X-Virus-Scanned: clean according to Sophos on Logan.com Return-Path: Sender: To: lml@lancaironline.net Date: Sun, 29 Jan 2012 20:47:44 -0500 Message-ID: X-Original-Return-Path: Received: from raven.ravenwebhosting.com ([72.9.254.67] verified) by logan.com (CommuniGate Pro SMTP 5.4.3) with ESMTPS id 5369273 for lml@lancaironline.net; Sun, 29 Jan 2012 18:20:17 -0500 Received-SPF: none receiver=logan.com; client-ip=72.9.254.67; envelope-from=paul@tbm700.com Received: from 216.192.189.72.cfl.res.rr.com ([72.189.192.216]:52239 helo=[192.168.1.103]) by raven.ravenwebhosting.com with esmtpsa (TLSv1:AES128-SHA:128) (Exim 4.69) (envelope-from ) id 1Rre2A-0002Mc-IC for lml@lancaironline.net; Sun, 29 Jan 2012 18:19:43 -0500 From: paul miller Mime-Version: 1.0 (Apple Message framework v1084) Content-Type: multipart/alternative; boundary=Apple-Mail-42--467855625 Subject: Oil Change interval X-Original-Date: Sun, 29 Jan 2012 18:19:38 -0500 In-Reply-To: X-Original-To: "Lancair Mailing List" References: X-Original-Message-Id: X-Mailer: Apple Mail (2.1084) X-AntiAbuse: This header was added to track abuse, please include it with any abuse report X-AntiAbuse: Primary Hostname - raven.ravenwebhosting.com X-AntiAbuse: Original Domain - lancaironline.net X-AntiAbuse: Originator/Caller UID/GID - [47 12] / [47 12] X-AntiAbuse: Sender Address Domain - tbm700.com X-Source: X-Source-Args: X-Source-Dir: --Apple-Mail-42--467855625 Content-Transfer-Encoding: quoted-printable Content-Type: text/plain; charset=us-ascii Gary, I changed this topic thread title but copied your = comment/question. I think I have some good data on the subject. I = tracked wear and oil data on my twin Cessna for more than 3000 hours. = I determined that an engine "wears" metals on a relatively constant = schedule. You have to buy into that assumption or else punt this entire = analysis. I measured wear numbers in terms of "ppm per hour" for each = metal adjusted for the number of hours on the engine oil, adjusted for = for the dilution of added clean oil and the loss of oil during the = period (burned or leaked). Initially, I used A/S 15W-50 and changed = oil at 50 hour intervals sometimes longer but went to straight weight = and 25 hours changes. Today, I used straight weight 100 and 25 hour = changes on the Legacy IO-550. I found that after 20-25 hours the wear rates increased quite steeply. = I determined from Shell that the materials in the 15w-50 get chopped and = break down with use thereby moving the multigrade closer to single grade = over time. I then went to straight W100 in the summer and W80 in the = winter with 25 hour oil changes and the numbers improved dramatically in = terms of lower wear measured as ppm of metal generated per hour. The = cost was actually better since the W100 was less than half the price of = 15w-50 at that time. Today, the oil analysis folks have gone towards measuring wear rates = versus straight metal numbers in the oil and that makes more sense to = me. The graph below I found from 1997 only shows how the wear rates = varied over the life of my airframe (100s of hours on x-scale) but I = could recreate the wear per hour change with some time if you wanted to = see it. However, the takeaway for me form years of tracking was: 1) 25 hours in the TSIO-520 NB was a good oil change point for wear = purposes using A/S 15w-50. At 50 hours the wear rates were much higher = and the increase per hour was much steeper indicating the wear was = accelerating. 2) Using W100 or W100 PLUS resulted in better wear numbers per hour than = 15w-50. 3) Plotting wear in ppm per engine hour (for that oil change) resulted = in meaningful results that I could act on. Total numbers mean little if = you can't relate to the hours or oil added and burned. 4) If you track hours and oil consumed/added and do regular oil analysis = you can predict major problems in advance (see graph below). Paul Spruce Creek On 2012-01-27, at 11:06 AM, Gary Casey wrote: > And why do you change oil every 25-35 hours? With a modern engine and = modern oil, I don't see any reason to change oil that often. I would = run it at least 50 hours and try to change it before 75. If the engine = is run often, even 100 hours isn't out of line. What does the oil look = like at the oil change? Can you see the dipstick through the oil? If = so, it probably doesn't need to be changed yet. --Apple-Mail-42--467855625 Content-Type: multipart/related; type="text/html"; boundary=Apple-Mail-43--467855624 --Apple-Mail-43--467855624 Content-Transfer-Encoding: quoted-printable Content-Type: text/html; charset=us-ascii

I found that after 20-25 hours the wear = rates increased quite steeply.   I determined from Shell that the = materials in the 15w-50 get chopped and break down with use thereby = moving the multigrade closer to single grade over time.    I = then went to straight W100 in the summer and W80 in the winter with 25 = hour oil changes and the numbers improved dramatically in terms of lower = wear measured as ppm of metal generated per hour.  The cost was = actually better since the W100 was less than half the price of 15w-50 at = that time.

Today, the oil analysis folks have = gone towards measuring wear rates versus straight metal numbers in the = oil and that makes more sense to me. The graph below I found from 1997 = only shows how the wear rates varied over the life of my airframe (100s = of hours on x-scale) but I could recreate the wear per hour change with = some time if you wanted to see it.  However, the takeaway for me = form years of tracking was:

1) 25 hours in the = TSIO-520 NB was a good oil change point for wear purposes using A/S = 15w-50.  At 50 hours the wear rates were much higher and the = increase per hour was much steeper indicating the wear was = accelerating.
2) Using W100 or W100 PLUS resulted in better = wear numbers per hour than 15w-50.
3) Plotting wear in ppm per = engine hour (for that oil change) resulted in meaningful results that I = could act on.  Total numbers mean little if you can't relate to the = hours or oil added and burned.
4) If you track hours and oil = consumed/added and do regular oil analysis you can predict major = problems in advance (see graph = below).

Paul
Spruce = Creek

On 2012-01-27, at 11:06 AM, Gary Casey = wrote:

And why do you change = oil every 25-35 hours?  With a modern engine and modern oil, I = don't see any reason to change oil that often.  I would run it at = least 50 hours and try to change it before 75.  If the engine is = run often, even 100 hours isn't out of line.  What does the oil = look like at the oil change?  Can you see the dipstick through the = oil?  If so, it probably doesn't need to be changed = yet.
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