1. A method in a computer system for reducing the risk of adverse clinical events when administering multiple medications to a patient, comprising:
associating a first medication with a first attachment;
associating a second medication with the first attachment; and
determining whether the medications are compatible with one another, if so, generating an alert.
2. The method of claim 1, wherein the attachment is an intravenous (IV) line.
3. The method of claim 1, further comprising receiving orders for the first and second medications.
4. The method of claim 3, wherein the first medication order is received by displaying a representation of at least a portion of a human body and a first graphical indicia indicative of the location of the attachment on the patient, and receiving a user selection of the first graphical indicia.
5. The method of claim 4, further comprising receiving order details for the first medication after the user selection is received.
6. The method of claim 4, wherein the first graphical indicia is an icon.
7. The method of claim 3, further comprising displaying a plurality of graphical indicia indicative of the locations of a plurality of attachments on the patient.
8. A computerized system for reducing the risk of adverse clinical events when administering multiple medications to a patient, comprising:
a first associating module for associating a first medication with a first attachment;
a second associating module for associating a second medication with the first attachment; and
a determining module for determining whether the medications are compatible with one another, if so, generating an alert.
9. The system of claim 8, wherein the attachment is an intravenous (IV) line.
10. The system of claim 8, further comprising:
a receiving module for receiving orders for the first and second medications.
11. The system of claim 10, wherein the first medication order is received by displaying a representation of at least a portion of a human body and a first graphical indicia indicative of the location of the attachment on the patient, and receiving a user selection of the first graphical indicia.
12. The system of claim 11, wherein the receiving module receives order details for the first medication after the user selection is received.
13. The system of claim 11, wherein the first graphical indicia is an icon.
14. The system of claim 10, further comprising:
a displaying module for displaying a plurality of graphical indicia indicative of the locations of a plurality of attachments on the patient.
15. A computer-readable medium having computer-executable instructions for performing a method, the method comprising:
associating a first medication with a first attachment;
associating a second medication with the first attachment, and
determining whether the medications are compatible with one another, if so, generating an alert.
16. The method of claim 15, wherein the attachment is an intravenous (IV) line.
17. The method of claim 15, further comprising receiving orders for the first and second medications.
18. The method of claim 17, wherein the first medication order is received by displaying a representation of at least a portion of a human body and a first graphical indicia indicative of the location of the attachment on the patient, and receiving a user selection of the first graphical indicia.
19. The method of claim 18, further comprising receiving order details for the first medication after the user selection is received.
20. The method of claim 19, wherein the first graphical indicia is an icon.
21. The method of claim 17, further comprising displaying a plurality of graphical indicia indicative of the locations of a plurality of attachments on the patient.
The claims below are in addition to those above.
All refrences to claim(s) which appear below refer to the numbering after this setence.
What is claimed is:
1. A torque transmitting element for use in an apparatus driven by a prime mover, the torque transmitting element comprises:
a friction element including:
a first friction engagement surface;
a second friction engagement surface in a different plane from the first friction surface;
a third surface; and
at least one torque transmitter on the third surface; and
an insert secured to the friction element between the third surface and one of the first friction surface and the second friction surface.
2. The torque transmitting element according to claim 1, wherein a volume circumscribes the friction element; and
the insert is in the volume.
3. The torque transmitting element according to claim 1, wherein the friction element is made from friction material and the insert is metallic.
4. The torque transmitting element according to claim 1, wherein the friction element is made from friction material and the insert is made from powder metal.
5. The torque transmitting element according to claim 1, wherein the insert is encapsulated in the friction element.
6. The torque transmitting element according to claim 1, wherein at least a portion of the insert is exposed.
7. The friction coupling according to claim 1, wherein the insert has at least one surface projection engaging the friction element.
8. The friction coupling according to claim 1, wherein the friction element is a lining secured to the insert.
9. The friction coupling according to claim 1, wherein the insert further includes:
an inner peripheral surface; and
an outer peripheral surface including at least one projection; and
the friction element further includes:
an outer peripheral wall including:
an outer surface;
a rear surface on the other side from the outer surface; and
at least one recess on the rear surface aligned with the at least one projection on the insert.
10. The friction coupling according to claim 9, wherein the at least one recess is aligned with and extends into the at least one projection on the third surface.
11. The torque transmitting element according to claim 1, further including means for rotationally locking the insert to the friction element.
12. The torque transmitting element according to claim 1, wherein the friction element includes a first mating surface;
the insert includes a second mating surface; and
at least one of the first and second mating surfaces includes a projection and the other of the first and second mating surfaces includes a recess receiving the projection.
13. The torque transmitting element according to claim 1, further comprising an interlocking member disposed on at least one of the friction element and the insert.
14. The friction coupling according to claim 1, wherein the insert further includes:
an inner peripheral surface including at least one groove; and
an outer peripheral surface; and
the friction element further includes at least one rib received in the at least one groove.
15. The friction coupling according to claim 14, wherein the at least one groove is aligned with the at least one projection of the insert.
16. The friction coupling according to claim 1, wherein the friction element is annular and further includes:
an outer circumferential wall;
an inner circumferential wall; and
a radial wall extending between the outer and inner circumferential walls;
the radial wall, the outer circumferential wall and the inner circumferential wall form a channel; and
the insert is received in the channel.
17. The friction coupling according to claim 1, further comprising a torsional vibration damper secured to at least one of the friction element and the insert.
18. A brake and clutch assembly for a power apparatus comprising:
an engine output member;
a driven member; and
a coupling having a first position and a second position, the coupling comprising:
a friction member connected to one of the engine output member and the driven member, the friction member including:
a brake surface and a clutch surface in a different plane from the brake surface; and
an insert disposed intermediate the clutch surface and the brake surface;
a spring located between the friction member and the one of the engine output member and the driven member;
a brake member proximate to the brake surface; the brake member mounted relative to the friction member to permit relative rotation; and
a brake actuator connected to the brake member;
the clutch surface being disengaged from the other one of the engine output member and the driven member and the brake member being engaged with the brake surface when the coupling is in the first position and the clutch surface is engaged with the other one of the engine output member and the driven member and the brake member is disengaged from the brake surface when the coupling is in the second position.
19. The brake and clutch assembly according to claim 18, wherein the insert is encapsulated in the friction member.
20. The brake and clutch assembly according to claim 18, wherein a portion of the insert is exposed.
21. The blade brake and clutch assembly according to claim 18, wherein:
the one of the engine output member and the driven member includes a plurality circumferentially spaced axial projections;
the friction member is annular and further includes:
a plurality of circumferentially spaced radial projections, each of the radial projections extending between a respective pair of the axial projections;
an outer circumferential wall;
a frusto-conical inner circumferential wall including at least one projection extending toward the outer circumferential wall; and
a radial wall connecting the inner and outer circumferential walls;
the clutch surface is located on the inner circumferential wall and the brake surface is located on the radial wall;
the outer circumferential wall, the inner circumferential wall and the radial wall forming a channel;
at least one rib extending across the channel; and
at least one recess in the channel extending into one of the plurality of radial projections; and
the insert is annular and is received in the channel, the insert further includes:
at least one groove receiving the at least one rib; and
at least one radial projection extending from the outer circumference of the insert and into the at least one recess.
22. The blade brake and clutch assembly according to claim 21, wherein the friction member further includes a torsional vibration damper secured to at least one of the plurality of radial projections.
23. A torque transmitting element for use in an apparatus driven by a prime mover, the torque transmitting element comprises:
a friction element including:
a first friction engagement surface;
a second friction engagement surface in a different plane from the first friction surface;
a third surface; and
at least one torque transmitter on the third surface; and
means for reinforcing the transmission of torque from at least one of the first and second friction engagement surfaces, said reinforcing means is secured to the friction element between the third surface and the at least one of the first friction surface and the second friction surface.
24. The torque transmitting element according to claim 23, wherein the reinforcing means further includes means for rotationally locking the reinforcing means to the friction element.
25. The torque transmitting element according to claim 23, wherein at least one of the reinforcing means and the friction element includes means for damping torsional vibrations.