KR100425843B1 - Apparatus for protecting cylinder defomation for compressor - Google Patents
Apparatus for protecting cylinder defomation for compressor Download PDFInfo
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- KR100425843B1 KR100425843B1 KR10-2001-0068916A KR20010068916A KR100425843B1 KR 100425843 B1 KR100425843 B1 KR 100425843B1 KR 20010068916 A KR20010068916 A KR 20010068916A KR 100425843 B1 KR100425843 B1 KR 100425843B1
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- bearing plate
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Classifications
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F04—POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
- F04C—ROTARY-PISTON, OR OSCILLATING-PISTON, POSITIVE-DISPLACEMENT MACHINES FOR LIQUIDS; ROTARY-PISTON, OR OSCILLATING-PISTON, POSITIVE-DISPLACEMENT PUMPS
- F04C18/00—Rotary-piston pumps specially adapted for elastic fluids
- F04C18/30—Rotary-piston pumps specially adapted for elastic fluids having the characteristics covered by two or more of groups F04C18/02, F04C18/08, F04C18/22, F04C18/24, F04C18/48, or having the characteristics covered by one of these groups together with some other type of movement between co-operating members
- F04C18/34—Rotary-piston pumps specially adapted for elastic fluids having the characteristics covered by two or more of groups F04C18/02, F04C18/08, F04C18/22, F04C18/24, F04C18/48, or having the characteristics covered by one of these groups together with some other type of movement between co-operating members having the movement defined in group F04C18/08 or F04C18/22 and relative reciprocation between the co-operating members
- F04C18/356—Rotary-piston pumps specially adapted for elastic fluids having the characteristics covered by two or more of groups F04C18/02, F04C18/08, F04C18/22, F04C18/24, F04C18/48, or having the characteristics covered by one of these groups together with some other type of movement between co-operating members having the movement defined in group F04C18/08 or F04C18/22 and relative reciprocation between the co-operating members with vanes reciprocating with respect to the outer member
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F04—POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
- F04B—POSITIVE-DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS
- F04B39/00—Component parts, details, or accessories, of pumps or pumping systems specially adapted for elastic fluids, not otherwise provided for in, or of interest apart from, groups F04B25/00 - F04B37/00
- F04B39/0027—Pulsation and noise damping means
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F04—POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
- F04C—ROTARY-PISTON, OR OSCILLATING-PISTON, POSITIVE-DISPLACEMENT MACHINES FOR LIQUIDS; ROTARY-PISTON, OR OSCILLATING-PISTON, POSITIVE-DISPLACEMENT PUMPS
- F04C29/00—Component parts, details or accessories of pumps or pumping installations, not provided for in groups F04C18/00 - F04C28/00
- F04C29/06—Silencing
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F04—POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
- F04C—ROTARY-PISTON, OR OSCILLATING-PISTON, POSITIVE-DISPLACEMENT MACHINES FOR LIQUIDS; ROTARY-PISTON, OR OSCILLATING-PISTON, POSITIVE-DISPLACEMENT PUMPS
- F04C2230/00—Manufacture
- F04C2230/20—Manufacture essentially without removing material
- F04C2230/23—Manufacture essentially without removing material by permanently joining parts together
- F04C2230/231—Manufacture essentially without removing material by permanently joining parts together by welding
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F04—POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
- F04C—ROTARY-PISTON, OR OSCILLATING-PISTON, POSITIVE-DISPLACEMENT MACHINES FOR LIQUIDS; ROTARY-PISTON, OR OSCILLATING-PISTON, POSITIVE-DISPLACEMENT PUMPS
- F04C2240/00—Components
- F04C2240/50—Bearings
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- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- General Engineering & Computer Science (AREA)
- Applications Or Details Of Rotary Compressors (AREA)
Abstract
본 발명은 압축기의 실린더 변형 방지 장치에 관한 것으로, 본 발명은 전동기구부와 이 전동기구부에 회전축으로 연결하여 유체를 흡입 압축하도록 압축기구부를 함께 내장한 케이싱과, 케이싱의 내부에 장착하여 압축기구부의 밀폐공간을 형성하고 회전축에 결합한 회전체를 수용하여 반경방향으로 지지하는 실린더와, 실린더의 일 측면에 고정하여 함께 밀폐공간을 형성하고 그 일 측에 토출밸브에 의해 개폐되는 토출구멍을 구비하여 회전체를 축방향으로 지지하는 제1 베어링 플레이트와, 실린더의 타 측면에 고정하여 함께 밀폐공간을 형성하고 그 외주면을 케이싱의 내주면에 용접 고정하는 제2 베어링 플레이트로 구성함으로써, 실린더의 열변형을 줄여 냉매가스의 누설을 방지하고 이를 통해 압축기 효율을 높일 수 있다.The present invention relates to an apparatus for preventing deformation of a cylinder of a compressor. The present invention relates to an electric mechanism unit and a casing having a compression mechanism coupled together with a rotary shaft to suck and compress a fluid, and mounted inside the casing. It includes a cylinder that forms a sealed space and accommodates the rotating body coupled to the rotating shaft to support in a radial direction, and a discharge hole that is fixed to one side of the cylinder together to form a sealed space and opened and closed by a discharge valve on one side thereof. The first bearing plate supporting the whole in the axial direction and the second bearing plate fixing together the other side of the cylinder to form a closed space and welding the outer circumferential surface to the inner circumferential surface of the casing reduce the thermal deformation of the cylinder. It is possible to prevent the leakage of refrigerant gas and thereby increase the compressor efficiency.
또, 각 부재간 미끄럼운동을 원활하게 유지함과 아울러 그 지지점을 낮춰 압축기 진동과 이로 인한 소음을 효과적으로 억제할 수 있다.In addition, the sliding movement between the members can be smoothly maintained, and the support point thereof can be lowered to effectively suppress the compressor vibration and the noise caused by the compressor.
Description
본 발명은 압축기의 실린더 변형 방지 장치에 관한 것으로, 보다 상세하게는 실린더를 고정하기 위한 용접시 실린더가 용접열에 의해 열변형하는 것을 줄일 수 있는 압축기의 실린더 변형 방지 장치에 관한 것이다.The present invention relates to an apparatus for preventing deformation of a cylinder of a compressor, and more particularly, to an apparatus for preventing deformation of a cylinder of a compressor that can reduce the deformation of a cylinder by welding heat during welding for fixing the cylinder.
일반적으로 압축기에서 압축기 성능을 높이지 못하는 이유 중에 하나는 조립시 또는 운전시 발생하는 각 부품들의 변형 때문이다. 특히, 밀폐공간을 형성하는 실린더의 변형은 가스의 누설이나 미끄럼부의 마모 등을 야기시켜 압축기 성능을 저하시킨다.In general, one of the reasons why the compressor can not improve the performance of the compressor is due to the deformation of each component during assembly or operation. In particular, deformation of the cylinder forming the closed space causes gas leakage, wear of the sliding portion, and the like, thereby degrading the compressor performance.
따라서, 고효율,저소음,저진동의 압축기를 위하기 제공하기 위하여는 각 부재의 조립시 또는 운전시 변형을 최소화할 수 있는 방안이 마련되어야 한다.Therefore, in order to provide a compressor for high efficiency, low noise and low vibration, a method for minimizing deformation during assembly or operation of each member should be prepared.
도 1은 종래 로터리 압축기의 일례를 보인 종단면도이다.1 is a longitudinal sectional view showing an example of a conventional rotary compressor.
이에 도시한 바와 같이 종래의 로터리 압축기는, 소정량의 오일이 채우고 흡입관(SP)과 토출관(DP)을 구비하는 케이싱(1)의 내부에 전동기구부인 고정자(2) 및 회전자(3)를 설치하고, 그 중 회전자(3)의 중심에는 회전축(4)을 압입하며, 회전축(4)의 하부에는 냉매가스를 흡입 압축하는 압축기구부를 설치하여 이루어져 있다.As shown in the drawing, the conventional rotary compressor includes a stator 2 and a rotor 3 which are electric motor parts inside a casing 1 filled with a predetermined amount of oil and having a suction pipe SP and a discharge pipe DP. In the center of the rotor (3) of the rotary shaft 4 is installed, the lower portion of the rotary shaft (4) consists of a compression mechanism for suction compression of the refrigerant gas.
압축기구부는 케이싱(1)의 내주면에 용접 고정하여 흡입관(SP)과 연통하는 원형의 실린더(5)와, 실린더(5)의 양측면에 밀착하는 동시에 회전축(4)이 관통하여지지되는 제2 베어링 플레이트(6A) 및 제2 베어링 플레이트(6B)과, 회전축(4)에 접동하여 자전하면서 실린더(5)내에서 편심 회전하는 롤링피스톤(7)과, 롤링피스톤(7)의 외주면에 압접하여 롤링피스톤(7)의 선회운동시 직선운동을 하면서 실린더(5)를 흡입공간과 압축공간으로 구분하는 베인(도 2에 도시)(8)을 포함하여 이루어져 있다.The compression mechanism is welded and fixed to the inner circumferential surface of the casing 1 to form a circular cylinder 5 which communicates with the suction pipe SP, and a second bearing that is in close contact with both sides of the cylinder 5 and is supported by the rotating shaft 4. The plate 6A and the second bearing plate 6B, the rolling piston 7 which eccentrically rotates in the cylinder 5 while rotating in rotation with the rotating shaft 4 and the outer circumferential surface of the rolling piston 7, It comprises a vane (shown in Figure 2) (8) for dividing the cylinder 5 into a suction space and a compression space while performing a linear movement during the pivoting movement of the piston (7).
도면중 미설명 부호인 5a는 베인슬롯, 6a는 토출구멍, 9은 토출밸브 조립체이다.In the figure, reference numeral 5a denotes a vane slot, 6a denotes a discharge hole, and 9 denotes a discharge valve assembly.
상기와 같이 구성된 종래의 로터리 압축기의 동작은 다음과 같다.Operation of the conventional rotary compressor configured as described above is as follows.
즉, 고정자(2)에 전원을 인가하면 회전자(3)가 고정자(2)의 내부에서 회전하고, 이와 함께 회전축(4)이 회전하면서 롤링피스톤(7)이 실린더(5)내에서 편심 회전하며, 롤링피스톤(7)의 편심회전에 따라 냉매가스가 실린더(5)의 흡입공간으로 흡입되었다가 일정압력까지 지속적으로 압축되고, 실린더(5)의 압축공간 압력이 임계압력을 지나 케이싱(1)내의 압력보다 고압이 되는 순간 제2 베어링 플레이트(6A)에 장착한 토출밸브(9)가 열리면서 압축가스가 압축공간에서 케이싱(1)의 내부로 토출되며, 토출가스는 케이싱(1)과 고정자(2) 사이의 틈새 또는 고정자(2)와 회전자(3) 사이의 틈새 등을 통해 상부로 이동하여 토출관(DP)을 거쳐 냉동사이클시스템으로 배출하는 것이었다.That is, when power is applied to the stator 2, the rotor 3 rotates inside the stator 2, and the rotating shaft 4 rotates with the rolling piston 7 eccentrically rotating in the cylinder 5. In addition, the refrigerant gas is sucked into the suction space of the cylinder (5) in accordance with the eccentric rotation of the rolling piston (7) is continuously compressed to a constant pressure, the pressure of the compression space of the cylinder (5) passes the critical pressure of the casing (1) At the moment when the pressure is higher than the pressure in the cylinder, the discharge valve 9 mounted on the second bearing plate 6A is opened, and compressed gas is discharged into the casing 1 in the compression space, and the discharge gas is discharged from the casing 1 and the stator. (2) moved upward through the gap between the stator 2 and the rotor 3, and discharged to the refrigeration cycle system via the discharge pipe DP.
그러나, 상기와 같은 종래 로터리 압축기에 있어서는, 실린더(5)를 케이싱(1)에 용접으로 고정하는데, 이 경우에 용접열로 인해 도 2에서와 같이 실린더(5)가 열변형을 일으켜 베인슬롯(5a)이 변형되면서 베인(8)의 왕복운동이 원활하지 못해 가스의 누설이나 마모가 발생하고 이로 인한 압축기의 진동/소음 등을 야기하는 문제점이 있었다.However, in the conventional rotary compressor as described above, the cylinder 5 is fixed to the casing 1 by welding. In this case, due to the heat of welding, the cylinder 5 undergoes thermal deformation as shown in FIG. As 5a) is deformed, the reciprocation of the vanes 8 is not smooth, causing leakage or abrasion of gas, thereby causing vibration / noise of the compressor.
본 발명은 상기와 같은 종래 로터리 압축기가 가지는 문제점을 감안하여 안출한 것으로, 실린더를 조립시 용접열에 의해 그 실린더가 변형하는 것을 방지할 수 있는 압축기의 실린더 변형 방지 장치를 제공하려는데 본 발명의 목적이 있다.The present invention has been made in view of the above problems of the conventional rotary compressor, and to provide a cylinder deformation preventing device of the compressor which can prevent the cylinder from deforming by welding heat when assembling the cylinder. have.
도 1은 종래 로터리 압축기의 일례를 보인 종단면도.1 is a longitudinal sectional view showing an example of a conventional rotary compressor.
도 2는 종래 로터리 압축기에서 실린더가 변형된 상태를 보인 평면도.Figure 2 is a plan view showing a state in which the cylinder is deformed in the conventional rotary compressor.
도 3은 본 발명 로터리 압축기의 일례를 보인 종단면도.Figure 3 is a longitudinal sectional view showing an example of the rotary compressor of the present invention.
도 4는 도 3의 "A"부에 대한 일례를 상세히 보인 종단면도.4 is a longitudinal cross-sectional view showing an example of the portion “A” of FIG. 3 in detail;
도 5는 도 3의 "A"부에 대한 변형예를 상세히 보인 종단면도.FIG. 5 is a longitudinal sectional view showing details of a modification of the portion “A” of FIG. 3. FIG.
도 6은 본 발명 압축기의 실린더 변형 방지 장치를 로터리 압축기에 장착한 경우 성능과 진동의 변화를 보인 그래프.6 is a graph showing changes in performance and vibration when the cylinder deformation preventing device of the compressor of the present invention is mounted on a rotary compressor.
** 도면의 주요 부분에 대한 부호의 설명 **** Description of symbols for the main parts of the drawing **
1 : 케이싱 5 : 실린더1: casing 5: cylinder
11 : 제1 베어링 플레이트 12 : 제2 베어링 플레이트11: first bearing plate 12: second bearing plate
12b : 용접돌부12b: welding protrusion
본 발명의 목적을 달성하기 위하여, 전동기구부와 이 전동기구부에 회전축으로 연결하여 유체를 흡입 압축하도록 압축기구부를 함께 내장한 케이싱과, 케이싱의 내부에 장착하여 압축기구부의 밀폐공간을 형성하고 회전축에 결합한 회전체를 수용하여 반경방향으로 지지하는 실린더와, 회전체를 축방향으로 지지하도록 실린더의 상하 양 측면에 결합하여 함께 밀폐공간을 형성하고 그 중 적어도 어느 한 쪽은 케이싱의 내주면에 용접 고정하는 복수 개의 베어링 플레이트로 구성한 것을 특징으로 하는 압축기의 실린더 변형 방지 장치를 제공한다.In order to achieve the object of the present invention, a casing having a compression mechanism coupled to the electric mechanism unit and connected to the electric shaft by a rotating shaft, and attached to the inside of the casing to form a closed space of the compression mechanism, and to the rotating shaft A cylinder for receiving and supporting the combined rotating body in the radial direction, and coupled to the upper and lower sides of the cylinder to support the rotating body in the axial direction together to form a sealed space, at least one of which is weld fixed to the inner peripheral surface of the casing Provided is a cylinder deformation preventing device of a compressor, comprising a plurality of bearing plates.
또, 전동기구부와 이 전동기구부에 회전축으로 연결하여 유체를 흡입 압축하도록 압축기구부를 함께 내장한 케이싱과, 케이싱의 내부에 장착하여 압축기구부의 밀폐공간을 형성하고 회전축에 결합한 회전체를 수용하여 반경방향으로 지지하는 실린더와, 실린더의 일 측면에 고정하여 함께 밀폐공간을 형성하고 그 일 측에 토출밸브에 의해 개폐되는 토출구멍을 구비하여 회전체를 축방향으로 지지하는 제1 베어링 플레이트와, 실린더의 타 측면에 고정하여 함께 밀폐공간을 형성하고 그 외주면을 케이싱의 내주면에 용접 고정하는 제2 베어링 플레이트로 구성한 것을 특징으로 하는 압축기의 실린더 변형 방지 장치를 제공한다.In addition, a casing having a compression mechanism coupled to the electric mechanism unit and connected to the transmission mechanism by suction shaft, and a rotating body coupled to the rotation shaft to form a closed space mounted inside the casing to form a sealed space in the casing A first bearing plate for supporting the rotating body in an axial direction by having a cylinder supporting in the direction, a discharge hole fixed to one side of the cylinder to form a closed space together and opening and closing on one side thereof by a discharge valve; It is fixed to the other side of the to provide a closed space together and provides a cylinder deformation preventing device of the compressor comprising a second bearing plate for welding the outer peripheral surface to the inner peripheral surface of the casing.
이하, 본 발명에 의한 압축기의 실린더 변형 방지 장치를 첨부도면에 도시한 일실시예에 의거하여 상세하게 설명한다.EMBODIMENT OF THE INVENTION Hereinafter, the cylinder deformation | transformation prevention apparatus of the compressor which concerns on this invention is demonstrated in detail based on one Example shown in an accompanying drawing.
도 3은 본 발명 로터리 압축기의 일례를 보인 종단면도이고, 도 4는 도 3의 "A"부에 대한 일례를 상세히 보인 종단면도이며, 도 5는 도 3의 "A"부에 대한 변형예를 상세히 보인 종단면도이다.Figure 3 is a longitudinal sectional view showing an example of the rotary compressor of the present invention, Figure 4 is a longitudinal sectional view showing an example of the "A" part of Figure 3 in detail, Figure 5 is a modified example of the "A" part of FIG. Longitudinal cross-sectional view shown in detail.
이에 도시한 바와 같이 본 발명에 의한 로터리 압축기는, 흡입관과 토출관을 구비한 케이싱(1)과, 케이싱(1)의 상반부에 장착하여 전동기구부를 이루는 고정자(2) 및 회전자(3)와, 회전자(13)에 결합하여 전동기구부의 회전력을 압축기구부로 전달하는 회전축(4)과, 케이싱(1)의 하반부에 위치하여 압축기구부의 밀폐공간을 형성하는 실린더(5)와, 실린더(5)의 상하 양 측면에 결합하여 회전축(4)을 지지하는 제1 베어링 플레이트(11) 및 제2 베어링 플레이트(12)와, 회전축(4)에 접동하여 자전하면서 실린더(5)내에서 편심 회전하는 롤링피스톤(7)과, 롤링피스톤(7)의 외주면에 압접하여 롤링피스톤(7)의 선회운동시 직선운동을 하면서 실린더(5)를 흡입공간과 압축공간으로 구분하는 베인(도 2에 도시)(8)을 포함한다.As shown in the drawing, the rotary compressor according to the present invention includes a casing 1 having a suction pipe and a discharge pipe, a stator 2 and a rotor 3 attached to an upper half of the casing 1 to form an electric mechanism. A cylinder 5 coupled to the rotor 13 to transmit the rotational force of the electric mechanism to the compression mechanism, a cylinder 5 positioned at the lower half of the casing 1 to form a closed space of the compression mechanism, and a cylinder ( 5) the first bearing plate 11 and the second bearing plate 12 coupled to the upper and lower sides and supporting the rotating shaft 4, and the eccentric rotation in the cylinder 5 while rotating in rotation with the rotating shaft 4; A vane for dividing the cylinder 5 into a suction space and a compression space while making a linear movement during the pivoting motion of the rolling piston 7 by contacting the rolling piston 7 and the outer circumferential surface of the rolling piston 7 (shown in FIG. 2). (8).
실린더(5)는 환형으로 형성하여 그 내주면 일측에는 베인(8)이 반경방향으로 이동할 수 있도록 베인슬롯(도 2에 도시)(5a)을 형성하고, 그 외주면은 도 4에서와 같이 케이싱(1)의 내주면에 접촉하거나 도 5에서와 같이 일정 간격을 두고 이격 배치하여 후술할 제2 베어링 플레이트(12)의 용접돌부(12b)에 감싸져 고정할 수도 있다.The cylinder 5 is formed in an annular shape and forms a vane slot (shown in FIG. 2) 5a on one side of its inner circumferential surface so that the vanes 8 can move in a radial direction, and the outer circumferential surface thereof has a casing 1 as shown in FIG. The inner circumferential surface of the) or may be spaced apart at regular intervals as shown in FIG. 5 to be wrapped and fixed in the weld protrusion 12b of the second bearing plate 12 to be described later.
제1 베어링 플레이트(11)는 그 외주면이 케이싱(1)의 내주면과 일정 간격으로 이격할 수 있도록 케이싱(1)의 내경 보다 작게 형성하고, 그 중앙에는 회전축(4)이 통과하는 축구멍(11a)을 베어링 돌부(미부호)와 함께 형성하며, 그 축구멍(11a)의 일 측에는 토출밸브 조립체(9)에 의해 개폐되는 토출구멍(11b)을 형성한다.The first bearing plate 11 is formed to be smaller than the inner diameter of the casing 1 so that its outer circumferential surface is spaced apart from the inner circumferential surface of the casing 1 at regular intervals, and in the center thereof, the shaft hole 11a through which the rotating shaft 4 passes. ) Is formed together with the bearing protrusions (not shown), and one side of the shaft hole (11a) is formed with a discharge hole (11b) that is opened and closed by the discharge valve assembly (9).
제2 베어링 플레이트(12)는 그 외주면이 케이싱의 내주면과 밀착하여 3점 용접으로 결합할 수 있도록 케이싱(1)의 내경과 거의 동일하게 형성하고, 그 중앙에는 회전축(4)이 통과하는 축구멍(12a)을 베어링 돌부(미부호)와 함께 형성한다.The second bearing plate 12 is formed to be substantially the same as the inner diameter of the casing 1 so that its outer circumferential surface is in close contact with the inner circumferential surface of the casing and can be joined by three-point welding, and at the center thereof, a shaft hole through which the rotating shaft 4 passes. (12a) is formed together with the bearing protrusion (unsigned).
또, 도 5에서와 같이 제2 베어링 플레이트(12)의 가장자리에는 케이싱(1)과의 용접강도를 높이고 실린더(5)를 수용하는 용접돌부(12b)를 형성하거나, 이와는 반대로 실린더(5)의 반대쪽으로 지지돌부(미도시)를 형성할 수도 있다.또, 실린더(5)의 외주면은 도 5에서와 같이 제2 베어링 플레이트(12)의 용접돌부(12a) 내주면과 소정의 간격을 가지도록 이격되어 고정하는 것이 제2 베어링 플레이트(12)의 용접돌부(12a)를 케이싱(1)에 용접할 때 그 용접돌부(12a)가 변형되면서 실린더(5)를 변형시키는 것을 미연에 방지할 수 있다.In addition, as shown in FIG. 5, a weld protrusion 12b is formed at the edge of the second bearing plate 12 to increase the welding strength with the casing 1 and to accommodate the cylinder 5, or vice versa. A support protrusion (not shown) may be formed on the opposite side. Further, the outer circumferential surface of the cylinder 5 is spaced apart from the inner circumferential surface of the welding protrusion 12a of the second bearing plate 12 at a predetermined distance as shown in FIG. 5. When the welding protrusion 12a of the second bearing plate 12 is welded to the casing 1, the fixing of the welding protrusion 12a may be prevented from being deformed while the welding protrusion 12a is deformed.
도면중 종래와 동일한 부분에 대하여는 동일한 부호를 부여하였다.In the drawings, the same reference numerals are given to the same parts as in the prior art.
상기와 같은 본 발명 압축기의 실린더 변형 방지 장치는 다음과 같은 작용 효과를 갖는다.The cylinder deformation preventing device of the compressor of the present invention as described above has the following effects.
즉, 압축기를 조립할 때 실린더(5)를 제2 베어링 플레이트(12)에 고정하여 그 제2 베어링 플레이트(12)를 케이싱(1)의 내주면에 용접 고정함에 따라 용접열이 실린더(5)로 곧바로 전달되는 것을 차단하므로 실린더(5)가 용접열에 의해 변형하는 것을 방지할 수 있다.That is, when assembling the compressor, the welding heat is directly directed to the cylinder 5 by fixing the cylinder 5 to the second bearing plate 12 and welding the second bearing plate 12 to the inner circumferential surface of the casing 1. Since the transmission is blocked, the cylinder 5 can be prevented from being deformed by the heat of welding.
또, 제2 베어링 플레이트(12)는 별도의 토출구멍이나 밸브시트 없이 거의 대칭구조를 형성함에 따라 3점 용접을 하더라도 항상 대칭적으로 변형하는 것은 물론 설사 비대칭적으로 변형하더라도 토출구멍의 위치와는 관계가 없어 압축가스의 누설에 따른 압축기 효율의 저하를 미연에 막을 수 있다.In addition, since the second bearing plate 12 forms a substantially symmetrical structure without a separate discharge hole or a valve seat, the second bearing plate 12 always deforms symmetrically even if it is three-point welded, and even if asymmetrically deformed, the second bearing plate 12 is different from the position of the discharge hole. It is possible to prevent the deterioration of the compressor efficiency due to leakage of the compressed gas.
또, 실린더(5)의 변형을 최대한 억제함에 따라 각 부재간 미끄럼운동이 원활하게 이루어지는 것은 물론 압축기구부가 정상적으로 운전함에 따라 냉매가스의 흡입과 압축 그리고 토출과정이 안정적으로 이루어져 압축기의 이상 진동과 이로 인한 이상 소음을 억제할 수 있다.In addition, as the deformation of the cylinder 5 is suppressed to the maximum, the sliding movement between the members is smoothly performed, and as the compressor mechanism is normally operated, the suction, compression, and discharge of the refrigerant gas are stable, thereby causing abnormal vibration of the compressor. Abnormal noise caused can be suppressed.
또, 실린더(5)의 하측에 위치하는 제2 베어링 플레이트(12)를 케이싱(1)에 용접 고정함에 따라 지지점의 위치가 실린더(5)의 아래쪽으로 옮겨지므로 그 만큼 압축기 진동에 대해 안전성을 높일 수 있다.In addition, since the position of the support point is moved to the lower side of the cylinder 5 by welding the second bearing plate 12 located below the cylinder 5 to the casing 1, the safety against the compressor vibration is increased accordingly. Can be.
이렇게 하여, 실린더의 열변형을 효과적으로 줄여 특히 베인의 왕복운동을 원할하게 유지하므로 냉매가스의 누설을 방지하고 이를 통해 압축기 효율을 높일 수 있다.In this way, it is possible to effectively reduce the thermal deformation of the cylinder to maintain a smooth reciprocating motion of the vanes in particular to prevent the leakage of refrigerant gas and thereby increase the compressor efficiency.
또, 실린더와 롤링피스톤 그리고 베인 사이의 미끄럼운동을 원활하게 유지함과 아울러 그 지지점을 낮춰 압축기 진동과 이로 인한 소음을 효과적으로 억제할 수 있다.In addition, the sliding movement between the cylinder, the rolling piston and the vane is smoothly maintained, and the support point is lowered, thereby effectively suppressing the compressor vibration and the resulting noise.
본 발명에 의한 압축기의 실린더 변형 방지 장치는, 실린더에 결합하여 함께 밀폐공간을 형성하며 회전체의 축방향을 지지하는 베어링 플레이트의 외주면을 케이싱에 용접 결합함으로써, 실린더의 열변형을 줄여 냉매가스의 누설을 방지하고이를 통해 압축기 효율을 높일 수 있다.The cylinder deformation preventing device of the compressor according to the present invention is coupled to the cylinder to form a closed space together by welding the outer peripheral surface of the bearing plate for supporting the axial direction of the rotating body to the casing, reducing the thermal deformation of the cylinder to reduce the refrigerant gas This can prevent leakage and increase compressor efficiency.
또, 각 부재간 미끄럼운동을 원활하게 유지함과 아울러 그 지지점을 낮춰 압축기 진동과 이로 인한 소음을 효과적으로 억제할 수 있다.In addition, the sliding movement between the members can be smoothly maintained, and the support point thereof can be lowered to effectively suppress the compressor vibration and the noise caused by the compressor.
Claims (6)
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Citations (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JPS63219895A (en) * | 1987-03-06 | 1988-09-13 | Hitachi Ltd | rotary compressor |
KR19990004457A (en) * | 1997-06-28 | 1999-01-15 | 배순훈 | Rotary compressor |
JPH11280670A (en) * | 1998-03-31 | 1999-10-15 | Fujitsu General Ltd | Enclosed type compressor |
JP2001132674A (en) * | 1999-11-04 | 2001-05-18 | Matsushita Electric Ind Co Ltd | Hermetic rotary compressor |
-
2001
- 2001-11-06 KR KR10-2001-0068916A patent/KR100425843B1/en not_active IP Right Cessation
Patent Citations (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JPS63219895A (en) * | 1987-03-06 | 1988-09-13 | Hitachi Ltd | rotary compressor |
KR19990004457A (en) * | 1997-06-28 | 1999-01-15 | 배순훈 | Rotary compressor |
JPH11280670A (en) * | 1998-03-31 | 1999-10-15 | Fujitsu General Ltd | Enclosed type compressor |
JP2001132674A (en) * | 1999-11-04 | 2001-05-18 | Matsushita Electric Ind Co Ltd | Hermetic rotary compressor |
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