SCROLL COMPRESSOR FOR A VEHICLE AIR-CONDITIONING SYSTEM
20180335031 · 2018-11-22
Inventors
Cpc classification
F04C18/0284
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04C2230/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04C2250/201
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04C18/0269
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
A scroll compressor for a motor vehicle air-conditioning system includes a compressor housing, two interleaving spirals within the compressor housing, of which one spiral is stationary and the other spiral is movable eccentrically on a circular orbit, whereby the volume of compression chambers formed between the spirals changes cyclically and refrigerant is suctioned in and compressed; at least one refrigerant outlet port for ejecting the compressed refrigerant in a wall, frontal to the spirals, of the compressor housing in the center of the stationary spiral, wherein in the spiral end region on the inner end of at least one of the two spirals the concave side of the spiral wall is provided with a cut that has the form of a cone segment with concave curvature, decreasing from the upper end in the direction toward the lower end of the spiral wall.
Claims
1.-9. (canceled)
10. A scroll compressor for a motor vehicle air-conditioning system, comprising: a compressor housing, two interleaving spirals within the compressor housing, of which one spiral is stationary and the other spiral is movable eccentrically on a circular orbit, whereby the volume of compression chambers formed between the spirals changes cyclically and refrigerant is suctioned in and compressed; at least one refrigerant outlet port for ejecting the compressed refrigerant in a wall, frontal to the spirals, of the compressor housing in the center of the stationary spiral, wherein in the spiral end region on the inner end of at least one of the two spirals the concave side of the spiral wall is provided with a cut that has the form of a cone segment with concave curvature, decreasing from the upper end in the direction toward the lower end of the spiral wall.
11. A scroll compressor as in claim 10, wherein the conically formed cut extends over the entire height of the spiral wall.
12. A scroll compressor as in claim 11, wherein at the spiral end an oblique edge is developed.
13. A scroll compressor as in claim 12, wherein the conical cut is developed such and the oblique edge is inclined at such angle that the thickness of the spiral wall at its lower end in the region of the conical cut is the same as in the regions of the spiral outside of the cut.
14. A scroll compressor as in claim 12, wherein the cut is formed conically such that the oblique edge at the inner end of spiral converges with a second oblique edge of cut that extends from the upper end of the spiral wall down to the lower end in an angular point on the corner of the inner end at the lower end of the spiral.
15. A scroll compressor as in claim 10, wherein the stationary spiral is provided with the conical cut.
16. A scroll compressor as in claim 10, wherein the orbiting spiral is provided with the conical cut.
17. A scroll compressor as in claim 10, wherein the conical cut has already been worked in during the production of the unmachined part of the spiral.
18. A scroll compressor as in claim 10, wherein the conical cut has been generated by milling using a conical milling tool.
19. A scroll compressor as in claim 11, wherein the stationary spiral is provided with the conical cut.
20. A scroll compressor as in claim 11, wherein the orbiting spiral is provided with the conical cut.
21. A scroll compressor as in claim 11, wherein the conical cut has already been worked in during the production of the unmachined part of the spiral.
22. A scroll compressor as in claim 11, wherein the conical cut has been generated by milling using a conical milling tool.
23. A scroll compressor as in claim 12, wherein the stationary spiral is provided with the conical cut.
24. A scroll compressor as in claim 12, wherein the orbiting spiral is provided with the conical cut.
25. A scroll compressor as in claim 12, wherein the conical cut has already been worked in during the production of the unmachined part of the spiral.
26. A scroll compressor as in claim 12, wherein the conical cut has been generated by milling using a conical milling tool.
27. A scroll compressor as in claim 13, wherein the stationary spiral is provided with the conical cut.
28. A scroll compressor as in claim 13, wherein the orbiting spiral is provided with the conical cut.
29. A scroll compressor as in claim 13, wherein the conical cut has already been worked in during the production of the unmachined part of the spiral.
Description
[0019] Further details, characteristics and advantages of implementations of the invention are evident in the following description of embodiment examples with reference to the associated drawing. Therein depict:
[0020]
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[0030] As
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[0032] In
[0033] In
[0034] Since therewith one of the radial contacts is eliminated, the redundancy is reduced and consequently the leak-tightness of the outer compression chambers 15.1, 15.1; 15.2, 15.2 at lower pressures is improved. Moreover, contact forces between the spirals 1.1; 1.2 are thereby gradually shifted to the outer windings where the curvature is lesser and the radius greater. This reduces the wear considerably.
[0035]
LIST OF REFERENCE SYMBOLS
[0036] 1 Spiral [0037] 1.1 Stationary spiral [0038] 1.2 Orbiting spiral [0039] 2 Inner end of spirals 1.1 or 1.2 [0040] 3 Concave side of spiral wall [0041] 4 Cut [0042] 5 Oblique edge [0043] 6 Upper end of spiral wall [0044] 7 Lower end of spiral wall [0045] 8 Second oblique edge [0046] 9 Angular point [0047] 10 Axis (parallel to the non-cut spiral wall) [0048] 11 Conical milling tool [0049] 12 Tool axis [0050] 13 Tool path [0051] 14 Scroll compressor [0052] 15.1 Compression chamber [0053] 15.1 Compression chamber [0054] 15.2 Compression chamber [0055] 15.2 Compression chamber [0056] 15.3 Compression chamber [0057] 16.1 Contact point (radial contact) [0058] 16.2 Contact point (radial contact) [0059] 16.3 Contact point (radial contact) [0060] Orientation angle of cut with respect to axis 10 [0061] A Sectional plane