CN205970732U - Idle call compressor exhaust pipe damping structure - Google Patents
Idle call compressor exhaust pipe damping structure Download PDFInfo
- Publication number
- CN205970732U CN205970732U CN201620979311.1U CN201620979311U CN205970732U CN 205970732 U CN205970732 U CN 205970732U CN 201620979311 U CN201620979311 U CN 201620979311U CN 205970732 U CN205970732 U CN 205970732U
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- sections
- pipelines
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- sections pipelines
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Abstract
The utility model discloses an idle call compressor exhaust pipe damping structure, including nine sections pipelines that interconnect, be one section pipeline, two -stage process pipeline, three -section pipeline, four sections pipelines, five sections pipelines, six sections pipelines, seven sections pipelines, eight sections pipelines and nine sections pipelines respectively, one of them section pipeline, three -section pipeline, five sections pipelines, six sections pipelines, seven sections pipelines, eight sections pipelines and nine sections pipelines are the straight tube, and two -stage process pipeline and four sections pipelines are the semicircle pipe, and one section pipeline is connected with the gas vent of compressor, and nine sections pipelines are connected with the air inlet of evaporimeter. Compared with the prior art, the utility model discloses to the unfixed mode of blast pipe adoption, make its vibration energy freely disperse, avoid pipeline vibration to transmit to the air conditioner drain pan, arouse the vibration of compressor and evaporimeter.
Description
Technical field
This utility model belongs to car air-conditioner technical field and in particular to a kind of compressor exhaustor vibration damping is tied
Structure.
Background technology
With the continuous improvement of living standard, the demand travelled outdoors gets more and more, and it is required that small-sized caravan is increasingly becoming
Product.The research of caravan air-conditioning starts climax in air conditioning for automobiles industry.Caravan air-conditioning due to being related to the demand of evening in-car sleep,
Vibrating noise requirement to air-conditioning is higher.And cold-producing medium is compressed into gases at high pressure after compressor, gases at high pressure flow velocity is fast,
Impulsive force is big, leads to compressor of air conditioner and vaporizer to produce very big vibration, noise is very big.
Utility model content
The technical problems to be solved in the utility model is that cold-producing medium is compressed into gases at high pressure, high pressure gas after compressor
Rate of flow of fluid is fast, and impulsive force is big, leads to compressor of air conditioner and vaporizer to produce very big vibration, noise is very big, for solving above-mentioned asking
Topic, this utility model provides a kind of compressor exhaustor vibration-proof structure.
The purpose of this utility model is realized in the following manner:
A kind of compressor exhaustor vibration-proof structure, including the pipelines of nine sections of interconnections, respectively one section pipeline,
Two-stage nitration pipeline, three sections of pipelines, four sections of pipelines, five sections of pipelines, six sections of pipelines, seven sections of pipelines, eight sections of pipelines and nine sections of pipelines, wherein
One section of pipeline, three sections of pipelines, five sections of pipelines, six sections of pipelines, seven sections of pipelines, eight sections of pipelines and nine sections of pipelines are straight tube, two-stage nitration pipe
Road and four sections of pipelines are semi-circular tube, and one section of pipeline is connected with the air vent of compressor, and the air inlet of nine sections of pipelines and vaporizer is even
Connect;
Between one section of pipeline and two-stage nitration pipeline, between two-stage nitration pipeline and three sections of pipelines, between three sections of pipelines and four sections of pipelines
And be directly connected between four sections of pipelines and five sections of pipelines, between five sections of pipelines and six sections of pipelines, six sections of pipelines and seven sections of pipelines
Between, connected by arc transition between seven sections of pipelines and eight sections of pipelines and between eight sections of pipelines and nine sections of pipelines;
One section of pipeline, three sections of pipelines, five sections of pipelines and seven sections of pipelines are parallel to each other, and five sections of pipelines and six sections of pipelines hang down mutually
Directly, seven sections of pipelines and eight sections of pipelines are orthogonal, and eight sections of pipelines and nine sections of pipelines are orthogonal;
One section of pipeline, two-stage nitration pipeline, three sections of pipelines, four sections of pipelines, five sections of pipelines, six sections of pipelines and seven sections of pipelines are same
In plane I, perpendicular to plane I, in plane II, plane I and plane II are parallel to each other for nine sections of pipelines for eight sections of pipelines.
The radius of the circle of described two-stage nitration pipeline and four sections of pipelines is the radius of circle determined by semi-circular tube centrage, one section of pipe
The length on road is 130 ± 10mm with the radius sum of two-stage nitration pipeline, the radius of two-stage nitration pipeline, the length of three sections of pipelines and four sections of pipes
The radius sum on road be 55 ± 5mm, four sections of pipelines semi arch fixed point center line between the center line of six sections of pipelines vertical away from
From for 100 ± 10mm, the center line of the five sections of pipelines vertical dimension between the center line of seven sections of pipelines is 80 ± 10mm;Nine sections are managed
Road moves in plane I, and the distance between center line of the center line of six sections of pipelines to nine sections of pipelines is 70 ± 5mm.
With respect to prior art, this utility model adopts unfixed mode so as to vibrational energy is freely sent out to exhaustor
Dissipate, it is to avoid pipeline vibration is transferred to air-conditioning drain pan, causes the vibration of compressor and vaporizer.
Brief description
Fig. 1 is structural representation of the present utility model.
Fig. 2 is top view of the present utility model.
Wherein, 1 is one section of pipeline;2 is two-stage nitration pipeline;3 is three sections of pipelines;4 is four sections of pipelines;5 is five sections of pipelines;6 are
Six sections of pipelines;7 is seven sections of pipelines;8 is eight sections of pipelines;9 is nine sections of pipelines.
Specific embodiment
As shown in accompanying drawing 1-2, a kind of compressor exhaustor vibration-proof structure, including the pipeline of nine sections of interconnections,
Be respectively one section of pipeline 1,4, five sections of pipelines of 3, four sections of pipelines of 2, three sections of pipelines of two-stage nitration pipeline, 6, seven sections of pipelines 7 of 5, six sections of pipelines,
Eight sections of pipelines 8 and nine sections of pipelines 9,3, five sections of pipelines of 1, three sections of pipelines of wherein one section pipeline, 6, seven sections of pipelines 7, eight of 5, six sections of pipelines
Duan Guanlu 8 and nine sections of pipelines 9 are straight tube, and two-stage nitration pipeline 2 and four sections of pipelines 4 are semi-circular tube, the aerofluxuss of one section of pipeline 1 and compressor
Mouth connects, and nine sections of pipelines 9 are connected with the air inlet of vaporizer;
Between one section of pipeline 1 and two-stage nitration pipeline 2, between two-stage nitration pipeline 2 and three sections of pipelines 3, three sections of pipelines 3 and four sections of pipelines
It is directly connected between 4 and between four sections of pipelines 4 and five sections of pipelines 5, between five sections of pipelines 5 and six sections of pipelines 6, six sections of pipelines 6
Pass through circular arc and seven sections of pipelines 7 between, between seven sections of pipelines 7 and eight sections of pipelines 8 and between eight sections of pipelines 8 and nine sections of pipelines 9
Transition connects;
One section of pipeline, 3, five sections of pipelines 5 of 1, three sections of pipelines and seven sections of pipelines 7 are parallel to each other, five sections of pipelines 5 and six sections of pipelines 6
Orthogonal, seven sections of pipelines 7 and eight sections of pipelines 8 orthogonal, eight sections of pipelines 8 and nine sections of pipelines 9 orthogonal;
One section of pipeline 1,3, four sections of pipelines of 2, three sections of pipelines of two-stage nitration pipeline, 5, six sections of pipelines 6 of 4, five sections of pipelines and seven sections of pipelines
7 in same plane I, and, perpendicular to plane I, in plane II, plane I is mutually equal with plane II for nine sections of pipelines 9 for eight sections of pipelines 8
OK.
The radius of the circle of two-stage nitration pipeline 2 and four sections of pipelines 4 is the radius of circle determined by semi-circular tube centrage, one section of pipeline
1 length is 130 ± 10mm with the radius sum of two-stage nitration pipeline 2, the radius of two-stage nitration pipeline 2, the length of three sections of pipelines 3 and four sections
The radius sum of pipeline 4 is 55 ± 5mm, center line the hanging down between the center line of six sections of pipelines 6 of the semi arch fixed point of four sections of pipelines 4
Straight distance is 100 ± 10mm, and the center line of five sections of pipelines 5 vertical dimension between the center line of seven sections of pipelines 7 is 80 ± 10mm;Will
Nine sections of pipelines 9 move in plane I, and the distance between center line of the center line of six sections of pipelines 6 to nine sections of pipelines 9 is 70 ± 5mm.
Work process of the present utility model is as follows:The vibration-proof structure that this utility model is provided is connected to the aerofluxuss of compressor
Mouthful and the air inlet of vaporizer between, to its using unfixed mode so as to vibrational energy freely dissipates, it is to avoid pipeline vibration
It is transferred to air-conditioning drain pan, cause the vibration of compressor and vaporizer.
Above-described is only preferred implementation of the present utility model it is noted that for those skilled in the art
For, under the premise of without departing from this utility model general idea, some changes and improvements can also be made, these also should be considered as
Protection domain of the present utility model.
Claims (2)
1. a kind of compressor exhaustor vibration-proof structure it is characterised in that:Including nine sections interconnection pipelines, respectively
One section of pipeline(1), two-stage nitration pipeline(2), three sections of pipelines(3), four sections of pipelines(4), five sections of pipelines(5), six sections of pipelines(6), seven sections
Pipeline(7), eight sections of pipelines(8)With nine sections of pipelines(9), wherein one section pipeline(1), three sections of pipelines(3), five sections of pipelines(5), six sections
Pipeline(6), seven sections of pipelines(7), eight sections of pipelines(8)With nine sections of pipelines(9)For straight tube, two-stage nitration pipeline(2)With four sections of pipelines(4)For
Semi-circular tube, one section of pipeline(1)It is connected with the air vent of compressor, nine sections of pipelines(9)It is connected with the air inlet of vaporizer;
One section of pipeline(1)With two-stage nitration pipeline(2)Between, two-stage nitration pipeline(2)With three sections of pipelines(3)Between, three sections of pipelines(3)With four
Duan Guanlu(4)Between and four sections of pipelines(4)With five sections of pipelines(5)Between be directly connected to, five sections of pipelines(5)With six sections of pipelines
(6)Between, six sections of pipelines(6)With seven sections of pipelines(7)Between, seven sections of pipelines(7)With eight sections of pipelines(8)Between and eight sections of pipelines
(8)With nine sections of pipelines(9)Between connected by arc transition;
One section of pipeline(1), three sections of pipelines(3), five sections of pipelines(5)With seven sections of pipelines(7)Parallel to each other, five sections of pipelines(5)With six
Duan Guanlu(6)Orthogonal, seven sections of pipelines(7)With eight sections of pipelines(8)Orthogonal, eight sections of pipelines(8)With nine sections of pipelines(9)Mutually
Perpendicular;
One section of pipeline(1), two-stage nitration pipeline(2), three sections of pipelines(3), four sections of pipelines(4), five sections of pipelines(5), six sections of pipelines(6)With
Seven sections of pipelines(7)In same plane I, eight sections of pipelines(8)Perpendicular to plane I, nine sections of pipelines(9)In plane II, plane I He
Plane II is parallel to each other.
2. compressor exhaustor vibration-proof structure according to claim 1 it is characterised in that:Described two-stage nitration pipeline
(2)With four sections of pipelines(4)Circle radius be semi-circular tube centrage determined by circle radius, one section of pipeline(1)Length with
Two-stage nitration pipeline(2)Radius sum be 130 ± 10mm, two-stage nitration pipeline(2)Radius, three sections of pipelines(3)Length and four sections pipe
Road(4)Radius sum be 55 ± 5mm, four sections of pipelines(4)Semi arch fixed point center line to six sections of pipelines(6)Center line between
Vertical dimension be 100 ± 10mm, five sections of pipelines(5)Center line to seven sections of pipelines(7)Center line between vertical dimension be 80
±10mm;By nine sections of pipelines(9)Move in plane I, six sections of pipelines(6)Center line to nine sections of pipelines(9)Center line between
Distance is 70 ± 5mm.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201620979311.1U CN205970732U (en) | 2016-08-30 | 2016-08-30 | Idle call compressor exhaust pipe damping structure |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201620979311.1U CN205970732U (en) | 2016-08-30 | 2016-08-30 | Idle call compressor exhaust pipe damping structure |
Publications (1)
Publication Number | Publication Date |
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CN205970732U true CN205970732U (en) | 2017-02-22 |
Family
ID=58041281
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN201620979311.1U Expired - Fee Related CN205970732U (en) | 2016-08-30 | 2016-08-30 | Idle call compressor exhaust pipe damping structure |
Country Status (1)
Country | Link |
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CN (1) | CN205970732U (en) |
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN112228314A (en) * | 2020-09-15 | 2021-01-15 | 珠海格力电器股份有限公司 | Novel piping and derivative structure of exhaust pipe, passenger car air conditioner compressor and simulation method |
-
2016
- 2016-08-30 CN CN201620979311.1U patent/CN205970732U/en not_active Expired - Fee Related
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN112228314A (en) * | 2020-09-15 | 2021-01-15 | 珠海格力电器股份有限公司 | Novel piping and derivative structure of exhaust pipe, passenger car air conditioner compressor and simulation method |
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Legal Events
Date | Code | Title | Description |
---|---|---|---|
C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20170222 Termination date: 20200830 |