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In a piston engine, the bore (or cylinder bore) is the diameter of each cylinder. ... was gradually increased in size by bore and stroke to 326" by 1959, then ...
Based from 1.5 L Dragon engine but with smaller piston and without balancer shaft. [2] Displacement: 1194 cc; Bore x stroke: 75.0 mm x 90.0 mm [citation needed] Compression ratio: 11.2:1; Maximum power: 96 PS (71 kW; 95 hp) PS at 6500 rpm; Maximum torque: 119 N⋅m (88 lb⋅ft) at 4250 rpm; Applications: 2017–2021 Ford Figo/Aspire/Freestyle
A 307 cu in (5.0 L) version was produced from 1968 through 1973. Engine bore and stroke was 3.875 in × 3.25 in (98.4 mm × 82.6 mm). All 307s had large 2.45-inch (62.2 mm) journals to accept the 327's crankshaft. Pistons used with the 307 share the same pin height as the 327 but retain the 283's bore size.
Engine displacement was a factor of the bore: the 250 cu in (4.1 L) has a 3 + 1 ⁄ 2-inch (88.9 mm) bore, 287 cu in (4.7 L) 3 + 3 ⁄ 4 inches (95.3 mm), and the 327 cu in (5.4 L) a 4-inch (101.6 mm) bore. A number indicating the bore size is cast on the top of the engine block's flywheel housing immediately behind the right bank cylinder head.
The 400 cu in (6.6 L) B engine was introduced in 1972 to replace the venerable 383, and were power-rated via the net (installed) method. Chrysler increased the bore size of the 383 to create the 400. Its bore of 4.342-inch (110.3 mm) was the largest used in any production Chrysler V8 at the date of its introduction.
This OHV (overhead valve) engine was produced through 1953. With a cylinder bore of 3.5625 inches (90.49 mm), this is the smallest low-deck engine. All four low-deck engines have a stroke of 3.8125 inches (96.84 mm) and used 7 inch long connecting rods.
The bore diameter was reduced to 74mm (from 81mm on the full-size Kent), and was standard across both the 957 and 1117 versions; the extra capacity was achieved by varying the stroke. In addition to these changes, the Valencia featured a new transmission flange to suit the BC4/5 transaxle and the cylinder head was redesigned using flat-top ...
Like the V-6 rod bolts, those of the 4-cylinder engine are torqued to the plastic region of the bolt material in order to ensure a solid union between the bearing cap and the connecting rod. The engine block incorporates the Honda-designed second-order balance system that cancels the inertial forces common to large-displacement 4-cylinder engines.