temperature |
| 250시간 | 밸브 플레이트 검사 | Check for carbon deposits, spring fatigue, or plate cracking |
| 1,000시간 | 피스톤 링 마모 평가 | Measure groove clearance; replace rings if clearance exceeds 0.20 mm |
| 4,000시간 | Intermediate Service | Replace piston rings, rider bands, and valve assemblies |
| 8,000시간 | 대대적인 개편 | Inspect crankshaft, measure bearing clearances, replace as needed |
The oil-free design of the LW-5.3/16 dramatically simplifies maintenance compared to lubricated alternatives. There are no oil changes to schedule, no oil samples to analyze, no filter elements to replace, and no separator cartridges to monitor. The only consumable wear items are the PTFE 피스톤 링 및 라이더 밴드, which typically achieve 4,000–6,000 hours of service life under clean nitrogen conditions.

규정 준수 및 안전 인증
The LW-5.3/16 nitrogen compressor meets the following international standards and regulatory requirements:
ASME BPVC 섹션 VIII Div.1, GB 150-2011, PED 2014/68/EU 모듈 A
IEC 60034-1 (IE3 efficiency), IEC 60204-1, ISO 12100
ISO 8573-1 Class 0 (Oil Content), TÜV Rheinland tested
ISO 9001:2015, ISO 14001:2015
Nitrogen is an odorless, colorless asphyxiant gas. All LW-5.3/16 installations must include continuous oxygen monitoring in the compressor room and adjacent areas. Ventilation must maintain ambient oxygen above 19.5% per OSHA 29 CFR 1910.146. Alarm interlocks should trigger at 19.5% O₂ and hard shutdown at 18.0% O₂. Personnel entry requires portable oxygen monitors and a buddy system. High-pressure nitrogen systems require additional precautions including pressure relief devices, burst disc protection, and personnel training on high-pressure gas safety.

성과 및 효율성 분석
The LW-5.3/16 achieves a specific power consumption of approximately 10.38 kW per m³/min of nitrogen delivered at 1.60 MPa discharge pressure. While this specific power is higher than low-pressure models due to the extreme pressure ratio, it remains competitive within the high-pressure oil-free piston compressor segment. For comparison, oil-lubricated alternatives in this pressure class typically consume 11.0–12.5 kW/m³/min, and diaphragm compressors (often selected for oil-free high-pressure service) can exceed 14 kW/m³/min.
Over an 8,000-hour annual operating cycle, the LW-5.3/16’s efficiency advantage versus less efficient alternatives yields approximately 25,000–55,000 kWh of energy savings per year. At $0.08/kWh, this represents $2,000–$4,400 in annual electricity cost reduction. However, the primary economic driver for LW-5.3/16 selection is typically the elimination of oil-related consumables and downstream purification equipment rather than marginal energy savings.
그만큼 고압 질소 압축의 총 소유 비용 is dominated by maintenance labor and consumables. The LW-5.3/16’s oil-free design eliminates oil changes ($300–600/year), filter replacements ($150–300/year), separator cartridge changes ($400–800/year), and oil analysis ($100–200/year), delivering total consumable savings of $950–$1,900 annually compared to lubricated alternatives.
맞춤 제작 및 OEM 역량
We provide flexible customization options to adapt the LW-5.3/16 to specific installation constraints and end-user requirements:
- Skid-Mounted Packages: Pre-assembled compressor, motor, cooler, and control panel on a structural steel skid with forklift pockets and lifting eyes. Reduces field installation to electrical connection and cooling water hookup only.
- Mobile Trailer Units: The LW-5.3/16 can be mounted on a road-legal trailer with integrated diesel generator and cooling system, creating a fully mobile high-pressure nitrogen supply unit for construction sites, pipeline maintenance, and emergency response.
- PLC & Remote Monitoring: Optional Siemens LOGO! or S7-1200 PLC with 7-inch HMI touchscreen, Ethernet connectivity, and SMS/email alarm notifications. Compatible with Modbus TCP/IP for SCADA integration.
- Acoustic Enclosures: Compact IP54-rated sound enclosure reducing noise from 84 dB(A) to 68 dB(A) at 1 meter, suitable for indoor installations in noise-sensitive environments.
- OEM 및 자체 브랜드: Custom paint schemes, branded nameplates, and localized documentation packages for gas equipment distributors and system integrators.
사용자 지정 구성은 다음에서 이용 가능합니다. 최소 주문 수량 1개엔지니어링 제안서는 일반적으로 3~5영업일 이내에 제공됩니다. 표준 납기는 10~12주이며, 특정 주문에 한해 8주 이내의 신속 납기가 가능합니다.

Case Study: Pharmaceutical Cylinder Filling Operation
고객: A pharmaceutical gas supplier in Southeast Asia specializing in medical-grade nitrogen
도전: The client’s existing oil-lubricated high-pressure nitrogen compressor (10 years in service) was experiencing progressive oil carryover into the nitrogen product during cylinder filling operations. Oil contamination levels reached 1.5 mg/m³, far exceeding the 0.1 mg/m³ limit required for medical-grade nitrogen certification. The oil was also contaminating the cylinder filling manifold, requiring monthly cleaning and replacement of O-rings and seals.
해결책: 우리는 공급했습니다 LW-5.3/16 oil-free nitrogen compressor as the primary booster, feeding a downstream high-pressure booster pump for final cylinder charging. The unit was mounted on a custom skid with integrated intercooler, aftercooler, and a Siemens LOGO! PLC control panel. A 1 m³ surge vessel was installed upstream to buffer pressure fluctuations from the membrane nitrogen generator supplying the compressor.
Results After 18 Months:
- 질소 오일 함량: 1.5 mg/m³에서 <0.01 mg/m³로 감소, achieving ISO 8573-1 Class 0 and medical-grade certification
- Cylinder filling manifold cleaning: Eliminated, reducing labor costs by $8,000/year
- O-ring and seal replacement: Reduced by 90%, saving $3,500/year in consumables
- Maintenance burden: One scheduled service per year versus quarterly overhauls
- 고객 불만 사항: 영 since commissioning, with nitrogen purity consistently exceeding specifications
“The LW-5.3/16 has been a game-changer for our medical nitrogen business. We no longer worry about oil contamination, and our customers have noticed the improved consistency in gas quality. The payback period was just over 2 years.” — Operations Manager, Pharmaceutical Gas Supplier

자주 묻는 질문 및 선택 가이드
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저희에 대한 포괄적인 개요를 보시려면 산업용 질소 압축기 portfolio, including oil-free oxygen compressors, hydrogen compressors, and specialty gas solutions, please contact our engineering team or browse our online catalog.
고압 질소 시스템 업그레이드를 고려하고 계신가요?
Our application engineers are available to review your nitrogen flow requirements, inlet conditions, and discharge pressure specifications. We provide complimentary technical proposals, layout drawings, and TCO analyses within 48 hours.
이메일: [email protected] 24시간 이내 답변드리겠습니다.


