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Firebrick Mortar Refractory - 50lb bag

Original price $149.98 - Original price $149.98
Original price
$149.98
$149.98 - $149.98
Current price $149.98

Firebrick Mortar from Heat Stop is the ideal mortar mix for high temperatures and is engineered for laying fire brick. Popular applications include clay flue linings, fireboxes, furnaces, masonry ovens, kills, boilers, and both interior and exterior chimneys.

This 50-pound pail of dry compound is mixed with water to create 60 lbs of mortar that will lay up to 100x 2-1/2" thick bricks with joints of 1/16 to 1/8" thick and can accommodate joints up to 1/2" thick.

This refractory mortar meets the standards of ASTC C-199, ASTM C-1283, and ASTM E-136 and the NFPA-211 residential building code.

Handles extremely high temps, more than 2,000 degrees F.


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50 lb Bags sold individually

Size: 50 lb bag

PRODUCT SPECS

Details: 

  • Made in the USA 

HEAT STOP REFRACTORY MORTAR

Rubber Playground Border Landscape Timber

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Call (800) 567-5358 for pricing and logistics questions 

Note by default all Heat Stop orders ship from our centrally located Ohio warehouse where a full stock of Refractory Mortar and Castable products are maintained.

Most orders ship out 1-2 business days following the order depending on stock levels. Delivery times shown on the shipping map are typical, though not guaranteed.  

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HEAT STOP INSTALL VIDEO

PRODUCT OVERVIEW 

What is Refractory Mortar?

Refractory mortar is a heat-resistant mixture of cement, sand, fireclay, and specialized additives like calcium aluminate, engineered to withstand temperatures up to 2,550–3,000°F (1,400–1,650°C). It’s used to bond firebricks, set clay flue liners, or coat (parge) surfaces in high-heat environments like fireboxes, kilns, forges, and industrial furnaces. Unlike standard mortar, which contains Portland cement and breaks down under extreme heat, refractory mortar maintains structural integrity and resists thermal shock

Where Is Refractory Mortar Used?

The simple answer would be chimneys and fireplaces. Using common sense, it's used anywhere that is exposed to very high temperatures. There have been failures in parts of the chimney and fireplace firebox because someone did not use the right kind of mortar for the application. 

The National Fire Protection Association or NFPA is a self-funded nonprofit organization that was established in 1896. They recommend the use of tested, medium-duty refractory cement in the construction of fireplace fireboxes, in coating smoke chambers, and in the setting of clay flue liners. They also recommend cement and its agents be non-water-soluble and this is where calcium aluminate comes into play. The calcium aluminate binder will be set hydraulically which will meet the requirements. Without calcium aluminate, or something similar, someone will build a chimney, and even after it cures, it's exposed to moisture, so the joints will soften and wash out.

Heat Stop 50 Refractory Mortar

If you have a well-designed masonry fireplace or a bake oven, you will add value to your home along with charm and needed warmth in the winter months. Studies have shown that masonry fireplaces are no the top of the list among home buyers. If you are considering adding a fireplace to your home, you need to ensure it's designed and installed properly. 

Key Components:

Heat Stop 50, a high-temperature refractory mortar, contains sand, cement (specifically calcium aluminate cement), and fireclay as key components, along with carefully selected aggregates and additives designed for heat resistance. Here’s a detailed breakdown based on available information:

  • Sand: Heat Stop 50 includes fine aggregates, which are typically silica-based sand, to provide structure and workability. The sand is part of the carefully selected aggregate blend that ensures the mortar does not expand or tear apart when heated. The exact grain size and quality are optimized for thin joints (1/16” to 1/8”, up to 3/8” for thicker applications)
  • Cement: This refractory mortar uses calcium aluminate cement (instead of Portland Cement) as its primary binder. This hydraulic-setting cement is critical for its non-water-soluble properties and ability to withstand temperatures up to 2,500°F, meeting ASTM C-199 medium-duty standards. Calcium aluminate ensures the mortar sets chemically with water, providing a strong, heat-resistant, and acid-resistant bond suitable for fireplaces, chimneys, and ovens.
  • Fireclay: Heat Stop 50 incorporates fireclay, a heat-resistant clay that can endure temperatures up to 2,732°F. Fireclay enhances the mortar’s thermal stability and contributes to its refractory properties, making it ideal for bonding firebricks and clay flue liners in high-heat environments like masonry ovens and fireplaces.
  • Additional Additives: The product contains proprietary additives to improve acid resistance, workability, and thermal shock resistance. These are not detailed in public specifications but are described as carefully selected to ensure performance under extreme heat and to prevent cracking or expansion during thermal cycling.

Frequently Asked Questions

Once Heat Stop has been installed, how long do I need to wait before applying heat? 

It's best to wait 24-48 hou after the masonry is installed in a chimney or fireplace for a firebrick or clay flue lining before applying heat.

Can Heat Stop be mixed with standard concrete and still provide refractory properties?

Heat Stop is not meant to be mixed with any other products. The application would lose any refractory capabilites if Heat Stop is mixed with other non-refractory products.

What is the best Heat Stop solution for joints in clay flue lining and firebrick?

The Heat Stop ii and Heat Stop 50 products are the best refractory mortar products for installing clay flue lining and firebrick because they are completely non-water soluble in service after the initial set. They have an indefinite shelf life, and excellent drying characteristics no matter the humidity. These products are specified by NFPA-211 (National Fire Protection Association), in addition to meeting all local, regional and national building codes.

What ASTM specs and building codes are in place for fireplace and chimney construction?

Building codes require refractory products that meet ASTM C-199 (medium duty) for fireplace and chimney construction. All Heat Stop products (including products Insul Stick, Insul Cast and Heat Cast 40) meet or exceed this ASTM C-199 (medium duty) requirement. Firebrick must meet the ASTM C-27 requirement, and clay flue lining must meet the ASTM C-315 and ASTM C-1283 requirements. ASTM C-105 is a discontinued specification for fireclay and should NOT be used in fireplace and chimney construction. Fireclay mixes with regular mortar do not meet current building codes.

Heat Stop 50 meets and exceeed ASTM C-199, ASTM C-1283, and ASTM E-136 standards.

What is the ideal thickness for joints when using Heat Stop refractory mortar?

It is recommended to apply a joint between 1/16" and 1/8" thick, with a maximum thickness of 1/2" for all joints. It takes approximately 50 lbs. of product to lay 100 firebricks.

Which applications are commonly used for this refractory cement?

Heat Stop is used for a variety of projects. Here's a list of some of our clients common applications:

  • Fireplace chimneys: Bonding firebricks in fireboxes, setting clay flue liners, and parging smoke chambers. NFPA-211 mandates medium-duty refractory mortar for these applications.
  • Kilns and Furnaces: Lining and joining refractory bricks in industrial furnaces (e.g., steel, glass, petrochemical, and crematoriums) or artisanal kilns (e.g., pottery, pizza ovens).
  • Fire Pits and Ovens: Setting firebricks or coating surfaces in outdoor fire pits, wood-fired ovens, or forges.
  • Protective Coatings: Applied thinly (via smearing or spraying) to protect furnace linings from thermal shock or corrosive gases.
  • Specialized Industrial Uses: Bonding high-alumina, magnesia, or silica bricks in blast furnaces, coke ovens, or glass furnaces, matched to the brick type.

Applications and Tips:

Preparation:

  • Clean the Surface: Remove loose debris, dust, or old mortar from firebricks or surfaces. Ensure the area is dry unless specified (some bricks may need soaking).
  • Select Tools: Use a trowel, grout bag, or spray equipment for application. A mixer is recommended for hydraulic-setting mortar to ensure consistency.
  • Check Conditions: Avoid applying in extreme heat (over 100* F) unless using chilled water to extend working time. Hydraulic-setting mortar is sensitive to temperature and sets quickly.

Mixing:

  • The recommended ratio of water to dry mix for Heat Stop 50 refractory mortar is 3/4 to 1 quart of clean, cold water per 10 lbs. of dry mix. Roughly 1-1.25 gallon of water per 50 lb. bag.  
  • Mix to a smooth, lump-free consistency, similar to peanut butter, within 60 minutes of use to avoid premature setting.
  • Add water gradually; too much water weakens the bond. In hot weather, keep water nearby to maintain workability. Do not use warm water, as it accelerates setting.
  • Color with masonry mortar color if desired. Follow color manufacturer’s instructions as if using a regular masonry mortar
  • Only mix what you can use within 30-60 minutes, as the mortar will begin to set.

Joint Application

Apply thin layers (1/16”–1/4”) between firebricks using a trowel or grout bag. The maximum recommended thickness for Heat stop 50 is 1/2" thick. Strike or smooth joints for a clean finish, like standard masonry.

TIP: Pre-soak bricks if recommended to improve adhesion, though this may not affect bond strength significantly.

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Refractory Cement: What it Is, Plus 5 Things You NEED to Know

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Jan 02, 2023
by
Jake Goodwin
Refractory Cement is a heat-resistant material designed to line fireboxes and withstand very hot environments (2,000-3,000*F) such as firebox linings, forges, kilns, ovens, incinerators, crematoriums, and other high temperature equipment. Refractory cement is commonly combined with other products like firebrick

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