ZRP GESCHMIEDETE STAHL-PLEUEL MIT H-SCHAFT SUZUKI SWIFT 1.3L M16A
ZRP Geschmiedete Stahl-Pleuel mit H-Schaft
und ARP Schrauben Suzuki Swift 1.3L M16A
Shape
H-Beam
Length
135.16mm
Pin Diam.
20.00mm
Housing Bore
45.00mm
B.E Width
23.84mm
Weight Gr.
412
Set of
4
Bolt Size
5/16"
Fastener Grade
ARP2000
Con-Rod Series
Standard
Bolts Upgrade
Optional ARP 625+ cap fasteners available as an upgrade
Foot Note
–
Weight
412
Suzuki 1.6L Liana / Swift M16A H-Beam Connecting Rods are manufactured from 4340 high tensile steel and are designed for high performance and extreme durability. The bushings are made from Aluminum – silicon/ bronze Aluminum – silicon/ bronze material and have radial groove acting as an oil reservoir. These rods have “Ribbed pin end” that minimizes pin end distortion under heavy inertial loads while saving excess weight. They are shot peened to relieve stress from the material and multi-stage heat treated to increase rigidity. The tight tolerances in the production process, ensure a perfect fitment while optimizing the oil clearances. Bend and twist is tightly controlled.
Each rod includes ARP 2000 cap fasteners that are rated at 220,000psi, optional ARP Custom Age 625+ material 280.00psi available as an upgrade and the whole kit is supplied with ARP moly and full fitting instructions.
Additional machining processes
Dowel sleeves for perfect fit and accurate re-assembling
Lipped Cap Relief for improved big-end integrity at extreme application
Grooves in Thrust Face for weight reduction
Technical Features of ZRP Connecting Rods
Two-Piece forging for great strength
Aluminum – silicon/ bronze bushing with radial groove
Shot Peening for improved fatigue life
Magnaflux Inspection guarantees that the consistency of the forged material meets our high-quality standard
Double ribbed caps for added support
Multi Stage Heat Treatment for maximum strength, dimensional stability, and fatigue life.
CNC machining for superior tolerances, precise as much as 0.0002″
Center to center is maintained under .001″ tolerance
Finite Element Analysis (FEA) Computer generated stress analysis of con rods
Optimal balancing for weight matched sets of ± 1gram