IP Library Granted Patent US 9,316,225
Granted Patent B2
US 9,316,225 · App. 14/407,647 · Granted Apr 19, 2016

Scroll compressor with thrust sliding surface oiling groove

Inventors: Kenji Nagahara (Osaka, JP); Youhei Nishide (Osaka, JP); Takashi Uekawa (Osaka, JP)
Assignee: Daikin Industries, Ltd.
F04C18/0253F04C18/0215F04C27/005F04C27/008F04C27/02F04C29/028F04C29/023
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Quick Facts
Patent No.
US 9,316,225
App. No.
14/407,647
Granted
Apr 19, 2016
Kind
B2
Abstract

A scroll compressor includes a compression mechanism including fixed and movable scrolls. The fixed and movable scrolls have end plates and spiral laps. The laps are engaged to form a compression chamber. The end plates are in pressure contact around the compression chamber to form a thrust sliding surface. The thrust sliding surface has an oil groove extending around the compression chamber. High-pressure refrigerating machine oil is supplied to the oil groove. During orbiting of the orbiting scroll, at least in a region serving as a suction space of fluid in an outer peripheral portion of the compression chamber, an outer seal length from an outer peripheral edge of the oil groove in the thrust sliding surface to an outer edge of the movable end plate is smaller than an inner seal length from an inner peripheral edge of the oil groove to a peripheral edge of the compression chamber.

Claims (26)

1. A scroll compressor comprising:

a compression mechanism including

a fixed scroll having a fixed end plate and a spiral fixed lap integrated with the fixed end plate, and

an orbiting scroll having a movable end plate and a spiral movable lap integrated with the movable end plate,

the fixed lap and the movable lap being engaged with each other to form a compression chamber,

the fixed end plate and the movable end plate being in pressure contact with each other around the compression chamber to form a thrust sliding surface,

the thrust sliding surface having an oil groove located therein that extends around the compression chamber, high-pressure refrigerating machine oil being supplied to the oil groove,

during orbiting of the orbiting scroll, at least in a region serving as a suction space of fluid in an outer peripheral portion of the compression chamber, an outer seal length from an outer peripheral edge of the oil groove in the thrust sliding surface to an outer edge of the movable end plate is smaller than an inner seal length from an inner peripheral edge of the oil groove to a peripheral edge of the compression chamber,

the oil groove having an outer peripheral chamfer and an inner peripheral chamfer, and

a size of the outer peripheral chamfer being larger than a size of the inner peripheral chamfer.

2. The scroll compressor of claim 1 , wherein

in a state in which the outer seal length is at minimum when the orbiting scroll orbits,

the outer seal length is smaller than the inner seal length.

3. A scroll compressor comprising:

a compression mechanism including

a fixed scroll having a fixed end plate and a spiral fixed lap integrated with the fixed end plate, and

an orbiting scroll having a movable end plate and a spiral movable lap integrated with the movable end plate,

the fixed lap and the movable lap being engaged with each other to form a compression chamber,

the fixed end plate and the movable end plate being in pressure contact with each other around the compression chamber to form a thrust sliding surface,

the thrust sliding surface having an oil groove located therein that extends around the compression chamber, high-pressure refrigerating machine oil being supplied to the oil groove,

during orbiting of the orbiting scroll, at least in a region serving as a suction space of fluid in an outer peripheral portion of the compression chamber, an outer seal length from an outer peripheral edge of the oil groove in the thrust sliding surface to an outer edge of the movable end plate is smaller than an inner seal length from an inner peripheral edge of the oil groove to a peripheral edge of the compression chamber,

a portion of the oil groove corresponding to an inflow end of high-pressure oil being a proximal portion,

a portion of the oil groove corresponding to a region in which the compression chamber is a suction space of fluid being a distal portion, and

at least one of a width and a depth of the distal portion being larger than that of the proximal portion.

4. The scroll compressor of claim 3 , wherein

in a state in which the outer seal length is at minimum when the orbiting scroll orbits, the outer seal length is smaller than the inner seal length.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 12, 2014
From: NAGAHARA, KENJI; NISHIDE, YOUHEI; UEKAWA, TAKASHI
To: DAIKIN INDUSTRIES, LTD.
Reel/Frame 034493/0575 →
Priority Claims (1)
JP 2012-134471 · Jun 14, 2012 · national
Continuity (1)
Related Publication 20150147214A1 · May 28, 2015