BGM PRO Touring Evo Rotary-Valve Crankshaft for Vespa PX125, PX150 – 60 mm long stroke, 105 mm connecting rod, and advanced joining technology at the crankpin.
The BGM PRO Touring Evo Crankshaft (BGM031121G ) is designed for high-performance, durable Vespa PX125/PX150 rotary valve engines. It combines a 60 mm stroke with a 105 mm connecting rod, forged crankshaft journals, high-quality connecting rod bearings, and the latest Touring Evo joining technology at the crankpin.
Touring Evo represents the consistent further development of the well-known BGM PRO Touring series. Particular emphasis is placed on the connection between the crankpins and crank arms: In addition to a precisely defined press fit, an additional chemical lock is applied using high-strength anaerobic Loctite bonding adhesive. This increases the resistance to twisting of the crankshaft assembly under high loads.
BGM PRO Touring Evo 60 mm long-stroke 105 mm connecting rod Rotary valve Spliced forged connecting rod Chemically hardened crankshaft journal
The designation “Touring Evo” denotes the current stage of development within the BGM PRO Touring crankshaft series. Over the years, material selection, machining, press fit, and assembly processes have been consistently refined.
What is crucial here is not only the material quality of the crankshaft journals, but above all the connection at the crankpin. The mechanical press fit is additionally secured with a high-strength anaerobic Loctite bonding adhesive. This additional chemical lock complements the press fit and increases protection against crankshaft half-shaft twisting under high torques and rapid load changes.
The connecting rod in this Touring Evo version features the characteristic copper-plated surface. At the same time, the connecting rod is drop-forged according to BGM PRO specifications. These two features are not mutually exclusive: the copper plating refers to the surface treatment, while the forging refers to the manufacturing of the connecting rod’s base body.
With a connecting rod length of 105 mm, this version corresponds to the geometry intended for the PX125/PX150. Combined with a 60 mm stroke, this results in a crankshaft assembly tailored to this engine type.
With a 60-mm stroke, the Touring Evo offers 3 mm of additional total stroke compared to the stock 57-mm version. With the same bore, this increases the displacement. At the same time, the long stroke alters the geometric position of the piston at TDC and BDC.
Depending on the cylinder used, the additional stroke is accommodated by appropriate base and/or head spacers or gaskets. This allows the cylinder position to be precisely determined and provides additional flexibility when tuning the compression edge, intake, and exhaust valve timing.
Compared to a stock crankshaft, the BGM PRO Touring Evo features an intake layout that is significantly more tunable. On a typical PX engine case, the rotary valve closes at approximately 65° after TDC with this crankshaft family. The actual value depends on the specific engine case and its intake port.
If the intake port on the intake side is machined appropriately, approximately 110–115° before TDC has proven to be a practical starting point for many street and touring setups. This results in an intake duration that is easy to tune without unnecessarily setting the engine to extremely long valve timing.
The angles specified are guidelines. Vespa engine cases differ in their intake ports, and existing machining modifications also alter the actual valve timing. For a precise engine build, the intake start and intake end should therefore always be measured on the installed engine.
The lower connecting rod bearing is lubricated via two large lubrication slots and a total of four additional lateral pockets. The SSC racing bearing and the lateral thrust washers form a bearing assembly designed for high continuous loads.
The upper connecting rod bearing is supplied via two lubrication holes. An INA piston pin bearing is included in the scope of delivery.
The BGM PRO Touring Evo is designed for engines that are meant to perform beyond the test bench. Forged components, sophisticated bearing arrangements, and the chemically reinforced connecting rod journal joint create a robust foundation for powerful touring, street, and sport setups.
Rather than focusing on a rigid power limit, the Touring Evo centers on the field-proven design of the entire crankshaft assembly. Especially in high-performance engines, the flywheel mass, ignition, clutch, and RPM range should be sensibly coordinated with one another.
The oil seal seat on the BGM PRO shaft is wider than on many stock shafts. This allows for the use of a double-lip FKM oil seal measuring 24×35×7, such as the one used in the Gilera Runner.
| Manufacturer | BGM PRO |
|---|---|
| Series | Touring Evo |
| Item Number | BGM031121G |
| Engine Type | PX125/PX150 |
| Intake Principle | Rotary vane |
| Stroke | 60 mm (long stroke) |
| Connecting rod length | 105 mm |
| Piston pin | Ø15 mm |
| Crank arms | Drop-forged |
| Connecting rod | Drop-forged, copper-plated surface |
| Lower connecting rod bearing | SSC racing bearing with optimized lubrication |
| Upper connecting rod bearing | INA piston pin bearing included |
| Connecting rod journal | Precision press fit with additional chemical Loctite locking agent |
| Typical intake valve closure | Approx. 65° after TDC, depending on the engine block |
| Practical value for intake start | Approx. 110–115° before TDC as a possible starting point |
| Compatible | Vespa PX125, PX150 |
The BGM PRO Touring Evo BGM031121G combines proven PX geometry with consistently refined manufacturing. Forged crankshaft journals, the copper-plated forged connecting rod, the sophisticated bearing arrangement, and the additional chemical protection of the crankpin form a robust crankshaft assembly for high-performance Vespa engines in continuous operation.
The “Evo” designation clearly reflects the technical advancement: The focus is not on a cosmetic model update, but rather on the refined joining technology and high resistance to twisting.