Panel Aislante Z Lock

El Panel Aislado Z Lock integra el aislamiento, el soporte estructural y una superficie terminada en un único componente de cubiertas. El mecanismo de bloqueo en forma de Z crea conexiones seguras entre paneles, ofreciendo un rendimiento del sistema de cubierta a prueba de intemperie y viento.

La alta resistencia térmica reduce la transferencia de calor y apoya el ahorro energético. La prefabricación en fábrica combina múltiples funciones en un solo producto, simplificando la adquisición y reduciendo el tiempo de instalación en comparación con los sistemas multicapa tradicionales. El diseño ligero facilita el manejo mientras mantiene la estabilidad estructural y la comodidad acústica.

Cada panel cuenta con un núcleo de aislamiento de espuma de poliisocianurato (PIR) prensado entre láminas de acero prepintado, disponible en una variedad de colores y perfiles. El núcleo de celda cerrada proporciona una fuerte resistencia térmica por pulgada de espesor.

Adecuados para techos a dos aguas y de baja pendiente en edificios comerciales, industriales y residenciales, los paneles se fijan directamente a cerchas de madera o acero mediante tornillos auto perforantes diseñados para sistemas de paneles aislados. Las dimensiones completas, valores R y opciones de núcleo se enumeran en la Hoja de Datos a continuación.

Mejore el rendimiento del edificio con paneles aislados Z Lock

La unión Z-lock es lo que distingue a este panel de la cubricación aislada estándar de lengüeta y ranura. RaxPanel fabrica paneles Z Lock en una línea de laminación continua, donde el núcleo de espuma se expande y cura in situ entre dos caras de acero perfilado. Esto produce una unión que resiste el ciclo térmico y la succión del viento sin depender de fijaciones mecánicas a través de la capa de aislamiento.

Los contratistas de cubiertas valoran la velocidad del ensamblaje Z-lock: cada panel encaja en el anterior y se asienta con un único paso de fijación a lo largo de la pestaña superior. Cortamos los paneles a longitudes especificadas por el proyecto para minimizar los cortes en obra y las pérdidas.

Como proveedor directo de fábrica con sede en Hebei, China, mantenemos tolerancias en el ancho del panel y la geometría de la unión lo suficientemente estrictas para que las longitudes de cubierta largas se mantengan rectas y estancas. Solo suministramos paneles; la instalación la realiza su equipo de cubiertas. Muestras, colores personalizados y planos de perfiles están disponibles bajo solicitud.

Parámetro Specification
Especificaciones Generales
Tipo de Producto Panel Metálico Aislado (Techo)
Sistema de Junta Mecanismo de Engarce Z Lock
Rango de Espesor del Panel 1 a 8 pulgadas
Rango de Ancho del Panel 24 a 42 pulgadas
Longitudes Estándar del Panel Hasta 54 pies (sujeto a transporte)
Pendiente Mínima del Techo 2 grados (baja pendiente); 4 grados (a dos aguas)
Aislamiento del Núcleo
Material del Núcleo Espuma de Poliisocianurato (PIR) (Estándar); Opciones avanzadas (p. ej., QuadCore) disponibles
Insulation Core Density ~2,5 lb/ft³
Resistencia Térmica (Valor R) Hasta R-64 o superior (dependiente del espesor y el material del núcleo)
Valor R por Pulgada (PIR) 7.2
Valor R por Pulgada (Núcleo Avanzado) Hasta 8,0
Carcasas Metálicas
Material de la Cara Exterior Acero Prepintado
Material de la Cara Interior Acero Prepintado (Estándar); Opciones alternativas (p. ej., Lámina de Aluminio) disponibles
Acabados Estándar Poliéster o recubrimientos premium (p. ej., Acero Recubierto de Plastisol de 200 µm de uso intensivo)
Color Options Amplia gama de colores estándar y personalizados disponibles
Estructura y Rendimiento
Rendimiento Acústico (STC) ~26 (ensayado conforme a ASTM E90)
Prevención de Fugas de Vapor Barrera de junta en el sistema de unión
Resistencia al Viento e Intemperie Clasificado para rendimiento a prueba de intemperie y viento
Aplicaciones
Tipos de Techo Adecuados Techos a dos aguas (gable, pent, hip, mansarda), techos de baja pendiente (hasta 2°)
Edificaciones Adecuadas Comercial, Industrial, Residencial, Agrícola
Compatibilidad con Paneles Solares Base adecuada con evaluación estructural apropiada y soportes especializados
Installation
Fastening System Tornillos auto perforantes en cerchas de madera o acero
Nota de Instalación Professional advice recommended for complex installations and load calculations





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    Z Lock Insulated Panel Selection Guide & FAQ

    The Z-lock joint is what sets this panel apart: it conceals the fastener within the side lap so that no screw penetrates the exposed weather face, which is the single most common source of leaks in a metal roof. That detail drives the panel’s weathertightness, appearance, and long-term durability. The guide below covers the decisions contractors and building owners make when specifying Z-lock insulated panels for roofs and walls.

    Pro Tip: The Joint Is the Roof
    A roof is only as watertight as its side laps. The Z-lock’s value is that it keeps fasteners off the weather face, but that benefit is only realized if the joint is drawn up correctly during installation and the sealant channel is continuous. Inspect the laps as you go, not just the finished sheet.

    1. How does the Z-lock joint keep water out?

    In a conventional exposed-fix roof, every screw is a potential leak point because it pierces the face that rain runs over. The Z-lock joint moves the fixing into the side lap, where the return leg of the next panel covers it. Water running down the sheet never encounters a fastener, and a continuous seal within the lap sheds any moisture that reaches the joint. The result is a cleaner appearance and a far more reliable weather barrier.

    2. What roof pitch and drainage does the system suit?

    The concealed joint and continuous seal let Z-lock panels perform at relatively low pitches, commonly from about 4–5 degrees upward, depending on the profile and the site’s exposure to wind-driven rain. Lower pitches demand more care with end laps and drainage capacity, so the minimum pitch should always be confirmed against the panel’s tested weathertightness rating and the local climate rather than assumed.

    Low-pitch caution
    The flatter the roof, the slower water drains and the longer it sits on the laps. Where pitch is near the minimum, prioritize drainage capacity and lap sealing, and avoid detailing that lets water pond against a side joint.

    3. Which core matches the building’s thermal and fire needs?

    The core choice follows from the insulation target, the fire requirement, and the budget. The table summarizes the common options.

    Core Thermal Conductivity Best For
    PU 0.022–0.024 W/(m·K) High insulation, thin build-up
    PIR 0.022–0.024 W/(m·K) Insulation plus better fire reaction
    EPS 0.036–0.040 W/(m·K) Economical, modest insulation

    4. How do the panels accommodate thermal movement?

    Metal skins expand and contract with temperature, and over a long sheet that movement is measurable. Because the Z-lock fixes through the side lap rather than the face, the joint can absorb this movement without working the fastener holes back and forth. That is the failure mode that loosens exposed-fix screws and opens leaks over years of thermal cycling, so the concealed fixing improves long-term durability as well as appearance.

    5. What span and purlin spacing can I expect?

    Span capacity depends on core thickness, skin gauge, and the governing wind or snow load, and is confirmed by a deflection check limited to preserve drainage. As a starting point, deeper cores and heavier-gauge skins carry wider purlin spacing, which can reduce the cost of the supporting steel. The final spacing should be verified for the specific panel and load case rather than taken from a generic table.

    Frequently Asked Questions

    What is the advantage of a Z-lock joint over a standard tongue-and-groove?

    The Z-lock is a concealed-fix joint: the fastener is driven through the panel side lap and hidden by the next panel’s return leg, so no screw penetrates the exposed weather face. This removes the most common roof leak path and gives a clean, uninterrupted external appearance.

    What is the minimum roof pitch for Z-lock panels?

    Z-lock insulated roof panels are typically suitable for pitches from about 4–5 degrees upward, depending on the profile and the project’s exposure. The concealed joint and continuous seal shed water effectively at low pitches, but the final minimum should be confirmed against the panel’s tested weathertightness rating and local wind-driven-rain conditions.

    Which core should I choose for a Z-lock roof panel?

    PU and PIR cores give the best insulation per unit thickness, with PIR adding a stronger fire reaction under EN 13501-1. EPS is the economical choice where insulation demand is modest and first cost drives the decision. The choice follows from the building’s thermal target, fire requirements, and budget.

    How do Z-lock panels handle thermal expansion?

    Because the panels are fixed through the side lap rather than through the face, the joint can accommodate the small length changes that temperature swings cause without stressing the fastener holes. This reduces the risk of the back-and-forth movement that loosens exposed-fix screws and opens leaks over time.

    ]

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    Custom Core & Skin • Tailored Dimensions





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