AUTOMATIC DRAIN VALVE FOR CONDENSED WATER
20230184340 ยท 2023-06-15
Inventors
Cpc classification
F16K5/0414
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K5/0471
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B39/16
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
The present invention relates to a condensate drain valve, which is connected to a condensate discharge pipe of an air compression equipment, for discharging the condensate generated inside the air compression equipment together with compressed air to the outside, which comprises: a main body; an opening and closing member, and a communication path formed therein for communicating the inlet hole and the discharge hole. According to the present invention, the automatic drain valve for condensed water capable of continuously and automatically discharging the condensed water generated in the air compression device even during the operation of the air compression device can be formed in a compact structure, thereby facilitating the manufacture of the device and remarkably reducing the manufacturing costs.
Claims
1. An automatic drain valve for condensed water connected to a condensed water discharge pipe of an air compression equipment and discharging condensed water generated in the air compression equipment together with compressed air to the outside, the automatic drain valve comprising: a main body having an accommodation space formed therein, an inlet formed at one side thereof, and a discharge hole formed at the other side thereof; an opening and closing member rotatably installed in the main body, and having an inlet hole formed at one side corresponding to the inlet hole, a discharge hole formed at one side corresponding to the discharge hole, and a communication path formed therein, the communication path communicating the inlet hole with the discharge hole; a rotational force providing means having one end of a rotating shaft coupled to one side of the opening and closing member to provide rotational force to the opening and closing member; and a control means controlling an operation of the rotational force providing means.
2. The automatic drain valve for condensed water of claim 1, further comprising: an inlet pipe extending from one side of the main body toward the outside and having an inlet formed at one side thereof; a sealing member installed in the inlet pipe, having one end supported at one side of the opening and closing member having the inlet hole formed therein, and having a moving path formed therein to communicate the inlet hole with the inlet hole; and an elastic member interposed between the other end of the sealing member and one side of the inner surface of the inlet pipe, and applying an elastic restoring force to the sealing member toward the opening and closing member.
3. The automatic drain valve for condensed water of claim 1, further comprising: a first O-ring installed at one side of an outer circumferential surface of the opening and closing member and preventing the condensate water introduced into the accommodation space from being introduced toward the outlet; and a second O-ring installed at the other side of the outer circumferential surface of the opening and closing member and preventing the condensate water introduced into the accommodation space from being introduced toward the rotational force supply means.
4. The automatic drain valve for condensed water of claim 1, further comprising a coupler having one side coupled to any one of the inlet or the inlet hole and having at least two inlets connected to the inlet or the inlet hole formed on the other side.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0017]
[0018]
[0019]
[0020]
[0021]
[0022]
DETAILED DESCRIPTION
[0023] According to the present invention, provided is an automatic drain valve for condensed water, which is connected to a condensate discharge pipe of an air compression equipment and discharges condensate generated in the air compression equipment to the outside together with compressed air, which includes: a main body in which an accommodation space is formed and an inlet is formed at one side thereof and a discharge hole is formed at the other side thereof; an opening and closing member which is rotatably disposed in the main body, and has an inlet formed at one side corresponding to the inlet, a discharge hole formed at one side corresponding to the discharge hole, and a communication path formed therein for communicating the inlet and the discharge hole; a rotational force providing means in which one end of a rotating shaft is coupled to one side of the opening and closing member so as to provide rotational force to the opening and closing member; and a control means for controlling the operation of the rotational force providing means.
Descriptions of Embodiment
[0024] Hereinafter, the present invention will be described in more detail with reference to the drawings. It should be noted that the same reference numerals denote the same elements wherever possible in the drawings. Further, detailed descriptions of known functions and configurations that may unnecessarily obscure the subject matter of the present invention will be omitted.
[0025]
[0026] Referring to
[0027] The main body 10 provides an installation region for the opening and closing member 20, the sealing member 30, and the elastic member 40, and includes a body part 11, a socket part 12, and an inlet pipe 13.
[0028] The body part 11 has a circular tubular shape, and has an accommodation space S formed therein, an inlet 11a formed at one side of an outer circumferential surface thereof, and an outlet 11b formed at one end thereof.
[0029] The socket part 12 is coupled to the other end of the body 11, has an insertion hole 12a formed therein in a length direction to allow the rotational force providing means 50 to be inserted thereinto, and has a support step 12b formed at one side of an inner surface of the socket part, in which the insertion hole 12a is formed, to support one side of the rotational force providing means 50.
[0030] The inlet pipe 13 has a circular tubular shape, and includes an extension pipe 13a extending from one side of the body 11 having the inlet 11a in an outward direction, and a cap 13b having one side coupled to the extension pipe 13a and the other side having an inlet hole 13ba communicating with the inlet 11a.
[0031] The inlet pipe 13 provides an installation area for the sealing member 30 and the elastic member 40.
[0032] The opening and closing member 20 has a cylindrical shape, is rotatably installed in the accommodation space S of the body part 11, has an inlet hole 21 formed at one side of an outer circumferential surface corresponding to the inlet 11a, has a discharge hole 22 formed at one end corresponding to the outlet 11b, and has a communication passage 23 formed therein to communicate the inlet hole 21 and the discharge hole 22.
[0033] The opening and closing member 20 allows the inlet 11a and the outlet 11b to be in communication with each other or to be closed according to a rotation position by the rotational force providing means 50, thereby serving to discharge or block the condensate water introduced from the inlet 11a to the outside through the outlet 11b.
[0034] In addition, a first O-ring 24 is installed at one side of the outer circumferential surface of one end of the opening and closing member 20, and a second O-ring 25 is installed at one side of the outer circumferential surface of the other end.
[0035] Here, the first O-ring 24 serves to prevent the condensed water introduced into the accommodation space S of the main body 10 from being introduced toward the outlet, and the second O-ring 25 serves to prevent the condensed water introduced into the accommodation space S of the main body 10 from being introduced toward the rotational force supply means 50.
[0036] The sealing member 30 has a cylindrical shape and is installed in the extension pipe 13a, and has one end supported by one side of the opening and closing member 20 in which the inlet hole is formed, and a moving path 31 communicating the inlet hole 21 and the inlet hole 13ba with each other along a longitudinal direction therein.
[0037] The sealing member 30 is supported by one side of the opening and closing member 20 to prevent condensed water introduced from the outside through the inlet pipe 13 from being introduced into the accommodation space S of the body part 11, and may be made of a Teflon material.
[0038] The elastic member 40 is interposed between the other end of the sealing member 30 and one side of the inner surface of the cap 13b, and serves to support one end of the sealing member 30 at one side of the opening and closing member 20 by applying an elastic restoring force to the sealing member 30 toward the opening and closing member 20.
[0039] The rotational force providing means 50 is for providing rotational force to the opening and closing member 20, and includes a housing 51 and a rotating shaft 52 exposed to the outside of the housing 51.
[0040] The rotational force providing means 50 is inserted into the insertion hole 12a of the socket part 12, one side of the housing 51 is supported by the support step 12b of the socket part 12, and the rotating shaft 52 is fixedly coupled to the other end of the opening and closing member 20.
[0041] The control means serves to control the rotational speed per minute of the rotational force providing means 50 according to the working environment.
[0042] As described above, the apparatus of the present invention is formed into a compact structure unlike the prior art in which a plurality of components, such as the pneumatic driving means, the path switching means, the timer and the like, are required. Thus, the apparatus can be more easily manufactured and manufacturing costs can be significantly reduced.
[0043]
[0044] As shown in
[0045] In addition, as illustrated in
[0046] As described above, according to the present invention, since condensate water is continuously automatically discharged in a process in which the opening and closing member 20 rotates by the torque providing unit 50, the air compression device can be continuously operated, thereby greatly improving productivity.
[0047]
[0048] Referring to
[0049] As described above, according to the present invention, at least two inlet ports 61 communicating with the inlet hole 13ba through the coupler 60 are provided, and thus each inlet port 61 and the condensate water outlet of the plurality of air compression equipments may be simply connected to each other through the hose.
[0050] Therefore, the present invention does not require a troublesome work of installing multiple automatic drain valves for condensed water 1 on the condensate outlet of each of multiple air compression equipments, and can discharge the condensate of multiple air compression equipments by one automatic drain valve for condensed water 1, thereby significantly reducing costs.
[0051] According to the present invention, the automatic drain valve for condensed water capable of continuously and automatically discharging the condensed water generated in the air compression device even during the operation of the air compression device can be formed in a compact structure, thereby facilitating the manufacture of the device and remarkably reducing the manufacturing costs.
[0052] Although the present invention has been described with respect to the above preferred embodiments, it is possible to make various modifications or variations without departing from the spirit and scope of the present invention. Accordingly, the appended claims will include such modifications or variations that fall within the subject matter of the present invention.