LDPE kompozitná hliníková fólia | Výborná bariéra & Výkon tesnenia

12,196 Zobrazenia 2025-10-13 05:18:31

Zliatina 1050, 1200, 8011, 8021, 8079, atď.
Temper H18, H22, O
Hrúbka 6 do 50 µm, Prispôsobiť;
šírka 100-1600mm
Aplikácia soft packaging, pharmaceutical packaging and food packaging, atď.
Normy National standard, American standard, European standard, Russian standard, Japanese standard, atď.
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Obsah ZOBRAZIŤ

In the sophisticated world of flexible packaging and advanced industrial materials, no single material can perfectly address every requirement. The demand for solutions that combine the best attributes of polymers and metals has led to the widespread adoption of multi-layer composites. Among these, LDPE composite aluminum foil stands out as an exceptionally versatile and high-performance material, leveraging the unparalleled barrier properties of aluminum with the flexibility, sealability, and chemical resistance of Low-Density Polyethylene (LDPE).

This engineered laminate underpins countless products, safeguarding freshness, ensuring hygiene, and providing crucial protection across diverse sectors, from food and pharmaceuticals to construction and electronics.

This comprehensive article delves into the precise composition, defining properties, and intricate manufacturing processes that collectively position LDPE composite aluminum foil as an indispensable choice for modern packaging and industrial solutions, offering profound insights for packaging engineers, material scientists, and procurement specialists.

1. The Composite Imperative: Why Combining Materials Unlocks Superior Performance

The concept of composite materials revolves around combining two or more distinct materials to create a new material with properties superior to its individual components.

In flexible packaging and industrial barriers, this is particularly true.

  • Aluminum Foil’s Strength: Aluminum foil is an absolute barrier to moisture, kyslík, light, and aroma, and boasts excellent thermal conductivity/reflectivity. Avšak, it is mechanically fragile (prone to tearing/pinholing when thin) and not heat-sealable on its own.
  • LDPE’s Strength: Low-Density Polyethylene (LDPE) is a flexible, tough, chemically resistant, and highly heat-sealable polymer. Avšak, it is permeable to gases, moisture, a svetlo, making it a poor standalone barrier.
LDPE kompozitná hliníková fólia

LDPE kompozitná hliníková fólia

The synergy of LDPE composite aluminum foil directly addresses the limitations of each component, creating a laminate that provides:

  • Unrivaled Barrier Properties: From aluminum.
  • Mechanical Strength & Flexibility: From LDPE, preventing foil tearing.
  • Heat Sealability: From LDPE, allowing the package to be sealed.
  • Chemical Resistance: From LDPE, protecting the aluminum layer.

This layered excellence defines the utility of this specialized composite.

2. Unpacking the Composite: Understanding LDPE and Aluminum Foil

The exceptional performance of LDPE composite aluminum foil stems from the precise interaction of its two primary components.

A. Hliníková fólia: The Absolute Barrier Core

Aluminum foil forms the crucial core of the composite, providing the unparalleled barrier properties that are indispensable for sensitive applications.

Material Composition

Aluminum foil used in these composites is typically derived from high-purity aluminum alloys, carefully selected for their optimal ductility, strength at thin gauges, and ability to be rolled with a low pinhole count. The most common alloys include:

Zliatina Primary Alloying Elements Key Property Advantage Typical Application in Composites (as foil layer)
1050 Min 99.5% Al High purity, excellent ductility & chemical inertness General food packaging, capacitor foil
1200 Min 99.0% Al Good ductility, slightly stronger than 1050 Viečka, general flexible packaging
8011 Fe (0.6-1.0%), A (0.5-0.9%) Enhanced strength & puncture resistance, low pinholes Food, farmácia, industrial flexible packaging
8079 Fe (0.8-1.3%), A (0.05-0.30%) Superior strength, very low pinholes, excellent formability at thin gauge Pharma (napr., Cold Form Foil), high-barrier food packaging
8021 Fe (0.8-1.4%), A (0.05-0.15%) High strength, excellent pinhole performance Pharma (napr., Cold Form Foil), demanding industrial barriers

Hrúbka

The thickness of the aluminum foil layer within the composite is a critical design parameter, usually ranging from 6 do 50 micrometers (µm).

Thicker foil generally offers a more robust barrier, greater mechanical resistance to damage, and contributes more to the overall stiffness of the laminate.

Huawei 8079 aluminum foil jumbo roll

Huawei 8079 aluminum foil jumbo roll

Key Properties

  • Absolute Barrier: This is the core function. Aluminum foil is virtually 100% impermeable to gases (kyslík), moisture (water vapor), light (UV/visible/IR), and aroma. This comprehensive barrier is unmatched by any single plastic film.
  • Tepelné vlastnosti: Exhibits high thermal conductivity (rapid heat transfer) and excellent reflectivity (bounces radiant heat), contributing to thermal management of the packaged product.
  • Tvarovateľnosť: Highly malleable and flexible, providing “dead-fold” characteristics, allowing the composite to conform to various shapes and hold its form.

The choice of alloy and thickness is meticulously matched to the end-use application’s barrier demands, mechanical stresses, and processing requirements.

The table below outlines common aluminum foil alloys used for flexible packaging composites and their typical roles.

B. LDPE (Low-Density Polyethylene): The Flexible, Sealable, Protective Layer

  • Materiál: Low-Density Polyethylene is a thermoplastic polymer characterized by its branched molecular structure, which results in lower density and greater flexibility compared to High-Density Polyethylene (HDPE).
  • Hrúbka: LDPE layers in the composite typically range from 10 do 100 micrometers (µm), adjusted for desired seal strength, hrúbka, and protective properties.
  • Key Properties:
    • Excellent Heat Sealability: Melts under heat and pressure to form strong, reliable, hermetic seals, crucial for packaging.
    • Flexibility & Toughness: Provides puncture and tear resistance, protecting the delicate aluminum foil layer.
    • Chemical Resistance: Resistant to many acids, bases, alcohols, and oils.
    • Moisture Barrier (Good for Plastic): While not as absolute as foil, LDPE offers a good moisture barrier for a plastic.
    • Cost-Effectiveness: Relatively inexpensive and easy to process.

C. The Bonding Mechanism: Laminovanie

The aluminum foil and LDPE layers are typically bonded together using an adhesive (napr., a two-component polyurethane-based adhesive) or through extrusion lamination, where molten LDPE is directly extruded onto the foil, forming a strong, continuous bond.

This multi-layer structure can involve one or more layers of LDPE, sometimes on both sides of the foil (napr., Foil/LDPE or PET/Foil/LDPE/LDPE).

3. Defining Properties: The Multilayered Power of LDPE Composite Aluminum Foil

The synergy between the robust aluminum foil and the versatile LDPE layers bestows LDPE composite aluminum foil with a highly desirable suite of properties critical for high-performance applications.

Pharmaceutical used LDPE Composite Aluminum Foil

Pharmaceutical used LDPE Composite Aluminum Foil

3.1 Unparalleled Barrier Properties: Comprehensive Protection

This is the composite’s crowning achievement.

  • Absolute Oxygen Barrier (OTR): Effectively zero (< 0.005 cm³/(m²·day·atm)). This prevents oxygen-induced degradation, rancidity, and flavor loss for sensitive products.
  • Absolute Water Vapor Barrier (WVTR): Effectively zero (< 0.005 g/(m²·day)). This eliminates moisture ingress or egress, crucial for maintaining product texture, chemical stability, and preventing caking.
  • Complete Light Barrier: The aluminum foil provides full opacity, blocking all visible, UV, and infrared light, protecting light-sensitive contents from photodegradation.
  • Absolute Aroma Barrier: Prevents the loss of volatile flavor compounds and blocks external odors, preserving the intended sensory experience.

3.2 Excellent Heat Sealability: Hermetic Integrity

  • Impact: The LDPE layer provides the critical heat-sealable surface. It melts under heat and pressure, forming strong, reliable, hermetic seals, essential for creating leak-proof pouches, bags, and closures for liquid, semi-liquid, or gas-sensitive products.

3.3 Enhanced Mechanical Strength & Flexibility: Durability in Handling

  • Ochrana: The LDPE layers provide crucial mechanical support, significantly improving the puncture, tear, and abrasion resistance of the delicate aluminum foil core. This allows the composite to withstand the rigors of manufacturing, filling, transportation, and consumer handling without compromising barrier integrity.
  • Flexibility: The overall laminate remains highly flexible, allowing it to conform to product shapes and packaging machinery.

3.4 Chemical Resistance: Versatility for Diverse Contents

  • Impact: The LDPE layer’s chemical resistance protects the aluminum foil from direct contact with aggressive contents (napr., certain foods, chemicals) that might otherwise cause corrosion. This extends the applicability of the composite to a wider range of products.

3.5 Thermal Management & Reflectivity: Temperature Stability

  • Impact: The aluminum foil’s high thermal reflectivity (up to 98% radiant heat) helps mitigate temperature fluctuations within the package, contributing to maintaining product temperature (hot or cold). Its thermal conductivity can also aid in rapid heating/cooling of contents in certain applications.

3.6 Food Safety and Non-Toxicity: Consumer Trust

  • Impact: All components (hliníková fólia, LDPE, and adhesives) are food-grade and non-toxic, making LDPE composite aluminum foil safe for direct contact with food, pharmaceuticals, and other sensitive products.

4. Mechanical Properties Table: Components of LDPE Composite Aluminum Foil

The table below presents typical mechanical properties for the individual components of LDPE composite aluminum foil (in their respective forms), illustrating their contributions.

Nehnuteľnosť Jednotka Hliníková fólia (napr., 8011-O) LDPE (Typical Film)
Pevnosť v ťahu MPa (ksi) 100 – 145 (15 – 21) 10 – 25 (1.5 – 3.5)
Medza klzu MPa (ksi) 40 – 90 (6 – 13) 8 – 15 (1 – 2)
Predĺženie (% v 50 mm) % 20 – 30 400 – 800
Tear Strength g/mil Mierne (can tear if thin) Vysoká (very tough)
Thermal Conductivity W/m·K ~160 ~0.3 – 0.4
Hustota g/cm³ 2.71 0.91 – 0.94
Melting Point °C (°F) ~660 (1220) ~110 – 120 (230 – 250)

Poznámka: Values are typical ranges. The final properties of the composite are synergistic, combining the best aspects of each layer.

5. Diverse Applications: Where LDPE Composite Aluminum Foil Excels

The unique blend of properties makes LDPE composite aluminum foil an indispensable material across a wide array of critical applications.

5.1 Food Packaging: Ensuring Freshness and Shelf Life

  • Usage: Pouches and bags for coffee, dry soups, snacks, sauces, condiments, and retort pouches for ready meals. Lids for dairy products and prepared foods. Inner liners for cartons (napr., juice boxes, milk cartons).
  • Impact: The absolute barrier properties dramatically extend shelf life, prevent spoilage, and maintain the flavor, aroma, and nutritional value of perishable goods, especially crucial for global distribution and convenience foods.
LDPE Composite Aluminum Foil for food packaging

LDPE Composite Aluminum Foil for food packaging

5.2 Pharmaceutical Packaging: Drug Stability and Patient Safety

  • Usage: Sachets and pouches for powders, granules, liquids, or individual tablets. Child-resistant and senior-friendly packaging designs. Used as a component in blister pack laminates.
  • Impact: Provides an uncompromised barrier against moisture, kyslík, a svetlo, protecting sensitive APIs from degradation and ensuring drug efficacy and patient safety.

5.3 Medical Device Packaging: Sterility and Integrity

  • Usage: Sterile barrier systems for medical devices (napr., catheters, implants, surgical kits) requiring protection from moisture and environmental contaminants.
  • Impact: Ensures devices maintain sterility until point of use, critical for patient safety in healthcare settings.

5.4 Electronics Packaging: Protection from Environment & ESD

  • Usage: Barrier bags for sensitive electronic components (napr., PCBs, semiconductors) to protect against moisture, electrostatic discharge (ESD), and corrosion during shipping and storage.
  • Impact: Prevents costly damage to high-value electronic components, ensuring reliability and performance.

5.5 Stavebníctvo & HVAC: Thermal and Vapor Barriers

  • Usage: As a facing on insulation materials (napr., mineral wool, fiberglass) for ductwork, pipes, and building envelopes. Vapor retarders in wall and roof assemblies.
  • Impact: Provides an excellent vapor/moisture barrier, preventing condensation and protecting insulation from degradation, thereby enhancing energy efficiency and preventing mold growth.

5.6 Industrial and Chemical Packaging: Hazardous Materials & Sensitive Products

  • Usage: Liners for drums and containers, bags for chemical powders, specialty adhesives, and moisture-sensitive industrial materials.
  • Impact: Offers robust protection against chemical interaction, moisture ingress, and environmental degradation, crucial for safety and product integrity.

6. Economic and Sustainability Aspects

The use of LDPE composite aluminum foil offers compelling economic and sustainability advantages.

  • Cost-Effectiveness (Lifecycle): While initial material cost is higher than some single-layer plastics, the superior product protection, extended shelf life, and prevention of spoilage/recalls lead to significant lifecycle cost savings for manufacturers and consumers.
  • Reduced Product Waste: By providing an absolute barrier, it dramatically reduces product spoilage and waste (especially food waste), which often has a much larger environmental footprint than the packaging itself.
  • Lightweighting: The composite is highly efficient in its use of materials, minimizing packaging weight and thereby reducing transportation costs and associated carbon emissions.
  • Recyclability Challenges: While both aluminum and LDPE are individually recyclable, the multi-material nature of the composite (layers are difficult to separate) presents challenges for conventional recycling streams. Currently, specialized recycling facilities or advanced de-lamination technologies are needed for efficient recovery, though industry efforts are ongoing to improve this.

7. Quality Assurance & Supplier Context (Henan Huawei hliník)

The uncompromising demands of various industries necessitate the highest standards of quality assurance for LDPE composite aluminum foil.

From the production of the aluminum foil and LDPE film to their lamination and final product, a robust QA system is non-negotiable.

  • Material Certification: Ensuring all components (aluminum foil alloy, LDPE resin, adhesives) meet international standards (napr., ASTM, FDA, EFSA) for chemical composition, mechanical properties, and food/pharma-grade compliance.
  • Barrier Performance Testing: Rigorous testing for Oxygen Transmission Rate (OTR), Water Vapor Transmission Rate (WVTR), and light transmission on the final laminate to confirm absolute barrier properties.
  • Bond Strength Testing: Verification of the adhesive bond strength between layers to prevent delamination during processing or use (napr., peel strength tests).
  • Pinhole Control: Rigorous inspection of the aluminum foil layer for an ultra-low pinhole count, crucial for maintaining barrier integrity.
  • Heat Seal Integrity: Testing to ensure strong, hermetic, and consistent heat seals are formed.

For manufacturers of packaging, industrial components, and high-tech solutions, sourcing from technically proficient and quality-driven aluminum foil and composite material suppliers is indispensable.

packaging of aluminum foil

packaging of aluminum foil

Huawei (Henan Huawei Aluminium Co., Ltd.), napríklad, is a prominent and recognized producer in the aluminum sector.

While Huawei Technologies, the electronics and telecommunications giant, is globally renowned for its advanced devices and sophisticated technological infrastructure (including smart buildings, energy solutions, and industrial automation), its extensive global manufacturing operations and complex supply chains consistently rely on foundational industrial materials from such specialized suppliers.

Napríklad, in manufacturing facilities that produce appliances, or components where thermal management, structural integrity, or safe material contact is critical, high-quality aluminum materials are indispensable.

Companies like Henan Huawei hliník leverage state-of-the-art rolling mills, advanced metallurgical controls, and stringent quality assurance processes to manufacture a comprehensive range of high-performance aluminum foils, including those specifically engineered for applications like LDPE composite aluminum foil.

Their commitment to precise alloying, konzistentné mechanické vlastnosti, superior surface quality, and adherence to relevant industry standards ensures that their materials meet the rigorous demands of various industrial and consumer applications globally, supporting the quality ecosystem of advanced manufacturing and sustainable development.

8. FAQs about LDPE Composite Aluminum Foil

Addressing common inquiries helps clarify the intricacies of LDPE composite aluminum foil for practical application.

Q1: What are the main benefits of combining LDPE with aluminum foil?

A1: The combination provides an absolute barrier to oxygen, moisture, light, and aroma (from the foil), combined with excellent heat sealability, mechanical strength (puncture/tear resistance), and flexibility (from the LDPE). This creates a versatile, high-performance protective material.

Q2: Is LDPE composite aluminum foil safe for food and pharmaceutical contact?

A2: áno, when produced to food-grade and pharmaceutical-grade standards, all components (hliníková fólia, LDPE, and adhesives) are non-toxic, chemically inert, and safe for direct contact with sensitive products, meeting stringent international regulatory approvals.

Q3: Is this material suitable for very hot or cold temperatures?

A3: áno. The aluminum foil component allows it to handle both high temperatures (napr., for retort pouches up to 121°C) and very low temperatures (napr., for frozen foods). LDPE maintains flexibility at low temperatures and provides heat sealability.

Q4: Can LDPE composite aluminum foil be recycled?

A4: Recycling multi-material laminates (aluminum foil bonded to plastic layers) is currently challenging for conventional recycling streams due to the difficulty of separating the layers.

While both aluminum and LDPE are individually recyclable, specialized facilities or advanced de-lamination technologies are needed for efficient recovery.

Industry efforts are ongoing to improve this.

Q5: What is the primary role of the LDPE layer in the composite?

A5: The LDPE layer primarily provides the heat-sealable surface that allows the package to be closed.

It also adds significant mechanical strength, flexibility, and puncture resistance, protecting the delicate aluminum foil barrier layer from damage.

9. Záver

Strategické nasadenie LDPE composite aluminum foil represents a foundational pillar of modern packaging and advanced industrial solutions.

This meticulously engineered material, through the synergistic combination of aluminum foil’s absolute barrier properties and LDPE’s flexibility, heat sealability, and mechanical strength, delivers unparalleled protection.

From safeguarding the freshness and integrity of food and pharmaceutical products to protecting sensitive electronics and enhancing the energy efficiency of HVAC systems, LDPE composite aluminum foil consistently provides reliable performance and drives innovation.

Despite challenges in recyclability, its critical functional benefits remain indispensable. Supported by rigorous quality assurance and the advanced manufacturing capabilities of leading suppliers, LDPE composite aluminum foil will undoubtedly continue to be an essential material, shaping the future of packaging and contributing significantly to more secure and sustainable industrial practices worldwide.

Proces výroby odliatku a jeho zavedenie

Účelom tavenia a odlievania je výroba zliatin s vyhovujúcim zložením a vysokou čistotou taveniny, tak, aby sa vytvorili priaznivé podmienky pre odlievanie zliatin rôznych tvarov.

Kroky procesu tavenia a odlievania: dávkovanie --- kŕmenie --- topenie --- miešanie po roztavení, odstraňovanie trosky --- odber vzoriek pred analýzou --- pridanie zliatiny na úpravu zloženia, miešanie --- rafinácia --- statické nastavenie——Smerujte odlievanie pece.

Výrobný proces valcovania za tepla a jeho zavedenie

  • 1. Valcovanie za tepla sa všeobecne týka valcovania nad teplotou rekryštalizácie kovu;
  • 2. Počas procesu valcovania za tepla, kov má procesy tvrdnutia aj zmäkčovania. Vplyvom rýchlosti deformácie, pokiaľ je proces regenerácie a rekryštalizácie príliš neskoro, dôjde k určitému pracovnému otužovaniu;
  • 3. Rekryštalizácia kovu po valcovaní za tepla nie je úplná, to jest, koexistencia rekryštalizovanej štruktúry a deformovanej štruktúry;
  • 4. Valcovanie za tepla môže zlepšiť výkonnosť spracovania kovov a zliatin, znížiť alebo odstrániť chyby odliatku.
    • Zariadenie na valcovanie za tepla

      Proces odlievania a valcovania

      Proces odlievania a valcovania: tekutý kov, predný box (kontrola hladiny kvapaliny), odlievací a valcovací stroj (mazací systém, chladiaca voda), strihací stroj, navíjací stroj.

      • 1. Teplota odlievania a valcovania je všeobecne medzi 680 °C a 700 °C. Čím nižšie, tým lepšie, stabilná odlievacia a valcovacia linka sa zvyčajne zastaví raz za mesiac alebo viackrát, aby sa znovu postavila. Počas výrobného procesu, je potrebné prísne kontrolovať hladinu kvapaliny v prednej nádrži, aby sa zabránilo nízkej hladine kvapaliny;
      • 2. Na mazanie sa používa prášok C s nedokonalým spaľovaním plynu na mazanie, čo je aj jednou z príčin znečistenia povrchu odlievacích a valcovacích materiálov;
      • 3. Výrobná rýchlosť je všeobecne medzi 1,5 m/min-2,5 m/min;
      • 4. Kvalita povrchu výrobkov vyrábaných odlievaním a valcovaním je vo všeobecnosti relatívne nízka, a vo všeobecnosti nemôžu spĺňať produkty so špeciálnymi požiadavkami na fyzikálne a chemické vlastnosti.
        • Výrobný proces valcovania za studena

          • 1. Valcovanie za studena sa týka spôsobu výroby valcovania pod teplotou rekryštalizácie;
          • 2. Počas procesu valcovania nedôjde k dynamickej rekryštalizácii, a teplota stúpne maximálne na regeneračnú teplotu, a valcovanie za studena sa objaví v stave mechanického vytvrdzovania, a rýchlosť vytvrdzovania bude veľká;
          • 3. Plechy a pásy valcované za studena majú vysokú rozmerovú presnosť, dobrá kvalita povrchu, jednotná štruktúra a výkon, a výrobky v rôznych skupenstvách možno získať tepelným spracovaním;
          • 4. Valcovaním za studena môžete vyvaľkať tenké pásiky, ale zároveň, má nevýhodu vysokej spotreby energie na deformáciu a mnohých prechodov na spracovanie.
            • Odlievanie valcovaním

              Úvod do dokončovacieho výrobného procesu

              • 1. Konečná úprava je spôsob spracovania, aby plech valcovaný za studena spĺňal požiadavky zákazníka, alebo na uľahčenie následného spracovania produktu;
              • 2. Dokončovacie zariadenie môže opraviť chyby vzniknuté vo výrobnom procese valcovania za tepla a valcovania za studena, ako je prasknutý okraj, mastný, zlý tvar dosky, zvyškové napätie, atď. Musí zabezpečiť, aby sa do výrobného procesu nedostali žiadne ďalšie chyby;
              • 3. Existujú rôzne dokončovacie zariadenia, hlavne vrátane priečnych rezov, strihanie, naťahovanie a narovnávanie, žíhacia pec, kĺzať sa, atď.

Hliníková zliatina má vlastnosti nízkej hustoty, dobré mechanické vlastnosti, dobrý výkon spracovania, netoxický, ľahko recyklovateľné, vynikajúca elektrická vodivosť, prenos tepla a odolnosť proti korózii, takže má široké uplatnenie.

Letectvo a kozmonautika: používané na výrobu plášťov lietadiel, trupové rámy, nosníky, rotory, vrtule, palivové nádrže, stenové panely a vzpery podvozku, ako aj krúžky na kovanie rakiet, stenové panely kozmickej lode, atď.

Hliníková zliatina používaná v letectve

Hliníková zliatina používaná v letectve

Doprava: používané na materiály konštrukcie karosérií automobilov, vozidlá metra, železničné osobné autá, vysokorýchlostné osobné autá, dvere a okná, police, časti automobilových motorov, klimatizácie, radiátory, panely karosérie, kolesá a lodný materiál.

Dopravná aplikácia

Dopravná aplikácia

Balenie: Celohliníkové dózy sa používajú najmä ako kovové obalové materiály vo forme tenkých dosiek a fólií, a vyrábajú sa z nich plechovky, viečka, fľaše, sudy, a baliace fólie. Široko používaný pri balení nápojov, jedlo, kozmetika, lieky, cigarety, priemyselné výrobky, lieky, atď.

Aplikácia balenia

Aplikácia balenia

Tlač: Používa sa hlavne na výrobu dosiek PS, PS platne na báze hliníka sú novým typom materiálu v polygrafickom priemysle, používa sa na automatickú výrobu a tlač platní.

PS tlač

PS tlač

Architektonická výzdoba: hliníková zliatina je široko používaná v stavebných konštrukciách, dvere a okná, zavesené podhľady, dekoratívne povrchy, atď. vďaka svojej dobrej odolnosti proti korózii, dostatočná pevnosť, vynikajúci procesný výkon a zvárací výkon.

Aplikácia konštrukcie z hliníkovej zliatiny

Aplikácia konštrukcie z hliníkovej zliatiny

Elektronické produkty: počítačov, mobilné telefóny, plášte chladničky, radiátory, atď.

Elektronická aplikácia produktu

Elektronická aplikácia produktu

Kuchynské potreby: hliníkové hrnce, hliníkové misky, vložky do ryžových varičov, hliníková fólia pre domácnosť, atď.

Aplikácia do kuchyne

Aplikácia do kuchyne

Balenie hliníkového plechu/zvitku

Každý detail balenia je miestom, kde sa snažíme o dokonalé služby. Náš proces balenia ako celok je nasledovný:

Laminovanie: priehľadný film, modrý film, mikroslizničné, vysokoslizničný, film na rezanie laserom (2 značky, Novacell a Polyphem);

Ochrana: papierové chrániče rohov, protitlakové podložky;

sušenie: sušidlo;

Podnos: fumigovaná nezávadná drevená tácka, opakovane použiteľný zásobník na železo;

Balenie: Oceľový opasok tic-tac-toe, alebo PVC baliaci pás;

Kvalita materiálu: Úplne bez chýb, ako je biela hrdza, olejové škvrny, valivé značky, poškodenie okraja, ohyby, preliačiny, diery, zlomové čiary, škrabance, atď., žiadna sada cievok.

Port: Qingdao alebo iné prístavy v Číne.

Dodacia lehota: 15-45 dní.

čo je 1060 čistý hliníkový plech

Proces balenia hliníkových plechov/doštičiek

čo je 1060 čistý hliníkový plech

Proces balenia hliníkovej cievky

F: Ste výrobca alebo obchodník?

Q: Sme výrobca, naša továreň je na Weier Road č.3, Priemyselná zóna, Gongyi, Henan, Čína.

F: Aké je MOQ pre objednanie produktu?

Q: Naše MOQ je 5 ton, a niektoré špeciálne produkty budú mať minimálne objednané množstvo 1 alebo 2 ton.

F: Aký dlhý je váš dodací čas?

Q: Vo všeobecnosti je náš dodacia lehota približne 30 dní.

F: Majú vaše produkty záruku kvality?

Q: áno, ak sa vyskytne problém s kvalitou našich produktov, odškodníme zákazníka, kým nebude spokojný.


Súvisiace produkty

LDPE kompozitná hliníková fólia

LDPE kompozitná hliníková fólia | Výborná bariéra & Výkon tesnenia

Objavte LDPE kompozitnú hliníkovú fóliu s vynikajúcou vlhkosťou, kyslík, a odolnosť voči svetlu. Ideálne na jedlo, farmaceutický, a priemyselné balenie.
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