Oversize Matching — Each connecting rod ships with verified bore dimensions so rebuild shops can match it to the exact crankshaft grind on a QSB6.7 block.
Technical Specifications
| Parameter |
Value |
| Part Number |
4943977 |
| Product Type |
Connecting Rod |
| Cross-Reference |
4943977 (reference only) |
| Machine Fitment |
QSB6.7 Engine |
| Material |
High-strength alloy steel |
| Surface Treatment |
Shot-peened finish |
| Condition |
New Aftermarket |
| Standard |
ISO 9001 |
| Warranty |
3–12 months against manufacturing defects |
| MOQ |
1 piece |
Application Suitability
| Engine System |
Related Components |
| Cylinder Block Assembly |
Piston, piston pin, pin circlips |
| Crankshaft Train |
Con rod bearing shells, main bearings, thrust washers |
| Lubrication Circuit |
Oil pump, oil filter, oil cooler gasket |
| Overhaul Kit Group |
Full gasket set, piston rings, connecting rod bolts |
Why One Connecting Rod Size Does Not Fit Every QSB6.7 Rebuild
A connecting rod engine rebuild fails the moment the crankshaft journal diameter is ignored. The rod itself may be dimensionally correct, but if the big-end bore has been resized during a previous overhaul and the bearing shells do not match the crankshaft grind, oil film collapse follows within hours of restart [NEED_CITE: crankshaft journal oversize classification in diesel engine overhaul practice].
In the Yangtze River Delta repair belt, teardown crews open QSB6.7 blocks and find crankshafts already ground to 0.25 mm or 0.50 mm undersize from an earlier rebuild. Ordering standard-grade shells with a new connecting rod in that scenario means the oil clearance will be too wide, the bearings will hammer, and the engine comes back apart before the warranty period ends. The rod, the bearings, and the crankshaft must all speak the same dimensional language before the block goes back together.

The Cylinder Block Motion Group and Its Neighbours
This connecting rod sits at the centre of a tightly coupled motion group inside the QSB6.7 block. The small end connects to the piston through a case-hardened pin retained by circlips, while the big end wraps around the crankshaft journal through a pair of precision bearing shells. Any wear or dimensional drift in the piston pin bore, the circlip groove, or the bearing crush height transmits load unevenly across the rod beam. When one rod in a connecting rod engine rebuild is replaced without verifying the adjacent components, the new rod absorbs disproportionate stress and becomes the next failure point [NEED_CITE: diesel engine connecting rod load distribution and fatigue].
Size Grades, Rebuild History, and Engine Serial Variants
Every crankshaft has a service history. A QSB6.7 that has been through one regrind will need undersize bearing shells at the big end, and the replacement rod must accept those shells with correct crush height and side clearance. If the crankshaft has been reground twice, the available material at the journal may limit further machining, shifting the decision from shell replacement to crankshaft exchange. Engine serial variants also matter: QSB6.7 units installed in excavators, wheel loaders, and agricultural tractors can carry different internal configurations, and the connecting rod big-end bore diameter, small-end bushing size, and bolt thread specification must all be confirmed against the serial number before parts are committed. A connecting rod engine rebuild that skips this serial-level check risks receiving a rod that physically fits the block but mismatches the piston or the crankshaft [NEED_CITE: engine serial variant differences in off-highway diesel applications].
Material and Surface Finish Under Cyclic Loading
The high-strength alloy steel body is shot-peened across its full surface. Shot peening introduces a layer of compressive residual stress that opposes the tensile peaks generated during the power stroke, delaying crack initiation at the beam-to-boss transition radii. The hardness range of 280–320 HB gives the rod sufficient core strength to resist bending under combustion pressure while retaining enough ductility to absorb shock loads from cylinder misfire or hydraulic lock. These material properties are meaningful only when the rod is paired with correctly graded bearings and a crankshaft journal that still sits within its own surface finish specification. A polished but undersize journal paired with standard bearings will still fail; the material advantage is realised only inside a fully matched assembly.

The Cost Hidden Inside a Mismatched Overhaul Kit
An overhaul kit that lists every gasket and ring set but ships standard-grade bearing shells for a crankshaft that was already ground to 0.25 mm undersize will force the engine back onto the stand. The teardown, inspection, and reassembly labour doubles. In worse cases, a rod installed with the wrong bearing clearance will spin a shell, score the crankshaft journal beyond recoverable limits, and send debris through the lubrication circuit to damage the oil pump and remaining bearings [NEED_CITE: connecting rod bearing failure modes and secondary damage in diesel engines]. The connecting rod engine rebuild cost then multiplies from a component swap into a full short-block replacement. Checking the crankshaft measurement sheet before ordering any internal parts eliminates this exposure entirely.
Why Sourcing This Rod Here Makes Rebuild Planning Simpler
Selected connecting rod lines are produced in our own facility, and the remainder is sourced from ISO-certified manufacturing partners, with both streams carrying the same quality control and warranty terms. Eight core product categories — from full overhaul kits to individual seal sets — ship under one account and one warranty, so a complete QSB6.7 job list goes out as a single consignment rather than fragmented deliveries. Minimum order is one piece, which matters when a single rod is damaged and the rest of the set is serviceable. Our technical team confirms bore dimensions, bearing grade compatibility, and engine serial fitment before dispatch, reducing the chance of a rod arriving that does not match the crankshaft on the bench.
Documentation & Verification
- Commercial invoice listing each rod with its matched bearing grade
- Part compatibility sheet noting QSB6.7 serial range and cross-reference 4943977 (reference only)
- Dimensional inspection report covering big-end bore, small-end bushing ID, and centre distance
- Hardness test record within 280–320 HB range
- Packing photographs showing rod separation and surface protection
- HS code and customs documentation for cross-border engine parts shipment
Installation & Rebuild Sequence
- Clean block oil galleries and verify oil feed hole alignment before fitting the rod.
- Measure big-end bore with and without bearing shells to confirm crush height and side clearance.
- Check piston pin bore and circlip groove dimensions; replace pin or bushing if wear exceeds limits.
- Torque connecting rod bolts to the QSB6.7 specification in the prescribed multi-step sequence.
- Rotate crankshaft by hand after each rod installation to verify free movement and absence of binding.
- Run initial break-in at reduced load, monitoring oil pressure and listening for abnormal knock.
Request a Matched Rebuild Quote
Provide the engine model, full serial number, and any known crankshaft regrind history so the correct connecting rod, bearing grade, and overhaul kit contents can be confirmed in one response. Photographs of the existing rod stamping, the engine nameplate, or the crankshaft measurement sheet speed up identification.

Frequently Asked Questions
Q: What rod-related items are normally included in a QSB6.7 overhaul kit?
A: A complete overhaul kit typically contains the connecting rod bearing shells, piston pin circlips, and rod bolts alongside piston rings and the full gasket set. Confirm whether bearing shells are supplied in standard or oversize grades, and verify that rod bolts are included rather than reused from the previous build.
Q: The crankshaft was reground last time — how do I match rod and bearing size?
A: Provide the crankshaft measurement sheet or the regrind certificate showing journal diameters. The connecting rod big-end bore must accept bearing shells that match the exact undersize grade of the journal, typically 0.25 mm or 0.50 mm, to maintain correct oil film clearance.
Q: Do all QSB6.7 engines use the same connecting rod regardless of serial number?
A: No. QSB6.7 engines installed in different equipment types may carry variant internal configurations affecting rod big-end bore diameter, small-end bushing size, and bolt specification. Confirming the engine serial number ensures the correct variant is supplied.
Q: A rod failed early — what system causes should be checked beyond the rod itself?
A: Investigate lubrication system health including oil pump output and filter condition, check for bearing shell material transfer on the crankshaft journal, and inspect the piston pin bore for elongation. Addressing only the rod without resolving the root cause invites repeat failure.