X-Junk-Score: 0 [] X-Cloudmark-Score: 0 [] X-Cloudmark-Analysis: v=2.3 cv=cpHlbGwi c=1 sm=1 tr=0 a=gg1tfv/xRlqfB7BYaOVwjQ==:117 a=57VMzShAFnAA:10 a=e1oJybkonRYA:10 a=ZhyU8zwXbSsA:10 a=x7bEGLp0ZPQA:10 a=xqWC_Br6kY4A:10 a=3JhidrIBZZsA:10 a=PmhH1KkZReAA:10 a=8583L4rk3PdCy9_8ldUA:9 a=wPNLvfGTeEIA:10 a=wn4LMc2zVwpUsDT-LrYA:9 a=RjiVKn2rCwIl3y-j:21 a=_W_S_7VecoQA:10 a=frz4AuCg-hUA:10 a=Vq-i1pnCiIHgOGJLMdoA:9 a=cjqus4MuyalnMsv4:18 a=KQqxNPgzF0kA:10 a=VEiTNn8F7TgA:10 a=blEP6bTonGJ2ForwXVUA:9 a=WUE10JyicCLHwuGE:18 From: "Steven W. 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Sun, 13 Jan 2019 16:58:20 +0000 To: Rotary motors in aircraft Subject: gearbox drain Thread-Topic: gearbox drain Thread-Index: AQHUq17MZGWO7QChrUuzAhk/sJDJEw== Date: Sun, 13 Jan 2019 16:58:20 +0000 Message-ID: Accept-Language: en-US Content-Language: en-US X-MS-Has-Attach: yes X-MS-TNEF-Correlator: x-originating-ip: [69.144.172.98] x-ms-publictraffictype: Email x-microsoft-exchange-diagnostics: 1;MWHPR0501MB3899;6:KXLzcQWUZ/06KH6lviTGaScCBFPBELcA9mmRL+4zWqt3irQoZHEk/7Rmxlz0XKJ2xhvzJC3VLh78QAkS6F+HXMNPXj1HnfwvAU96RKIQeaGd39BmkF4TWYDKBOloxwzOOKKopglkxBJmZ6rDQdGHKYXnDF966G6w3xNZ9hRF+LzCTVzQhpa3z9Ityuttzioxhj1fgVnybwKKSB+kAJbxN+KKiFx2Mju5eDmmXW99JI8W6Zi44zu0W6HHjPeD4Iwb75KRH8lY8fqAHZXqdPxqmx1DI4CNsmttQ+/BQBO8ZXoJzRR7JHv+a5UD3NzTGy/3EEKtFMB3WhVkSu7Z7hGtLjowxByCiEYS9k3BoUACnoinLsOj90djaRrJMjDit81HNEvOpGy76zly/6STcH1OWGvPodzMtJTt8LpuLc0VDs69S3FhoBhFuGTGqcGSDBLzCLH/ZmjQFfx4BugYVk9OKQ==;5:MY2d8iwdilgZifp4uIOXQUsJRrSkLfc2CyziXZfv14+Uk4Bpk1j0HhLCYzXPvBZqavlsLBtTNZaOxPXdMdg1VW4RpSEVozvhMYFACp5unGXxfMxp0deCaZ4WG+rkd1UshmnvA2huu63xfDpRUW+uC2baxEIjiKtRZcx31b6jjhxVoV2YbgJuGs2VMiTi9bX1rgw4HbirCkF07yOy0fe+yg==;7:aTpbTm88Ztliw2oQr1/7Z3lGzFoaLENFANl6Y7nOYa8LntMvs1OWMOyzBlDfAO08gQmxLlc+awd9xYQtwzfOmBrU1xLm3wtDouS/fVqM8bk01gOMuq6RF7MpkWYZAKTgzQfMqPb0fZ4surlcmykcBg== x-ms-exchange-antispam-srfa-diagnostics: SOS; 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received-spf: None (protection.outlook.com: uwyo.edu does not designate permitted sender hosts) authentication-results: spf=none (sender IP is ) smtp.mailfrom=SBoese@uwyo.edu; x-ms-exchange-senderadcheck: 1 x-microsoft-antispam-message-info: IzZt4LHQg+HsRfwsMHPpddaJwb3WxPZBnanWO17AuD8c7Yeuomn9g7dmulYeS8TmJv8QNLVW71zOCMpzHePSVHvfk3d4JY4fhBAehxgjBiHV6WciW8LZCHZMlsn9SKdMEJZYvr8rgY74i+m6ErKObuCf2jzqu53T9csQH8Lw7UfQeVPIeoQLbTanI1n9LoFynNuA/i5HG2QTD+aNsm0RK3Gh1bANfFNjDYnHkRe35M29Tsen4cCmeMY3ccUidIeZAX76s4j2BZ2MRIHD/dFGHmpJNlSLRT57dI3KLOA2DNUs/vvHvb+t0AWmHchBi62JZ5h3NL9XYs2ilah1CjbECcqJeQ0LUqNeunXrxCfD8yJhenz4ngzMtMqnPdqpc0bv7K1VyDR5gd3Y/UN/rMHN64A/q7e5RoGftah+tHJMMPU= spamdiagnosticoutput: 1:99 spamdiagnosticmetadata: NSPM Content-Type: multipart/mixed; boundary="_005_MWHPR0501MB38045D5811AB5984181A759CB9870MWHPR0501MB3804_" MIME-Version: 1.0 X-OriginatorOrg: uwyo.edu X-MS-Exchange-CrossTenant-Network-Message-Id: 408ff3f2-2ce9-46c8-7603-08d679785250 X-MS-Exchange-CrossTenant-originalarrivaltime: 13 Jan 2019 16:58:20.2644 (UTC) X-MS-Exchange-CrossTenant-fromentityheader: Hosted X-MS-Exchange-CrossTenant-id: f9cdd7ad-825d-4601-8e9c-a325e02d52da X-MS-Exchange-Transport-CrossTenantHeadersStamped: MWHPR0501MB3899 --_005_MWHPR0501MB38045D5811AB5984181A759CB9870MWHPR0501MB3804_ Content-Type: multipart/alternative; boundary="_000_MWHPR0501MB38045D5811AB5984181A759CB9870MWHPR0501MB3804_" --_000_MWHPR0501MB38045D5811AB5984181A759CB9870MWHPR0501MB3804_ Content-Type: text/plain; charset="iso-8859-1" Content-Transfer-Encoding: quoted-printable Tracy and Neil, I installed a -4 fitting at the top of both the -C drive and also the -A dr= ive that I converted to 3.17 to one ratio. At idle with oil at about 50 de= grees, a gauge connected to that top fitting read about 4 psi inside the ge= arbox. With oil at about 180 degrees, the gauge read about 2 psi. The 2 p= si was unchanged when the engine rpm was increased to 5000. Both gearboxes= behaved the same. I also installed a ball valve in the -6 drain line that I could close immed= iately after shutting the engine off. Then I could disconnect the drain li= ne and collect the oil that was inside the gearbox. The converted -A drive= with a 3 pinion planetary contained 22 oz of oil after shutdown while the = -C drive with the 6 pinion planetary contained 18 oz of oil. This was with= the top fitting dead ended to the gauge and not venting anything during op= eration. The oil flow rate from the prop end of the gearbox was found to be about 1/= 4 oz per minute while the total oil flow rate through the gearbox was found= to be about 90 oz per minute. This explains why installing separate -6 dr= ain lines to the engine did not change the behavior. During the flow rate = measurement, the oil draining from the gearbox just after starting the engi= ne had a lot of entrained air for a short time. So the conclusion is that the gearboxes are completely filled with oil duri= ng operation and any air initially inside them is entrained in the oil and = forced out the drain by the incoming oil. The gearbox recommendations tha= t I could find do not recommend running with the components completely subm= erged due to the power consumed by churning the oil and resultant generatio= n of heat. Those sources also say that if the gearbox is partially filled = with oil but the level is too high, the oil will foam and lubrication will = be degraded if the system circulates the oil using an external pump. In ou= r case, it may be better to accept the power loss and extra heat as opposed= to returning a lot of aerated oil to the engine. An impeller was added to the planet carrier of the converted -A drive but t= hat gearbox still operated completely filled with oil. The gearbox drain and the engine drain connection were increased to 1/2" NP= T and fittings drilled out to 21/32" ID were installed. 3/4" ID hose was i= nstalled as the drain line. The drain line was close to level but slightly= down hill in operation. This reduced the gearbox internal pressure to a v= alue not measurable with a normal gauge. The amount of oil inside the gear= box was measured by clamping off the drain hose immediately after shutting = down the engine, disconnecting the hose from the engine, and then recoverin= g the oil remaining inside the gearbox. The gearbox was found to be comple= tely filled with oil just as before. When the -4 fitting in the top of the gearbox was connected to the engine c= rankcase as a vent, the amount of oil recovered from the gearbox after ope= ration was now found to be about 5 to 6 oz. The recovered oil did not appe= ar to be foamed and its volume changed very little upon standing for severa= l hours. Steve Boese --_000_MWHPR0501MB38045D5811AB5984181A759CB9870MWHPR0501MB3804_ Content-Type: text/html; charset="iso-8859-1" Content-Transfer-Encoding: quoted-printable

Tracy and Neil,


I installed a -4 fitting at the top of both the -C drive and also the= -A drive that I converted to 3.17 to one ratio.  At idle with oil at = about 50 degrees, a gauge connected to that top fitting read about 4 psi in= side the gearbox.  With oil at about 180 degrees, the gauge read about 2 psi.  The 2 psi was unchanged whe= n the engine rpm was increased to 5000.  Both gearboxes behaved the sa= me.


I also installed a ball valve in the -6 drain line that I could close= immediately after shutting the engine off.  Then I could disconnect t= he drain line and collect the oil that was inside the gearbox.  The co= nverted -A drive with a 3 pinion planetary contained 22 oz of oil after shutdown while the -C drive with the 6 pinion= planetary contained 18 oz of oil.  This was with the top fitting dead= ended to the gauge and not venting anything during operation.


The oil flow rate from the prop end of the gearbox was found to be ab= out 1/4 oz per minute while the total oil flow rate through the gearbox was= found to be about 90 oz per minute.  This explains why installing sep= arate -6 drain lines to the engine did not change the behavior.  During the flow rate measurement, the oil d= raining from the gearbox just after starting the engine had a lot of entrai= ned air for a short time.


So the conclusion is that the gearboxes are completely filled with oi= l during operation and any air initially inside them is entrained in the oi= l and forced out the drain by the incoming oil.   The gearbox recommen= dations that I could find do not recommend running with the components completely submerged due to the power consumed= by churning the oil and resultant generation of heat.  Those sources = also say that if the gearbox is partially filled with oil but the level is = too high, the oil will foam and lubrication will be degraded if the system circulates the oil using an external pump.&= nbsp; In our case, it may be better to accept the power loss and extra heat= as opposed to returning a lot of aerated oil to the engine.


An impeller was added to the planet carrier of the converted -A drive but tha= t gearbox still operated completely filled with oil.


The gearbox drain and the engine drain connection were increased to 1= /2" NPT and fittings drilled out to 21/32" ID were installed. &nb= sp;3/4" ID hose was installed as the drain line.  The drain line = was close to level but slightly down hill in operation.  This reduced the gearbox internal pressure to a value not mea= surable with a normal gauge.  The amount of oil inside the gearbox was= measured by clamping off the drain hose immediately after shutting down th= e engine, disconnecting the hose from the engine, and then recovering the oil remaining inside the gearbox.  Th= e gearbox was found to be completely filled with oil just as before.=


When the -4 fitting in the top of the gearbox was connected to the en= gine crankcase as a vent,  the amount of oil recovered from the gearbo= x after operation was now found to be about 5 to 6 oz.  The recovered = oil did not appear to be foamed and its volume changed very little upon standing for several hours.


Steve Boese

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