Sprinkler head
11324980 · 2022-05-10
Assignee
Inventors
Cpc classification
International classification
Abstract
A sprinkler head includes a body having a nozzle to be connected to a water supply pipe, the nozzle being provided inside the body; a valve that closes the nozzle in normal times; a pair of frames extending from the body in a direction of water discharge from the nozzle; a deflector provided at a distal end of a part where distal ends of the frames are coupled to each other on a center axis A of the nozzle; and a heat sensitive disassembling unit provided between the valve and the deflector. A spring that is bent in a W shape has two ends engaged with the pair of frames, and the heat sensitive disassembling unit is fitted in a bent portion provided between the two ends and of the spring.
Claims
1. A sprinkler head comprising: a body having a nozzle to be connected to a water supply pipe, the nozzle being provided inside the body; a valve that closes the nozzle in normal times; a pair of frames extending from the body in a direction of water discharge from the nozzle; a deflector provided at a distal end of a coupled part where distal ends of the pair of frames are coupled to each other on a center axis of the nozzle; and a heat-sensitive disassembling unit provided between the valve and the deflector, the heat-sensitive disassembling unit having a bar, a spring having a bent portion with an open part between two ends, the two ends engaged with the pair of frames respectively, the bent portion surrounding the bar except the open part, and a width of the open part being narrower than a width of the bar so as to prevent the bar from being caught by the deflector when actuated.
2. The sprinkler head according to claim 1, wherein the heat-sensitive disassembling unit includes a link formed of a plurality of thin plates joined to one another with a low-melting-point alloy, the heat-sensitive disassembling unit further including a bar and a lever that are engaged with the link.
3. The sprinkler head according to claim 1, wherein the heat-sensitive disassembling unit is a glass bulb.
4. The sprinkler head according to claim 1, wherein the valve has a bottomed cylindrical shape, wherein a bottom side of the valve is positioned in the nozzle, wherein one end of the heat-sensitive disassembling unit is engaged with an open side of the valve, and wherein the open side of the valve is fitted in the bent portion of the spring.
5. The sprinkler head according to claim 1, wherein the frames have grooves that engage with the spring.
6. The sprinkler head according to claim 1, wherein the bar has a groove that engages with the spring.
7. The sprinkler head according to claim 1, wherein a gap of the open part is widened when forces are applied to the two ends in such a manner as to move the two ends toward each other, and the spring elastically deforms.
8. The sprinkler head according to claim 1, wherein the spring is located above and spaced away from the valve.
9. The sprinkler head according to claim 1, wherein the bent portion and the two ends are on a same plane perpendicular to the center axis of the nozzle.
10. The sprinkler head according to claim 1, wherein the two ends are engaged with the pair of frames from a same side where the open part is located.
11. The sprinkler head according to claim 1, wherein an end of the bar is engaged with the valve.
Description
BRIEF DESCRIPTION OF DRAWINGS
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DESCRIPTION OF EMBODIMENTS
(10) A sprinkler head S1 according to the present invention illustrated in
(11) The body 1 has a hollow shape, with an external thread 11 carved on the outside thereof and a nozzle 12 formed on the inside thereof. The external thread 11 is provided for connection to a pipe provided near the ceiling of a building. The size of the nozzle 12 is defined within a range of a K factor of 3 to 5.8. The K factor is obtained from the flow rate and the discharge pressure of the nozzle 12. The K factor in the present embodiment is 5.6. The size of the external thread 11, which is connected to the pipe, is NPT ½ or R ½.
(12) A substantially rectangular base 13 is provided near the outlet of the nozzle 12. A pair of frames 14 extend from the base 13 in a direction of water discharge from the nozzle 12. The frames 14 each include a linear portion 14A extending substantially parallel to a center axis A of the nozzle, and an intersecting portion 14B extending from an end of the linear portion 14A and coupled to a boss 15 provided on the center axis A of the nozzle 12. As illustrated in
(13) The boss 15 has a tapered round columnar shape. The deflector 2 is provided at an end of the boss 15. A diameter Dl of the boss 15 on a side where the boss 15 is in contact with the deflector 2 is 9 to 10 mm. The outside diameter of the boss 15 at an end on a side nearer to the nozzle 12 is smaller than the diameter Dl on the side nearer to the deflector 2. An outer peripheral end 15A of the boss 15 on the side nearer to the nozzle 12 has a curved surface with a radius of curvature of 1 mm to 3 mm. In the present embodiment, the radius of curvature is 2 mm.
(14) The boss 15 has an internal thread 15B carved on the inside thereof. An impression screw 16 is screwed into the boss 15. The impression screw 16 has a pointed tip 16A with an inclined surface 16B. The tip 16A faces toward the nozzle 12. The inclined surface 16B is at an angle α of 80° to 100°. In the present embodiment, the angle α is 90°. The tip 16A has a spherical top with a spherical radius of preferably 2 mm or smaller. In the present embodiment, the spherical radius is 1 mm or smaller.
(15) The impression screw 16 has a function of pressing the valve 3 toward the nozzle 12 with the heat-sensitive disassembling unit 4 in between. In
(16) The deflector 2 illustrated in
(17) In normal times, the valve 3 covers the outlet of the nozzle 12. The valve 3 includes a valve cap 31, a disc 32, and a disc spring 33. The valve cap 31 has a bottomed cylindrical shape with one end thereof forming a spherical bottom portion 31A. The other end of the valve cap 31 has an increased diameter, forming a step 31B.
(18) The disc 32, which is a circular plate, is placed on the inner peripheral side of the step 31B. The disc 32 has a recess 32A in the center thereof. The recess 32A is engaged with one end of a bar 42 included in the heat-sensitive disassembling unit 3.
(19) The disc spring 33 is anchored on the outer peripheral side of the step 31B by inserting the valve cap 31 into the disc spring 33 from the bottom portion 31A. The surface of the disc spring 33 is coated with fluorocarbon resin. The outer peripheral edge of the disc spring 33 is positioned at the outlet end of the nozzle 12. Screwing the impression screw 16 into the boss 15 along the internal thread 15B causes the heat-sensitive disassembling unit 4 to press the disc spring 33, whereby the disc spring 33 is squashed while undergoing elastic deformation. In this process, the fluorocarbon resin serves as a sealing material and thus seals the nozzle 12.
(20) The heat-sensitive disassembling unit 4 includes a link 41, the bar 42, and a lever 43. The link 41 is a heat-sensitive body activated with the heat of fire and includes two thin metal plates 44 that are joined to each other with a low-melting-point alloy. The low-melting-point alloy used here has a melting point within a range of 60 to 200° C. In general, a low-melting-point alloy having a melting point of 72° C. or 96° C. is used.
(21) The two metal plates 44 each have a substantially square shape with a hole 45 at one end thereof and a rectangular-U-shaped cut 46 at the other end thereof. The two metal plates 44 are joined to each other with a low-melting-point alloy. Specifically, the hole 45 of one of the metal plates 44 and the cut 46 of the other metal plate 44 are made to coincide with each other. After the above joining, the bar 42 and the lever 43 are inserted into the two holes 45 of the link 41, respectively (see
(22) The bar 42 has a strip-like shape with one end being engaged with the disc 32 of the valve 3 at the outlet of the nozzle 12, and the other end being engaged with an end of the lever 43. As described above, the bar 42 extends through the hole 45 of the link 41. The bar 42 has a projection 47 in a middle part thereof. The link 41 is anchored in a groove 47A provided near the projection 47.
(23) The lever 43 is a long narrow plate that is bent in a substantially L shape. As described above, the one end of the lever 43 extends through the hole 45 of the link 41. The other end of the lever 43 is engaged with the bar 42. The lever 43 has a groove 48 with which an end of the bar 42 is engaged.
(24) The lever 43 has a recess 49 on a side thereof opposite the side having the groove 48. The recess 49 is positioned nearer to the other end of the lever 43 than the groove 48. The impression screw 16 is in contact with the recess 49. When the tip of the impression screw 16 is pressed into the recess 49 of the lever 43, a force acts on the lever 43 to rotate the lever 43 about the groove 48, in which the bar 42 is anchored. However, since the one end of the lever 43 extends through the hole 45 of the link 41, the lever 43 is prevented from rotating. Hence, the link 41, the bar 42, and the lever 43 forming the heat-sensitive disassembling unit 4 are kept engaged with one another. Furthermore, the impression screw 16 keeps pressing the valve 3 toward the nozzle 12 with the heat-sensitive disassembling unit 4 in between.
(25) The spring 5 illustrated in
(26) The spring 5 illustrated in
(27) Referring to
(28) A process of setting the spring 5 in the sprinkler head S1 will now be described.
(29) First, the valve 3 and the heat-sensitive disassembling unit 4 are set in the body 1 of the sprinkler head S1. Then, the spring 5 is anchored to the frames 14 while the bar 42 is fitted into the bent portion 53. The spring 5 is made to advance between the link 41 and the valve 3 in a direction indicated by arrow C in
(30) As the spring 5 is further moved in the direction of arrow C, the bar 42 passes the open part 54 and enters the bent portion 53. When the spring 5 is released in the above state, the two ends 51 and 52 of the spring 5 are anchored to the respective frames 14, whereby the bar is retained in the bent portion 53. Thus, the fitting of the spring 5 to the sprinkler head S1 is complete.
(31) Now, an operation of the sprinkler head S1 in case of fire will be described.
(32) The sprinkler head S1 is set with the deflector 2 being oriented upward. In normal times, the nozzle 12 is connected to a pipe, not illustrated, screwed on the external thread 11. The inside of the nozzle 12 is filled with pressurized water. The nozzle 12 is closed by the valve 3 and the heat-sensitive disassembling unit 4.
(33) If a fire occurs and the low-melting-point alloy of the link 41 melts, the lever 43 rotates, whereby the metal plate 44 engaged with the lever 43 is stripped off the metal plate 44 engaged with the bar 42. Consequently, the engagements in the heat-sensitive disassembling unit 4 are disabled. That is, the link 41, the bar 42, and the lever 43 are disengaged from one another, and the valve 3 that has been supported by the bar 42 drops off the nozzle 12, whereby the nozzle 12 is opened.
(34) In this process, since the spring 5 is anchored to the frames 14 and is urged in a direction indicated by arrow D in
(35) The embodiment of the present invention is as described above. Now, other configurations and effects thereof will be described.
(36) While the above embodiment concerns a case where the part of the lever 43 that is engaged with the impression screw 16 is shaped as the recess 49, the part is not limited thereto and may be shaped as a projection. In that case, the tip of the impression screw 16 may be modified to be shaped as a recess or a groove conforming to the shape of the projection.
(37) As in a sprinkler head S2 illustrated in
(38) While the embodiment illustrated in
(39) In
(40) For example, in a case of a sidewall sprinkler head, an assist deflector may be provided near the deflector provided on the extension of the nozzle. In such a case, the spring 5 may be urged in a direction away from the assist deflector.
(41) In another modification illustrated in
REFERENCE SIGNS LIST
(42) S1 sprinkler head 1 body 2 deflector 3 valve 4 heat-sensitive disassembling unit 5 spring 12 nozzle 13 base 14 frame 15 boss 16 impression screw 21 tooth 31 valve cap 32 disc 33 disc spring 41 link 42 bar 43 lever 51, 52 end of spring 53 bent portion 54 open part