| ISO Metric Coarse | Symmetrical triangular profile with a 60° included angle. | Pitch is specified in millimetres, such as M10 × 1.5. Coarse pitch is the commonly selected standard pitch for a given diameter. | General-purpose bolts, nuts, machine assemblies, automotive components and structural fastening. | Good availability, fast assembly, strong resistance to thread damage and better tolerance of contamination than fine threads. | Provides less fine adjustment and slightly less tensile stress area than a fine thread of the same nominal diameter. | Choose it for most general fastening applications unless vibration, adjustment accuracy or thin-wall engagement requires a finer pitch. |
| ISO Metric Fine | Symmetrical triangular profile with a 60° included angle. | Pitch is specified in millimetres, such as M10 × 1.25 or M10 × 1.0. | Thin-walled parts, precision adjustment, hydraulic or pneumatic fittings and applications requiring greater clamping control. | Greater thread engagement per unit length, larger tensile stress area for the same nominal diameter and finer adjustment. | More vulnerable to cross-threading, dirt and damage; requires more turns for assembly and may be less suitable for soft materials. | Use when wall thickness, adjustment resolution or preload control is important. Verify that the mating part uses the same pitch. |
| Unified Coarse (UNC) | Symmetrical triangular profile with a 60° included angle. | Pitch is expressed as threads per inch (TPI). Coarse series uses a larger pitch than the corresponding fine series. | General-purpose inch-based fastening in machinery, equipment and fabricated assemblies. | Rapid assembly, good resistance to handling damage and broad use in general mechanical fastening. | Must not be mixed with metric or fine-series threads; pitch identification by appearance alone can be unreliable. | Select only when the design is based on inch dimensions and the mating fastener, nut or tapped hole is also UNC. |
| Unified Fine (UNF) | Symmetrical triangular profile with a 60° included angle. | Pitch is expressed in TPI, with more threads per inch than the corresponding coarse series. | Precision fastening, thin sections, vibration-sensitive assemblies and applications requiring higher preload control. | Fine adjustment, greater tensile stress area for a given nominal diameter and improved resistance to loosening from vibration when properly preloaded. | More susceptible to damage and contamination; slower to assemble and less suitable for rough handling. | Choose it for inch-based designs where space, preload accuracy or vibration performance is more important than assembly speed. |
| Pipe Thread — Tapered | Profile angle depends on the standard; many common pipe-thread systems use a 55° or 60° flank profile. The thread diameter changes along the length. | Specified by nominal pipe size and pitch, often in TPI or threads per millimetre, depending on the standard. | Fluid and gas connections where the thread itself helps create a pressure-resistant joint. | The taper can produce interference between mating threads and can support sealing when the correct sealant and assembly method are used. | Not interchangeable across standards; excessive tightening can split fittings or distort components. Thread form alone may not provide a reliable seal. | Use only after confirming the governing pipe-thread standard, nominal size, taper, pressure rating and required sealing method. |
| Pipe Thread — Parallel | Constant thread diameter along the threaded length; flank angle depends on the selected standard. | Specified by nominal pipe size and pitch, commonly in TPI or threads per millimetre. | Connectors, fittings and ports where sealing is provided by an O-ring, gasket, bonded washer or other face seal. | Provides controlled positioning and can reduce the risk of wedging or splitting compared with tapered threads. | The threads alone generally do not provide a pressure seal; sealing components and accurate shoulder contact are required. | Select it when the design includes a dedicated seal and a controlled assembly position is needed. |
| Trapezoidal Power Screw | Symmetrical trapezoidal profile; a common metric form has a 30° included angle. | Pitch is specified in millimetres. Lead equals pitch multiplied by the number of thread starts. | Linear actuators, machine slides, lifting mechanisms, vises and adjustable positioning systems. | High load capacity, robust flanks and easier manufacture than a square profile. | Lower efficiency than a square profile and may require lubrication. Back-driving depends on lead angle, friction and load. | Choose it for controlled linear motion and moderate-to-high loads where durability and manufacturability are priorities. |
| Square Power Screw | Square profile with load flanks approximately perpendicular to the screw axis. | Pitch and lead are specified in millimetres or inches; multi-start versions provide a higher lead. | High-efficiency power transmission, lifting devices and precision mechanical motion systems. | Very low radial force and high theoretical efficiency because the flank angle is close to 0°. | Difficult and costly to manufacture, less resistant to wear or damage at the thread edges and harder to inspect. | Use when efficiency is more important than manufacturing simplicity and the design can support accurate machining. |
| Buttress Thread | Asymmetrical profile with one nearly perpendicular load flank and one sloping flank. Angles vary by standard and application. | Pitch or TPI is specified according to the selected standard; lead follows the number of starts. | Jacks, presses, clamps, breech mechanisms and assemblies carrying high load primarily in one axial direction. | High axial load capacity in the preferred direction and reduced radial component compared with symmetrical power threads. | Performance is directional; reverse loading is less favorable and the profile is less interchangeable than common fastening threads. | Choose it when the dominant axial load direction is known and high one-way load capacity is required. |
| Round Thread | Rounded crests and roots with smooth transitions; exact geometry depends on the applicable standard. | Pitch or TPI is specified by the selected standard. | Connectors exposed to dirt, impact, repeated assembly or harsh service conditions. | Good resistance to fouling, impact damage and stress concentration at the root. | Lower precision and load efficiency than many sharper thread profiles; less suitable for fine adjustment. | Select it for rugged, frequently handled connections where contamination and impact are more important than precision. |
| Multi-Start Thread | May use a standard fastening or power-screw profile with two or more helices starting around the circumference. | Lead equals pitch × number of starts. For example, a 2-start thread with a 2 mm pitch has a 4 mm lead. | Quick-opening closures, high-speed linear travel, adjustment rings and motion systems requiring fewer turns. | Higher axial travel per revolution and faster engagement or disengagement. | Lower self-locking tendency, reduced thread depth for some designs and more complex manufacturing and inspection. | Use when rapid travel is required. Check back-driving, braking and locking requirements before selection. |