1. Field of the Invention
The present invention relates to a scroll compressor suitable to a refrigerant compressor used for a refrigeration cycle for refrigeration and air conditioning or to a gas compressor for compressing gas such as the air and other gas.
2. Description of the Related Art
The scroll compressor is constructed by combining a stationary scroll and an orbiting scroll, and cast iron or aluminum alloy is generally employed as the material of a scroll member of the stationary scroll and the orbiting scroll. Further, there is also a combination of cast iron for the stationary scroll and aluminum alloy for the orbiting scroll.
Also, as described in Japanese Published Unexamined Patent Application No. H08-261172 and No. H08-261173, scroll members using two or more kinds of aluminum alloys are known.
In one described in Japanese Published Unexamined Patent Application No. H08-261172, the stationary scroll or the orbiting scroll is made a combination of two or more layers of aluminum alloys with the vicinity of the center part being constructed of a first material and with the vicinity of the outer peripheral part being constructed of a second material, and is formed by forging with two or more kinds of the aluminum alloys.
Also, Japanese Published Unexamined Patent Application No. H08-261173 describes one in which the stationary scroll or the orbiting scroll is made a combination of two or more layers of upper and lower faces of aluminum alloy materials and is formed by forging with two or more kinds of aluminum alloys.
In the prior art, when the scroll member is manufactured of cast iron, there is a problem that the centrifugal force increases in high speed rotation, and the load on bearings increases.
Also, when the scroll member is manufactured of an aluminum alloy, the weight can be reduced, however the thickness of the member is required to be made thick in order to suppress deformation of the member due to the load generated during the compression step of the scroll member. Therefore, there is a problem that the size of the member becomes large and the whole compressor becomes of a large scale. Further, when the material strength of the whole scroll member is to be increased to bear the load, there is a problem that the scroll member becomes expensive.
Also, as described in the Japanese Published Unexamined Patent Application No. H08-261172 and No. H08-261173, even those with the combination of two or more layers of two or more kinds of aluminum alloys have the difficulty in greatly increasing the rigidity of the scroll member and have the problem that the scroll member becomes expensive.
Accordingly, an object of the present invention is to obtain a scroll compressor having a scroll member light in weight, high in rigidity, and inexpensive in manufacturing.
In order to solve the problems, the present invention is characterized that in a scroll compressor constructed by combining a stationary scroll and an orbiting scroll formed by erecting a scroll-shape wrap upright on a base plate meshing with each other, a scroll member constructing the stationary scroll or the orbiting scroll is constructed of an inner layer member forming a core metal and an outer layer member arranged so as to surround the inner layer member and forming an outer layer part, the inner layer member is constructed of a material with higher modulus of elasticity than that of the outer layer member, and separation prevention parts preventing the inner layer member and the outer layer member from separating with each other due to difference in coefficient of thermal expansion thereof are arranged in the inner layer member.
Here, the separation prevention parts are preferable to be at least any of a plurality of uneven parts, depressions, or holes formed in the inner layer member. Also, the plurality of uneven parts, depressions, or holes constructing the separation prevention part are preferable to be arranged more densely on the wrap center part side than on the wrap outer peripheral part side of the scroll member.
Further, it is preferable that the outer layer member constructing the scroll member is constructed of a non-ferrous metal lighter in weight than the material of the inner layer member and that the inner layer member is constructed of an iron-based metal having at least two times or higher modulus of elasticity than that of the outer layer member. In particular, it is preferable that the outer layer member is constructed of an aluminum alloy and the inner layer member is constructed of a steel plate or a steel material. Furthermore, it is preferable that the steel plate or the steel material constructing the inner layer member is either of SPHC or SPHE stipulated in the Japanese Industrial Standards (JIS).
Other feature of the present invention is that in a scroll compressor constructed by combining a stationary scroll and a orbiting scroll formed by erecting a scroll-shape wrap upright on a base plate meshing with each other, at least either of the wrap or the base plate of a scroll member constructing the stationary scroll or the orbiting scroll is constructed of an inner layer member forming a core metal and an outer layer member arranged so as to surround the inner layer member and forming an outer layer part, the inner layer member is constructed of a material with higher modulus of elasticity than that of the outer layer member, and separation prevention parts preventing the inner layer member and the outer layer member from separating with each other due to difference in coefficient of thermal expansion thereof are arranged in the inner layer member.
Here, when the inner layer member is arranged at least in a wrap section of the orbiting scroll, the strength of the wrap section whose thickness cannot be increased much can be sufficiently improved. Also, if the inner layer member is arranged so as to extend in both a wrap section and a base plate section of the orbiting scroll, the strength of the scroll member can be further improved. In particular, it is preferable that the inner layer member is constructed of a disk-shape member disposed in the base plate section and a scroll-shape member disposed in the wrap section and that the disk-shape member and the scroll-shape member are formed integrally. Further, because the inner layer member is constructed of a material with higher modulus of elasticity than that of the outer layer member, the thickness of the scroll-shape member can be made a half or less of the thickness of the whole wrap section.
Further other feature of the present invention is that, in a scroll compressor constructed by combining two scroll members formed by erecting a scroll-shape wrap upright on a base plate meshing with each other and used for a refrigeration cycle, a wrap and base plate section of the scroll member is constructed of an inner layer member forming a core metal and an outer layer member arranged so as to surround the inner layer member and forming an outer layer part, the inner layer member is constructed of a material with higher modulus of elasticity than that of the outer layer member, and separation prevention parts preventing the inner layer member and the outer layer member from separating with each other due to difference in coefficient of thermal expansion thereof are arranged in the inner layer member.
Also, it is preferable that the adhesiveness with the outer layer member is improved with the surface of the inner layer member being subjected to surface treatment including zinc.
According to the present invention, the scroll member constructing the stationary scroll or the orbiting scroll is constructed of an inner layer member forming a core metal and an outer layer member arranged so as to surround the inner layer member and forming an outer layer part, the inner layer member is constructed of a material with higher modulus of elasticity than that of the outer layer member, separation prevention parts preventing the inner layer member and the outer layer member from separating with each other due to difference in coefficient of thermal expansion thereof are arranged in the inner layer member, and therefore a scroll compressor having a scroll member light in weight, high in rigidity, and inexpensive in manufacturing can be obtained.
The present invention will be more fully understood from the following description of the preferred embodiments where reference is made to the accompanying drawings.
In the compression mechanism, when the rotary shaft 300 rotates, the crank pin 301 eccentrically rotates and the orbiting scroll 200 performs turning motion without rotating with respect to the stationary scroll 100 by the rotation prevention joint 500. Thus, the gas sucked through the suction port 103 is introduced to a sealed chamber (compression chamber) formed by the wraps 102 and 202 from a suction chamber on the outer peripheral side of the wrap. Accompanying the turning motion of the orbiting scroll, the sealed chamber reduces its own volume while moving toward the center side and compresses the sucked gas, and the compressed gas is discharged to a discharge chamber 105 through the discharge port 104 formed in the stationary scroll.
It is preferable that the outer layer member 600 is constructed of a light-weight non-ferrous metal and that the inner layer member 601 is constructed of an iron-based metal having two times or higher modulus of elasticity (strength) than that of the outer layer member. Thus, the thickness of the inner layer member 601 can be made approximately 20-60% for embodiment of the thickness of the wrap section, thereby both of sufficient strength and sufficient weight reduction can be attained, and manufacturing becomes easy due to the thickness suitable to manufacturing. Because the thickness of the whole wrap section is approximately 3-4 mm in normal, it is preferable that the thickness of the inner layer member is made approximately 0.6-2.4 mm.
Thus, the inner layer member 601 with high strength comes to function as a core metal of the scroll member, and the rigidity of the scroll member can be greatly improved compared with the case the scroll member is constructed of only the material of the outer layer member 600. For example, by employing an aluminum alloy which is a non-ferrous metal for the outer layer member 600 and employing a steel plate and a steel material such as SPHC and SPHE stipulated in JIS Standards having modulus of elasticity of approximately 3 times of that of an aluminum alloy for the inner layer member 601, the rigidity can be remarkably improved compared with the case the scroll member is constructed of an aluminum alloy only.
In a scroll member according to the present embodiment, deformation of the scroll member during operation is inhibited because the rigidity is improved, therefore the leakage loss from the compression chamber (sealed chamber) constructed by meshing of the wraps can be reduced, and a compressor with high performance can be obtained. Also, because a steel plate and a steel material more inexpensive than an aluminum alloy are employed for the inner layer member, manufacturing at less cost than the case the scroll member is constructed of an aluminum alloy only becomes possible.
Also, according to the present embodiment, the inner layer member 601 is constructed of a disk-shape member 601(a) and a scroll-shape member 601(b). The rigidity of the base plate (end plate) can be improved by the disk-shape member 601(a), and the rigidity of the scroll wrap can be improved by the scroll-shape member 601(b). Also, as shown in the area of 602 in
The orbiting scroll 200 can be manufactured by, for example, melting metal material constructing the outer layer member 600, and casting the inner layer member 601 by the molten metal. By employing a non-ferrous metal such as an aluminum alloy for the outer layer member and employing an iron-based metal such as a steel plate and a steel material for the inner layer member, easy manufacturing is possible because the melting point of the both is different with each other. That is, because the melting point of the inner layer member 601 is higher than that of the outer layer member 600, the inner layer member 601 can be casted by the molten outer layer member 600 while maintaining the shape of the inner layer member 601.
Also, in the embodiment shown in
Next, embodiments of preferable shapes of the inner layer member 601 of the orbiting scroll according to the present embodiment will be explained referring to
In the embodiment shown in
Also,
In the embodiment shown in
Also, in the embodiment shown in
By arranging the separation prevention parts such as the uneven parts 603 and the depressions 604, not only separation of the inner layer member and the outer layer member can be prevented, but also rigidity of the inner layer member is further increased and rigidity of the scroll member can be further improved because the uneven parts 603, the depressions 604 and the like are shaped. Also, because the contact area between the inner layer member 601 and the outer layer member 600 can be increased, adhesiveness between the inner layer member 601 and the outer layer member 600 can be improved. In the present embodiment, because a steel plate, for example, is employed for the inner layer member and an aluminum alloy, for example, is employed for the outer layer member, shearing stress is generated between the inner layer member and the outer layer member during operation of the scroll compressor due to the difference in the coefficient of thermal expansion and the like between the inner layer member and the outer layer member. However, according to the present embodiment, as described above, because adhesiveness between the inner layer member 601 and the outer layer member 600 can be improved due to the uneven parts 603 and the depressions 604, the retaining force stronger than the shearing stress can be secured, and separation (detachment) of the inner layer member and the outer layer member can be prevented. Also, because the inner layer member can sufficiently function as a core metal, rigidity of the scroll member can be improved and a scroll compressor having a highly reliable scroll member in which internal crack, detachment and the like do not occur can be obtained.
In the embodiment shown in
In the embodiments, it is preferable that the uneven parts 603, depressions 604 and holes 605 are arranged more densely on the center part side that is the winding-start side of the wrap of the scroll-shape member 601(b). In other words, the center part side of the wrap is subjected to higher temperature and higher pressure than in the outer peripheral side of the wrap accompanying operation of the scroll compressor, and therefore the shearing stress due to the difference in the coefficient of thermal expansion and the like between the inner layer member and the outer layer member is higher there. By arranging the uneven parts 603 and the like more densely on the center part side of the wrap, adhesiveness between the inner layer member and the outer layer member can be improved, a rigid scroll member that can cope with the magnitude of the shearing stress mentioned above can be obtained, and a scroll compressor having a scroll member with higher rigidity and reliability can be obtained.
Also, by applying surface treatment including zinc to the surface of the inner layer member 601, that is, applying surface treatment such as galvanizing to the surface of a steel material for example, adhesiveness with the outer layer member can be further improved.
In addition, instead of the uneven parts 603, depressions 604 and holes 605, the separation prevention parts may be arranged by welding and the like ribs and etc. on the surface of the inner layer member.
Further, although the disk-shape member 601(a) and the scroll-shape member 601(b) are constructed as separate bodies in the embodiment shown in
According to the present embodiment, a light-weight non-ferrous metal is employed for the outer layer member and an iron-based metal which is higher in strength and lower in cost compared with the non-ferrous metal is employed for the inner layer member, and therefore the scroll member can be manufactured at a lower cost without enlarging the size compared with the case the scroll member is constructed of a light-weight and highly strong single material.
Also, because the separation prevention parts of the plurality of uneven parts, depressions, holes or the like are arranged in the inner layer member, separation of the outer layer member with respect to the inner layer member due to the shearing stress by difference in coefficient of thermal expansion can be prevented, and a scroll compressor with high rigidity and reliability can be obtained.
Number | Date | Country | Kind |
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2009-250280 | Oct 2009 | JP | national |
Number | Name | Date | Kind |
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20070178002 | Hiwata et al. | Aug 2007 | A1 |
20100202911 | Ni et al. | Aug 2010 | A1 |
Number | Date | Country |
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101418791 | Apr 2009 | CN |
55-010369 | Jan 1980 | JP |
02-173301 | Jul 1990 | JP |
08-261172 | Oct 1996 | JP |
08-261173 | Oct 1996 | JP |
2006-144635 | Jun 2006 | JP |
Entry |
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JP Office Action of Appln. 2009-250280 dated Jan. 8, 2013 with partial English translation. |
Number | Date | Country | |
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20110103990 A1 | May 2011 | US |