This application claims priority from German Patent Application No. 10 2013 201 762.6, filed Feb. 4, 2013, and from German Utility Model Application No. 20 2012 009 335.5, filed Sep. 27, 2012, which are both incorporated herein by reference in their entirety.
The present invention relates to the field of road finishing machines or asphalt finishing machines and, in particular, to the detection of a filling level and the detection of a temperature of the asphalt material to be processed. Embodiments relate to the combination of an ultrasonic sensor and an infrared temperature measuring element for worm or grid control of a road or asphalt finishing machine.
Using the ultrasonic sensor 120 shown in
The temperature of the material 104 is an important criterion for the quality of the future road surface, apart from a uniform filling level of the material 104 above the worm 114. The asphalt mix is prepared in a mixing plant and trucks comprising heat-insulated containers transport the material from the mixing plant to the finishing machine. At the finishing machine, the material is filled into the container 106. The material 104 is subjected to cooling effects of a greater or lesser extent on the way from the mixing plant to the finishing machine, caused by the transport distance, the duration of the transport, the outside temperature or the effectivity of insulation.
It is necessary to again check the temperature of the mix at the finishing machine so as to ensure the road surface to be generated to exhibit the quality desired. Providing conventional measuring devices at corresponding positions within the finishing machine is known, however entailing high complexity with regard to mounting and additional wiring.
According to an embodiment, a device for detecting the temperature of an asphalt material to be processed by a road finishing machine comprises: at least one temperature measuring head, characterized in that the at least one temperature measuring head is integrated into an ultrasonic sensor for detecting the filling level of the asphalt material.
Another embodiment may have an ultrasonic sensor for detecting the filling level of an asphalt material to be processed by a road finishing machine, characterized by a temperature measuring head for detecting the temperature of the asphalt material.
According to another embodiment, a road finishing machine may have: a device for detecting as mentioned above or an ultrasonic sensor as mentioned above for detecting the filling level and the temperature of the asphalt material to be processed.
In accordance with embodiments, the device includes a casing in which are arranged one or several ultrasonic transducers and the at least one temperature measuring head.
In accordance with embodiments, the ultrasonic transducer and the temperature measuring head are heading in the same direction.
In accordance with embodiments, the device includes a terminal connected effectively to the ultrasonic sensor and the temperature measuring head so as to provide corresponding measuring signals, exemplarily in the form of a digital interface or an analog interface.
In accordance with embodiments, the temperature measuring head includes a contactlessly operating temperature sensor, such as, for example, an infrared sensor.
In accordance with embodiments, the device includes a controller electrically connected to the ultrasonic sensor so as to receive the measuring signals from the ultrasonic sensor and the temperature measuring head and generate and output control signals for the road finishing machine based on the measuring signals.
In accordance with embodiments, the road finishing machine includes a conveyor worm for distributing an asphalt material to be processed, the device or the ultrasonic sensor being arranged so as to detect the filling level and the temperature of the asphalt material to be processed above the conveyor worm.
What is provided in accordance with the present invention is an approach allowing detecting a temperature of an asphalt material to be processed by a road finishing machine, in addition to the filling level, in an easy manner, avoiding unnecessary complexity and unnecessary wirings, and outputting corresponding measuring signals to a central controller which may then, in dependence on the temperatures detected, generate corresponding control signals for operating the road finishing machine and output same to corresponding elements of the road finishing machine. The invention provides a device for detecting the temperature of the asphalt material to be processed which includes a temperature measuring head, preferably a contactless infrared measuring head which is integrated into the existing ultrasonic sensor described before. Thus, embodiments of the present invention provide an approach of using an existing ultrasonic sensor in which a contactless infrared sensor is integrated into the existing ultrasonic measuring head. In accordance with embodiments, the ultrasonic sensor may comprise a digital interface, which is of advantage in that the additional sensor element, implemented as the temperature measuring sensor, does not entail additional wiring since only an additional address has to be provided using the digital interface, by means of which the temperature information are provided. In further embodiments, an analog interface may be provided which is connected to a central controller via a multicore wire so as to provide corresponding control signals or measuring signals to the ultrasonic measuring head or output same therefrom. Normally, the wire present includes one or several cores which are unused so that, even when using an analog interface, the wiring complexity may be reduced since an additional core of the wire, which is present anyway but has not been used up to then, may be resorted to.
Additionally, the inventive approach is of advantage since it allows easy mounting since detecting the level and detecting the temperature are performed at the same time, when inserting a sensor element. Correspondingly, inserting two sensors is no longer necessary.
Embodiments of the present invention will be detailed subsequently referring to the appended drawings, in which:
A runtime measurement may be performed based on the ultrasonic signals 128, 130, based on which the level of the filling material 104 with regard to a reference level may be determined. A corresponding temperature measuring signal is generated by the sensor 126, and passed on to the controller, based on the heat radiation 132 emitted by the filling material 104.
In the embodiment described above, the ultrasonic sensor 120 includes an ultrasonic transducer and a temperature measuring head, wherein it is to be mentioned that the present invention is not limited to such an implementation. Rather, several ultrasonic transducers and several temperature sensors may also be provided.
An ultrasonic transducer 120 as has been described with reference to
While this invention has been described in terms of several embodiments, there are alterations, permutations, and equivalents which will be apparent to others skilled in the art and which fall within the scope of this invention. It should also be noted that there are many alternative ways of implementing the methods and compositions of the present invention. It is therefore intended that the following appended claims be interpreted as including all such alterations, permutations, and equivalents as fall within the true spirit and scope of the present invention.
Number | Date | Country | Kind |
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20 2012 009 335.5 | Sep 2012 | DE | national |
10 2013 201 762.6 | Feb 2013 | DE | national |