1. Device for conveying strip-shaped material, such as a tread, from a feed side to a discharge side, comprising a main conveyor belt extending from the feed side to the discharge side, and auxiliary conveyor belts on both sides of the main conveyor belt and which each comprise a feed conveyor belt and a discharge conveyor belt, a slit-shaped opening between the feed conveyor belt and the discharge conveyor belt, positioned for on both sides of the main conveyor belt forming a slit, and a recorder, preferably an image recorder, such as a camera or line scan camera, above or below the slit.
2. Device according to claim 1, wherein opposite the recorder at the other side of the slit a lighting unit is disposed, such as a fluorescent lighting or a stroboscopic lighting.
3. Device according to claim 1, further provided with a control unit, operationally connected to the recorder, memory means for storing an image of a complete strip of strip-shaped material, and calculation means for calculating the strip position on the device based on the recordings of the image recorder.
4. Device according to claim 1, wherein the slit-shaped openings of the auxiliary conveyor belts extend in line.
5. Device according to claim 1, wherein the main conveyor belt is adapted for over its full length supporting a strip.
6. Device according to claim 1, wherein the main conveyor belt comprises retaining means for retaining the strip-shaped material on the main conveyor belt, and preferably the retaining means retain the strip on the main conveyor belt over almost its full surface supported on the main conveyor belt.
7. Device according to claim 1, wherein the main conveyor belt is smooth for retaining an unvulcanised rubber strip on the main conveyor belt almost fixed in place, wherein preferably the auxiliary conveyor belts are smooth for retaining an unvulcanised rubber strip on the auxiliary conveyor belts almost fixed in place.
8. Device according to claim 1, wherein the feed conveyor belts are shorter than the discharge conveyor belts, preferably shorter to such an extent that the slit is near the feed side.
9. Device according to claim 1, wherein the conveyor belts are so-called timing belts, provided with a servo-drive.
10. Device according to claim 1, provided with driving means at the feed side for the common driving of the main conveyor belt and feed conveyor belts, preferably a common driving roller or guiding roller.
11. Device according to claim 1, provided with driving means at the discharge side for the common driving of the main conveyor belt and feed conveyor belts, preferably a common driving roller or guiding roller.
12. Tread application device for applying a tread on a building drum for a tyre, comprising:
a tread conveying device for conveying the tread to the building drum, from a feed side of the tread conveying device to a discharge side of the tread conveying device in a conveyance direction, comprising a main conveyor belt extending from the feed side to the discharge side in the conveyance direction, and auxiliary conveyor belts on both sides of the main conveyor belt and which each comprise a feed conveyor belt and a discharge conveyor belt, a slit-shaped opening between the feed conveyor belt and the discharge conveyor belt, positioned for on both sides of the main conveyor belt forming a slit, and a recorder, preferably an image recorder, such as a camera or line scan camera, above or below the slit, and
a positioning device for positioning the tread on the building drum, wherein the positioning device comprises measuring means at the feed side for determining the position of a segment of the tread and generating a position value, displacement means for displacing the segment of the tread with a displacement directional component parallel to the axis of rotation of the building drum, and control means, connected to the measuring means and the displacement means, for on the basis of the position value controlling the displacement device during the application of the segment of the tread on the building drum.
13. Device according to claim 12, wherein the main conveyor belt comprises a feed bearing roller and a discharge bearing roller, wherein the feed bearing roller forms a bearing roller for the feed auxiliary conveyor belts and the discharge bearing roller a bearing roller for the discharge auxiliary conveyor belts.
14. Device according to claim 12, wherein the tread conveying device is positioned mobile for displacing the discharge side with a directional component parallel to the axis of rotation of the building drum.
15. Device according to claim 14, wherein the tread conveying device is rotatably positioned about an axis of rotation substantially perpendicular to the displacement direction, preferably substantially perpendicular to the plane of the tread.
16. Device according to claim 14, wherein the tread conveying device is positioned with the axis of rotation near the feed side for rotating the tread conveying device substantially parallel to a tread to be applied, preferably with the axis of rotation substantially in the middle below a tread to be applied.
17. Device according to claim 12, wherein the measuring means comprise a calculation unit for calculating a middle position value of the segment from a recorded image of a segment.
18. Device according to claim 12, comprising means for securing a segment of a tread, preferably a tread over its full surface, on the tread conveying device.
19. Device according to claim 12, further comprising further measuring means for determining the length of a tread.
20. Device according to claim 19, further comprising means for adapting the length of a tread based on the result of the difference between the length measured and a predetermined set length.
21. Device according to claim 20, wherein the measuring means comprise at least on image recorder for recording an image of at least a segment of the tread, the control means comprise a computer, the tread conveying device comprises driving means for driving the tread conveying device at an adjustable speed of movement of the tread, and the building drum comprises building drum driving means for driving the building drum at an adjustable speed of circulation, wherein the image recorder, the driving means and the building drum driving means are connected to the computer for exchanging data with the computer, and the computer comprises software for based on images of the image recorder calculating the position and the length of a tread, and based on the calculated length adjusting the mutual operation of the driving means and building drum driving means.
22. Method for applying a tread on a building drum for a tyre using the device according to claim 12, wherein the position of each segment of the tread on a tread conveying device is measured, after which the tread conveying device conveys the tread to the building drum and applies it on the building drum, wherein during application of the tread on the building drum the position of a segment of the tread that is applied on the building drum is repeatedly adjusted to a pre-set value prior to it being applied on the building drum by laterally displacing the tread conveying device with respect to the building drum.
23. Method according to claim 22, wherein over nearly the full length of the tread the middle is repeatedly determined from a measurement of the position of both sides of a segment.
24. Method according to claim 22, wherein during the application the tread on the building drum a part of the section of the tread that has not yet been applied on the building drum is displaced with respect to the building drum with a displacement component parallel to the axis of rotation of the building drum.
25. Method according to claim 24, wherein during displacing the part of the tread that has not yet been applied on the building drum, a leading part of the tread is applied on the building drum, and a trailing part of the tread is retained on a tread conveying device.
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 method for communication over an 802.15.4 network comprising:
obtaining a first image with a sensor;
buffering a representation of the first image;
modulating the representation of the first image using a first 802.15.4 modem;
sending the representation of the first image over the 802.15.4 network to a coordinator;
receiving a first command to obtain a second image from the coordinator, said command based on a selectable interval;
obtaining the second image with the sensor in response to the receiving a first command;
buffering a representation of the second image;
modulating the representation of the second image using the first 802.15.4 modem;
sending the representation of the second image over the 802.15.4 network to the coordinator;
receiving a second command to obtain a third image from the coordinator based at least in part on a comparison between at least a portion of the representation of the first image and a portion of the representation of the second image; and
obtaining the third image in response to the receiving a second command, wherein the third image is obtained on an interval different than that of said selectable interval.
2. The method of claim 1 wherein the obtaining the third image comprises at least one of:
altering a resolution of the third image with respect to the second image;
altering a focus of the third image with respect to the second image;
altering a zoom of the third image with respect to the second image;
altering a crop of the third image with respect to the second image; and
altering an area of the third image with respect to the second image.
3. The method of claim 1 further comprising:
based at least in part on said comparison, receiving an alerting communication.
4. The method of claim 1 wherein, the third image is obtained with a second sensor.
5. A method for communication over an 802.15.4 network comprising:
subsequent to a triggering event, obtaining a first image with a sensor;
buffering a representation of the first image;
modulating the representation of the first image using a first 802.15.4 modem;
sending the representation of the first image over the 802.15.4 network to a coordinator;
receiving a first command to obtain a second image from the coordinator, said command based on a selectable interval;
obtaining the second image with the sensor in response to the receiving a first command;
buffering a representation of the second image;
modulating the representation of the second image using the first 802.15.4 modem;
sending the representation of the second image over the 802.15.4 network to the coordinator;
receiving a second command to obtain a third image from the coordinator based at least in part on a comparison between at least a portion of the representation of the first image and a portion of the representation of the second image; and
obtaining the third image in response to the receiving a second command, wherein the third image is obtained on an interval different than that of said selectable interval.
6. The method of claim 5 wherein the obtaining the third image comprises at least one of:
altering a resolution of the third image with respect to the second image;
altering a focus of the third image with respect to the second image;
altering a zoom of the third image with respect to the second image;
altering a crop of the third image with respect to the second image; and
altering an area of the third image with respect to the second image.
7. A system for communication over an 802.15.4 network comprising:
a camera for obtaining a first image and a second image on a selectable interval, said camera being capable of communicating with a sensor for sensing a triggering event;
a buffer for temporarily storing data associated with the first image and data associated with the second image; the buffer being coupled to the camera;
a first 802.15.4 modem coupled to the buffer, said first modem being capable of sending the data associated with the first image and the data associated with the second image over the 802.15.4 network;
a second 802.15.4 modem capable of communicating with said first 802.15.4 modem; and
a coordinator coupled to the second 802.15.4 modem, the coordinator being capable of communicating with a computer and capable of transmitting thereto the data associated with the first image and the data associated with the second image for comparison, wherein the computer is programmed to obtain a third image on an interval different than that of said selectable interval based at least in part on said comparison.
8. An apparatus for communicating over an 802.15.4 network comprising:
one or more computer-readable storage media; and
software embodied in the one or more computer-readable storage media that is operable when executed to:
obtain a first image;
buffer a representation of the first image;
modulate the representation of the first image using a first 802.15.4 modem;
send the representation of the first image over the 802.15.4 network to a coordinator;
obtaining a second image, on a selectable interval;
buffer a representation of the second image;
modulate the representation of the second image using the first 802.15.4 modem;
send the representation of the second image over the 802.15.4 network to the coordinator; and
based at least in part on a comparison between at least a portion of the representation of the first image and a portion of the representation of the second image, obtain a third image on an interval different than that of said selectable interval.
9. The apparatus of claim 8 wherein the software is further operable when executed to alter at least one of:
a resolution of the third image with respect to the second image;
a focus of the third image with respect to the second image;
a zoom of the third image with respect to the second image;
a crop of the third image with respect to the second image; and
an area of the third image with respect to the second image.