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Get answers to technical and product-related questions, including code compliance, standards, troubleshooting, product use, and field performance questions.
Whether you're looking for technical guidance, account assistance, or quick answers, APA offers several ways to get the support you need.
Connect with the APA Help Desk for product and code-related questions, technical guidance and application support from APA Engineered Wood Specialists, contact APA for help with programs and services, or explore frequently asked questions to find answers right away.
Get answers to technical and product-related questions, including code compliance, standards, troubleshooting, product use, and field performance questions.
If you're wondering what happens when engineered wood products get wet on the job site, the short answer is that wood construction is durable and will normally be structurally sound after severe exposure to moisture. Structural plywood and OSB used in floors, walls and roofs are made with water-resistant adhesive and retain their strength following wetting events. Although the surface of the panels may be rough from water exposure, they generally remain structurally sound. However, panels saturated with water will feel less stiff than those in a dry condition. Until the panels dry, they should not be subjected to heavy loading, such as repeated heavy foot traffic or loaded drywall carts.
In cases of severe or unusually prolonged exposure, it may be necessary to retain the services of a qualified construction expert for panel evaluation.
For more information about engineered wood products that get wet on the job site, refer to APA’s FAQs: Questions About Wood Structural Panel Exposure to Excessive Moisture, Form X501.
If you're looking for APA-certified plywood, OSB or other engineered wood products near you, the APA Manufacturer Directory is the best place to start.
Visit the APA Manufacturer Directory to search for specific APA-trademarked engineered wood products produced by APA members across North America by country, state or province.
If you're using APA’s Wall Bracing Calculator to determine bracing requirements for your project, follow the basic steps below to create your wall lines and bracing segments.
To use the Wal Bracing Calculator:
• Click the input wall line information button
• Advanced to the wall line details and wall line segment details page of the calculator
• Create braced wall lines and bracing segments
Please note that APA’s Wall Bracing Calculator is intended for use by experienced designers that are familiar with wall bracing. Refer to the Wall Bracing Calculator Quick Start Guide, Form Q230, for basic instructions on using the calculator.
You can download APA Product Reports® for free on the Product Report section of the Technical Document Library on APA’s website.
APA Product Reports help building officials and design professionals determine a product's conformance with codes and national, international or industry-recognized standards. APA issues these reports to document the compliance of an engineered wood product that is manufactured under a quality program audited by APA. APA Product Reports signify the product's compliance with the relevant provisions in the model building codes.
Looking for APA Product Reports for use in Canada? These reports are denoted with a "C" at the end of the form number.
If you're looking for national standards for engineered wood products, APA publishes and maintains numerous standards covering manufacturing, testing, product performance and quality assurance. Learn more about APA’s involvement with standards publishing here or explore specific standards below.
Voluntary Product Standard PS 1-22, Structural Plywood, Form L870
Voluntary Product Standard PS 1-22 is the national standard for producing, marketing and specifying plywood for construction and industrial uses.
Voluntary Product Standard PS 2-18, Performance Standard for Wood Structural Panels, Form S350
Voluntary Product Standard PS 2-18 provides information on performance requirements, adhesive bond performance, panel construction and workmanship, dimensions and tolerances, marking, and moisture content of structural-use panels.
Performance Standards and Qualification Policy for Wood Structural Panels, Form E445
APA PRP-108 describes requirements and test methods for APA Performance Rated Panels.
ANSI/APA PRP 210-2024: Standard for Performance-Rated Engineered Wood Siding, ANSI/APA PRP 210-2024
This American National Standard provides requirements and test methods for qualification and quality assurance for performance-rated engineered wood siding, a veneer-based, structural-use product.
APA PRI-400 Performance Standard for Residential I-Joists, PRI-400
APA PRI-400 contains performance criteria, qualification requirements and quality assurance information for APA Performance Rated I-Joists used in residential floors.
APA PRI-400 CA contains performance criteria, qualification requirements and quality assurance information for APA Performance-Rated residential I-joists, limit states design, in accordance with the National Building Code of Canada.
APA PRI-405 Performance Standard for Commercial I-Joists, PRI-405
This standard provides requirements and design properties for APA Performance-Rated I-joists in sizes that are commonly used in nonresidential floor and roof construction.
This Standard covers the manufacturing, qualification, quality assurance, design and installation requirements for performance-rated structural insulated panels (SIPs) used in wall applications.
ANSI/APA PRG 320-2025 Standard for Performance-Rated Cross-Laminated Timber, ANSI/APA PRG 320-2025
This Standard provides requirements and test methods for qualification and quality assurance for performance-rated CLT, which is manufactured from solid-sawn lumber or structural composite lumber.
ANSI / APA PRR 410-2021: Standard for Performance-Rated Engineered Wood Rim Boards, PRR 410
This Standard provides requirements and test methods for qualification and quality assurance for performance-rated engineered wood rim boards.
The Standard contains general information on structural glued laminated timber members that may be useful to the manufacturer and designer.
ANSI A190.1-2022 Product Standard for Structural Glued Laminated Timber, ANSI A190.1
This Standard contains requirements for the manufacture and quality control of structural glued laminated timber.
ANSI 405-2023: Standard for Adhesives for Use in Structural Glued Laminated Timber, ANSI 405-2023
This Standard provides minimum requirements to evaluate adhesives for use in structural glued laminated timber.
Yes, CARB regulations, H.U.D., and TSCA all explicitly exempt structural plywood specified to PS 1, structural panels specified to PS 2, OSB specified to PS 2, structural composite lumber specified to ASTM D5456, structural glued laminated timber specified to ANSI A190, and prefabricated wood I-joists specified to ASTM D5055. These exemptions apply to products trademarked or audited by APA under the APA quality assurance program, regardless of whether the product is used in a construction or industrial (manufacturing) application. Note that although CLT is not listed as an exempted product, CLT certified to ANSI/APA PRG 320 is made with moisture-resistant adhesives and has a low formaldehyde emission.
Find additional guidance in APA's publication Formaldehyde and Engineered Wood Products, Form J330, which addresses concerns related to engineered wood products and explains why they have such low emission levels that they are exempt from the leading formaldehyde emission standards and regulations.
Energy efficiency policies and building energy codes continue to evolve rapidly at the federal, state, and local levels, directly impacting residential and commercial construction practices. The International Energy Conservation Code (IECC) serves as the foundation for many state and local energy codes and influences construction practices, including wall assemblies, insulation requirements, air sealing, continuous insulation, and overall building envelope performance. APA supports practical, cost-effective energy solutions that maintain design flexibility, affordability, constructability, and durability for builders and designers. Engineered wood products play a critical role in high-performance wall, floor, and roof systems by supporting durable assemblies, advanced framing techniques, and efficient insulation strategies. Learn more about engineered wood’s important role in Energy Efficiency and how APA advocates on behalf of building professionals for flexible compliance approaches that allow builders to meet energy goals using a variety of compliant and proven engineered wood assemblies.
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