Kubota oil

ejb11235

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BX23S, Braber BBR4G 4' Box Blade & LRM5G 5' landscape rake
Jan 20, 2022
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Seattle, WA, USA
photofunny.net_.jpeg

La-da-da-da-dah It's the m*** teal double G
 
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Turfturd

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B7510
May 20, 2021
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Missouri
I would agree with lmicheal.
Oil is 1 of the cheapest types of maintenance and one of the most important.
When you mix brands and/or weights you are mixing and changing the additives that make it that “type” of oil. I would just bite the bullet and buy enough of one kind.
 
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RalphVa

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Jan 19, 2020
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Here is a link to an array of calculators. Good or bad code they work and all you have to is plug in a couple values.


Dan
Nice to see that they finally put the same stuff out for the public that I put together in the early 90s. At that time, the stuff I put together would have been proprietary. I've all the same tools as in the reference including a bunch more. Could model a whole lube oil processing plant to tell where it's limits were for certain feedstocks, etc. All kinds of tools for viscosity, VI, blending, etc.
 
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ejb11235

Active member

Equipment
BX23S, Braber BBR4G 4' Box Blade & LRM5G 5' landscape rake
Jan 20, 2022
377
239
43
Seattle, WA, USA
Nice to see that they finally put the same stuff out for the public that I put together in the early 90s. At that time, the stuff I put together would have been proprietary. I've all the same tools as in the reference including a bunch more. Could model a whole lube oil processing plant to tell where it's limits were for certain feedstocks, etc. All kinds of tools for viscosity, VI, blending, etc.
Glad I have access to the code for the viscosity calculator ... I'm learning a software tool (r/shiny) and this gives me a simple calculator to mimic.
 

ejb11235

Active member

Equipment
BX23S, Braber BBR4G 4' Box Blade & LRM5G 5' landscape rake
Jan 20, 2022
377
239
43
Seattle, WA, USA
Ralpha--

I've been looking at your VB code and some of the other viscosity calculators out there. This morning I started writing my own version in R.

I have a couple of questions about the code you posted:

1) There's a comment in your code about calculating viscosity differently for cs values <2. It looks like it's not just a different constant, but a significantly different formula ... care to comment?

Code:
dVis = dVis - Exp((-0.7487 - 3.295 * dVis) + 0.6119 * dPt7Sq - 0.3193 * dPt7Cube)
2) I notice in a few places you use the EXP function, which calculates e raised to a power. This strikes me as odd because all of the logs are base 10. Is this an error or is this what you actually intended? Here are a couple of examples:

Code:
If dVis < 2# Then
  dCval = Exp(-1.14883 - 2.65868 * dVis)
End If

If dVis < 1.65 Then
  dDval = Exp(-0.0038138 - 12.5645 * dVis)
End If
...
dZval = dVis + 0.7 + dCval - dDval + dEval - dFval + dGval - dHval
astm_d341_vm = Log10(Log10(dZval))