IP Library › Granted Patent US 8,390,796
Granted Patent B2
US 8,390,796 · App. 13/377,942 · Granted Mar 5, 2013

Oil state monitoring method and oil state monitoring device

Inventors: Tomomi Honda (Fukui, JP); Yoshiro Iwai (Fukui, JP); Akira Sasaki (Yokohama, JP)
Assignee: National University Corporation University of Fukui
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Quick Facts
Patent No.
US 8,390,796
App. No.
13/377,942
Granted
Mar 5, 2013
Kind
B2
Abstract

Disclosed are an oil state monitoring method and an oil state monitoring device which monitor the state of degradation of oil used in machinery or equipment. In monitoring the oil state by the oil state monitoring method and by the oil state monitoring device, oil used in machinery or equipment is filtered when the degradation state of the aforementioned oil is to be monitored. By means of filtration, the oil content is removed from the filter which captured contaminants that were present in oil prior to filtration. Light is projected onto the filter from which oil was removed. The projected light detects the color components of the transmitted light which penetrated the aforementioned filter.

Claims (18)

1. An oil state monitoring method for monitoring degradation states of oil used in machinery or equipment, the oil state monitoring method comprising:

a filtering step that filters the oil with a filter;

a filter treatment step that removes the oil content from the filter which filtered the oil in the filtering step and which captured contaminants which are present in the oil prior to an oil filtration; and

a transmitted light-detection step that detects color components of transmitted light being light which is emitted onto the filter treated in the filter treatment step and which is penetrated through the filter.

2. The oil state monitoring method according to claim 1 , wherein the transmitted light-detection step includes a step of detecting color components of first transmitted light which is first light

that is emitted from first light source which is set on a side of a first face of the filter which is the side where the oil is present prior to the oil filtering in the filtering step,

that is emitted onto the filter treated in the filter treatment step, and

that is penetrated through the filter, on a side of a second face which is a reverse side of the first face.

3. The oil state monitoring method according to claim 2 , further comprising:

a reflected light-detection step that detects, on the side of the first face, color components of first reflected light which is the first light reflected from the first face.

4. The oil state monitoring method according to claim 3 , wherein

the transmitted light-detection step further includes a step of detecting, on the side of the first face, color components of second transmitted light which is second light that is emitted from second light source which is set on the side of the second face, that is emitted onto the filter treated in the filter treatment step, and that is penetrated through the filter, and

the reflected light-detection step further includes a step of detecting, on the side of the second face, color components of second reflected light which is the second light reflected from the second face.

5. An oil state monitoring device for monitoring oil degradation states with a filter, which filters oil used in machinery or equipment, which captures contaminants which are present in the oil prior to an oil filtration, and which oil content were removed from, the oil state monitoring device comprising:

a first light source that is installed at least on a side of a first face, which is either side of the filter which is set in the oil state monitoring device, and which is a side where the oil is present prior to the oil filtration at the filtering and that emits first light onto the filter to monitor the oil degradation states;

a second light source that is installed on the side of a second face which is a reverse side of the first face and that emits second light onto the filter to monitor the oil degradation states;

a first color sensor that is installed at least on a side of the second face and that detects color components of first transmitted light which is the first light penetrated through the filter and color components of second reflected light which is the second light reflected from the second face; and

a second color sensor that is installed on the side of the first face and that detects color components of first reflected light which is the first light reflected from the filter and color components of second transmitted light which is the second light penetrated through the filter.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 13, 2011
From: HONDA, TOMOMI; IWAI, YOSHIRO; SASAKI, AKIRA
To: NATIONAL UNIVERSITY CORPORATION UNIVERSITY OF FUKUI
Reel/Frame 027410/0711 →
Priority Claims (1)
JP 2009-148911 · Jun 23, 2009 · national
Continuity (1)
Related Publication 20120086942A1 · Apr 12, 2012