Vibration reduction structure of refrigerator compressor
Technical Field
The utility model relates to the technical field of refrigerator compressor vibration reduction, in particular to a refrigerator compressor vibration reduction structure.
Background
Refrigerator compressor vibration reduction structures are typically designed to reduce vibration and noise generated during operation of the compressor to improve the stability and comfort of the refrigerator. Common vibration damping structures include:
The shock pad is arranged at the bottom of the refrigerator or the bottom of the compressor, is usually made of rubber or spring material, and can absorb vibration and reduce noise transmission.
Vibration isolation support, which is to install vibration isolation support or vibration isolation foot around the compressor, to reduce the vibration transmission to the bottom or other parts of the refrigerator by reducing the direct contact with the surrounding structure.
And the vibration damping gasket is added between the compressor and the refrigerator wall or between the compressor and the mounting base, so that the vibration damping gasket has the functions of buffering and damping and preventing vibration from spreading.
And the vibration isolation cover is used for designing the outer cover of the compressor, and the sound insulation material is filled in the vibration isolation cover, so that vibration can be isolated, noise can be reduced, and the overall comfort of the refrigerator is improved.
The flexible connecting pipe is adopted on the air inlet pipe and the air outlet pipe of the compressor, so that vibration and noise generated during the movement of the pipelines can be absorbed, and the influence of conduction to the refrigerator is reduced.
The vibration reduction structural design can effectively reduce the vibration and noise of the compressor, improve the use stability and comfort of the refrigerator, and protect the working state and service life of the compressor.
However, the vibration damping performance of the current compressor used for the refrigerator is low, especially when the compressor works at high frequency, the generated vibration can be transmitted to the whole machine through the base feet, so how to optimally upgrade the vibration damping structure of the base feet is a technical problem to be solved by the technicians in the field.
Disclosure of utility model
In view of the above, the utility model aims to solve the technical problem of providing a vibration reduction structure of a refrigerator compressor so as to improve the vibration reduction strength of a vibration reduction pad and ensure the overall working stability of the refrigerator compressor.
In order to achieve the aim, the utility model provides a refrigerator compressor vibration reduction structure, which comprises a base foot, a vibration reduction pad and a pressure cap;
The refrigerator seat comprises a refrigerator compressor, a refrigerator seat body and a refrigerator seat body, wherein the refrigerator compressor is characterized in that the refrigerator seat body is arranged side by side and connected to the bottom of the refrigerator compressor, the refrigerator seat body comprises a mounting plate, a connecting plate and fixing feet, the connecting plate is arranged on two sides of the mounting plate respectively, the fixing feet are connected to the connecting plate, and the mounting plate, the connecting plate and the fixing feet are integrally formed;
The mounting plate is provided with a first mounting hole and a second mounting hole, wherein the first mounting hole is arranged in the middle of the mounting plate, the two second mounting holes are arranged on two sides of the first mounting hole along the length direction of the mounting plate, and the vertical distance between the axis of the second mounting hole and the first edge of the mounting plate is smaller than the vertical distance between the axis of the first mounting hole and the first edge of the mounting plate;
The first edge is an edge, close to the inner side of the refrigerator compressor, of the mounting plate, the edge, far away from the inner side of the refrigerator compressor, of the mounting plate is a second edge, and the first edge and the second edge are both arranged in an extending mode along the length direction of the mounting plate;
The first edge is provided with a first flanging, the second edge is provided with a second flanging, and the length dimension of the first flanging is larger than that of the second flanging;
The connecting hole is formed in the fixing foot, the pressing cap is connected in the connecting hole, the vibration reduction pad is connected with the pressing cap, the connecting hole is conical and protrudes towards the vibration reduction pad, and the pressing cap is located above the connecting hole.
Further, an included angle between the mounting plate and the connecting plate is an obtuse angle.
Further, the inner diameter dimension of the connecting hole is smaller than the inner diameter dimension of the vibration reduction pad.
Further, the press cap is connected to the upper portion of the vibration-damping pad, and the connection hole is located between the vibration-damping pad and the press cap.
Further, the vibration reduction pad is made of rubber.
Compared with the prior art, the refrigerator compressor vibration reduction structure has the beneficial effects that the mounting plate is used for supporting the bottom of the refrigerator compressor, the first mounting holes and the second mounting holes which are different in vertical distance from the first edge are formed in the mounting plate, so that the mounting positions can be distributed at intervals along the width direction of the mounting plate, the first flanging and the second flanging are respectively formed in the first edge and the second edge of the mounting plate, the length dimension of the first flanging is larger than that of the second flanging, the mounting strength and the vibration resistance of the mounting plate close to the inner side are guaranteed, the connecting holes are formed in the fixing feet, the side, facing the vibration reduction pad, of the connecting holes are conical and are convexly arranged, the vibration reduction pad can be firmly connected between the pressing cap and the connecting holes under the pressing effect of the pressing cap, the pressing property at the top of the vibration reduction pad can be improved through the conical connecting holes, the vibration reduction strength of the vibration reduction pad is further improved, and the whole working stability of the refrigerator compressor is guaranteed.
Drawings
FIG. 1 is a schematic diagram illustrating an assembly of a refrigerator compressor vibration damping structure and a refrigerator compressor according to an embodiment of the present utility model;
FIG. 2 is a schematic diagram illustrating an assembly of a refrigerator compressor vibration damping structure and a refrigerator compressor according to an embodiment of the present utility model;
FIG. 3 is a schematic view of a vibration damping structure of a cabinet cooler compressor in accordance with an embodiment of the present utility model;
FIG. 4 is a schematic view of an assembly of a vibration dampening shoe and press cap in accordance with an embodiment of the present utility model.
Detailed Description
The utility model is described in further detail below with reference to the drawings and the detailed description.
Referring to fig. 1-4, the present utility model provides a vibration damping structure for a compressor of a refrigerator, comprising a base leg 10, a vibration damping pad 20, and a press cap 30.
The base foot 10 sets up side by side and connects in the bottom of freezer compressor, and the base foot 10 includes mounting panel 11, connecting plate 12 and fixed foot 13, and the both sides of mounting panel 11 set up connecting plate 12 respectively, and fixed foot 13 is connected on connecting plate 12, and mounting panel 11, connecting plate 12 and fixed foot 13 integrated into one piece set up, and the contained angle between mounting panel 11 and the connecting plate 12 is the obtuse angle.
The mounting plate 11 is provided with a first mounting hole 111 and a second mounting hole 112, wherein the first mounting hole 111 is arranged in the middle of the mounting plate 11, two second mounting holes 112 are arranged on two sides of the first mounting hole 111 along the length direction of the mounting plate 11, the vertical distance between the axis of the second mounting hole 112 and the first edge 113 of the mounting plate 11 is smaller than the vertical distance between the axis of the first mounting hole 111 and the first edge 113 of the mounting plate 11, the mounting plate 11 is used for bearing the bottom of a refrigerator compressor, and the first mounting hole 111 and the second mounting hole 112 which are different in vertical distance from the first edge 113 are arranged on the mounting plate 11, so that the mounting positions can be distributed at intervals along the width direction of the mounting plate 11.
The first edge 113 is an edge, which is close to the inner side of the refrigerator compressor, of the mounting plate 11, the edge, which is far away from the inner side of the refrigerator compressor, of the mounting plate 11 is a second edge 114, and the first edge 113 and the second edge 114 are both arranged in an extending manner along the length direction of the mounting plate 11.
The first flange 115 is arranged on the first edge 113, the second flange 116 is arranged on the second edge 114, the length dimension of the first flange 115 is larger than the length dimension of the second flange 116, the first flange 115 and the second flange 116 are respectively arranged on the first edge 113 and the second edge 114 of the mounting plate 11, and the length dimension of the first flange 115 is larger than the length dimension of the second flange 116, so that the mounting strength and the vibration resistance of the mounting plate 11 close to the inner side are ensured.
The fixed leg 13 is provided with a connecting hole 131, the connecting hole 131 is connected with a pressing cap 30, the connecting hole 131 is conical and protrudes towards the damping pad 20, the pressing cap 30 is located above the connecting hole 131, the pressing cap 30 is connected to the upper portion of the damping pad 20, the inner diameter of the connecting hole 131 is smaller than that of the damping pad 20, the connecting hole 131 is located between the damping pad 20 and the pressing cap 30, and the damping pad 20 is made of rubber.
Set up connecting hole 131 on the fixed foot 13, connecting hole 131 is coniform and protruding setting towards one side in damping pad 20, makes damping pad 20 can firmly connect between pressing cap 30 and connecting hole 131 under the pressfitting effect of pressing cap 30, can improve the pressfitting compactness at the top of damping pad 20 through coniform connecting hole 131, and then improves damping strength of damping pad 20, guarantees the whole job stabilization nature of freezer compressor.
It should be noted that the above-mentioned embodiments are merely for illustrating the technical solution of the present utility model, and not for limiting the same, and although the present utility model has been described in detail with reference to the above-mentioned embodiments, it should be understood by those skilled in the art that the technical solution described in the above-mentioned embodiments may be modified or some technical features may be equivalently replaced, and these modifications or substitutions do not make the essence of the corresponding technical solution deviate from the spirit and scope of the technical solution of the embodiments of the present utility model.