1. A brake disk lock having an actuable housing shell (19), a support section (13), an engagement hoop (15), and a securing section (27, 127), wherein the support section (13) and the engagement hoop (15) bound a receiving gap (17) for the receiving of a brake disk, wherein the housing shell (19) is arranged on the same side as the support section (13) with respect to the receiving gap (17) and is movably supported at the support section (13), and wherein the housing shell (19), the support section (13) and the securing section (27, 127) cooperate such that the housing shell (19) is movable from a release position into a securing position by a movement of the housing shell (19) relative to the support section (13) in the direction of the receiving gap (17) to close the receiving gap (17) by means of the securing section (27, 127).
2. A brake disk lock in accordance with claim 1, characterized in that the housing shell (19) is pivotably supported at the support section (13).
3. A brake disk lock in accordance with claim 1, characterized in that the housing shell (19) is prestressed in the direction of the release position relative to the support section (13) andor the engagement hoop (15).
4. A brake disk lock in accordance with claim 1, characterized in that a brake disk recognition device (47) andor an alarm device (49) is at least partly received in the housing shell (19) at least in the release position.
5. A brake disk lock in accordance with claim 1, characterized in that a latch (37, 137) is provided, with the securing section (27, 127) being latched or latchable by means of the latch (37, 137) in the securing position of the housing shell (19).
6. A brake disk lock in accordance with claim 5, characterized in that the housing shell (19) is at the same time latched or latchable in the securing position by means of the latch (37, 137).
7. A brake disk lock in accordance with claim 5, characterized in that a lock cylinder (25) is provided within the housing shell (19), in particular in an inner housing (23) received in the housing shell (19).
8. A brake disk lock in accordance with claim 7, characterized in that the latch (37, 137) is movable into an unlatching deflected position by actuation of the lock cylinder (25); and in that the latch (37, 137) is movable into a latching rest position by actuation of the lock cylinder (25) or on the basis of an automatic function.
9. A brake disk lock in accordance with claim 8, characterized in that the latch (37, 137) is prestressed into the latching rest position.
10. A brake disk lock in accordance with claim 7, characterized in that the latch (37, 137) andor the lock cylinder (25) is supported axially fixedly within the housing shell (19) with respect to the axis of rotation of the lock cylinder (25), in particular in an inner housing (23) received in the housing shell (19).
11. A brake disk lock in accordance with claim 1, characterized in that the housing shell (19) is made as a handle which surrounds at least a part of the support section (13) in the release position andor in the securing position.
12. A brake disk lock in accordance with claim 1, characterized in that the support section (13) and at least a part of the engagement hoop (15) are made in one piece andor are rigidly connected to one another.
13. A brake disk lock in accordance with claim 1, characterized in that the engagement hoop (15) is pivotably supported at the support section (13).
14. A brake disk lock in accordance with claim 13, characterized in that the engagement hoop (15), the housing shell (19) and the support section (13) have a common pivot axis.
15. A brake disk lock in accordance with claim 13, characterized in that the support section (13) includes catch means (185) which, on the movement of the housing shell (19) relative to the support section (13), bring about a corresponding movement of the engagement hoop (15) relative to the housing shell (19) to close the receiving gap (17) by the securing section (27, 127).
16. A brake disk lock in accordance with claim 1, characterized in that the securing section (27, 127) is made as a striker pin (27) which can be driven in the axial direction by the movement of the housing shell (19), in particular via an inner housing (23) received in the housing shell (19).
17. A brake disk lock in accordance with claim 1, characterized in that the securing section (27, 127) is formed at the free end (127) of the engagement hoop (15).
The claims below are in addition to those above.
All refrences to claim(s) which appear below refer to the numbering after this setence.
1. A hand drying apparatus comprising:
a high-pressure airflow generator that takes air through an air inlet arranged at a lower portion of the high-pressure airflow generator and generates a high-pressure airflow;
a main body casing in which the high-pressure airflow generator is accommodated;
a first air path that is protruded from the main body casing and that allows passage of air from the high-pressure airflow generator; and
a nozzle that is located in a position ahead of the main body casing in a direction of the first air path and that blows air from the first air path toward a front portion and side portions of a drying space under the first air path, wherein
the main body casing includes
a main-body air inlet through which outside air is taken, and
a second air path that causes air from the main-body air inlet to flow upward and then downward to a level where the air inlet of the high-pressure airflow generator is located.
2. The hand drying apparatus according to claim 1, wherein the nozzle includes a nonlinear portion.
3. The hand drying apparatus according to claim 1, wherein the nozzle is arranged in one row or a plurality of rows and changes the air from the first air path to a high-speed airflow in a line shape.
4. A hand drying apparatus comprising:
a high-pressure airflow generator that takes air through an air inlet arranged at a lower portion of the high-pressure airflow generator and generates a high-pressure airflow;
a main body casing in which the high-pressure airflow generator is accommodated;
a first air path that is protruded from the main body casing and that allows passage of air from the high-pressure airflow generator; and
a nozzle that is located in a position ahead of the main body casing in a direction of the first air path and that blows air from the first air path toward a drying space under the first air path, wherein
the main body casing includes
a main-body air inlet through which outside air is taken, and
a second air path that causes air from the main-body air inlet to flow upward and then downward to a level where the air inlet of the high-pressure airflow generator is located, and
the nozzle is formed into slits arranged in a front row and a rear row in the direction of the first air path, and each of the slits is formed into a plurality of blowing ports divided by a partitioning portion and arranged in one row in a longitudinal direction of each of the slits.
5. The hand drying apparatus according to claim 4, wherein the partitioning portion includes a downward tilted surface on its inner side toward each of the blowing ports.
6. The hand drying apparatus according to claim 5, wherein a tilt angle of the tilted surface is set to 15 degrees to 45 degrees.
7. The hand drying apparatus according to claim 4, wherein the blowing ports in the front and the rear rows are arranged in a zigzag pattern.
8. A hand drying apparatus comprising:
a high-pressure airflow generator that takes air through an air inlet arranged at a lower portion of the high-pressure airflow generator and generates a high-pressure airflow;
a main body casing in which the high-pressure airflow generator is accommodated;
a first air path that is protruded from the main body casing and that allows passage of air from the high-pressure airflow generator; and
a nozzle that is located in a position ahead of the main body casing in a direction of the first air path and that blows air from the first air path toward a drying space under the first air path, wherein
the nozzle is formed into slits arranged in a front row and a rear row in the direction of the first air path,
each of the slits is formed into a plurality of blowing ports divided and arranged in one row in a longitudinal direction of each of the slits, and
the blowing ports on both sides of one of the slits in the front row located farther away from the main body casing in the direction of the first air path are arranged such that outer edges of the blowing ports on the both sides of the one of the slits in the front row are located close to one of the slits in the rear row.
9. The hand drying apparatus according to claim 8, wherein blowing directions of the blowing ports on the both sides of the one of the slits in the front row are tilted in a direction such that the blowing directions are located away from the main body casing with respect to a longitudinal direction.
10. The hand drying apparatus according to claim 8, wherein blowing directions of the blowing ports other than the blowing ports on the both sides of the one of the slits in the front row are tilted in a direction such that the blowing directions are located close to the main body casing with respect to a longitudinal direction.
11. The hand drying apparatus according to claim 8, wherein the blowing ports other than the blowing ports on the both sides of the one of the slits in the front row and the blowing ports of the one of the slits in the rear row are arranged in a zigzag pattern.
12. The hand drying apparatus according to claim 8, further comprising a wind receiving plate that is arranged on a front side of a lower portion of the main body casing such that the wind receiving plate is opposed to the blowing ports of the nozzle to receive the airflow from the nozzle.
13. The hand drying apparatus according to claim 12, wherein the wind receiving plate includes a plurality of air holes.
14. The hand drying apparatus according to claim 13, wherein a tilted surface is formed around each of the air holes in a tapered manner.
15. The hand drying apparatus according to claim 12, wherein the wind receiving plate is attached to the main body casing in a lateral direction.
16. The hand drying apparatus according to claim 12, wherein the wind receiving plate is attached to the main body casing such that the wind receiving plate is tilted downward in a forward direction.
17. The hand drying apparatus according to claim 12, wherein the wind receiving plate is retractable into the lower portion of the main body casing.
18. The hand drying apparatus according to claim 12, wherein the wind receiving plate is rotatable upward and downward between a substantially horizontal position and an upward position.
19. The hand drying apparatus according to claim 12, wherein the wind receiving plate is rotatable in a lateral direction around a shaft arranged on a bottom of the main body casing.
20. A hand drying apparatus comprising:
a high-pressure airflow generator that takes air through an air inlet arranged at a lower portion of the high-pressure airflow generator and generates a high-pressure airflow;
a main body casing in which the high-pressure airflow generator is accommodated;
a first air path that is protruded from the main body casing and that allows passage of air from the high-pressure airflow generator; and
a nozzle that is located in a position ahead of the main body casing in a direction of the first air path and that blows air from the first air path toward a drying space under the first air path, wherein
the main body casing includes
a main-body air inlet through which outside air is taken, and
a second air path that causes air from the main-body air inlet to flow upward and then downward to a level where the air inlet of the high-pressure airflow generator is located,
the nozzle is formed into slits arranged in a front row and a rear row in the direction of the first air path,
each of the slits is formed into a plurality of blowing ports divided and arranged in one row in a longitudinal direction of each of the slits, and
the blowing ports on both sides of one of the slits in the front row located farther away from the main body casing in the direction of the first air path are arranged such that outer edges of the blowing ports on the both sides of the one of the slits in the front row are located close to one of the slits in the rear row.
21. The hand drying apparatus according to claim 20, wherein blowing directions of the blowing ports on the both sides of the one of the slits in the front row are tilted in a direction such that the blowing directions are located away from the main body casing with respect to a longitudinal direction.
22. The hand drying apparatus according to claim 20, wherein blowing directions of the blowing ports other than the blowing ports on the both sides of the one of the slits in the front row are tilted in a direction such that the blowing directions are located close to the main body casing with respect to a longitudinal direction.
23. The hand drying apparatus according to claim 20, wherein the blowing ports other than the blowing ports on the both sides of the one of the slits in the front row and the blowing ports of the one of the slits in the rear row are arranged in a zigzag pattern.
24. The hand drying apparatus according to claim 20, further comprising a wind receiving plate that is arranged on a front side of a lower portion of the main body casing such that the wind receiving plate is opposed to the blowing ports of the nozzle to receive the airflow from the nozzle.
25. The hand drying apparatus according to claim 24, wherein the wind receiving plate includes a plurality of air holes.
26. The hand drying apparatus according to claim 25, wherein a tilted surface is formed around each of the air holes in a tapered manner.
27. The hand drying apparatus according to claim 24, wherein the wind receiving plate is attached to the main body casing in a lateral direction.
28. The hand drying apparatus according to claim 24, wherein the wind receiving plate is attached to the main body casing such that the wind receiving plate is tilted downward in a forward direction.
29. The hand drying apparatus according to claim 24, wherein the wind receiving plate is retractable into the lower portion of the main body casing.
30. The hand drying apparatus according to claim 24, wherein the wind receiving plate is rotatable upward and downward between a substantially horizontal position and an upward position.
31. The hand drying apparatus according to claim 24, wherein the wind receiving plate is rotatable in a lateral direction around a shaft arranged on a bottom of the main body casing.