Pipe joint

The pipe fitting addresses the risk of seal damage by aligning the pipe with the central axis and using a nut design with engaging protrusions to prevent loosening, enhancing connection reliability.

JP2025142901APending Publication Date: 2025-10-01NORA ENG CO LTD +1
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Patent Information

Application Number
JP2024042510
Authority / Receiving Office
JP · JP
Patent Type
Applications
Current Assignee / Owner
Filing Date
2024-03-18
Publication Date
2025-10-01

AI Technical Summary

Technical Problem

The pipe joint in existing technologies has a high risk of the steel pipe damaging the O-ring seal during installation.

Method used

The pipe fitting includes a tubular fitting body with a sealing material and an entry direction correcting tube that guides the pipe to align with the central axis, reducing the risk of damaging the seal by intersecting directions, and incorporates a nut design with engaging protrusions to prevent loosening.

Benefits of technology

The design effectively reduces the risk of seal damage and prevents nut loosening, ensuring secure and reliable connections.

✦ Generated by Eureka AI based on patent content.

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Abstract

To reduce the risk of a pipe severely damaging a sealing material.SOLUTION: A pipe joint 20 comprises a tubular joint body 40 and a sealing material 42. The sealing material 42 is stored in the joint body 40. The sealing material 42 seals a gap between an outer peripheral surface of a predetermined pipe 200 inserted into the joint body 40 and an inner peripheral surface of the joint body 40. The pipe joint 20 further comprises an inserting direction reform cylinder 50. The inserting direction reform cylinder 50 is stored in the joint body 40. The inserting direction reform cylinder 50 includes a seal protection part 150 and an insertion cylindrical part 152. The seal protection part 150 is disposed at a position facing the sealing material 42 in the joint body 40. The insertion cylindrical part 152 is disposed at a position closer to an end of the joint body 40 than the seal protection part 150. In the insertion cylindrical part 152, the outer diameter of an end which is farther away from the seal protection part 150 is smaller than the inner diameter of the pipe 200.SELECTED DRAWING: Figure 9
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Description

[Technical Field]

[0001] The present invention relates to a pipe joint. [Background technology]

[0002] Patent Document 1 discloses a pipe joint. This pipe joint connects steel pipes each having a bulged portion with an arc-shaped cross section formed on the outer periphery of its end. This pipe joint has a joint body, an O-ring mounting groove, an O-ring, an annular groove, a stopper ring, a fitting portion, and a nut. The joint body has an insertion portion into which the steel pipe is inserted. Male threads are formed on the outer periphery of both ends of the joint body. An O-ring mounting groove is provided on the inner periphery of the joint body. An O-ring is disposed in this O-ring mounting groove. The O-ring abuts against the bulged portion of the steel pipe. An annular groove is provided adjacent to the end of the male thread of the joint body. A stopper ring is disposed in the annular groove. The fitting portion faces the joint body across the bulged portion of the steel pipe and fits onto the steel pipe. The nut has a female thread and a notch. The female thread engages with the male thread of the joint body. The notch is provided on the inner peripheral surface of the female thread portion on the opening side of the fitting body. The notch engages with a stopper ring. The pipe fitting disclosed in Patent Document 1 can prevent seizure during tightening and can prevent the nut from loosening after tightening. [Prior art documents] [Patent documents]

[0003] [Patent Document 1] Japanese Patent Application Laid-Open No. 2011-256945 Summary of the Invention [Problem to be solved by the invention]

[0004] The pipe joint disclosed in Patent Document 1 has a problem in that there is a significant possibility that the steel pipe passing through the O-ring will severely damage the O-ring.

[0005] The object of the present invention is to reduce the risk of the tube severely damaging the seal. [Means for solving the problem]

[0006] The pipe joint of the present invention will be described with reference to the drawings. Note that the reference numerals used in this section are intended to facilitate understanding of the invention, and are not intended to limit the scope of the invention to that shown in the drawings.

[0007] To achieve the above-mentioned object, according to one aspect of the present invention, a pipe fitting 20 includes a tubular fitting body 40 and a sealing material 42. The sealing material 42 is housed within the fitting body 40. The sealing material 42 seals between the outer circumferential surface of a predetermined pipe 200 entering the fitting body 40 and the inner circumferential surface of the fitting body 40. The pipe fitting 20 further includes an entry direction correcting tube 50. The entry direction correcting tube 50 is housed within the fitting body 40. The entry direction correcting tube 50 has a seal protector 150 and an entry tube portion 152. The seal protector 150 is positioned opposite the sealing material 42 within the fitting body 40. The entry tube portion 152 is positioned closer to the end of the fitting body 40 than the seal protector portion 150. The outer diameter of the end of the entry tube portion 152 farthest from the seal protector portion 150 is smaller than the inner diameter of the pipe 200.

[0008] The entry tubular portion 152 is positioned closer to the end of the fitting body 40 than the seal protection portion 150. The outer diameter of the entry tubular portion 152 at the end farther from the seal protection portion 150 is smaller than the inner diameter of the pipe 200. When the pipe 200 enters the fitting body 40, the entry tubular portion 152 enters the pipe 200. As the entry tubular portion 152 enters the pipe 200, the direction of travel of the pipe 200 is corrected to be along the extension direction of the entry tubular portion 152. Meanwhile, the seal protection portion 150 is positioned within the fitting body 40 opposite the sealing material 42. As a result, when the pipe 200 attempts to penetrate the sealing material 42, the direction of travel of the pipe 200 is corrected. As a result, the risk of the pipe 200 significantly damaging the sealing material 42, for example, by penetrating the sealing material 42 while traveling in a direction intersecting the central axis of the sealing material 42, is reduced.

[0009] Furthermore, it is desirable that the above-described seal protection portion 150 has an annular end wall portion 156 and an inner circumferential surface opposing portion 158. The annular end wall portion 156 is disposed so as to face the end of the joint body 40 at a position where it contacts the entrance tubular portion 152. The inner circumferential surface opposing portion 158 is disposed so as to face the inner circumferential surface of the seal material 42 at a position farther from the end of the joint body 40 than the annular end wall portion 156.

[0010] When the annular end wall portion 156 is positioned to face the end of the fitting body 40 at a position that contacts the entry cylindrical portion 152, the pipe 200 that enters the fitting body 40 will abut against the annular end wall portion 156. The inner circumferential surface facing portion 158 is positioned to face the inner circumferential surface of the sealing material 42 at a position farther from the end of the fitting body 40 than the annular end wall portion 156. This separates the sealing material 42 from the pipe 200 by the annular end wall portion 156 and the seal protection portion 150. As a result, the risk of the pipe 200 significantly damaging the sealing material 42, for example, by penetrating the sealing material 42 while traveling in a direction intersecting the central axis of the sealing material 42, is reduced.

[0011] Alternatively, it is desirable that the annular end wall portion 156 described above covers at least a portion of the inner circumferential side of the sealing material 42 when viewed from the end of the joint body 40.

[0012] When viewed from the end of the fitting body 40, if at least a portion of the inner circumferential side of the sealing material 42 is covered by the annular end wall portion 156, the possibility of the covered portion coming into contact with the tip of the pipe 200 is reduced. This means that the sealing material 42 is isolated from the pipe 200 by the annular end wall portion 156 and the seal protection portion 150. As a result, the risk of the pipe 200 significantly damaging the sealing material 42, for example, if the pipe 200 penetrates the sealing material 42 while traveling in a direction intersecting the central axis of the sealing material 42, is reduced.

[0013] Furthermore, it is desirable that the above-described fitting body 40 has a fitting flow path forming portion 60 and a male thread 62. The fitting flow path forming portion 60 forms a flow path. The male thread 62 is disposed on the outer periphery of at least one end of the fitting flow path forming portion 60. In this case, it is desirable that the pipe fitting 20 further includes a nut 44 and an engaging protrusion 48. The engaging protrusion 48 engages the nut 44 with the fitting flow path forming portion 60. The nut 44 has a pipe communication holding portion 100, a female thread 102, and at least one engaging recess 104. The pipe communication holding portion 100 holds the pipe 200 so that the interior of the pipe 200 is in communication with the flow path. The female thread 102 is connected to the pipe communication holding portion 100. The female thread 102 meshes with the male thread 62 of the fitting body 40. The engagement recess 104 is disposed in a position facing the engagement protrusion 48 when the female thread 102 meshes with the male thread 62 of the fitting body 40. In this case, the engagement protrusion 48 is disposed in a position adjacent to the base of the male thread 62 when viewed from the tip of the male thread 62. The engagement protrusion 48 is disposed in a state in which rotation around the central axis of the male thread 62 is restricted. The engagement protrusion 48 protrudes along the central axis of the male thread 62.

[0014] The engagement recess 104 faces the engagement protrusion 48 when the female thread 102 of the nut 44 engages with the male thread 62 of the joint body 40. As a result, the engagement recess 104 engages with the engagement protrusion 48 when the female thread 102 of the nut 44 engages with the male thread 62 of the joint body 40. The accommodating portion 46 is arranged in a state in which rotation about the central axis of the male thread 62 is restricted. The engagement protrusion 48 protrudes from the accommodating portion 46 along the central axis of the male thread 62. As a result, when the nut 44 attempts to loosen, the engagement protrusion 48 engaged with the engagement recess 104 is unlikely to come off the engagement recess 104. Because the engagement protrusion 48 is unlikely to come off the engagement recess 104, loosening of the nut 44 is prevented. As loosening of the nut 44 is prevented, the engagement recess 104 engages with the engagement protrusion 48 little by little. Because this engagement occurs little by little, the engagement is possible without applying a large force. As a result, loosening of the nut 44 is easily prevented, while the risk of the pipe 200 seriously damaging the sealing material 42 is reduced. [Effects of the Invention]

[0015] The present invention reduces the risk of the pipe severely damaging the seal. [Brief explanation of the drawings]

[0016] [Figure 1] 1 is an external view of a pipe joint according to an embodiment of the present invention. [Figure 2] FIG. 1 is a perspective view of a fitting body according to an embodiment of the present invention. [Figure 3] FIG. 1 is a side view of a fitting body according to an embodiment of the present invention. [Figure 4] 1 is an external view of a nut according to an embodiment of the present invention. FIG. [Figure 5] FIG. 2 is a perspective view of a housing portion and an engaging protrusion according to an embodiment of the present invention. [Figure 6] 1 is an external view of an approach direction correction cylinder according to an embodiment of the present invention. FIG. [Figure 7] 1 is an external view of a spacer according to an embodiment of the present invention. [Figure 8] 1 is a diagram showing an installation state of a spacer according to an embodiment of the present invention. [Figure 9] 10 is a view showing the inside of the fitting body in a state where one end of the pipe abuts against the annular end wall portion of the entry direction correction tube in an embodiment of the present invention. FIG. [Figure 10] 1 is a diagram showing the inside of a joint body in a state in which a sealing material is expanded radially outward from its inner periphery in an embodiment of the present invention. FIG. [Figure 11] 10 is a diagram showing a state in which an engagement protrusion and an engagement recess are gradually approaching each other in an embodiment of the present invention. FIG. DETAILED DESCRIPTION OF THE INVENTION

[0017] Hereinafter, an embodiment of the present invention will be described with reference to the drawings. In the following description, the same components are designated by the same reference numerals. Their names and functions are the same. Therefore, detailed descriptions thereof will not be repeated.

[0018] [Pipe fitting configuration] Fig. 1 is an external view of a pipe fitting 20 according to this embodiment. In Fig. 1, two pipes 200, 200 are connected to the pipe fitting 20 according to this embodiment. In Fig. 1, the objects shown are shown with portions cut away. Below, the configuration of the pipe fitting 20 according to this embodiment will be described based on Fig. 1.

[0019] The pipe fitting 20 according to this embodiment is used to connect two pipes 200, 200 to each other. The pipe fitting 20 is connected to one end of one of the pair of pipes 200, 200 and the other end of the other. The pipe fitting 20 allows fluid flowing through one of the pair of pipes 200, 200 to pass to the other. The pipe 200 according to this embodiment has a pipe flow path forming portion 220, an engagement enlarged diameter portion 222, and a seal facing portion 224. The pipe flow path forming portion 220 forms a flow path. The engagement enlarged diameter portion 222 is formed closer to one end of the pipe 200 than the pipe flow path forming portion 220. The engagement enlarged diameter portion 222 forms a space communicating with the flow path formed by the pipe flow path forming portion 220. The engagement enlarged diameter portion 222 has a larger outer diameter than the pipe flow path forming portion 220. The seal facing portion 224 is formed closer to one end of the pipe 200 than the engagement enlarged diameter portion 222. The seal facing portion 224 forms a space, which will be described below. This space communicates with the flow path formed by the pipe flow path forming portion 220 and the space formed by the engagement enlarged diameter portion 222.

[0020] As shown in FIG. 1, the pipe fitting 20 of this embodiment comprises a cylindrical fitting body 40, a pair of annular seal members 42, 42, a pair of nuts 44, 44, a pair of annular accommodating portions 46, 46, a plurality of engaging protrusions 48, 48, a pair of entry direction correction tubes 50, 50, and a pair of spacers 52, 52.

[0021] The joint body 40 is a member that forms the main body of the pipe joint 20. Both of the two pipes 200, 200 enter the joint body 40. One of the two pipes 200, 200 enters from one end of the joint body 40, and the other of the two pipes 200, 200 enters from the other end of the joint body 40.

[0022] The pair of seals 42, 42 are both disposed within the joint body 40. The pair of seals 42, 42 together seal between the outer peripheral surface of the pipe 200 and the inner peripheral surface of the joint body 40. One of the pair of seals 42, 42 seals between the inner peripheral surface of the joint body 40 and one of the two pipes 200, 200. The other of the pair of seals 42, 42 seals between the inner peripheral surface of the joint body 40 and the other of the two pipes 200, 200.

[0023] The pair of nuts 44, 44 are connected to one end and the other end of the joint body 40. One of the two tubes 200, 200 passes through one of the pair of nuts 44, 44, and the other of the two tubes 200, 200 passes through the other of the pair of nuts 44, 44.

[0024] One end of the joint body 40 passes through one of the pair of receiving portions 46, 46. The other end of the joint body 40 passes through the other of the pair of receiving portions 46, 46.

[0025] Some of the multiple engaging protrusions 48, 48 are intended to engage with one of the pair of nuts 44, 44. In the present embodiment, some of the multiple engaging protrusions 48, 48 protrude from one of the pair of accommodating portions 46, 46. Other several of the multiple engaging protrusions 48, 48 are intended to engage with the other of the pair of nuts 44, 44. In the present embodiment, some other several of the multiple engaging protrusions 48, 48 protrude from the other of the pair of accommodating portions 46, 46.

[0026] The pair of entry direction correction cylinders 50, 50 are both housed within the joint body 40. The entry direction correction cylinder 50 corrects the entry direction of the pipe 200 that is entering the joint body 40.

[0027] One end of the joint body 40 passes through one of the pair of spacers 52, 52. The other end of the joint body 40 passes through the other of the pair of spacers 52, 52.

[0028] [Fitting body configuration] Fig. 2 is a perspective view of the joint body 40 according to this embodiment. Fig. 3 is a side view of the joint body 40 according to this embodiment. In Fig. 3, the illustrated objects are shown with portions thereof cut away. The configuration of the joint body 40 according to this embodiment will be described below with reference to Figs. 2 and 3.

[0029] The joint body 40 according to this embodiment has a joint flow path forming portion 60, a pair of male threads 62, 62, and a pair of displacement prevention portions 64, 64.

[0030] The joint flow path forming portion 60 forms a flow path. Water or other fluid passes through this flow path. The fluid flowing through this flow path and the fluid flowing through the two pipes 200, 200 are the same.

[0031] One of the pair of male threads 62, 62 is disposed on the outer periphery of one end of the joint flow path forming portion 60. The other of the pair of male threads 62, 62 is disposed on the outer periphery of the other end of the joint flow path forming portion 60.

[0032] In the present embodiment, one of the pair of accommodating portions 46, 46 described above is disposed at a position adjacent to the root of one of the pair of male threads 62, 62 when viewed from the tip of that male thread 62. Some of the above-described multiple engaging protrusions 48, 48 protrude along the central axis 180 of the joint flow path forming portion 60. In the present embodiment, the central axes of the pair of male threads 62, 62 all coincide with the central axis 180 of the joint flow path forming portion 60. As a result, some of the above-described multiple engaging protrusions 48, 48 protrude from one of the pair of accommodating portions 46, 46 along the central axis of one of the pair of male threads 62, 62.

[0033] In this embodiment, the central axes of the pair of male threads 62, 62 both coincide with the central axis 180 of the joint flow path forming portion 60. In this embodiment, the pair of accommodating portions 46, 46 are both arranged in a state where rotation around the central axis 180 of the joint flow path forming portion 60 of the joint body 40 is restricted. As a result, one of the pair of accommodating portions 46, 46 is arranged in a state where rotation around the central axis of one of the pair of male threads 62, 62 is restricted. The other of the pair of accommodating portions 46, 46 is arranged in a state where rotation around the central axis of the other of the pair of male threads 62, 62 is restricted.

[0034] Similarly, in the present embodiment, the other of the pair of accommodating portions 46, 46 described above is disposed at a position adjacent to the root of the other of the pair of male threads 62, 62 when viewed from the tip of that male thread 62. Several other of the plurality of engaging protrusions 48, 48 described above protrude along the central axis 180 of the joint flow path forming portion 60. As a result, several other of the plurality of engaging protrusions 48, 48 described above protrude from the other of the pair of accommodating portions 46, 46 along the central axis of the other of the pair of male threads 62, 62.

[0035] The slippage prevention portion 64 according to this embodiment is an annular portion that protrudes from the outer periphery of the joint flow-channel forming portion 60. One of the pair of slippage prevention portions 64, 64 prevents one of the pair of accommodating portions 46, 46 from slipping in the circumferential direction about the central axis 180 of the joint flow-channel forming portion 60, and therefore about the central axis of the male thread 62. In this regard, the one of the pair of slippage prevention portions 64, 64 allows movement of one of the pair of accommodating portions 46, 46 toward the back when viewed from the tip of one of the pair of male threads 62, 62.

[0036] The other of the pair of slippage prevention portions 64, 64 prevents the other of the pair of accommodating portions 46, 46 from slipping in the circumferential direction around the central axis 180 of the joint flow path forming portion 60, and therefore the central axis of the male thread 62. In this regard, the other of the pair of slippage prevention portions 64, 64 allows the other of the pair of accommodating portions 46, 46 to move inward when viewed from the tip of one of the pair of male threads 62, 62.

[0037] In this embodiment, each pair of slippage prevention portions 64, 64 has a plurality of exposed recesses 90, 90. The exposed recesses 90 are arranged on the outer periphery of the slippage prevention portion 64. The exposed recesses 90 are arranged so as to be exposed. The exposed recesses 90 are recessed. The exposed recesses 90 penetrate toward the central axis 180 of the joint flow path forming portion 60. A rotation prevention protrusion 134 (described below) of the accommodating portion 46 fits into one of the exposed recesses 90. By fitting the rotation prevention protrusion 134 into the exposed recess 90 that penetrates toward the central axis 180 of the joint flow path forming portion 60, slippage of the accommodating portion 46 in the circumferential direction around the central axis of the male thread 62 is prevented. Movement of the accommodating portion 46 toward the back when viewed from the tip of the male thread 62 is possible.

[0038] In this embodiment, the joint flow path forming portion 60 has a communication path forming portion 80, a pair of pipe end accommodating portions 82, 82, and a pair of sealing material accommodating portions 84, 84.

[0039] One of the pair of pipe end accommodating sections 82, 82 is arranged adjacent to one end of the communicating passage forming section 80. The other of the pair of pipe end accommodating sections 82, 82 is arranged adjacent to the other end of the communicating passage forming section 80. In other words, the pair of pipe end accommodating sections 82, 82 are arranged adjacent to each other with the communicating passage forming section 80 in between. One of the pair of pipe end accommodating sections 82, 82 accommodates one end of one of the pipes 200, 200. The other of the pair of pipe end accommodating sections 82, 82 accommodates the other end of the pipes 200, 200.

[0040] One of the pair of sealing material accommodating portions 84, 84 is disposed adjacent to one of the pair of pipe end accommodating portions 82, 82. One of the pair of sealing material accommodating portions 84, 84 accommodates one of the pair of sealing materials 42, 42. One end of one of the pair of pipes 200, 200 passes through one of the pair of sealing material accommodating portions 84, 84 and one of the pair of sealing materials 42, 42.

[0041] The other of the pair of sealing material accommodating portions 84, 84 is disposed adjacent to the other of the pair of pipe end accommodating portions 82, 82. The other of the pair of sealing material accommodating portions 84, 84 accommodates the other of the pair of sealing materials 42, 42. The other ends of the pipes 200, 200 pass through the other of the pair of sealing material accommodating portions 84, 84 and the other of the pair of sealing materials 42, 42.

[0042] In this embodiment, the central axis of the communicating passage forming portion 80, the central axis of the pair of pipe end accommodating portions 82, 82, and the central axis of the pair of sealing material accommodating portions 84, 84 all coincide with the central axis 180 of the joint flow path forming portion 60. Therefore, the central axis of the male thread 62, the central axis of the sealing material accommodating portion 84, and the central axis of the pipe end accommodating portion 82 are common.

[0043] [Nut configuration] 4 is an external view of the nut 44 according to this embodiment. The configuration of the nut 44 according to this embodiment will be described below with reference to FIG.

[0044] The nut 44 according to this embodiment has a pipe communication holding portion 100, a female thread 102, a number of engagement recesses 104, eight nut outer peripheral recesses 106, and a covering portion .

[0045] The pipe communication holding portion 100 holds the pipe 200 so that the inside of the pipe 200 is in communication with the inside of the joint body 40. In this embodiment, the pipe communication holding portion 100 houses the engagement enlarged diameter portion 222 of the pipe 200.

[0046] The female thread 102 is connected to the pipe communication holding portion 100. The female thread 102 connects the pipe communication holding portion 100 to the joint body 40. In the present embodiment, the female thread 102 of one of the pair of nuts 44, 44 engages with one of the pair of male threads 62, 62 of the joint body 40. The female thread 102 of the other of the pair of nuts 44, 44 engages with the other of the pair of male threads 62, 62 of the joint body 40. As a result, the pipe communication holding portion 100 holds the pipe 200 so that the interior of the pipe 200 is in communication with the interior of the joint body 40.

[0047] The engagement recesses 104 are positioned to face the engagement protrusions 48 when the female threads 102 are engaged with the male threads 62 of the joint body 40. As a result, in the present embodiment, the engagement recesses 104 of one of the pair of nuts 44, 44 face some of the multiple engagement protrusions 48, 48 when the female threads 102 of one of the pair of nuts 44, 44 are engaged with one of the pair of male threads 62, 62. The engagement recesses 104 of the other of the pair of nuts 44, 44 face some other of the multiple engagement protrusions 48, 48 when the female threads 102 of the other of the pair of nuts 44, 44 are engaged with the other of the pair of male threads 62, 62.

[0048] In this embodiment, the nut outer periphery recess 106 is disposed on the outer periphery of the pipe communication holding part 100. The nut outer periphery recess 106 forms a groove.

[0049] In this embodiment, the covering portion 108 is disposed so as to surround the central axis of the female thread 102 and, in turn, the central axis 182 of the pipe communication holding portion 100 .

[0050] [Configuration of the storage unit] 5 is a perspective view of the accommodating portion 46 and the engaging protrusion 48 according to this embodiment. The configuration of the accommodating portion 46 according to this embodiment will be described below with reference to FIG.

[0051] In this embodiment, the housing portion 46 has a housing main body portion 130, an indicator portion 132, and an anti-rotation protrusion 134.

[0052] The accommodating body portion 130 forms an accommodating space therein. The accommodating space extends along the central axis of the male thread 62 when the fitting body 40 passes through the accommodating portion 46. The accommodating space opens toward the tip of the male thread 62. A portion of the engaging protrusion 48 is accommodated within the accommodating space. Another portion of the engaging protrusion 48 protrudes outside the accommodating body portion 130.

[0053] The indicator portion 132 is connected to the housing main body portion 130. The indicator portion 132 is intended to be disposed closer to the male screw 62 than the housing main body portion 130.

[0054] The anti-rotation protrusion 134 is disposed on the reverse side of the surface of the housing body 130 on which the indicator portion 132 is disposed. The anti-rotation protrusion 134 engages with one of the exposure recesses 90.

[0055] [Configuration of the approach direction correction tube] Fig. 6 is an external view of the approach direction correction cylinder 50 according to this embodiment. In Fig. 6, the objects shown are shown with parts cut away. Hereinafter, the configuration of the approach direction correction cylinder 50 according to this embodiment will be described with reference to Fig. 6.

[0056] The approach direction correcting cylinder 50 according to this embodiment has an annular seal protection portion 150 and a cylindrical approach cylinder portion 152 .

[0057] The seal protection portion 150 is disposed in a position facing the sealing material 42 within the flow path. In the present embodiment, the seal protection portion 150 has an annular end wall portion 156 and an inner circumferential surface facing portion 158. The annular end wall portion 156 is disposed in a position where it contacts the entry tube portion 152. The annular end wall portion 156 is disposed so as to face the end of the fitting body 40. The inner circumferential surface facing portion 158 is disposed in a position farther from the end of the fitting body 40 than the annular end wall portion 156. The inner circumferential surface facing portion 158 is disposed so as to face the inner circumferential surface of the sealing material 42. In the present embodiment, the annular end wall portion 156 covers at least a portion of the inner circumferential side of the sealing material 42 when viewed from the end of the fitting body 40.

[0058] The entry tubular portion 152 is positioned closer to the end of the fitting body 40 than the seal protection portion 150. In this embodiment, the outer diameter of the entry tubular portion 152 increases as it approaches the annular end wall portion 156. In this embodiment, the outer diameter of the end of the entry tubular portion 152 farther from the seal protection portion 150 is smaller than the inner diameter of the pipe 200. In this embodiment, the outer diameter of the end of the entry tubular portion 152 closer to the seal protection portion 150, i.e., the end that contacts the annular end wall portion 156, is larger than the inner diameter of the pipe 200. As a result, in this embodiment, when the pipe 200 approaches very close to the annular end wall portion 156, the entry tubular portion 152 comes into close contact with the inner circumferential surface of the pipe 200.

[0059] [Spacer configuration] Fig. 7 is an external view of the spacer 52 according to this embodiment. Fig. 8 is a view showing an attachment state of the spacer 52 according to this embodiment. The configuration of the spacer 52 according to this embodiment will be described with reference to Figs. 7 and 8.

[0060] The spacer 52 has an occupying body 120 and a pair of body engaging portions 122,122.

[0061] The occupying body 120 is disposed between the slippage prevention portion 64 and the accommodation portion 46 so as to be in close contact with the accommodation portion 46. The occupying body 120 has a ring-like shape with a portion separated so as to be openable and closable.

[0062] The main body engaging portion 122 protrudes from the occupying main body 120 in a direction along the central axis 184 of the occupying main body 120. One of the pair of main body engaging portions 122, 122 protrudes from one end of the occupying main body 120 at a portion that is separated so as to be able to be opened and closed. The other of the pair of main body engaging portions 122, 122 protrudes from the other end of the occupying main body 120 at a portion that is separated so as to be able to be opened and closed.

[0063] In this embodiment, the occupying body 120 of the spacer 52 is disposed between the slip prevention portion 64 and the accommodating portions 46, 46. By disposing the occupying body 120 there, movement of the accommodating portion 46 in a direction toward the slip prevention portion 64 is prevented. As a result, once the engaging protrusion 48 engages with the engaging recess 104, the engagement is difficult to release. Because the engagement is difficult to release, the connection between the fitting body 40 and the nut 44 is also difficult to release. On the other hand, when the occupying body 120 is removed, the accommodating portion 46 can easily move in a direction toward the slip prevention portion 64. When the accommodating portion 46 can easily move, the engagement between the engaging protrusion 48 and the engaging recess 104 can easily be released. As a result, the connection between the fitting body 40 and the nut 44 can also be easily released.

[0064] As described above, in this embodiment, the anti-rotation protrusion 134 of the accommodating portion 46 fits into the exposed recess 90 of the slippage prevention portion 64, thereby positioning the accommodating portion 46 in a state where rotation about the central axis 180 of the joint flow-path forming portion 60 is restricted. As shown in Figure 8, in this embodiment, the pair of main body engaging portions 122, 122 of the spacer 52 fit into the gap formed between the exposed recess 90 and the anti-rotation protrusion 134. This prevents the spacer 52 from falling off due to vibration or other accidental factors.

[0065] [How to connect pipe fittings] The method for connecting the pair of pipes 200, 200 and the pipe joint 20 according to this embodiment is as follows: First, an operator passes the nut 44 through a commercially available steel pipe.

[0066] Once the steel pipe has passed through the nut 44, the worker uses a well-known method to expand the portion of the steel pipe that has already passed through the nut 44. This forms the expanded diameter engaging portion 222 and the seal facing portion 224 according to this embodiment. As a result, one of the pair of pipes 200, 200 according to this embodiment is completed.

[0067] Next, the worker inserts the tip portion of the pipe 200 that has passed through the nut 44 into one end of the joint flow path forming portion 60. The end of the pipe 200 that has entered the joint flow path forming portion 60 passes through one of the pair of sealing material accommodating portions 84, 84 and enters one of the pair of pipe end accommodating portions 82, 82.

[0068] One end of the pipe 200 that has entered one of the pair of pipe end accommodating sections 82, 82 hits the annular end wall portion 156 of one of the pair of entry direction correction tubes 50, 50. Figure 9 is a diagram showing the interior of the fitting body 40 in this state. As the one end of the pipe 200 continues to advance, the entry direction correction tube 50 is pushed into the pipe end accommodating section 82. As a result, the seal protection portion 150 of the entry direction correction tube 50 comes off the inner circumferential surface of the sealing material 42.

[0069] As the entry direction correcting tube 50 is pushed into the pipe end accommodating portion 82, one end of the pipe 200 penetrates the sealing material 42. As the one end of the pipe 200 advances through the fitting body 40, the one end of the pipe 200 expands the sealing material 42 from its inner periphery outward in the radial direction. Figure 10 is a diagram showing the interior of the fitting body 40 in a state in which the sealing material 42 has expanded from its inner periphery outward in the radial direction. As is clear from Figure 10, as the one end of the pipe 200 penetrates the sealing material 42 and expands it from its inner periphery outward in the radial direction, the sealing material 42 is pressed against the inner circumferential surface of the sealing material accommodating portion 84.

[0070] Once one end of the pipe 200 has advanced sufficiently through the joint flow passage forming portion 60 , the operator engages the internal threads 102 of the nut 44 with the external threads 62 disposed on one end of the joint flow passage forming portion 60 .

[0071] As the worker continues to screw the female thread 102 of the nut 44 into the male thread 62 located at one end of the joint flow-path forming portion 60, the engaging recess 104 facing each engaging protrusion 48 changes sequentially. Accordingly, the distance between the engaging protrusion 48 and the engaging recess 104 facing it gradually decreases. Figure 11 is a diagram showing the state in which the engaging protrusion 48 and the engaging recess 104 are gradually decreasing in size.

[0072] Thereafter, the engaging protrusion 48 fits into a certain engaging recess 104. As a result, one of the pair of pipes 200, 200 is connected to the pipe fitting 20 according to this embodiment. This also results in the engaging enlarged diameter portion 222 being engaged with the interior of the pipe fitting 20. The seal opposing portion 224 is disposed within the fitting body 40.

[0073] Next, the worker similarly connects the other of the pair of pipes 200, 200 to the pipe joint 20. When this connection is complete, the connection between the pair of pipes 200, 200 and the pipe joint 20 according to this embodiment is complete.

[0074] [Explanation of Effects According to This Embodiment] As described above, the pipe fitting 20 according to this embodiment reduces the risk of the pipe 200 significantly damaging the sealing material 42 when, for example, the pipe 200 penetrates the sealing material 42 while advancing in a direction intersecting the central axis of the sealing material 42. Moreover, loosening of the nut 44 is easily prevented.

[0075] [Variations] The embodiments disclosed herein are examples in all respects. The scope of the present invention is not limited to the above-described embodiments. Of course, various design modifications may be made to the above-described embodiments without departing from the spirit of the present invention.

[0076] For example, the specific shape of the entry direction correcting tube 50 is not limited to that described above. The specific shape of the joint body 40 is also not particularly limited. The specific shape of the nut 44 is also not particularly limited. [Explanation of symbols]

[0077] 20...Pipe fitting 40...Joint body 42...Sealing material 44...Nut 46...Storage section 48…Engagement convex portion 50…Entry direction correction tube 52...Spacer 60...Joint flow path forming portion 62...Male thread 64...Slip prevention part 80...Communication path forming part 82...Pipe end housing 84...Sealing material storage section 90...Exposed recess 100...Pipe communication holding part 102...Female thread 104...engagement recess 106...Nut outer periphery recess 108...Covering part 120...Occupied body 122...Main body engagement portion 130...Main body 132...Indicator section 134...Rotation prevention protrusion 150…Seal protection part 152…Inlet cylinder part 156…Annular end wall part 158…Inner peripheral surface facing part 180, 182, 184…Central axis 200…Pipe 220…Pipe flow path forming part 222…Engagement expansion diameter part 224…Seal facing part

Claims

1. a cylindrical joint body; A pipe joint including a sealant disposed within the joint body, for sealing between an outer peripheral surface of a predetermined pipe entering the joint body and an inner peripheral surface of the joint body, Further, an approach direction correction cylinder is included which is housed in the joint body, The approach direction correction cylinder is a seal protection portion disposed in the joint body at a position facing the sealing material; a cylindrical entry portion that is positioned closer to the end of the fitting body than the seal protection portion, and whose end farther from the seal protection portion has an outer diameter smaller than the inner diameter of the pipe.

2. The seal protection portion is an annular end wall portion disposed at a position in contact with the entrance tubular portion so as to face the end of the joint body; 2. The pipe fitting according to claim 1, further comprising an inner peripheral surface opposing portion that is positioned to face the inner peripheral surface of the sealing material at a position farther from the end of the fitting body than the annular end wall portion.

3. 3. The pipe joint according to claim 2, wherein the annular end wall portion covers at least a part of an inner peripheral side of the sealing material when viewed from the end of the joint body.

4. The joint body is a joint flow path forming portion that forms a flow path; a male thread disposed on an outer periphery of at least one end of the joint flow path forming portion, The pipe joint is Nut and an engaging protrusion for engaging the nut with the joint flow path forming portion, The nut is a pipe communication holding portion that holds the pipe so that the inside of the pipe is in communication with the flow path; a female thread connected to the pipe communication holding portion and engaging with the male thread of the joint body; and at least one engaging recess that is disposed at a position facing the engaging protrusion when the female thread engages with the male thread of the joint body, 2. The pipe fitting according to claim 1, wherein the engaging protrusion is arranged at a position adjacent to the root of the male thread when viewed from the tip of the male thread, in a state in which rotation about the central axis of the male thread is restricted, and protrudes along the central axis of the male thread.

Citation Information

Patent Citations

  • Pipe expansion type pipe joint

    JP2011256945A