설명
LW-40/4 Nitrogen Compressor – Oil-Free N2 Booster for Medium-Pressure Industrial Gas Distribution
Engineered to deliver 40 m³/min at 0.40 MPa discharge pressure, the LW-40/4 is a two-stage, two-row oil-free piston nitrogen compressor purpose-built for cryogenic air separation backup, VPSA nitrogen boosting, and medium-pressure pipeline distribution networks. Zero oil contamination, continuous-duty rated, and optimized for 24/7 industrial operation.

제품 개요
그만큼 LW-40/4 nitrogen compressor occupies a critical position in our oil-free piston compressor portfolio, bridging the gap between low-pressure nitrogen generation and medium-pressure distribution requirements. With a rated capacity of 40 m³/min and a discharge pressure of 0.40 MPa, this unit is the workhorse of medium-scale cryogenic air separation plants, VPSA nitrogen booster stations, and industrial gas pipeline networks.
What distinguishes the LW-40/4 from conventional lubricated alternatives is its fully oil-free compression path. The piston rings and rider bands are fabricated from self-lubricating PTFE composite materials that operate without hydrocarbon lubricants, ensuring the nitrogen stream remains completely free of oil contamination. This characteristic is indispensable for applications requiring ISO 8573-1 Class 0 certification, including food packaging nitrogen, pharmaceutical inerting, and semiconductor process gas supply.
압축기 아키텍처는 다음을 따릅니다. 2단 2열(two 列 级) layout that divides the total pressure ratio across two compression cylinders. This staged approach reduces the discharge temperature per stage, improves volumetric efficiency, and extends the service life of valves and piston rings. Each compression stage is equipped with an independent intercooler, ensuring gas temperatures remain within safe operating envelopes even under sustained maximum load conditions.

Technical Specifications – LW-40/4
| 매개변수 | 값 | 단위 |
|---|---|---|
| 모델 | LW-40/4 | – |
| 무늬 | 2단, 2열(two 列 级) | – |
| 용량 | 40 | m³/min |
| 토출 압력 | 0.40 | MPa |
| 압축기 크기 (길이 × 너비 × 높이) | 3260 × 1655 × 2548 | mm |
| 무게 | 4.50 | 티 |
| 힘 | 160 | 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. Oil-Free PTFE Piston Ring Technology
The LW-40/4 utilizes a proprietary 자가 윤활 피스톤 링 및 라이더 밴드 어셈블리 manufactured from high-density PTFE composites reinforced with glass fiber and bronze particulates. This material combination achieves a coefficient of friction below 0.08 without any external lubrication, eliminating the risk of oil vapor carryover into the nitrogen product stream. For buyers operating in regulated industries, this translates directly to ISO 8573-1 Class 0 compliance without the capital and operating costs of downstream oil-filtration systems.
2. Staged Compression with Intercooling
그만큼 2단계 압축 아키텍처 of the LW-40/4 is thermodynamically optimized for the 0.40 MPa discharge pressure target. By splitting the pressure ratio between a low-pressure cylinder and a high-pressure cylinder, the compressor achieves a lower mean effective temperature per stage. A dedicated shell-and-tube intercooler between stages removes the heat of compression, maintaining discharge temperatures below 155°C and preventing thermal degradation of the PTFE sealing elements. This thermal management strategy extends valve plate life by approximately 35% compared to single-stage designs operating at equivalent pressure ratios.
3. Robust Cast-Iron Frame with Force Balance
본체는 다음 재료로 주조됩니다. GG25 회주철 (equivalent to ASTM A48 Class 30B) with integral cooling water passages. The two-row opposed-cylinder arrangement provides natural first-order force cancellation, reducing the unbalanced inertia forces transmitted to the foundation by over 80% compared to single-row designs. This mechanical advantage allows the LW-40/4 to operate on a lighter foundation block (minimum 6 tonnes versus 10+ tonnes for single-row equivalents), reducing civil engineering costs and simplifying retrofit installations in existing compressor houses.
4. Standard 380V Industrial Motor Drive
The LW-40/4 is driven by a 160 kW, 380V, 50Hz three-phase induction motor conforming to IEC 60034-1 efficiency class IE3. The standard 380V configuration eliminates the need for medium-voltage switchgear or step-down transformers, making this model particularly attractive for facilities with existing low-voltage distribution infrastructure. For sites with 6kV or 10kV bus systems, an optional motor with integrated step-down transformer can be supplied on a common skid.

응용 시나리오
Cryogenic Air Separation Backup & Peak Shaving
In cryogenic ASU operations, the LW-40/4 serves as a reliable backup nitrogen booster or peak-shaving compressor. When the primary ASU experiences a cold box upset or requires maintenance, the LW-40/4 can maintain nitrogen supply to critical downstream consumers from liquid nitrogen storage vaporizers. Its 0.40 MPa discharge pressure is sufficient to feed medium-pressure distribution headers serving steel mill inerting, chemical reactor blanketing, and LNG plant purge gas systems. The oil-free design is particularly critical in backup scenarios where nitrogen purity cannot be compromised during primary system outages.

VPSA Nitrogen Booster Stations
Vacuum Pressure Swing Adsorption (VPSA) nitrogen generators produce gaseous nitrogen at near-atmospheric pressure (0.05–0.10 MPa). The LW-40/4 nitrogen booster compresses this low-pressure product to 0.40 MPa for distribution to point-of-use applications. The oil-free compression path is essential in VPSA service because any hydrocarbon contamination would poison the carbon molecular sieve adsorbent, permanently degrading the nitrogen generator’s separation efficiency and requiring costly adsorbent replacement.
Petrochemical Pipeline Nitrogen Injection
In petrochemical and refinery operations, nitrogen is injected into process pipelines and storage vessels to maintain inert atmospheres during startup, shutdown, and product changeover procedures. The LW-40/4’s 0.40 MPa discharge pressure provides adequate head to overcome pipeline friction losses over distances up to 2 km, making it suitable for centralized nitrogen supply to multiple process units. The continuous-duty rating ensures uninterrupted nitrogen availability during extended maintenance campaigns that may last several weeks.

Food & Beverage Modified Atmosphere Packaging
Large-scale food packaging facilities require high-flow nitrogen for modified atmosphere packaging (MAP) and controlled atmosphere storage. The LW-40/4’s 40 m³/min capacity can simultaneously supply multiple high-speed packaging lines, while its oil-free certification ensures compliance with FDA 21 CFR 173.310 (food-grade nitrogen) and EU Regulation 231/2012. The absence of oil contamination eliminates the risk of off-flavors, rancidity, or product discoloration that can occur when lubricated compressors are used in food-contact applications.
자재 및 시공
Every component of the LW-40/4 is selected for compatibility with nitrogen service, corrosion resistance, and long-term mechanical integrity:
| 요소 | 재료 | 사양 |
|---|---|---|
| 실린더 블록 | 회색 주철 | GG25 / HT250, integral water jackets |
| 크랭크 샤프트 | 단조 합금강 | 42CrMo4, Q&T, ISO 1940 G2.5 밸런스 |
| 피스톤 링 | PTFE-유리-청동 복합재 | Self-lubricating, wear rate <0.05 mm/1000h |
| 라이더 밴드 | PTFE 복합재 | Guide piston, prevent cylinder contact |
| 밸브 플레이트 | 스테인리스 스틸 | SS316, spring-loaded concentric ring design |
| 커넥팅 로드 | 배빗 베어링이 적용된 단조강 | 정밀 가공 및 오일 윤활 방식의 빅 엔드 |
| 인터쿨러 | Carbon Steel Shell / SS304 Tubes | ASME VIII Div.1, 1.5× hydrotest |
| 애프터쿨러 | Carbon Steel Shell / SS304 Tubes | Finned tube design, 32°C cooling water |
All pressure vessels are designed and fabricated in accordance with ASME BPVC 섹션 VIII 부문 1 or Chinese GB 150 standards. Every weld joint undergoes 100% radiographic testing (RT) per ASME Section V, Article 2, and each completed vessel is subjected to a hydrostatic pressure test at 1.5 times the maximum allowable working pressure (MAWP) for a minimum hold time of 30 minutes.

설치 및 유지 관리 지침
Foundation & Mounting
The LW-40/4 has a dry weight of 4.50 tonnes and a center of gravity approximately 850 mm above the baseplate. Due to the two-row opposed-cylinder design, the unbalanced forces are minimal, allowing installation on a reinforced concrete inertia block of 6–8 tonnes. The block should be mounted on vibration isolation pads (natural frequency 6–8 Hz) to prevent vibration transmission to adjacent structures. Minimum clearance requirements: 1.5 m on the non-drive side for valve access, 1.2 m on the drive side for motor maintenance, and 2.0 m overhead for crane access during major overhauls.
Cooling Water Requirements
The LW-40/4 requires approximately 38 m³/h of cooling water at an inlet temperature not exceeding 32°C. The cooling water system must supply the cylinder jackets, intercooler, and aftercooler in parallel circuits. Water quality specifications: pH 6.5–8.5, total dissolved solids < 500 mg/L, chloride content < 50 mg/L (to prevent SS304 tube corrosion), and suspended solids < 30 mg/L. For sites with marginal water quality, a closed-loop cooling tower with side-stream filtration and chemical treatment is strongly recommended.
예방 정비 일정
| 간격 | 서비스 항목 | 조치 필요 |
|---|---|---|
| 일일 | 운영 점검 | 진동 수준, 이상 소음, 냉각수 유량, 배출 온도를 점검하십시오. |
| 250시간 | Valve Inspection | Remove and inspect suction/discharge valve plates for carbon deposits or cracking |
| 1,000시간 | Piston Ring Measurement | Measure ring groove clearance; replace rings if clearance exceeds 0.25 mm |
| 4,000시간 | 중간 정비 | 피스톤 링, 라이더 밴드 및 밸브 플레이트 어셈블리를 모두 교체하십시오. |
| 8,000시간 | 대대적인 개편 | Inspect crankshaft journals, measure bearing clearances, replace main bearings if >0.08 mm |
A key economic advantage of the LW-40/4 is the absence of lubricating oil in the compression path. Unlike oil-lubricated compressors that require quarterly oil changes, monthly oil analysis, and annual separator element replacement, the LW-40/4 eliminates these consumables entirely. The only recurring wear items are the PTFE piston rings and rider bands, which typically achieve 4,000–6,000 hours of service life under clean nitrogen conditions.

규정 준수 및 안전 인증
The LW-40/4 nitrogen compressor is designed, manufactured, and tested to meet the following international standards and regulatory frameworks:
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 ( machinery safety)
ISO 8573-1 0등급(유지 함량) 기준 충족, TÜV 라인란트에서 독립적으로 테스트 완료
ISO 9001:2015(품질경영), ISO 14001:2015(환경경영)
Nitrogen is classified as a simple asphyxiant gas. All LW-40/4 installations must incorporate continuous oxygen deficiency monitoring in the compressor room and adjacent areas. Ventilation systems must be designed to maintain ambient oxygen concentrations above 19.5% volume per OSHA 29 CFR 1910.146 (Permit-Required Confined Spaces). Emergency shutdown interlocks should activate at 19.5% O₂ (alarm) and trigger automatic compressor isolation at 18.0% O₂ (hard shutdown). Personnel entry procedures must include portable O₂ monitors and buddy-system protocols.

성과 및 효율성 분석
The LW-40/4 achieves a specific power consumption of approximately 4.00 kW per m³/min of nitrogen at 0.40 MPa discharge pressure. This efficiency metric positions the unit in the upper tier of oil-free piston compressors within the 30–50 m³/min capacity range. For context, typical oil-lubricated screw compressors operating at equivalent pressure ratios consume 4.4–4.9 kW/m³/min, while legacy single-stage piston designs may exceed 5.2 kW/m³/min.
Over a standard 8,000-hour annual operating schedule, the LW-40/4’s efficiency advantage yields approximately 128,000–288,000 kWh of annual energy savings compared to less efficient alternatives. At an average industrial electricity tariff of $0.08/kWh, this translates to $10,240–$23,040 in direct operating cost reduction per year. When combined with the elimination of oil-related consumables (lubricating oil, filter elements, separator cartridges, waste oil disposal), the 질소 압축의 총 소유 비용 is reduced by an estimated 25–35% over a 10-year operational life.
The absence of oil in the compression path also eliminates the energy penalty associated with downstream oil-removal equipment. A typical oil-lubricated compressor of this size requires coalescing filters, activated carbon adsorbers, and monitoring instrumentation that collectively consume 3–5% of the compressor’s power output. The LW-40/4’s oil-free design removes this parasitic load entirely.
맞춤 제작 및 OEM 역량
We offer comprehensive customization options to adapt the LW-40/4 to specific site conditions, integration requirements, and end-user specifications:
- 스키드 장착형 턴키 패키지: The compressor, motor, intercooler, aftercooler, instrumentation, and control panel are pre-assembled on a structural steel skid with integrated lifting lugs and anchor bolt templates. This approach reduces field installation time by approximately 60% and minimizes commissioning risks.
- 위험 지역 구성: ATEX Zone 2 and IECEx compliant motor and electrical enclosures are available for installations in petrochemical facilities where explosive atmospheres may occasionally be present. Gas detection and automatic ventilation interlocks can be integrated into the control system.
- 고급 공정 제어: Optional Siemens S7-1200 or Allen-Bradley CompactLogix PLC with 10-inch HMI touchscreen, remote monitoring via Modbus TCP/IP or OPC-UA, and seamless DCS/SCADA integration. Automatic load/unload control and variable speed drive (VFD) compatibility optimize part-load efficiency.
- 환경 보호: C5-M marine-grade coating systems for coastal or offshore installations; tropicalized electrical components for ambient temperatures up to 55°C; and IP54-rated acoustic enclosures that reduce noise emission from 85 dB(A) to 72 dB(A) at 1 meter.
- OEM 및 자체 브랜드: Custom paint colors, branded nameplates, and documentation packages are available for system integrators and gas equipment distributors. Technical manuals, spare parts lists, and maintenance procedures can be supplied in local languages.
사용자 지정 구성은 다음에서 이용 가능합니다. 최소 주문 수량 1개. Engineering review and proposal generation typically require 5–7 business days. Prototype delivery schedules range from 12–14 weeks; repeat orders are delivered in 8–10 weeks from order confirmation.

Case Study: VPSA Nitrogen Booster Upgrade in Southeast Asia
고객: A major industrial gas supplier operating a VPSA nitrogen generation facility in Vietnam
도전: The client’s existing oil-lubricated nitrogen booster (European brand, 15 years in service) was experiencing progressive oil carryover into the nitrogen product. Oil contamination levels reached 2.8 mg/m³, exceeding the 0.1 mg/m³ limit specified by their food packaging customers. The oil was also degrading the activated carbon final-polishing bed, requiring replacement every 8 months instead of the designed 24-month interval.
해결책: 우리는 공급했습니다 LW-40/4 oil-free nitrogen compressor as a direct replacement, configured on a custom skid with integrated intercooler, aftercooler, and a Siemens S7-1200 PLC control panel. The skid footprint was engineered to match the existing foundation, eliminating the need for civil modifications. A 2 m³ surge vessel was added upstream to dampen pressure pulsations from the VPSA adsorption cycle.
24개월 후 정량화된 결과:
- 질소 오일 함량: Reduced from 2.8 mg/m³ to <0.01 mg/m³ISO 8573-1 클래스 0 인증을 획득했습니다.
- Activated carbon bed replacement interval: Extended from 8 months to 30 months, saving $12,000/year in consumables
- Overall maintenance expenditure: Decreased by 38% due to elimination of oil changes, filter replacements, and separator overhauls
- 에너지 소비량: Improved by 7.2% versus the replaced unit, equivalent to $15,600/year savings at local electricity rates
- 예기치 않은 다운타임: 이벤트 없음 24개월 연속 운전
“The LW-40/4 eliminated our oil contamination problem completely. Our food packaging customers no longer report quality issues, and our maintenance team has cut their service time by nearly half. The payback period was under 18 months.” — Facility Operations Director

자주 묻는 질문 및 선택 가이드
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Ready to Optimize Your Nitrogen Compression System?
당사의 애플리케이션 엔지니어는 고객의 질소 유량 요구 사항, 흡입 조건, 토출 압력 목표 및 통합 제약 조건을 평가하기 위해 대기하고 있습니다. 문의 접수 후 48시간 이내에 무료 기술 제안서, 기초 배치 도면, 배관 및 계측 다이어그램(P&ID) 및 상세한 총 소유 비용(TCO) 분석을 제공해 드립니다.
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