경량 내화 단열재가 철도역과 공항의 단열, 방음 및 화재 성능을 향상시키는 방법

빠른 답변

What material can provide both lightweight insulation and sound absorption for railway stations and airports? Melamine foam is a lightweight open-cell material that can provide both thermal insulation and acoustic absorption, while also offering strong heat resistance and fire-performance potential. In large transportation buildings such as railway stations and airports, it can be considered for: • roofs • suspended ceilings • HVAC ducts • equipment rooms • fan systems • acoustic enclosures • thermal protection structures Final design should always consider fire, moisture, mechanical and structural requirements.

Modern railway stations, airport terminals and major transportation hubs are becoming larger, more open and more architecturally transparent.

Large glass curtain walls, skylights, high-ceiling halls, long-span metal roofs and complex HVAC systems improve daylighting and spatial experience, but they also create new engineering challenges.

이들은 다음을 포함한다 :

  • increased indoor heat load during summer
  • high cooling demand in large-volume spaces
  • heat transfer and cooling losses through roofs and HVAC systems
  • continuous noise from fans, air handling units and equipment rooms
  • strict fire safety and smoke performance requirements
  • pressure to minimize additional structural weight
  • higher expectations for cleanliness, durability and ease of installation

As a result, transportation infrastructure is moving beyond the use of single-purpose insulation materials.

The market is increasingly looking for integrated solutions that combine:

Thermal Management + Acoustic Control + Fire Safety

SINOYQX is developing high-performance 멜라민 폼 and composite insulation materials for railway stations, airports, metro systems and other large public infrastructure projects where lightweight construction, thermal efficiency and acoustic comfort are all important.

  1. Why Thermal Management Matters in Railway Stations and Airports

Large Glass Areas Increase Solar Heat Gain

Many modern railway stations and airport terminals use:

  • large glass curtain walls
  • glass skylights
  • transparent or semi-transparent roof structures
  • wide open interior spaces

These designs improve daylighting and create a more open environment.

However, under strong summer solar radiation, significant heat can enter through the building envelope.

일반적인 과정은 다음과 같습니다.

태양 복사

Glass Absorbs and Transmits Heat

Indoor Surfaces and Air Temperature Rise

Heat Accumulates in High-Level Spaces

Cooling Load Increases

Energy Consumption Rises

For large transportation buildings covering tens of thousands of square meters, even a moderate increase in heat gain per square meter can result in substantial additional cooling demand.

This is why modern transportation buildings increasingly focus on:

  • solar heat control
  • 지붕 단열
  • ceiling thermal management
  • HVAC 효율성
  • 건물 에너지 성능
  1. Why Large Open Buildings Are More Prone to Heat Accumulation

Railway stations and airports often share several architectural characteristics:

  • 높은 천장
  • large indoor volume
  • fluctuating passenger density
  • frequently opening entrances
  • extensive glazing
  • very large roof areas

Because warm air rises, heat often accumulates near the upper sections of large halls.

If the roof is also exposed to strong solar radiation, the effect can become even more significant.

일반적으로 이 과정은 다음과 같습니다.

Roof Heat Gain

Heat Accumulation in Upper Space

Higher Indoor Thermal Load

Greater Cooling Demand

This makes roofs, suspended ceilings and skylight-adjacent areas important zones for thermal management.

  1. Challenges of Traditional Insulation Materials in Transportation Buildings

Common insulation and acoustic materials include:

  • 유리 양털
  • 암면
  • 폴리 우레탄 발포체
  • elastomeric foam
  • polyester fiber materials
  • other porous insulation products

Each material has established applications, but large transportation infrastructure projects often require a broader performance balance.

자재일반적인 장점Potential Engineering Challenges
유리 양털Mature insulation performance, competitive costFiber handling, dust, installation protection
락 울Strong fire performanceHigher density, heavier weight, fabrication dust
폴리 우레탄 발포체좋은 단열Fire performance varies significantly by formulation
엘라스토머 폼Flexible and suitable for pipingTemperature and fire performance depend on grade
폴리 에스터 섬유Good acoustic performance and processabilityFire and temperature performance depend on material system
멜라민 폼Lightweight, acoustic, thermal and fire performanceRequires application-specific structural design

For railway stations, airports and metro infrastructure, material selection is rarely based on thermal conductivity alone.

Engineers usually need to consider:

  • 무게
  • 화재 성능
  • 음향 성능
  • VOC 배출
  • 온도 저항
  • 설치 방법
  • 유지를 해결하여
  • 습기 노출
  1. Why Lightweight Materials Matter in Transportation Infrastructure

Transportation buildings commonly use:

  • long-span steel structures
  • 금속 루핑 시스템
  • large suspended ceilings
  • complex mechanical systems
  • elevated equipment installations

Reducing non-structural dead load can therefore provide meaningful engineering benefits.

시노이QX 멜라민 폼 can be supplied in lightweight grades of approximately 4–12 kg/m³, depending on the required mechanical properties, processing method and application conditions.

Compared with many traditional fibrous insulation systems, melamine foam can significantly reduce material weight per unit volume.

This can provide several practical benefits.

Reduced Ceiling and Roof Load

In projects covering thousands or tens of thousands of square meters, relatively small differences in material density can create large differences in total system weight.

Lower material weight can help reduce additional loading on:

  • 지붕 구조
  • ceiling frames
  • 서스펜션 시스템
  • 지원 구성 요소

Easier Elevated Installation

Lightweight materials are generally easier to:

  • 수송
  • 절단
  • 위치
  • install overhead
  • adapt to complex spaces

This can simplify work in large terminal buildings and high-ceiling spaces.

Better Adaptability to Complex Shapes

Melamine foam can be processed through:

  • 절단
  • 적층
  • 열 성형
  • 맞춤형 셰이핑
  • surface facing
  • 접착 백킹

This allows it to adapt to complex architectural and equipment structures.

  1. Where Can SINOYQX Melamine Foam Be Used in Railway Stations and Airports?

SINOYQX does not position melamine foam only as an acoustic foam.

A more complete role is:

A Lightweight Thermal and Acoustic Material for Transportation Infrastructure

Key applications include the following.

5.1 Roof Thermal Insulation

Large transportation buildings often have extensive roof areas.

Common roof structures include:

  • 금속 루핑
  • composite roof systems
  • glass skylight areas
  • long-span steel roofs

Melamine foam can be integrated as a lightweight thermal layer within the roof or ceiling system.

가능한 구조는 다음과 같습니다.

External Roof

구조적 층

Air Gap or Auxiliary Insulation

SINOYQX Lightweight Thermal-Acoustic Layer

중단 된 천장

실내 공간

잠재적 기능은 다음과 같습니다.

  • reducing roof heat transfer
  • limiting downward heat flow
  • helping reduce cooling load
  • improving acoustic comfort beneath the roof
  • reducing some equipment and airflow noise

For transportation buildings, this dual thermal and acoustic function can be particularly valuable.

5.2 Auxiliary Insulation Around Glass Skylights

Glass skylights are widely used in modern transportation buildings because they improve natural lighting.

However, they can also increase solar heat gain during summer.

A possible auxiliary thermal management concept is:

외부 유리

공기층

Transparent or Semi-Transparent Supporting Structure

Localized Lightweight Insulation Component

실내 공간

Melamine foam is more suitable for:

  • opaque perimeter zones
  • edge insulation
  • ceiling-integrated insulation
  • localized thermal management around skylight structures

다음 사항에 유의하십시오.

Melamine foam itself is not transparent.

Therefore, it should not be treated as a transparent glazing insulation material.

Where daylight transmission must be maintained, the building envelope may need to combine:

  • 낮은 E 유리
  • 쉐이딩 시스템
  • 공극
  • transparent insulation films
  • localized opaque insulation zones

as part of an integrated thermal design.

5.3 Thermal and Acoustic Treatment Behind Suspended Ceilings

Airports and railway stations commonly use:

  • 금속 천장
  • 천공 알루미늄 패널
  • decorative ceiling systems
  • acoustic ceiling assemblies

When open-cell acoustic materials are installed behind perforated panels, they can help control:

  • public announcement reverberation
  • crowd noise
  • baggage system noise
  • 냉난방 소음
  • 팬 소음
  • equipment noise

The open-cell structure of melamine foam allows sound energy to enter the material and dissipate through internal friction and pore interaction.

A typical configuration may be:

장식용 표면

천공 된 패널

SINOYQX Melamine Foam Acoustic Layer

Air Cavity or Structural Layer

Because melamine foam also has low thermal conductivity, the same assembly can potentially provide both:

Acoustic Absorption + Thermal Insulation

This is especially relevant in large high-ceiling spaces.

5.4 HVAC Duct Thermal and Acoustic Control

HVAC ducting is one of the most realistic application areas for multifunctional insulation materials.

Large railway stations and airports contain extensive networks of:

  • supply air ducts
  • return air ducts
  • 신선한 공기 시스템
  • 냉각수 시스템
  • 공기 처리 장치
  • 팬 시스템

These systems typically face two key challenges.

Thermal Loss

Air can gain or lose heat over long transport distances, reducing cooling efficiency.

소음 전달

Fan noise, airflow noise and mechanical vibration can travel through duct systems.

For this reason, HVAC insulation materials that can provide both thermal and acoustic functions are increasingly attractive.

SINOYQX melamine foam can potentially be used in:

  • external duct insulation
  • internal acoustic duct lining
  • silencer interiors
  • fan enclosures
  • 공기 처리 장치
  • 장비 하우징

재료 선택은 다음 사항을 기준으로 해야 합니다.

  • 공기 흐름 속도
  • 작동 온도
  • 주변 습도
  • 응축 위험
  • surface protection requirements
  • 방화 기준
  • 위생 요구 사항
  1. Equipment Rooms Are Another Important Application Area

Large transportation buildings contain many mechanical and electrical rooms, including:

  • fan rooms
  • 전기실
  • UPS실
  • 통제실
  • air conditioning plant rooms
  • pump rooms
  • communications rooms
  • electrical equipment spaces

These areas often face three problems simultaneously:

  • 소음
  • 화재 안전

Traditional systems may require multiple layers of:

단열재
+
어쿠스틱 소재
+
소방장비

A lightweight multifunctional material can help simplify this structure.

In certain equipment-room and enclosure applications, melamine foam may help provide:

  • 단열
  • 흡음
  • reverberation reduction
  • 소음 전달 감소

This is one of the key reasons multifunctional materials are becoming more relevant in infrastructure projects.

  1. Transportation Infrastructure Increasingly Needs Multifunctional Materials

Large public buildings increasingly favor materials that can perform more than one function.

If a single material can provide:

  • 단열
  • 흡음
  • 화재 성능
  • 가벼운 구조

it may help reduce:

  • the number of material layers
  • total system weight
  • 설치 단계
  • 인터페이스 복잡성
  • 시공의 어려움
  • long-term maintenance complexity

This multifunctional approach is one of the main reasons melamine foam can be considered alongside more traditional single-purpose insulation materials.

  1. Core Performance Advantages of SINOYQX Melamine Foam

8.1 Extremely Lightweight

SINOYQX can provide melamine foam grades in the approximate range of 4–12 kg/m³, depending on project requirements.

This makes the material particularly suitable for:

  • long-span roofs
  • 매달린 천장
  • HVAC 시스템
  • 철도 운송
  • 차량
  • 비행
  • 장비 인클로저

where weight reduction is important.

8.2 낮은 열전도도

Low-density melamine foam provides relatively low thermal conductivity.

Depending on density, temperature and test conditions, typical grades can achieve approximately:

0.032~0.035 와트/(m·K)

Actual engineering values should always be confirmed according to the specific product grade, test method and operating temperature.

8.3 Strong Acoustic Absorption

Melamine foam has a three-dimensional open-cell structure.

When sound waves enter the material, acoustic energy is dissipated through:

  • air friction
  • pore-wall interaction
  • internal sound energy loss

This makes the material suitable for:

  • 팬 시스템
  • 공조 장비
  • 장비실
  • large interior spaces
  • 운송 차량
  • 소음기

and other noise-control applications.

8.4 Good Fire Performance

Melamine foam has inherently favorable heat resistance and flame-retardant characteristics.

SINOYQX can provide product grades and supporting test data according to different project requirements.

Depending on the application, evaluation may include standards such as:

  • UL94
  • FMVSS 302
  • railway fire standards
  • building fire standards
  • smoke density requirements
  • toxicity requirements

Different countries and projects may require different test methods and compliance standards.

Therefore, fire performance should always be confirmed for the exact product grade and project specification.

8.5 No Typical Molten Dripping Behavior

Unlike some thermoplastic foams, melamine foam does not typically behave as a melt-dripping material under high-temperature exposure.

This can be particularly relevant in:

  • 공공 건물
  • 철도 시스템
  • 차량
  • 비행
  • equipment spaces

where fire behavior is an important design consideration.

8.6 Suitable for Low-VOC Applications

Modern transportation buildings increasingly pay attention to:

  • VOC 배출
  • 냄새
  • aldehyde and ketone emissions
  • 실내 공기 품질
  • 환경 준수

As a result, material selection increasingly considers not only fire performance but also indoor environmental quality.

SINOYQX can provide material and testing support according to project requirements.

  1. Standard or Hydrophobic Grade: Which Should Be Used?

Moisture conditions vary significantly across transportation infrastructure.

표준 멜라민 폼

다음과 같은 경우에 더 적합합니다:

  • indoor suspended ceilings
  • 장비실
  • internal duct systems
  • 건조한 환경
  • acoustic systems
  • 일반 산업 환경

소수성 멜라민 폼

다음과 같은 경우에 더 적합합니다:

  • 습한 환경
  • areas with condensation risk
  • 해안 공항
  • 지하 공간
  • selected HVAC applications
  • 환기 장비
  • hot and humid regions

Hydrophobic treatment can help reduce water absorption tendency.

하지만 엔지니어는 여전히 다음 사항을 평가해야 합니다.

  • 응축
  • long-term humidity
  • direct water exposure
  • 기류
  • 청소 방법
  • 고정 시스템

before final material selection.

  1. Recommended Application Matrix for Railway Stations and Airports
응용 분야주요 과제Potential Role of SINOYQX Materials
금속 지붕태양열 획득단열재
중단 된 천장Reverberation, heat accumulationAcoustic absorption + insulation
HVAC 덕트Cooling loss, noiseThermal + acoustic control
Fan Room장비 소음흡음
장비 인클로저열과 소음Thermal + acoustic control
전기실Thermal management, fire safety가벼운 단열재
UPS 룸열과 소음Thermal + acoustic management
Metro Fan System팬 소음음향 제어
제어실환경 소음흡음
서비스 한도Heat and reverberationThermal + acoustic control
  1. Why Transportation Infrastructure Is Driving the Shift Toward Greener Materials

Transportation infrastructure is a long-life asset.

Railway stations, airports and metro facilities are expected to operate for many years.

For this reason, material selection should not be based only on initial purchase price.

A more complete evaluation should consider life-cycle performance, including:

  • 초기 재료비
  • 설치 비용
  • 구조적 하중
  • 냉난방 에너지 소비량
  • 유지 보수 비용
  • 화재 위험
  • 수명
  • 실내 환경의 질
  • 교체 난이도

Lightweight, multifunctional and heat-resistant materials may provide additional value when viewed from a whole-life perspective.

  1. From “Insulation Material” to Integrated Thermal Management

Future material suppliers should not focus only on selling a single foam product.

Large transportation buildings need integrated solutions.

열 관리

목표는 다음과 같습니다.

  • reducing heat load
  • limiting heat transfer
  • reducing cooling losses
  • 에너지 효율성 개선

음향적 편안함

목표는 다음과 같습니다.

  • reducing equipment noise
  • reducing fan noise
  • controlling reverberation
  • 승객 편의성 향상

화재 안전

목표는 다음과 같습니다.

  • improving flame resistance
  • reducing thermal risk
  • meeting project-specific fire requirements
  • avoiding unsuitable material behavior in fire scenarios

경량 엔지니어링

목표는 다음과 같습니다.

  • reducing structural dead load
  • minimizing ceiling system burden
  • improving installation efficiency
  • adapting to complex structures

실내 환경 품질

목표는 다음과 같습니다.

  • reducing dust
  • reducing fiber release
  • improving VOC performance
  • improving material cleanliness

These priorities represent an important part of SINOYQX’s future transportation infrastructure strategy.

  1. SINOYQX Material Platform for Transportation Infrastructure

SINOYQX is building a high-performance thermal and acoustic materials portfolio for:

  • 기차역
  • 공항 터미널
  • 지하철 시스템
  • 철도 차량
  • 상업용 건물
  • 산업 시설
  • 데이터 센터
  • 에너지 인프라

The material platform includes:

멜라민 폼

여행타입:

  • 음향 제어
  • 경량 단열재
  • HVAC 시스템
  • 운송 인프라
  • 산업용 장비

소수성 멜라민 폼

여행타입:

  • 습한 환경
  • HVAC 시스템
  • 지하 공간
  • areas with condensation risk

Aerogel–Melamine Foam Composites

여행타입:

  • higher thermal insulation requirements
  • 공간 제약이 있는 애플리케이션
  • industrial high-temperature environments
  • 고급 열 관리

Aerogel Insulation Materials

여행타입:

  • 고온 장비
  • 산업 에너지 시스템
  • space-limited insulation
  • high heat-flux environments

By combining different material technologies, SINOYQX aims to support designers, EPC contractors and equipment manufacturers in developing transportation infrastructure that is:

Lighter, Safer, Quieter and More Energy-Efficient.

  1. Key Parameters to Consider During Engineering Design

When selecting thermal and acoustic materials for transportation infrastructure, the following parameters should be confirmed in advance.

열 매개변수

  • 작동 온도
  • 열전도도
  • 절연 두께
  • 온도차
  • heat-flow direction
  • 응축 위험
  • long-term insulation requirements

음향 매개변수

  • main noise frequency range
  • 흡음계수
  • noise reduction target
  • 재료 두께
  • 공기 공동
  • 표면 구조
  • perforated facing requirements

Fire Parameters

  • project fire standard
  • 연기 밀도
  • 독성
  • flame-retardant classification
  • flame spread requirements
  • molten dripping requirements

환경 매개 변수

  • VOC
  • aldehyde and ketone emissions
  • REACH
  • RoHS 준수
  • indoor air quality requirements
  • low-odor requirements

구조적 매개변수

  • 두께
  • density
  • compression requirements
  • surface lamination
  • 고정 방법
  • 접착 백킹
  • 열 성형
  • 맞춤형 셰이핑
  1. 자주 묻는 질문

Can melamine foam be used for airport roof insulation?

예.

Melamine foam can be integrated as part of a roof, ceiling or internal thermal insulation system.

However, the final design should consider:

  • fire requirements
  • 온도
  • 습기
  • 기계적 하중
  • 고정 방법
  • 장기 서비스 조건

Can melamine foam be installed directly on a glass skylight?

It should not be treated as a transparent insulation material.

Melamine foam is opaque and is therefore more suitable for:

  • skylight perimeter zones
  • structural areas
  • non-transparent sections
  • 천장 내부 공간
  • auxiliary insulation layers

Where daylight transmission must be preserved, the design should combine other solutions such as Low-E glass, shading systems or transparent insulation technologies.

Can melamine foam replace glass wool?

In some applications, yes, but the materials are not identical.

그들은 다음 점에서 다릅니다.

  • 비용
  • density
  • 음향 성능
  • 습기 행동
  • 화재 성능
  • 설치 방법

Therefore, replacement should be evaluated on a project-specific basis.

Is melamine foam suitable for HVAC ducts?

It can be suitable for many HVAC thermal and acoustic applications.

The selected grade should be evaluated according to:

  • 공기 흐름 속도
  • 온도
  • 습기
  • 표면 처리
  • 위생 요구 사항
  • 방화 기준
  • 응축 위험

What is the main advantage of melamine foam?

Its key advantage is not one single property.

It is the ability to combine:

Lightweight Structure + Thermal Insulation + Acoustic Absorption + Fire Performance

within one material platform.

What transportation infrastructure materials can SINOYQX provide?

SINOYQX can provide:

  • 멜라민 폼
  • 소수성 멜라민 폼
  • thermoformed melamine foam
  • laminated thermal-acoustic materials
  • aerogel–melamine composites
  • aerogel insulation materials

The final material system should be selected according to project temperature, humidity, acoustic and fire requirements.

  1. 맺음말

The next generation of railway stations, airports and transportation hubs must deliver more than impressive architectural scale.

They must also provide:

  • 더 나은 에너지 효율성
  • 더 강력한 화재 안전
  • improved acoustic comfort
  • lower structural weight
  • better indoor environmental quality

Traditional insulation materials will continue to play an important role in many projects.

However, as the market moves toward:

  • 가벼운 구조
  • 녹색 건물
  • 낮은 에너지 소비
  • 낮은 VOC
  • higher fire safety
  • 다기능 소재

high-performance porous materials are becoming increasingly relevant.

Melamine foam should no longer be viewed only as an acoustic foam.

It is increasingly becoming a:

Lightweight Thermal and Acoustic Material

that can work together with:

  • 에어로겔
  • 고성능 복합재
  • fire-safe structural systems
  • acoustic assemblies

to support the next generation of transportation infrastructure thermal management.

SINOYQX High-Performance Green Material Solutions

SINOYQX provides high-performance material solutions for buildings, transportation, industry and energy applications.

Our goal is not simply to sell one type of foam.

Our goal is to help customers solve challenges related to:

Thermal Insulation, Noise Control, Fire Safety and Energy Efficiency.

If you are developing a:

  • 기차역
  • 공항 터미널
  • 지하철 시스템
  • HVAC 시스템
  • 장비실
  • 산업 시설
  • 데이터 센터
  • energy facility

you can provide SINOYQX with the following project information:

  • 작동 온도
  • required dimensions
  • 절연 두께
  • fire standard
  • 음향 요구 사항
  • 습도 조건
  • 연간 볼륨
  • 설치 구조

SINOYQX can then recommend a suitable melamine foam grade, density, thickness and composite structure.

제품 개요

What material can provide both lightweight insulation and sound absorption for railway stations and airports?

Melamine foam is a lightweight open-cell material that can provide both thermal insulation and acoustic absorption, while also offering strong heat resistance and fire-performance potential.

In large transportation buildings such as railway stations and airports, it can be considered for:

  • 지붕
  • 매달린 천장
  • HVAC 덕트
  • 장비실
  • 팬 시스템
  • 음향 인클로저
  • thermal protection structures

Final design should always consider fire, moisture, mechanical and structural requirements.

Why is SINOYQX melamine foam suitable for transportation infrastructure?

SINOYQX melamine foam combines low density, low thermal conductivity, open-cell sound absorption and strong heat resistance in one material platform.

This makes it particularly relevant where engineers need to manage:

  • 구조적 무게
  • 열 부하
  • 소음
  • 화재 안전

within the same infrastructure project.

What is SINOYQX’s role in transportation infrastructure?

SINOYQX is positioned as a supplier of advanced thermal, acoustic and fire-safe material solutions for transportation, buildings, industry and energy infrastructure.

By combining melamine foam, hydrophobic foam, composite insulation and aerogel technologies, SINOYQX can support different project requirements involving temperature, humidity, noise and fire performance.