3.0L 24v - 2JZ-GTE
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3.0L 24v - 2JZ-GTE
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ARP cylinder head studs for Toyota 2JZ-GE, 2JZ-GTE and 1JZ-GTE (24-valve inline six-cylinder).
The 2JZ-GE and 2JZ-GTE are Toyota's 3.0-litre, 24-valve inline six-cylinder engines (2,997 cm³, 86 mm bore and stroke): the first is naturally aspirated, the second turbocharged. The 2JZ-GTE powers the Supra (JZA80) and the 2JZ-GE the Lexus GS300 (JZS147). The 1JZ-GTE, a 2.5-litre turbocharged inline six (2,492 cm³, 86 mm bore, 71.5 mm stroke), is part of the application list of kit 203-4702.
As standard, the 2JZ-GE and 2JZ-GTE cylinder head is secured by 14 head bolts (Toyota part number 90910-02102), tightened to 34 Nm and then through two 90° stages.
The job of the head fasteners is to keep the cylinder head locked to the block despite the pressure inside the combustion chambers. They keep the gasket compressed; as soon as their clamping force drops, leaks appear between head and block.
Three ARP stud kits with 12-point nuts are offered: 203-4205 and its undercut version 203-4702, in 8740 and 7/16", plus 203-4301 in CA625+ and M11 x 1.25. The studs are screwed into the block by hand, the cylinder head and gasket are fitted next, then the nuts are torqued, which gives a higher preload. In 7/16", the 8740 studs hold up to 900 hp on this six-cylinder engine (calculated estimate). On this six-cylinder engine, the limit of the CA625+ studs in M11 x 1.25 lies at 1,100 hp (calculated estimate).
| Part number | Brand | Grade / material | Nuts | Thread |
| ARP-203-4205 | ARP | 8740 | 12-point | 7/16" |
| ARP-203-4702 | ARP | 8740 - Undercut | 12-point | 7/16" |
| ARP-203-4301 | ARP | CA625+ | 12-point | M11 x 1.25 |
| Part number | Stage 1 | Stage 2 | Stage 3 |
| ARP-203-4205 | 36 Nm | 72 Nm | 108 Nm |
| ARP-203-4702 | 36 Nm | 72 Nm | 108 Nm |
| ARP-203-4301 | 45 Nm | 90 Nm | 136 Nm |
For all three kits: the studs are fitted into the block by hand, without a torque wrench. For a permanent installation, the instruction sheet accepts thread locker, with tightening to be completed before it sets.
If the studs open into a water jacket, the instruction sheets call for an ARP sealant on their threads.
Final tightening is done in three successive stages, following the manufacturer's tightening sequence; these torque figures only hold with ARP assembly lubricant on the threads and under the nuts.
The instruction sheet also calls for ARP lubricant on the washers.
The torque figures above come from ARP instruction sheets 203-4205, 203-4702 and 203-4301; only the official sheet in force applies, including for the full procedure and the tightening sequence. Read the ARP 203-4205 instruction sheet ; Read the ARP 203-4702 instruction sheet ; Read the ARP 203-4301 instruction sheet
To obtain the intended preload, ARP assembly grease must be present on the threads and under the nuts: the torque figures in the table are established with it.
| Buy the ARP assembly grease → |
| Grade | Material | Tensile strength | Strengths |
| 8740 | Chrome-moly steel | 190,000 psi | Widely used grade, threads rolled after heat treatment |
| CA625+ | Super-alloy | 260,000 to 280,000 psi (typical) | Fatigue life, toughness, full corrosion resistance |
An undercut stud has a reduced-diameter shank. This profile, ARP explains, spreads stretch more evenly across the studs: the cylinder head is clamped with a steadier force, gasket compression is better compensated and the gasket is less likely to fail.
| Founded in the early 1970s by Gary Holzapfel, who came from the aerospace industry, ARP (Automotive Racing Products) set itself the mission of eliminating engine failures caused by inadequate fasteners in competition. Its thousands of parts are designed and produced in California, in several material grades depending on the application. |
| Criterion | Original head bolts | Reinforced ARP studs |
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| Tightening method | Torque then angle (34 Nm + 90° + 90°) | Torque only, in 3 stages |
| Block threads | Stressed at every tightening | Preserved (stud fitted hand tight) |
Standard fasteners remain suitable as long as the engine keeps its original combustion pressure. They reach their limits in the following cases:
| Model | Engine code | Power | Years |
| Toyota Supra (JZA80) | 2JZ-GTE | 330 hp | 1993-2002 |
| Lexus GS300 (JZS147) | 2JZ-GE | 212 hp | 1993-1997 |
| Toyota Chaser Tourer V (JZX100) | 1JZ-GTE (VVT-i) | ≈280 hp | 1996-2001 |
| Toyota Chaser Tourer V (JZX90) | 1JZ-GTE | ≈280 hp | 1992-1996 |
| Toyota Cresta GT Twin Turbo / Tourer V (JZX90, JZX100) | 1JZ-GTE | ≈280 hp | 1992-2001 |
| Toyota Crown Athlete V (JZS171, JZS171W) | 1JZ-GTE (VVT-i) | ≈280 hp | 1999-2003 |
| Toyota Mark II Blit iR-V (JZX110W) | 1JZ-GTE (VVT-i) | ≈280 hp | 2002-2006 |
| Toyota Mark II Tourer V (JZX100) | 1JZ-GTE (VVT-i) | ≈280 hp | 1996-2000 |
| Toyota Mark II Tourer V (JZX90) | 1JZ-GTE | ≈280 hp | 1992-1996 |
| Toyota Soarer 2.5 GT-TwinTurbo (JZZ30) | 1JZ-GTE | ≈280 hp | 1991-2000 |
| Toyota Supra 2.5 Twin Turbo (JZA70) | 1JZ-GTE | ≈280 hp | 1990-1993 |
| Toyota Verossa VR25 (JZX110) | 1JZ-GTE (VVT-i) | ≈280 hp | 2001-2004 |
OEM reference: 90910-02102
The original head fasteners do not last long once power climbs sharply. Reinforced fasteners in 8740 or CA625+ withstand a much higher combustion pressure: the risk of a failed gasket or a broken bolt drops, and with it the risk of an expensive engine rebuild.
Reinforced fasteners are only fully worthwhile with a head gasket able to resist the same pressure. We offer the following parts for these engines:
| Reinforced head gasket 2JZ-GTE → |
| O-ring head gasket 2JZ-GTE (87 mm bore) → |
