Durable Zinc Coated Carbon Steel Solar Bracket for Cement Piles

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Product Details
Customization: Available
After-sales Service: 30 Years
Warranty: Steel Structure for 15 Years Solar Modules for 5 Y
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  • Durable Zinc Coated Carbon Steel Solar Bracket for Cement Piles
  • Durable Zinc Coated Carbon Steel Solar Bracket for Cement Piles
  • Durable Zinc Coated Carbon Steel Solar Bracket for Cement Piles
  • Durable Zinc Coated Carbon Steel Solar Bracket for Cement Piles
  • Durable Zinc Coated Carbon Steel Solar Bracket for Cement Piles
  • Durable Zinc Coated Carbon Steel Solar Bracket for Cement Piles
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  • Overview
  • Product Description
Overview

Basic Info.

Model NO.
Solar Module Racking-01
Certification
GB, ISO, TUV, CE, RoHS
Application
Commercial
Material
Steel
Type
Ground Bracket
Zinc Coating
65 Microns
Steel Grade
Q235B/Q355
Wind Load
60m/S
Snow Load
1.4kN/M²
Sample
Free
Design
Free
Transport Package
Pallet or Carton Box
Specification
custom
Trademark
JCHX
Origin
Tianjin, China
Production Capacity
10000

Packaging & Delivery

Package Size
25.00cm * 20.00cm * 27.00cm
Package Gross Weight
500.000kg

Product Description

 
Product Description


Durable Zinc Coated Carbon Steel Solar Bracket for Cement Piles
JCHX Adjustable Cheap  Zinc magnesium aluminum Solar Racking System  

JCHX Adjustable Cheap  Zinc magnesium aluminum Solar Racking System   use. This heavy-duty steel mounting kit is designed for commercial solar projects, providing a reliable and durable solution for ground installations. The hot-dip galvanizing process ensures long-lasting protection against corrosion, making it ideal for outdoor use. With a sturdy construction, this solar racking system can withstand harsh weather conditions and support the weight of solar panels. Easy to install and adjust, it offers flexibility in positioning to maximize sunlight exposure for optimal energy production. Whether for large-scale commercial solar installations or industrial applications, the JCHX Solar Ground Mounting System is a cost-effective and efficient solution for your solar energy needs.

Durable Zinc Coated Carbon Steel Solar Bracket for Cement Piles
Parameter Specification
Material High-strength carbon steel
NO.of Panel  Custom
Number of rows of racks Custom
wind load 60m/s
snow load 1.4KN/M2
Coating Hot-dipped galvanized/Zn Al Mg alloy coating
Example of PV tilt angles Within 15 to 45º
Application scenarios Ground
Installation method Fastener installation
Type of piling Cement-embedded steel piles (precast or poured on-site) or Steel ground screw pile
Corrosion Resistance 30 Year(salt spray and UV resistant)
Technical support Online
Main Components Guide rails, hot-dip galvanized C-shaped steel, nuts and bolts, pressure plates, spiral ground piles, gaskets
Load Capacity Good
System Height 18-36 inches above ground
Certifications ISO 9001, CE,Rohs,ISO14001,ISO45001
Warranty 5-year material warranty; 
 
Durable Zinc Coated Carbon Steel Solar Bracket for Cement Piles
Durable Zinc Coated Carbon Steel Solar Bracket for Cement Piles
 
Durable Zinc Coated Carbon Steel Solar Bracket for Cement Piles
Durable Zinc Coated Carbon Steel Solar Bracket for Cement Piles
 
 
Product Advantages

1. Quick Installation

Pre-assembled components and tool-free clamps reduce setup time by 50%.

Clear instructions and numbered parts for DIY-friendly assembly.

2. Ultimate Durability

Hot-dip galvanized coating protects against rust, UV rays, and extreme weather (snow, rain, saltwater).

3. Space-Saving Design

Compact 1-row layout maximizes energy output on smaller plots of land.

4. Versatile Compatibility

Works with all standard framed solar panels (up to 450W).

5. Low Maintenance

Galvanized steel requires no repainting; occasional debris cleaning suffices.

 

Durable Zinc Coated Carbon Steel Solar Bracket for Cement Piles

Installation & Maintenance

Installation Steps:

Site Preparation: Level ground and mark pile/ballast locations based on row spacing.

Secure Foundations: Install ground screws or concrete ballast blocks.

Assemble Racking: Bolt vertical supports and cross-beams; align dual rows.

Mount Panels: Attach panels to rails using corrosion-resistant clamps.

Final Adjustments: Set tilt angle and row spacing to minimize shading.

Maintenance Tips:

Inspect galvanized coating annually for scratches (repair with zinc-rich spray if needed).

Clear debris/snow accumulation between rows to maintain airflow and efficiency.

Tighten bolts after the first year and following extreme weather events.


 
Durable Zinc Coated Carbon Steel Solar Bracket for Cement Piles
 
Durable Zinc Coated Carbon Steel Solar Bracket for Cement Piles
Applications

Residential Backyard Solar: Perfect for homeowners with limited space.

Farm & Agricultural Projects: Corrosion-resistant for humid or fertilized soils.

Off-Grid Cabins: Easy to install in remote locations.

Small Commercial Arrays: Scalable for shops, warehouses, or parking lots.

Temporary Installations: Portable for events or construction sites.

Durable Zinc Coated Carbon Steel Solar Bracket for Cement Piles
Durable Zinc Coated Carbon Steel Solar Bracket for Cement Piles
Durable Zinc Coated Carbon Steel Solar Bracket for Cement Piles
Durable Zinc Coated Carbon Steel Solar Bracket for Cement Piles
 
Durable Zinc Coated Carbon Steel Solar Bracket for Cement Piles
Q1: What is a solar ground mounting system? What are its main advantages over rooftop mounting systems?

A: A solar ground mounting system is a support structure used to mount photovoltaic solar panels on the ground. It is typically made of corrosion-resistant materials such as galvanized steel or aluminum alloy and is anchored to the ground using a concrete foundation or screw piles.

Q2: What kind of foundation is required for installing a ground-mounted system?

A: The choice of foundation depends on local geology, soil type, climate (e.g., wind speed, snow cover), and system size. The main types are:

Concrete foundation: The most common form uses cast-in-place concrete piers to provide stable support. It is suitable for most soil types and is very strong and reliable.

Screw piles: These are screwed into the ground like a screw. They are fast to install, cause minimal soil disturbance, and are easy to remove and relocate in the future. They are particularly suitable for soft or sandy soils.

Ballasted foundation: The weight of concrete blocks or weights secures the system, eliminating the need for deep excavation. This is often used in sites where excavation is unsuitable (e.g., gravel) or for temporary installations.

Q3: What are the land area requirements for ground-mount systems?

A: The required land area depends primarily on the total system capacity and the layout of the photovoltaic panels.

Q4: How often do ground-mount systems require maintenance? What precautions should be taken?

A: Ground-mount systems are known for their durability and low maintenance requirements. Key maintenance tasks include:
Regular Inspections: We recommend inspecting all structural connections, bolts, and fasteners once or twice a year for signs of looseness or corrosion.
Panel Cleaning: Depending on the local environment (dust, pollen, bird droppings, etc.), the surface of the photovoltaic panels should be cleaned regularly to ensure efficient power generation. Ground-mount systems are generally easier to clean than rooftop installations.
Vegetation Management: Weeds and shrubs around the mounting system should be regularly trimmed to prevent them from growing tall and casting shadows on the panels.
High-quality mounting systems are typically highly corrosion-resistant (e.g., hot-dip galvanized steel) and are designed to last for over 25 years.
Q5: What is the typical cost of a ground-mounted system?

A: The cost of a ground-mounted system varies depending on the system size, design complexity, materials selected, foundation type, and labor costs. Generally, the initial installation cost is higher than a rooftop system of similar size.

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