HVAC & Refrigeration Industry

Mechanical Seals for the HVAC & Refrigeration Industry

HVAC and refrigeration equipment spans two very different sealing problems under one industry heading. On one side, chilled and condenser water circulation pumps run continuous, relatively conventional duty across commercial buildings and district cooling plants. On the other, industrial refrigeration — ammonia (NH3) and CO2 systems used in cold storage, food processing, and process cooling — involves refrigerants that are chemically aggressive to standard seal elastomers and, in ammonia’s case, present a genuine safety hazard if a seal leaks. A single “HVAC duty” seal specification doesn’t serve both ends of that range well.

At Leak-Pack Engineering, we design and manufacture mechanical seals for HVAC and refrigeration equipment — chilled and condenser water pumps, ammonia and CO2 refrigeration system pumps and open-drive compressors, glycol circulation systems, and cooling tower pumps — engineered around the specific refrigerant, temperature, and duty cycle of each application. Our engineering team works from your system’s actual refrigerant and operating parameters, consistent with ASHRAE refrigeration guidance, to recommend the right seal design and materials.

Why Refrigerant Chemistry and Low Temperature Both Drive Seal Selection

Why Refrigerant Chemistry and Low Temperature Both Drive Seal Selection

In refrigeration service specifically, seal selection depends heavily on what refrigerant the seal will actually contact. Ammonia is highly effective as a refrigerant but attacks many standard elastomers and certain non-ferrous metals, meaning a seal specified without ammonia compatibility in mind will degrade quickly — and because ammonia is toxic at relatively low concentrations, a seal leak on an NH3 system is a safety incident, not just a maintenance one. CO2 systems operate at much higher pressures than conventional refrigerants, particularly in transcritical operation, which shifts the seal specification toward pressure capability as much as chemical compatibility.

Low operating temperature adds a second dimension that’s easy to underweight. Standard elastomers can stiffen, lose sealing force, or crack at the temperatures common in cold storage and low-temperature process cooling, well before their rated chemical compatibility would otherwise be a concern. A seal validated for a refrigerant at room temperature isn’t automatically validated for the same refrigerant at -30°C, and treating the two as interchangeable is a common source of underperforming cold-chain seals.

The refrigerant landscape itself is also shifting under regulatory pressure. The Kigali Amendment to the Montreal Protocol is driving a global phase-down of high-GWP HFC refrigerants in favor of alternatives including ammonia, CO2, and newer low-GWP synthetic refrigerants — which means seal material compatibility that was a settled question for a given system a decade ago may need revisiting as facilities transition refrigerants. We build that forward-looking compatibility check into every refrigeration seal specification rather than assuming today’s refrigerant will be tomorrow’s.

Equipment We Seal Across HVAC & Refrigeration Operations

Equipment We Seal Across HVAC & Refrigeration Operations

HVAC and refrigeration facilities run equipment from commercial building services through industrial cold chain and process cooling, each with a distinct refrigerant and temperature profile. We supply seals across this full range:

  • Chilled & Condenser Water Circulation Pumps: Commercial building and district cooling plant pumps run continuous duty on relatively conventional water service. Our Cartridge Mechanical Seals provide consistent, repeatable installation across a facility’s chilled and condenser water pump fleet.
  • Ammonia (NH3) Refrigeration Systems: Industrial ammonia refrigeration — common in cold storage, dairy, and food processing — demands seals with ammonia-compatible, typically elastomer-free materials. Our Metal Bellow Mechanical Seals remove the dynamic elastomer that standard designs depend on, addressing ammonia’s known effect on conventional secondary seals directly.
  • CO2 Transcritical Refrigeration Systems: CO2 systems operate at significantly higher pressures than conventional refrigerants, particularly above the critical point. We specify high-pressure-rated seal arrangements, often paired with Seal Support Systems for barrier fluid management on these systems.
  • Glycol & Cold Storage Circulation Systems: Secondary glycol loops serving cold storage and process cooling run at sustained low temperature, where standard elastomers can stiffen and lose sealing force. We fit Standard / Component Seals with low-temperature-rated secondary seals for this duty.
    • Cooling tower and condenser water pumps — seals accounting for scaling and biological growth common in open recirculating water systems
    • Open-drive ammonia compressor shaft seals — seals for reciprocating and screw compressors in industrial ammonia plants
    • Process chiller pumps — seals for dedicated process cooling loops in manufacturing facilities
Sealing Challenges Specific to HVAC & Refrigeration Operations

Sealing Challenges Specific to HVAC & Refrigeration Operations

Refrigerant Chemical Compatibility

  • Ammonia’s known effect on standard nitrile and EPDM elastomers over sustained exposure
  • CO2 system pressures exceeding the practical rating of many conventional seal designs
  • Refrigerant transitions, driven by regulatory phase-down, that can outdate a previously valid material specification

Low Temperature Performance

  • Elastomer stiffening and loss of sealing force at sustained sub-zero operating temperatures
  • Thermal cycling between ambient and process temperature during system startup and defrost cycles
  • Ice formation risk at the seal chamber in poorly designed low-temperature installations

Safety & Reliability

  • Toxicity risk from ammonia leakage, making seal reliability a safety issue rather than a purely maintenance one
  • Continuous operation requirements in cold storage facilities where a temperature excursion risks product loss
  • Facility uptime pressure in food processing and pharmaceutical cold chain applications with strict temperature compliance

As with other demanding industrial applications, these rarely present in isolation — an ammonia compressor seal typically has to resist the specific refrigerant chemistry, perform at low temperature, and do so with a much lower tolerance for leakage than a comparable water-service seal. We size the specification to all three together.

Seal Types We Supply for HVAC & Refrigeration Service

Seal Types We Supply for HVAC & Refrigeration Service

  • Metal Bellow Mechanical Seals: Elastomer-free construction addressing ammonia’s known effect on standard secondary seals, for industrial NH3 refrigeration systems.
  • Cartridge Mechanical Seals: Pre-assembled and pre-set for consistent, repeatable installation across a facility’s chilled and condenser water pump fleet.
  • Standard / Component Seals: For glycol circulation and general HVAC duty where a full cartridge design isn’t warranted, fitted with low-temperature-rated secondary seals as needed.
  • Multi Spring Mechanical Seals: Resist fouling in cooling tower and condenser water systems where scaling and biological growth are common.
  • Seal Support Systems: Barrier fluid systems for CO2 transcritical applications and other high-pressure or high-hazard refrigeration duty where any leakage risk needs an additional layer of containment.
  • Split Mechanical Seals: For large district cooling or industrial chilled water pumps where full shaft removal for seal replacement isn’t practical.
Common Causes of Seal Failure in HVAC & Refrigeration Systems — and How We Design Around Them

Common Causes of Seal Failure in HVAC & Refrigeration Systems — and How We Design Around Them

  • Elastomer degradation from ammonia exposure — addressed with elastomer-free metal bellow designs rather than standard O-ring secondary seals
  • Elastomer stiffening at low temperature — addressed by specifying secondary seal materials rated for the system’s actual minimum operating temperature, not just its chemical compatibility
  • Seal failure following a refrigerant changeover — addressed by revalidating material compatibility whenever a system transitions refrigerants, rather than assuming the existing seal is still correctly specified
  • Fouling in open recirculating cooling tower water — addressed with multi-spring designs that resist scaling and biological fouling
  • Seal chamber icing on low-temperature systems — addressed through support system and installation design that accounts for the system’s actual minimum temperature
Our Engineering & Support Process

Our Engineering & Support Process

  • Refrigerant and operating condition review — refrigerant type, pressure, minimum and maximum operating temperature
  • Seal arrangement recommendation based on hazard level and leakage tolerance
  • Material selection matched to both refrigerant chemistry and low-temperature performance
  • Drawing approval before manufacturing begins — including fully custom-engineered designs for non-standard or legacy refrigeration equipment
  • In-house manufacturing and quality testing with material traceability documentation
  • Installation guidance and, where required, on-site commissioning support
Why HVAC & Refrigeration Operators Choose Leak-Pack

Why HVAC & Refrigeration Operators Choose Leak-Pack

  • Seal specifications built for both refrigerant chemistry and low-temperature performance, not one addressed at the expense of the other
  • Elastomer-free options for ammonia systems where standard secondary seals are a known failure point
  • Support system options for CO2 and other high-pressure or high-hazard refrigeration duty
  • Material specifications revalidated against refrigerant transitions, not assumed to carry over
  • Fast turnaround for replacement seals to limit cold storage and process cooling downtime
  • Direct engineering support — not just a catalogue sale

Material Selection Guide

Below is a general guide to the materials we typically recommend by HVAC and refrigeration application. Final material selection is always confirmed against your specific refrigerant, operating pressure, and minimum operating temperature.

ApplicationSeal Face CombinationSecondary Seal / ElastomerWetted Metallurgy
Chilled & condenser water pumpsSilicon Carbide vs. CarbonEPDM316 Stainless Steel
Ammonia (NH3) refrigeration compressorsSilicon Carbide vs. Silicon CarbideFFKM / PTFE (elastomer-free)316 SS / Duplex
CO2 transcritical systems (high pressure)Silicon Carbide vs. Silicon CarbideFFKM (Kalrez-type)316 SS / Duplex
Glycol / cold storage circulationSilicon Carbide vs. CarbonEPDM (low-temp grade)316 Stainless Steel
Cooling tower & condenser water (scaling)Tungsten Carbide vs. Silicon CarbideEPDM / FKM316 SS / Duplex

Frequently Asked Questions

Yes. We specify elastomer-free metal bellow designs for ammonia refrigeration systems, avoiding the standard O-ring secondary seals that ammonia is known to degrade over sustained exposure.

Yes. We specify seal arrangements rated for the higher pressures typical of CO2 transcritical operation, often paired with seal support systems for additional containment.

Yes. We select secondary seal materials specifically rated for your system’s actual minimum operating temperature, since standard elastomers can stiffen and lose sealing force at cold storage and process cooling temperatures well within their nominal chemical compatibility range.

In many cases, yes. Refrigerant compatibility is specific to the chemistry involved, and a seal validated for one refrigerant isn’t automatically valid for another — we recommend a compatibility review whenever a system transitions refrigerants, including moves driven by the ongoing HFC phase-down.

Yes. Our multi-spring seal designs are specified to resist the scaling and biological fouling common in open recirculating condenser water systems.

Yes. Our cartridge and metal bellow seal designs are engineered for retrofit onto most existing HVAC and refrigeration equipment, including as upgrades from seals underperforming under actual refrigerant or temperature conditions.

Lead times depend on seal size, material, and arrangement complexity. Given the product loss risk from a temperature excursion, we prioritize fast turnaround on cold storage and refrigeration replacement seals — share your seal drawing or system details with our team for a firm timeline.

Talk to Our Sealing Engineers

Every HVAC or refrigeration system runs a different combination of refrigerant, pressure, and operating temperature, which is why we don’t work off a fixed catalogue selection for this industry — every seal we quote starts with your actual system parameters, including any refrigerant transition your facility may be planning. We’re happy to work alongside your facilities and process engineering teams to review seal specifications across an entire pump and compressor fleet, not just a single problem application.

Send us your pump or compressor specifications — refrigerant type, operating pressure, and minimum operating temperature — and our engineering team will recommend the right seal solution for your application. Explore our full range of mechanical seals by industry or send an enquiry directly.