Chiller Parts & Heat Exchanger Datasheets
Reference technical data for industrial chiller replacement parts, evaporators, condensers, stainless steel heat exchangers, pumps, controllers, refrigeration components, and project-specific parts selection.
Quick Answer: What Is a Chiller Parts Datasheet?
A chiller parts datasheet is a technical reference document used to confirm replacement part specifications before quotation or production. It may include heat exchanger capacity, material, connection size, water flow rate, refrigerant side condition, pump flow and pressure, electrical rating, controller model, component dimensions, and installation notes.
Replacement Accuracy Matters
Parts should be checked against the original chiller model, capacity, refrigerant, voltage, connection size, and installation space.
Heat Exchangers Need Careful Review
Evaporators, condensers, and plate heat exchangers must match cooling capacity, flow rate, pressure, fluid type, and material requirements.
Final Datasheet After Confirmation
Final parts datasheet should be prepared after reviewing photos, nameplates, drawings, and operating conditions.
Industrial Chiller Parts Datasheet Matrix
Use this matrix to identify which technical data should be reviewed before requesting chiller replacement parts or heat exchanger quotation support.
| Parts Category | Typical Components | Key Datasheet Items | Selection Notes |
|---|---|---|---|
| Heat Exchangers | Plate heat exchanger, shell-and-tube evaporator, stainless steel heat exchanger, condenser coil | Cooling capacity, material, flow rate, connection size, refrigerant, working pressure | Heat exchanger selection should match both water side and refrigerant side conditions. |
| Evaporators | Plate evaporator, shell-and-tube evaporator, stainless steel evaporator | Cooling capacity, chilled water flow, inlet/outlet temperature, refrigerant, pressure drop | Confirm freezing risk, fluid type, water quality, and installation space. |
| Condensers | Air cooled condenser coil, water cooled condenser, shell-and-tube condenser | Heat rejection capacity, refrigerant, ambient or cooling water condition, fan or water flow | Condenser capacity must match compressor and operating environment. |
| Pumps | Circulation pump, high-pressure pump, stainless steel pump | Flow rate, head pressure, power, voltage, material, connection size | Pump selection depends on pipe distance, pressure loss, height difference, and equipment resistance. |
| Tank & Water Circuit Parts | Water tank, stainless steel tank, valves, filters, flow switch, pressure gauge | Tank volume, material, connection size, flow range, pressure rating | Confirm fluid type, corrosion risk, and required temperature stability. |
| Refrigeration Components | Compressor, expansion valve, filter drier, sight glass, solenoid valve, pressure switch | Refrigerant, capacity, pressure rating, electrical specification, connection size | Refrigeration parts should be matched with system capacity and refrigerant type. |
| Electrical & Control Parts | Controller, temperature sensor, contactor, relay, protection switch, control panel parts | Voltage, signal type, control logic, sensor range, wiring requirement | Confirm controller model, wiring diagram, and electrical compatibility. |
| Custom Replacement Parts | OEM structure parts, special heat exchanger, custom pump assembly, special voltage parts | Original drawings, dimensions, material, operating condition, interface details | Photos, nameplates, and site information are required for accurate matching. |
Reference Datasheet Tables for Chiller Parts
These reference tables show the typical data fields APT reviews before preparing a project-specific parts or heat exchanger datasheet.
Evaporator Datasheet Reference
| Item | Reference Data | Project Review Notes |
|---|---|---|
| Evaporator Type | Plate heat exchanger / shell-and-tube evaporator / stainless steel evaporator | Match structure with original chiller and available installation space. |
| Cooling Capacity | Matched according to chiller capacity and operating temperature | Confirm actual heat load and operating temperature range. |
| Chilled Water Flow | Reviewed according to heat load and temperature difference | Flow rate affects pressure drop and heat transfer performance. |
| Water Side Material | Stainless steel, copper, or project-selected material | Material should match fluid, water quality, and corrosion risk. |
| Refrigerant | R22 / R407C / R410A / R134a / R32 / project-reviewed | Refrigerant side condition must match system design. |
| Connection Size | Confirmed according to piping and equipment interface | Photos and dimensions help avoid mismatch. |
| Selection Note | Fluid type, water quality, freezing risk, and pressure drop must be reviewed. | Final replacement should be confirmed by engineering review. |
Condenser Datasheet Reference
| Item | Reference Data | Project Review Notes |
|---|---|---|
| Condenser Type | Air cooled condenser coil / water cooled condenser / shell-and-tube condenser | Confirm whether the system uses ambient air or condenser water. |
| Heat Rejection Capacity | Matched according to compressor and chiller cooling capacity | Capacity must match compressor operation and duty cycle. |
| Cooling Medium | Ambient air or condenser water | Operating condition affects condenser margin. |
| Fan / Water Flow | Reviewed according to condenser design and operating condition | Airflow or water flow must be checked against actual system condition. |
| Material | Copper tube aluminum fin, stainless steel, copper-nickel, or project-selected | Material selection depends on site and fluid condition. |
| Installation | Airflow clearance or condenser water circuit required | Installation environment should be reviewed before replacement. |
| Selection Note | Ambient temperature or condenser water temperature must be confirmed. | Condenser selection affects compressor protection and system reliability. |
Stainless Steel Heat Exchanger Datasheet Reference
| Item | Reference Data | Project Review Notes |
|---|---|---|
| Heat Exchanger Type | Stainless steel plate heat exchanger or stainless steel shell-and-tube heat exchanger | Structure depends on capacity, fluid, and cleaning requirements. |
| Application | Food, chemical, electroplating, laboratory, clean process, corrosion-sensitive cooling | Process type affects material and service access. |
| Material | SUS304 / SUS316 / project-reviewed | Material compatibility should be confirmed before quotation. |
| Fluid | Water, glycol solution, process liquid, or project-reviewed fluid | Fluid information is required for safe selection. |
| Connection | Threaded, flanged, or custom connection | Connection direction and size should match existing piping. |
| Pressure Rating | Project-reviewed according to system condition | Water side and refrigerant side pressure should be reviewed. |
| Selection Note | Fluid compatibility and corrosion risk should be confirmed before selection. | Photos, drawings, and water quality information can improve accuracy. |
Pump Datasheet Reference
| Item | Reference Data | Project Review Notes |
|---|---|---|
| Pump Type | Standard circulation pump / high-pressure pump / stainless steel pump | Match pump type with process loop and material requirements. |
| Flow Rate | Matched according to process cooling flow requirement | Flow must satisfy equipment cooling and heat transfer needs. |
| Head Pressure | Reviewed according to piping distance, height difference, valves, filters, and equipment resistance | Actual loop resistance should be reviewed before selection. |
| Power | Selected according to flow and pressure requirement | Power rating should match duty and electrical condition. |
| Voltage | 220V / 380V / 460V / project-reviewed | Confirm site voltage, phase, and frequency. |
| Material | Cast iron, stainless steel, or project-selected | Material depends on fluid and corrosion risk. |
| Selection Note | Pump curve and actual system pressure loss should be checked. | Provide pipe distance and pressure loss if available. |
Controller & Electrical Parts Datasheet Reference
| Item | Reference Data | Project Review Notes |
|---|---|---|
| Controller | Temperature controller, PLC, or project-specific control system | Confirm controller model and operating logic. |
| Sensor | Temperature sensor, pressure sensor, flow switch, level switch | Sensor range and signal type should be matched. |
| Electrical Parts | Contactor, relay, overload protector, circuit breaker, control transformer | Electrical compatibility should follow voltage and wiring requirements. |
| Voltage | Matched according to site electrical system | Confirm voltage, phase, frequency, and local standard. |
| Signal | Alarm output, remote start/stop, Modbus, or project-reviewed signal | Interface requirements should be confirmed before replacement. |
| Selection Note | Original wiring diagram or controller model helps confirm replacement accuracy. | Photos of wiring and control panel can reduce mismatch risk. |
How to Identify Replacement Chiller Parts
Replacement accuracy improves when the original component, nameplate, photos, dimensions, and operating condition are reviewed together.
Check the Nameplate
Record the chiller model, serial number, cooling capacity, refrigerant, voltage, and manufacturing information.
Confirm the Part Type
Identify whether the required part is an evaporator, condenser, pump, controller, compressor, valve, sensor, or custom component.
Provide Photos
Clear photos of the part, nameplate, connection position, and installation space help avoid mismatch.
Measure Key Dimensions
Connection size, mounting distance, part length, width, height, and pipe direction should be checked.
Review Operating Conditions
Cooling capacity, water flow, temperature range, pressure, fluid type, and ambient condition affect part selection.
Confirm Electrical Compatibility
Voltage, phase, frequency, signal type, controller model, and wiring must match the original system.
Heat Exchanger Selection Notes for Industrial Chillers
Heat exchanger replacement should be reviewed by both process-side and refrigeration-side conditions before final quotation.
| Selection Factor | Why It Matters | Information Needed |
|---|---|---|
| Cooling Capacity | Determines whether the heat exchanger can match the chiller load. | Chiller capacity, heat load, inlet and outlet temperature |
| Fluid Type | Affects material selection, corrosion risk, and pressure drop. | Water, glycol, process liquid, concentration, water quality |
| Material | Must match corrosion, cleanliness, and process requirements. | SUS304, SUS316, copper, copper-nickel, or project requirement |
| Connection Size | Ensures correct installation with existing piping. | Pipe size, thread or flange type, inlet/outlet direction |
| Working Pressure | Prevents mismatch with system pressure condition. | Water side pressure, refrigerant side pressure, test pressure if available |
| Installation Space | Replacement parts must fit the existing chiller or equipment frame. | Photos, dimensions, layout, mounting position |
Typical Applications for Chiller Parts & Heat Exchangers
Replacement chiller parts and heat exchangers are usually reviewed according to the cooling application, water quality, process fluid, and operating duty.
Thermal Spray Cooling
Replacement pumps, heat exchangers, and cooling circuit parts may be required for thermal spray power supplies, spray guns, and auxiliary cooling systems.
Laser Cooling
Laser chillers often require accurate replacement of pumps, sensors, filters, flow switches, and clean water circuit parts.
Electroplating Cooling
Electroplating cooling may require corrosion-resistant heat exchangers and material-reviewed water circuit components.
Injection Molding Cooling
Injection molding chillers may require replacement pumps, condensers, evaporators, tanks, and control parts for stable mold cooling.
Chemical Process Cooling
Chemical process cooling may require stainless steel or corrosion-resistant heat exchangers according to fluid compatibility.
Laboratory Cooling
Laboratory chillers often require compact pumps, controllers, sensors, and small heat exchangers with stable temperature control.
Information Needed Before Requesting a Chiller Parts Datasheet
Send photos, nameplates, dimensions, and operating conditions to APT for project-reviewed chiller parts and heat exchanger datasheets.
- Original chiller model or nameplate photo
- Required part name or part category
- Photos of the old part
- Part dimensions and connection size
- Cooling capacity or chiller HP
- Refrigerant type
- Water flow rate and pressure requirement
- Fluid type and water quality
- Voltage / phase / frequency
- Controller model or wiring information
- Installation space and mounting method
- Working temperature range
- Working pressure if available
- Application equipment type
- Quantity required
- Urgency or replacement schedule
Related Technical Datasheet Pages
Review related datasheet resources for complete industrial chiller technical comparison and quotation preparation.
Industrial Chiller Technical Datasheets
Start from the main technical datasheet resource center.
Air Cooled Industrial Chiller Datasheets
Review air cooled chiller capacity, condenser, pump, and temperature data.
Water Cooled Industrial Chiller Datasheets
Review water cooled condenser, cooling tower, and process loop data.
Custom Industrial Chiller Datasheets
Review high ambient, explosion-proof, stainless steel, mobile, and special configuration data.
Industrial Chiller Spare Parts & Heat Exchangers Support
Review support direction for spare parts and heat exchanger replacement discussion.
Chiller Parts & Heat Exchanger Datasheet FAQ
What is included in a chiller parts datasheet?
A chiller parts datasheet may include part type, model, capacity, material, connection size, voltage, pressure rating, flow rate, refrigerant compatibility, dimensions, and installation notes.
What information is needed to identify a replacement chiller part?
APT usually needs the original chiller nameplate, part photos, dimensions, connection size, refrigerant type, voltage, operating condition, and installation space.
Can APT provide replacement evaporators for industrial chillers?
Yes. APT can review replacement evaporators such as plate evaporators, shell-and-tube evaporators, and stainless steel evaporators according to chiller capacity, fluid, refrigerant, and installation condition.
Can APT provide replacement condensers?
Yes. APT can review air cooled condenser coils, water cooled condensers, and shell-and-tube condensers according to heat rejection capacity, refrigerant, ambient temperature, and installation requirements.
Can stainless steel heat exchangers be supplied?
Yes. Stainless steel heat exchangers can be reviewed for food, chemical, electroplating, laboratory, clean process, or corrosion-sensitive cooling applications.
How should pump flow and pressure be confirmed?
Pump flow and pressure should be checked according to water flow requirement, pipe distance, height difference, valves, filters, and equipment pressure loss.
Can APT help if I only have photos of the old part?
Yes. Photos are useful, but final confirmation may also require dimensions, nameplate information, connection size, voltage, and operating conditions.
Can electrical and controller parts be replaced?
Yes. Controllers, sensors, contactors, relays, protection switches, and other electrical parts can be reviewed according to voltage, wiring, control logic, and original component model.
Are chiller parts universal?
Not always. Many chiller parts must match system capacity, refrigerant, water flow, pressure, voltage, connection size, and installation space.
Can APT prepare a project-specific parts datasheet?
Yes. APT can prepare a project-specific chiller parts or heat exchanger datasheet after reviewing the original equipment information and replacement requirements.
Request a Project-Reviewed Chiller Parts Datasheet
Send the original chiller nameplate, part photos, dimensions, refrigerant, voltage, water flow, pressure requirement, and operating condition so APT can review replacement chiller parts and heat exchanger datasheet direction.