| ISO Metric Coarse | M10 × 1.5 | 60° | The letter “M” identifies a metric thread, while the number after the multiplication sign indicates the pitch in millimetres. Coarse pitch is the standard default for many general-purpose fasteners. | General machinery, automotive assemblies, structural equipment and maintenance fasteners. | Confirm nominal diameter, pitch, tolerance class, strength grade and required length. Metric threads are not interchangeable with inch threads even when their outside diameters appear similar. |
| ISO Metric Fine | M10 × 1.0 | 60° | A smaller pitch provides more threads per unit length. Fine threads can offer improved adjustment and a larger tensile stress area for the same nominal diameter. | Automotive components, precision equipment, thin-wall parts and applications requiring careful adjustment. | Fine and coarse versions of the same diameter have different pitches and must use matching nuts or tapped holes. Fine threads may be more sensitive to cross-threading and contamination. |
| Unified Coarse (UNC) | 1/4-20 UNC | 60° | The first number is the nominal diameter in inches and the second number is threads per inch (TPI). UNC is the coarse-pitch series in the Unified system. | General-purpose inch-based machinery, equipment and replacement fasteners. | Check the complete designation, including UNC, nominal diameter, TPI, length and fit class. A UNC fastener should not be paired with a UNF nut or tapped hole. |
| Unified Fine (UNF) | 1/4-28 UNF | 60° | UNF uses a finer pitch than UNC for the same nominal diameter. The smaller pitch allows finer axial adjustment and can improve resistance to loosening under some conditions. | Precision mechanisms, instruments, automotive parts and compact assemblies. | Verify TPI rather than relying on visual appearance. UNF and UNC threads with the same nominal diameter are not mating-compatible. |
| BSPP Parallel Pipe Thread | G 1/4 | 55° Whitworth form | BSPP, identified by “G”, has a parallel thread. The thread itself generally does not create the pressure seal; sealing is normally achieved with a gasket, bonded seal, O-ring or sealing washer. | Fluid fittings, instrumentation, pneumatic equipment and low- to medium-pressure piping systems. | “G 1/4” is a nominal pipe size, not a direct measurement of 1/4 inch outside diameter. Confirm thread standard, sealing method, pressure rating and port geometry. |
| BSPT Tapered Pipe Thread | R 1/4 | 55° Whitworth form | BSPT has a tapered thread. Engagement between the tapered male thread and a compatible female thread can create a pressure seal when the correct sealant and installation method are used. | Hydraulic and pneumatic connections, process equipment and regional pipe-fitting systems. | Do not assume BSPT is interchangeable with NPT. Check taper, thread angle, pitch, sealing practice and applicable regional requirements. |
| NPT Tapered Pipe Thread | 1/4-18 NPT | 60° | NPT is a U.S. tapered pipe thread. The tapered flanks create interference during engagement, while an approved thread sealant is commonly used to assist sealing and prevent leakage. | Industrial piping, compressed air, gas and fluid equipment designed for NPT connections. | NPT and BSPT differ in thread angle and pitch combinations. Confirm that the mating port, sealant, pressure rating and local code requirements all match. |
| ISO Metric Trapezoidal | Tr 20 × 4 | 30° included angle | The trapezoidal profile distributes load across broad flanks and is designed to transmit motion and power rather than simply clamp parts together. | Lead screws, machine tools, actuators, lifting mechanisms and linear positioning equipment. | Match the nominal diameter, pitch, hand, nut material, lubrication requirements and backlash specification. A trapezoidal lead screw is not equivalent to a standard metric fastening thread. |
| ACME Thread | 1/2-10 ACME | 29° included angle | The broad, symmetrical trapezoidal profile is intended to transmit motion and axial loads efficiently while being easier to manufacture than a square thread. | Power screws, vises, jacks, actuators and linear motion assemblies. | Confirm whether the specification is standard ACME, stub ACME or another related profile. Nut and screw profiles must be matched precisely. |
| Self-Tapping Thread | ST 4.2 × 16 | Depends on the applicable product standard | The screw forms or cuts a mating thread as it enters a pre-drilled hole or softer material, reducing or eliminating the need for a separately tapped hole. | Sheet metal, plastics, electrical enclosures, appliances and light-duty assemblies. | Specify pilot-hole diameter, material thickness, material hardness, head style, drive type, coating and pull-out requirements. Performance depends strongly on the base material. |
| Left-Hand Thread | M12 × 1.5 LH | Usually 60° for metric fastening threads | The thread tightens counterclockwise and loosens clockwise, opposite to a conventional right-hand thread. | Rotating components where normal rotation could loosen a right-hand fastener, including selected machinery and adjustment mechanisms. | The “LH” marking must be stated clearly on drawings, purchase orders and packaging. Mixing left-hand and right-hand mating parts can cause assembly failure. |
| Thread Fit and Tolerance | 6H / 6g | Not applicable | For common ISO metric systems, “6H” is frequently used for internal threads and “6g” for external threads. The tolerance class controls the permitted dimensional variation and allowance. | Precision fastening, interchangeable components and controlled-volume manufacturing. | A nominal thread designation alone may be incomplete. Include the standard, tolerance class, coating condition and inspection requirements when consistent interchangeability is important. |
| Thread Pitch | M8 × 1.25 | Not applicable | Pitch is the axial distance from one thread crest to the next. In inch systems, the equivalent measurement is commonly expressed as TPI; pitch in inches equals 1 divided by TPI. | All threaded fasteners, tapped holes, bolts, studs, inserts and lead screws. | Pitch is one of the most important compatibility checks. Measure with a thread pitch gauge or verify against the engineering drawing rather than estimating by eye. |
| Thread Direction | RH / LH | Not applicable | Right-hand threads tighten clockwise and are the normal default. Left-hand threads tighten counterclockwise and must be specifically identified. | Fasteners, rotating shafts, couplings, valves and adjustment mechanisms. | Unless the drawing or specification states “LH,” buyers should normally expect a right-hand thread. Direction must be confirmed for assemblies containing rotating parts. |