Does this translate to increased user loads? Assuming good sheaves, of course.Yes. Load on the block is a function of the turning angle. Loads get high FAST.
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Angle-Load
30° 52%
45° 76%
60° 100%
75° 122%
90° 141%
105° 159%
120° 173%
135° 185%
150° 193%
160° 197%
180° 200%
No, that is the load on the block itself (bearings, mount, etc.) - the load on the line doesn't change appreciably. Look at the case of the 180 degree turn - with 100 lbs tension on the line, there are TWO 100 lb pulls on the block - one to the puller and one to the pulleeDoes this translate to increased user loads? Assuming good sheaves, of course.
That's correct. Now there IS an increase in work load due to friction, and that's a function of the block design. Good harken/lewmar/etc blocks with a large diameter race will be much lower then a cheap one with a simple SS pin bearing. Sadly thats how many deck organizers are made. In any case minimizing the turns, while respecting good organization and fair leads is key.No, that is the load on the block itself (bearings, mount, etc.) - the load on the line doesn't change appreciably. Look at the case of the 180 degree turn - with 100 lbs tension on the line, there are TWO 100 lb pulls on the block - one to the puller and one to the pullee- and this adds up to 200 lb of load on the block.
Hartley