WO2012086392A1 - 操作ロッド連結構造及び接続部材 - Google Patents

操作ロッド連結構造及び接続部材 Download PDF

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Publication number
WO2012086392A1
WO2012086392A1 PCT/JP2011/078030 JP2011078030W WO2012086392A1 WO 2012086392 A1 WO2012086392 A1 WO 2012086392A1 JP 2011078030 W JP2011078030 W JP 2011078030W WO 2012086392 A1 WO2012086392 A1 WO 2012086392A1
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WO
WIPO (PCT)
Prior art keywords
operating
shaft portion
shaft
connecting member
rod
Prior art date
Application number
PCT/JP2011/078030
Other languages
English (en)
French (fr)
Inventor
粉川秀文
柳井崇志
Original Assignee
アイシン精機株式会社
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 アイシン精機株式会社 filed Critical アイシン精機株式会社
Priority to EP11850374.7A priority Critical patent/EP2657572B1/en
Priority to CN201190000951.9U priority patent/CN203363034U/zh
Priority to US13/879,180 priority patent/US8826772B2/en
Publication of WO2012086392A1 publication Critical patent/WO2012086392A1/ja

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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
    • F16CSHAFTS; FLEXIBLE SHAFTS; ELEMENTS OR CRANKSHAFT MECHANISMS; ROTARY BODIES OTHER THAN GEARING ELEMENTS; BEARINGS
    • F16C7/00Connecting-rods or like links pivoted at both ends; Construction of connecting-rod heads
    • F16C7/02Constructions of connecting-rods with constant length
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F02COMBUSTION ENGINES; HOT-GAS OR COMBUSTION-PRODUCT ENGINE PLANTS
    • F02DCONTROLLING COMBUSTION ENGINES
    • F02D9/00Controlling engines by throttling air or fuel-and-air induction conduits or exhaust conduits
    • F02D9/08Throttle valves specially adapted therefor; Arrangements of such valves in conduits
    • F02D9/10Throttle valves specially adapted therefor; Arrangements of such valves in conduits having pivotally-mounted flaps
    • F02D9/1065Mechanical control linkage between an actuator and the flap, e.g. including levers, gears, springs, clutches, limit stops of the like
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F02COMBUSTION ENGINES; HOT-GAS OR COMBUSTION-PRODUCT ENGINE PLANTS
    • F02DCONTROLLING COMBUSTION ENGINES
    • F02D9/00Controlling engines by throttling air or fuel-and-air induction conduits or exhaust conduits
    • F02D9/08Throttle valves specially adapted therefor; Arrangements of such valves in conduits
    • F02D9/10Throttle valves specially adapted therefor; Arrangements of such valves in conduits having pivotally-mounted flaps
    • F02D9/109Throttle valves specially adapted therefor; Arrangements of such valves in conduits having pivotally-mounted flaps having two or more flaps
    • F02D9/1095Rotating on a common axis, e.g. having a common shaft
    • 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
    • F16KVALVES; TAPS; COCKS; ACTUATING-FLOATS; DEVICES FOR VENTING OR AERATING
    • F16K1/00Lift valves or globe valves, i.e. cut-off apparatus with closure members having at least a component of their opening and closing motion perpendicular to the closing faces
    • F16K1/16Lift valves or globe valves, i.e. cut-off apparatus with closure members having at least a component of their opening and closing motion perpendicular to the closing faces with pivoted closure-members
    • F16K1/18Lift valves or globe valves, i.e. cut-off apparatus with closure members having at least a component of their opening and closing motion perpendicular to the closing faces with pivoted closure-members with pivoted discs or flaps
    • F16K1/22Lift valves or globe valves, i.e. cut-off apparatus with closure members having at least a component of their opening and closing motion perpendicular to the closing faces with pivoted closure-members with pivoted discs or flaps with axis of rotation crossing the valve member, e.g. butterfly valves
    • F16K1/221Lift valves or globe valves, i.e. cut-off apparatus with closure members having at least a component of their opening and closing motion perpendicular to the closing faces with pivoted closure-members with pivoted discs or flaps with axis of rotation crossing the valve member, e.g. butterfly valves specially adapted operating means therefor
    • 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
    • F16KVALVES; TAPS; COCKS; ACTUATING-FLOATS; DEVICES FOR VENTING OR AERATING
    • F16K1/00Lift valves or globe valves, i.e. cut-off apparatus with closure members having at least a component of their opening and closing motion perpendicular to the closing faces
    • F16K1/16Lift valves or globe valves, i.e. cut-off apparatus with closure members having at least a component of their opening and closing motion perpendicular to the closing faces with pivoted closure-members
    • F16K1/18Lift valves or globe valves, i.e. cut-off apparatus with closure members having at least a component of their opening and closing motion perpendicular to the closing faces with pivoted closure-members with pivoted discs or flaps
    • F16K1/22Lift valves or globe valves, i.e. cut-off apparatus with closure members having at least a component of their opening and closing motion perpendicular to the closing faces with pivoted closure-members with pivoted discs or flaps with axis of rotation crossing the valve member, e.g. butterfly valves
    • F16K1/223Lift valves or globe valves, i.e. cut-off apparatus with closure members having at least a component of their opening and closing motion perpendicular to the closing faces with pivoted closure-members with pivoted discs or flaps with axis of rotation crossing the valve member, e.g. butterfly valves with a plurality of valve members
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F02COMBUSTION ENGINES; HOT-GAS OR COMBUSTION-PRODUCT ENGINE PLANTS
    • F02BINTERNAL-COMBUSTION PISTON ENGINES; COMBUSTION ENGINES IN GENERAL
    • F02B31/00Modifying induction systems for imparting a rotation to the charge in the cylinder
    • F02B31/04Modifying induction systems for imparting a rotation to the charge in the cylinder by means within the induction channel, e.g. deflectors
    • F02B31/06Movable means, e.g. butterfly valves
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10TTECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
    • Y10T74/00Machine element or mechanism
    • Y10T74/21Elements
    • Y10T74/2142Pitmans and connecting rods

Definitions

  • the present invention relates to a connection structure for transmitting a driving force of an actuator or the like as an operation force of another operation mechanism, and a connection member used in the connection structure.
  • Patent Document 1 discloses a valve shaft driving device used for an operation mechanism of a variable intake valve provided in an intake manifold of an automobile.
  • the variable intake valve is pivotally supported in the intake passage so as to be freely opened and closed, and the intake flow rate is changed by the opening and closing to improve combustion in the engine.
  • Patent Document 1 The connecting structure of Patent Document 1 is provided with an actuator having an operating rod that is moved back and forth in the axial direction, a lever member (operation member) provided on a valve shaft of a valve that opens and closes a flow path, and a lever member.
  • a pin member (shaft portion) that is inserted into and connected to the shaft hole of the operation rod.
  • a bearing member is provided around the pin member, and a retaining ring is attached to the end of the pin member to prevent the operation rod from coming off. The forward / backward movement of the operating rod is transmitted from the pin member to the lever member and converted into the rotational drive of the valve.
  • connection structure of the operation rod and the operation member shown in Patent Document 1 in addition to the lever member (operation member) and the pin member (shaft portion), a bearing member and a pin member that are provided around the pin member are provided. There are many necessary parts such as retaining rings for retaining. Also in the assembly process of each member for constituting the connection structure of the operation rod and the operation member, first, the pin member is supported by the lever member, and then the bearing member is externally fitted to the pin member. The connecting hole at the end of the rod is fitted into the bearing member, and finally, a retaining ring for retaining the pin is fitted into the pin member, which requires many steps and takes time.
  • An object of the present invention is to provide an operation rod coupling structure that is configured with a small number of parts and that facilitates the assembly process, and a connection member used in the coupling structure.
  • the first characteristic configuration of the operating rod coupling structure of the present invention includes an operating member constituting a part of the operating mechanism, and a connecting hole at the end so as to transmit the operating force by being pivotally connected to the operating member.
  • An operating rod, and a connecting member that clamps an end of the operating rod together with a part of the operating member, and forming a shaft portion in one of the operating member and the connecting member, and the operation Forming a bearing part into which the shaft part can be inserted into either one of the member and the connecting member, and configured so that the shaft part can be inserted into the bearing part while penetrating the connecting hole part of the operation rod;
  • the engagement portion and the engaged portion that prevent the shaft portion from coming out of the bearing portion are provided at positions different from the shaft portion and the bearing portion among the connection member and the operation member, respectively. is there.
  • the operation rod coupling structure sandwiches the operation member constituting a part of the operation mechanism, the operation rod having the connection hole at the end, and the end of the operation rod together with a part of the operation member. It will be comprised by a connection member, and a number of members will decrease. Further, the operation rod coupling structure is configured such that the end portion of the operation rod is pivotally coupled by the shaft portion (or bearing portion) of the connection member and the bearing portion (or shaft portion) of the operation member, and the operation member and the connection member are separately provided. The connection between the operating rod and the operating member is completed simply by engaging the provided engaging portion and engaged portion. Therefore, the assembly process of the operating rod coupling structure is simplified. Further, in this configuration, since both ends of the shaft portion are supported by the connecting member and the operation member, the support of the shaft portion is strong, and the operation of the operation member to which the operation force of the operation rod is transmitted is stabilized.
  • the second characteristic configuration of the operating rod coupling structure of the present invention is that the engaging portion is configured such that its engaging / disengaging direction coincides with the inserting / removing direction of the shaft portion.
  • the engaging part is configured so that the engaging / disengaging direction thereof coincides with the inserting / removing direction of the shaft part as in this configuration, for example, when the shaft part is formed on the connecting member and the bearing part is formed on the operating member
  • the engaging portion of the connecting member is pushed into and engaged with the engaged portion of the operating member, and operates with the operating rod.
  • the connection with the member is completed.
  • the movement of the shaft portion in the axial direction is restricted by sandwiching a part of the operation member in a direction parallel to the axial direction of the shaft portion on the connection member.
  • the position fixing portion is provided, the engaging portion is provided in the position fixing portion, and the engaging portion is engaged with the operating member from a direction different from the axial direction of the shaft portion.
  • the position fixing portion is provided with an engaging portion, and is configured to engage the connecting member and the operating member. Furthermore, in this configuration, since the engaging portion is configured to engage the operation member from a direction different from the axial direction of the shaft portion, the connection member is provided with a stopper for preventing the shaft portion from being detached in the axial direction by the position fixing portion. And a function of fixing the engaging position of the connecting member and the operating member by the engaging portion and the engaging posture of the joining member. As a result, the operation stability when the operation force of the operation rod is transmitted to operate the operation member and the durability of each member are improved.
  • the fourth characteristic configuration of the operating rod coupling structure of the present invention is that the joint portion of the operating rod is partially made of a metal material.
  • the joint part of the operating rod is partially made of a metal material as in this configuration, the other part of the operating rod and the drive source of the operating rod can be made of resin. It is possible to reduce the weight of the entire device.
  • the joint portion of the operation rod is made of a metal material, the rigidity can be maintained even if the thickness is reduced, and therefore, the length of the operation rod coupling structure protruding to the side can be shortened. As a result, the operation rod coupling structure can be used even in a narrower place.
  • the first characteristic configuration of the connecting member according to the present invention pivotally supports an operating member constituting a part of the operating mechanism and an operating rod having a connecting hole at an end so as to transmit an operating force to the operating member.
  • the second characteristic configuration of the connecting member according to the present invention is that the engaging portion is configured such that the engaging / disengaging direction thereof coincides with the inserting / removing direction of the shaft portion.
  • the engagement portion is configured such that the engagement / disengagement direction thereof coincides with the insertion / removal direction of the shaft portion as in this configuration, for example, when the shaft portion is formed on the connection member and the bearing portion is formed on the operation member
  • the engaging portion of the connecting member is pushed into and engaged with the engaged portion of the operating member. And the connection between the operating members is completed. Therefore, the connecting operation between the operating rod and the operating member can be easily performed.
  • connection member of the present invention is provided with a position fixing portion that sandwiches a part of the operation member in a direction parallel to the axial direction of the shaft portion and restricts movement of the shaft portion in the axial direction,
  • the engaging portion is provided in the position fixing portion, and the engaging portion is configured to engage with the operation member from a direction different from the axial direction of the shaft portion.
  • the position fixing portion is provided with an engaging portion, and is configured to engage the connecting member and the operating member. Furthermore, in this configuration, since the engaging portion is configured to engage the operation member from a direction different from the axial direction of the shaft portion, the connection member is provided with a stopper for preventing the shaft portion from being detached in the axial direction by the position fixing portion. And a function of fixing the engaging position of the connecting member and the operating member by the engaging portion and the engaging posture of the joining member. As a result, the operation stability when the operation force of the operation rod is transmitted to operate the operation member and the durability of each member are improved.
  • FIG. 4 is a cross-sectional view taken along arrow IV-IV in FIG. 3.
  • FIG. 7 is a sectional view taken along arrow VII-VII in FIG. 6.
  • FIG. 7 is a sectional view taken along arrow VII-VII in FIG. 6.
  • the operation rod coupling structure of the present invention can be applied to, for example, a valve opening / closing mechanism that opens and closes a variable intake valve of an intake control device that adjusts the flow rate of air supplied to an engine.
  • FIG. 1 to 5 show examples in which the operating rod coupling structure according to the present invention is applied to an intake air control device that adjusts the flow rate of air supplied to the engine E.
  • the intake control device has an intake manifold 10 having a plurality of intake passages 100, and variable intake valves are provided in the middle of each intake passage 100.
  • the intake control device improves combustion of the engine by adjusting the flow velocity by changing the passage cross section of the air flowing through the intake passage 100.
  • the valve opening / closing mechanism drives a valve body 1 of a butterfly-type variable intake valve rotatably provided in the intake passage 100 of the intake manifold 10, a valve shaft 2 that rotates the valve body 1, and the valve shaft 2. It has an actuator 3.
  • the valve shaft 2 and the actuator are connected via a connecting member 5 to an operating rod 31 provided in the actuator 3 and an operating member 4 which is a part of the valve opening / closing mechanism and operates the valve shaft 2.
  • the valve shaft 2 is arranged so as to be orthogonal to the intake passage 100 of the intake manifold 10.
  • the valve shaft 2 is inserted into a bearing hole 10b formed in the vicinity of the flange portion 10a of the intake manifold 10 and is rotatably supported.
  • a valve body 1 of a variable intake valve is attached to a position corresponding to each intake passage 100 of the valve shaft 2 by, for example, a screw.
  • the actuator 3 is supported on the outer peripheral portion of the intake manifold 10 via a bracket 6 formed on the outer peripheral portion of the intake manifold 10.
  • the actuator 3 is not particularly limited.
  • the actuator 3 is a resin diaphragm actuator, and includes an actuator body 30 and an operation rod 31 that protrudes and retracts from the actuator body 30.
  • the inside of the actuator body 30 is divided into an atmospheric pressure chamber (not shown) and a negative pressure chamber (not shown) by a diaphragm (not shown).
  • the diaphragm is biased toward the atmospheric pressure chamber.
  • the end of the operating rod 31 on the side of the actuator body 30 is connected to the diaphragm, and the operating rod 31 is retracted toward the actuator body 30 by applying a negative pressure to the negative pressure chamber. Further, the operation rod 31 protrudes from the actuator body 30 by releasing the application of the negative pressure to the negative pressure chamber.
  • the operation rod 31 has a joint portion 32 with the operation member 4 made of a metal material, a portion 34 on the actuator body 30 side made of a resin material, and the resin portion 34 is inserted into the joint portion 32 of the metal portion. Molded and configured.
  • the end portion 33 of the joint portion 32 has a thin plate shape and is formed with a connecting hole portion 33a. Since the joint portion 32 is made of a metal material, sufficient strength is ensured even if the end portion 33 is formed in a plate shape in this way.
  • the operation rod 31 is bent so that the actuator body 30 does not protrude to the side of the connecting portion between the operation rod 31 and the operation member 4.
  • the operation member 4 constitutes a part of the variable intake valve, and is formed in a plate-like main body part 40, a bearing part 41 penetrating a part in the thickness direction of the main body part 40, and a thickness direction of the main body part 40.
  • the engaging recess 42 is formed coaxially with the valve shaft 2.
  • the connection member 5 includes a plate-like main body 50, a shaft 51, and a ball joint 52, and sandwiches the end 33 of the operation rod 31 together with a part of the operation member 4.
  • the ball joint portion 52 includes a spherical head portion 52a and a base portion 52b having a larger diameter than the spherical head portion 52a.
  • the operating member 4 is provided with a lever member 7 for initially adjusting the opening amount of the variable intake valve. By rotating the valve shaft 2 by operating the lever member 7, the initial position of the valve body 1 is set. Can be adjusted.
  • the base portion 7a of the lever member 7 is embedded in the main body portion 40 of the operation member 4, and the main body portion 40 is reinforced by the base portion 7a.
  • the operation rod 31 and the operation member 4 are connected by superimposing the connection hole portion 33a of the end portion 33 of the operation rod 31 on the bearing portion 41 of the operation member 4 and inserting the shaft portion 51 of the connection member 5 into the both.
  • the spherical head 52a (engagement portion) of the ball joint portion 52 is pushed into and engaged with the engagement recess 42 (engaged portion), and the connection between the operation rod 31 and the operation member 4 is completed.
  • the end 33 of the operating rod 31 is held between a part of the operating member 4 and the connecting member 5, the operating rod 31 is pivotally connected to the operating member 4, and the operating force of the operating rod 31 is applied to the operating member 4. Can communicate.
  • the state in which the end portion 33 of the operating rod 31 is sandwiched between the part of the operating member 4 and the connecting member 5 means that the end portion 33 of the operating rod 31 is not necessarily part of the operating member 4 and the connecting member 5.
  • the state in which the end 33 of the operation rod 31 is not in contact with a part of the operation member 4 and one or both of the connection members 5 is also included.
  • the end 2 a which is one end of the valve shaft 2 is supported by a bearing case 10 c on the side of the intake manifold 10.
  • the end 2a is inserted through the cylindrical portion 43 of the operation member 4 in the bearing case 10c.
  • a ball bearing 8 and a seal portion 9 are disposed around the cylindrical portion 43, and a case cover 11 is provided at an end portion.
  • the cylindrical portion 43 of the operating member 4 and the end 2a of the valve shaft 2 are configured to be integrally rotatable, and the operating rod 31 and the valve shaft 2 are connected via the connecting member 5 and the operating member 4. .
  • the protrusion / retraction movement of the operation rod 31 is transmitted to the valve shaft 2 via the operation member 4.
  • Each of the shaft portion 51 and the ball joint portion 52 has a cylindrical hollow portion. This cylindrical hollow part is formed when the connecting member 5 is resin-molded. Instead of the ball bearing 8, a slide bearing may be used.
  • the operation of the valve opening / closing mechanism will be described.
  • the operating rod 31 When negative pressure is not applied to the negative pressure chamber of the actuator 3, the operating rod 31 is in a protruding state, and the variable intake valve is in an open state, for example.
  • the operating rod 31 When negative pressure is applied to the negative pressure chamber from this state, the operating rod 31 is retracted toward the actuator body 30, the operating member 4 is swung, the valve shaft 2 is rotated, and the valve body 1 is closed. And the variable intake valve is closed.
  • the shaft portion 51 is formed in the connection member 5 and the bearing portion 41 into which the shaft portion 51 can be inserted is formed in the operation member 4 with respect to the coupling hole portion 33a of the end portion 33 of the operation rod 31.
  • the connecting portion between the rod 31 and the operating member 4 is only the connecting member 5 other than the operating rod 31 and the operating member 4, and the thickness of the connecting portion 5 can be reduced, thereby saving space. For this reason, the mounting property to the vehicle of the operation rod connection structure which protrudes to the side of a variable intake valve improves.
  • a convex engaged portion 44 protruding from the main body 40 to the operating member 4 is used instead of the engaging recess 42 of the operating member 4 of the first embodiment.
  • the connecting member 5 includes a position fixing portion 54 that sandwiches a portion in the thickness direction of the operation member 4 and a concave engaging portion 55 on one end side of the position fixing portion 54 instead of the ball joint portion 52.
  • the position fixing portion 54 sandwiches a part (a portion in the thickness direction) of the operation member 4 in a direction parallel to the axial direction of the shaft portion 51.
  • the engaging portion 55 is configured to engage with the engaged portion 44 of the operation member 4 from a direction different from the axial direction of the shaft portion 51.
  • connection hole portion 33 a of the end portion 33 of the operation rod 31 is overlapped on the bearing portion 41 of the operation member 4, and the shaft portion 51 of the connection member 5 is inserted into both. . Thereafter, the connecting member 5 is rotated about the shaft portion 51 in the direction of the arrow in FIG. 6 to engage the convex engaged portion 44 of the operating member with the concave engaging portion 55 of the connecting member 5. Thus, the connection between the operation rod 31 and the operation member 4 is completed.
  • the position fixing portion 54 provided on the connecting member 5 restricts the movement of the connecting member 5 in the axial direction of the shaft portion 51 by sandwiching a part of the operation member 4 and prevents the connecting member 5 from coming off. Further, the connecting member 5 can be engaged with the operation member 4 by the engaging portion 55 provided in the position fixing portion 54.
  • the state where the position fixing portion 54 sandwiches a part of the operation member 4 is not necessarily limited to a state where the position fixing portion 54 contacts both sides of a part (thickness direction) of the operation member 4. A state where one end or both ends of the position fixing portion 54 does not contact the operating member 4 is also included.
  • the connecting member 5 Since the concave engaging portion 55 of the connecting member 5 is configured to be engaged with the operation member 4 from a direction different from the axial direction of the shaft portion 51, the connecting member 5 is arranged in the axial direction of the shaft portion 51 by the position fixing portion 54. And a function of fixing the position of the shaft portion 51 and a function of fixing the engaging position of the connecting member 5 and the operating member 4 by the engaging portion 55 and the engaging posture of the connecting member 5 are individually provided. As a result, the operation stability when the operation force of the operation rod 31 is transmitted and the operation member 4 operates and the durability of each member are improved.
  • the position fixing portion 54 is provided continuously to the wall portion 53 that protrudes toward the operation member 4 from the main body portion 50 that is coupled to the base portion of the shaft portion 51 of the connection member 5.
  • the wall portion 53 receives a reaction force from the engaging portion 55.
  • the connecting member 5 is formed of a resin material and the wall portion 53 is configured to be elastically deformable
  • the wall portion is formed. 53 is elastically deformed to facilitate the engagement, and after the engagement, the wall 53 can press the concave engaging portion 55 against the convex engaged portion 44 of the operation member 4 to strengthen the engagement. .
  • connection member 5 includes a position fixing portion 54 that sandwiches a portion in the thickness direction of the operation member 4, and is convex inwardly at one end of the position fixing portion 54.
  • An engaging portion 54a is formed. That is, the structure of the engaging part 54a of the connection member 5 differs from 2nd Embodiment.
  • connection hole portion 33 a of the end portion 33 of the operation rod 31 is overlapped on the bearing portion 41 of the operation member 4, and the shaft portion 51 of the connection member 5 is inserted into both. . Thereafter, the connecting member 5 is rotated around the shaft 51 in the direction of the arrow in FIG. 9 to engage the convex engaging portion 54a and the concave engaged portion 45, thereby The connection with the operating member 4 is completed.
  • the operation rod coupling structure according to the present invention can be applied to various valve opening / closing mechanisms such as an opening / closing valve, a flow rate control valve, a pressure control valve, etc., regardless of gas or liquid. It can also be widely used for the operating mechanism.
  • an electric drive source such as an electric motor or an electromagnetic solenoid can also be used as the drive source.
  • the connecting member 5 includes the shaft portion 51 and the operation member 4 includes the bearing portion 41.
  • the connection member 5 includes the bearing portion and the operation member 4 includes the shaft portion. May be provided.
  • the joint portion 32 of the operation rod 31 of the actuator 3 is made of a metal material.
  • the joint portion 32 may be made of a resin material, or the operation rod All of 31 may be made of a metal material.
  • the wall portion 53 that projects the position fixing portion 54 from the base portion (main body portion 50) of the shaft portion 51 to the operation member 4 in the connection member 5 is provided.
  • the wall portion 53 is not necessarily provided, and the position fixing portion 54 may be provided continuously to the main body portion 50.
  • the engaging portion 54a is provided at one end of the position fixing portion 54 of the connection member 5.
  • the position fixing portion 54 is elastically deformed without providing the engaging portion 54a. Then, the connecting member 5 and the operation member 4 may be engaged by the clamping force of the position fixing portion 54.
  • a concave portion may be formed on the surface of the spherical head 52a of the ball joint portion 52, and the spherical head 52a may be configured to be elastically deformable. In this way, the spherical head 52a can be easily elastically deformed, and the engagement between the ball joint portion 52 and the engagement recess 42 of the operation member 4 can be performed smoothly.
  • the operating rod coupling structure and connecting member of the present invention can be widely used in an operating mechanism that transmits the driving force of various driving sources.

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  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Control Of Throttle Valves Provided In The Intake System Or In The Exhaust System (AREA)
  • Mechanically-Actuated Valves (AREA)
  • Pivots And Pivotal Connections (AREA)
  • Transmission Devices (AREA)
  • Mutual Connection Of Rods And Tubes (AREA)

Abstract

 少ない部品点数で構成しつつ組付工程を簡易にした操作ロッド連結構造及び当該連結構造に用いられる接続部材を提供する。動作機構の一部を構成する動作部材と、動作部材に枢支連結して操作力を伝達するよう、端部に連結孔部を備えた操作ロッドと、動作部材の一部と伴に操作ロッドの端部を挟持する接続部材とを備え、動作部材および接続部材の何れか一方に軸部を形成すると共に、動作部材および接続部材の何れか他方に軸部を挿入可能な軸受部を形成して、軸部が操作ロッドの連結孔部を貫通しつつ軸受部に挿入可能に構成し、軸部が軸受部から抜け出すのを阻止する係合部および被係合部を、接続部材および動作部材のうち軸部および軸受部とは異なる位置に各別に備えた。

Description

操作ロッド連結構造及び接続部材
 本発明は、アクチュエータ等の駆動力を、他の動作機構の操作力として伝達するための連結構造及びその連結構造において用いられる接続部材に関する。
 アクチュエータ等の駆動力は、例えばエンジンの弁の開閉や他の部材の動作力として用いることができ、この場合、アクチュエータ等の駆動力が出力される操作ロッドと、この駆動力を利用する動作機構の動作部材とが連結される。この連結構造については、特許文献1において、自動車のインテークマニホールドに設けられる可変吸気バルブの作動機構に用いられる弁軸駆動装置が示されている。当該可変吸気バルブは、吸気経路中に開閉自在に枢支され、その開閉により吸気流速を変化させてエンジンでの燃焼の改善を図るものである。特許文献1の連結構造は、軸方向に進退移動される操作ロッドを有するアクチュエータと、流路を開閉するバルブの弁軸に設けられたレバー部材(動作部材)と、レバー部材に設けられ、且つ操作ロッドの軸孔に挿通連結されるピン部材(軸部)とを備える。ピン部材には軸受部材が周設されており、止め輪をピン部材の端部に止め輪を装着して操作ロッドが抜け止めされている。操作ロッドの進退移動は、ピン部材からレバー部材に伝達されてバルブの回転駆動に変換される。
特開2010-90772号公報
 しかしながら、特許文献1に示される操作ロッドと動作部材との連結構造においては、レバー部材(動作部材)、ピン部材(軸部)の他に、ピン部材に周設される軸受部材、ピン部材の抜け止め用の止め輪等、必要な部品点数が多い。操作ロッドと動作部材との連結構造を構成するための各部材の組付工程ついても、まず、レバー部材にピン部材を軸受支持させてから、ピン部材に軸受部材を外嵌し、その後、操作ロッドの端部の連結孔部を軸受部材に嵌め合せ、最後にピン部材に抜け止め用の止め輪を嵌め込むこととなり、工程が多く手間がかかる。また、ピン部材(軸部)はレバー部材(動作部材)で片持ち状態で支持されているため、操作ロッドの押引動作に際してピン部材(軸部)の基端部に曲げ力が作用し、ピン部材(軸部)の支持強度が十分に確保されない。
 本発明は、少ない部品点数で構成しつつ組付工程を簡易にした操作ロッド連結構造及び当該連結構造に用いられる接続部材を提供することを目的としている。
 本発明の操作ロッド連結構造の第1特徴構成は、動作機構の一部を構成する動作部材と、前記動作部材に枢支連結して操作力を伝達するよう、端部に連結孔部を備えた操作ロッドと、前記動作部材の一部と伴に前記操作ロッドの端部を挟持する接続部材とを備え、前記動作部材および前記接続部材の何れか一方に軸部を形成すると共に、前記動作部材および前記接続部材の何れか他方に前記軸部を挿入可能な軸受部を形成して、前記軸部が前記操作ロッドの連結孔部を貫通しつつ前記軸受部に挿入可能に構成し、前記軸部が前記軸受部から抜け出すのを阻止する係合部および被係合部を、前記接続部材および前記動作部材に各別のうち前記軸部および前記軸受部とは異なる位置に備えた点にある。
この構成により、操作ロッド連結構造は、動作機構の一部を構成する動作部材と端部に連結孔部を備えた操作ロッドと、動作部材の一部と伴に操作ロッドの端部を挟持する接続部材とによって構成されることとなり、部材点数が少なくなる。
 また、当該操作ロッド連結構造は、操作ロッドの端部を接続部材の軸部(あるいは軸受部)と動作部材の軸受部(あるいは軸部)により枢支連結し、動作部材および接続部材に各別に備えられた係合部と被係合部とを係合させるだけで操作ロッドと動作部材との連結が完了する。したがって、操作ロッド連結構造の組付工程が簡易になる。
 さらに、本構成では、軸部は接続部材及び動作部材によりその両端が支持されているため、軸部の支持が強固となり、操作ロッドの操作力が伝達される動作部材の動作が安定する。
 本発明の操作ロッド連結構造の第2特徴構成は、前記係合部をその係脱方向が前記軸部の挿脱方向と一致するよう構成した点にある。
 本構成のように、係合部をその係脱方向が軸部の挿脱方向と一致するよう構成すると、例えば接続部材に軸部が形成され動作部材に軸受部が形成されている場合には、接続部材の軸部を操作ロッドの連結孔部と動作部材の軸受部に差し込むことで、接続部材の係合部が動作部材の被係合部に押し込まれて係合し、操作ロッドと動作部材との連結が完了する。また、動作部材に軸部が形成され接続部材に軸受部が形成されている場合には、動作部材の軸部に操作ロッドの連結孔部と接続部材の軸受部とを外嵌させることで、接続部材の係合部が動作部材の被係合部に押し込まれて係合し、操作ロッドと動作部材との連結が完了する。したがって、操作ロッド連結構造の組付工程がより簡易になる。
 本発明の操作ロッド連結構造の第3特徴構成は、前記接続部材に、前記軸部の軸方向に平行な方向で前記動作部材の一部を挟み付けて前記軸部の軸方向の移動を規制する位置固定部を設け、前記係合部を前記位置固定部に設けると共に、当該係合部を前記軸部の軸方向とは異なる方向から前記動作部材に係合するよう構成した点にある。
 本構成のように、接続部材に位置固定部を設けることで、この位置固定部で動作部材の一部を挟み付けて軸部の軸方向における接続部材の移動を規制し、接続部材の抜け止めを行うことができる。また、この位置固定部には係合部を設けてあり、接続部材と動作部材とを係合するよう構成してある。
 さらに、本構成では、係合部を軸部の軸方向とは異なる方向から動作部材に係合するよう構成したので、接続部材は、位置固定部による軸部の軸方向への抜け止め及び軸部を位置固定する機能と、係合部による接続部材と動作部材の係合位置や接合部材の係合姿勢を固定する機能とを個別に備える。その結果、操作ロッドの操作力が伝達されて動作部材が動作する際の動作安定性ならびに各部材の耐久性が向上する。
 本発明の操作ロッド連結構造の第4特徴構成は、前記操作ロッドのジョイント部を部分的に金属材料で構成した点にある。
 本構成のように、操作ロッドのジョイント部を部分的に金属材料で構成すると、操作ロッドの他の部分及び操作ロッドの駆動源を樹脂製にすることができ、その結果、操作ロッド連結構造を含む装置全体を軽量化することができる。また、操作ロッドのジョイント部は金属材料であるので薄肉化しても剛性が維持できるため、操作ロッド連結構造の側方への突出長さを短くすることもできる。その結果、より狭い場所においても、本操作ロッド連結構造の使用が可能となる。
 本発明の接続部材の第1特徴構成は、動作機構の一部を構成する動作部材と、前記動作部材に操作力を伝達するよう、端部に連結孔部を備えた操作ロッドとを枢支連結する接続部材であって、前記操作ロッドの連結孔部を貫通しつつ前記動作機構に設けられた軸受部に挿入可能な軸部と、前記軸部とは異なる位置で前記動作部材に係合して前記軸部の前記軸受部からの抜け出しを阻止する係合部と、を備えた点にある。
 本構成により、操作ロッドと動作部材とを連結させる際に、操作ロッドの端部と動作部材の軸受部とを接続部材の軸部により枢支連結し、接続部材に備えられた係合部を動作部材に係合させることで操作ロッドと動作部材との連結が完了する。したがって、操作ロッドと動作部材とを簡易に連結させることができる。
 本発明の接続部材の第2特徴構成は、前記係合部をその係脱方向が前記軸部の挿脱方向と一致するよう構成した点にある。
 本構成のように、前記係合部をその係脱方向が前記軸部の挿脱方向と一致するよう構成すると、例えば接続部材に軸部が形成され動作部材に軸受部が形成されている場合には、接続部材の軸部を操作ロッドの連結孔部と動作部材の軸受部に差し込むことで、接続部材の係合部が動作部材の被係合部に押し込まれて係合し、操作ロッドと動作部材との連結が完了する。したがって、操作ロッドと動作部材との連結作業を簡易に行うことができる。
 本発明の接続部材の第3特徴構成は、前記軸部の軸方向に平行な方向で前記動作部材の一部を挟み付けて前記軸部の軸方向の移動を規制する位置固定部を設け、前記係合部を前記位置固定部に設けると共に、当該係合部を前記軸部の軸方向とは異なる方向から前記動作部材に係合するよう構成した点にある。
 本構成のように、接続部材に位置固定部を設けることで、この位置固定部で動作部材の一部を挟み付けて軸部の軸方向における接続部材の移動を規制し、接続部材の抜け止めを行うことができる。また、この位置固定部には係合部を設けてあり、接続部材と動作部材とを係合するよう構成してある。
 さらに、本構成では、係合部を軸部の軸方向とは異なる方向から動作部材に係合するよう構成したので、接続部材は、位置固定部による軸部の軸方向への抜け止め及び軸部を位置固定する機能と、係合部による接続部材と動作部材の係合位置や接合部材の係合姿勢を固定する機能とを個別に備える。その結果、操作ロッドの操作力が伝達されて動作部材が動作する際の動作安定性ならびに各部材の耐久性が向上する。
は、吸気装置の弁軸を動作させる操作ロッド連結構造の側面図である。 は、吸気装置の弁軸を動作させる操作ロッド連結構造の正面図である。 は、操作ロッド連結構造の要部側面図である。 は、図3のIV-IV矢視断面図である。 は、操作ロッド連結構造の分解斜視図である。 は、第2実施形態に係る操作ロッド連結構造の要部側面図である。 は、図6のVII-VII矢視断面図である。 は、第2実施形態に係る操作ロッド連結構造の分解斜視図である。 は、第3実施形態に係る操作ロッド連結構造の要部側面図である。 は、第3実施形態に係る操作ロッド連結構造の分解斜視図である。
 以下、本発明の実施例を図面に基づいて説明する。本発明の操作ロッド連結構造は、例えばエンジンに供給する空気の流速を調整する吸気制御装置の可変吸気バルブを開閉する弁開閉機構に適用することができる。
[第1実施形態]
 図1~図5に、エンジンEに供給する空気の流速を調整する吸気制御装置に本発明に係る操作ロッド連結構造を適用した例を示す。当該吸気制御装置は複数の吸気路100を備えたインテークマニホールド10を有し、各吸気路100の途中には可変吸気バルブが設けられている。吸気制御装置は、吸気路100を流れる空気の通過断面を変化させて流速調整することにより、エンジンの燃焼改善を図る。
 弁開閉機構は、インテークマニホールド10の吸気路100に回動自在に設けられたバタフライ式の可変吸気バルブの弁体1と、弁体1を回動させる弁軸2と、弁軸2を駆動するアクチュエータ3を有する。弁軸2とアクチュエータとは、アクチュエータ3に設けられた操作ロッド31と、弁開閉機構の一部であって弁軸2を動作させる動作部材4とが接続部材5を介して接続される。
 弁軸2は、インテークマニホールド10の吸気路100と直交するように配置されている。弁軸2は、インテークマニホールド10のフランジ部10aの付近に形成された軸受孔10bに挿入されて、回動自在に支持される。弁軸2の各吸気路100に対応する位置に、可変吸気バルブの弁体1が例えばネジにより取り付けてある。
 アクチュエータ3は、インテークマニホールド10の外周部に形成されたブラケット6を介してインテークマニホールド10の外周部に支持してある。アクチュエータ3は、特に限定されないが、例えば樹脂製ダイアフラム式のアクチュエータであり、アクチュエータ本体30とアクチュエータ本体30に対して突出・引退する操作ロッド31とを有する。アクチュエータ本体30の内部は、ダイアフラム(不図示)により大気圧室(不図示)と負圧室(不図示)とに区画してある。また、ダイアフラムは大気圧室の側に付勢されている。ダイアフラムには、操作ロッド31のアクチュエータ本体30の側の端部が接続されており、負圧室への負圧の印加により、操作ロッド31がアクチュエータ本体30に向かって引退する。また、負圧室への負圧の印加を解除することにより、操作ロッド31がアクチュエータ本体30から突出する。
 操作ロッド31は、動作部材4とのジョイント部32が金属材料であり、アクチュエータ本体30側の部分34が樹脂材料であって、両者は金属部分のジョイント部32に対して樹脂の部分34がインサート成形されて構成されている。ジョイント部32の端部33は薄い板状であって連結孔部33aが形成されている。ジョイント部32が金属材料で構成されているため、端部33をこのように板状に形成しても十分な強度が確保される。また、操作ロッド31は、アクチュエータ本体30が操作ロッド31と動作部材4との連結部分の側方に突出しないよう屈曲してある。
 動作部材4は可変吸気バルブの一部を構成しており、板状の本体部40と、本体部40の厚み方向の一部を貫通する軸受部41と、本体部40の厚み方向に形成された半球形状の係合凹部42と、弁軸2の端部2aを挿通支持する筒状部43とを備える。係合凹部42は、弁軸2に対して同軸上に形成されている。
 接続部材5は、板状の本体部50と、軸部51とボールジョイント部52とを備え、動作部材4の一部と伴に操作ロッド31の端部33を挟持する。ボールジョイント部52は、球形頭部52aと球形頭部52aより大径の台部52bとを備える。なお、動作部材4には可変吸気バルブの開口量を初期調整するためのレバー部材7が延設されており、このレバー部材7の操作により弁軸2を回転させることで弁体1の初期位置の調節することができる。レバー部材7の基部7aは動作部材4の本体部40に埋設されており、この基部7aによって本体部40が補強されている。
 操作ロッド31と動作部材4との連結は、動作部材4の軸受部41に操作ロッド31の端部33の連結孔部33aを重ね合わせ、両者に接続部材5の軸部51を差込むことで、ボールジョイント部52の球形頭部52a(係合部)が係合凹部42(被係合部)に押し込まれて係合し、操作ロッド31と動作部材4との連結が完了する。その結果、操作ロッド31の端部33が動作部材4の一部と接続部材5に挟持され、操作ロッド31が動作部材4に枢支連結されて、操作ロッド31の操作力を動作部材4に伝達することができる。なお、ここで、操作ロッド31の端部33が動作部材4の一部と接続部材5に挟持される状態とは、必ずしも操作ロッド31の端部33が動作部材4の一部及び接続部材5に接触する状態に限定されず、操作ロッド31の端部33が動作部材4の一部及び接続部材5の一方又は双方に接触しない状態も含まれる。
 図4に示すように、弁軸2の一端である端部2aはインテークマニホールド10の側部の軸受ケース10cに支持されている。端部2aは、軸受ケース10c内において動作部材4の筒状部43に挿通されている。軸受ケース10cには、筒状部43の周囲にボールベアリング8とシール部9が配置され、端部にケースカバー11が備えられている。こうして、動作部材4の筒状部43と弁軸2の端部2aとが一体回転可能に構成され、操作ロッド31と弁軸2とが接続部材5と動作部材4とを介して接続される。その結果、操作ロッド31の突出・引退運動が、動作部材4を介して弁軸2に伝達される。軸部51とボールジョイント部52はそれぞれ筒状の中空部を有する。この筒状の中空部は接続部材5を樹脂成形した際に形成されるものである。なお、ボールベアリング8に代えて、すべり軸受を使用しても良い。
 次に、弁開閉機構の動作について説明する。アクチュエータ3の負圧室に負圧が印加されていないとき、操作ロッド31は突出した状態であり、可変吸気バルブは例えば開状態である。この状態から負圧室に負圧を印加していくと、操作ロッド31がアクチュエータ本体30の側へ引退し、動作部材4が揺動され、弁軸2が回動され弁体1が閉方向に回動し可変吸気バルブが閉状態となる。
 この操作ロッド連結構造では、操作ロッド31と動作部材4と接続部材5のみによって構成されているので部材点数が少ない。また、操作ロッド31の端部33を接続部材5の軸部51と動作部材4の軸受部41により枢支連結し、動作部材4および接続部材5に各別に備えられたボールジョイント部(係合部)52と係合凹部(被係合部)42とを係合させるだけで操作ロッド31と動作部材4との連結が完了する。したがって、操作ロッド31と動作部材4との連結作業が簡易に行える。また、軸部51は接続部材5及び動作部材4の軸受部41によりその両端が支持されているため、軸部51の支持が強固となり、操作ロッド31の操作力が伝達される動作部材4の動作が安定する
 また、操作ロッド31の端部33の連結孔部33aに対し、接続部材5に軸部51を形成し、動作部材4に軸部51が挿入可能な軸受部41が形成されているので、操作ロッド31と動作部材4との連結部分は操作ロッド31と動作部材4以外に接続部材5が存在するだけであり、その部分の厚みを薄くでき、省スペース化が図られる。このため、可変吸気バルブの側方に突出する操作ロッド連結構造の車両への搭載性が向上する。
[第2実施形態]
 図6~図8に示すように、本実施形態では、第1実施形態の動作部材4の係合凹部42に代えて、動作部材4に本体部40から突出する凸状の被係合部44を備える。また、接続部材5は、ボールジョイント部52に代えて、動作部材4の厚み方向の部分を挟み込む位置固定部54と、位置固定部54の一端側に凹状の係合部55とを備える。位置固定部54は軸部51の軸方向に平行な方向に動作部材4の一部(厚み方向の部分)を挟み付ける。係合部55は軸部51の軸方向とは異なる方向から動作部材4の被係合部44に係合するよう構成されている。
 操作ロッド31と動作部材4との連結は、まず、動作部材4の軸受部41に操作ロッド31の端部33の連結孔部33aを重ね合わせ、両者に接続部材5の軸部51を差込む。その後、軸部51を中心にして図6の矢印方向に接続部材5を回転させて、動作部材の凸状の被係合部44と接続部材5の凹状の係合部55とを係合させることで、操作ロッド31と動作部材4との連結が完了する。
 接続部材5に設けられた位置固定部54は、動作部材4の一部を挟み付けることで、軸部51の軸方向における接続部材5の移動を規制し、接続部材5の抜け止めを行う。また、位置固定部54に設けられた係合部55により、接続部材5が動作部材4に係合できる。なお、ここでいう位置固定部54が動作部材4の一部を挟み付ける状態とは、必ずしも動作部材4の一部(厚み方向)の両側に位置固定部54が接触する状態に限定されず、動作部材4に位置固定部54の一端又は両端が接触しない状態も含まれる。
 接続部材5の凹状の係合部55を軸部51の軸方向とは異なる方向から動作部材4に係合するよう構成したので、接続部材5は、位置固定部54による軸部51の軸方向への抜け止め及び軸部51を位置固定する機能と、係合部55による接続部材5と動作部材4との係合位置や接続部材5の係合姿勢を固定する機能とを個別に備える。その結果、操作ロッド31の操作力が伝達されて動作部材4が動作する際の動作安定性ならびに各部材の耐久性が向上する。
 位置固定部54は、接続部材5の軸部51の基部に連結する本体部50から動作部材4に向けて突出する壁部53に連続して設けられている。動作部材4の被係合部44が凹状の係合部55に係合した際に、壁部53が係合部55からの反力を受ける。このため、接続部材5を樹脂材料で形成し壁部53を弾性変形可能に構成することで、動作部材4の被係合部44が凹状の係合部55に係合する際には壁部53が弾性変形して係合を容易にし、係合後には壁部53が凹状の係合部55を動作部材4の凸状の被係合部44に押し付けて係合を強固することができる。
[第3実施形態]
 本実施形態では、図9及び図10に示すように、接続部材5は、動作部材4の厚み方向の部分を挟み込む位置固定部54を備え、位置固定部54の一端の内方に凸状の係合部54aが形成されている。すなわち、第2実施形態とは、接続部材5の係合部54aの構成が異なる。
 操作ロッド31と動作部材4との連結は、まず、動作部材4の軸受部41に操作ロッド31の端部33の連結孔部33aを重ね合わせ、両者に接続部材5の軸部51を差込む。その後、軸部51を中心にして接続部材5を図9の矢印方向に回転させて、凸状の係合部54aと凹状の被係合部45とを係合させることで、操作ロッド31と動作部材4との連結が完了する。
[その他の実施形態]
(1)本発明に係る操作ロッド連結構造は、気体、液体を問わず、開閉弁、流量制御弁、圧力制御弁等の各種の弁開閉機構に適用することができ、弁開閉機構以外の各種の動作機構にも広く用いることができる。また、駆動源としては、樹脂製ダイアフラム式のアクチュエータの他、金属製ダイアフラム式のアクチュエータ、電動モータや電磁ソレノイド等の電動式駆動源を用いることもできる。
(2)上記の実施形態では、接続部材5に軸部51を備え、動作部材4に軸受部41を備えたが、これに代えて、接続部材5に軸受部を備え、動作部材4に軸部を備えてもよい。
(3)上記の実施形態では、アクチュエータ3の操作ロッド31のうち、ジョイント部32のみを金属材料で構成する例を示したが、ジョイント部32を樹脂材料で構成してもよいし、操作ロッド31を全て金属材料で構成してもよい。
(4)上記の第2実施形態及び第3実施形態では、接続部材5において位置固定部54を軸部51の基部(本体部50)から動作部材4に突出する壁部53を設けたが、壁部53は必ずしも設ける必要はなく、本体部50に連続して位置固定部54を設けてもよい。
(5)上記の第3実施形態では、接続部材5の位置固定部54の一端に係合部54aを設けたが、係合部54aを設けずに、位置固定部54が弾性変形するよう構成し、位置固定部54の挟持力により接続部材5と動作部材4とを係合させてもよい。
(6)上記の第1実施形態の接続部材5において、ボールジョイント部52の球形頭部52aの表面に凹部を形成し、球形頭部52aを弾性変形可能に構成してもよい。こうすると、球形頭部52aを弾性変形し易くすることができ、ボールジョイント部52と動作部材4の係合凹部42との係合をスムーズに行うことができる。
 本発明の操作ロッド連結構造及び接続部材は、各種駆動源の駆動力が伝達される動作機構に広く用いることができる。

Claims (7)

  1.  動作機構の一部を構成する動作部材と、
     前記動作部材に枢支連結して操作力を伝達するよう、端部に連結孔部を備えた操作ロッドと、
     前記動作部材の一部と伴に前記操作ロッドの端部を挟持する接続部材とを備え、
     前記動作部材および前記接続部材の何れか一方に軸部を形成すると共に、前記動作部材および前記接続部材の何れか他方に前記軸部を挿入可能な軸受部を形成して、前記軸部が前記操作ロッドの連結孔部を貫通しつつ前記軸受部に挿入可能に構成し、
     前記軸部が前記軸受部から抜け出すのを阻止する係合部および被係合部を、前記接続部材および前記動作部材のうち前記軸部および前記軸受部とは異なる位置に各別に備えた操作ロッド連結構造。
  2.  前記係合部をその係脱方向が前記軸部の挿脱方向と一致するよう構成した請求項1記載の操作ロッド連結構造。
  3.  前記接続部材に、前記軸部の軸方向に平行な方向で前記動作部材の一部を挟み付けて前記軸部の軸方向の移動を規制する位置固定部を設け、前記係合部を前記位置固定部に設けると共に、当該係合部を前記軸部の軸方向とは異なる方向から前記動作部材に係合するよう構成した請求項1記載の操作ロッド連結構造。
  4.  前記操作ロッドのジョイント部を部分的に金属材料で構成した請求項1~3のいずれか一項に記載の操作ロッド連結構造。
  5.  動作機構の一部を構成する動作部材と、前記動作部材に操作力を伝達するよう、端部に連結孔部を備えた操作ロッドとを枢支連結する接続部材であって、
     前記操作ロッドの連結孔部を貫通しつつ前記動作機構に設けられた軸受部に挿入可能な軸部と、
     前記軸部とは異なる位置で前記動作部材に係合して前記軸部の前記軸受部からの抜け出しを阻止する係合部と、を備えた接続部材。
  6.  前記係合部をその係脱方向が前記軸部の挿脱方向と一致するよう構成した請求項5記載の接続部材。
  7.  前記軸部の軸方向に平行な方向で前記動作部材の一部を挟み付けて前記軸部の軸方向の移動を規制する位置固定部を設け、前記係合部を前記位置固定部に設けると共に、当該係合部を前記軸部の軸方向とは異なる方向から前記動作部材に係合するよう構成した請求項5記載の接続部材。
PCT/JP2011/078030 2010-12-21 2011-12-05 操作ロッド連結構造及び接続部材 WO2012086392A1 (ja)

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