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Don't make this R-Value MistakeSpray Foam Insulators

Don’t Make this R-Value Mistake

For years, SPF (Spray Polyurethane Foam) contractors have been challenged by building code requirements that call for high R-values in attics, especially in colder climates like Pennsylvania, where R-values of 49 are often mandated. To provide a more accurate assessment of how well different insulation types perform under real-world conditions, the esteemed Oak Ridge National Laboratories, commissioned by the U.S. Department of Energy, with their advanced attic climate simulator, have been at the forefront of this research.

In July 2005, the Spray Polyurethane Foam Alliance (SPFA) commissioned R&D Services to conduct comprehensive tests within the advanced attic climate simulator. The focus was on comparing the thermal performance of low-density, water-blown SPF and 2lb density HFC 245fa-blown SPF against traditional blown-in fiberglass insulation, ensuring a rigorous and thorough testing process.

The experiments were carried out under both winter and summer conditions in a test section measuring 8×8 ft., totaling an area of 64 sq ft. The configurations tested included:

  • Loose-fill fiberglass laid on the attic floor, with a depth of 14 inches.
  • Low-density SPF sprayed between rafters on the underside of the roof deck, with a depth of 5.5 inches.
  • Medium-density SPF (2 lb) also applied between rafters on the roof deck’s underside, at a depth of 4 inches.

Results:

The testing revealed significant differences in performance:

  • Both low—and medium-density SPF maintained much higher effective R-values compared to fiberglass insulation. Specifically, SPF retained 74% and 83% of its reported R-value at low temperatures, dramatically outperforming fiberglass insulation, which held only 46%. At higher temperatures, SPF systems maintained 61% and 67% of their R-value, compared to 51% for fiberglass.
  • Attic temperatures with SPF were considerably more stable: low and medium-density SPF maintained average temperatures of 77-78 degrees Fahrenheit in high heat, and 60-61 degrees in cold, versus fiberglass, which fluctuated to 107 degrees at high temperatures and dropped to 7 degrees in the cold.

These findings underscore the superior performance of SPF insulation in maintaining consistent attic temperatures and retaining its insulative properties under various climate conditions. This research from Oak Ridge National Laboratories highlights the effectiveness of SPF over traditional fiberglass, especially in extreme weather, offering a compelling argument for choosing advanced insulation solutions to enhance energy efficiency and comfort in homes.

If you want to see what Spray foam Insulation can do for you, contact us for a free estimate.

Boost Your Home’s Warmth and Efficiency with PECO and Spray Foam Insulators

After checking the chilly winter forecast, you wisely contacted PECO for a free home energy evaluation—great first step! This assessment is crucial in identifying how to make your home warmer while cutting down on those heating bills this winter.

The evaluation typically reveals that the biggest energy drains are leaks in your walls and roof. These leaks not only let cold air sneak in but also let heated air escape, causing uncomfortable drafts and higher thermostat settings. So, what’s the next step to seal these leaks and enhance your home’s efficiency?

This is where Spray Foam Insulators excels!

For leaks in walls, Spray Foam Insulators employs injection foam techniques. They’ll drill small, barely noticeable holes in the exterior walls and inject foam that expands to fill every nook and cranny, sealing leaks effectively with minimal disruption. Once they’re done, they’ll replace the siding so seamlessly it’ll look untouched.

Leaks via the attic or basement? No problem. Spray Foam Insulators’ spray foam solution expands quickly to fill gaps and cracks, keeping the heat in and the cold out.

Leverage your PECO assessment to pinpoint areas that need sealing and contact Spray Foam Insulators. They’ll elevate your home’s comfort and efficiency, reducing heat loss, enhancing your well-being, and lowering energy costs.

Stay Warm with Over-Garage Living Spaces

As the weather cools down, we often receive calls from customers troubled by extremely cold rooms and floors above their garages. This common issue is exacerbated when these spaces include bathrooms with tile floors, which become uncomfortably cold. The root of the problem lies in the insulation—the same material in your home’s walls and ceilings is used in your garage’s ceiling, but without the necessary modifications for spaces that are walked upon.

Spray Foam Insulators offers an effective solution: injection of open-cell foam into the garage ceiling. This method enhances the existing fiberglass insulation by adding an air seal without the need to remove the existing ceiling drywall. Our process involves drilling a 2.5” hole into each stud bay, spaced every eight feet, to allow for the injection of the foam.

After application, we plug the holes and apply a single coat of spackle. Completing the repair might require another coat of spackle and paint—a service we don’t provide directly, but we can recommend skilled contractors. Some moisture from the foam may cause bleeding in the drywall, but once dry, it’s ready for easy painting.

Interested in a quote? Send us four pictures of your garage, and we’ll get back to you with an estimate. Stay warm and comfortable in your over-garage living spaces this winter with our tailored insulation solutions.

Spray Foam Insulation vs. Fiberglass

Spray Foam vs. Fiberglass: A Tale of Two Homes

Spray Foam Insulation vs. FiberglassTransforming Energy Efficiency

In a groundbreaking project by Habitat for Humanity in Denton, TX, two identically designed homes were built side by side with one key difference: their insulation materials. This unique setup provided a real-world comparison of energy efficiency between spray foam insulation and traditional fiberglass insulation combined with a solar board. The findings from this comparison offer valuable insights for homeowners considering insulation options.

The Project Setup

Both homes, constructed in 2007, feature the same floor plan and orientation but differ significantly in their insulation approaches. One home was insulated using 3.5 inches of Sealection open-cell foam in the exterior walls (R-Value of 13) and 5.5 inches in the roof deck (R-Value of 21), creating a closed attic assembly. This setup places the air handler and ductwork within the thermal envelope, significantly reducing the thermal load on the HVAC system and allowing for a smaller HVAC unit.

The other home utilized traditional fiberglass insulation in the walls and attic floor, achieving an R-Value of 13 in the walls and 38 in the attic floor, with a solar board on the roof deck. Despite these specifications, the fiberglass insulation does not encompass the HVAC system within the home’s thermal envelope.

Energy Efficiency Outcomes

The results were stark. Monitoring equipment installed in both homes measured temperature, humidity, and electrical usage, revealing significant differences in energy consumption and cost. The spray foam insulated home showed drastically reduced air leakage, over 14 times lower than its fiberglass counterpart, translating to 95% less air leakage overall.

Energy consumption figures underscore the efficiency of spray foam. The fiberglass-insulated home used an average of 2248 kWh per month at a cost of $258.03, while the spray foam-insulated home consumed just 883 kWh at $105.41. This amounts to a substantial monthly saving, with total energy costs nearly 60% lower in the foam-insulated home.

Real-World Implications

These findings illuminate the profound impact that insulation type can have on a home’s energy efficiency. Spray foam insulation not only offers superior air sealing properties but also enhances the overall efficiency of heating and cooling systems. The reduced energy usage not only leads to lower utility bills but also contributes to a smaller environmental footprint, a critical consideration in today’s energy-conscious climate.

For homeowners and builders alike, this project serves as a compelling demonstration of how advanced insulation technologies like spray foam can lead to long-term savings and sustainability. It’s a clear example that in the world of building and insulation, material choices can have dramatic impacts on both costs and comfort.

Understanding R-Value and InsulationSpray Foam Insulators

Understanding R Value

Understanding R-Value and InsulationThe term “R-value” refers to the resistance to heat flow, with a higher R-value indicating better insulation power. While it’s assumed that insulation with the same R-value should perform equally, this isn’t always the case in practice. The effectiveness of insulation largely depends on its installation. According to the consumer.ftc.gov, perfectly installed insulation can retain most of its R-value, but commonly used materials like fiberglass and cellulose often see about a 50% reduction in effectiveness due to installation issues.

Consider a typical attic scenario: during hot days with temperatures ranging from 85-100°F, the attic can heat up significantly more due to radiant heat build-up and hot air infiltration. This heat can cause attic temperatures to soar to 120-140°F. If the living space below is at 75°F, the temperature difference (Delta T) can reach up to 60°F. This significant Delta T forces air conditioning systems to work harder to maintain comfortable temperatures below.

However, by applying spray foam insulation directly to the underside of the roof deck and between the rafters, homeowners can create an unvented attic that significantly reduces this temperature differential to about 10-15°F. This not only makes the living area more comfortable but also enhances the efficiency of air conditioning units by reducing the load and frequency of operation. This adjustment in insulation strategy can lead to significant energy savings and improved indoor comfort.

Injection Foam for Garages [Video]

Spray Foam Joe, the expert in all things spray foam, has some valuable insights on how to keep your living space above the garage warm during the colder months. The number one complaint that he hears is that the living space above the garage is ice-cold. This is often due to poor insulation, which is present not only in the ceiling of the garage but also in the floors, walls, and roof of the rest of the house. The solution to this problem is to inject foam into the ceiling of the garage to create an air seal that enhances the efficiency of the existing insulation.

The process of injecting foam into the ceiling of the garage involves drilling a series of holes and injecting a continuous layer of foam all the way across. This process encapsulates the fiberglass insulation that’s already present and creates an air seal between the cold garage and the living space above. However, the process doesn’t end there. After injecting the foam, Spray Foam Joe and his team support the sheetrock to ensure that it doesn’t collapse under the weight of the foam. This is especially important for older homes where sheetrock was only nailed and not glued or screwed at the same time.

In the end, this process is a great energy saver for homeowners. It not only keeps the living space above the garage warm and comfortable, but it also saves on energy costs. With the added insulation and air seal, homeowners will see a significant reduction in their energy bills. So, if you’re experiencing a cold living space above your garage, don’t hesitate to contact Spray Foam Joe and his team to inject foam into your garage’s ceiling and enjoy the warmth and comfort of your home all winter long.

2021 IRC Building Code [Video]

In this video Spray Foam Joe discusses ways to better insulate homes in order to save on heating costs and provide a more comfortable environment. He talks about the recent adoption of IRC 2021 by the state of New Jersey and soon to be adopted by Pennsylvania and other states. Joe explains how to create an R-30 wall cavity and an R-60 roof cavity. He suggests using a double wall studded exterior wall to allow for a continuous monolithic pour of foam insulation across the whole exterior of the house. This method will bridge the thermal break and exceed the 2021 energy code.

The R-30 wall cavity is a bit of a challenge because putting foam board on the outside can impact the installation of windows and doors. Joe suggests using offset double two by fours, with a two by four on the exterior 16 inch on center and one on the inside 16 inch on center on a two by six plate. This can also be done with two by threes on the interior. Structural engineers are working on increasing the stud spacing, which will save money.

Joe explains that the cost of spray foam is the same whether doing a two by six wall or a double studded wall. The labor to do the double stud was minimal according to the framer that framed this house. The new code is trying to bridge the thermal break, and 20% to 25% of all the exterior walls in the house are wood studs. Open cell foam in a double studded wall can accomplish this and exceed the 2021 energy code.

Finally, Joe concludes that this will be a series of multiple videos that will enhance the ability to insulate homes and ensure a green environment. By following these methods, homeowners can save on heating costs, improve comfort, and help the environment.

If you are building a home in Pennsylvania, New Jersey or Delaware, request a free estimate from Spray Foam Insulators.

 

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