WO2014017209A1 - Screw loosening prevention structure - Google Patents

Screw loosening prevention structure Download PDF

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Publication number
WO2014017209A1
WO2014017209A1 PCT/JP2013/066362 JP2013066362W WO2014017209A1 WO 2014017209 A1 WO2014017209 A1 WO 2014017209A1 JP 2013066362 W JP2013066362 W JP 2013066362W WO 2014017209 A1 WO2014017209 A1 WO 2014017209A1
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WO
WIPO (PCT)
Prior art keywords
hole
pin
screw
jig
bolt
Prior art date
Application number
PCT/JP2013/066362
Other languages
French (fr)
Japanese (ja)
Inventor
教雄 湯澤
Original Assignee
カヤバ工業株式会社
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by カヤバ工業株式会社 filed Critical カヤバ工業株式会社
Priority to KR20157002032A priority Critical patent/KR20150032727A/en
Priority to CN201380039489.7A priority patent/CN104487719B/en
Publication of WO2014017209A1 publication Critical patent/WO2014017209A1/en
Priority to IN442KON2015 priority patent/IN2015KN00442A/en

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Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16FSPRINGS; SHOCK-ABSORBERS; MEANS FOR DAMPING VIBRATION
    • F16F9/00Springs, vibration-dampers, shock-absorbers, or similarly-constructed movement-dampers using a fluid or the equivalent as damping medium
    • F16F9/32Details
    • F16F9/3207Constructional features
    • F16F9/3228Constructional features of connections between pistons and piston rods
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16FSPRINGS; SHOCK-ABSORBERS; MEANS FOR DAMPING VIBRATION
    • F16F9/00Springs, vibration-dampers, shock-absorbers, or similarly-constructed movement-dampers using a fluid or the equivalent as damping medium
    • F16F9/32Details
    • F16F9/3207Constructional features
    • F16F9/3235Constructional features of cylinders
    • F16F9/3242Constructional features of cylinders of cylinder ends, e.g. caps
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16BDEVICES FOR FASTENING OR SECURING CONSTRUCTIONAL ELEMENTS OR MACHINE PARTS TOGETHER, e.g. NAILS, BOLTS, CIRCLIPS, CLAMPS, CLIPS OR WEDGES; JOINTS OR JOINTING
    • F16B39/00Locking of screws, bolts or nuts
    • F16B39/22Locking of screws, bolts or nuts in which the locking takes place during screwing down or tightening
    • F16B39/28Locking of screws, bolts or nuts in which the locking takes place during screwing down or tightening by special members on, or shape of, the nut or bolt
    • F16B39/32Locking by means of a pawl or pawl-like tongue
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16FSPRINGS; SHOCK-ABSORBERS; MEANS FOR DAMPING VIBRATION
    • F16F2230/00Purpose; Design features
    • F16F2230/0041Locking; Fixing in position

Definitions

  • the present invention relates to a screw loosening prevention structure that restricts relative rotation between two members coupled by screwing.
  • a screw loosening prevention structure for example, there are a structure using a set screw for stopping rotation of a member, and a structure in which a caulking portion is formed by plastic deformation of a part of a screw member.
  • JP 2008-121753A discloses a method in which a concave portion and a protruding portion that are engaged with each other are formed between a screw and a washer to restrict relative rotation of both.
  • An object of the present invention is to provide a screw loosening prevention structure in which screw loosening prevention is reliably performed.
  • a screw loosening prevention structure that restricts relative rotation between a first member and a second member that are coupled by screwing, and a first hole formed in the first member; A second hole formed in the second member; a pin inserted into the second hole; and a biasing member that is interposed in the second hole and biases the pin in a direction of pushing the pin out of the second hole.
  • the pin is inserted across the first hole and the second hole when the first hole and the second hole coincide with the relative rotation of the first member and the second member.
  • FIG. 1 is a cross-sectional view of a hydraulic cylinder provided with a screw locking structure according to a first embodiment of the present invention.
  • FIG. 2 is an enlarged cross-sectional view of a part of the hydraulic cylinder.
  • FIG. 3 is a cross-sectional view showing how the cylinder head is loosened.
  • 4 is a cross-sectional view taken along line AA in FIG.
  • FIG. 5 is a cross-sectional view of the screw locking structure according to the second embodiment of the present invention.
  • FIG. 6 is a cross-sectional view of the screw locking structure according to the third embodiment of the present invention.
  • FIG. 7 is a cross-sectional view of the screw locking structure according to the fourth embodiment of the present invention.
  • FIG. 8 is a cross-sectional view of the screw locking structure according to the fifth embodiment of the present invention.
  • the hydraulic cylinder 1 is provided with a screw loosening prevention structure according to an embodiment of the present invention described later.
  • the hydraulic cylinder 1 includes a cylindrical cylinder tube 4, a piston 6 slidably accommodated inside the cylinder tube 4, a piston rod 7 connected to the piston 6, and a piston rod 7 slidably supported. And a cylinder head 5 to be provided.
  • the inner side of the cylinder tube 4 is divided into a head side chamber 2 and a bottom side chamber 3 by a piston 6.
  • the head side chamber 2 is provided on the head side where the piston rod 7 protrudes from the cylinder tube 4, and is defined by the cylinder tube 4, the piston 6, the piston rod 7, and the cylinder head 5.
  • the bottom side chamber 3 is provided on the bottom side of the cylinder tube 4 and is partitioned by the cylinder tube 4 and the piston 6.
  • hydraulic fluid (working fluid) supplied from the pump side of the hydraulic source flows into the bottom chamber 3 through the bottom passage (not shown), and the piston 6 moves to the head side (FIG. 1). And hydraulic oil in the head side chamber 2 flows out through the head side passage (not shown) to the tank side of the hydraulic power source.
  • the piston rod 7 is connected to a load (not shown), and the cylinder tube 4 is connected to a fixed portion (not shown).
  • a load connected to the piston rod 7 is driven.
  • the cylinder tube 4 and the cylinder head 5 are formed in a cylindrical shape.
  • An internal thread 12 is formed on the inner periphery of the cylinder tube 4.
  • a male screw 11 is formed on the outer periphery of the cylinder head 5.
  • Seal rings 13 and 14 are interposed between the cylinder tube 4 and the cylinder head 5.
  • O-rings are employed as the seal rings 13 and 14, but are not limited to O-rings.
  • a sealing member such as an X ring may be used as appropriate.
  • the cylinder head 5 and the cylinder tube 4 are first and second members that are screwed together via screws 11 and 12. Between the cylinder tube 4 and the cylinder head 5, a screw loosening prevention structure 15 that restricts the relative rotation of both is provided.
  • the screw locking structure 15 extends over the first hole 16 and the first through hole 21 formed in the cylinder head 5, the second hole 17 formed in the cylinder tube 4, and the first hole 16 and the second hole 17. And a spring 19 that is interposed in the second hole 17 and biases the pin 18 in a direction of pushing the pin 18 from the second hole 17 to the first hole 16.
  • the single screw locking structure 15 is provided, but the number is not limited to one. In order to obtain a predetermined screw loosening prevention performance including this embodiment and other embodiments described later, a plurality of screw loosening prevention structures 15 may be provided.
  • the columnar pin 18 includes a cylindrical outer peripheral surface 18A extending in the central axis direction, and inclined end portions 18B formed in a tapered shape (conical frustum shape) at both ends thereof. 18C and end faces 18D and 18E formed in a planar shape perpendicular to the central axis at both ends thereof.
  • the spring 19 is a coiled metal spring and is interposed between the bottom 17C of the second hole 17 and the end face 18E of the pin 18 by being compressed.
  • the spring 19 is a biasing member that biases the pin 18 in a direction of pushing out the pin 18 from the second hole 17.
  • the urging member is not limited to the above-described configuration, and other shapes of metal springs or an elastic material such as rubber may be used.
  • the first hole 16 has a cylindrical inner peripheral surface 16 ⁇ / b> A, an opening end 16 ⁇ / b> B that opens to the joining end surface 5 ⁇ / b> A of the cylinder head 5, and a bottom portion 16 ⁇ / b> C formed inside the cylinder head 5.
  • the second hole 17 has a cylindrical inner peripheral surface 17 ⁇ / b> A, an opening end 17 ⁇ / b> B that opens to the joining end surface 4 ⁇ / b> A of the cylinder tube 4, and a bottom portion 17 ⁇ / b> C formed inside the cylinder tube 4.
  • the first hole 16 and the second hole 17 are formed such that their center lines extend in parallel with the center line O of the hydraulic cylinder 1 and the distance from the center line O is equal to each other.
  • the first hole 16 and the second hole 17 are aligned and extend coaxially, and the open ends of the first hole 16 and the second hole 17 Are matched to each other without any steps.
  • the first through hole 21 extends coaxially with the first hole 16 and is formed to penetrate the cylinder head 5.
  • the first through hole 21 has a female screw 22 formed on the inner periphery thereof, an opening end 21 ⁇ / b> A that opens to the bottom 16 ⁇ / b> C of the first hole 16, and an opening end 21 ⁇ / b> B that opens to the outer end surface 5 ⁇ / b> B of the cylinder head 5. .
  • FIG. 3 is a cross-sectional view showing how the cylinder head 5 is assembled to the cylinder tube 4.
  • a screw-like jig 25 inserted into the first through hole 21 is used.
  • the jig 25 includes a screw portion 25A in which a male screw 26 is formed on the outer periphery, a head portion 25B formed in a proximal end portion of the screw portion 25A, and a screw portion 25A formed in a planar shape perpendicular to the central axis. And a tip 25C. As shown in FIG.
  • the jig 25 is inserted into the first through hole 21 and assembled to the cylinder head 5, and the tip 25 ⁇ / b> C is positioned near the opening end 16 ⁇ / b> B of the first hole 16. It has a length for closing 16B.
  • the screw portion 25A is provided in the jig 25.
  • the present invention is not limited to this, and the screw portion 25A may not be provided.
  • the jig 25 may be a rod-shaped member that can slide in the axial direction of the first through hole 21.
  • the process of assembling the cylinder head 5 to the cylinder tube 4 is performed by the following processes.
  • the jig 25 is assembled to the cylinder head 5 so that the male screw 26 of the screw portion 25A is screwed into the female screw 22 of the first through hole 21 and the head portion 25B contacts the outer end surface 5B of the cylinder head 5. Thereby, the screw portion 25A of the jig 25 is inserted into the first hole 16, and the tip 25C of the screw portion 25A is positioned in the vicinity of the opening end 16B of the first hole 16 to close the opening end 16B.
  • the [loosening prevention step] is not limited to the above-described configuration, and may be as follows.
  • the cylinder head 5 is screwed with a predetermined tightening torque, and the inclined end portion 18B of the pin 18 is brought into sliding contact with the opening end 16B of the first hole 16 to match the first hole 16 and the second hole 17 (FIG. 3). reference).
  • the jig 25 is extracted from the first hole 16 in a state where the first hole 16 and the second hole 17 are matched.
  • the pin 18 is pushed out of the second hole 17 by following the jig 25 by the biasing force of the spring 19, and is moved into the second hole 17 and the first hole 16. Inserted across (see FIG. 2).
  • the screw loosening prevention structure 15 that restricts the relative rotation between the cylinder head 5 (first member) and the cylinder tube 4 (second member) coupled by screwing the screws 11 and 12 is the cylinder head 5.
  • the pin 18 is inserted across the first hole 16 and the second hole 17 in a state where the cylinder head 5 and the cylinder tube 4 are aligned. It was supposed to be.
  • a first through hole 21 that communicates with the first hole 16 is formed in the cylinder head 5, and the first through hole 21 is inserted from the outside into the first hole 16.
  • Tool 25 was used.
  • a jig is inserted from the outside into the first hole 16 through the first through hole 21.
  • the jig 25 closes the opening end 16B of the first hole 16 with the tip 25C, and allows the pin 18 pushed out from the second hole 17 by the biasing force of the biasing member (spring 19) to enter the first hole 16. regulate.
  • the jig 25 When releasing the fastening of the cylinder head 5 and the cylinder tube 4, the jig 25 is screwed into the first through hole 21 and inserted into the first hole 16, and the pin 18 is resisted against the biasing force of the spring 19. It extrudes from the 1st hole 16 (refer FIG. 3). In this way, when the pin 18 is extracted from the first hole 16, the cylinder head 5 and the cylinder tube 4 can be rotated relative to each other, and the fastening of both can be released. Therefore, the cylinder head 5 can be repeatedly attached to and detached from the cylinder tube 4.
  • a nut 31 for fastening the piston 6 is provided at the tip of the piston rod 7.
  • the piston 6 and the nut 31 are formed in a cylindrical shape.
  • the piston 6 is fitted to the tip shaft portion 7 ⁇ / b> A of the piston rod 7.
  • a male screw 32 is formed on the outer periphery of the distal end shaft portion 7A of the piston rod 7.
  • a female thread 33 is formed on the inner periphery of the nut 31.
  • Piston rod 7 and nut 31 are first and second members that are screwed together via screws 32 and 33. Between the piston rod 7 and the nut 31, a screw loosening prevention structure 35 that restricts the relative rotation of both is provided.
  • the screw locking structure 35 includes a first hole 36 and a first through hole 41 formed in the nut 31, a second hole 37 formed in the piston rod 7, and a first hole 36. And a pin 38 inserted across the second hole 37, and a spring 39 that is interposed in the second hole 37 and biases the pin 38 in a direction of pushing the pin 38 from the second hole 37 to the first hole 36. .
  • the pin 38 is inserted across the second hole 37 and the first hole 36 by the biasing force of the spring 39, the relative rotation of the piston rod 7 and the nut 31 is restricted.
  • the first hole 36 and the second hole 37 are formed so that their center lines extend in a direction perpendicular to the center line O of the hydraulic cylinder 1, and match each other with the nut 31 fastened to the piston rod 7. Are arranged so as to extend on the same axis.
  • the center lines of the first hole 36 and the second hole 37 are provided so as to intersect with the center line O of the hydraulic cylinder 1, but the present invention is not limited to this configuration.
  • the center lines of the first hole 36 and the second hole 37 may be provided so as not to intersect with the center line O of the hydraulic cylinder 1.
  • the first through hole 41 extends coaxially with the first hole 36 and is formed so as to penetrate the nut 31.
  • the first through-hole 41 is formed with an internal thread 42 into which a jig (not shown) is screwed.
  • the process of assembling the piston 6 to the piston rod 7 via the nut 31 is performed by the following processes.
  • the first hole 36 opens to the inner periphery of the nut 31 (first member)
  • the second hole 37 opens to the outer periphery of the piston rod 7 (second member)
  • the first hole 36 matches the second hole 37 as the nut 31 is screwed into the piston rod 7.
  • the pin 38 restricts the relative rotation between the nut 31 and the piston rod 7. The process of assembling the piston 6 to the piston rod 7 is completed.
  • the screw locking structure 35 includes a first through hole 41 through which a jig inserted from the outside into the first hole 36 is inserted.
  • the first through hole 41 communicates with the first hole 36 and is formed in the nut 31.
  • a screw-like jig (not shown) is screwed into the first through hole 41 and inserted into the first hole 36, and the pin 38 is attached to the spring 39. Push out from the first hole 36 against the force.
  • the nut 31 and the piston rod 7 can be rotated relative to each other, and the fastening of both can be released. Accordingly, the nut 31 can be repeatedly attached to and detached from the piston rod 7.
  • the jig is inserted in the first through hole 41 and assembled to the nut 31, and the tip of the jig is located near the opening end of the first hole 36 and has a length for closing the opening end.
  • the jig is provided with a screw portion. Not only this but the rod-shaped thing which can slide in the axial direction of the 1st through-hole 41 may be sufficient. Moreover, not only the structure mentioned above but the 1st through-hole 41 does not need to be provided when it is not necessary to cancel
  • the screw is loosened in which the pin 18 is inserted across the first and second members (the cylinder head 5 and the cylinder tube 4) that are screwed together via the screws 11 and 12.
  • the screw loosening prevention structure 35 in which the pin 38 is inserted across the first and second members (the nut 31 and the piston rod 7) that are screwed together with the fastening structure 15 and the screws 32 and 33 has been described.
  • the first member (cylinder head 5, nut 31) and the second member (cylinder tube 4, piston rod 7) are fastened by screwing, the first holes 16, 36 and the second The pins 18 and 38 pushed out from the second holes 17 and 37 by the urging force of the springs 19 and 39 in a state where the holes 17 and 37 are aligned are inserted across the second holes 17 and 37 and the first holes 16 and 36.
  • the relative rotation of the first member (cylinder head 5 and nut 31) and the second member (cylinder tube 4 and piston rod 7) is restricted by the pins 18 and 38.
  • the second member (fastened member 54) is sandwiched between the first and third members (bolts 55 and the main body 53) that are screwed together via the screws 51 and 52.
  • the pin 63 is interposed between the first and second members (the bolt 55 and the fastened member 54).
  • a fastened member 54 is fastened to the main body 53 via a bolt 55.
  • a bolt hole 56 through which the bolt 55 is inserted is formed in the fastened member 54.
  • a male screw 51 is formed in the threaded portion 55B of the bolt 55, while a female screw 52 is formed in the screw hole 53A of the main body 53.
  • a screw loosening prevention structure 60 that restricts the relative rotation of both is provided.
  • the screw locking structure 60 includes a first hole 57 and a first through hole 58 formed in the head portion 55A of the bolt 55, a second hole 59 formed in the fastened member 54, a first hole 57, and a second hole.
  • a pin 63 inserted over the hole 59; and a spring 64 interposed in the second hole 59 and biasing the pin 63 in a direction of pushing the pin 63 from the second hole 59 to the first hole 57.
  • the first hole 57 and the second hole 59 are formed so as to extend in parallel with the central axis of the bolt 55, so that the fastened member 54 is fastened via the bolt 55 so as to coincide with each other and extend coaxially. Placed in.
  • the first through hole 58 extends coaxially with the first hole 57 and is formed to penetrate the head portion 55A of the bolt 55.
  • the first through hole 58 is formed with a female screw 61 on the inner periphery thereof, into which a screw-like jig (not shown) is screwed.
  • the jig is inserted into the first through hole 58 and assembled to the bolt 55, and the tip thereof is positioned in the vicinity of the opening end of the first hole 57 and has a length for closing the opening end.
  • tool was used in this Embodiment, it is not restricted to this, For example, you may use the rod-shaped thing which can slide to the axial direction of a 1st through-hole.
  • the process of assembling the fastened member 54 to the main body 53 via the bolt 55 is performed by the following processes.
  • the [loosening prevention step] is not limited to the above-described configuration, and the jig may be extracted from the first hole 57 in a state where the first hole 57 and the second hole 59 are matched.
  • the third member (fastened member 54) is sandwiched between the first and second members (bolts 55 and the main body 53) that are screwed together via the screws 51 and 52. Then, the pin 73 is inserted across the first, second, and third members (the bolt 55, the main body 53, and the fastened member 54).
  • the first member is the bolt 55
  • the second member is the fastened member 54
  • the third member is the main body 53.
  • the first member is the bolt 55
  • the second member is the main body 53
  • the third member is the fastened member 54.
  • a screw loosening prevention structure 70 that restricts relative rotation of each is provided.
  • the screw locking structure 70 includes a first hole 57 and a first through hole 58 formed in the head portion 55 ⁇ / b> A of the bolt 55, a third hole 79 formed in the fastened member 54, and a first hole formed in the main body 53.
  • a spring 64 to be energized.
  • the first hole 57, the third hole 79, and the second hole 78 are formed so as to extend in parallel with the central axis of the bolt 55, and match each other in a state where the fastened member 54 is fastened via the bolt 55. It arrange
  • the process of assembling the fastened member 54 to the main body 53 via the bolt 55 is performed by the following processes.
  • the [loosening prevention step] is not limited to the above-described configuration, and the jig may be removed from the first hole 57 in a state where the first hole 57 is aligned with the third hole 79 and the second hole 78. Good.
  • the screw locking structure 70 of the third embodiment includes the fastened member 54 (third member) interposed between the bolt 55 (first member) and the main body 53 (second member). Since the third hole 79 through which the pin 73 is inserted is formed in the fastened member 54 (third member), the relative rotation of the bolt 55 and the main body 53 that are screwed through the screws 51 and 52 is restricted, and the bolt The locking member 54 can be positioned and the fastening member 54 can be positioned.
  • the screw locking structure 80 In the screw locking structure 80 according to the fourth embodiment, the third member (fastened member 54) is sandwiched between the second and first members (bolts 55 and the main body 53) that are screwed together via the screws 51 and 52. Then, the pin 84 is inserted across the second and third members (the bolt 55 and the fastened member 54).
  • the first member is the bolt 55
  • the second member is the fastening member 54
  • the third member is the main body 53.
  • the first member is the main body 53
  • the second member is the bolt 55
  • the third member is the fastened member 54.
  • a screw loosening prevention structure 80 that restricts the relative rotation of both is provided.
  • the second hole 82 and the first hole 81 are formed so as to extend parallel to the central axis of the bolt 55, so that the fastened member 54 is fastened via the bolt 55 so as to coincide with each other and extend coaxially. Placed in.
  • the second through hole 83 extends coaxially with the second hole 82 and is formed so as to penetrate the head portion 55A of the bolt 55.
  • a rod-shaped jig (not shown) is inserted into the second through hole 83.
  • the pin 84 is formed with a screw hole 86 that opens at an end surface thereof.
  • a screw (not shown) formed at the tip of the jig is screwed into the screw hole 86.
  • the jig has a length such that the tip of the jig is engaged with the pin 84 while being inserted into the second through hole 83 and assembled to the bolt 55.
  • the process of assembling the fastened member 54 to the main body 53 via the bolt 55 is performed by the following processes.
  • the [loosening prevention step] is not limited to the above-described configuration, and the jig may be removed from the pin 84 and removed from the second hole 82 in a state where the second hole 82 and the first hole 81 are matched. .
  • the third and fourth members are interposed between the first and second members (nuts 103 and bolts 104) that are screwed together via the screws 102 and 101. 106) is sandwiched.
  • the pin 107 is inserted across the second and third members (bolt 104, fastened member 105), and the pin 108 is inserted across the first and fourth members (nut 103, fastened member 106). .
  • Fastened members 105 and 106 are fastened through bolts 104 and nuts 103.
  • Bolt holes 115 and 116 through which the bolts 104 are inserted are formed in the fastened members 105 and 106, respectively.
  • a male thread 101 is formed on the threaded portion 104B of the bolt 104, while a female thread 102 is formed on the inner periphery of the nut 103.
  • the screw loosening prevention structure 100 restricts relative rotation of the bolt 104 and the nut 103 via the pins 107 and 108.
  • the first pin 107 is provided across the second hole 114 formed in the head 104A of the bolt 104 and the third hole 117 formed in the fastened member 105, and restricts relative rotation of both.
  • the second pin 108 is provided across the nut 103 and the fastened member 106, and restricts relative rotation of both.
  • the fastening member 106 is formed with a fourth hole 113 into which the base end portion of the second pin 108 and the spring 109 are inserted.
  • the nut 103 is formed with a first hole 111 into which the tip of the second pin 108 is inserted, and a first through hole 112 extending coaxially with the first hole 111.
  • a jig (not shown) is inserted into the first through hole 112, and the opening end of the first hole 111 is blocked by the tip of the jig.
  • the jig is removed from the first hole 111.
  • the nut 103 is screwed with a predetermined torque and the first hole 111 is made to coincide with the fourth hole 113 while being rotated once with respect to the bolt 104.
  • the second pin pushed out from the fourth hole 113 by the biasing force of the spring 109 is inserted across the first hole 111 and the fourth hole 113.
  • the rotation of the nut 103 is restricted by the second pin 108 held by the urging force of the spring 109, and the rotation of the bolt 104 is restricted by the first pin 107.
  • first pin 107 that restricts the rotation of the bolt 104 is not limited to the above-described configuration, and may be configured to be held by the urging force of the spring, similarly to the second pin 108.
  • the screw locking structure of the nut 103 may be the same as the screw locking structure 35 shown in FIG. Specifically, a second hole is formed in the outer periphery of the threaded portion 104B of the bolt 104, and a spring and a pin are accommodated in the second hole, while a second hole opened in the inner periphery (the female thread 102) of the nut 103. It is good also as a structure in which one hole is formed. In this case, as the nut 103 is screwed, the pin is inserted across the second hole and the first hole by the biasing force of the spring, and the relative rotation of the nut 103 is restricted.

Abstract

A screw loosening prevention structure (15), that restrains the opposing rotation of a cylinder head (5) (first member) and a cylinder tube (4) (second member) that are coupled together by the screwing action of screws (11, 12), is provided with a first hole (16) that is formed in the cylinder head (5), a second hole (17) that is formed in the cylinder tube (4), a pin (18) that is inserted into the second hole (17), and an energizing member (spring (19)) that is inserted into the second hole (17) and applies energy to the pin (18) in the direction of pushing the pin out of the second hole (17). In a state where the cylinder head (5) and the cylinder tube (4) are engaged, the pin (18) is inserted through the first hole (16) and the second hole (17).

Description

ねじ緩み止め構造Screw locking structure
 本発明は、ねじの螺合によって結合される二つの部材どうしの相対回転を規制するねじ緩み止め構造に関するものである。 The present invention relates to a screw loosening prevention structure that restricts relative rotation between two members coupled by screwing.
 従来、ねじ緩み止め構造として、例えば部材の回転止めを行うセットスクリュを用いるものや、ネジ部材の一部を塑性変形させてカシメ部を形成するものがあった。 Conventionally, as a screw loosening prevention structure, for example, there are a structure using a set screw for stopping rotation of a member, and a structure in which a caulking portion is formed by plastic deformation of a part of a screw member.
 JP2008-121753Aには、ビスとワッシャの間に互いに係合する凹部及び突起部を形成して両者の相対回転を規制するものが開示されている。 JP 2008-121753A discloses a method in which a concave portion and a protruding portion that are engaged with each other are formed between a screw and a washer to restrict relative rotation of both.
 しかしながら、JP2008-121753Aに開示のねじ緩み止め構造にあっては、ねじの螺合を解除する方向に大きなトルクが加わる場合や、振動や衝撃を受ける場合に、ねじの緩みが生じるという問題点があった。 However, in the screw loosening prevention structure disclosed in JP2008-121753A, there is a problem that the loosening of the screw occurs when a large torque is applied in the direction of releasing the screwing, or when receiving a vibration or an impact. there were.
 本発明は、ねじの緩み止めが確実に行われるねじ緩み止め構造を提供することを目的とする。 An object of the present invention is to provide a screw loosening prevention structure in which screw loosening prevention is reliably performed.
 本発明のある態様によれば、ねじの螺合によって結合される第一部材及び第二部材どうしの相対回転を規制するねじ緩み止め構造であって、第一部材に形成される第一穴と、第二部材に形成される第二穴と、第二穴に挿入されるピンと、第二穴に介装されてピンを第二穴から押し出す方向に付勢する付勢部材と、を備え、ピンは、第一部材と第二部材の相対回転に伴って前記第一穴と前記第二穴が合致した際に、第一穴と第二穴に渡って挿入される。 According to an aspect of the present invention, there is provided a screw loosening prevention structure that restricts relative rotation between a first member and a second member that are coupled by screwing, and a first hole formed in the first member; A second hole formed in the second member; a pin inserted into the second hole; and a biasing member that is interposed in the second hole and biases the pin in a direction of pushing the pin out of the second hole. The pin is inserted across the first hole and the second hole when the first hole and the second hole coincide with the relative rotation of the first member and the second member.
図1は、本発明の第1実施形態に係るねじ緩み止め構造が設けられる油圧シリンダの断面図である。FIG. 1 is a cross-sectional view of a hydraulic cylinder provided with a screw locking structure according to a first embodiment of the present invention. 図2は、油圧シリンダの一部を拡大した断面図である。FIG. 2 is an enlarged cross-sectional view of a part of the hydraulic cylinder. 図3は、シリンダヘッドの緩み止めが行われる様子を示す断面図である。FIG. 3 is a cross-sectional view showing how the cylinder head is loosened. 図4は、図1のA-A線に沿う断面図である。4 is a cross-sectional view taken along line AA in FIG. 図5は、本発明の第2実施形態に係るねじ緩み止め構造の断面図である。FIG. 5 is a cross-sectional view of the screw locking structure according to the second embodiment of the present invention. 図6は、本発明の第3実施形態に係るねじ緩み止め構造の断面図である。FIG. 6 is a cross-sectional view of the screw locking structure according to the third embodiment of the present invention. 図7は、本発明の第4実施形態に係るねじ緩み止め構造の断面図である。FIG. 7 is a cross-sectional view of the screw locking structure according to the fourth embodiment of the present invention. 図8は、本発明の第5実施形態に係るねじ緩み止め構造の断面図である。FIG. 8 is a cross-sectional view of the screw locking structure according to the fifth embodiment of the present invention.
 以下、添付図面を参照しながら本発明の実施形態について説明する。 Hereinafter, embodiments of the present invention will be described with reference to the accompanying drawings.
 (第1実施形態)
 まず、図1に示す油圧シリンダ(流体圧シリンダ)1について説明する。この油圧シリンダ1に後述する本発明の実施形態によるねじ緩み止め構造が設けられる。
(First embodiment)
First, the hydraulic cylinder (fluid pressure cylinder) 1 shown in FIG. 1 will be described. The hydraulic cylinder 1 is provided with a screw loosening prevention structure according to an embodiment of the present invention described later.
 油圧シリンダ1は、筒状のシリンダチューブ4と、シリンダチューブ4の内側に摺動自在に収容されるピストン6と、ピストン6に連結されるピストンロッド7と、ピストンロッド7を摺動自在に支持するシリンダヘッド5と、を備える。 The hydraulic cylinder 1 includes a cylindrical cylinder tube 4, a piston 6 slidably accommodated inside the cylinder tube 4, a piston rod 7 connected to the piston 6, and a piston rod 7 slidably supported. And a cylinder head 5 to be provided.
 シリンダチューブ4の内側は、ピストン6によってヘッド側室2とボトム側室3に仕切られる。ヘッド側室2は、ピストンロッド7がシリンダチューブ4から突出するヘッド側に設けられ、シリンダチューブ4とピストン6とピストンロッド7とシリンダヘッド5とによって区画される。ボトム側室3は、シリンダチューブ4のボトム側に設けられ、シリンダチューブ4とピストン6とによって区画される。 The inner side of the cylinder tube 4 is divided into a head side chamber 2 and a bottom side chamber 3 by a piston 6. The head side chamber 2 is provided on the head side where the piston rod 7 protrudes from the cylinder tube 4, and is defined by the cylinder tube 4, the piston 6, the piston rod 7, and the cylinder head 5. The bottom side chamber 3 is provided on the bottom side of the cylinder tube 4 and is partitioned by the cylinder tube 4 and the piston 6.
 油圧シリンダ1の伸長作動時には、油圧源のポンプ側から供給される作動油(作動流体)がボトム側通路(図示省略)を通ってボトム側室3に流入して、ピストン6がヘッド側(図1において上方)に移動し、これに伴ってヘッド側室2の作動油がヘッド側通路(図示省略)を通って油圧源のタンク側へと流出する。 When the hydraulic cylinder 1 is extended, hydraulic fluid (working fluid) supplied from the pump side of the hydraulic source flows into the bottom chamber 3 through the bottom passage (not shown), and the piston 6 moves to the head side (FIG. 1). And hydraulic oil in the head side chamber 2 flows out through the head side passage (not shown) to the tank side of the hydraulic power source.
 一方、油圧シリンダ1の収縮作動時には、油圧源のポンプ側から供給される作動油がヘッド側室2に流入して、ピストン6がボトム側(図1において下方)に移動し、これに伴ってボトム側室3の作動油が油圧源のタンク側へと流出する。 On the other hand, when the hydraulic cylinder 1 is contracted, hydraulic oil supplied from the pump side of the hydraulic source flows into the head side chamber 2, and the piston 6 moves to the bottom side (downward in FIG. 1). The hydraulic oil in the side chamber 3 flows out to the tank side of the hydraulic power source.
 ピストンロッド7には、図示しない負荷が連結され、シリンダチューブ4は、図示しない固定部に連結される。油圧シリンダ1が伸縮作動することにより、ピストンロッド7に連結される負荷が駆動する。 The piston rod 7 is connected to a load (not shown), and the cylinder tube 4 is connected to a fixed portion (not shown). When the hydraulic cylinder 1 is expanded and contracted, a load connected to the piston rod 7 is driven.
 以下、シリンダチューブ4にシリンダヘッド5を結合する構造について説明する。 Hereinafter, a structure for coupling the cylinder head 5 to the cylinder tube 4 will be described.
 シリンダチューブ4及びシリンダヘッド5は、円筒状に形成される。シリンダチューブ4の内周には、雌ねじ12が形成される。シリンダヘッド5の外周には、雄ねじ11が形成される。雌ねじ12に雄ねじ11が螺合することにより、シリンダチューブ4にシリンダヘッド5が締結される。シリンダチューブ4とシリンダヘッド5の間にシールリング13、14が介装される。なお、本実施の形態では、シールリング13、14としてOリングを採用しているが、Oリングに限らない。他に例えばXリングなど、適宜シール部材を採用してもよい。 The cylinder tube 4 and the cylinder head 5 are formed in a cylindrical shape. An internal thread 12 is formed on the inner periphery of the cylinder tube 4. A male screw 11 is formed on the outer periphery of the cylinder head 5. When the male screw 11 is screwed into the female screw 12, the cylinder head 5 is fastened to the cylinder tube 4. Seal rings 13 and 14 are interposed between the cylinder tube 4 and the cylinder head 5. In the present embodiment, O-rings are employed as the seal rings 13 and 14, but are not limited to O-rings. In addition, a sealing member such as an X ring may be used as appropriate.
 シリンダヘッド5、シリンダチューブ4が、ねじ11、12を介して螺合する第一、第二部材である。シリンダチューブ4及びシリンダヘッド5の間には、両者の相対回転を規制するねじ緩み止め構造15が設けられる。 The cylinder head 5 and the cylinder tube 4 are first and second members that are screwed together via screws 11 and 12. Between the cylinder tube 4 and the cylinder head 5, a screw loosening prevention structure 15 that restricts the relative rotation of both is provided.
 ねじ緩み止め構造15は、シリンダヘッド5に形成される第一穴16及び第一貫通孔21と、シリンダチューブ4に形成される第二穴17と、第一穴16と第二穴17に渡って挿入されるピン18と、第二穴17に介装されてピン18を第二穴17から第一穴16へと押し出す方向に付勢するスプリング19と、を備える。スプリング19の付勢力によってピン18が第一穴16と第二穴17に渡って挿入されることにより、シリンダチューブ4及びシリンダヘッド5の相対回転が規制される。なお、本実施の形態では、単一のねじ緩み止め構造15が設けられているが、数は1つに限らない。本実施の形態及び後述する他の実施の形態も含め、所定のねじ緩み止め性能を得るべく、ねじ緩み止め構造15を複数設けてもよい。 The screw locking structure 15 extends over the first hole 16 and the first through hole 21 formed in the cylinder head 5, the second hole 17 formed in the cylinder tube 4, and the first hole 16 and the second hole 17. And a spring 19 that is interposed in the second hole 17 and biases the pin 18 in a direction of pushing the pin 18 from the second hole 17 to the first hole 16. When the pin 18 is inserted across the first hole 16 and the second hole 17 by the biasing force of the spring 19, the relative rotation of the cylinder tube 4 and the cylinder head 5 is restricted. In the present embodiment, the single screw locking structure 15 is provided, but the number is not limited to one. In order to obtain a predetermined screw loosening prevention performance including this embodiment and other embodiments described later, a plurality of screw loosening prevention structures 15 may be provided.
 図2にも示すように、円柱状のピン18は、その中心軸方向に延びる円筒面状の外周面18Aと、その両端部にテーパ状(円錐台状)に形成される傾斜端部18B、18Cと、その両端に中心軸と直交する平面状に形成される端面18D、18Eと、を有する。 As shown in FIG. 2, the columnar pin 18 includes a cylindrical outer peripheral surface 18A extending in the central axis direction, and inclined end portions 18B formed in a tapered shape (conical frustum shape) at both ends thereof. 18C and end faces 18D and 18E formed in a planar shape perpendicular to the central axis at both ends thereof.
 なお、ピン18の端部は、上記傾斜端部18B、18C、端面18D、18Eを形成する構成に限らず、例えば球面状に形成してもよい。 Note that the end of the pin 18 is not limited to the configuration in which the inclined end portions 18B and 18C and the end surfaces 18D and 18E are formed, and may be formed in a spherical shape, for example.
 第一穴16と第二穴17は、それぞれの内径がピン18の外径より所定の隙間だけ大きく形成される。これにより、ピン18が第一穴16と第二穴17に渡って摺動自在に挿入される。 The first hole 16 and the second hole 17 are formed so that each inner diameter is larger than the outer diameter of the pin 18 by a predetermined gap. Thereby, the pin 18 is slidably inserted across the first hole 16 and the second hole 17.
 スプリング19は、コイル状の金属製バネが用いられ、第二穴17の底部17Cとピン18の端面18Eとの間に圧縮して介装される。スプリング19は、ピン18を第二穴17から押し出す方向に付勢する付勢部材である。 The spring 19 is a coiled metal spring and is interposed between the bottom 17C of the second hole 17 and the end face 18E of the pin 18 by being compressed. The spring 19 is a biasing member that biases the pin 18 in a direction of pushing out the pin 18 from the second hole 17.
 なお、付勢部材は、上述した構成に限らず、他の形状の金属製バネを用いたり、例えばゴム等の弾性材を用いてもよい。 The urging member is not limited to the above-described configuration, and other shapes of metal springs or an elastic material such as rubber may be used.
 第一穴16は、円筒面状の内周面16Aと、シリンダヘッド5の接合端面5Aに開口する開口端16Bと、シリンダヘッド5の内部に形成される底部16Cと、を有する。 The first hole 16 has a cylindrical inner peripheral surface 16 </ b> A, an opening end 16 </ b> B that opens to the joining end surface 5 </ b> A of the cylinder head 5, and a bottom portion 16 </ b> C formed inside the cylinder head 5.
 第二穴17は、円筒面状の内周面17Aと、シリンダチューブ4の接合端面4Aに開口する開口端17Bと、シリンダチューブ4の内部に形成される底部17Cと、を有する。 The second hole 17 has a cylindrical inner peripheral surface 17 </ b> A, an opening end 17 </ b> B that opens to the joining end surface 4 </ b> A of the cylinder tube 4, and a bottom portion 17 </ b> C formed inside the cylinder tube 4.
 第一穴16と第二穴17は、それぞれの中心線が油圧シリンダ1の中心線Oと平行に延び、かつ中心線Oとの距離が互いに等しくなるように形成される。シリンダヘッド5がシリンダチューブ4に所定の締め付けトルクで締結された状態で、第一穴16と第二穴17が合致して同軸上に延びて、第一穴16と第二穴17の開口端が段差なく合致するようになっている。 The first hole 16 and the second hole 17 are formed such that their center lines extend in parallel with the center line O of the hydraulic cylinder 1 and the distance from the center line O is equal to each other. In a state where the cylinder head 5 is fastened to the cylinder tube 4 with a predetermined tightening torque, the first hole 16 and the second hole 17 are aligned and extend coaxially, and the open ends of the first hole 16 and the second hole 17 Are matched to each other without any steps.
 第一貫通孔21は、第一穴16と同軸上に延び、シリンダヘッド5を貫通するように形成される。第一貫通孔21は、その内周に形成される雌ねじ22と、第一穴16の底部16Cに開口する開口端21Aと、シリンダヘッド5の外側端面5Bに開口する開口端21Bと、を有する。 The first through hole 21 extends coaxially with the first hole 16 and is formed to penetrate the cylinder head 5. The first through hole 21 has a female screw 22 formed on the inner periphery thereof, an opening end 21 </ b> A that opens to the bottom 16 </ b> C of the first hole 16, and an opening end 21 </ b> B that opens to the outer end surface 5 </ b> B of the cylinder head 5. .
 図3は、シリンダヘッド5をシリンダチューブ4に組み付ける様子を示す断面図である。組み付け時には、第一貫通孔21に挿通されるネジ状の治具25が用いられる。治具25は、その外周に雄ねじ26が形成されるネジ部25Aと、ネジ部25Aの基端部に形成される頭部25Bと、中心軸に直交する平面状に形成されるネジ部25Aの先端25Cと、を有する。治具25は、図3に示すように、第一貫通孔21に挿通されてシリンダヘッド5に組み付けられた状態で、先端25Cが第一穴16の開口端16Bの近傍に位置して開口端16Bを塞ぐ長さを有する。なお、本実施の形態では治具25にネジ部25Aを設けていたが、これに限らず、ネジ部25Aを設けなくてもよい。換言すれば、治具25は、第一貫通孔21の軸方向に摺動可能な棒状のものでもよい。 FIG. 3 is a cross-sectional view showing how the cylinder head 5 is assembled to the cylinder tube 4. At the time of assembly, a screw-like jig 25 inserted into the first through hole 21 is used. The jig 25 includes a screw portion 25A in which a male screw 26 is formed on the outer periphery, a head portion 25B formed in a proximal end portion of the screw portion 25A, and a screw portion 25A formed in a planar shape perpendicular to the central axis. And a tip 25C. As shown in FIG. 3, the jig 25 is inserted into the first through hole 21 and assembled to the cylinder head 5, and the tip 25 </ b> C is positioned near the opening end 16 </ b> B of the first hole 16. It has a length for closing 16B. In the present embodiment, the screw portion 25A is provided in the jig 25. However, the present invention is not limited to this, and the screw portion 25A may not be provided. In other words, the jig 25 may be a rod-shaped member that can slide in the axial direction of the first through hole 21.
 シリンダヘッド5をシリンダチューブ4に組み付ける工程は、以下の各工程によって行われる。 The process of assembling the cylinder head 5 to the cylinder tube 4 is performed by the following processes.
 〔治具組み付け工程〕
治具25は、ネジ部25Aの雄ねじ26が第一貫通孔21の雌ねじ22に螺合し、その頭部25Bがシリンダヘッド5の外側端面5Bに当接するように、シリンダヘッド5に組み付けられる。これにより、治具25のネジ部25Aが第一穴16に挿入され、ネジ部25Aの先端25Cが第一穴16の開口端16Bの近傍に位置して開口端16Bを塞ぐ。
[Jig assembly process]
The jig 25 is assembled to the cylinder head 5 so that the male screw 26 of the screw portion 25A is screwed into the female screw 22 of the first through hole 21 and the head portion 25B contacts the outer end surface 5B of the cylinder head 5. Thereby, the screw portion 25A of the jig 25 is inserted into the first hole 16, and the tip 25C of the screw portion 25A is positioned in the vicinity of the opening end 16B of the first hole 16 to close the opening end 16B.
 〔部材締結工程〕
シリンダチューブ4の第二穴17にスプリング19とピン18を挿入した後に、シリンダヘッド5の雄ねじ11をシリンダチューブ4の雌ねじ12に螺合し、シリンダヘッド5をシリンダチューブ4に締結する。シリンダヘッド5をシリンダチューブ4にねじ込む過程で、シリンダヘッド5が1回転する毎に第一穴16と第二穴17が合致するが、治具25の先端25Cが第一穴16の開口端16Bを塞いでいるため、ピン18の第一穴16への進入が規制される。
[Component fastening process]
After inserting the spring 19 and the pin 18 into the second hole 17 of the cylinder tube 4, the male screw 11 of the cylinder head 5 is screwed into the female screw 12 of the cylinder tube 4, and the cylinder head 5 is fastened to the cylinder tube 4. In the process of screwing the cylinder head 5 into the cylinder tube 4, the first hole 16 and the second hole 17 are matched each time the cylinder head 5 rotates once, but the tip 25 </ b> C of the jig 25 is the opening end 16 </ b> B of the first hole 16. Therefore, the entry of the pin 18 into the first hole 16 is restricted.
 上記の動作について詳述する。ピン18は、スプリング19の付勢力によって第二穴17から押し出され、傾斜端部18Bが第一穴16の開口端16Bに摺接して第一穴16に進入する。端面18Dが治具25の先端25Cに当接することにより、ピン18が第一穴16へそれ以上に進入することが規制される(図3参照)。シリンダヘッド5をねじ込むトルクによって傾斜端部18Bが第一穴16の開口端16Bに摺接することにより、第一穴16に進入していたピン18の先端部が第一穴16から抜け出し、シリンダヘッド5をねじ込む動作が続けられる。このようにして、ねじ緩み止め構造15は、シリンダヘッド5が1回転する毎にシリンダヘッド5の回転を係止するディテント機構として機能する。 The above operation will be described in detail. The pin 18 is pushed out from the second hole 17 by the urging force of the spring 19, and the inclined end portion 18 </ b> B comes into sliding contact with the opening end 16 </ b> B of the first hole 16 and enters the first hole 16. When the end face 18D comes into contact with the tip 25C of the jig 25, the pin 18 is restricted from entering the first hole 16 (see FIG. 3). When the inclined end portion 18B is brought into sliding contact with the opening end 16B of the first hole 16 by the torque for screwing the cylinder head 5, the tip portion of the pin 18 that has entered the first hole 16 comes out of the first hole 16 and the cylinder head. The operation of screwing 5 is continued. In this way, the screw locking structure 15 functions as a detent mechanism that locks the rotation of the cylinder head 5 every time the cylinder head 5 rotates once.
 〔緩み止め工程〕
シリンダヘッド5を接合端面5Aがシリンダチューブ4の接合端面4Aに所定の面圧をもって当接する位置までねじ込んだ後に、治具25を第一穴16から抜き取る。続いて、所定の締め付けトルクでシリンダヘッド5をねじ込み、シリンダヘッド5をシリンダチューブ4に対して1回転させる間に、第一穴16と第二穴17を合致させる。第一穴16と第二穴17が合致するのに伴って、スプリング19の付勢力によって第二穴17から押し出されるピン18が第二穴17から第一穴16に渡って挿入される。ピン18は、その中心軸方向について中央部がシリンダヘッド5及びシリンダチューブ4の接合端面5A、4Aに対峙するように配置される(図2参照)。
[Loosening prevention process]
After the cylinder head 5 is screwed to a position where the joining end surface 5A contacts the joining end surface 4A of the cylinder tube 4 with a predetermined surface pressure, the jig 25 is removed from the first hole 16. Subsequently, the cylinder head 5 is screwed with a predetermined tightening torque, and the first hole 16 and the second hole 17 are matched while the cylinder head 5 is rotated once with respect to the cylinder tube 4. As the first hole 16 and the second hole 17 coincide with each other, the pin 18 pushed out from the second hole 17 by the biasing force of the spring 19 is inserted from the second hole 17 to the first hole 16. The pin 18 is disposed so that the center portion thereof faces the joining end surfaces 5A and 4A of the cylinder head 5 and the cylinder tube 4 in the central axis direction (see FIG. 2).
 以上のように、雄ねじ11と雌ねじ12の螺合によってシリンダヘッド5がシリンダチューブ4に締結されると、第一穴16と第二穴17が合致するのに伴って、スプリング19の付勢力によって第二穴17から押し出されるピン18が第二穴17と第一穴16に渡って挿入される。このため、ピン18によってシリンダヘッド5及びシリンダチューブ4どうしの相対回転が規制され、シリンダヘッド5をシリンダチューブ4に組み付ける工程が完了する。 As described above, when the cylinder head 5 is fastened to the cylinder tube 4 by the screwing of the male screw 11 and the female screw 12, the first hole 16 and the second hole 17 are matched with each other by the biasing force of the spring 19. A pin 18 pushed out from the second hole 17 is inserted across the second hole 17 and the first hole 16. For this reason, the relative rotation between the cylinder head 5 and the cylinder tube 4 is restricted by the pin 18, and the process of assembling the cylinder head 5 to the cylinder tube 4 is completed.
 なお、〔緩み止め工程〕は、上述した構成に限らず、以下のようにしてもよい。 Note that the [loosening prevention step] is not limited to the above-described configuration, and may be as follows.
 まず、所定の締め付けトルクでシリンダヘッド5をねじ込み、ピン18の傾斜端部18Bを第一穴16の開口端16Bに摺接させて、第一穴16と第二穴17を合致させる(図3参照)。 First, the cylinder head 5 is screwed with a predetermined tightening torque, and the inclined end portion 18B of the pin 18 is brought into sliding contact with the opening end 16B of the first hole 16 to match the first hole 16 and the second hole 17 (FIG. 3). reference).
 こうして、第一穴16と第二穴17が合致した状態で、治具25を第一穴16から抜き取る。治具25が第一穴16から抜き取られるのに伴って、スプリング19の付勢力によってピン18が治具25に追従して第二穴17から押し出され、第二穴17と第一穴16に渡って挿入される(図2参照)。 Thus, the jig 25 is extracted from the first hole 16 in a state where the first hole 16 and the second hole 17 are matched. As the jig 25 is extracted from the first hole 16, the pin 18 is pushed out of the second hole 17 by following the jig 25 by the biasing force of the spring 19, and is moved into the second hole 17 and the first hole 16. Inserted across (see FIG. 2).
 この場合には、第一穴16と第二穴17が最終的に合致する位置でシリンダヘッド5をねじ込む作業が終了する。また、治具25を第一穴16から抜き取るのに伴って、ピン18が第二穴17と第一穴16に渡って挿入され、シリンダヘッド5をシリンダチューブ4に組み付ける工程が完了する。 In this case, the operation of screwing the cylinder head 5 is completed at the position where the first hole 16 and the second hole 17 finally match. As the jig 25 is removed from the first hole 16, the pin 18 is inserted across the second hole 17 and the first hole 16, and the process of assembling the cylinder head 5 to the cylinder tube 4 is completed.
 以上のように、ねじ11、12の螺合によって結合されるシリンダヘッド5(第一部材)及びシリンダチューブ4(第二部材)どうしの相対回転を規制するねじ緩み止め構造15は、シリンダヘッド5に形成される第一穴16と、シリンダチューブ4に形成される第二穴17と、第二穴17に挿入されるピン18と、第二穴17に介装されてピン18を第二穴17から押し出す方向に付勢する付勢部材(スプリング19)と、を備え、ピン18は、シリンダヘッド5とシリンダチューブ4が合致した状態において第一穴16と第二穴17に渡って挿入されるものとした。 As described above, the screw loosening prevention structure 15 that restricts the relative rotation between the cylinder head 5 (first member) and the cylinder tube 4 (second member) coupled by screwing the screws 11 and 12 is the cylinder head 5. A first hole 16 formed in the cylinder tube 4, a second hole 17 formed in the cylinder tube 4, a pin 18 inserted into the second hole 17, and a pin 18 inserted in the second hole 17 into the second hole. The pin 18 is inserted across the first hole 16 and the second hole 17 in a state where the cylinder head 5 and the cylinder tube 4 are aligned. It was supposed to be.
 油圧シリンダ1の作動時に、シリンダヘッド5及びシリンダチューブ4どうしを相対回転させようとするトルクが加わった場合には、ピン18の外周面18Aがこれと同軸上に延びる第一穴16の内周面16Aと第二穴17の内周面17Aのそれぞれに当接して、ピン18にその中心軸と直交する成分の反力が働く。このため、ピン18が破損しない限りは、両者の相対回転を規制し、ねじ11、12の緩み止めが確実に行われる。 When torque is applied to relatively rotate the cylinder head 5 and the cylinder tube 4 during the operation of the hydraulic cylinder 1, the outer peripheral surface 18A of the pin 18 extends along the inner periphery of the first hole 16 extending coaxially therewith. A reaction force of a component perpendicular to the central axis acts on the pin 18 in contact with each of the surface 16A and the inner peripheral surface 17A of the second hole 17. For this reason, as long as the pin 18 is not damaged, the relative rotation of both is restricted, and the screws 11 and 12 are surely prevented from loosening.
 油圧シリンダ1が振動や衝撃を受ける場合にも、ピン18はスプリング19の付勢力によって第二穴17と第一穴16に渡って挿入された位置に保持され、ねじの緩み止めが行われる。 Even when the hydraulic cylinder 1 is subjected to vibration or impact, the pin 18 is held at the position inserted across the second hole 17 and the first hole 16 by the urging force of the spring 19, and the screw is prevented from loosening.
 さらに、ねじ緩み止め構造15には、第一穴16に連通する第一貫通孔21がシリンダヘッド5に形成され、外部から第一貫通孔21を挿通して第一穴16内に差し込まれる治具25が用いられるものとした。シリンダヘッド5(第一部材)をねじ込む際には、外部から治具が第一貫通孔21を挿通して第一穴16内に差し込まれる。治具25は、先端25Cにて第一穴16の開口端16Bを塞いで、付勢部材(スプリング19)の付勢力によって第二穴17から押し出されるピン18の第一穴16への進入を規制する。 Further, in the screw locking structure 15, a first through hole 21 that communicates with the first hole 16 is formed in the cylinder head 5, and the first through hole 21 is inserted from the outside into the first hole 16. Tool 25 was used. When the cylinder head 5 (first member) is screwed, a jig is inserted from the outside into the first hole 16 through the first through hole 21. The jig 25 closes the opening end 16B of the first hole 16 with the tip 25C, and allows the pin 18 pushed out from the second hole 17 by the biasing force of the biasing member (spring 19) to enter the first hole 16. regulate.
 シリンダヘッド5及びシリンダチューブ4の締結を解除する場合には、治具25を第一貫通孔21に螺合して第一穴16に挿入し、ピン18をスプリング19の付勢力に抗して第一穴16から押し出す(図3参照)。こうして、ピン18が第一穴16から抜き取られることにより、シリンダヘッド5及びシリンダチューブ4どうしの相対回転が可能となり、両者の締結を解除できる。したがって、シリンダチューブ4に対するシリンダヘッド5の脱着を繰り返して行うことが可能となる。 When releasing the fastening of the cylinder head 5 and the cylinder tube 4, the jig 25 is screwed into the first through hole 21 and inserted into the first hole 16, and the pin 18 is resisted against the biasing force of the spring 19. It extrudes from the 1st hole 16 (refer FIG. 3). In this way, when the pin 18 is extracted from the first hole 16, the cylinder head 5 and the cylinder tube 4 can be rotated relative to each other, and the fastening of both can be released. Therefore, the cylinder head 5 can be repeatedly attached to and detached from the cylinder tube 4.
 以上、油圧シリンダ1において、シリンダチューブ4にシリンダヘッド5を結合する構造について説明した。次に、ピストンロッド7にピストン6を結合する構造について説明する。 As above, the structure in which the cylinder head 5 is coupled to the cylinder tube 4 in the hydraulic cylinder 1 has been described. Next, a structure for coupling the piston 6 to the piston rod 7 will be described.
 図1に示すように、ピストンロッド7の先端部にピストン6を締結するナット31が設けられる。ピストン6及びナット31は、円筒状に形成される。ピストン6は、ピストンロッド7の先端軸部7Aに嵌合される。ピストンロッド7の先端軸部7Aの外周には雄ねじ32が形成される。ナット31の内周には雌ねじ33が形成される。雌ねじ33に雄ねじ32が螺合することにより、ピストンロッド7にピストン6がナット31を介して締結される。 As shown in FIG. 1, a nut 31 for fastening the piston 6 is provided at the tip of the piston rod 7. The piston 6 and the nut 31 are formed in a cylindrical shape. The piston 6 is fitted to the tip shaft portion 7 </ b> A of the piston rod 7. A male screw 32 is formed on the outer periphery of the distal end shaft portion 7A of the piston rod 7. A female thread 33 is formed on the inner periphery of the nut 31. When the male screw 32 is engaged with the female screw 33, the piston 6 is fastened to the piston rod 7 via the nut 31.
 ピストンロッド7、ナット31が、ねじ32、33を介して螺合する第一、第二部材である。ピストンロッド7及びナット31の間には、両者の相対回転を規制するねじ緩み止め構造35が設けられる。 Piston rod 7 and nut 31 are first and second members that are screwed together via screws 32 and 33. Between the piston rod 7 and the nut 31, a screw loosening prevention structure 35 that restricts the relative rotation of both is provided.
 図4にも示すように、ねじ緩み止め構造35は、ナット31に形成される第一穴36及び第一貫通孔41と、ピストンロッド7に形成される第二穴37と、第一穴36と第二穴37に渡って挿入されるピン38と、第二穴37に介装されてピン38を第二穴37から第一穴36へと押し出す方向に付勢するスプリング39と、を備える。スプリング39の付勢力によってピン38が第二穴37と第一穴36に渡って挿入されることにより、ピストンロッド7及びナット31の相対回転が規制される。 As shown in FIG. 4, the screw locking structure 35 includes a first hole 36 and a first through hole 41 formed in the nut 31, a second hole 37 formed in the piston rod 7, and a first hole 36. And a pin 38 inserted across the second hole 37, and a spring 39 that is interposed in the second hole 37 and biases the pin 38 in a direction of pushing the pin 38 from the second hole 37 to the first hole 36. . When the pin 38 is inserted across the second hole 37 and the first hole 36 by the biasing force of the spring 39, the relative rotation of the piston rod 7 and the nut 31 is restricted.
 第一穴36と第二穴37は、それぞれの中心線が油圧シリンダ1の中心線Oと直交する方向に延びるように形成され、ナット31がピストンロッド7に締結された状態で、互いに合致して同軸上に延びるように配置される。なお、本実施の形態では、第一穴36と第二穴37の中心線は油圧シリンダ1の中心線Oと交差するように設けられていたが、この構成に限らない。第一穴36と第二穴37の中心線は油圧シリンダ1の中心線Oと交差しないように設けてもよい。 The first hole 36 and the second hole 37 are formed so that their center lines extend in a direction perpendicular to the center line O of the hydraulic cylinder 1, and match each other with the nut 31 fastened to the piston rod 7. Are arranged so as to extend on the same axis. In the present embodiment, the center lines of the first hole 36 and the second hole 37 are provided so as to intersect with the center line O of the hydraulic cylinder 1, but the present invention is not limited to this configuration. The center lines of the first hole 36 and the second hole 37 may be provided so as not to intersect with the center line O of the hydraulic cylinder 1.
 第一貫通孔41は、第一穴36と同軸上に延び、ナット31を貫通するように形成される。第一貫通孔41は、その内周に治具(図示省略)が螺合する雌ねじ42が形成される。 The first through hole 41 extends coaxially with the first hole 36 and is formed so as to penetrate the nut 31. The first through-hole 41 is formed with an internal thread 42 into which a jig (not shown) is screwed.
 ピストン6をナット31を介してピストンロッド7に組み付ける工程は、以下の各工程によって行われる。 The process of assembling the piston 6 to the piston rod 7 via the nut 31 is performed by the following processes.
 〔部材締結工程〕
ピストンロッド7の第二穴37にスプリング39とピン38を挿入した後に、ナット31の雄ねじ33をピストンロッド7の雌ねじ32に螺合し、ナット31をピストンロッド7に締結する。ナット31をピストンロッド7にねじ込む過程では、第一穴36と第二穴37が合致しないので、ナット31に第一穴36の開口端16Bを塞ぐ治具を組み付ける必要がない。
[Component fastening process]
After inserting the spring 39 and the pin 38 into the second hole 37 of the piston rod 7, the male screw 33 of the nut 31 is screwed into the female screw 32 of the piston rod 7, and the nut 31 is fastened to the piston rod 7. In the process of screwing the nut 31 into the piston rod 7, the first hole 36 and the second hole 37 do not match, so it is not necessary to assemble a jig for closing the open end 16 </ b> B of the first hole 36 to the nut 31.
 〔緩み止め工程〕
所定の締め付けトルクでナット31をねじ込み、ピン38の先端部を第一穴36の開口端に摺接させ、第一穴36と第二穴37を合致させる。こうして、第一穴36と第二穴37が合致するのに伴って、スプリング39の付勢力によってピン38が第二穴37から押し出され、第二穴37から第一穴36に渡って挿入される。ピン38の中程がナット31及びピストンロッド7の嵌合部に配置されている。
[Loosening prevention process]
The nut 31 is screwed with a predetermined tightening torque, the tip of the pin 38 is brought into sliding contact with the open end of the first hole 36, and the first hole 36 and the second hole 37 are matched. Thus, as the first hole 36 and the second hole 37 are matched, the pin 38 is pushed out of the second hole 37 by the biasing force of the spring 39 and inserted from the second hole 37 to the first hole 36. The The middle of the pin 38 is disposed at the fitting portion between the nut 31 and the piston rod 7.
 以上のように、ねじ緩み止め構造35は、第一穴36がナット31(第一部材)の内周に開口し、第二穴37がピストンロッド7(第二部材)の外周に開口し、ナット31がピストンロッド7にねじ込まれるのに伴って第一穴36が第二穴37に合致するものとした。このため、ナット31をピストンロッド7にねじ込む際に、ナット31の第一貫通孔41に治具を組み付ける必要がなく、ピン38がナット31及びピストンロッド7どうしの相対回転を規制することにより、ピストン6をピストンロッド7に組み付ける工程が完了する。 As described above, in the screw locking structure 35, the first hole 36 opens to the inner periphery of the nut 31 (first member), the second hole 37 opens to the outer periphery of the piston rod 7 (second member), It is assumed that the first hole 36 matches the second hole 37 as the nut 31 is screwed into the piston rod 7. For this reason, when screwing the nut 31 into the piston rod 7, there is no need to assemble a jig in the first through hole 41 of the nut 31, and the pin 38 restricts the relative rotation between the nut 31 and the piston rod 7. The process of assembling the piston 6 to the piston rod 7 is completed.
 油圧シリンダ1の作動時に、ナット31及びピストンロッド7どうしを相対回転させようとするトルクが加わった場合には、ピン38の外周面がピン38と同軸上に延びる第一穴36の内周面と第二穴37の内周面のそれぞれに当接して、ピン38にその中心軸と直交する成分の反力が働く。ピン38が破損しない限りは、両者の相対回転を規制し、ねじ33、32の緩み止めが確実に行われる。 When a torque is applied to rotate the nut 31 and the piston rod 7 relative to each other during operation of the hydraulic cylinder 1, the inner peripheral surface of the first hole 36 in which the outer peripheral surface of the pin 38 extends coaxially with the pin 38. The pin 38 abuts on the inner peripheral surface of the second hole 37, and a reaction force of a component perpendicular to the central axis acts on the pin 38. As long as the pin 38 is not damaged, the relative rotation of both is restricted, and the screws 33 and 32 are reliably prevented from loosening.
 油圧シリンダ1が振動や衝撃を受ける場合にも、ピン38はスプリング39の付勢力によって第二穴37と第一穴36に渡って挿入された位置に保持され、ねじ33、32の緩み止めが行われる。 Even when the hydraulic cylinder 1 is subjected to vibration or impact, the pin 38 is held at the position inserted across the second hole 37 and the first hole 36 by the biasing force of the spring 39, and the screws 33 and 32 are prevented from loosening. Done.
 ねじ緩み止め構造35は、外部から第一穴36内に差し込まれる治具が挿通する第一貫通孔41を備える。第一貫通孔41は、第一穴36に連通してナット31に形成される。ナット31及びピストンロッド7の締結を解除する場合には、ネジ状の治具(図示省略)を第一貫通孔41に螺合して第一穴36に挿入し、ピン38をスプリング39の付勢力に抗して第一穴36から押し出す。 The screw locking structure 35 includes a first through hole 41 through which a jig inserted from the outside into the first hole 36 is inserted. The first through hole 41 communicates with the first hole 36 and is formed in the nut 31. When releasing the fastening of the nut 31 and the piston rod 7, a screw-like jig (not shown) is screwed into the first through hole 41 and inserted into the first hole 36, and the pin 38 is attached to the spring 39. Push out from the first hole 36 against the force.
 こうして、ピン38が第一穴36から抜き取られることにより、ナット31及びピストンロッド7どうしの相対回転が可能となり、両者の締結を解除できる。したがって、ピストンロッド7に対するナット31の脱着を繰り返して行うことが可能となる。治具は、第一貫通孔41に挿通されてナット31に組み付けられた状態で、その先端が第一穴36の開口端の近傍に位置して開口端を塞ぐ長さを有する。なお、本実施の形態では治具にネジ部を設けていた。これに限らず、第一貫通孔41の軸方向に摺動可能な棒状のものでもよい。また、上述した構成に限らず、ナット31及びピストンロッド7の締結を解除する必要がない場合には、第一貫通孔41を設けなくてもよい。 Thus, when the pin 38 is extracted from the first hole 36, the nut 31 and the piston rod 7 can be rotated relative to each other, and the fastening of both can be released. Accordingly, the nut 31 can be repeatedly attached to and detached from the piston rod 7. The jig is inserted in the first through hole 41 and assembled to the nut 31, and the tip of the jig is located near the opening end of the first hole 36 and has a length for closing the opening end. In the present embodiment, the jig is provided with a screw portion. Not only this but the rod-shaped thing which can slide in the axial direction of the 1st through-hole 41 may be sufficient. Moreover, not only the structure mentioned above but the 1st through-hole 41 does not need to be provided when it is not necessary to cancel | release the fastening of the nut 31 and the piston rod 7. FIG.
 以上、図1~4に示す第1実施形態では、ねじ11、12を介して螺合する第一、第二部材(シリンダヘッド5、シリンダチューブ4)に渡ってピン18が挿入されるねじ緩み止め構造15と、ねじ32、33を介して螺合する第一、第二部材(ナット31、ピストンロッド7)に渡ってピン38が挿入されるねじ緩み止め構造35について説明した。 As described above, in the first embodiment shown in FIGS. 1 to 4, the screw is loosened in which the pin 18 is inserted across the first and second members (the cylinder head 5 and the cylinder tube 4) that are screwed together via the screws 11 and 12. The screw loosening prevention structure 35 in which the pin 38 is inserted across the first and second members (the nut 31 and the piston rod 7) that are screwed together with the fastening structure 15 and the screws 32 and 33 has been described.
 本実施の形態では、ねじの螺合によって第一部材(シリンダヘッド5、ナット31)及び第二部材(シリンダチューブ4、ピストンロッド7)が締結されると、第一穴16、36と第二穴17、37を合致させた状態でスプリング19、39の付勢力によって第二穴17、37から押し出されるピン18、38が第二穴17、37と第一穴16、36に渡って挿入される。ピン18、38によって第一部材(シリンダヘッド5、ナット31)及び第二部材(シリンダチューブ4、ピストンロッド7)どうしの相対回転が規制される。 In the present embodiment, when the first member (cylinder head 5, nut 31) and the second member (cylinder tube 4, piston rod 7) are fastened by screwing, the first holes 16, 36 and the second The pins 18 and 38 pushed out from the second holes 17 and 37 by the urging force of the springs 19 and 39 in a state where the holes 17 and 37 are aligned are inserted across the second holes 17 and 37 and the first holes 16 and 36. The The relative rotation of the first member (cylinder head 5 and nut 31) and the second member (cylinder tube 4 and piston rod 7) is restricted by the pins 18 and 38.
 第一部材(シリンダヘッド5、ナット31)及び第二部材(シリンダチューブ4、ピストンロッド7)どうしを相対回転させようとするトルクが加わった場合には、ピン18、38の外周面がピン18、38と同軸上に延びる第一穴16、36の内周面と第二穴17、37の内周面のそれぞれに当接する。ピン18、38が破損しない限りは、ピン18、38が両者の相対回転を規制し、ねじの緩み止めが確実に行われる。 When torque is applied to relatively rotate the first member (cylinder head 5 and nut 31) and the second member (cylinder tube 4 and piston rod 7), the outer peripheral surfaces of the pins 18 and 38 are pin 18 , 38 abuts on the inner peripheral surface of the first holes 16, 36 extending coaxially with the inner peripheral surface of the second holes 17, 37. As long as the pins 18 and 38 are not damaged, the pins 18 and 38 restrict relative rotation of the two, and the screws are surely prevented from loosening.
 振動や衝撃を受ける場合にも、ピン18、38はスプリング19、39の付勢力によって第二穴17、37と第一穴16、36に渡って挿入された位置に保持され、ねじの緩み止めが行われる。 Even when subjected to vibration or impact, the pins 18 and 38 are held at the positions where they are inserted across the second holes 17 and 37 and the first holes 16 and 36 by the urging force of the springs 19 and 39, thereby preventing the screws from loosening. Is done.
 (第2実施形態)
 以下、図5を参照して、本発明の第2実施形態を説明する。第2実施形態に係るねじ緩み止め構造60では、ねじ51、52を介して螺合する第一、第三部材(ボルト55、本体53)の間に第二部材(被締結部材54)が挟持され、第一、第二部材(ボルト55、被締結部材54)の間にピン63が介装される。
(Second Embodiment)
Hereinafter, a second embodiment of the present invention will be described with reference to FIG. In the screw locking structure 60 according to the second embodiment, the second member (fastened member 54) is sandwiched between the first and third members (bolts 55 and the main body 53) that are screwed together via the screws 51 and 52. The pin 63 is interposed between the first and second members (the bolt 55 and the fastened member 54).
 本体53に被締結部材54がボルト55を介して締結される。被締結部材54には、ボルト55が挿通するボルト孔56が形成される。ボルト55のネジ部55Bには雄ねじ51が形成される一方、本体53のネジ穴53Aには雌ねじ52が形成される。 A fastened member 54 is fastened to the main body 53 via a bolt 55. A bolt hole 56 through which the bolt 55 is inserted is formed in the fastened member 54. A male screw 51 is formed in the threaded portion 55B of the bolt 55, while a female screw 52 is formed in the screw hole 53A of the main body 53.
 ボルト55及び被締結部材54の間には、両者の相対回転を規制するねじ緩み止め構造60が設けられる。 Between the bolt 55 and the fastened member 54, a screw loosening prevention structure 60 that restricts the relative rotation of both is provided.
 ねじ緩み止め構造60は、ボルト55の頭部55Aに形成される第一穴57及び第一貫通孔58と、被締結部材54に形成される第二穴59と、第一穴57と第二穴59に渡って挿入されるピン63と、第二穴59に介装されてピン63を第二穴59から第一穴57へと押し出す方向に付勢するスプリング64と、を備える。スプリング64の付勢力によってピン63が第二穴59と第一穴57に渡って挿入されることにより、被締結部材54及びボルト55の相対回転が規制される。 The screw locking structure 60 includes a first hole 57 and a first through hole 58 formed in the head portion 55A of the bolt 55, a second hole 59 formed in the fastened member 54, a first hole 57, and a second hole. A pin 63 inserted over the hole 59; and a spring 64 interposed in the second hole 59 and biasing the pin 63 in a direction of pushing the pin 63 from the second hole 59 to the first hole 57. When the pin 63 is inserted across the second hole 59 and the first hole 57 by the biasing force of the spring 64, the relative rotation of the fastened member 54 and the bolt 55 is restricted.
 第一穴57と第二穴59は、ボルト55の中心軸と平行に延びるように形成され、ボルト55を介して被締結部材54が締結された状態で、互いに合致して同軸上に延びるように配置される。 The first hole 57 and the second hole 59 are formed so as to extend in parallel with the central axis of the bolt 55, so that the fastened member 54 is fastened via the bolt 55 so as to coincide with each other and extend coaxially. Placed in.
 第一貫通孔58は、第一穴57と同軸上に延び、ボルト55の頭部55Aを貫通するように形成される。第一貫通孔58は、その内周にネジ状の治具(図示省略)が螺合する雌ねじ61が形成される。治具は、第一貫通孔58に挿通されてボルト55に組み付けられた状態で、その先端が第一穴57の開口端の近傍に位置して開口端を塞ぐ長さを有する。なお、本実施の形態ではネジ状の治具を用いたが、これに限らず、例えば第一貫通孔の軸方向に摺動可能な棒状のものを用いてもよい。 The first through hole 58 extends coaxially with the first hole 57 and is formed to penetrate the head portion 55A of the bolt 55. The first through hole 58 is formed with a female screw 61 on the inner periphery thereof, into which a screw-like jig (not shown) is screwed. The jig is inserted into the first through hole 58 and assembled to the bolt 55, and the tip thereof is positioned in the vicinity of the opening end of the first hole 57 and has a length for closing the opening end. In addition, although the screw-shaped jig | tool was used in this Embodiment, it is not restricted to this, For example, you may use the rod-shaped thing which can slide to the axial direction of a 1st through-hole.
 被締結部材54をボルト55を介して本体53に組み付ける工程は、以下の各工程によって行われる。 The process of assembling the fastened member 54 to the main body 53 via the bolt 55 is performed by the following processes.
 〔治具組み付け工程〕
治具(図示省略)を第一貫通孔58に挿通し、治具の先端によって第一穴57の開口端を塞ぐ。
[Jig assembly process]
A jig (not shown) is inserted through the first through hole 58, and the opening end of the first hole 57 is closed by the tip of the jig.
 〔部材締結工程〕
被締結部材54の第二穴59にスプリング64とピン63を挿入した後に、ボルト55の雄ねじ51を本体53の雌ねじ52に螺合し、ボルト55を介して被締結部材54を本体53に締結する。
[Component fastening process]
After inserting the spring 64 and the pin 63 into the second hole 59 of the fastened member 54, the male screw 51 of the bolt 55 is screwed into the female screw 52 of the main body 53, and the fastened member 54 is fastened to the main body 53 via the bolt 55. To do.
 〔緩み止め工程〕
ボルト55をその頭部55Aが被締結部材54に所定の面圧をもって当接する位置までねじ込んだ後に、治具を第一穴57から抜き取る。続いて、所定の締め付けトルクでボルト55をねじ込み、ボルト55を被締結部材54に対して1回転させる間に、第一穴57と第二穴59を合致させる。第一穴57と第二穴59が合致するのに伴って、スプリング64の付勢力によって第二穴59から押し出されるピン63が第二穴59から第一穴57に渡って挿入される。ピン63によって被締結部材54及びボルト55どうしの相対回転が規制されることにより、ボルト55の緩み止めが行われる。
[Loosening prevention process]
After the bolt 55 is screwed to a position where the head portion 55 </ b> A contacts the fastened member 54 with a predetermined surface pressure, the jig is removed from the first hole 57. Subsequently, the bolt 55 is screwed with a predetermined tightening torque, and the first hole 57 and the second hole 59 are matched while the bolt 55 is rotated once with respect to the fastening member 54. As the first hole 57 and the second hole 59 match, the pin 63 pushed out from the second hole 59 by the urging force of the spring 64 is inserted from the second hole 59 to the first hole 57. By restricting relative rotation between the fastened member 54 and the bolt 55 by the pin 63, the bolt 55 is prevented from loosening.
 なお、〔緩み止め工程〕は、上述した構成に限らず、第一穴57と第二穴59が合致した状態で、治具を第一穴57から抜き取るようにしてもよい。 The [loosening prevention step] is not limited to the above-described configuration, and the jig may be extracted from the first hole 57 in a state where the first hole 57 and the second hole 59 are matched.
 ボルト55による締結を解除する場合には、ネジ状の治具を第一貫通孔58に螺合して第一穴57に挿入し、ピン63をスプリング64の付勢力に抗して第一穴57から押し出す。したがって、ボルト55の脱着を繰り返して行うことが可能となる。 When releasing the fastening with the bolt 55, a screw-like jig is screwed into the first through hole 58 and inserted into the first hole 57, and the pin 63 is resisted against the biasing force of the spring 64 to the first hole. Extrude from 57. Therefore, the bolt 55 can be repeatedly attached and detached.
 (第3実施形態)
 以下、図6を参照して、本発明の第3実施形態を説明する。第3実施形態に係るねじ緩み止め構造70では、ねじ51、52を介して螺合する第一、第二部材(ボルト55、本体53)の間に第三部材(被締結部材54)が挟持され、第一、第二、第三部材(ボルト55、本体53、被締結部材54)に渡ってピン73が挿入される。上記第2実施形態と同一の構成には同一の符号を付して説明を省略する。なお、上記第2実施形態では、第一部材をボルト55とし、第二部材を被締結部材54とし、第三部材を本体53とした。これに対して、本第3実施形態では、第一部材をボルト55とし、第二部材を本体53とし、第三部材を被締結部材54とする。
(Third embodiment)
The third embodiment of the present invention will be described below with reference to FIG. In the screw loosening prevention structure 70 according to the third embodiment, the third member (fastened member 54) is sandwiched between the first and second members (bolts 55 and the main body 53) that are screwed together via the screws 51 and 52. Then, the pin 73 is inserted across the first, second, and third members (the bolt 55, the main body 53, and the fastened member 54). The same components as those in the second embodiment are denoted by the same reference numerals and description thereof is omitted. In the second embodiment, the first member is the bolt 55, the second member is the fastened member 54, and the third member is the main body 53. In contrast, in the third embodiment, the first member is the bolt 55, the second member is the main body 53, and the third member is the fastened member 54.
 ボルト55、被締結部材54及び本体53の間には、それぞれの相対回転を規制するねじ緩み止め構造70が設けられる。 Between the bolt 55, the fastened member 54, and the main body 53, a screw loosening prevention structure 70 that restricts relative rotation of each is provided.
 ねじ緩み止め構造70は、ボルト55の頭部55Aに形成される第一穴57及び第一貫通孔58と、被締結部材54に形成される第三穴79と、本体53に形成される第二穴78と、第一穴57と第三穴79と第二穴78に渡って挿入されるピン73と、第二穴78に介装されてピン73を第二穴78から押し出す方向に付勢するスプリング64と、を備える。スプリング64の付勢力によってピン73が第三穴79と第一穴57に渡って挿入されることにより、被締結部材54及びボルト55の相対回転が規制されるとともに、ピン73が第二穴78と第三穴79に渡って挿入されることにより、本体53及び被締結部材54の相対回転が規制される。 The screw locking structure 70 includes a first hole 57 and a first through hole 58 formed in the head portion 55 </ b> A of the bolt 55, a third hole 79 formed in the fastened member 54, and a first hole formed in the main body 53. Two holes 78, a first hole 57, a third hole 79, a pin 73 inserted across the second hole 78, and a pin 73 inserted in the second hole 78 in a direction to push the pin 73 out of the second hole 78. And a spring 64 to be energized. When the pin 73 is inserted across the third hole 79 and the first hole 57 by the biasing force of the spring 64, the relative rotation of the fastened member 54 and the bolt 55 is restricted, and the pin 73 is inserted into the second hole 78. As a result, the relative rotation of the main body 53 and the fastened member 54 is restricted.
 第一穴57と第三穴79と第二穴78は、ボルト55の中心軸と平行に延びるように形成され、ボルト55を介して被締結部材54が締結された状態で、互いに合致して同軸上に延びるように配置される。 The first hole 57, the third hole 79, and the second hole 78 are formed so as to extend in parallel with the central axis of the bolt 55, and match each other in a state where the fastened member 54 is fastened via the bolt 55. It arrange | positions so that it may extend on the same axis.
 被締結部材54をボルト55を介して本体53に組み付ける工程は、以下の各工程によって行われる。 The process of assembling the fastened member 54 to the main body 53 via the bolt 55 is performed by the following processes.
 〔治具組み付け工程〕
治具(図示省略)を第一貫通孔58に挿通し、治具の先端によって第一穴57の開口端を塞ぐ。
[Jig assembly process]
A jig (not shown) is inserted through the first through hole 58, and the opening end of the first hole 57 is closed by the tip of the jig.
 〔部材締結工程〕
 本体53の第二穴78にスプリング64を介装するとともに、本体53の第二穴78と被締結部材54の第三穴79に渡ってピン73を挿入した後に、ボルト55の雄ねじ51を本体53の雌ねじ52に螺合し、ボルト55をねじ込む。
[Component fastening process]
The spring 64 is interposed in the second hole 78 of the main body 53, and the pin 73 is inserted across the second hole 78 of the main body 53 and the third hole 79 of the fastened member 54, and then the male screw 51 of the bolt 55 is inserted into the main body 51. The bolt 55 is screwed into the female screw 52 of 53.
 〔緩み止め工程〕
 ボルト55をその頭部55Aが被締結部材54に所定の面圧をもって当接する位置までねじ込んだ後に、治具を第一穴57から抜き取る。続いて、所定の締め付けトルクでボルト55をねじ込み、ボルト55を被締結部材54に対して1回転させる間に、第一穴57を第三穴79及び第二穴78に合致させる。これらが合致するのに伴って、スプリング64の付勢力によって第三穴79から押し出されるピン73が第三穴79と第一穴57に渡って挿入される。ピン73によって本体53と被締結部材54とボルト55の相対回転が規制されることにより、ボルト55の緩み止めが行われるとともに、被締結部材54の位置決めが行われる。
[Loosening prevention process]
After the bolt 55 is screwed to a position where the head portion 55 </ b> A contacts the fastened member 54 with a predetermined surface pressure, the jig is removed from the first hole 57. Subsequently, the bolt 55 is screwed with a predetermined tightening torque, and the first hole 57 is aligned with the third hole 79 and the second hole 78 while the bolt 55 is rotated once with respect to the fastened member 54. As these match, the pin 73 pushed out from the third hole 79 by the biasing force of the spring 64 is inserted across the third hole 79 and the first hole 57. The relative rotation of the main body 53, the fastened member 54, and the bolt 55 is restricted by the pin 73, whereby the bolt 55 is prevented from loosening and the fastened member 54 is positioned.
 なお、〔緩み止め工程〕は、上述した構成に限らず、第一穴57を第三穴79及び第二穴78と合致させた状態で、治具を第一穴57から抜き取るようにしてもよい。 The [loosening prevention step] is not limited to the above-described configuration, and the jig may be removed from the first hole 57 in a state where the first hole 57 is aligned with the third hole 79 and the second hole 78. Good.
 ボルト55による締結を解除する場合には、ネジ状の治具を第一貫通孔58に螺合して第一穴57に挿入し、ピン73をスプリング64の付勢力に抗して第一穴57から押し出す。これにより、ボルト55の脱着を繰り返して行うことが可能となる。 When releasing the fastening with the bolt 55, a screw-like jig is screwed into the first through hole 58 and inserted into the first hole 57, and the pin 73 is resisted against the biasing force of the spring 64 in the first hole. Extrude from 57. As a result, the bolt 55 can be repeatedly attached and detached.
 以上のように、第3実施形態のねじ緩み止め構造70では、ボルト55(第一部材)と本体53(第二部材)の間に介装される被締結部材54(第三部材)を備え、被締結部材54(第三部材)にピン73が挿通する第三穴79が形成されるため、ねじ51、52を介して螺合するボルト55、本体53の相対回転を規制して、ボルト55の緩み止めをするとともに、被締結部材54の位置決めをすることができる。 As described above, the screw locking structure 70 of the third embodiment includes the fastened member 54 (third member) interposed between the bolt 55 (first member) and the main body 53 (second member). Since the third hole 79 through which the pin 73 is inserted is formed in the fastened member 54 (third member), the relative rotation of the bolt 55 and the main body 53 that are screwed through the screws 51 and 52 is restricted, and the bolt The locking member 54 can be positioned and the fastening member 54 can be positioned.
 (第4実施形態)
 以下、図7を参照して、本発明の第4実施形態を説明する。第4実施形態に係るねじ緩み止め構造80では、ねじ51、52を介して螺合する第二、第一部材(ボルト55、本体53)の間に第三部材(被締結部材54)が挟持され、第二、第三部材(ボルト55、被締結部材54)に渡ってピン84が挿入される。前記第2実施形態と同一の構成には同一の符号を付して説明を省略する。なお、前記第2実施形態では、第一部材をボルト55とし、第二部材を被締結部材54とし、第三部材を本体53とした。これに対して、本第4実施形態では、第一部材を本体53とし、第二部材をボルト55とし、第三部材を被締結部材54とする。
(Fourth embodiment)
Hereinafter, a fourth embodiment of the present invention will be described with reference to FIG. In the screw locking structure 80 according to the fourth embodiment, the third member (fastened member 54) is sandwiched between the second and first members (bolts 55 and the main body 53) that are screwed together via the screws 51 and 52. Then, the pin 84 is inserted across the second and third members (the bolt 55 and the fastened member 54). The same components as those in the second embodiment are denoted by the same reference numerals and description thereof is omitted. In the second embodiment, the first member is the bolt 55, the second member is the fastening member 54, and the third member is the main body 53. In contrast, in the fourth embodiment, the first member is the main body 53, the second member is the bolt 55, and the third member is the fastened member 54.
 ボルト55及び被締結部材54の間には、両者の相対回転を規制するねじ緩み止め構造80が設けられる。 Between the bolt 55 and the fastened member 54, a screw loosening prevention structure 80 that restricts the relative rotation of both is provided.
 ねじ緩み止め構造80は、ボルト55の頭部55Aに形成される第二穴82及び第二貫通孔83と、被締結部材54に形成される第一穴81と、第二穴82と第一穴81に渡って挿入されるピン84と、第二穴82に介装されてピン84を第二穴82から第一穴81へと押し出す方向に付勢するスプリング85と、を備える。スプリング85の付勢力によってピン84が第二穴82と第一穴81に渡って挿入されることにより、ボルト55及び被締結部材54の相対回転が規制される。 The screw locking structure 80 includes a second hole 82 and a second through hole 83 formed in the head portion 55A of the bolt 55, a first hole 81 formed in the fastened member 54, a second hole 82, and a first hole. A pin 84 inserted across the hole 81, and a spring 85 interposed in the second hole 82 and biasing the pin 84 in a direction of pushing the pin 84 from the second hole 82 to the first hole 81. When the pin 84 is inserted across the second hole 82 and the first hole 81 by the biasing force of the spring 85, the relative rotation of the bolt 55 and the fastened member 54 is restricted.
 第二穴82と第一穴81は、ボルト55の中心軸と平行に延びるように形成され、ボルト55を介して被締結部材54が締結された状態で、互いに合致して同軸上に延びるように配置される。 The second hole 82 and the first hole 81 are formed so as to extend parallel to the central axis of the bolt 55, so that the fastened member 54 is fastened via the bolt 55 so as to coincide with each other and extend coaxially. Placed in.
 第二貫通孔83は、第二穴82と同軸上に延び、ボルト55の頭部55Aを貫通するように形成される。第二貫通孔83に棒状の治具(図示省略)が差し込まれるようになっている。 The second through hole 83 extends coaxially with the second hole 82 and is formed so as to penetrate the head portion 55A of the bolt 55. A rod-shaped jig (not shown) is inserted into the second through hole 83.
 ピン84は、その端面に開口するネジ穴86が形成される。ネジ穴86に治具の先端に形成されるネジ(図示省略)が螺合するようになっている。治具は、第二貫通孔83に挿通されてボルト55に組み付けられた状態で、その先端がピン84に係合する長さを有する。 The pin 84 is formed with a screw hole 86 that opens at an end surface thereof. A screw (not shown) formed at the tip of the jig is screwed into the screw hole 86. The jig has a length such that the tip of the jig is engaged with the pin 84 while being inserted into the second through hole 83 and assembled to the bolt 55.
 被締結部材54をボルト55を介して本体53に組み付ける工程は、以下の各工程によって行われる。 The process of assembling the fastened member 54 to the main body 53 via the bolt 55 is performed by the following processes.
 〔治具組み付け工程〕
 ボルト55の第二穴82にスプリング85とピン84を挿入した後に、治具が第二貫通孔83及び第二穴82に差し込まれ、治具の先端のネジをピン84のネジ穴86に螺合する。こうしてピン84に連結した治具を引き出すことにより、ピン84が第二穴82内に引き込まれた状態に保持される。
[Jig assembly process]
After inserting the spring 85 and the pin 84 into the second hole 82 of the bolt 55, the jig is inserted into the second through hole 83 and the second hole 82, and the screw at the tip of the jig is screwed into the screw hole 86 of the pin 84. Match. By pulling out the jig connected to the pin 84 in this way, the pin 84 is held in a state of being pulled into the second hole 82.
 〔部材締結工程〕
ボルト55の雄ねじ51を本体53の雌ねじ52に螺合し、ボルト55を介して被締結部材54を本体53に締結する。
[Component fastening process]
The male screw 51 of the bolt 55 is screwed into the female screw 52 of the main body 53, and the fastened member 54 is fastened to the main body 53 via the bolt 55.
 〔緩み止め工程〕
 ボルト55を頭部55Aが被締結部材54に所定の面圧をもって当接する位置までねじ込んだ後に、治具をピン84から取り外して第二穴82から抜き取る。続いて、所定の締め付けトルクでボルト55をねじ込み、ボルト55を被締結部材54に対して1回転させる間に、第二穴82と第一穴81を合致させる。第二穴82と第一穴81が合致するのに伴って、スプリング85の付勢力によって第二穴82から押し出されるピン84が第二穴82から第一穴81に渡って挿入される。ピン84によって被締結部材54及びボルト55どうしの相対回転が規制されることにより、ボルト55の緩み止めが行われる。
[Loosening prevention process]
After the bolt 55 is screwed to a position where the head portion 55 </ b> A contacts the fastened member 54 with a predetermined surface pressure, the jig is removed from the pin 84 and removed from the second hole 82. Subsequently, the bolt 55 is screwed with a predetermined tightening torque, and the second hole 82 and the first hole 81 are matched while the bolt 55 is rotated once with respect to the fastened member 54. As the second hole 82 and the first hole 81 match, the pin 84 pushed out from the second hole 82 by the urging force of the spring 85 is inserted from the second hole 82 to the first hole 81. The relative rotation between the fastened member 54 and the bolt 55 is restricted by the pin 84, so that the bolt 55 is prevented from loosening.
 なお、〔緩み止め工程〕は、上述した構成に限らず、第二穴82と第一穴81が合致した状態で、治具をピン84から取り外して第二穴82から抜き取るようにしてもよい。 The [loosening prevention step] is not limited to the above-described configuration, and the jig may be removed from the pin 84 and removed from the second hole 82 in a state where the second hole 82 and the first hole 81 are matched. .
 ボルト55による締結を解除する場合には、治具を第二貫通孔83及び第二穴82に差し込み、治具の先端のネジをピン84のネジ穴86に螺合する。こうしてピン84に連結した治具を引き出すことにより、ピン84が第二穴82内に引き込まれ、第一穴81から抜き取られる。これにより、ボルト55の脱着を繰り返して行うことが可能となる。 When releasing the fastening with the bolt 55, the jig is inserted into the second through hole 83 and the second hole 82, and the screw at the tip of the jig is screwed into the screw hole 86 of the pin 84. By pulling out the jig connected to the pin 84 in this way, the pin 84 is pulled into the second hole 82 and extracted from the first hole 81. As a result, the bolt 55 can be repeatedly attached and detached.
 なお、治具及びピン84は、上述した構成に限らず、フックを介してピン84を第二穴82内に引き込む構成としてもよい。 Note that the jig and the pin 84 are not limited to the configuration described above, and the pin 84 may be pulled into the second hole 82 via a hook.
 以上のように、図7に示す第4実施形態のねじ緩み止め構造80は、第二穴82に連通する第二貫通孔83がボルト55に形成され、外部から第二貫通孔83を挿通して第二穴82内に差し込まれる治具が用いられるものとした。ボルト55(第二部材)をねじ込む際には、外部から治具が第二貫通孔83を挿通して第二穴82内に差し込まれる。治具は、ピン84をスプリング85(付勢部材)の付勢力に抗して第二穴82に引き込んで、ピン84の第一穴81への進入を規制するため、ボルト55の脱着を繰り返して行うことが可能となる。 As described above, in the screw locking structure 80 of the fourth embodiment shown in FIG. 7, the second through hole 83 communicating with the second hole 82 is formed in the bolt 55, and the second through hole 83 is inserted from the outside. A jig that is inserted into the second hole 82 is used. When the bolt 55 (second member) is screwed, a jig is inserted from the outside through the second through hole 83 and into the second hole 82. The jig pulls the pin 84 into the second hole 82 against the urging force of the spring 85 (the urging member) and restricts the entry of the pin 84 into the first hole 81. Can be performed.
 (第5実施形態)
 以下、図8を参照して、本発明の第5実施形態を説明する。第5実施形態に係るねじ緩み止め構造100では、ねじ102、101を介して螺合する第一、第二部材(ナット103、ボルト104)の間に第三、第四部材(被締結部材105、106)が挟持される。第二、第三部材(ボルト104、被締結部材105)に渡ってピン107が挿入されるとともに、第一、第四部材(ナット103、被締結部材106)に渡ってピン108が挿入される。
(Fifth embodiment)
Hereinafter, a fifth embodiment of the present invention will be described with reference to FIG. In the screw locking structure 100 according to the fifth embodiment, the third and fourth members (fastened members 105) are interposed between the first and second members (nuts 103 and bolts 104) that are screwed together via the screws 102 and 101. 106) is sandwiched. The pin 107 is inserted across the second and third members (bolt 104, fastened member 105), and the pin 108 is inserted across the first and fourth members (nut 103, fastened member 106). .
 被締結部材105、106がボルト104及びナット103を介して締結される。被締結部材105、106には、ボルト104が挿通するボルト孔115、116がそれぞれ形成される。ボルト104のネジ部104Bには雄ねじ101が形成される一方、ナット103の内周には雌ねじ102が形成される。ねじ緩み止め構造100は、ピン107、108を介してボルト104及びナット103の相対回転を規制する。 Fastened members 105 and 106 are fastened through bolts 104 and nuts 103. Bolt holes 115 and 116 through which the bolts 104 are inserted are formed in the fastened members 105 and 106, respectively. A male thread 101 is formed on the threaded portion 104B of the bolt 104, while a female thread 102 is formed on the inner periphery of the nut 103. The screw loosening prevention structure 100 restricts relative rotation of the bolt 104 and the nut 103 via the pins 107 and 108.
 第一ピン107は、ボルト104の頭部104Aに形成される第二穴114と被締結部材105に形成される第三穴117に渡って設けられ、両者の相対回転を規制する。 The first pin 107 is provided across the second hole 114 formed in the head 104A of the bolt 104 and the third hole 117 formed in the fastened member 105, and restricts relative rotation of both.
 第二ピン108は、ナット103と被締結部材106に渡って設けられ、両者の相対回転を規制する。 The second pin 108 is provided across the nut 103 and the fastened member 106, and restricts relative rotation of both.
 被締結部材106には、第二ピン108の基端部及びスプリング109が挿入される第四穴113が形成される。ナット103には、第二ピン108の先端部が挿入される第一穴111と、第一穴111と同軸上に延びる第一貫通孔112が形成される。 The fastening member 106 is formed with a fourth hole 113 into which the base end portion of the second pin 108 and the spring 109 are inserted. The nut 103 is formed with a first hole 111 into which the tip of the second pin 108 is inserted, and a first through hole 112 extending coaxially with the first hole 111.
 ナット103のねじ込み時に、第一貫通孔112に治具(図示省略)が挿通され、治具の先端によって第一穴111の開口端が塞がれる。ナット103を被締結部材106に当接するまでねじ込んだ後に、治具を第一穴111から抜き取る。続いて、所定のトルクでナット103をねじ込み、ボルト104に対して1回転させる間に、第一穴111を第四穴113に合致させる。これらが合致した際に、スプリング109の付勢力によって第四穴113から押し出される第二ピンが、第一穴111と第四穴113に渡って挿入される。 When the nut 103 is screwed, a jig (not shown) is inserted into the first through hole 112, and the opening end of the first hole 111 is blocked by the tip of the jig. After the nut 103 is screwed in until it comes into contact with the fastened member 106, the jig is removed from the first hole 111. Subsequently, the nut 103 is screwed with a predetermined torque and the first hole 111 is made to coincide with the fourth hole 113 while being rotated once with respect to the bolt 104. When these match, the second pin pushed out from the fourth hole 113 by the biasing force of the spring 109 is inserted across the first hole 111 and the fourth hole 113.
 また、ナット103による締結を解除する場合には、ネジ状の治具を第一貫通孔112に螺合して第一穴111に挿入し、第二ピン108をスプリング109の付勢力に抗して第一穴111から押し出す。これにより、ナット103の脱着を繰り返して行うことが可能となる。治具は、第一貫通孔112に挿通されてナット103に組み付けられた状態で、その先端が第一穴111の開口端の近傍に位置して開口端を塞ぐ長さを有する。なお、本実施の形態ではネジ状の治具を用いたが、これに限らず、例えば第一貫通孔112の軸方向に摺動可能な棒状のものを用いてもよい。 When releasing the fastening by the nut 103, a screw-shaped jig is screwed into the first through hole 112 and inserted into the first hole 111, and the second pin 108 is resisted against the urging force of the spring 109. And extrude from the first hole 111. As a result, the nut 103 can be repeatedly attached and detached. The jig is inserted into the first through hole 112 and assembled to the nut 103, and has a length that closes the opening end of the jig positioned near the opening end of the first hole 111. In addition, although the screw-shaped jig | tool was used in this Embodiment, it is not restricted to this, For example, you may use the rod-shaped thing which can slide to the axial direction of the 1st through-hole 112. FIG.
 以上のように、ねじ緩み止め構造100では、スプリング109の付勢力によって保持される第二ピン108によってナット103の回転が規制されるとともに、第一ピン107によってボルト104の回転が規制される。 As described above, in the screw locking structure 100, the rotation of the nut 103 is restricted by the second pin 108 held by the urging force of the spring 109, and the rotation of the bolt 104 is restricted by the first pin 107.
 なお、上述した構成に限らず、ボルト104の回転を規制する第一ピン107も、第二ピン108と同様にスプリングの付勢力によって保持される構成としてもよい。 Note that the first pin 107 that restricts the rotation of the bolt 104 is not limited to the above-described configuration, and may be configured to be held by the urging force of the spring, similarly to the second pin 108.
 また、ナット103のねじ緩み止め構造は、図1に示すねじ緩み止め構造35と同様の構成としてもよい。具体的には、ボルト104のネジ部104Bの外周に開口する第二穴が形成され、この第二穴にスプリング及びピンが収容される一方、ナット103の内周(雌ねじ102)に開口する第一穴が形成される構成としてもよい。この場合には、ナット103がねじ込まれるのに伴ってスプリングの付勢力によってピンが、第二穴と第一穴に渡って挿入され、ナット103の相対回転が規制される。 Further, the screw locking structure of the nut 103 may be the same as the screw locking structure 35 shown in FIG. Specifically, a second hole is formed in the outer periphery of the threaded portion 104B of the bolt 104, and a spring and a pin are accommodated in the second hole, while a second hole opened in the inner periphery (the female thread 102) of the nut 103. It is good also as a structure in which one hole is formed. In this case, as the nut 103 is screwed, the pin is inserted across the second hole and the first hole by the biasing force of the spring, and the relative rotation of the nut 103 is restricted.
 以上、本発明の実施形態について説明したが、上記実施形態は本発明の適用例の一部を示したに過ぎず、本発明の技術的範囲を上記実施形態の具体的構成に限定する趣旨ではない。 The embodiment of the present invention has been described above. However, the above embodiment only shows a part of application examples of the present invention, and the technical scope of the present invention is limited to the specific configuration of the above embodiment. Absent.

Claims (6)

  1.  ねじの螺合によって結合される第一部材(5、31、55、53)及び第二部材(4、7、54、53、55)どうしの相対回転を規制するねじ緩み止め構造(15、35、60、70、80)であって、
     前記第一部材(5、31、55、53)に形成される第一穴(16、36、57、81)と、
     前記第二部材(4、7、54、53、55)に形成される第二穴(17、37、59、78、82)と、
     前記第二穴(17、37、59、78、82)に挿入されるピン(18、38、63、73、84)と、
     前記第二穴(17、37、59、78、82)に介装されて前記ピン(18、38、63、73、84)を前記第二穴(17、37、59、78、82)から押し出す方向に付勢する付勢部材(19,39、64、85)と、を備え、
     前記ピン(18、38、63、73、84)は、前記第一部材(5、31、55、53)と前記第二部材(4、7、54、53、55)の相対回転に伴って前記第一穴(16、36、57、81)と前記第二穴(17、37、59、78、82)が合致した際に、前記第一穴(16、36、57、81)と前記第二穴(17、37、59、78、82)に渡って挿入されるねじ緩み止め構造(15、35、60、70、80)。
    Screw loosening prevention structure (15, 35) for restricting relative rotation between the first member (5, 31, 55, 53) and the second member (4, 7, 54, 53, 55) coupled by screwing. , 60, 70, 80),
    A first hole (16, 36, 57, 81) formed in the first member (5, 31, 55, 53);
    A second hole (17, 37, 59, 78, 82) formed in the second member (4, 7, 54, 53, 55);
    Pins (18, 38, 63, 73, 84) inserted into the second holes (17, 37, 59, 78, 82);
    The pin (18, 38, 63, 73, 84) is inserted into the second hole (17, 37, 59, 78, 82) from the second hole (17, 37, 59, 78, 82). A biasing member (19, 39, 64, 85) for biasing in the pushing direction,
    The pins (18, 38, 63, 73, 84) are accompanied by relative rotation of the first member (5, 31, 55, 53) and the second member (4, 7, 54, 53, 55). When the first hole (16, 36, 57, 81) and the second hole (17, 37, 59, 78, 82) match, the first hole (16, 36, 57, 81) and the Screw locking structure (15, 35, 60, 70, 80) inserted over the second hole (17, 37, 59, 78, 82).
  2.  請求項1に記載のねじ緩み止め構造(15、35、60、70、80)であって、
     外部から前記第一穴(16、36、57、81)または前記第二穴(17、37、59、78、82)に差し込まれて前記ピン(18、38、63、73、84)を前記付勢部材(19,39、64、85)の付勢力に抗して移動させるための治具(25)が挿通される貫通孔(21、41、58)をさらに備えるねじ緩み止め構造(15、35、60、70、80)。
    The screw locking structure (15, 35, 60, 70, 80) according to claim 1,
    The pin (18, 38, 63, 73, 84) is inserted into the first hole (16, 36, 57, 81) or the second hole (17, 37, 59, 78, 82) from outside. Screw loosening prevention structure (15) further comprising a through hole (21, 41, 58) through which a jig (25) for moving against the urging force of the urging member (19, 39, 64, 85) is inserted. , 35, 60, 70, 80).
  3.  請求項2に記載のねじ緩み止め構造(15、35、60、70、80)であって、
     前記貫通孔(21、41、58)は前記第一穴(16、36、57、81)に連通して前記第一部材(5、31、55、53)に形成され、
     前記治具(25)は、前記第一部材(5、31、55、53)をねじ込む際には、先端(25C)にて前記第一穴の開口端(16B)を塞いで、前記付勢部材(19,39、64、85)の付勢力によって前記第二穴(17、37、59、78、82)から押し出される前記ピン(18、38、63、73、84)の前記第一穴(16、36、57、81)への進入を規制するねじ緩み止め構造(15、35、60、70、80)。
    The screw locking structure (15, 35, 60, 70, 80) according to claim 2,
    The through holes (21, 41, 58) communicate with the first holes (16, 36, 57, 81) and are formed in the first member (5, 31, 55, 53).
    When the first member (5, 31, 55, 53) is screwed, the jig (25) closes the opening end (16B) of the first hole with the tip (25C), and the biasing The first hole of the pin (18, 38, 63, 73, 84) pushed out from the second hole (17, 37, 59, 78, 82) by the biasing force of the member (19, 39, 64, 85) Screw loosening prevention structure (15, 35, 60, 70, 80) for restricting entry into (16, 36, 57, 81).
  4.  請求項2に記載のねじ緩み止め構造(15、35、60、70、80)であって、
     前記貫通孔(21、41、58)は前記第二穴(17、37、59、78、82)に連通して前記第二部材(4、7、54、53、55)に形成され、
     前記治具(25)は、前記第二部材(4、7、54、53、55)をねじ込む際には、前記ピン(18、38、63、73、84)を前記付勢部材(19,39、64、85)の付勢力に抗して前記第二穴(17、37、59、78、82)に引き込んで、前記ピン(18、38、63、73、84)の前記第一穴(16、36、57、81)への進入を規制するねじ緩み止め構造(15、35、60、70、80)。
    The screw locking structure (15, 35, 60, 70, 80) according to claim 2,
    The through hole (21, 41, 58) is formed in the second member (4, 7, 54, 53, 55) in communication with the second hole (17, 37, 59, 78, 82),
    When the jig (25) is screwed into the second member (4, 7, 54, 53, 55), the pin (18, 38, 63, 73, 84) is inserted into the biasing member (19, 39, 64, 85) against the biasing force of the first hole of the pin (18, 38, 63, 73, 84) by pulling into the second hole (17, 37, 59, 78, 82) Screw loosening prevention structure (15, 35, 60, 70, 80) for restricting entry into (16, 36, 57, 81).
  5.  請求項1から4のいずれか一つに記載のねじ緩み止め構造(70)であって、
     前記第一部材(55)と前記第二部材(53)の間に介装される第三部材(54)を備え、
     前記第三部材(54)に前記ピン(73)が挿通する第三穴(79)が形成されるねじ緩み止め構造(70)。
    A screw locking structure (70) according to any one of claims 1 to 4,
    A third member (54) interposed between the first member (55) and the second member (53);
    A screw loosening prevention structure (70) in which a third hole (79) through which the pin (73) is inserted is formed in the third member (54).
  6.  ねじの螺合によって結合される第一部材(103)及び第二部材(104)どうしの相対回転を規制するねじ緩み止め構造(100)であって、
     前記第一部材(103)と前記第二部材(104)の間に介装される第三部材(105)と、
     前記第一部材(103)と前記第三部材(105)の間に介装される第四部材(106)と、
     前記第一部材(103)に形成される第一穴(111)と、
     前記第二部材(104)に形成される第二穴(114)と、
     前記第三部材(105)に形成される第三穴(117)と、
     前記第四部材(106)に形成される第四穴(113)と、
     前記第二穴(114)と前記第三穴(117)に渡って挿入される第一ピン(107)と、
     前記第四穴(113)に挿入される第二ピン(108)と、
     前記第四穴(113)に介装されて前記第二ピン(108)を前記第四穴(113)から押し出す方向に付勢する付勢部材(109)と、を備え、
     前記第二ピン(108)は、前記第一部材(103)と前記第二部材(104)の相対回転に伴って前記第一穴(111)と前記第四穴(113)が合致した際に、前記第一穴(111)と前記第四穴(113)に渡って挿入されるねじ緩み止め構造(100)。
    A screw loosening prevention structure (100) for restricting relative rotation between the first member (103) and the second member (104) coupled by screwing,
    A third member (105) interposed between the first member (103) and the second member (104);
    A fourth member (106) interposed between the first member (103) and the third member (105);
    A first hole (111) formed in the first member (103);
    A second hole (114) formed in the second member (104);
    A third hole (117) formed in the third member (105);
    A fourth hole (113) formed in the fourth member (106);
    A first pin (107) inserted across the second hole (114) and the third hole (117);
    A second pin (108) inserted into the fourth hole (113);
    A biasing member (109) interposed in the fourth hole (113) and biasing the second pin (108) in a direction of pushing out from the fourth hole (113);
    The second pin (108) is moved when the first hole (111) and the fourth hole (113) are aligned with the relative rotation of the first member (103) and the second member (104). A screw locking structure (100) inserted across the first hole (111) and the fourth hole (113).
PCT/JP2013/066362 2012-07-23 2013-06-13 Screw loosening prevention structure WO2014017209A1 (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2020251655A1 (en) * 2019-06-12 2020-12-17 Raytheon Company Pin lock fasteners

Families Citing this family (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP6442778B2 (en) * 2014-09-08 2018-12-26 株式会社NejiLaw Piston member, piston fastening structure
JP2016056845A (en) * 2014-09-08 2016-04-21 株式会社NejiLaw Member fastening structure of linear movement system
CN108184777A (en) * 2018-03-09 2018-06-22 河北夏洛特建材有限公司 A kind of novel hand-held diddle-net
CN109882488A (en) * 2019-04-11 2019-06-14 张唐 A kind of novel anti-theft check bolt nut locking system
CN115653989A (en) * 2021-02-27 2023-01-31 广东精诺五金实业有限公司 Connecting device
CN112983950B (en) * 2021-02-27 2022-12-23 广东精诺五金实业有限公司 Connecting assembly and anti-reset structure thereof
CN115111253A (en) * 2022-06-17 2022-09-27 航星利华(北京)科技有限公司 Locking anticreep fastener
KR102563509B1 (en) * 2023-01-18 2023-08-08 (주)제이에이치에너지 Support structure for solar module installation with improved performance maintenance and structural stability

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS614011U (en) * 1984-06-14 1986-01-11 ナショナル住宅産業株式会社 Structure to prevent loosening of bolts and nuts
JPS6262012A (en) * 1985-09-09 1987-03-18 ユナイテツド・テクノロジ−ズ・コ−ポレイシヨン Clamping element
JPH07229509A (en) * 1994-02-16 1995-08-29 Kichinosuke Nagashio Vibration-proof screw
JP3059901U (en) * 1998-12-15 1999-07-13 株式会社 メタルワークス Fastener
JP2006144894A (en) * 2004-11-19 2006-06-08 Kyodo Engineering Kk Permanently fixing bolt/nut

Family Cites Families (12)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS6114011U (en) * 1984-06-29 1986-01-27 不二夫 三浦 Oral surgery bracket
US5028191A (en) * 1984-10-12 1991-07-02 Long-Lok Fasteners Corporation Self-locking threaded member and method
JPH031050Y2 (en) * 1984-11-13 1991-01-14
GB8710809D0 (en) * 1987-05-07 1987-06-10 Standard Hose Ltd Hose pipe
JPH0482419U (en) * 1990-11-28 1992-07-17
CN2303120Y (en) * 1996-09-23 1999-01-06 邹高扬 Looseness-proof screw
JP2001027217A (en) * 1999-07-16 2001-01-30 Cosmo Industry:Kk Nut with stopper
JP3986477B2 (en) * 2002-12-16 2007-10-03 洋二 森安 Vault nut coupling structure
JP2008121753A (en) * 2006-11-10 2008-05-29 D & M Holdings Inc Structure for fixing member by screw
CN201386728Y (en) * 2009-03-01 2010-01-20 王金鹏 Locking nut with cryptographic device
CN201636131U (en) * 2010-04-01 2010-11-17 天津市天机液压机械有限公司 Hydraulic cylinder piston locking and anti-loosening device
CN202251239U (en) * 2011-09-22 2012-05-30 常德大汉专用汽车有限公司 Looseness-proof device for hydrocylinder

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS614011U (en) * 1984-06-14 1986-01-11 ナショナル住宅産業株式会社 Structure to prevent loosening of bolts and nuts
JPS6262012A (en) * 1985-09-09 1987-03-18 ユナイテツド・テクノロジ−ズ・コ−ポレイシヨン Clamping element
JPH07229509A (en) * 1994-02-16 1995-08-29 Kichinosuke Nagashio Vibration-proof screw
JP3059901U (en) * 1998-12-15 1999-07-13 株式会社 メタルワークス Fastener
JP2006144894A (en) * 2004-11-19 2006-06-08 Kyodo Engineering Kk Permanently fixing bolt/nut

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2020251655A1 (en) * 2019-06-12 2020-12-17 Raytheon Company Pin lock fasteners
US11261902B2 (en) 2019-06-12 2022-03-01 Raytheon Company Pin lock fasteners
JP2022535878A (en) * 2019-06-12 2022-08-10 レイセオン カンパニー pinlock fastener
JP7266717B2 (en) 2019-06-12 2023-04-28 レイセオン カンパニー pinlock fastener

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KR20150032727A (en) 2015-03-27
JP2014020525A (en) 2014-02-03
JP5934593B2 (en) 2016-06-15
CN104487719A (en) 2015-04-01
CN104487719B (en) 2017-09-22
IN2015KN00442A (en) 2015-07-17

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