| Working Pressure | Normal pressure, maximum sustained pressure, and pressure spikes | Normal: 140 bar; maximum operating pressure: 210 bar; occasional surge: 250 bar | Choose fittings with a rated working pressure above the maximum system pressure, including expected surges. | Do not use burst pressure as the allowable operating pressure. Check ratings for the complete fitting assembly, not only individual parts. |
| Flow Rate | Required flow and allowable pressure drop | 20 L/min in a pressure line; target fitting pressure drop below 0.5 bar | Select an internal passage large enough to maintain the required flow without excessive restriction. | Compare the fitting bore, hose bore, valve ports, and tube inside diameter. Small passages can increase heat generation and energy loss. |
| Fluid Type | Hydraulic fluid composition, additives, and cleanliness requirements | Petroleum-based hydraulic oil; ISO VG 46 viscosity grade | Use sealing materials and fitting materials compatible with the fluid and its additives. | Compatibility can change with temperature, fluid age, contamination, and additive packages. Confirm seal compatibility before installation. |
| Operating Temperature | Minimum and maximum fluid and ambient temperatures | Fluid: -20 to 90 °C; ambient: -30 to 50 °C | Select seals and materials that retain elasticity and strength throughout the complete temperature range. | Pressure ratings may be reduced at elevated temperatures. Consider cold-start conditions, thermal cycling, and external heat sources. |
| Connection Type | Port standard, thread form, tube connection, or hose connection | Metric tube connection with a 24° cone; nominal tube outside diameter: 12 mm | Match the fitting connection precisely to the mating port and tube or hose specification. | Do not mix visually similar thread forms, such as metric and inch threads. Confirm thread pitch, diameter, sealing method, and gender. |
| Tube or Hose Size | Inside diameter, outside diameter, wall thickness, and bend requirements | Tube outside diameter: 12 mm; wall thickness: 1.5 mm | Use fittings designed for the specified tube dimensions and compatible with the selected tube material. | Incorrect tube dimensions can cause leakage, tube pullout, reduced pressure capability, or damage during assembly. |
| Material and Corrosion Exposure | Moisture, salt spray, chemicals, outdoor exposure, and galvanic contact | Outdoor equipment exposed to rain and intermittent road salt | Select corrosion-resistant fitting materials or protective finishes suitable for the environment. | Evaluate coating durability, chemical exposure, dissimilar-metal contact, and the need for periodic inspection or replacement. |
| Vibration and Movement | Machine vibration, pressure pulsation, thermal expansion, and relative movement | Mobile equipment with frequent start-stop cycles and pump pulsation | Use suitable hose assemblies, tube supports, adapters, and orientation practices to minimize side loading on fittings. | Fittings should not be used to compensate for excessive hose bending or unsupported tubing. Check for fatigue at high-cycle locations. |
| Installation Space | Available clearance, access for tightening, and required bend radius | Compact manifold area with limited wrench clearance | Consider elbows, swivel fittings, compact adapters, and correct orientation before final tightening. | Avoid forcing a hose or tube into alignment. Confirm that the fitting can be installed without over-torque or side loading. |
| Sealing Method | Metal-to-metal seal, O-ring seal, bonded seal, or tapered thread seal | High-pressure connection requiring repeatable leak control | Prefer a sealing method appropriate for the pressure, fluid, temperature, and maintenance requirements. | Inspect sealing surfaces and O-rings for damage. Tapered threads should not be relied on as the only solution where system cleanliness and leak control are critical. |
| Pressure Pulsation | Frequency and amplitude of pressure cycles | Frequent cycling between 80 and 180 bar | Select fittings rated for dynamic service and use an assembly configuration that reduces stress concentration. | Static pressure capability alone may not predict fatigue life. Review hose, tube, fitting, and support arrangement as one assembly. |
| Cleanliness Level | Required contamination control and particle sensitivity | Servo-valve circuit requiring fine filtration and strict assembly cleanliness | Use capped, clean components and fittings suitable for contamination-controlled hydraulic service. | Remove protective caps only immediately before assembly. Prevent thread sealant, metal chips, dust, and moisture from entering the circuit. |
| Applicable Standards | Dimensional, performance, and safety standards required by the application | System documentation specifies ISO 8434-style tube connection dimensions | Select fittings that conform to the specified dimensional and performance standard. | Confirm that the standard applies to the complete connection, including tube, nut, sleeve, port, and assembly procedure. |
| Maintenance and Service Life | Inspection interval, replacement frequency, accessibility, and spare-parts strategy | Annual inspection with planned hose replacement every five years | Choose readily inspectable connections and use common, documented fitting configurations where practical. | Record fitting type, size, material, seal specification, torque requirements, and installation date for future maintenance. |