Products Description

Specifically designed for various large-scale overseas engineering projects, it focuses on the high rigidity, high load-bearing capacity, and high stability requirements of engineering beams. It replaces traditional engineering beams and solves the pain points of beams being prone to deformation and poor stability in large-span and heavy-load scenarios. It is a core load-bearing component for large-scale engineering construction.
PRODUCT DETAILS:
|
Product Name |
High-rigidity LVL beams for engineering |
|
Material |
New Zealand radiata pine, Russian larch, etc. |
|
Length |
Up to 8.5 meters long Customized |
|
Width |
90mm to 400mm Customized |
|
Thickness |
35mm to 75mm Customized |
|
Surface treatment |
Double-sided polishing / Anti-slip treatment, Customized Support |
|
Certification Standards |
Complies with Australian and New Zealand Standards AS/NZS 4357.0. |
|
Formaldehyde Emission |
Poplar products use E0 glue, while the rest use phenolic resin glue. |
|
Design Style |
Modern |
|
Feature |
water resistant, Anti-Corrosion, Eco-Friendly |
Scenario & Procurement compatibility

Scenario 1
Large-scale construction projects, used for main load-bearing beams and frame beams in high-rise buildings, convention centers, stadiums, etc., suitable for large-span, high-load-bearing structural designs.

Scenario 2
Bridge engineering, used for auxiliary support beams and approach bridge load-bearing beams, capable of withstanding vehicle loads and rain/snow loads, ensuring bridge structural safety.

Scenario 3
Infrastructure engineering, used for support beams and load-bearing beams in infrastructure projects such as roads, docks, and airports, suitable for complex outdoor engineering environments, with strong weather resistance and high stability.

Procurement compatibility
Primarily targeting overseas engineering contractors, large infrastructure companies, and engineering building material traders, supporting bulk procurement of entire containers and customized projects, capable of connecting with large-scale engineering construction projects, and providing engineering-level solutions.
High Rigidity Core Performance and Engineering Advantages
Superior Rigidity
Utilizing high-strength single-layer slabs and a high-density high-pressure lamination process, the beam exhibits excellent rigidity, outstanding resistance to deformation and bending, and can withstand heavy engineering loads and span-based stresses for extended periods without significant deformation. Its rigidity modulus far exceeds industry standards.
01
High Load-Bearing Capacity
Optimized beam cross-section structure ensures uniform stress distribution, adapting to the high load-bearing requirements of large-scale projects. It can stably withstand both static and dynamic loads without the risk of fracture or subsidence, meeting engineering design load standards.
02
Structural Stability
Multiple precision drying, high-pressure curing, and constant-temperature curing processes ensure precise control of moisture content at 8%-10%, effectively preventing warping, cracking, and deformation caused by temperature and humidity changes, making it suitable for complex engineering environments.
03
Engineering-Grade Durability
The surface undergoes engineering-grade anti-corrosion, anti-wear, and anti-aging treatments, making it suitable for outdoor projects and complex working conditions. It resists dust, rain, and minor chemical corrosion, with a service life of over 35 years, significantly reducing later-stage maintenance costs. -
04
Engineering adaptability
High dimensional accuracy, with errors controlled within ±0.5mm, it can be perfectly matched with other engineering building materials such as concrete and steel, and is compatible with various engineering construction processes to improve construction efficiency.
05
Substrate Processing and Engineering-Grade Quality Control




- Substrate Selection: High-strength pine and birch veneers are carefully selected using mechanical precision screening to remove defects such as rot, insect infestation, large knots, and cracks, ensuring uniform strength and laying the foundation for high rigidity. Imported high-quality veneers can be used to enhance beam performance.
- Drying Process: Precision constant-temperature drying technology is employed, controlling temperature and humidity in stages to thoroughly remove internal moisture from the wood, locking in a balanced moisture content and reducing the risk of beam deformation at its source, adapting to complex engineering environments.
- Pressing Process: Continuous high-pressure hot pressing is used, with pressure controlled at 18-20MPa. This results in tight interlayer bonding, eliminating delamination and hollow areas, creating a dense beam structure that enhances rigidity and load-bearing capacity. Advanced lamination technology ensures uniform stress distribution within the beam.
- Surface Treatment: Engineering-grade fine sanding ensures a smooth, burr-free surface. Edges are reinforced to prevent scratches and damage during construction. Customized anti-corrosion, fireproofing, and salt spray protection treatments are available to suit different engineering environments.
- Quality Control Process: We implement engineering-level quality control standards, including raw material sampling inspection, semi-finished product rigidity and load-bearing capacity testing, and finished product full inspection. Each process is inspected by designated personnel, with a focus on rigidity, load-bearing capacity, and dimensional accuracy. All unqualified products are rejected to ensure that the quality of products leaving the factory meets the engineering acceptance standards.
Specifications and Customized Engineering Solutions
Standard Specifications
Length 5m-15m (customizable up to 25m), Thickness 80mm-200mm, Width 150mm-500mm, covering commonly used dimensions for large-scale engineering beams, adaptable to different spans and load-bearing requirements.
01
Customized Solution 1
Size Customization. Based on engineering design drawings, span parameters, and load-bearing requirements, beams of special lengths, thicknesses, and widths can be customized to precisely fit the engineering structural design. Load calculation services are provided.
02
Customized Solution 2
Performance Customization. For special engineering scenarios such as bridges and coastal infrastructure, rigidity, corrosion resistance, and salt spray resistance can be upgraded to adapt to complex engineering environments; fire resistance ratings can be customized to meet engineering fire protection requirements.
03
Customization Process
Customer provides engineering drawings and requirements → Technical team conducts calculations → Providing customized solutions, load reports, and quotations → Sample confirmation → Mass production → Finished product testing → Delivery. One-on-one dedicated technical support throughout the process.
04
Engineering Adaptability
We can provide technical guidance on beam installation, assist customers in on-site construction, ensure that beam installation complies with engineering specifications, and guarantee the safety of the engineering structure.
05

Engineering Certification and Export Customs Clearance Guarantee
International Certifications
Products have passed CE, CARB P2 environmental certification, ISO9001 quality management system certification, and engineering building material strength certification, meeting overseas standards for large-scale engineering construction materials and ensuring smooth passage through customs inspections and project acceptance in various countries.
Testing Reports
Each batch of products comes with a rigidity test report, load-bearing performance test report, environmental test report, and engineering-grade quality inspection certificate. Third-party authoritative test reports and load calculation reports can be provided upon customer request to assist in project bidding and approval.
Export Documentation
Complete export documentation is provided, including commercial invoices, packing lists, fumigation certificates, certificates of origin, and certification certificates. Complete documentation ensures smooth customs clearance, saving customers time and costs.
Compliance Guarantee
Raw materials are sourced from sustainably harvested forests, complying with overseas forest resource protection laws; all product indicators meet engineering environmental and safety standards, helping customers successfully connect with large-scale engineering projects.
FAQ
Q: Q. If your company is reliable ?
A: A: Founded in 2009,company covers an area of 52,000 square meters,more than 300 employees, including nearly 20 scientific researchers.Powerful LVL manufacture in China.
Q: Q.How long is your delivery time?
A: A: For full container, factory lead time About 20~35 days.
Q: Q: what's your payment terms and trade terms?
A: A: Accepted Delivery Terms: FOB, CFR, CIF, CIP, FCA, CPT, Express Delivery, DAF.
Q: Q: How can you promise quality
A: A: It complies with the Australian and New Zealand standards AS/NZS 4357.0. Some products have passed JAS-ANZ certification, and the formaldehyde emission level reaches E0 level certification, FSC certification can also be provided.
Q:How about the shipping fees?
A: For large quantities of products, ocean freight is usually the best option. The price of ocean freight depends on the destination port and the current ocean freight rates. Please contact us and we will provide you with a better quote based on the actual situation.
Hot Tags: high-rigidity lvl beams for engineering, China high-rigidity lvl beams for engineering manufacturers, suppliers, factory, Laminated Veneer Main Beam, High Load bearing LVL Beams for Roof Beams, Pine LVL Laminated Veneer Lumber Beam, High Strength LVL Beam for Floor Joist, Heavy Duty LVL Beam for Wall and Slab Formwork, Durable Strong LVL Beam for Building Construction
