Might be a situation of splitting hairs but considering the clearance is so tight, it's hard to justify going against the factory method.
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Forum LongTimerGSResource Superstar
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Super Site Supporter- Mar 2006
- 35622
- Torrance, CA
Originally posted by robertob View Post
Might be a situation of splitting hairs but considering the clearance is so tight, it's hard to justify going against the factory method.Ed
To measure is to know.
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BassCliff
Lobe positions
Originally posted by TheCafeKid View PostIts totally odd ball that the exhaust side were all in spec, but the intake was up to four sizes out.
Forgive me for asking the obvious. After you replace a shim, do you spin the engine a few times to make sure it's properly seated in the bucket before you re-measure? To go down 4 sizes (i.e. 2.8mm to 2.6mm) with a shim seems excessive.
Here is a view of the #1 exhaust lobe when properly positioned (pointing forward) to measure the clearances for exhaust #1 and #2.
Position #4 exhaust lobe in the same manner to measure both #3 and #4 exhaust clearances.
Here is a view of the #4 intake lobe position used to measure clearances for intakes #3 and #4.
Position #1 intake lobe in the same way (pointing up) to measure #1 and #2 intake clearances.
This picture shows the relative positions of all lobes when checking clearances (looking from the right side of the motor).
Basically, when checking exhaust clearances, point the outside lobe forward and measure both on that side. And when checking intake clearances, point the outside lobe up and measure both on that side.
Now I'll shut up before I display any more of my ignorance. I'm just relaying what I've learned from the Suzuki Shop Manual and my experience.
Thank you for your indulgence,
BassCliff
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Colin Green
Originally posted by BassCliff View PostMr. TCK,
Forgive me for asking the obvious. After you replace a shim, do you spin the engine a few times to make sure it's properly seated in the bucket before you re-measure? To go down 4 sizes (i.e. 2.8mm to 2.6mm) with a shim seems excessive.
Here is a view of the #1 exhaust lobe when properly positioned (pointing forward) to measure the clearances for exhaust #1 and #2.
Position #4 exhaust lobe in the same manner to measure both #3 and #4 exhaust clearances.
Here is a view of the #4 intake lobe position used to measure clearances for intakes #3 and #4.
Position #1 intake lobe in the same way (pointing up) to measure #1 and #2 intake clearances.
This picture shows the relative positions of all lobes when checking clearances (looking from the right side of the motor).
Basically, when checking exhaust clearances, point the outside lobe forward and measure both on that side. And when checking intake clearances, point the outside lobe up and measure both on that side.
Now I'll shut up before I display any more of my ignorance. I'm just relaying what I've learned from the Suzuki Shop Manual and my experience.
Thank you for your indulgence,
BassCliff
Thank you BassCliff.
Just what I needed.
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Road_Clam
I for one, never understood the reasoning behind the factory specified position of the cam lobe in relation to the tappet for the purpose of adjusting the valves. One would think that rotating the cam lobe exactly 180 degrees away from the tappet would yield the minimum lobe base circle, but there must be a specific reason Suzuki want's the lobe at to odd placement angle....
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Originally posted by Road_Clam View PostI for one, never understood the reasoning behind the factory specified position of the cam lobe in relation to the tappet for the purpose of adjusting the valves. One would think that rotating the cam lobe exactly 180 degrees away from the tappet would yield the minimum lobe base circle, but there must be a specific reason Suzuki wants the lobe at to odd placement angle....
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The spec for the cam clearance in the cam journal is .025mm - .053mm
If the cam lobe on the adjacent cylinder is down at the time, it will raise the cam by this distance, severely skewing your shim clearance measurement. Doing it the way Suzuki intended gives an accurate and repeatable result.
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