Learn how Fox Blocks ICFs are becoming mainstream in the construction industry, offering protection against Hurricanes, Tornados, and Wildfires. During this presentation, you will receive an introduction to ICFs, learn about the design benefits, and discover the numerous advantages of using Fox Blocks in new construction. ICFs are a valuable, self-performing system that operates 24/7, providing the best in comfort, value, and resiliency—regardless of what nature brings to the structure....
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Participants will learn first-hand through instruction and observing the manufacturing process of how insulated metal roof and wall systems are made. Guests will tour the plant floor, testing areas, and storage yards, getting a preview of insulated metal panel systems to be installed throughout the country. Additionally, because of the highly specialized process and equipment used in the manufacturing process, insulated metal panels are a lightweight, durable, and sustainable building envelope solution....
This course will investigate the history of exterior stucco to the most recent developments in stucco assemblies designed with innovative weather resistive air barrier membranes in a ventilated rainscreen wall assembly. Participants will identify drainage and venting requirements and understand the details of stucco wall systems. The course will explore case studies from failure to remediation, including successful projects utilizing the new innovative all-in-one drainage matrix and weather resistive air barrier technology....
Masonry wall types have evolved from self-supporting mass walls to cavity walls and veneers that require wall ties or anchors. Over time, anchors can fail and masonry wall systems can become unstable and require repair. This course discusses how to recognize unstable façades, how retrofit anchors can be used to repair these instabilities, the different types of anchors available, and how to determine the proper repair procedure....
Modular metal panel (MMP) wall systems allow for an array of different exterior and interior building designs due to their wide range of panel sizes, planes, and layout configurations. This course covers the attributes of MMPs, including the available substrates, their fabrication and ease of installation, and their ability to deliver a simple, constructible concealed-fastener rainscreen system....
New building materials don’t come around very often, and in some cases an early high-profile stumble can shape perceptions of an otherwise valuable technology. Learning from those mistakes, however, is a fundamental element of driving technical innovation, and real, robust solutions to known issues can ultimately produce the highest level of performance. Magnesium oxide-based composite panels have been used as exterior wall sheathing for several decades due to a number of highly desirable properties, including resistance to fire, dimensional stability, high strength, and other attributes. Early iterations of boards were found to have issues related to moisture and chemical stability, leading to premature failure of the building façade but also teaching the industry specific factors that needed to be improved in future generations of board. Now, as a maturing product category, the enabling technology of how to make consistent, high quality boards is well known, even if not universally practiced. In this presentation, we will review the basics of MgO chemistry, how boards incorporating MgO cement have evolved over time to address early issues in board performance, and how this technology can be incorporated into building exterior wall systems with many favorable attributes....
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Architectural insulated metal panels (IMPs) are an increasingly popular choice for building developers and architects, presenting a compelling solution that combines functionality, efficiency, and aesthetic appeal. This course reviews the architectural IMP, its applications and benefits, and comparisons to other materials. It explores current trends and developments that are paving the way for increased aesthetic possibilities and building envelope performance....
Architectural insulated metal panels are comprised of a steel skin and insulating foam core, which becomes the building envelope. These wall panels are known for their striking aesthetic capabilities and provide superior moisture resistance and thermal performance. This course will explore the fundamentals of architectural insulated metal panels, their performance benefits, and how insulated metal panels achieve air, water, vapor, and thermal control via a more advanced and cost-effective single component system that accelerates construction time. The course will also cover important design details to achieve your design intent and case studies that will showcase architectural insulated wall panels....
Roofing is one of the most common renovation projects on commercial buildings. Upgrading a roof assembly to meet current building standards provides an opportunity to save energy and maintain the necessary fire and structural performance. This course reviews the code requirements for commercial reroofing and discusses how reroofing can improve a building’s energy efficiency....
View the PIMA - Polyisocyanurate Insulation Manufacturers Association Course Library
PIMA - Polyisocyanurate Insulation Manufacturers Association
Some types of roofing systems can provide you with a roofing option that’s good for the environment and your wallet. Roofing systems don’t have to be disposable. By maximizing system longevity and recycling at the end of its useful life, roofing systems no longer have to be looked at as another thing to add to a landfill....
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Sustainable building envelopes demand high performance from and proper installation of continuous insulation and air, water, and vapor control layers. What happens when thousands of holes are made in these materials as they are installed with blind fasteners, one layer on top of another by different subcontractors? Sequencing issues can generally not be avoided; instead, this course focuses on self-sealing fasteners as a solution to avoid damage and thermal bridging in insulation and control layers. Various fasteners and anchors are described, and recommendations are presented for how to specify and what testing data to look for....
With the coming of the 2009 and 2012 International Energy Conservation Codes (IECC), insulating sheathing has played a growing role in the drive to make homes more energy efficient and comfortable for their occupants. The pressure is on for builders, home designers, and architects to find cost-effective construction methods and materials to meet these ever-growing performance standards. Educating one’s self and remaining current on building science trends, technologies and materials has proven to be a powerful measure of success in today’s residential construction markets. The following presentation “Why Use Insulating Sheathing”, aims to educate attendees on the flexibility of using foam sheathing in various Type V construction assemblies in order to meet stricter energy code minimums. Additional learning takeaways from this presentation include investigating common faults in Type V wood-framed walls from a framing, moisture, thermal bridging, and air sealing perspective; and how insulating sheathing can help correct these faults. Attendees will walk away with a thorough understanding of the advantages of using insulating sheathing in residential walls and be able to effectively communicate these advantages to their customers. Additionally, attendees will also leave with a solid understanding of the basic science behind any insulating material and how to better utilize these materials in various environments....
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The look of wood adds warmth and aesthetic appeal to building designs that other materials, such as masonry, metals, and glass, cannot replicate. However, since natural wood may not be suitable for Class 1–3 commercial projects, innovative composite and synthetic materials have been developed to overcome the limitations of real wood. This course provides a comprehensive examination of eight wood-inspired design technologies that mimic the appearance of natural wood while meeting fire performance standards. The role of wood-plastic composite (WPC) hybrid products in fulfilling the requirements of the LEED® v5 Building Design and Construction (BD+C) rating system is also reviewed....
Moisture is the most significant factor in the premature deterioration of buildings. Moisture can damage materials directly, but it can also reduce the effectiveness of building materials. Excess moisture is also the major factor in the growth of mold. The most common contributing factors to moisture problems in buildings include: − Lack of understanding of building science principles − Design related factors, e.g., lack of sufficient details in the drawings − Installation related factors, e.g., improper materials substitutions, lack of installer training, and lack of inspection during construction This seminar will discuss the moisture sources in buildings, moisture transport mechanisms and moisture control strategies....
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Architects and other design professionals have a critical role to play in reducing global greenhouse gas emissions through building design and product selection. The urgent need to reduce both operational and embodied carbon means that building designers must be familiar with transparency documents that facilitate low-carbon product selection. In this course, we review the types of carbon of concern, transparency documents that provide critical information, and tools for sourcing embodied carbon information. We also look at the contribution of insulated metal panels to both low embodied and low operational carbon buildings....
This course provides specifiers of masonry veneer walls the description of a complete high performance wall system that meets the wall systems requirements ASTM E2357 (Air Leakage), ASTM E331 (Water Penetration), and NFPA 285 (Fire Propagation). The wall components associated with moisture management and interactions with other system components are highlighted. Additionally, an effective and efficient means to specify such walls is presented....
No discussion about a material’s sustainability is complete unless it addresses embodied carbon, the carbon dioxide (CO₂) emissions associated with the material over its cradle-to-grave life cycle. Changes made to spray polyurethane foam (SPF) insulation formulations address the impacts of embodied carbon. This course explores the evolution and environmental impacts of SPF blowing agents, the performance benefits of SPF, physical property testing and certifications, and SPF’s potential LEED® v4 contributions. Case studies make evident the performance value of SPF....
Our learning objectives for this course all surround the core value & concepts of metal panel. We briefly Identify market sectors for architectural insulated metal panels. Understand the thermal performance advantages of insulated panels along with the basics of panel installation including wall framing requirements. Discuss how IMPs perform the necessary envelope control functions through a single component systems while accelerate speed of build. This course will also describe the aesthetics, design flexibility and integrated accessories available with architectural insulated metal panels....
As part of a well-designed rainscreen system, single-skin metal panels offer unique aesthetic options combined with the assurance that the building envelope will withstand the effects of long-term exposure to the elements. This course compares common cladding types; presents single-skin metal panel materials, coatings, finishes, and design options; and examines using single-skin metal panels with a single-component barrier wall to form a complete rainscreen assembly....
This course is designed to help the commercial building designer to understand the new products being rapidly introduced into the market that assist in installation of multiple steps of a normal commercial exterior assembly control layers, such as: thermal, air, vapor, structure, and fire control into one or fewer steps that are traditionally used in many of today's building designs throughout the world....
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This course defines and explains building science behind the code for the four control layers of the building envelope: water, thermal, air and vapor. There will be a detailed overview of air leakage, why it matters in a sustainable envelope and why air barrier continuity is critical to building performance. Participants will be asked to explore typical design principles for addressing the four control layers within the wall assembly. Finally, there will be an in-depth discussion of the critical interfaces, how to detail them and test them to ensure continuity of the control layers for the entire building....
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This presentation discusses the importance of detailing the building to prevent serious water issues in the envelope of a building....
From research to optimization, Kingspan explores the in and outs of real fire examples, insulation comparisons, the science of fire, and how to accurately test your design for fire safety. This course's broad view on the fire performance of insulation boards and the necessary steps needed to adhere to industry standards will give readers the general concepts, skills, and practices to retain high level strategic thinking when ensuring fire safety....
The 2022 Inflation Reduction Act shines a light on how low-carbon building material selection is one of the keys to reducing greenhouse gas emissions in the US. High-performance, sustainable products and thoughtful assemblies designed with the building life cycle in mind are critical to the future of our sustainable communities. This course provides a look at how low-carbon and sustainability considerations are activated from product to building design. Factors impacting a sustainable building life cycle are discussed to help architects and owners with building performance that meets the design intent not just on paper but also in use....
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Today’s buildings continue to push the envelope of architectural design, energy efficiency, construction timelines and cost reductions forcing building materials and application techniques to evolve. The evolution of products and applications to waterproof the entire building envelope (vertical and horizontal) throughout various construction materials has created a blend between established and newly developed waterproofing technologies. These blended technologies have the single purpose of integrating and creating a continuous system protecting the building from moisture and performing harmoniously. This presentation helps identify the challenges and opportunities to build an integrated waterproofing system addressing all six sides of the building envelope. While each type of installation will be reviewed separately, the platform will be set for successful integration at all of the transitions and changes within the building by the proper identification and specification of compatible products and materials....
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