Manifold solenoid valve
09803765 · 2017-10-31
Assignee
Inventors
Cpc classification
Y10T137/87885
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
F15B13/0821
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F15B13/0839
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F15B13/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K27/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
An object of the present invention is to improve assembling workability of the flow passage block and the sealability between the manifold solenoid valve and the flow passage block. A flow passage block 61 is mounted on a manifold solenoid valve having valve bases 12 on which solenoid valves 11 are respectively mounted, a block mounting face 60 is formed by the valve bases 12, an output joint 36 protrudes from each valve base, a joint seal member 71 is detachably mounted on the output joint 36, with the flow passage block 61 being mounted on the block mounting face 60, the joint seal member 71 seals between an outer peripheral surface of an output joint 36 and an inner peripheral surface of an connecting hole 64 which communicates with an air passage of the flow passage block 61.
Claims
1. A manifold solenoid valve, comprising: valve bases on which solenoid valves are respectively mounted; output joints which are provided so as to protrude from the respective valve bases, the output joints communicating with output ports of the solenoid valves, and each output joint having an annular engaging protruding part projecting radially from an outer peripheral surface; joint seal members mounted on the output joints for outputting air, each joint seal member having an inner peripheral surface and an outer peripheral surface, the inner peripheral surfaces of the joint seal members engaging the outer peripheral surfaces of the output joints; wherein an annular recess part is provided on the inner peripheral surface of each joint seal member, the annular engaging protruding part of each output joint projecting radially is fitted into the annular recess part of the joint seal member, and at least one annular protruding seal part is provided on the outer peripheral surface of the joint seal members, and the one annular protruding seal part is disposed so as to correspond to the annular engaging protruding part of the output joints, wherein the annular engaging protruding part projecting radially from the peripheral surface of each output joint has: a cylindrical outer surface with a proximal end and a distal end; a tapered surface extending from the distal end of the cylindrical outer surface toward a distal end of the output joint; and a radially directed surface extending radially inwardly from the proximal end of the cylindrical outer surface.
2. The manifold solenoid valve according to claim 1, wherein a block mounting face, on which a flow passage block is mounted, is formed by the valve bases abutting on each other.
3. The manifold solenoid valve, according to claim 2, wherein the at least one annular protruding seal part comprises first and second annular protruding seal parts integrally provided on the outer peripheral surface of the joint seal member, with the first annular protruding part corresponding to the annular engaging protruding part of the output joint; and the first and second annular protruding seal parts of the joint seal member are brought into contact with an inner peripheral surface of a connecting hole of the flow passage block.
4. The manifold solenoid valve according to claim 3, wherein the second annular protruding part of the joint seal member is located between the first annular protruding part of the joint seal member and the valve base.
5. The manifold solenoid valve according to claim 3, wherein a distal end of the joint seal member is disposed between an end face of the output joint and a bottom face of the connecting hole of the flow passage block.
6. The manifold solenoid valve according to claim 2, comprising end blocks which are mounted on end faces of a valve base assembly formed by abutting the valve bases, each end block is provided with an extension face which is continuous to the block mounting face, wherein at least one of an air supply joint for communicating with an air supply port of the solenoid valve and an exhaust joint for communicating with an exhaust port of the solenoid valve are provided on at least one of the end block so as to protrude from the extension face, a joint seal member for supplying and exhausting air is detachably mounted on at least one of the air supply joint and the exhaust joint, and the joint seal member for supplying and exhausting air has a recess part on an inner peripheral surface thereof, an annular engaging protruding part of an outer peripheral surface of at least one of the air supply joint and the exhaust joint is fitted into the recess part; and the joint seal member for supplying and exhausting air further has an annular protruding seal part on an outer peripheral surface thereof.
7. The manifold solenoid valve according to claim 6 further comprising: a first end block which is mounted on one end face of a valve base assembly formed by abutting the valve bases, and which is provided with a first extension face which is continuous to the block mounting face, a second end block which is mounted on the other end face of the valve base assembly formed by abutting the valve bases, and which is provided with a second extension face which is continuous to the block mounting face, wherein an air supply joint for communicating with an air supply port of the solenoid valve is provided so as to protrude from the first extension face of one of the first and second end blocks, an exhaust joint for communicating with an exhaust port of the solenoid valve is provided so as to protrude from the second extension face of the other of the first and second end blocks, and the joint seal members for supplying and exhausting air are detachably mounted on the air supply joint and the exhaust joint, respectively.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DESCRIPTION OF THE PREFERRED EMBODIMENTS
(12) Hereinafter, an embodiment of the present invention will be described in detail on the basis of the attached drawings. As shown in
(13) Two valve bases 12 are adjacent to each other and arranged so as to abut on each other via their side faces, and connected to each other with a connecting attachment 13. As shown in the figures, a valve base assembly 14 is assembled by abutting and connecting eight valve bases 12 to each other with the connecting attachments 13. A first end block 15 is mounted on one end face of the valve base assembly 14, and a second end block 16 is mounted on the other end face of the valve base assembly 14. The end blocks 15 and 16 are connected with the connecting attachments 13 to the respective end faces of two valve bases 12 arranged on both side of the valve base assembly 14.
(14) In general, the solenoid valve 11 has the shape of a nearly rectangular parallelepiped, and output port 21, air supply port 22, and exhaust port 23 open on one end face as shown in
(15) A valve body (not shown) is incorporated in the solenoid valve 11, and operated between a position for communicating the air supply port 22 with the output port 21 while preventing the output port 21 and the exhaust port 23 from communicating with each other, and a position for preventing the air supply port 22 and the output port 21 from communicating with each other while communicating the output port 21 with the exhaust port 23. In order to make the valve body perform the above switching operation, a solenoid (not shown), that is, an electromagnet is incorporated in the solenoid valve 11. A socket part 24 to supply a driving current to the solenoid is provided to the rear end part of the solenoid valve 11. A connector (not shown) is attached to this socket part 24.
(16) In the solenoid valve 11, the output port 21, the air supply port 22, and the exhaust port 23 open on a front face 11a thereof, the shape thereof is a nearly rectangular parallelepiped, and a front side end part thereof is connected to the valve base 12. The valve base 12 has a body part 12a which has the shape of a nearly rectangular parallelepiped, and which extends vertically along the front face 11a of the solenoid valve 11 in
(17) When the solenoid valve 11 is mounted on the valve base 12, the first fixing piece 25 comes in contact with a distal end part of a top side face 11b of the solenoid valve 11, and the second fixing piece 26 comes in contact with a distal end part of a bottom side face 11c of the solenoid valve 11. In this way, the valve base 12 is mounted on the end part of the solenoid valve 11 so as to cover the front face side end part of the solenoid valve 11, that is, the front face 11a of the distal end part, part of the top side face 11b, and part of the bottom side face 11c.
(18) The first fixing piece 25 is provided with a slit 28, and a slit 28a is provided on a top face side of the distal end part of the solenoid valve 11 so as to correspond to the slit 28. The second fixing piece 26 is also provided with a slit 29, and a slit 29a is provided on a bottom face side of the distal end part of the solenoid valve 11 so as to correspond to the slit 29. The solenoid valve 11 is fixed to the valve base 12 by inserting a fastener 30 in both slits 28 and 28a.
(19) In the valve base 12, as shown in
(20) As shown in
(21) As shown in
(22) Compressed air is supplied to the communicating hole 37a of the air supply joint 37 from an air pressure supply source (not shown). The compressed air is supplied from the air pressure supply source to the air supply port 22 of each solenoid valve 11 via the air supply hole 32. The communicating hole 38a of the exhaust joint 38 communicates with the exhaust port 23 of the solenoid valve 11 via each exhaust hole 33, and the air from each exhaust ports 23 is discharged outside from the exhaust joint 38. Therefore, when the solenoid valves 11 are selectively driven, and the air supply port 22 and the output port 21 of the solenoid valve 11 is in a communicating state, the compressed air from the output port 21 is supplied to a supplied part of an external pneumatic apparatus, etc. from the output hole 31.
(23) One end part of the valve base 12 is shown in
(24) The front face of the valve base 12 has a central part 45, and side parts 46 and 47 in a width direction thereof (hereinafter referred to as “first side parts 46 and 47”). The first side parts 46 and 47 are retreated from the central part 45, and an uneven part having a measurement “t1” is provided between the central part 45 and the first side parts 46 and 47. The end face of the upper and lower sides of the valve base 12 has: a central part 45a which is continuous to the central part 45 of the front face; and upper and lower side portions 46a and 47a in a height direction (hereinafter referred to as “both end portions 46a and 47a”), and the second side parts 46a and 47a are continuous to the first side parts 46 and 47 of the front face, respectively. The second side parts 46a and 47a are retreated from the central part 45a, and an even part having a size “t2” is provided between the central part 45a and the second side parts 46a and 47a. Therefore, the length “L1” of the body part 12a of the valve base 12 in the second side parts 46a and 47a are shorter than the length “L” in the height direction of the central part as shown in
(25) The connecting attachment 13 has, as shown in
(26) By inserting the claw part 53 in the concave groove 43, the claw part 53 is meshed with the first protruding part 41. In the same way, by inserting the claw part 54 in the concave groove 44, the claw part 54 is engaged with the second protruding part 42. Each of the claw parts 53 and 54 has bent parts 55 which are received in the respective concave grooves 43 and 44.
(27) Since two clamp pieces 51 and 52 are integral with the connecting piece 50 in the connecting attachment 13, when two valve bases 12 adjacent to each other are connected to each other, an operator holds the connecting piece 50, and inserts the claw parts 53 and 54 in the respective concave grooves 43 and 44. Therefore, valve bases 12 can be connected at both upper and lower ends thereof at the same time by the inserting operation at one time.
(28) Cutout parts 56 are respectively provided to the right and left side of the longitudinal central part of the connecting piece 50 of the connecting attachment 13, and when the connecting attachment 13 is attached to the valve base 12, a peripheral part of the output joint 36 is partially received in the cutout part 56.
(29)
(30) In
(31) The valve base assembly 14 shown in
(32) On an outer peripheral surface of the output joint 36, as shown in
(33) A front face formed by the valve base assembly 14 and the end blocks 15 and 16 is totally flat, since the thickness “t” of the connecting attachment 13 is almost the same as the measurement “t1” and “t2” of each uneven part. Similarly, the top side face and the bottom side face, formed by the valve base assembly 14 and the end blocks 15 and 16, are totally flat. A block mounting face 60a is formed by the flat front face of the valve base assembly 14, and the front face of the connecting attachment 13 also forms part of the block mounting face 60a. In addition, each front face of the end blocks 15 and 16 is a flat extension face 60b continuous from the block mounting face 60a. The output joint 36, the air supply joint 37, and the exhaust joint 38, each of which is used as a joint member, are arranged on the extension face 60b and block mounting face 60a which collectively form one face.
(34) On the flat block mounting face 60a and the flat extension face 60b of the manifold solenoid valve 10, which collectively form a flat face, a flow passage block 61 is mounted as shown in
(35) As shown in
(36) The air flow passages 64a communicates with output hole 31 of the output joint 36, and the air flow passage 65a communicates with the communicating hole 37a of the air supply joint 37, and the air flow passage 66a communicates with the communicating hole 38a of the exhaust joint 38. In order to make the output hole 31 communicate with the air flow passage 64a with sealing being carried out between the output joint 36 and the connecting hole 64, as shown in
(37) In
(38) The joint seal member 71 has an inner peripheral surface corresponding to an outer peripheral surface of the output joint 36, an annular recess part 74 is provided on this inner peripheral surface, and the annular engaging protruding part 57 of the output joint 36 is fitted into the annular recess part 74. Two annular protruding seal parts 75 and 76 are provided on an outer peripheral surface of the joint seal member 71 so as to come in contact with an inner peripheral surface of the connecting hole 64. Each output diameter of the protruding seal parts 75 and 76 of the joint seal member 71 to be mounted between the output joint 36 and the connecting hole 64 is larger than an inner diameter of the connecting hole 64. Therefore, when the joint seal member 71 is incorporated between the output joint 36 and the connecting hole 64, sealing is carried out between the outer peripheral surface of the output joint 36 and the inner peripheral surface of the connecting hole 64 by contraction of both protruding seal parts 75 and 76 in a radial direction, thereby surely preventing air from leaking from between the connecting hole 64 and the output joint 36 to the outside.
(39) One protruding seal part 75 corresponds to the annular engaging protruding part 57 of the output joint 36. Therefore, the protruding seal part 75 is strongly pressed on the annular engaging protruding part 57 of the output joint 36 with the joint seal member 71 being incorporated, thereby enhancing a seal force.
(40) The joint seal member 71, a configuration in which the outer diameter is made to be the same on the whole can also be used without the protruding seal parts 75 and 76 being provided on the outer peripheral surface. In that case, the inner peripheral surface of the joint seal member 71 comes in contact with the whole outer peripheral surface of the output joint 36. On the other hand, as mentioned above, when the protruding seal parts 75 and 76 are provided on the joint seal member 71, the outer peripheral surface of the joint seal member 71 will come in contact with the inner peripheral surface of the connecting hole 64 only at the protruding seal parts 75 and 76. Thereby, a contact strength of the joint seal member 71 to the output joint 36 becomes higher than an contact strength to the connecting hole 64. Therefore, when the flow passage block 61 is removed from the front face of the manifold solenoid valve 10, the joint seal member 71 is mounted on the output joint 36 without remaining in the connecting hole 64. Since the joint seal member 71 remains in the output joint 36 when the flow passage block 61 is removed from the manifold solenoid valve 10, replacement work of the joint seal member 71 can be performed easily.
(41) The joint seal members 71 to 73 are the same in structure as each other, but the joint seal member 72 to be mounted on the air supply joint 37 and the joint seal member 73 to be mounted on the exhaust joint 38 are larger in diameter than the joint seal member 71 to be mounted on the output joint 36. The joint seal members 72 and 73 are the same in diameter as each other.
(42) When the flow passage block 61 is mounted on the valve base 12, the joint seal members 71 to 73 are fitted into the respective connecting holes 64 to 66 of the flow passage block 61. Therefore, when changing a gap between the valve base 12 and the flow passage block 61, the protruding seal parts 75 and 76 of the joint seal members 71 to 73 are only moved in an axial direction in the inside of the connecting holes 64 to 66, and the air can be prevented surely from leaking out from between the valve base 12 and the flow passage block 61.
(43) In the flow passage block 61 shown in
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(46) The present invention is not limited to the above-mentioned embodiments, and can be modified variously in the range without departing from the substance. For example, although the air supply joint 37 and exhaust joint 38 are provided on the end blocks 15 and 16 which are mounted on both end faces of the valve base assembly 14, the air supply joint 37 and exhaust joint 38 may be made to be provided on one end block.
EXPLANATION OF REFERENCES
(47) 10 manifold solenoid valve 11 solenoid valve 12 valve base 13 connecting attachment 14 valve base assembly 15 and 16 end blocks 21 output port 22 air supply port 23 exhaust port 30 fastener 31 output hole 32 air supply hole 33 exhaust hole 36 output joint 37 air supply joint 38 exhaust joint 41 first protruding part 42 second protruding part 43 and 44 concave grooves 45 central part 46 and 47 side part in width direction 50 connecting piece 51 first clamp piece 52 second clamp piece 53 and 54 claw parts 55 bent part 56 cutout part 57 annular engaging protruding part 61 flow passage block 64 to 66 connecting holes 64a to 66a air flow passages 71 to 73 joint seal member 74 annular recess part 75 protruding seal part 76 protruding seal part