This invention relates to a line marking apparatus including a nozzle flushing arrangement.
It is conventional practice in line marking apparatus, once the apparatus has been used and is to be stored, to flush the line marking material out of the delivery system to prevent blockages occurring, especially in the nozzle. The delivery system generally includes a pump and a line connecting the pump to a nozzle and can additionally include a tank or other storage means for the line marking material and a line for conducting the line marking material from the tank to the pump.
A separate source of water or other flushing fluid is generally used to replace the line marking material entering the pump in order to flush the line marking material from the apparatus, especially the nozzle, although it is also possible to add water to the empty storage means for line marking material.
A disadvantage associated with such flushing arrangements is that a significant volume of water, generally several litres, is required to flush the pump, nozzle and connecting lines. Not only does such a volume of water need to be carried with the line marking apparatus, in some cases in a separate tank provided as part of the apparatus, but the water used for flushing needs to be disposed of. Consequently, a user tends not to use such a flushing arrangement when the line marking apparatus is to be left standing for a relatively short time. Nevertheless, it is quite possible for the line marking material to cause the nozzle to block even after a short period of non-use.
It is therefore an object of the present invention to provide line marking apparatus incorporating a nozzle flushing arrangement which overcomes, or at least ameliorates, the above disadvantages.
According to one aspect of the present invention there is provided a line marking apparatus comprising: a nozzle for dispensing line marking material; a first pump for supplying line marking material from a source to the nozzle; and a nozzle flushing arrangement comprising a reservoir for a flushing fluid, and means selected from a syringe assembly and a second pump for conveying flushing fluid from the reservoir and for delivering the fluid under pressure to the nozzle.
The apparatus may include a non-return valve for preventing flow of flushing fluid from the nozzle towards the reservoir. The non-return valve may be positioned adjacent to the nozzle.
When the means for conveying the flushing fluid to the nozzle comprises a syringe assembly, the syringe assembly may be adapted to deliver a predetermined volume of flushing fluid.
The syringe assembly may include a single syringe.
Alternatively, the syringe assembly may include dual syringes, for example as a dual syringe assembly. In such a case, a first of the dual syringes may have a greater cross-sectional area than a second of the syringes. The first and second syringes may be concentric.
In the case of concentric syringes, an outer syringe may be slidably mounted within an outer cylinder and may itself be in the form of an inner cylinder. The outer syringe may include a piston which slidingly seals against an inner surface of the outer cylinder. The piston may be formed with an aperture, for example a central aperture, to allow flushing fluid to pass into and out of the inner cylinder. The outer cylinder may have an outlet for conducting flushing fluid to the nozzle.
An inner syringe may be slidably mounted within the inner cylinder forming part of the outer syringe. The inner syringe may include a piston which slidingly seals against the inner surface of the inner cylinder of the outer syringe.
The or each syringe may be provided with an operating handle.
The syringe may include a non-return valve to allow flushing fluid to pass into, but not out of, the syringe from the reservoir.
Alternatively, when the means for conveying the flushing fluid to the nozzle comprises a second pump, the second pump may be adapted to deliver a predetermined volume of flushing fluid, for example by including control means for activating the second pump for a predetermined time or by using a second pump which is capable of dispensing a predetermined volume.
The flushing fluid may comprise water. If desired, an anti-freeze may be added to the water.
The nozzle flushing arrangement may be connected to the remainder of the line marking apparatus downstream of the first pump, for example adjacent to, or at, the nozzle.
The line marking apparatus may include a further reservoir for line marking material. The further reservoir may include a self-sealing releasable coupling for conducting line marking fluid to the nozzle by way of the first pump. A non-return valve may be provided between the first pump and the nozzle. In such a case, the nozzle flushing arrangement may be connected to the remainder of the line marking apparatus downstream of the non-return valve between the first pump and the nozzle. The first pump may form part of a recirculation system, the recirculation system further including a pressure release valve.
For a better understanding of the present invention and to show more clearly how it may be carried into effect reference will now be made, by way of example, to the accompanying drawings in which:
An outer syringe 15 is slidably mounted within a cylinder 17 and is itself in the form of a cylinder 19. The outer syringe 15 is provided with an operating handle 21 at an exposed end and with a piston 23 which slidingly seals against the inner surface of the outer cylinder 17. Piston 23 is formed with a central aperture 25 to allow water to pass into and out of the cylinder 19.
An inner syringe 27 is slidably mounted within the cylinder 19 forming part of the outer syringe 15 and includes an operating handle 29 at an exposed end and a piston 31 which slidingly seals against the inner surface of the inner cylinder 19 of the outer syringe 15.
The outer cylinder 17 has an outlet at a closed end thereof which is connected to the line 11 for conducting water to the nozzle 1. A non-return (one-way) valve 33 is provided in the region of the outer cylinder between the piston 23 and the outlet so as to allow water to pass into the outer and inner cylinders from the reservoir 9, but only allowing water to exit through the line 11.
In use of the nozzle flushing arrangement of
The advantages of the nozzle flushing arrangement as shown in
Even though the nozzle 1 may be flushed with water with the nozzle flushing arrangement of the present invention, the nozzle can still occasionally become blocked. In such situations, the inner syringe 27 is used. Because the inner syringe necessarily has a smaller diameter (and therefore a smaller cross-sectional area) than the outer syringe, it requires less effort to move the operating handle 29 and piston 31 so as to force water through the nozzle 1 and clear the blockage.
Where the nozzle flushing arrangement is to be used at low ambient temperatures where there is a possibility of the water freezing, an anti-freeze may be added to the reservoir 9. Additionally, because the flushing fluid does not pass through the pump 3 and therefore will not damage any components of the pump, the flushing fluid may have properties that are not compatible with components of the pump, for example a more aggressive flushing fluid may be employed. Because only a very small volume of the flushing fluid is used to flush the nozzle 1, it is not difficult to contain the flushing fluid, even when the flushing fluid is not environmentally friendly.
With regard to further potential modifications, one or both of the non-return valves 5 and 7 may be omitted.
Line marking material is stored in a reservoir 113 which in the illustrated embodiment is in the form of a disposable flexible bag. Line marking material exits from a lower region of the reservoir 113 by way of a self-sealing releasable coupling 115 which allows the reservoir to be exchanged and passes to a recirculation system based around pump 3. The recirculation system includes a manifold 117 including a pressure release valve 119 and a pressure gauge 121. Pump 3 is powered by a rechargeable battery 123 which is connected to a battery charging socket 125 and to an on-off switch 127 mounted on the handle 105 and including a cable recoil reel 129 for controlling the cable leading to the switch 127. Line marking material from the recirculation system passes through non-return valve 5 to nozzle 1, from where it is dispensed onto a surface to be marked.
When the line marking apparatus is to be left standing for a relatively short time (such as while the user takes a break), the nozzle 1 is flushed with water from reservoir 9 of the nozzle flushing arrangement (for example as shown and described in relation to
Number | Date | Country | Kind |
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1317707.6 | Oct 2013 | GB | national |
Filing Document | Filing Date | Country | Kind |
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PCT/EP2014/071304 | 10/6/2014 | WO | 00 |