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#301
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As long as you measured and checked the cam timing properly and it is coming in at 109.5 I would expect it to be fine.
Don’t assume that the corresponding keys work right according to the instructions. They often do not. Always measure and check when using those keys. Here a quote from someone that did a lot more cams than I have. It can be true for 9 way set too, even though the instruction all say the cam timing is moved half that. The instructions are actually wrong, the key way are in 4* increments at the crank, and only move the cam timing 2*. I have never actually seen a timing set that works like the instruction say. Just like this Joe Sherman quote: Last edited by Jay S; 09-09-2023 at 09:38 PM. |
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#302
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You go 113.5 - 8 degrees at the Crank = 105.5 advanced at the Crank. Measuring the way, you are, I beg to differ, here is why, 113.5 = 8 + 1.5 degrees (built into the Cam) = 9.5 113.5 - 9.5 = 104 advanced at the Crank. Mike is measuring via the Cam degrees: 4 advanced degrees + 1.5 (built into the Cam) = 5.5 113.5 - 5.5 = 108, A little more advanced than my 109 target, but I have read people advancing their race timing to between 108-109. If I am wrong or I have advanced this Engine too far, please correct me now, before it is too late. P.S You said: " Butler’s composite gaskets crush to around .042”. to .044” thick. Thus, we add Piston TDC to Deck clearance @ .023" +.042” crush = .065 Quench, in my case approx.? Still a safe place to be for now? By the way the Piston to cyl. walls are smooth to begin with and the Piston clearance is between .005" - .010", in addition the Cam Bearings looked so good that we used them when we installed the new "041" Cam. For this very reason we deduced that the Crank Bearings would have held up as well. The lower part of this Engine has been dependable so far, never a noise anomaly until the Trans. disinegration. I firmly believe that accident caused the majority of the issues today, especially the Thrust impact through the Trans. thrusting toward the Crank and lastly arriving at the Harmonic Balancer. The Head is a time related issue and stands alone, this is my view, and I am sticking to it. Nothing happens from nothing here it all happened at once, too bad I am still repairing this Engine from the accident I had, running over a root beneath an asphalt driveway. Last edited by TRADERMIKE 2012; 09-09-2023 at 10:29 PM. |
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#303
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I attached the instructions for Comps 9 way timing set instruction, those instructions are pretty much the same no matter who’s timing set you buy.
The problem is the instruction are often wrong on timing sets, the key moves the crank twice as much at the crank than the number indicates (each key changes it 4* at the crank, not 2*). The keys are often not all that accurate either. Could be this timing set is different though, I am mentioning it incase your assuming the instruction are correct, and didn’t bother rechecking the cam timing after using the multi key timing set.. If you degreed the cam in after you used those keys and it worked, don’t take the timing cover off, it should be correct. If you assumed the instruction are correct and did not degree the cam timing. Then take the timing cover off and degree it in and make sure. Every multi key timing set I have had so far would have advanced it 8*, not 4*. . |
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#304
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Your math isn’t wrong. The instruction are often wrong, and the keys are not all that accurate. You have not said that you degreed the cam in after using the different key. If you did and it worked as planned, your good. Pay no attention to me.
Last edited by Jay S; 09-09-2023 at 10:43 PM. |
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#305
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I think Cliff said it best when he said even experienced builder’s mess up with those multi key timing set! Easy to do when the instruction are crap!
I have had a cloyes 3 way timing set move cam timing 8*, which means the 2 different crank keys changed it 16*. Instructions said it would move it 4*, or 2* at the cam…Freaking ridiculous! Last edited by Jay S; 09-09-2023 at 11:00 PM. |
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#306
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#307
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#308
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#309
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Then we turned the nut 3/4 turn more while rotating the push rods until there is a slight resistance before the 3/4 turn. I believe we are advanced a little more than I intentionally intended, I was shooting for 109 total Cam advance, but I have read that 108 is also in the ball park for race ready concerns. I won't be taking this vehicle to the track to test whether it works at 60' times vs 1/4-mile times. What I want is a well-tuned Engine that is as performance orientated as it was built in 1967. By the way this Motor is well documented with 2/22/68 date?, written on the Passenger side front Block. This 428 ci HO went to a machinist to be further modified with the "886" Cam and Tri-power Carbs. in 1968 and I possibly think someone Blueprinted this motor and balanced it for racing, just as my father did to his race vehicles. Now with the "041" Cam I am trying my best to make it performance orientated to the best of my ability. Oddly, the machine had to break down with odd noises for me to find out that the pistons are reversed and one isn't. I still believe that even though we won't know the reason until this Engine is fully disassembled, the why of it all, that the builder knew exactly what he was doing.JMO Last edited by TRADERMIKE 2012; 09-10-2023 at 12:48 AM. |
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#310
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When degreeing in a cam, ONLY the intake lobe is used. You want to find the position of the intake lobe relative to the crankshaft when the piston is at TDC. It was at 112*. Who knows were it is now that it was monkeyed with. |
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#311
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True. But if you don't have a cam doctor, then also checking the exhaust lets you know how close or if you really have the cam and LSA you ordered. Stan
__________________
Stan Weiss/World Wide Enterprises Offering Performance Software Since 1987 http://www.magneticlynx.com/carfor/carfor.htm David Vizard & Stan Weiss' IOP / Flow / Induction Optimization - Cam Selection Software http://www.magneticlynx.com/DV Download FREE 14 Trial IOP / Flow Software http://www.magneticlynx.com/DV/Flow_..._Day_Trial.php Pontiac Pump Gas List http://www.magneticlynx.com/carfor/pont_gas.htm Using PMD Block and Heads List http://www.magneticlynx.com/carfor/pont_pmd.htm |
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#312
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I wrote that very simply so maybe he could understand it. |
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#313
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I must have missed or miss read a post as I didn't see that. Stan
__________________
Stan Weiss/World Wide Enterprises Offering Performance Software Since 1987 http://www.magneticlynx.com/carfor/carfor.htm David Vizard & Stan Weiss' IOP / Flow / Induction Optimization - Cam Selection Software http://www.magneticlynx.com/DV Download FREE 14 Trial IOP / Flow Software http://www.magneticlynx.com/DV/Flow_..._Day_Trial.php Pontiac Pump Gas List http://www.magneticlynx.com/carfor/pont_gas.htm Using PMD Block and Heads List http://www.magneticlynx.com/carfor/pont_pmd.htm |
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#314
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I probably edited the quote to far. Maybe this one is more clear. Seems to be finding the LSA, then calling it the ICL.
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#315
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Now, I use the Intake c/l @ 112 and add 1.5 degrees built into the Cam from the Melling factory, sold by Butler, together = 113.5 what? is this the new Intake c/l that just happens to be the same as the LSA? I have 113.5 whatever? The Cam is advanced now @ 4 Cam degrees. 8 degrees advance @ Crank. 1.5 degrees, added into the Cam at the factory. 112 Intake c/l + 1.5 advance = 113.5 what? Given the same information that I have, can you finish the equation, in Cam degrees, please? I believe I am at: (1.5 + 4 = 5.5 advanced), 113.5 - 5.5 = 108 degrees new Cam timing. I used the 4th notch at the Crank here. My original target advance was: (1.5 + 3 = 4.5 advanced), 113.5 - 4.5 = 109 degrees new Cam timing. I used the 3rd notch at the Crank here. I believe one is as good as the other because I won't be testing to see at the track. Last edited by TRADERMIKE 2012; 09-10-2023 at 12:17 PM. |
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#316
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The factory advance of 1.5* is subtracted from the lobe separation angle to find the installed intake centerline.
113.5* - 1.5* = 112 * The installed intake centerline when you line the timing marks up like the factory setting, dot to dot” is suppose to be 112*. Which can vary, and is why it is better to degree the cam in. You simply have no business using any of the other keys (other than the zero position) on the timing set unless you degree the cam in afterward. |
| The Following User Says Thank You to Jay S For This Useful Post: | ||
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#317
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113.5* - 1.5* = 112 * Mikes reply: Thus: 112 degrees is the Installed intake center, (112 I c/l) Now, I added 4 degrees to the Cam timing, show me how you would proceed please next. In addition, I agree when I am done, I will install the degree wheel again to prove that the advanced timing is actual. I am already planning to pull the Timing cover with the water pump attached to install the degree wheel and pull back the advanced timing to the 3rd notch that is 6 degrees at the Crank or 3 degrees at the Cam. Now that you know the plan, please do the entire math process, the way I should be doing it, so that I can see where the difference is between our thinking. P.S. I installed the timing Chain gears at 12 0'clock each for Pontiac @ TDC of the compression stroke. |
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#318
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Don’t change anything until you degree the cam in and find the position ICL is at now. After that you can better determine which key to use.
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#319
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I know I am 4 notches at the Crank and at the Cam I am 4 degrees advanced plus 1.5 in built into the Cam added together I am at 113.5 - 5.5 = 108 theoretically, now I must prove it by degreeing using the .050" method on the Intake Valve. Once we know where we are truly at, we can decide where to go from there.
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#320
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It's a good thing you are going to take it back apart and check it with your degree wheel. I think you are going to find out that you are at 104 degrees advanced and not the 108 that your looking for.
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