An object is to provide a gate valve capable of preventing operational deficiencies caused by particulate materials accumulating in a valve box, thus providing superior sealing properties and high durability, having a simple structure, and allowing inspection and maintenance to be performed easily. A gate valve installed in a transport line for transporting fluid containing particulate material at a coal gasification plant includes a valve box having an inlet portion and an outlet portion in which a channel constituting a part of the transport line is formed; a valve unit, provided between the inlet portion and the outlet portion, which extends in an opening-and-closing direction orthogonal to an axial direction of the channel, and which is movable in the opening-and-closing direction; a wedge plate provided between the valve unit and the inlet portion so as to extend in the opening-and-closing direction; and a guide plate provided between the valve unit and the outlet portion so as to extend in the opening-and-closing direction. Areas between the valve unit and the wedge plate and between and the valve unit and guide plate are sealed by means of surface contact.
1. A gate valve installed in a transport line for transporting fluid containing particulate material at a coal gasification plant, comprising:
a valve box having an inlet portion and an outlet portion in which a channel constituting a part of the transport line is formed;
a valve unit, provided between the inlet portion and the outlet portion, which extends in an opening-and-closing direction orthogonal to an axial direction of the channel, and which is movable in the opening-and-closing direction;
a wedge plate provided between the valve unit and the inlet portion so as to extend in the opening-and-closing direction;
a guide plate provided between the valve unit and the outlet portion so as to extend in the opening-and-closing direction; and
a moving device engaged with the valve unit and configured to move the valve unit in the opening-and-closing direction,
wherein the valve unit is provided with a first sliding surface at the inlet portion side and a second sliding surface at the outlet portion side, which are substantially orthogonal to the channel and substantially parallel to each other, and a valve unit channel passing through so as to form a part of the channel is provided closer to a first end than a midpoint in the opening-and-closing direction;
the wedge plate is provided with a third sliding surface that is in surface contact with the first sliding surface at the valve unit side and an inclined supporting surface which is provided closer to a second end than substantially the midpoint in the opening-and-closing direction at the inlet portion side and whose height gradually reduces toward the second end, and a wedge-plate channel that passes from the inclined supporting surface toward the third sliding surface and that forms a part of the channel is provided so that the third sliding surface has a length equal to or greater than the diameter of at least the valve unit channel at the first end in the opening-and-closing direction;
the guide plate is provided with a fourth sliding surface that is in surface contact with the second sliding surface at the valve unit side, and a guide-plate channel that passes through so as to form a part of the channel is provided so that the fourth sliding surface has a length equal to or greater than the diameter of at least the valve unit channel at the first end in the opening-and-closing direction;
an inclined surface opposing the inclined supporting surface is formed at an inner end portion of the inlet portion;
a first sealing member having elasticity is mounted between the inclined surface and a wedge-plate annular groove provided around the wedge-plate channel of the inclined supporting surface;
a second sealing member having elasticity is mounted between the guide plate and the outlet portion so as to surround the channel; and
the valve box is provided with a first urging member capable of urging the wedge plate to the second end in the opening-and-closing direction, and a second urging member that is disposed at the second end, in the opening-and-closing direction, of the first urging member and that is capable of urging the wedge plate to the first end in the opening-and-closing direction.
2. A gate valve according to claim 1 , wherein
the moving device is disposed at one of the first end and the second end of the valve unit and is detachably engaged with the valve unit; and
an opening portion capable of opening and closing is provided at an opposite side, in the opening-and-closing direction, from the moving device of the valve box.
3. A gate valve according to claim 1 , wherein
coating layers are provided on the first sliding surface, the second sliding surface, the third sliding surface, and the fourth sliding surface.
4. A gate valve according to claim 1 , wherein
the first sealing member and the second sealing member are formed of spiral wound gaskets having a plurality of elasticities in a channel axial direction and a metal sealing plate interposed between each spiral wound gasket.
5. A gate valve according to claim 1 , wherein
the channel is formed in substantially the vertical direction such that the outlet portion is disposed at a lower end thereof;
the second-end portion of the guide plate is disposed so as to extend closer to the second end than the guide-plate channel;
the valve box is provided with a holding portion, between the valve box and the guide plate, substantially below the end at the first end of the guide plate, with a gap therebetween to allow thermal expansion of the valve box; and
a spring having a spring force for supporting weights of the guide plate, the valve unit, and the wedge plate is disposed between the holding portion and the guide plate.
6. A gate valve according to claim 1 , wherein
a leading plate is removably provided on an inner surface of the valve box opposing the valve unit, with a small gap therebetween.