Ultra high density, cementitious fireproofing
MONOKOTE®Z-156 ultra high density cementitious fireproofing has been developed by GCP Applied Technologies to meet specialty, commercial and industrial fireproofing requirements.
MONOKOTE®Z-156 is a Portland cement-based, factory-mixed material requiring only the addition of water on the job site for application. It is spray applied directly to structural steel (beams and columns), providing up to 4 hours of fire resistance. Its physical characteristics are excellent for areas exposed to environmental or climatic conditions. MONOKOTE®Z-156 may be used in areas where superior durability is required such as parking garages. This product is ideal for use in clean room environments where issues such as particle emissions and off gassing are critical to the interior environment within the building.
Features & Benefits
MONOKOTE®Z-156 offers the following advantages to architects, engineers, and applicators:
- Factory pre-mixed - Ready to use. No job site proportioning required. Simply add water in a standard paddle-type plaster mixer and apply with conventional plastering equipment.
- Non-toxic - The factory-mixed blend of common Portland cement and other inert materials requires only the addition of water for mixing and application.
- Attractive finishes - MONOKOTE®Z-156 may be sprayed or hand troweled after spraying to achieve a lightly textured appearance.
- Equipment versatility - MONOKOTE®Z-156 can be mixed in standard plaster mixers. After mixing, MONOKOTE®Z-156 may be spray-applied with commonly available pumping and spraying equipment.
- Moisture resistant - The Portland cement base affords excellent fire protection characteristics in areas subjected to high humidity.
- Durable - Hardness and maximum durability help resist accidental physical damage even in the toughest exposures.
- Weatherable - Able to withstand freeze/thaw, wind, rain and other climatic conditions.
MONOKOTE®Z-156 may be used in parking garages, exterior areas, mechanical rooms and other areas where a superior durable product is required.
MONOKOTE®Z-156 should be mixed by machine in a conventional, plaster-type mixer or a continuous mixer specifically modified for cementitious fireproofing. The mixer should be kept clean and free of all previously mixed material. Adjust the mixer speed in a conventional mixer to the lowest speed which gives adequate blending of the material and a mixer density of 65 to 70 pcf (1040 to 1120 kg/m3) of material.
Using a suitable metering device and a conventional mixer, add approximately 3 gallons of water per bag to the mixer as the blades turn. Mixing should continue until the mix is lump-free, with a creamy texture. All material is to be thoroughly wet. Over mixing MONOKOTE®Z-156 will reduce pumping rate and will negatively affect in-place density and mechanical properties.
- MONOKOTE®Z-156 material should not be used if it contains partially set, frozen or caked material.
- MONOKOTE®Z-156 should have a minimum average dry, in-place density of 50 lbs/ft3 (800 kg/m3).
- MONOKOTE®Z-156 is formulated to be mixed with water at the job site.
- MONOKOTE®Z-156 is applied directly to the steel, at various rates of application which will be job dependent, using standard plastering type equipment or continuous mixer/pump units. A spray gun, with a properly sized orifice and spray shield and air pressure at the nozzle of approximately 20 psi (0.138 MPa), will provide the correct hangability, density and appearance.
Note: If freshly sprayed MONOKOTE® Z-156 does not adhere properly, it is most likely due to a too wet mix, poor thickness control, or an improperly cleaned substrate.
Temperature & Ventilation
- The substrate temperature shall be a minimum of 40°F (4.5°C) for at least 1-hour prior to the application of the MONOKOTE®. Additionally, the air and substrate temperature during application and for a minimum or 72 hours after application shall be no less than 40°F (4.5°C).
- Provisions shall be made for ventilation to properly dry the fireproofing after application. In enclosed areas, lacking natural ventilation, air circulation and ventilation must be provided to achieve a minimum total fresh air exchange rate of 4 times per hour until the material is substantially dry.
Delivery & Storage
All material to be used for fireproofing should be delivered in original unopened packages bearing the name of the manufacturer, the brand and proper Underwriters Laboratories Inc. labels for fire hazard and fire resistance classifications.
The material should be kept dry until ready for use. Keep packages of material off of the ground, under cover and away from sweating walls and other damp surfaces. All bags that have been exposed to water before use should be discarded. Stock of material is to be rotated and used before its expiration date.
Steel & Concrete Surfaces
Prior to the application of MONOKOTE®Z-156, an inspection should be made to determine that all steel surfaces are acceptable to receive fireproofing. The steel to be fireproofed should be free of oil, grease, excess rolling compounds or lubricants, loose mill scale, excess rust, noncompatible primer, lock down agent or any other substance that will impair proper adhesion. Where necessary, the cleaning of steel surfaces to receive fireproofing will be the responsibility of the general contractor.
Prior to application of MONOKOTE®Z-156, a bonding agent, approved by the fireproofing manufacturer, should be applied to all concrete substrates to receive MONOKOTE®Z-156.
The project architect will determine if the painted/primed steel to receive fireproofing has been tested in accordance with ASTM E119, to provide the required fire resistance rating.
The architect will select an independent testing laboratory (for which the owner will pay) to sample and verify the thickness and density of the fireproofing in accordance with the the applicable building code. The architect will select an independent testing laboratory (for which the owner will pay) to randomly sample and verify the bond strength of the fireproofing.
Note: No recognized field bond strength test procedure exists for sprayed fireproofing materials with bond strengths greater than 1,000 psf (4,882 kg/m2) such as MONOKOTE®Z-156. Where bond strength specifications exceed 1,000 psf (4,882 kg/m2) it is recommended that independent laboratory test data based upon a modified version of ASTM E736 be submitted to verify specification compliance. Results of the above tests will be made available to all parties at the completion of pre-designated areas which shall have been determined at a pre-job conference.
MONOKOTE®Z-156 is slippery when wet. Signs reading “SLIPPERY WHEN WET” should be posted in all areas in contact with wet fireproofing material. Anti-slip surfaces should be used on all working surfaces.
SDS (Safety Data Sheets) for MONOKOTE®Z-156 are available on our web site or call toll free at 866-333-3SBM.
|Physical Properties||Recommended Specification||Laboratory Tested* Values||Test Method **|
|Dry density, minimum average||Min. 50 pcf (800 kg/m3)||See note below***||ASTM E605|
|Bond strength||Min. 10,000 psf (478 kN/m2)||20,680 psf (990 kPa)||ASTM E736|
|Compression, 10% deformation||850 psi (5.86 MPa)||874 psi (6.03 MPa)||ASTM E761|
|Air erosion||Max 0.000 g/ft2 (0.00 g/m2)||0.000 g/ft2 (0.00 g/m2)||ASTM E859|
|High velocity air erosion||No continued erosion after 4 hours||No continued erosion after 4 hours||ASTM E859|
|Bond impact||No cracking, spalling or delamination||No cracking, spalling or delamination||ASTM E760|
|Deflection||No cracking, spalling or delamination||No cracking, spalling or delamination||ASTM E759|
|Resistance to mold growth||No growth after 28 days||No growth after 28 days||ASTM G21|
|Surface burning characteristics||Flame spread = 0 Smoke developed = 0||Flame spread = 0 Smoke developed = 0||ASTM E84|
|Combustibility||Less than 5 MJ/m2 total,
20 kw/m2 peak heat release
|Less than 5 MJ/m2 total,
20 kw/m2 peak heat release
* Independent laboratory tested value. Report available upon request.
** ASTM International test methods modified for Bond Strength and Compressive Strength, where required, for high density, high performance products.
*** All in-place performance tests should be conducted at or below the minimum recommended specification density.
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Last Updated: 2022-11-25