Multi-point casement handle

Information

  • Patent Grant
  • 6767038
  • Patent Number
    6,767,038
  • Date Filed
    Friday, February 8, 2002
    22 years ago
  • Date Issued
    Tuesday, July 27, 2004
    20 years ago
  • Inventors
  • Original Assignees
  • Examiners
    • Swann; J. J.
    • Lugo; Carlos
    Agents
    • Wray; James Creighton
    • Narasimhan; Meera P.
Abstract
A plastic casement windows operator has a plastic housing, a plastic sliding tounge and a plastic operating lever. The housing has a plastic main body and a plastic cover with complementary peripheral steps and peripheral energy directors and inward extending receivers and pins with energy directors for joining the cover and main body after the plastic sliding tounge and plastic operating lever are installed. The main body has an inward extending cylindrical bearing opening, which holds a cylindrical bearing integrally formed between an operating handle and an activator arm. An activator cylinder at a remote end of the arm moves in an oval groove in the sliding tounge. Wings on the tounge support opposite jugs and cylindrical guides which slide along inner guides on the cover and main body. An extension on the flat body tounge has a U-shaped opening for connecting a window linkage. Integral rims extend around the tounge, the U-shaped opening and the oval groove.
Description




BACKGROUND OF THE INVENTION




Most window operators are manufactured from metal housings and bases, which typically house a worm gear and activating guide arms. The metal housings are prone to extreme heat conductivity. The metal housings may produce condensation on the interior side of windows fitted with the rotary operators. Condensation occurs at the location of the metal operator. Also, those types of metal operators are in need of paint finishes. Both the metal and the paint are likely to corrode over a period of time.




The other operators on the market are produced from a die-cast zamack material, which breaks down in a seacoast application. The metal therefore requires some type of finish on the outer surface. The interior surfaces of the operator, which includes the operating gears, are left unfinished. Thus, the unfinished interior of the body and the worm gear are prone to corrosion.




Another problem with metal operators is that the metal of the base housing and the metal of the worm-gear are different metals. Dissimilar metals promote corrosion of parts. Having dissimilar metals in contact creates additional force and friction between the parts, thus causing a high factor of wear on the parts. The high factor of wear increases the chances of the parts failing. The metal operators also conduct heat at a much greater rate than other material types.




Prior art devices require gears for actuating rotary operators. Plastic devices have been proposed which use racks and pinions made of plastic.




Needs exist for window operators that are not subject to corrosion that conduct heat at a low rate, thereby eliminating condensation, that readily accept coatings, that do not have dissimilar metals, and that do not have a plurality of fine tooth gears in contact.




SUMMARY OF THE INVENTION




The present invention relates to window operators, and more specifically, to operators for casement windows.




A preferred embodiment has four major parts and two bearing rings. The four major parts are made of strong, rigid polymer. The bearing rings may be made of polypropylene or other self-lubricating polymer. The four major parts are a main body, a cover, an operating handle and a sliding tongue.




The parts of the window operator are produced from polymers, which are non-corrosive and non-thermal conducting. The handle with the attached operator arm is inserted through the cover. The sliding tongue is placed within the main body. The end of the operator arm is placed in a groove in the sliding tongue before pressing the cover onto the main body and fusion welding the cover to the main body. The cover and body components are sonic welded with the sliding tongue and the actuator arm held inside of the plastic base of the window operator, creating a one-piece assembly.




The use of the plastic polymer for the base housing, as well as for the arm and the actuator, eliminates the possibility of corrosion of the base material. Also, the polymer does not require finishing or painting to protect it from corrosion.




A plastic casement windows operator has a plastic housing, a plastic sliding tounge and a plastic operating lever. The housing has a plastic main body and a plastic cover with complementary peripheral steps and peripheral energy directors and inward extending receivers and pins with energy directors for joining the cover and main body after the plastic sliding tounge and plastic operating lever are installed. The main body has an inward extending cylindrical bearing opening, which holds a cylindrical bearing integrally formed between an operating handle and an activator arm. An activator cylinder at a remote end of the arm moves in an oval groove in the sliding tounge. Wings on the tounge support opposite jugs and cylindrical guides which slide along inner guides on the cover and main body. An extension on the flat body tounge has a U-shaped opening for connecting a window linkage. Integral rims extend around the tounge, the U-shaped opening and the oval groove.




These and further and other objects and features of the invention are apparent in the disclosure, which includes the above and ongoing written specification, with the claims and the drawings.











BRIEF DESCRIPTION OF THE DRAWINGS





FIG. 1

is a schematic representation of the window operator.





FIGS. 2-7

are top, side, bottom cross-sectional and end views of the tongue.





FIGS. 8-13

are top, side, cross-sectional and end views of the main body.





FIGS. 14-20

are bottom, side, top and end details of the handle.





FIGS. 21-27

are inner, outer, side and end views and an edge detail of the cover.





FIG. 28

is an exploded view of the window operator.





FIG. 29

shows the assembled parts before joining the cover.





FIGS. 30 and 31

show extreme and middle positions of the handle and tongue.











DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS




As shown in the drawings, the window operator


1


has a housing


3


made of a main body


5






A sliding tongue


11


that fits between the main body and cover has an extension


13


with a U-shaped opening


14


which engages a conventional mushroom connector on a window-moving linkage. A rim


15


extends partially around the flat body


17


of the sliding tongue


11


to give strength to the flat body. A thinner rim


16


extends around the U-shaped opening


14


to provide a guide surface around the U-shaped opening. Wings


19


extend from the flat body, and guiding lugs


21


extend from the wings


19


beyond the rim


15


. Cylindrical guides


23


extend from the flat body


15


opposite from the lugs


21


. An oval groove


25


is formed in the flat body and is surrounded by an oval rim


27


. The oval groove


25


and rim


27


are spaced from and aligned with the U-shaped opening


14


.




In a preferred embodiment, the oval groove


25


and rim


27


have recesses


29


extending laterally from an end


31


remote from the U-shaped opening


14


.




Curved lugs


33


within those recesses have inner surfaces


35


which snap over an actuating cylinder as later described to positively hold the sliding tongue in extreme positions against unwanted unintentional movements away from fully closed or fully opened positions.




A handle


41


has an external movable lever


43


with a large, generally flat shaped end


45


for moving by a user. A cylindrical bearing


47


is provided at the inner end of lever


43


. An actuator arm


49


extends radially from the bearing


47


diametrically opposite to the lever


43


. The actuating cylinder


51


extends from the remote end


53


of the actuator arm. The bearing


47


and actuating cylinder have parallel axes.




Main body


5


has an elongated shape with a central bearing opening


55


which receives the cylindrical bearing


47


of the handle


41


.




A recess


57


in the outer surface


59


around the bearing opening


55


receives a bearing ring


61


that is inserted in recess


57


or slipped over the cylindrical bearing


47


from the actuator arm end


53


before the actuator arm end and cylindrical bearing


47


are inserted in the bearing opening


55


. A bearing retainer ring


63


is inserted in a recess


65


in the cylindrical bearing after it has been inserted through the bearing opening


55


. The retainer ring


63


may be a large flexible ring pulled into place over the actuator arm end


53


or a C-shaped snap ring.




The main body


5


has a guide


67


that guides the lugs


21


on the tongue


11


. The main body also has inward extending reinforced tubular receivers


71


that receive inward projecting pins


73


on the cover


7


. The inward projecting pins


73


have radially extending energy directors


75


. The cover has peripheral energy directors


77


which fit in peripheral steps


79


in the main body


3


.




The cover also has an inward ledge


81


which provides a guide for the cylindrical extensions


23


on the tongue


11


.




After the actuator arm end


53


has been inserted in the bearing ring


61


and bearing opening


55


, the retainer ring


63


is positioned in recess


65


. The tongue is placed in the main body


5


with the actuating cylinder


51


, one end


53


of arm


49


inserted in the oval recess


25


in the tongue. The cover is aligned with the main body and the pins are inserted in the tubular receivers, and the cover and main body are clamped together with continuous inward force in a press while ultrasonic energy is applied to heat the cover and main body and to fuse them together in the areas of the energy directors.




Semi cylindrical-shaped mounts


83


on extensions


85


of cover


7


align with mounts


87


on extension


89


of the main body to receive threaded mounting fasteners.




Moving the handle from one extreme position to the other moves the actuator cylinder in the cylindrical groove, and thereby traverses the tongue between extreme positions.




While the invention has been described with reference to specific embodiments, modifications and variations of the invention may be constructed without departing from the scope of the invention, which is defined in the following claims.



Claims
  • 1. Casement window operator apparatus comprising a plastic polymer housing having a plastic main body and a plastic cover, a plastic sliding tongue fitted between the cover and the main body for sliding laterally therein, an extension on the sliding tongue, a U-shaped opening in the extension for engaging a connector on a window-moving linkage, a plastic lever connected to the main body for pivoting therein and connected to the plastic sliding tongue for sliding the tongue in the plastic polymer housing as the lever is moved, wherein the sliding tongue further comprises a flat body and a relatively thick rim extending around the flat body.
  • 2. The apparatus of claim 1, further comprising a relatively thinner rim extending around the U-shaped opening.
  • 3. The apparatus of claim 1, further comprising wings extending from the flat body and guide lugs extending from the wings.
  • 4. The apparatus of claim 3, further comprising cylindrical guides extending from the flat body opposite from the lugs.
  • 5. The apparatus of claim 1, further comprising an oval groove formed in the flat body and surrounded by an oval rim.
  • 6. Casement window operator apparatus comprising a plastic polymer housing having a plastic main body and a plastic cover, a plastic sliding tongue fitted between the cover and the main body for sliding laterally therein, an extension on the sliding tongue, a U-shaped opening in the extension for engaging a connector on a window-moving linkage, a plastic lever connected to the main body for pivoting therein and connected to the plastic sliding tongue for sliding the tongue in the plastic polymer housing as the lever is moved, the sliding tongue further comprises a flat body and a relatively thick rim extending around the flat body, an oval groove formed in the flat body and surrounded by an oval rim, and recesses extending laterally from an end of the oval groove remote from the U-shaped opening.
  • 7. The apparatus of claim 6, further comprising curved lugs in the recesses for holding the sliding tongue in extreme positions.
  • 8. The apparatus of claim 6, wherein the plastic lever has a generally flat shaped handle for moving by a user and has a cylindrical bearing portion and an actuator arm extending radially from the cylindrical bearing portion opposite the handle and an actuating cylinder extending from a remote end of the actuator into the oval groove in the flat body.
  • 9. The apparatus of claim 8, further comprising a recess in an outer surface of the cylindrical bearing and a plastic bearing ring inserted in the recess.
  • 10. Casement window operator apparatus comprising a plastic polymer housing having a plastic main body and a plastic cover, wherein the main body has inward extending reinforced tubular receivers, and wherein the cover has inward projecting pins for fitting in the receivers, a plastic sliding tongue fitted between the cover and the main body for sliding laterally therein, an extension on the sliding tongue, a U-shaped opening in the extension for engaging a connector on a window-moving linkage, and a plastic lever connected to the main body for pivoting therein and connected to the plastic sliding tongue for sliding the tongue in the plastic polymer housing as the lever is moved.
  • 11. The apparatus of claim 10, wherein the pins have radially extending energy directors, wherein the main body has peripheral steps, and wherein the cover has peripheral energy directors, which fit in the peripheral steps for fusing the cover and the main body adjacent the energy directors upon application of ultrasonic energy.
  • 12. Casement window operator apparatus comprising a plastic polymer housing having a plastic main body and a plastic cover, wherein the cover has an inward ledge, which provides a guide for cylindrical extensions, and wherein the main body has parallel guides for guide lugs, a plastic sliding tongue fitted between the cover and the main body for sliding laterally therein, an extension on the sliding tongue, a U-shaped opening in the extension for engaging a connector on a window-moving linkage, and a plastic lever connected to the main body for pivoting therein and connected to the plastic sliding tongue for sliding the tongue in the plastic polymer housing as the lever is moved.
  • 13. Casement window operator apparatus comprising a plastic polymer housing having a plastic main body and a plastic cover, wherein the main body and the cover have semi cylindrical shaped mounts with energy directors on the mounts for fusing the semi cylindrical mounts together into cylindrical mounts upon application of ultrasonic energy, a plastic sliding tongue fitted between the cover and the main body for sliding laterally therein, an extension on the sliding tongue, a U-shaped opening in the extension for engaging a connector on a window-moving linkage, and a plastic lever connected to the main body for pivoting therein and connected to the plastic sliding tongue for sliding the tongue in the plastic polymer housing as the lever is moved.
  • 14. Casement window operator apparatus comprising a plastic polymer housing having a plastic main body and a plastic cover, the plastic main body having a central integrally formed cylindrical bearing opening, an operating lever having a movable handle extending outside of the main body, the operating lever having a central cylindrical bearing extending through the cylindrical bearing opening and having an actuator arm radially extending from the cylindrical bearing and having an actuating cylinder at a remote end of the actuator arm, a plastic sliding tongue fitted between the cover and the main body for sliding laterally therein, an extension on the sliding tongue, a U-shaped opening in the extension for engaging a connector on a window-moving linkage, the actuating cylinder connected to the plastic sliding tongue for sliding the tongue in the plastic polymer housing as the lever is moved, the sliding tongue further comprises a flat body and a relatively thick rim extending around the flat body and a relatively thinner rim extending around the U-shaped opening, wings extending from the flat body and guide lugs extending from the wings, cylindrical guides extending from the flat body opposite from the lugs, an oval groove formed in the flat body and surrounded by an oval rim and receiving the actuating cylinder for sliding the plastic tongue in the body as the handle is moved.
  • 15. Casement window operator apparatus comprising a plastic polymer housing having a plastic main body and a plastic cover, the plastic main body having a central integrally formed cylindrical bearing opening, an operating lever having a movable handle extending outside of the main body, the operating lever having a central cylindrical bearing extending through the cylindrical bearing opening and having an actuator arm radially extending from the cylindrical bearing and having an actuating cylinder at a remote end of the actuator arm, a plastic sliding tongue fitted between the cover and the main body for sliding laterally therein, an extension on the sliding tongue, a U-shaped opening in the extension for engaging a connector on a window-moving linkage, the actuating cylinder connected to the plastic sliding tongue for sliding the tongue in the plastic polymer housing as the lever is moved, the sliding tongue further comprises a flat body and a relatively thick rim extending around the flat body and a relatively thinner rim extending around the U-shaped opening, wings extending from the flat body and guide lugs extending from the wings, cylindrical guides extending from the flat body opposite from the lugs, an oval groove formed in the flat body and surrounded by an oval rim and receiving the actuating cylinder for sliding the plastic tongue in the body as the handle is moved, further comprising recesses extending laterally from an end of the oval groove remote from the U-shaped opening and curved lugs in the recesses for holding the sliding tongue in extreme positions.
  • 16. Casement window operator apparatus comprising a plastic polymer housing having a plastic main body and a plastic cover, the plastic main body having a central integrally formed cylindrical bearing opening, further comprising complementary inward extending reinforced tubular receivers, and inward projecting pins for fitting in the receivers on the main body and cover, and wherein the pins have radially extending energy directors, wherein the main body and the cover have peripheral steps and complementary peripheral energy directors, which fit in the peripheral steps for fusing the cover and the main body adjacent the energy directors upon application of ultrasonic energy, an operating lever having a movable handle extending outside of the main body, the operating lever having a central cylindrical bearing extending through the cylindrical bearing opening and having an actuator arm radially extending from the cylindrical bearing and having an actuating cylinder at a remote end of the actuator arm, a plastic sliding tongue fitted between the cover and the main body for sliding laterally therein, an extension on the sliding tongue, a U-shaped opening in the extension for engaging a connector on a window-moving linkage, the actuating cylinder connected to the plastic sliding tongue for sliding the tongue in the plastic polymer housing as the lever is moved, the sliding tongue further comprises a flat body and a relatively thick rim extending around the flat body and a relatively thinner rim extending around the U-shaped opening, wings extending from the flat body and guide lugs extending from the wings, cylindrical guides extending from the flat body opposite from the lugs, an oval groove formed in the flat body and surrounded by an oval rim and receiving the actuating cylinder for sliding the plastic tongue in the body as the handle is moved.
  • 17. The apparatus of claim 16, further comprising an inward ledge, which provides a guide for the cylindrical extensions, and parallel inward extending guides for the guide lugs on the cover and main body.
  • 18. The apparatus of claim 16, wherein the main body and the cover have semi cylindrical shaped mounts with energy directors on the mounts for fusing the semi cylindrical mounts together into cylindrical mounts upon application of ultrasonic energy.
Parent Case Info

This application claims the benefit of U.S. Provisional Application No. 60/267,149, filed Feb. 8, 2001.

US Referenced Citations (68)
Number Name Date Kind
296402 Goforth Apr 1884 A
2214280 Lang Sep 1940 A
2811349 Bondurant et al. Oct 1957 A
2950509 Stavenau Aug 1960 A
3114542 Ahlgren Dec 1963 A
3422575 Armstrong Jan 1969 A
3811718 Bates May 1974 A
3949525 Bates et al. Apr 1976 A
4059298 Van Klompenburg Nov 1977 A
4095827 Stavenau Jun 1978 A
4095829 Van Klompenburg Jun 1978 A
4241541 van Klompenburg et al. Dec 1980 A
4253276 Peterson et al. Mar 1981 A
4266371 Erdman et al. May 1981 A
4305228 Nelson Dec 1981 A
4429910 Anderson Feb 1984 A
4497135 Vetter Feb 1985 A
4617758 Vetter Oct 1986 A
4621847 Paulson et al. Nov 1986 A
4634160 Lahmann et al. Jan 1987 A
4801164 Mosch Jan 1989 A
4813725 Mosch Mar 1989 A
4872716 Legrand et al. Oct 1989 A
4930820 Pettit et al. Jun 1990 A
4937976 Tucker et al. Jul 1990 A
4945678 Berner et al. Aug 1990 A
4991886 Nolte et al. Feb 1991 A
D316509 Nolte Apr 1991 S
5080407 Evers Jan 1992 A
5087087 Vetter et al. Feb 1992 A
5118145 Tucker Jun 1992 A
5152103 Tucker et al. Oct 1992 A
D334132 Wobschall et al. Mar 1993 S
RE34230 Tucker et al. Apr 1993 E
5199216 Vetter et al. Apr 1993 A
5205074 Guhl et al. Apr 1993 A
5272837 Nolte et al. Dec 1993 A
5318333 Dreifert Jun 1994 A
5370428 Dreifert et al. Dec 1994 A
5414899 Raetz May 1995 A
5437173 Spinar Aug 1995 A
5448857 Stormo Sep 1995 A
D366409 Delaske Jan 1996 S
5489131 Blom Feb 1996 A
5582445 Olsen et al. Dec 1996 A
5599049 Kockel Feb 1997 A
D390445 Johnson et al. Feb 1998 S
5725260 Eikmeier et al. Mar 1998 A
5730477 Nagy Mar 1998 A
5741031 Bauman et al. Apr 1998 A
5765308 Anderson et al. Jun 1998 A
5778602 Johnson et al. Jul 1998 A
5802913 Winner Sep 1998 A
5815984 Sheets et al. Oct 1998 A
5839767 Piltingsrud Nov 1998 A
5901499 Delaske et al. May 1999 A
5927771 Simon et al. Jul 1999 A
5937582 Taylor Aug 1999 A
6007114 Hotzl Dec 1999 A
6044587 Vetter et al. Apr 2000 A
6109668 Demarco Aug 2000 A
6122863 Tippin et al. Sep 2000 A
6128858 Vetter et al. Oct 2000 A
6142541 Rotondi Nov 2000 A
6161881 Babka et al. Dec 2000 A
6167662 Gruber Jan 2001 B1
6431620 Tremblay et al. Aug 2002 B2
6450554 Rotondi et al. Sep 2002 B1
Foreign Referenced Citations (3)
Number Date Country
2341263 Mar 1974 DE
2194280 Jul 1987 GB
2208891 Aug 1988 GB
Provisional Applications (1)
Number Date Country
60/267149 Feb 2001 US