Linear compressor with oil splash prevention plate

文档序号:1966816 发布日期:2021-12-14 浏览:20次 中文

阅读说明:本技术 具有防油溅板的线性压缩机 (Linear compressor with oil splash prevention plate ) 是由 威廉·格雷戈里·哈恩 迪米特·乔拉科夫 于 2020-04-15 设计创作,主要内容包括:一种线性压缩机,包括壳体(102),该壳体(102)限定用于收集润滑剂的贮槽(202)和用于将制冷剂流接收到壳体(102)中的吸入口(220)。泵(206)使润滑剂在壳体(102)内循环以便润滑活塞(130),该活塞(130)可沿着轴向移动,以压缩制冷剂流。挠性安装件(160)联接到活塞(130),并且限定用于接收制冷剂流的通道入口(230)。防溅板(240)沿着竖向设置在通道入口(230)与泵入口(208)之间的壳体内,以防止油夹带到制冷剂流中。(A linear compressor includes a shell (102), the shell (102) defining a sump (202) for collecting lubricant and a suction port (220) for receiving a flow of refrigerant into the shell (102). A pump (206) circulates lubricant within the housing (102) to lubricate the piston (130), the piston (130) being axially movable to compress the flow of refrigerant. A flexible mount (160) is coupled to the piston (130) and defines a channel inlet (230) for receiving a flow of refrigerant. A splash plate (240) is vertically disposed within the housing between the channel inlet (230) and the pump inlet (208) to prevent oil from being entrained into the refrigerant flow.)

A linear compressor defining an axial direction and a vertical direction, the linear compressor comprising:

a housing defining a sump for collecting lubricant and a suction inlet for receiving a flow of refrigerant into the housing;

a pump for circulating the lubricant within the housing, the pump including a pump inlet disposed within the sump;

a piston movable within a chamber along the axial direction to compress the flow of refrigerant;

a flexible mount coupled to the piston and defining a channel in fluid communication with the chamber and a channel inlet for receiving the flow of refrigerant from the suction inlet and into the channel; and

a splash plate disposed within the housing along the vertical direction between the passage inlet and the pump inlet.

The linear compressor of claim 1, wherein the splash plate is mounted on the housing below the suction inlet.

The linear compressor of claim 1, wherein the splash plate is disposed above a maximum oil fill line of the shell.

The linear compressor of claim 1, wherein the piston reciprocates along the axial direction between a top-dead-center position and a bottom-dead-center position, and wherein the passage inlet is disposed above the splash plate when the piston is in the top-dead-center position.

The linear compressor of claim 1, wherein the splash plate defines a depth measured along the axial direction, wherein the depth is greater than a stroke length of the piston.

The linear compressor of claim 1, wherein the splash plate is arcuate.

The linear compressor of claim 1, wherein the splash plate extends around the entire channel inlet.

The linear compressor of claim 1, wherein the splash plate defines a width measured perpendicular to the axial direction in a horizontal plane, the width being greater than an inlet diameter of the channel inlet.

The linear compressor of claim 1, wherein the splash plate is formed of metal.

The linear compressor of claim 1, wherein the splash plate is formed of a thermoplastic.

The linear compressor of claim 1, wherein the suction inlet and the channel inlet are disposed in a same horizontal plane.

The linear compressor of claim 1, wherein the suction inlet and the passage inlet are disposed at a midpoint of the housing along the vertical direction.

The linear compressor of claim 1, wherein the axial direction is perpendicular to the vertical direction.

The linear compressor of claim 1, wherein the splash plate is closer to the passage inlet than to the pump inlet.

A linear compressor defining an axial direction and a vertical direction, the linear compressor comprising:

a housing including a cylinder defining a chamber;

a piston movable within the chamber along the axial direction to compress a flow of refrigerant;

a channel inlet for receiving the flow of refrigerant from the suction inlet;

a pump for circulating the lubricant within the housing, the pump including a pump inlet; and

a splash plate disposed within the housing along the vertical direction between the passage inlet and the pump inlet.

The linear compressor of claim 15, further comprising:

a housing defining a sump for collecting lubricant and a suction port for receiving a flow of refrigerant into the housing, wherein the splash plate is mounted on the housing below the suction port.

The linear compressor of claim 16, wherein the suction inlet and the channel inlet are disposed in the same horizontal plane.

The linear compressor of claim 15, wherein the splash plate defines a depth measured along the axial direction, wherein the depth is greater than a stroke length of the piston.

The linear compressor of claim 15, wherein the splash plate is arcuate.

The linear compressor of claim 15, wherein the splash plate defines a width measured perpendicular to the axial direction in a horizontal plane, the width being greater than an inlet diameter of the channel inlet.

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