The present invention relates to a method and an equipment permitting to detect the presence of humidity on a surface of a strip, in particular a bare or coated metal strip.
For example, in the metallurgy, the metallic products, such as a washed, rinsed coated metallic strip, might be moist or humid. Humidity in its outer layer is often present after process steps involving liquid, such as water cooling. The presence of humidity might lead to the degradation of the coating on a metallic strip and/or lower the properties of a bare metallic strip, in both cases the product is usually downgraded. In the case of the coated strip, the product degradation can occur during the convey of the strip and can be produced by the transport rolls leaving marks on said coating. Consequently, detecting the presence of humidity on a surface of a metal strip is important to ensure a good quality of the product and permits to control some process steps such as the strip drying.
It is an object of the present invention to provide a solution permitting detection of the presence of humidity on a surface of a strip, in particular a bare or coated metal strip.
The present invention provides a method for detecting the presence of humidity on a surface (2) of a bare metal strip (3) or of a coated metal strip (3) comprising the following steps:
The present invention also provides an equipment for detecting the presence of humidity on a surface of a metal strip (3) or of a coated metal strip (3) comprising:
Other characteristics and advantages of the invention will become apparent from the following detailed description of the invention.
To illustrate the invention, various embodiment and trials of non-limiting example will be described, particularly with reference to the following figures:
The invention relates to a method for detecting the presence of humidity on a surface of a bare metal strip or of a coated metal strip comprising the following steps:
A—blowing on said surface an impinging air flow producing an air flow deflected by said surface, said impinging air flow not being saturated,
B—measuring a humidity content of at least a portion of said deflected air flow,
C—comparing the humidity content of said impinging air flow and said deflected air flow,
D—if said humidity content of said deflected air flow is superior to said humidity content of said impinging air flow, the presence of humidity on said surface of said bare metal strip or of said coated metal strip is detected.
In the first step, as illustrated in
The humidity pick up depends on numerous factors. An impinging air can absorb humidity from said surface only if some humid layer is present on the said surface and if said impinging air is not saturated with humidity. Moreover, the smaller is the humidity content of the impinging air, the better the air can absorb humidity. Without willing to be bound by any theory, apparently, the higher is the impinging air temperature, the more it the air can absorb humidity. Apparently, that is why the skilled person in the art could adjust a humidity content and the temperature of the impinging air flow 1 as a in function of the humidity threshold that is detected/aimed to be detected.
In the second step, the humidity content of at least a portion of said deflected air flow 4 is measured. The measurement is preferably done in a way that the measured humidity content of said deflected air flow 4 is close to the humidity content of said deflected air flow right after it contacted said surface. In other words, the deflected air flow 4 should not exchange any humidity content between its deflection from the surface until its humidity content is measured. It is also preferable that only said deflected air flow 4 is measured by the humidity measurement means 5. If it is not the case, the measurement might be skewed.
In the third step, the humidity content of said impinging air flow 1 is compared to the measured humidity content of said deflected air flow 4.
In the fourth step, the presence or absence of humidity on a surface can be established. If the humidity content of said deflected air flow 4 is higher than of said impinging air flow 1, then humidity is present on the strip surface 2. Only the presence of humidity can be established because this assessment method has a lower threshold. The lower threshold corresponds to the minimum humidity content that can be detected by this method and the equipment associated. As previously explained, it depends on several factors known by the skilled person in the art.
Consequently, the invention permits to qualitatively detect the presence of humidity on a surface of a bare or coated metal strip.
Preferably, said impinging air flow 1 has a controlled humidity content of less than 10 000 ppm of water. More preferably, said impinging air flow has a controlled humidity content of less than 8 000 ppm of water. Even more preferably, said impinging air flow has a controlled humidity content of less than 4 000 ppm of water.
Preferably, said impinging air flow 1 has a speed comprised between 20 and 60 m·s−1. Such an air flow speed permits to have an optimal impinging air flow. If the air flow speed is lower than 20 m·s−1, the air flow hardly touches the surface, as illustrated in
Preferably, said bare metal or coated metal 3 is continuously moved at a determined speed and said impinging air flow 1 has a speed of at least two times said metal speed. Such a range permits to increase the humidity absorption of said impinging air flow because it prevents jet sweeping due to the movement of the strip. When the impinging air flow 1 speed is not at least equal to 0.25 time the one of said bare or coated metal, the impinging air flow 1 absorption of the humidity on said surface is not optimal. In
More preferably, said bare metal or coated metal 3 is continuously moved at a determined speed and said impinging air flow 1 has a speed of at least four times said metal speed.
Preferably, said impinging air flow 1 is produced by an air blowing means 6, said impinging air flow exits said air blowing means at a speed Vi and said air blowing means is positioned at a distance D from said metal strip such that: 1·10−4 s−1<D/Vi<5·10−3 s−1. Apparently, higher is the distance at which said air blowing means is positioned from said metal strip, higher should be the impinging air flow speed in order to ensure the air deflection. For example, the impinging air flow speed can be of 50 m·s−1 and the distance D is of 20 mm. Of course, the minimum distance at which the air blowing means is limited by the strip vibration, i.e. the strip should not contact the air blowing means.
Preferably, said impinging air flow 1 is produced by an air blower, said blower is moved across the strip width. It permits to detect default across the strip width. Moreover, several air blowers can be used to detect the presence of humidity at several spots across the strip width and length.
The invention also relates to an equipment for detecting the presence of humidity on a surface of a metal strip 3 or of a coated metal strip 3 comprising:
As illustrated in
As illustrated in
As illustrated in
Preferably, as illustrated in
Preferably, said equipment comprises one opening 9 facing said surface of a metal strip or of a coated metal strip, said opening 9 being segmented (16a, 16b, 16c, 16d) into four to ten compartments.
Preferably, said double wall 7 comprises gas guiding means 15 configured to guide said blown gas perpendicularly to said surface of a metal strip or of a coated metal strip from inside said hollow body 6h to said at least four to ten compartments (16a, 16b, 16c, 16d). As illustrated in
Preferably, said hollow body 6h is made of a material having a rugosity smaller than 2 mm. Without willing to be bound by any theory, if the rugosity is higher than 2 mm, the impinging jet is deflected sidewise reducing the portion of the deflected air on said surface 2 as illustrated in
Preferably, said hollow body 6h is made of a water-repellent material. Such a material permits reduction of the humidity absorption by the hollow body which improves the reliability of the measured humidity content of the deflected gas 4 because a smaller humidity content is transferred from the deflected gas 4 to the hollow body 6 or vice-versa.
Preferably, said equipment comprises means to convey said metal strip 3. Conveying the metal strip enables to have several measurement points of the humidity content along the strip. The strip convey can be achieved through rolls.
Preferably, said hollow body is a hollow cylinder having an inner radius, an outer radius and a length. As illustrated in
Preferably, said hollow cylinder length is perpendicular to said strip surface. It is advantageous because the curtain is more efficient because it is homogeneous around said central part 8.
Number | Date | Country | Kind |
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PCT/IB2019/054265 | May 2019 | IB | international |
Filing Document | Filing Date | Country | Kind |
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PCT/IB2020/053659 | 4/17/2020 | WO | 00 |