Greenhouse Aluminium Profiles

Greenhouse aluminium profiles are a crucial part of modern greenhouse construction, offering durability, flexibility, and a sleek appearance. Their lightweight and corrosion-resistant properties make them the ideal choice for supporting various cladding materials while withstanding harsh agricultural environments. With the ability to customize and modify designs easily, these profiles are widely used in agricultural, horticultural, and residential greenhouses and remain the go-to option for reliable and sustainable installations.
At HTS-ALU, we deliver custom aluminum extrusions with advanced production and precision machining to meet your needs.
Greenhouse Types and Matching Aluminium Profiles
Greenhouse structures vary according to the covering material, climate, crop requirements and project scale. HTS-ALU can produce custom aluminium profiles for glazing retention, drainage, ventilation, doors and structural connections according to the greenhouse system drawings.

Glass Greenhouses
Glass greenhouses provide high light transmission, a long service life and a clean appearance. They are widely used for commercial cultivation, research facilities and modern multi-span greenhouse projects. Common aluminium components include glazing bars, pressure caps, ridge and eave profiles, gutter profiles, roof-vent frames, door tracks and sealing channels.

Film Greenhouses
Film greenhouses are lightweight and economical, making them suitable for large growing areas and seasonal agricultural production. Aluminium film-lock channels can be used with spring wire or locking inserts to secure polyethylene film, insect mesh and shade cloth. Vent-frame profiles, door tracks, gutters and equipment mounting rails may also be incorporated.

Polycarbonate Greenhouse
Polycarbonate greenhouses combine low weight, impact resistance and improved thermal insulation. Aluminium H and U profiles, glazing bars, edge caps and pressure covers can be designed around the specified solid or multiwall polycarbonate sheet thickness. Additional profiles may be used for framing, roof vents, doors and drainage.

Solar Greenhouses
Solar greenhouses use sunlight and heat-storage structures to maintain a suitable growing environment with reduced heating demand. They are commonly used for winter vegetable and nursery production in colder regions. Aluminium is typically used for film-lock channels, doors, ventilation frames, curtain tracks, equipment rails and other non-primary structural components.
Types of Aluminium Profiles Used in Greenhouses
A greenhouse system uses multiple aluminium profiles to support covering materials, connect roof and wall sections, manage drainage and form operable components. HTS-ALU can produce individual profiles or coordinated profile sets based on existing samples, section drawings and greenhouse system requirements.

Lock Profiles
Secure greenhouse films or shade nets with continuous edge grip, resist uplift and flutter, simplify replacement, and maintain uniform clamping pressure.

Edge Caps
Close and protect perimeter joints, integrate drip and pressure-equalization features, prevent capillary backflow, and improve edge stiffness and appearance.

Door and Track Profiles
Build sliding doors/windows with matching frames and tracks, ensure smooth rolling, proper sealing and drainage, and durable operation under repeated use.

Drainage and Gutter Profiles
Collect and channel rainwater and condensate via gutters and drip edges, prevent ponding and backflow, and direct flow safely to downpipes or drains.
Partition and Divider Profiles
Create internal zones and barriers, support shading or mesh panels, guide movable partitions, and help control microclimate, pests, and workflow routing.

T‑Slot Profiles
Provide universal mounting rails for fans, irrigation, lighting, and cable trays, enable modular layout changes, and support safe maintenance attachments.

Aluminium Tubes
Square, rectangular, and round aluminium tubes can be used for lightweight frames, doors, ventilation windows, partitions, equipment supports, and other secondary greenhouse structures.

Aluminium Channels
U-shaped and other aluminium channels support panel edges, form simple tracks and guides, protect glazing materials, and provide mounting positions for greenhouse components.

Aluminium Angles
L-shaped aluminium angles are used for corner reinforcement, panel fixing, frame connections, equipment mounting, and edge finishing around greenhouse doors and ventilation openings.

Framing Profiles
Framing profiles are used to construct the main framework or skeleton of the greenhouse, including walls, roof beams, and support columns. These profiles ensure the stability and durability of the structure.
- Main Frame Profiles: Typically made from rectangular or square aluminium tubes, these profiles form the primary framework, providing high strength and stability to the greenhouse.
- Crossbars and Reinforcements: Add strength to the structure and serve as attachment points for glazing or cladding materials.
- Ridge Profiles: Designed to support roof structures, especially for peaked or arched greenhouse designs.

Glazing Profiles
Glazing profiles are purpose-built to mount and seal rigid cladding materials such as multiwall polycarbonate and tempered glass, ensuring weather-tightness and ease of maintenance.
- U-shaped Profiles: Cap and protect panel edges, delivering a neat finish and improved sealing against dust and moisture ingress.
- H-shaped Profiles: Connect adjacent sheets edge-to-edge, enabling continuous spans while maintaining alignment and load transfer between panels.
- Clip-In Profiles: Allow easy attachment and removal of panels, ideal for modular greenhouse designs.
Aluminium Greenhouse Profiles VS Other Materials
Aluminium profiles are lightweight yet durable, making them easy to transport, install, and handle while maintaining structural integrity—ideal for both commercial and high-tech agricultural applications. Their corrosion resistance ensures longevity in humid or chemically active environments, reducing maintenance and replacement costs over time. Aluminium’s flexibility allows for customizable designs to suit various greenhouse styles, while its sleek, anodized finish provides a modern aesthetic. Additionally, being 100% recyclable, aluminium is an eco-friendly choice for sustainable greenhouse project
| Feature | Aluminium | Steel | Wood |
|---|---|---|---|
| Weight | Lightweight | Heavy | Comparatively heavy |
| Corrosion Resistance | High (natural anti-corrosion) | Needs coatings to prevent rust | Vulnerable to decay without treatment |
| Strength-to-Weight Ratio | Excellent | Good | Moderate |
| Flexibility | Easy to shape and customize | Rigid | Limited flexibility |
| Lifespan | Long-lasting | Long with maintenance | Short without regular care |
| Eco-Friendliness | Fully recyclable | Partially recyclable | Biodegradable but not recyclable |
How to Work with Us
HTS-ALU supports two cooperation routes for greenhouse profile and material supply. You can send us completed aluminium profile drawings for production, or provide the basic requirements of your greenhouse project so that we can coordinate the necessary system design.
- Production from Profile Drawings: Send CAD drawings, samples or profile specifications. We evaluate the alloy, dimensions, tolerances, tooling, finish and machining requirements before production.
- Greenhouse Design Coordination: Provide the greenhouse type, dimensions, covering material, installation location and functional requirements. We can coordinate with professional greenhouse design partners to develop the structure and required profile drawings.
- Profile and Material Supply: After the design and supply list are confirmed, we manufacture the required aluminium profiles and can source related glazing materials, seals, connectors and other components.
- Fabrication and Delivery: Profiles can be supplied with cutting, drilling, punching, milling, surface finishing and selected accessory assembly according to the project schedule.
Custom Greenhouse Aluminium Profile Specifications
Greenhouse aluminium profiles can be customised according to their installation position, covering material and connection method. Exact dimensions, tolerances, tooling and fabrication requirements are confirmed after reviewing the customer’s drawings or the completed greenhouse system design.
| Item | Available Options |
|---|---|
| Profile Function | Frame, glazing bar, ridge, eave, gutter, vent, sill, film lock or door track |
| Alloy | Commonly 6063, 6060 or 6061; other extrusion alloys available |
| Temper | T5 or T6 according to strength and fabrication requirements |
| Cross-Section | Existing profile, customer drawing, sample or newly developed section |
| Wall Thickness | Produced according to the confirmed drawing and structural requirements |
| Covering Material | Glass, polycarbonate, acrylic, film, shade cloth or insect mesh |
| Panel Interface | Channels and gasket grooves designed for the specified panel thickness |
| Connection Design | Screw fixing, snap-fit cap, gasket groove, lock insert or concealed fastening |
| Profile Length | Cut to the project schedule; extrusion lengths up to 12 m, subject to transportation |
| Surface Finish | Mill finish, anodized, powder coated or PVDF coated |
| Fabrication | Cutting, drilling, punching, milling, tapping, welding and assembly |
| Related Components | Gaskets, fasteners, connectors, end caps and selected locking components |
Greenhouse Profile Processing Capabilities
HTS-ALU in Eastern China delivers end-to-end greenhouse profile solutions: custom die design, precise extrusion for frames, glazing channels, ridges/purlins, vents, gutters, and T‑slot mounts, plus CNC fabrication and durable anodizing or UV‑stable powder coating.
1. Aluminum Section Extrusion
Our greenhouse aluminum profile facility has over 40 advanced extrusion lines, plus high-end gear like a 6000-ton extrusion press. This lets us make greenhouse-specific aluminum profiles in different sizes and types—from basic structural parts for standard agricultural greenhouses to specialized ones like glazing-compatible profiles (for glass/film covers) and ventilation frames. Its flexible extrusion capacity meets needs like commercial greenhouse building and urban vertical farming, and the profiles’ good corrosion resistance suits humid greenhouse environments.

2. Surface Treatment
For greenhouse aluminum profiles, we provide diverse surface treatment options to boost durability and practical aesthetics. These include anodizing for enhanced humidity resistance (critical for damp greenhouse interiors), powder coating with finishes that fit styles like minimalist or pastoral greenhouses, fluorocarbon coating to strengthen UV and temperature fluctuation resistance (adapting to outdoor greenhouse conditions), and wood grain transfer for a natural wood-like look—perfect for ecological or sightseeing greenhouses. All treatments are customizable, ensuring profiles meet both functional needs and aesthetic preferences for different greenhouse types.

3. Machining and Fabrication
To deliver full-set greenhouse aluminum profile solutions, we offer comprehensive machine services. These include CNC precision machining, milling, threading, drilling, accurate cutting, punching, welding, and assembly—all tailored to greenhouse needs, like crafting frame joints or glazing connection parts. This range of fabrication lets us provide ready-to-install profiles matching exact greenhouse project specs, bringing customers reliable flexibility.

Structural and Functional Features
1. Multi‑chamber and ribbing: Increases stiffness and load capacity; provides channels for drainage and cable routing.
2. Dedicated glazing components: Beads and caps tailored to glass, PC sheets, or ETFE films ensure sealing and thermal movement compensation.
3. Integrated drainage and ventilation: Purlins, gutters, and posts can incorporate water paths and utility conduits.
4. Versatile connection systems: Self‑tapping, self‑locking, concealed fasteners, and quick clamps shorten on‑site time.
5. Galvanic isolation: Insulating pads and barrier layers reduce dissimilar‑metal corrosion when joining to steel.
6. Wide adaptability: Suitable for hobby greenhouses, commercial ranges, multi‑span houses, and research facilities.

Lighting Materials for Aluminum Greenhouses
1. Acrylic
Acrylic (PMMA) is a widely used glazing material for aluminum greenhouses thanks to its high visible light transmission (up to ~92%), strong UV weatherability with outdoor-grade formulations, and impact strength about 10–20× that of glass, while being lightweight and easy to machine for modular aluminum frames. To ensure reliability, pair acrylic sheets with aluminum profiles featuring U/H glazing channels and EPDM or silicone gaskets, allow for thermal expansion—coefficients around 70–80×10−6/K70–80×10−6/K call for perimeter gaps and oversized/slot holes—and use continuous pressure plates or snap caps to distribute loads, along with proper drainage/weep paths to manage water and condensation. Acrylic is particularly suitable where long-term clarity, display-quality aesthetics, and better scratch resistance than PC are desired; in high-impact or severe hail zones, consider structural reinforcement or using PC in critical areas.

2. Polycarbonate
Polycarbonate (PC) sheets are a robust glazing choice for aluminum greenhouses, combining high impact resistance (roughly up to 200× glass) with good light transmission (solid sheets ~86–90%), while multiwall panels add insulation at low weight; for outdoor durability use UV‑protected PC with the UV face outward, match with aluminum U/H channels and EPDM or silicone gaskets, allow for thermal expansion via perimeter gaps and slotted holes, install multiwall ribs vertically with vent tape on top and anti‑dust tape at the bottom plus weep paths for condensation, and use neutral‑cure sealants while avoiding solvent cleaners.

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Factory Show
Our factory features 40 extrusion lines for efficient aluminum profile production. We offer a full range of surface treatments—including anodizing, electrophoresis, powder coating, sandblasting, and wood grain transfer printing—with advanced equipment. In-house casting, aging, annealing, water cooling, and machining ensure complete control and high-quality results for all products.
RFQ of Greenhouse Aluminum Profile
The primary aluminum alloys used for extrusion belong to the 6xxx series, specifically 6061, 6063, 6060,6082 and 6066. These alloys are highly favored due to their excellent extrudability, good mechanical properties, and corrosion resistance.
- 6061: A versatile alloy with higher strength, suitable for structural and transportation applications.
- 6063: Known as the “architectural alloy,” it offers excellent surface finish and is widely used for decorative and structural purposes.
- 6060: Similar to 6063 but with slightly lower strength, ideal for intricate and thin-walled profiles.
- 6066: A high-strength alloy within the 6xxx series, often used in more demanding structural applications.
- 6082: A strong alloy with better mechanical properties compared to 6061 and excellent corrosion resistance, commonly used in high-load structural applications and in marine environments.
The 7xxx series alloys, such as 7075, are used in applications requiring extremely high strength and performance, such as aerospace and high-end engineering projects. However, they have lower corrosion resistance when compared to 6xxx alloys and are therefore less commonly used for general extrusion applications.
While 1xxx, 3xxx, and 5xxx series alloys can be extruded, they are generally used infrequently for extrusion due to their lower strength or other limitations compared to 6xxx and 7xxx alloys. These series are mainly used in specialized applications. Additionally, if extrusion products from these series are requested, higher minimum order quantities (MOQ) are typically required for custom production, as their demand is relatively low.
The heat treatment of aluminum extrusions determines their mechanical properties, strength, and suitability for specific applications. Among the various heat treatment methods, T5, T6, and T66 are the most commonly used. Here’s an in-depth look:
| Heat Treatment State | Cooling Method | Strength | Key Features and Benefits | Applications |
|---|---|---|---|---|
| T5 | Air cooling (fan) | Moderate | Adequate strength, good dimensional stability, used for architectural purposes. | Windows, doors, curtain walls, building structures. |
| T6 | Water quenching (fast) | High | Higher strength and hardness, ideal for industrial and structural uses. | Automotive, aerospace, machinery, transport parts. |
| T66 | Water quenching (fast) | Very high | Optimized mechanical properties for higher strength and performance demands. | Automotive, rail transportation, high-end machinery. |
Other Heat Treatment States
- T4: Solution heat-treated and naturally aged. Used in applications requiring intermediate strength and enhanced formability.
- T7: Overaged for better stress-corrosion resistance, often used for aerospace and marine purposes.
- O (Annealed): Very soft condition suitable for extensive forming or bending requirements.
- F (As-Fabricated): No heat treatment applied, used in non-critical applications with low strength requirements.
Aluminum extrusions undergo various surface treatments to enhance aesthetics, corrosion resistance, and functionality. Here are the common surface treatment methods used in the industry:
Main Surface Treatment Methods
Anodizing (Oxidation)
- Process: A controlled electrochemical process that forms a protective oxide layer on the aluminum surface.
- Features:
- Provides a durable, corrosion-resistant, and environmentally friendly finish.
- Produces a metallic finish with a variety of natural tones (e.g., silver, black, bronze).
- Improves surface hardness and protects against scratching.
- Applications: Architectural frames, decorative profiles, heat sinks.
Electrophoresis Coating (E-Coating)
- Process: After anodizing, the aluminum is coated with paint using an electrochemical process.
- Features:
- Enhances corrosion resistance and offers a smooth, glossy finish.
- Provides more color and texture variation compared to anodizing alone.
- Applications: Furniture profiles, indoor architectural components.
Powder Coating
- Process: Electrostatic application of powder paint, followed by curing under high temperature to form a solid coating.
- Features:
- Wide variety of colors and textures.
- Excellent weather resistance and corrosion protection.
- Cost-effective and highly versatile.
- Applications: Outdoor frames, fences, railings, general industrial use.
PVDF Coating (Polyvinylidene Fluoride)
- Process: A specialized fluoropolymer coating is applied in multiple layers, commonly over a pretreated surface.
- Features:
- Exceptional weather resistance and UV stability.
- Highly durable, resistant to fading, chalking, and chemical damage.
- Ideal for long-term outdoor use.
- Applications: Curtain walls, high-performance architectural facades.
Wood Grain Transfer Printing
- Process: A heat-transfer printing process that applies a wood grain effect onto a pre-coated aluminum surface.
- Features:
- Mimics the appearance of wood while retaining aluminum’s durability.
- Lightweight and weather-resistant alternative to natural wood.
- Applications: Furniture, decorative coverings, outdoor panels.
Film Lamination
- Process: Adhesive application of a protective or decorative film onto the aluminum surface.
- Features:
- Provides a glossy, textured, or patterned finish.
- Often used for applications requiring specific textures like marble or leather effects.
- Applications: Interior decor, windows.
Pre-Treatment Processes
Prior to surface treatment, the aluminum surface can be pre-processed for specific textures or finishes:
Brushing/Polishing
- Removes surface imperfections and creates a smooth, reflective finish.
- Often used for decorative purposes.
Sanding/Grinding
- Produces a matte or satin finish by applying abrasives.
Shot Blasting/Sandblasting
- Sprays abrasives at high velocity to create a textured surface, often used before anodizing for a uniform appearance.
Stretching and Tension Leveling
- Straightens the aluminum profile and improves shape accuracy after extrusion.
Cost and Durability Comparison Table
| Treatment Method | Process Cost | Surface Durability | Weather Resistance | Applications |
|---|---|---|---|---|
| Anodizing (Oxidation) | Medium | Very Durable | High | Architectural frames, industrial parts. |
| Electrophoresis (E-Coating) | Medium-High | Durable | Medium | Furniture, indoor parts, decorative uses. |
| Powder Coating | Medium | Highly Durable | High | Outdoor frames, industrial fixtures. |
| PVDF Coating | High | Extremely Durable | Excellent | Curtain walls, high-end exteriors. |
| Wood Grain Printing | Medium | Moderate (topcoat dependent) | Medium | Decorative panels, furniture. |
| Film Lamination | Low-Medium | Moderate | Low | Indoor decorations, windows. |
| Brushing/Sandblasting (Pre-Treatment) | Low | Not Applicable (Preparation only) | N/A | Preparation for further treatment. |
. Anodizing (Oxidation)
- Common Colors:
Natural silver
Black
Champagne
Light bronze
Dark bronze
Gold
2. Electrophoresis Coating (E-Coating)
- Common Colors:
Black
Champagne
Light bronze
Dark bronze
Custom metallic colors
3. Powder Coating
- Colors:
Can match any color based on the RAL color chart.
Offers textures like matte, gloss, satin, and custom finishes.
4. PVDF Coating (Polyvinylidene Fluoride)
- Colors:
Also customizable using the RAL color chart.
High-end finishes with matte or glossy effects.
5. Wood Grain Transfer Printing
- Colors and Patterns:
Mimics various wood types (e.g., oak, walnut, teak, mahogany).
Custom patterns available based on provided samples.
6. Film Lamination
- Colors and Patterns:
Includes textures like marble, leather, and solid colors.
Custom finishes and patterns based on provided samples.
Pre-Treatment Options (Impact on Final Color)
- Brushing/Polishing: Produces smooth or reflective metallic surfaces.
- Sandblasting: Adds a rough, matte texture before the final surface treatment.
We provide a wide range of machining services for aluminum extrusions to meet specific requirements. These include cutting off/section removal, slotting, drilling holes, tapping threads, bending, and localized stamping to create deformations. For example, we can trim extruded profiles to custom lengths, mill precise grooves, create threaded holes for fasteners, bend profiles into specific shapes, or apply localized stamping to achieve custom forms or deformation.
In addition to these processes, we also offer TIG/MIG welding to join aluminum components for a solid structure. Furthermore, our services include assembly of common accessories, such as brackets, corner connectors, screws, hinges, end caps, and rubber seals, providing complete and ready-to-install profile solutions tailored to your project needs. This ensures that we can handle everything from simple cuts to highly customized fabrication and assembly, all with precision and efficiency.
For custom aluminum extrusion projects, we accept a variety of drawing formats, including CAD files, STEP files, and PDF files. However, for extrusions that require additional machining processes, it’s recommended to provide STEP files, as they ensure precise 3D modeling for machining accuracy.
While PDF files are acceptable, converting them into CAD drawings may result in the loss of certain details, requiring us to manually redraw the design, which could increase lead time. For the fastest and most accurate quotation, we recommend providing CAD files (e.g., DWG/DXF) and STEP files to ensure efficient design evaluation and pricing.
Mold fees are an essential part of the custom aluminum extrusion process. Since every order requires a uniquely designed mold tailored to specific requirements, these molds cannot be used for other products. Therefore, the mold fee is necessary and non-negotiable.
We require 100% upfront payment of the mold fee before mold development begins to ensure timely production. However, as a token of appreciation for your support, we offer a refund of the mold fee or equivalent discounts once the order reaches a certain production volume. Specific policies can be discussed based on your order volume and collaboration details.
Our minimum order quantity (MOQ) varies depending on the size of the product. For smaller-sized products, the MOQ is typically 500kg, while for larger-sized products, it is 2 tons.
We will specify the exact MOQ requirements during the quotation process. If your order quantity does not meet the MOQ, we can still arrange production, but an additional fee will be applied to cover mold preheating and production setup time. Rest assured, this extra fee will be reasonable, and we aim to keep it as minimal as possible to ensure smooth cooperation.
Packaging can be customized according to your needs. Options include using protective film or paper to separate and protect the surface, or foam film for additional surface protection. Products can be palletized or packed into cartons, and the quantity per pallet or carton can be specified by the customer.
The standard packaging involves bundling several pieces together with plastic wrap and then securing them onto pallets. Any packaging requirements beyond the standard will be accommodated, and the associated costs will be clearly provided to the customer.
Mold production typically takes 7 days. After the sample is confirmed, producing a full container load of 26 tons generally requires 14 days for extrusion alone. If surface treatment is required, an additional 3 days will be needed. For machining, extra time will be required depending on the complexity and volume of the machining work. The exact additional time for machining will be determined based on the specific processing requirements.
Aluminum profiles are naturally corrosion-resistant due to the formation of a thin, protective oxide layer when exposed to air or water. This oxide layer is stable and self-repairing, meaning that even if the surface is scratched or cut (such as at exposed ends or during processing), the aluminum will not rust or corrode like iron or steel. Instead, the exposed areas will quickly form a new oxide layer, providing continuous protection against further oxidation.
With proper design, installation, and maintenance, aluminum profiles can last for decades, even in challenging environments. For example, untreated aluminum can easily withstand 20-30 years in outdoor applications, while profiles with surface treatments like anodizing or powder coating can last even longer, often exceeding 50 years. This makes aluminum an excellent choice for applications where durability and long-term performance are essential.
The price of aluminum profiles consists of several components: raw material costs, extrusion processing fees, surface treatment fees, machining costs, and additional packaging fees. Among these, the cost of aluminum as a raw material tends to fluctuate frequently, while other fees remain relatively stable. Due to these fluctuations, our quotations are typically valid for 7 days.
Pricing can be structured in different ways depending on the product and requirements. It can be calculated by weight (e.g., cost per ton), by length (e.g., cost per meter), or by piece (e.g., cost per unit). For products involving extensive machining, such as heat sinks, pricing is generally calculated on a per-piece basis to accurately reflect the additional processing costs. This flexible pricing approach ensures the quote is tailored to the specific needs of the customer.
We can manufacture aluminum profiles in compliance with technical requirements that meet European standards (EN), American standards (ASTM/AA), or other standards as specified by the customer. Custom production is tailored to ensure that the profiles meet the specific standard requirements requested.
Our production equipment is designed for the metric system. If the drawings provided are in the imperial system, we will convert them into metric units for production to ensure accuracy.
It is important to note that while we can machine imperial-threaded holes for fasteners, if you require us to supply matching imperial fasteners, they may not always be available in stock. Custom orders for imperial fasteners typically require a large volume for production. Please consider this when planning your project.












