Condensation type laundry dryer

Information

  • Patent Grant
  • 7984568
  • Patent Number
    7,984,568
  • Date Filed
    Friday, December 1, 2006
    17 years ago
  • Date Issued
    Tuesday, July 26, 2011
    13 years ago
Abstract
A condensation washer-dryer, in particular, the air-guiding process. The base module is used to receive function parts and components of the air guide and is closed on the rear side by means of a process air cover and forms a plastic, stable support structure for the washer-dryer. The connecting surfaces are large and extend, preferably, over the entire width of the washer-dryer. Due to said embodiment, air guiding channels are formed in a simple manner on the rear side of the base module and the housing of the process air ventilator is closed on the rear side. Sealing elements are no longer required due to said welding of said type of connection and an exceptionally high mechanical rigidity is obtained.
Description

The invention relates to a condensation washer-dryer with a washer drum that can rotate about at least an almost horizontal axis, with means for driving and guiding the washer drum, with components for delivering and guiding process air and cooling air, with a heating device for the process air, with a condenser for condensing the dampness extracted from the items to be dried and borne in the process air, with devices for drawing off the condensate and with a supporting structure for mounting the main functional parts and stabilizing the device.


BACKGROUND OF THE INVENTION

Condensation washer-dryers are characterized by a process airflow delivered in a closed circuit system. The process air, heated to a predetermined temperature, is blown in through the back of the motor-driven washer drum, where the items to be dried are revolved and treated with the heated process air. The washer drum is filled and emptied with items to be dried via a front loading opening that can be closed by a door hinged to the front wall. The process air enriched by dampness from the items to be dried is passed through a process air duct leading downwards to the condenser, where the heat from the process air is extracted by cool air drawn in from outside and conducted through a second air guidance system, so that the dampness taken from the items to be dried is condensed and finally discharged.


The condenser is a single component housed in a bottom assembly. Mountings for the drive motor, the fan for the cooling and process air, a condensate drip tray and condensate pump, as well as devices for delivering and guiding process air and cooling air are integrated into the bottom assembly.


The cooled and dehumidified process air is returned to the inside of the drum via a heating device. The delivery of the cooling and process air is by means of fans that are usually coupled with the drive motor of the washer drum.


A condensation washer dryer of this kind, which is typical in its design, is described in DE 102 02 442 A1. The process air duct section assigned to the process air inlet and aligned toward the rear wall of the device has a vertical connecting surface to the heating duct. Additional sealant is provided to adequately seal the process airflow at the connecting surface.


The bottom assembly and the mountings within it for the condenser and the housings for the cooling and process air fans cannot be manufactured as a single piece using injection molding. This assembly has to be manufactured in several single components and joined together to form a unit. In order to achieve adequate sealing, additional sealant is provided at these joints, particularly on the ducts provided to guide the process air.


With known washer-dryers, the heating duct is permanently connected to the rear wall of the device and is mounted on the base assembly complete with the rear wall of the device. The connection is secured by the rear wall being bolted against a frame of the washer dryer. Similar design solutions are also found with other standard washer-dryers.


SUMMARY OF THE INVENTION

The object of the invention is to provide a design for the supporting structure of a condensation washer-dryer as described in the introduction, which represents the technically most efficient solution compared to the prior art with respect to securing the necessary functions, especially with regard to the sealing of the processed air guidance, and takes account of aspects of mechanical stability, production and assembly technology and economy.


The object of the invention is achieved by the features of the exemplary embodiments described herein, in that the supporting structure is formed from a bottom base module and a process air cover that is permanently joined, without using a seal, to the back of the base module.


According to the invention, the base module that serves for mounting functional parts and components of the air guidance is closed at the back by a process air cover. For this purpose, the base module has a vertical separating surface. The separating surface has a large area and preferably extends over the complete width of the washer-dryer. The main advantage of this solution is that by means of a single component, the process air cover, an air guidance component with ducts is formed on the back of the base module, which on one hand connects the condenser housing with the process air fan and on the other hand connects the process air fan with the heating duct. Furthermore, the process air cover represents a closure for the condenser housing and for the housing of the process air fan on the base module.


The base module and process air cover are plastic components that in the embodiment of the invention are welded together. No sealing element is required for a joint of this kind. It is also advantageous that an extraordinarily high mechanical rigidity is obtained by the base module expanded to a supporting structure connected to the welded process air cover.


Compared with known solutions, substantial advantages can be achieved by the inventive supporting structure on the basis of the base module with regard to the sealing of the process air guidance, with regard to the mechanical strength of the base module as a single unit and as part of the complete supporting structure, as well as with regard to an effective production of the individual components and of their assembly.


Further advantageous embodiments of the invention are described herein, which can be used either individually or in any combination with each other without departing from the concept of the invention.





BRIEF DESCRIPTION OF THE DRAWINGS

The invention is explained in more detail in the following with the aid of the exemplary embodiment shown in the drawings. The drawings are as follows:



FIG. 1A perspective exploded view of a condensation washer-dryer



FIG. 2 A view of the base module from behind



FIG. 3 A view, also from behind, of the process air cover





DETAILED DESCRIPTION OF THE EXEMPLARY EMBODIMENTS OF THE PRESENT INVENTION

The elements important for the functioning of the inventive supporting structure of a condensation washer-dryer 1 are illustrated. In the illustrated preferred embodiment, the front wall 4 and the bearing bracket 6, matched in size and shape to the front wall 4, form a stable combined body. The front of the combined body 4, 6 and the rear wall 5 carrying the heating device, concealed under the heating duct 10, are joined together by the base module 7. For this purpose, the combined body 4, 6 is attached by a plug-in and bolted joint to the base module 7, whereas the rear wall 5 is bolted to the process air cover 14.


The washer drum 16 mounted so as to rotate about the axis 17 is fitted between a bearing flange on the back of the bearing bracket 6 and a sealing ring fitted on the heating duct 10. It is seated with its front opening on the bearing flange (not visible) and a rear opening (also not visible) on the outlet opening of the heating duct 10. From the heating duct 10, hot air is blown into the washer drum 16 and discharged downwards by it through the loading opening of the front wall 4, surrounded by the front bearing flange, and out through the fluff filter 3.


The base module 7 is a compact plastic unit manufactured using injection molding, that due to its shape and its additional molded ribs 15 (FIGS. 2 and 3) in the bottom and/or side area is largely resistant to bending and torsion. The basic module 7 houses a condensate drip tray, the air guidance and conducting devices and the condenser 8, a condensate delivery pump, the drive motor and the process air and cooling air fans 11 and 12. Suitable moldings are provided in the plastic body of the base module 7 for this purpose. The condenser housing 8 can be closed from above by a cover 13 snapped into place; a second cover is, as part of its housing, is snapped into place on the cooling air fan 12.


The base module 7 takes up almost all the complete internal width of the washer-dryer 1 and is closed off over the complete back by the process air cover 14, which is welded to the base module 7. For this purpose, the flat connecting surfaces 18.1 and 18.2 of the process air cover 14 and of the base module 7 are to be placed tight against each other and joined together, for example, by hot tool or vibration welding.


The single-piece process air cover 14 together with the base module 7 form a rear process air duct component 20 that connects the condensate housing 8 with the inlet opening 22 of the process air fan 11. A second process air duct component 21 connects the pressure side of the fan 11, via its transfer opening 19, to the heating duct 10. Therefore, to form the process air guidance only two single components are used, i.e. the base module 7 and the process air cover 14. By welding both plastic components 7, 14 along a weld joint 18.3 running directly around the process air duct component 20, there is no longer a need for the, otherwise usual, sealant because the welded joint surfaces 18.1 and 18.2 surround, and when joined seal, all air-carrying components. Furthermore, additional means for securing the joint, such as bolting, are dispensed with.


The process air cover 14 is not supported anywhere; it is welded to the base module 7 and is therefore itself part of the supporting structure of the washer-dryer 1.


Due to the welded joint 18.3 and the size of the connecting surfaces 18.1 and 18.2, the supplemented base module 7 has such a high strength that it can completely replace a framework housing in the bottom area, which is used by the majority of known washer-dryers. The resistance to torsion of the basic module 7 is reinforced by the shape of the rigidly-connected process air cover 14 and by additional integrally-formed stiffening ribs 15.


The rearward separating surface 14.1 of the process air cover 14, shown hatched in FIG. 3, is designed as the bearing surface for the rear wall 5 of the device. This is bolted to the process air cover 14 over a large area. The remaining surfaces, except the inlet opening 22 of the fan housing (see 11), form a rearward closure of the base module 7 by which means the housing of the condenser 8 and the process air duct component 20 in particular are closed.


In the illustrated preferred exemplary embodiment, the rear feet 2 for the washer-dryer 1 are integrally formed as part of the process air cover 14, thus achieving a further rationalization effect. Correspondingly, feet can also be fitted at the front end of the base module 7.


LIST OF REFERENCE CHARACTERS




  • 1 Washer-dryer


  • 2 Feet


  • 3 Fluff screen


  • 4 Front wall


  • 5 Rear wall


  • 6 Bearing bracket


  • 7 Base module


  • 8 Condenser housing


  • 9 Slide-in opening for condenser


  • 10 Heating duct


  • 11 Process air fan


  • 12 Cooling air fan


  • 13 Condenser housing cover


  • 14 Process air cover


  • 14.1 Separating surface


  • 15 Stiffening ribs


  • 16 Washer drum


  • 17 Axis of rotation


  • 18.1 Base module connecting surface


  • 18.2 Process air cover connecting surface


  • 18.3 Welded joint


  • 19 Transition opening


  • 20 Process air duct part, condenser-fan


  • 21 Process air duct part, fan-heating duct


  • 22 Inlet opening


Claims
  • 1. A condensation laundry dryer comprising: a laundry drum that can be rotated about a substantially horizontal axis, with means for drying and for guiding the laundry drum;main functional components for delivering and guiding process air and cooling air, with a heating device for the process air;a condenser for condensing dampness drawn from items to be dried and borne in the process air;devices for discharging condensate; anda supporting structure for mounting the main functional components and stabilizing the laundry dryer,said supporting structure being formed from a bottom base module and a process air cover that is permanently connected to a rear of the bottom base module and joined without using a seal; andwherein the process air cover and the bottom base module together form an air guidance duct component that connects the condenser to a process air fan.
  • 2. The laundry dryer as claimed in claim 1, further comprising a connecting surface that essentially lies in a vertical plane or in at least two vertical planes offset relative to each other in two steps is provided between the bottom base module and the process air cover and encloses the air transfer between the bottom base module and the process air cover.
  • 3. The laundry dryer as claimed in claim 2, wherein the connecting surface extends at least approximately over a complete width of the laundry dryer.
  • 4. The laundry dryer as claimed in claim 1, wherein the bottom base module and process air cover are plastic components.
  • 5. The laundry dryer as claimed in claim 4, wherein the process air cover and the bottom base module are welded to each other.
  • 6. The laundry dryer according to claim 1, wherein the connecting surface is fitted to a front wall of the process air cover that forms a rear closure of the condenser housing and a fan housing of the process air fan, and is welded to the connecting surface on the bottom base module.
  • 7. The laundry dryer as claimed in claim 1, wherein stiffeners and/or ribs are integrally formed on the bottom base module and/or on the process air cover.
  • 8. The laundry dryer as claimed in claim 1, wherein feet are integrally formed on the bottom base module and/or on the process air cover.
  • 9. The laundry dryer as claimed in claim 1, wherein a back of the process air cover is permanently connected by a separating surface with a rear wall of the laundry dryer.
  • 10. The laundry dryer as claimed in claim 9, wherein a fan housing for the process air fan is incorporated into the process air cover, a pressure side of said process air fan being connected via a process air duct component, also incorporated, to a transition opening as a connection to a heating duct.
  • 11. The laundry dryer as claimed in claim 9, wherein the process air cover is bolted to the rear wall.
  • 12. The laundry dryer of claim 1, wherein the bottom base module includes one of stiffeners and ribs.
  • 13. The laundry dryer of claim 1, wherein the process air cover includes one of stiffeners and ribs.
  • 14. The laundry dryer of claim 1, comprising: front feet integrally formed on a bottom surface of the bottom base module.
  • 15. The laundry dryer of claim 1, comprising: rear feet integrally formed on a bottom surface of the process air cover.
  • 16. A condensation laundry dryer comprising: a body including a front wall and a rear wall;a laundry drum disposed between the front wall and rear wall, the laundry drum being rotatable about a substantially horizontal axis;a supporting structure coupling the front wall to the rear wall, the supporting structure for mounting main functional components of the laundry dryer and stabilizing the front wall with respect to the rear wall;the supporting structure being formed by a bottom base module coupled to the front wall and a process air cover coupled to the rear wall,wherein the process air cover is permanently connected to a rear of the bottom base module and joined without using a seal,wherein the bottom base module includes: a process air fan and a cooling air fan for delivering process air and cooling air to the laundry drum;a condenser for condensing dampness drawn from items to be dried in the laundry drum and borne in the process air; anda device for discharging condensate,wherein the process air cover and the bottom base module together form an air guidance duct component that connects the condenser to the process air fan.
  • 17. The condensation laundry dryer of claim 16, wherein the front wall includes a bearing bracket, andwherein the bottom base module is coupled to the bearing bracket.
  • 18. The laundry dryer of claim 16, wherein the bottom base module includes one of stiffeners and ribs.
  • 19. The laundry dryer of claim 16, wherein the process air cover includes one of stiffeners and ribs.
  • 20. The laundry dryer of claim 16, comprising: front feet integrally formed on a bottom surface of the bottom base module.
  • 21. The laundry dryer of claim 16, comprising: rear feet integrally formed on a bottom surface of the process air cover.
Priority Claims (1)
Number Date Country Kind
10 2005 013 053 May 2005 DE national
PCT Information
Filing Document Filing Date Country Kind 371c Date
PCT/EP2006/050576 12/1/2006 WO 00 11/6/2007
Publishing Document Publishing Date Country Kind
WO2006/125682 11/30/2006 WO A
US Referenced Citations (201)
Number Name Date Kind
2534269 Edwin et al. Dec 1950 A
2538952 Yates et al. Jan 1951 A
2742708 Mccormick Apr 1956 A
2752694 Mccormick Jul 1956 A
2817157 Mccormick Dec 1957 A
3284369 Bergna et al. Nov 1966 A
3330686 Rose Jul 1967 A
3420696 Cotton et al. Jan 1969 A
3739487 Clark Jun 1973 A
3805404 Gould Apr 1974 A
3822145 Liebowitz et al. Jul 1974 A
3831292 DePas Aug 1974 A
3859004 Condit Jan 1975 A
3875679 Condit Apr 1975 A
4055971 Hermes Nov 1977 A
4103433 Taylor Aug 1978 A
4121009 Chakrabarti Oct 1978 A
4203851 Ramachandran May 1980 A
4204339 Muller May 1980 A
4255273 Sakkab Mar 1981 A
4268247 Freze May 1981 A
4415489 Kiczek et al. Nov 1983 A
4427567 Benz Jan 1984 A
4448699 Barrat et al. May 1984 A
4536583 Mookherjee et al. Aug 1985 A
4584128 Mookherjee et al. Apr 1986 A
4620945 Mookherjee et al. Nov 1986 A
4621438 Lanciaux Nov 1986 A
4682982 Steltenkamp et al. Jul 1987 A
4711730 Gosselink et al. Dec 1987 A
4764289 Trinh Aug 1988 A
4785060 Nagler Nov 1988 A
4818421 Boris et al. Apr 1989 A
4818422 Adams et al. Apr 1989 A
4818569 Trinh et al. Apr 1989 A
4840738 Hardy et al. Jun 1989 A
4861502 Caswell Aug 1989 A
4863619 Borcher et al. Sep 1989 A
4913828 Caswell et al. Apr 1990 A
4915854 Mao et al. Apr 1990 A
4925577 Borcher et al. May 1990 A
4936920 Keritsis et al. Jun 1990 A
4938879 Kellett Jul 1990 A
4999128 Sonenstein Mar 1991 A
5019280 Caswell et al. May 1991 A
5041230 Borcher et al. Aug 1991 A
5062973 Kellett Nov 1991 A
5066413 Kellett Nov 1991 A
5094761 Trinh et al. Mar 1992 A
5102564 Gardlik et al. Apr 1992 A
5173200 Kellett Dec 1992 A
5234610 Gardlik et al. Aug 1993 A
5238587 Smith et al. Aug 1993 A
5276175 Dams et al. Jan 1994 A
5453540 Dams et al. Sep 1995 A
5470492 Childs et al. Nov 1995 A
5658651 Smith et al. Aug 1997 A
5689848 Saal et al. Nov 1997 A
5746776 Smith et al. May 1998 A
5865851 Sidoti et al. Feb 1999 A
5869410 Smith et al. Feb 1999 A
5883069 Childs et al. Mar 1999 A
5927969 Dover et al. Jul 1999 A
5929026 Childs et al. Jul 1999 A
5942484 Roetker et al. Aug 1999 A
5972041 Smith et al. Oct 1999 A
5997586 Smith et al. Dec 1999 A
6004922 Watson et al. Dec 1999 A
6036727 Smith Mar 2000 A
6086634 Smith Jul 2000 A
6132474 Smith et al. Oct 2000 A
6143713 Littig et al. Nov 2000 A
6179880 Smith Jan 2001 B1
6238736 Smith et al. May 2001 B1
6243969 Yeazell Jun 2001 B1
6254932 Smith et al. Jul 2001 B1
6395701 Connor et al. May 2002 B1
6402799 Kokubo et al. Jun 2002 B1
6491840 Frankenbach et al. Dec 2002 B1
6602845 Connor et al. Aug 2003 B2
6652766 Frankenbach et al. Nov 2003 B1
6691536 Severns et al. Feb 2004 B2
6748772 Lee et al. Jun 2004 B2
6769196 Park et al. Aug 2004 B2
6784997 Lorenz et al. Aug 2004 B2
6818293 Keep et al. Nov 2004 B1
6840069 France et al. Jan 2005 B2
6887524 Aouad et al. May 2005 B2
6890894 Connor et al. May 2005 B2
6898951 Severns et al. May 2005 B2
6916777 Connor et al. Jul 2005 B2
6949502 Trinh et al. Sep 2005 B2
6957501 Park et al. Oct 2005 B2
6992057 Connor et al. Jan 2006 B2
7010363 Donnelly et al. Mar 2006 B2
7020982 Park et al. Apr 2006 B2
7022659 Duquet et al. Apr 2006 B2
7036243 Doh et al. May 2006 B2
7065904 Lee et al. Jun 2006 B2
7093378 Jeong et al. Aug 2006 B2
7119060 Shefer et al. Oct 2006 B2
7191546 Maruca Mar 2007 B2
7197838 Jo Apr 2007 B2
7220365 Qu et al. May 2007 B2
7275400 Severns et al. Oct 2007 B2
7300593 Arredondo et al. Nov 2007 B2
7377052 Maruca May 2008 B2
7524804 Kaneda et al. Apr 2009 B2
7526879 Bae et al. May 2009 B2
7644514 Heyder et al. Jan 2010 B2
7665227 Wright et al. Feb 2010 B2
7735345 Wright et al. Jun 2010 B2
7748139 Hong et al. Jul 2010 B2
7805856 Ga.beta.mann et al. Oct 2010 B2
7807616 Meine et al. Oct 2010 B2
20010009699 Smith et al. Jul 2001 A1
20010022007 Yeazell Sep 2001 A1
20020004995 France et al. Jan 2002 A1
20020133886 Severns et al. Sep 2002 A1
20030019253 Lorenz et al. Jan 2003 A1
20030046769 Radomyselski et al. Mar 2003 A1
20030050208 Duquet et al. Mar 2003 A1
20030056393 Lee et al. Mar 2003 A1
20030066638 Qu et al. Apr 2003 A1
20030100469 Connor et al. May 2003 A1
20030118730 Aouad et al. Jun 2003 A1
20030209686 Frankenbach et al. Nov 2003 A1
20030236180 Connor et al. Dec 2003 A1
20040035019 Park et al. Feb 2004 A1
20040068889 Park et al. Apr 2004 A1
20040087461 Connor et al. May 2004 A1
20040092418 Connor et al. May 2004 A1
20040092419 Connor et al. May 2004 A1
20040097392 Connor et al. May 2004 A1
20040098878 Park et al. May 2004 A1
20040129032 Severns et al. Jul 2004 A1
20040214984 Keep et al. Oct 2004 A1
20040254654 Donnelly et al. Dec 2004 A1
20050009724 Arredondo et al. Jan 2005 A1
20050050644 Severns et al. Mar 2005 A1
20050050758 Park et al. Mar 2005 A1
20050050764 Jeong et al. Mar 2005 A1
20050120585 Lee et al. Jun 2005 A1
20050132604 Hong et al. Jun 2005 A1
20050153869 Connor et al. Jul 2005 A1
20050183208 Scheper et al. Aug 2005 A1
20050246920 Yabuuchi et al. Nov 2005 A1
20050278972 Maruca Dec 2005 A1
20060137205 Lee et al. Jun 2006 A1
20060137206 Lee et al. Jun 2006 A1
20060201020 Cimetta et al. Sep 2006 A1
20060225468 Hong Oct 2006 A1
20060248746 Dittmer et al. Nov 2006 A1
20060289533 Park et al. Dec 2006 A1
20060293204 Kaneda et al. Dec 2006 A1
20070101602 Bae et al. May 2007 A1
20070107250 Gassmann et al. May 2007 A1
20070144032 Maruca Jun 2007 A1
20070151041 McAllister et al. Jul 2007 A1
20070151119 Heyder et al. Jul 2007 A1
20070151129 McAllister et al. Jul 2007 A1
20070151310 Wright et al. Jul 2007 A1
20070151311 McAllister et al. Jul 2007 A1
20070151312 Bruce et al. Jul 2007 A1
20070163093 Wright et al. Jul 2007 A1
20070163094 Wright et al. Jul 2007 A1
20070163095 McAllister et al. Jul 2007 A1
20070163096 McAllister et al. Jul 2007 A1
20070163097 Metcalfe et al. Jul 2007 A1
20070163098 Tomasi et al. Jul 2007 A1
20070265183 Meine et al. Nov 2007 A1
20080011123 Correa Pena y Lillo et al. Jan 2008 A1
20080092403 Bae et al. Apr 2008 A1
20080110042 Ackermann et al. May 2008 A1
20080163510 Dittmar et al. Jul 2008 A1
20080189974 Dittmer et al. Aug 2008 A1
20080200432 Suzuki et al. Aug 2008 A1
20080209645 Carrillo et al. Sep 2008 A1
20080248323 Radomyselski et al. Oct 2008 A1
20080289212 Moon et al. Nov 2008 A1
20090094852 Tatsumi et al. Apr 2009 A1
20090094854 Cimetta et al. Apr 2009 A1
20090126218 Dittmer et al. May 2009 A1
20090176681 Kaneda et al. Jul 2009 A1
20090211309 Kawabata et al. Aug 2009 A1
20100005681 Jo et al. Jan 2010 A1
20100011605 Kim et al. Jan 2010 A1
20100011606 Kim et al. Jan 2010 A1
20100011607 Kim et al. Jan 2010 A1
20100011611 Kim et al. Jan 2010 A1
20100011615 Steiner Jan 2010 A1
20100018262 Beihoff et al. Jan 2010 A1
20100024243 Ricklefs et al. Feb 2010 A1
20100035791 Igarashi et al. Feb 2010 A1
20100077628 Bae et al. Apr 2010 A1
20100115784 Jo et al. May 2010 A1
20100155326 Grunert Jun 2010 A1
20100170776 Ehrenberg et al. Jul 2010 A1
20100186176 Wright et al. Jul 2010 A1
20110016928 Beihoff et al. Jan 2011 A1
20110062145 Yang et al. Mar 2011 A1
Foreign Referenced Citations (32)
Number Date Country
3148573 Jun 1983 DE
3219977 Dec 1983 DE
3446468 Jul 1986 DE
3933949 Apr 1991 DE
3943082 Jul 1991 DE
4238546 May 1994 DE
4306215 Sep 1994 DE
4306217 Sep 1994 DE
4307372 Sep 1994 DE
4434205 Mar 1996 DE
4444090 Jun 1996 DE
19506919 Aug 1996 DE
19508244 Sep 1996 DE
198 11 962 Sep 1999 DE
102 02 442 Aug 2003 DE
103 46 107 Jun 2005 DE
211418 Feb 1987 EP
356689 Mar 1990 EP
468573 Jan 1992 EP
543166 May 1993 EP
548386 Jun 1993 EP
575759 Dec 1993 EP
699795 Mar 1996 EP
740012 Oct 1996 EP
1146161 Oct 2001 EP
2044297 Oct 1980 GB
2047277 Nov 1980 GB
2091123 Jul 1982 GB
2105452 Mar 1983 GB
2288457 Oct 1995 GB
WO 9207989 May 1992 WO
WO 0058545 Oct 2000 WO
Related Publications (1)
Number Date Country
20090126218 A1 May 2009 US