Claims
- 1. A brake operating mechanism for the brakes of a vehicle which apply a variable load on said mechanism as the brakes are released comprising:
- a rotatable, wind-up drum with means for connecting it to the brakes of said vehicle, said drum being rotatable in a wind-up direction for setting the brakes of said vehicle with a predetermined braking force on such connecting means and being rotatable in the opposite, unwinding direction for releasing said brakes of said vehicle, said drum having a brake setting position when it is wound-up in said wind-up direction and applies said predetermined braking force to said brakes and having a brake release position when it is unwound in said unwinding direction and said brakes are released;
- a rotatable shaft;
- drive means including a plurality of gears interconnecting said rotatable shaft and said rotatable, wind-up drum for causing rotation of said rotation of said rotatable, wind-up drum in said wind-up direction with rotation of said rotatable shaft and rotation of the gears in first directions;
- detent means coupled to said rotatable shaft for preventing rotation thereof in a second direction and thereby, preventing rotation of said gears in second directions opposite to said first directions and preventing rotation of said wind-up drum in said opposite unwinding direction; and
- release means for disabling said detent means with respect to preventing rotation of said gears in said second directions; wherein the improvement comprises:
- braking means coupled to one of said gears for applying a braking force which is sufficient to retard the rotation of said gears in said second direction when the force applied to said connecting means is less than about 30% of said predetermined braking force but which is insufficient to cause significant retardation of said rotation of said gears when said force applied to said connecting means is greater than about 30% of said predetermined braking force for thereby permitting said gears to rotate upon initial release of said release means at a rate which is substantially unaffected by said braking means but which is thereafter substantially reduced by said braking means and reduces wear on said gears and prevents damage to said brake operating mechanism during rotation of said gears in said second directions, said braking means being responsive to the rate of rotation of said one of said gears for applying a retarding force opposing rotation of said gears in said second directions which is independent of any force maintained on said release means, which is dependent upon the rate of rotation of said one of said gears and which increases with an increase in the rate of rotation of said one of said gears to a value which is insufficient to significantly retard the rate of rotation of said gears upon initial release of said release means and hence, of said wind-up drum in said unwinding direction, said braking means exerting insignificant rotation retarding action on said one of said gears when said one of said gears is rotated at a rate produced by manually rotating said shaft even when said release means is operated whereby said one gear is not retarded in rotation when said shaft is manually rotated to apply said brakes of said railway car and said brakes connected to said wind-up drum are fully released independently of said release means after it has been operated to disable said detent means.
- 2. A brake operating mechanism as set forth in claim 1 wherein said braking force is sufficient to retard rotation of said gears when the force applied to said connecting means is less than about 20% of said predetermined braking force but is insufficient to cause significant retardation of said gears when said force applied to said connecting means is greater than about 20% of said predetermined braking force.
- 3. A brake operating mechanism as set forth in claim 1 wherein said braking force is sufficient to retard rotation of said gears when the force applied to said connecting means is less than about 10% of said predetermined braking force but is insufficient to cause significant retardation of said gears when said force applied to said connecting means is greater than about 10% of said predetermined braking force.
- 4. A brake operating mechanism as set forth in claim 1 wherein said braking means comprises a braking member, a rotatable member coupled to and rotatable by said one of said gears, and a brake shoe movably mounted on said rotatable member and being movable into engagement with said braking member by reason of centrifugal force applied to said brake shoe with rotation of said rotatable member.
- 5. A brake operating mechanism as set forth in claim 4 wherein said braking member is a hollow cylinder and is mounted in a fixed position relative to said rotatable member, said rotatable member is mounted within said cylinder and has gear teeth engageable with the teeth of said one of said gears and said rotatable member has a plurality of radially extending slots, said brake shoe being received in one of said slots and further comprising additional brake shoes, said additional brake shoes being received in others of said slots, one shoe in each of said plurality of slots.
- 6. A brake operating mechanism as set forth in claim 5 wherein said plurality of gears have intermeshing teeth, one of said gears being secured to said wind-up drum for rotating the latter, and wherein the first-mentioned said one of said gears is other than said one of said gears secured to said wind-up drum.
- 7. A brake operating mechanism as set forth in claim 6 wherein said plurality of gears comprises a first gear connected to said rotatable shaft for rotation therewith by said release means, a second gear having its teeth intermeshing with the teeth of said first gear and a third gear secured to said second gear for rotation therewith, wherein said one of said gears secured to said wind-up drum has its teeth intermeshing with the teeth of said third gear and wherein the first-mentioned said one gear is said second gear.
- 8. A brake operating mechanism as set forth in claim 7 further comprising a housing and wherein said plurality of gears, said braking member and said rotatable member are mounted within said housing.
- 9. A brake operating mechanism as set forth in claim 4 wherein said braking member is a hollow cylinder and is mounted in a fixed position relative to said rotatable member, said rotatable member is mounted within said cylinder and has a radially extending slot open at its radially outermost end, said slot being wedge-shaped and having one radially extending side substantially parallel to but offset from a radius of said cylinder and having an opposite radially extending side which extends at an acute angle to said one radially extending side, and said brake shoe is received in and substantially fills said a slot.
- 10. A railway car installation comprising:
- brake shoes engageable with the wheels of said car;
- a rotatable, wind-up drum, said drum being rotatable in a wind-up direction for setting the brakes of said vehicle with a predetermined braking force and being rotatable in the opposite, unwinding direction for releasing said brakes of said vehicle, said drum having a brake setting position when it is wound-up in said wind-up direction and applies said predetermined braking force to said brakes and having a brake release position when it is unwound in said unwinding direction and said brakes are released;
- brake rigging interconnecting said wind-up drum and said brake shoes, said rigging including pivotable levers;
- means interconnecting one of said levers with said drum and windable around said drum to set said brakes;
- a rotatable shaft;
- drive means including a plurality of gears interconnecting said rotatable shaft and said rotatable, wind-up drum for causing rotation of said rotatable, wind-up drum in said wind-up direction with rotation of said rotatable shaft and rotation of the gears in first directions;
- detent means coupled to said rotatable shaft for preventing rotation thereof in a second direction and thereby, preventing rotation of said gears in second directions opposite to said first directions and preventing rotation of said wind-up drum in said opposite unwinding direction; and
- release means for disabling said detent means with respect to preventing rotation of said gears in said second directions; wherein the improvement comprises:
- braking means coupled to one of said gears for applying a braking force which is sufficient to retard the rotation of said gears in said second direction when the force applied to said connecting means is less than about 30% of said predetermined braking force but which is insufficient to cause significant retardation of said rotation of said gears when said force applied to said connecting means is greater than about 30% of said predetermined braking force for thereby permitting said gears to rotate upon initial release of said release means at a rate which is substantially unaffected by said braking means but which is thereafter substantially reduced by said braking means and reduces wear on said gears and prevents damage to said brake operating mechanism during rotation of said gears in said second directions, said braking means being responsive to the rate of rotation of said one of said gears for applying a retarding force opposing rotation of said gears in said second directions which is independent of any force maintained on said release means, which is dependent upon the rate of rotation of said one of said gears and which increases with an increase in the rate of rotation of said one of said gears to a value which is insufficient to significantly retard the rate of rotation of said gears upon initial release of said release means and hence, of said wind-up drum in said unwinding direction, said braking means exerting insignificant rotation retarding action on said one of said gears when said one of said gears is rotated at a rate produced by manually rotating said shaft even when said release means is operated whereby said one gear is not retarded in rotation when said shaft is manually rotated to apply said brakes of said railway car and said brakes connected to said wind-up drum are fully released independently of said release means after it has been operated to disable said detent means.
- 11. A brake operating mechanism as set forth in claim 10 wherein said braking force is sufficient to retard rotation of said gears when the force applied to said connecting means is less than about 20% of said predetermined braking force but is insufficient to cause significant retardation of said gears when said force applied to said connecting means is greater than about 20% of said predetermined braking force.
- 12. A brake operating mechanism as set forth in claim 10 wherein said braking force is sufficient to retard rotation of said gears when the force applied to said connecting means is less than about 10% of said predetermined braking force but is insufficient to cause significant retardation of said gears when said force applied to said connecting means is greater than 10% of said predetermined braking force.
- 13. A railway car brake operating mechanism for the brakes of a railway car which apply a variable load on the mechanism as the brakes are released comprising:
- a rotatable, wind-up drum with means for connecting it to the brakes of said railway car, said drum being rotatable in a wind-up direction for setting the brakes of said railway car and being rotatable in the opposite, uwinding direction for releasing said brakes of said railway car;
- a rotatable shaft;
- drive means including a plurality of gears interconnecting said rotatable shaft and said rotatable, wind-up drum for causing rotation of said rotatable, wind-up drum in said wind-up direction with rotation of said rotatable shaft and rotation of the gears in first directions;
- detent means coupled to said rotatable shaft for preventing rotation thereof in a second direction and thereby, preventing rotation of said gears in second directions opposite to said first directions and preventing rotation of said wind-up drum in said opposite unwinding direction; and
- release means for disabling said detent means with respect to preventing rotation of said gears in said second directions; wherein the improvement comprises:
- braking means coupled to one of said gears for retarding the rotation of said gears in said second directions without significant retardation of the release of the brakes when said release means is operated for thereby reducing wear on said gears and preventing damage to said brake operating mechanism during rotation of said gears in said second directions, said braking means being responsive to the rate of rotation of said one of said gears for applying a retarding force opposing rotation of said gears in said second directions which is independent of any force maintained on said release means, which is dependent upon the rate of rotation of said one of said gears and which increases with an increase in the rate of rotation of said one of said gears whereby the rate of rotation of said gears in said second directions upon operation of said release means is less than the rate of rotation of said gears in said second directions in the absence of said braking means and is controlled by said braking means dependent upon the rate of rotation of said one of said gears, said braking means exerting insignificant rotation retarding action on said one of said gears when said one of said gears is rotated at a rate produced by manually rotating said shaft even when said release means is operated whereby said one gear is not retarded in rotation when said shaft is manually rotated to apply said brakes of said railway car and said brakes connected to said wind-up drum are fully released independently of said release means after it has been operated to disable said detent means, said braking means comprising a braking member in the form of a hollow cylinder, a rotatable member coupled to and rotatable by said one of said gears and mounted within said hollow cylinder, said hollow cylinder being mounted in a fixed position relative to said rotatable member and said rotatable member having a radially extending slot open at its radially outermost end, said slot being wedge-shaped and having one radially extending side substantially parallel to but offset from a radius of said cylinder and having an opposite radially extending side which extends at an acute angle to said one radially extending side, and a brake shoe movably mounted on said rotatable member in, and substantially filling, said slot and being movable into engagement with said hollow cylinder by reason of centrifugal force applied to said brake shoe with rotation of said rotatable member.
Parent Case Info
This application is a continuation-in-part of my copending application Ser. No. 613,470 filed May 24, 1984, abandoned and entitled Railway Car Hand Brake with Release Governor.
US Referenced Citations (10)
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
613470 |
May 1984 |
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