Spinning fishing reel

By designing abutment components for resetting specific structures in the spinning reel for fishing, the problem of insufficient operational sense during reset is solved, efficient transmission of abutment force and compact structure are achieved, and the operational sense is improved.

CN116195559BActive Publication Date: 2025-07-18DAIWA SEIKO CORPORATION
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Patent Information

Application Number
CN202211471653.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Priority Date
2021-11-30
Filing Date
2022-11-23
Publication Date
2025-07-18
Estimated Expiration
2042-11-23

AI Technical Summary

Technical Problem

The existing spin-type wire reel for fishing has insufficient operating sense during resetting, and the abutment force of the reset abutment member is difficult to efficiently transmit to the guide.

Method used

A reset abutment component is designed, including a bearing part, an extension part and a protrusion part, which ensures efficient transmission of abutment force through a specific guiding surface relationship (L1>L2) and achieves structural compactness.

Benefits of technology

It improves the operational sense during resetting of the handle rotation operation, while achieving compact structure and efficient abutment force transmission.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention provides a spinning reel for fishing that can efficiently transmit the abutting force of the abutting member for resetting and improve the operating feeling during the reset of the rotational operation of the handle. Specifically, the abutting member for resetting includes: a bearing portion through which a rotating shaft passes; a protruding portion protruding radially outward from the bearing portion; and a projecting portion protruding from the protruding portion in the axial direction of the rotating shaft. The protruding portion has a first abutting portion that abuts against the guide member during the rotation of the first half portion of the abutting member for resetting, and the projecting portion has a second abutting portion that abuts against the guide member during the rotation of the second half portion of the abutting member for resetting. The guide member has a first guide surface that abuts against the first abutting portion and a second guide surface that abuts against the second abutting portion. The distance (L1) from the center of the swing of the guide member to the first guide surface and the distance (L2) from the center of the swing of the guide member to the second guide surface satisfy the relationship of L1 > L2.
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Description

Technical Field

[0001] The present invention relates to a spinning reel for fishing. Background Art

[0002] Generally, a spinning reel for fishing includes: a rotor that rotates in conjunction with the reeling operation of a handle; and a spool that moves forward and backward as the handle is reeled in. The rotor has a wire loop support member that is rotatably supported on a pair of support arms. A wire loop for picking up the fishing line is mounted on the wire loop support member.

[0003] Conventionally, a spinning reel for fishing has a reversing mechanism for returning a wire loop support member (wire loop) from a fishing line releasing position to a fishing line winding position (see, for example, Patent Document 1). The reversing mechanism includes a guide, an end of which is connected to the wire loop support member, and a resetting abutting member that abuts against the guide by the rotation of the rotor in the fishing line winding direction, thereby returning the wire loop support member in the fishing line releasing position to the fishing line winding position.

[0004] In a spinning fishing reel having such a reversing mechanism, when the operating handle is rotated while the wire loop support member (wire loop) is in the fishing line releasing position, the return abutment member is linked with the rotation of the rotor to abut against the guide, and the wire loop support member is returned from the fishing line releasing position to the fishing line winding position by its abutment force.

[0005] Patent Literature

[0006] Patent Document 1: Japanese Patent Application Publication No. 2016-202133 Summary of the invention

[0007] However, in conventional spinning reels for fishing, in order to further improve the operational feel during the resetting operation of the handle rotation, it is desired to efficiently transmit the contact force of the resetting contact member formed by the rotation to the guide.

[0008] The present invention is made to solve such a problem, and the technical problem to be solved is to provide a fishing spinning reel that can efficiently transmit the abutment force of the resetting abutment member to the guide and improve the operational feel when resetting the rotation operation of the handle.

[0009] In order to solve the above problems, the spinning reel for fishing according to the present invention includes: an arm portion provided on a rotor included in a reel body; a guide ring support member mounted on the arm portion and rotatable between a fishing line winding position and a fishing line paying-out position; and a reverse mechanism for returning the guide ring support member from the fishing line paying-out position to the fishing line winding position. The reverse mechanism includes: a guide member having an end connected to the guide ring support member and swingably mounted on the arm portion; and a reset abutting member rotatably provided on the arm portion via a rotating shaft and abutting against the guide member by rotation of the rotor in the fishing line winding direction to return the guide ring support member in the fishing line paying-out position to the fishing line winding position. The reset abutting member includes: a bearing portion through which the rotating shaft passes; an extending portion extending radially outward from the bearing portion about the rotating shaft; and a protruding portion protruding from the extending portion toward the guide member side in the axial direction of the rotating shaft. On the extending portion, a first abutting portion that abuts against the guide member during the first half rotation of the reset abutting member is formed, and on the protruding portion, a second abutting portion that abuts against the guide member during the second half rotation of the reset abutting member is formed. On the guide member, a first guide surface that abuts against the first abutting portion and a second guide surface that abuts against the second abutting portion are formed. When the distance from the center of swing of the guide member to the first guide surface is defined as L1 and the distance from the center of swing of the guide member to the second guide surface is defined as L2, the relationship L1>L2 is satisfied.

[0010] In this spinning reel for fishing, the reset abutting member has two abutting portions, namely, a first abutting portion that abuts against the guide member during the first half rotation of the reset abutting member and a second abutting portion that abuts against the guide member during the second half rotation of the reset abutting member. Among them, since on the reset abutting member, the first abutting portion is formed on the extending portion that extends radially outward from the bearing portion, and the bearing portion is for passing through the rotating shaft, the abutting force of the reset abutting member can be transmitted to the first guide surface of the guide member on the radial extension of the bearing portion. Therefore, when the first abutting portion abuts against the first guide surface, smooth rotation of the reset abutting member can be achieved, and the bearing portion does not tilt relative to the rotating shaft. As a result, the abutting force of the reset abutting member can be efficiently transmitted to the guide member, and the operational feeling during the reset of the rotational operation of the handle can be improved.

[0011] In addition, since the relationship between the distance L1 from the center of the swing of the guide member to the first guide surface and the distance L2 from the center of the swing of the guide member to the second guide surface is L1 > L2, during the first half of the rotation, the abutting force of the abutting member for reset can be efficiently transmitted to the guide member, and a greater abutting force is required for the first half of the rotation of the abutting member for reset than for the second half. Therefore, the operating feeling during the reset of the rotational operation of the handle can be improved.

[0012] In addition, during the second half of the rotation of the abutting member for reset, since the second abutting portion abuts against the second guide surface, it is not necessary to form the guide member to a length longer than necessary, and thus the structure can be made more compact. Further, since a greater abutting force is not required for the second half of the rotation of the abutting member for reset than for the first half, even with the configuration where the second abutting portion abuts against the second guide surface, the abutting force of the abutting member for reset can be efficiently transmitted to the guide member, and the bearing portion does not tilt with respect to the rotation shaft.

[0013] In addition, preferably, when viewed from the radial direction of the rotation shaft, the abutting surface of the first abutting portion and the first guide surface abut substantially parallel to each other.

[0014] According to this configuration, the abutting force can be efficiently transmitted from the first abutting portion to the first guide surface. Therefore, the operating feeling during the reset of the rotational operation of the handle can be further improved.

[0015] According to the spinning reel for fishing according to the present invention, the abutting force of the abutting member for reset can be efficiently transmitted to the guide member, and the operating feeling during the reset of the rotational operation of the handle can be improved. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 is a schematic side view showing a spinning reel for fishing according to an embodiment of the present invention.

[0017] Figure 2 is a view showing the arm portion and the guide ring support portion at the fishing line winding position of a spinning reel for fishing according to an embodiment of the present invention, (a) is a side view showing the internal structure of the arm portion, and (b) is an explanatory view showing the abutting state of the abutting member for reset and the guide member.

[0018] Figure 3 is a view showing the arm portion and the guide ring support portion at the fishing line unwinding position of a spinning reel for fishing according to an embodiment of the present invention, (a) is a side view showing the internal structure of the arm portion, and (b) is an explanatory view showing the abutting state of the abutting member for reset and the guide member.

[0019] Figure 4FIG. 0 is a view showing the contact state between the reset contact member and the guide member of the spinning reel for fishing according to an embodiment of the present invention. (a) is an enlarged side view showing the contact state at the fishing line winding position, and (b) is an enlarged side view showing the contact state at the fishing line unwinding position.

[0020] Figure 5A FIG. 4 is an enlarged perspective view of the reset contact member of the spinning reel for fishing according to an embodiment of the present invention.

[0021] Figure 5B FIG. 8 is an enlarged perspective view of the reset contact member of the spinning reel for fishing according to an embodiment of the present invention, showing the member at a changed angle.

[0022] Figure 6 FIG. 12 is a view showing the arm portion and the guide ring support portion near the dead center, which is the intermediate position between the fishing line unwinding position and the fishing line winding position of the spinning reel for fishing according to an embodiment of the present invention. (a) is a side view showing the internal structure of the arm portion, and (b) is an explanatory view showing the contact state between the reset contact member and the guide member.

[0023] Figure 7 FIG. 16 is a view showing the arm portion and the guide ring support portion when the rear half of the reset contact member of the spinning reel for fishing according to an embodiment of the present invention rotates. (a) is a side view showing the internal structure of the arm portion, and (b) is an explanatory view showing the contact state between the reset contact member and the guide member.

[0024] Reference Signs

[0025] 1 - Reel body; 2 - Rotor; 20A, 20B - Arm portions; 30A, 30B - Guide ring support members; 50 - Reverse mechanism; 51 - Guide member; 54a - First guide surface; 54b - Second guide surface; 60 - Rotation shaft; 61 - Reset contact member; 62 - Bearing portion; 63 - Protruding portion; 63a - First contact portion; 65 - Projection; 65a - Second contact portion; L1 - Distance (from the rocking center of the guide member to the first guide surface); L2 - Distance (from the rocking center of the guide member to the second guide surface). Detailed Embodiment

[0026] Next, the spool of the spinning reel for fishing according to an embodiment of the present invention will be described with reference to appropriate drawings. In the description of the embodiment, when referring to "up and down" and "front and back", the directions shown in Figure 1 are used as a reference, and when referring to "left and right", the directions shown in Figure 2 are used as a reference.

[0027] As shown in Figure 1As shown, the spinning reel R1 for fishing mainly includes: a reel body 1 formed with a foot portion 1A for mounting on a fishing rod (not shown); a rotor 2 rotatably provided in front of the reel body 1; and a spool 10 provided to move back and forth in synchronization with the rotational movement of the rotor 2.

[0028] On the reel body 1, a handle shaft 3 is rotatably supported by a bearing (not shown), and a handle 4 for reeling operation is mounted on its protruding end portion.

[0029] The shaft cylinder is fixed against rotation on the handle shaft 3. An internal gear 6 for driving the rotor 2 for reeling is integrally formed on the shaft cylinder. The internal gear 6 meshes with a pinion 7a of a drive shaft cylinder 7 which extends in a direction orthogonal to the handle shaft 3 and has a hollow portion extending axially inside.

[0030] The drive shaft cylinder 7 is rotatably supported on the reel body 1 by a bearing. A spool shaft 8 is movably inserted through the hollow portion in the axial direction. The spool shaft 8 extends in a direction orthogonal to the handle shaft 3 and has a spool 10 mounted on its top end side.

[0031] A known swing mechanism 9 for moving the spool shaft 8 back and forth is provided at the rear end portion of the spool shaft 8.

[0032] The drive shaft cylinder 7 extends toward the spool 10 side and has a rotor 2 mounted on its front end portion. In addition, the rotation of the drive shaft cylinder 7 in the reverse direction (rotation in the fishing line paying-out direction) is restricted by a one-way clutch (not shown).

[0033] The rotor 2 includes a cylindrical portion located inside the skirt portion 10a of the spool 10 and a pair of arm portions 20A, 20B.

[0034] On the front end portions of the respective arm portions 20A, 20B, guide ring support members 30A, 30B are supported so as to be rotatable between a fishing line reeling position and a fishing line paying-out position. A guide ring 31 for picking up the fishing line in the paying-out state is disposed between these guide ring support members 30A, 30B. One base end portion of the guide ring 31 is mounted on a line roller 32 integrally provided with the guide ring support member 30A, and the other base end portion is mounted on the guide ring support member 30B. As Figure 2 shown, a reverse mechanism 50 is provided inside the arm portion 20A. The reverse mechanism 50 will be described in detail later.

[0035] As Figure 1 shown, the spool 10 is cylindrical and has a fishing line winding main body portion 10c for winding a fishing line (not shown) between the skirt portion 10a and the front flange 10b.

[0036] In such a spinning reel R1 for fishing, when the handle 4 is wound up, the rotor 2 is driven to rotate via the drive gear 6 and the pinion 7a, and the spool 10 is moved forward and backward via the pinion 7a and the swing mechanism 9. Thus, a fishing line (not shown) is evenly wound around the fishing line winding body 10c of the spool 10 via the line roller 2g.

[0037] Next, the arm portion 20A and the reversing mechanism 50 provided in the arm portion 20A will be described in detail.

[0038] like Figure 1 As shown, the arm portion 20A includes an arm body portion 21 and a cover member 22 covering the arm body portion 21. The arm body portion 21 is substantially L-shaped when viewed from the side, and extends forward from the rear end of the rotor 2 along the skirt portion 10a of the spool 10. Between the arm body portion 21 and the cover member 22, a storage space S for storing components constituting the reversing mechanism 50 is formed.

[0039] The reversing mechanism 50 is a structure that is provided on the wire loop 31 (see Figure 1 ) is pulled up to the fishing line release position, and the handle 4 (refer to Figure 1 ) is performed by the winding operation and the rotor 2 rotates, so that the wire loop supporting member 30A is reversed and the wire loop 31 is returned to the fishing line winding position.

[0040] The reversing mechanism 50 includes a guide 51 and a return contact member 61. The guide 51 includes a shaft 52 and a guide member 53.

[0041] The shaft 52 is a member that slidably supports the guide member 53, and the front end portion is connected to the wire loop support member 30A via the connecting shaft 35. A coil spring 52a is installed between the shaft 52 and the guide member 53, and the coil spring 52a is compressed and biased.

[0042] The guide member 53 is rotatably mounted on the arm body 21 via the shaft portion 53a. The guide member 53 has a through hole formed along the longitudinal direction through which the shaft 52 passes.

[0043] The guide member 53 and the return member 61 of the reversing mechanism 50 are described in detail below.

[0044] The guide member 53 includes a substantially rectangular parallelepiped base 53b having a shaft 53a formed therein and a guide contact portion 53c extending from the top end of the base 53b to the rear. The guide contact portion 53c is a portion against which the reset contact member 61 contacts. Figure 2(As shown in (a), the guide contact portion 53c is inclined and extends toward the right side (the side where the reset contact member 61 is disposed) with respect to the center line O1 of the base portion 53b passing through the center of the through shaft portion 53a, and is close to the reset contact member 61 disposed on the right side. As Figure 4 (As shown in (a) and (b), on the right side surface of the guide contact portion 53c, a first guide surface 54a and a second guide surface 54b are formed which function as contact surfaces for the reset contact member 61 to contact. That is, the guide contact portion 53c has two contact surfaces that are different in position in the front-rear direction.

[0045] The first guide surface 54a is a flat contact surface formed on the tip side of the right side surface of the guide contact portion 53c. As Figure 4 (As shown in (b), the first guide surface 54a is arranged to be substantially parallel to the central axis O2 of the rotation shaft 60 (described later) of the reset contact member 61 at the fishing line payout position. In addition, the first guide surface 54a becomes slightly narrower toward the tip, and the surface width becomes smaller toward the tip surface. The first guide surface 54a functions as a contact surface for receiving the first contact portion 63a (described later) of the reset contact member 61.

[0046] The second guide surface 54b is a flat contact surface continuous with the rear end portion of the first guide surface 54a, and is a surface substantially parallel to the center line O1 of the base portion 53b.

[0047] The first guide surface 54a is slightly inclined toward the right side with respect to the second guide surface 54b (center line O1), and is further closer to the reset contact member 61 on the right side.

[0048] Here, as Figure 4 (As shown in (a) and (b), when the distance from the center of the shaft portion 53a to the central portion in the front-rear direction of the first guide surface 54a is L1, and the distance from the center of the shaft portion 53a to the central portion in the front-rear direction of the second guide surface 54b is L2, their relationship is set to L1 < L2.

[0049] Next, the reset contact member 61 will be described. As Figure 2 (As shown in (b), the reset contact member 61 is pivotally supported by the rotation shaft 60 at the rear end portion of the arm body portion 21, and is arranged to be rotatable in the left-right direction about the rotation shaft 60. By the rotation of the rotor 2 in the fishing line winding direction formed by the rotation operation of the handle 4, the reset contact member 61 contacts the guide contact portion 53c of the guide member 53, and transmits the contact force to the guide member 53. The reset contact member 61 has a first contact portion 63a and a second contact portion 65a that contact the guide contact portion 53c.

[0050] As Figure 4 (a) and (b),Figure 5A , Figure 5B As shown in Figure 5B , the abutting member 61 for resetting includes: an annular bearing portion 62 through which the rotating shaft 60 passes; a protruding portion 63 that protrudes radially outward from the bearing portion 62 with the rotating shaft 60 as the center; and a protruding portion 65 that protrudes from the protruding portion 63 toward the guide member 53 in the axial direction of the rotating shaft 60. In addition, the abutting member 61 for resetting includes a roller support portion 64 that protrudes toward the side substantially opposite to the protruding portion 63. The roller 64a is rotatably supported on the roller support portion 64.

[0051] As Figure 5A , Figure 5B shown in Figure 5B , the bearing portion 62 includes a hole portion 62a through which the rotating shaft 60 passes. The bearing portion 62 is annular and surrounds the hole portion 62a, and has an arcuate reinforcing wall 62b that protrudes toward the front side in the axial direction.

[0052] As Figure 2 (a)(b), Figure 4 As shown in Figure 4 (a), in the fishing line winding position, the protruding portion 63 is disposed substantially on the left side of the central axis O2 of the rotating shaft 60. In addition, as Figure 3 (a)(b), Figure 4 shown in Figure 4 (b), in the fishing line unwinding position, the protruding portion 63 is disposed on the right side of the central axis O2 of the rotating shaft 60.

[0053] As Figure 5A shown in Figure 5A , a first abutting portion 63a is formed on the side surface of the protruding portion 63. The first abutting portion 63a is located radially outside the bearing portion 62 and is formed by a circular surface continuous from the outer peripheral surface of the bearing portion 62. Thus, during the rotation of the abutting member 61 for resetting, the first abutting portion 63a follows the rotation and appropriately abuts against the first guiding surface 54a. In addition, when observed from the radial direction of the rotating shaft 60, the first abutting portion 63a has an abutting surface configured to be substantially parallel to the central axis O2 of the rotating shaft 60. Thus, as Figure 4 shown in Figure 4 (b), the first abutting portion 63a abuts against the first guiding surface 54a of the guide abutting portion 53c substantially in parallel in the fishing line unwinding position.

[0054] Such a first abutting portion 63a abuts against the first guiding surface 54a of the guide abutting portion 53c during the first half of the rotation when the abutting member 61 for resetting rotates from the fishing line unwinding position to the fishing line winding position.

[0055] On the other hand, as Figure 5A , Figure 5B shown in Figure 5B , a second abutting portion 65a is formed on the side surface of the protruding portion 65. As Figure 5BAs shown, the second abutting portion 65a is located on the front side in the axial direction relative to the first abutting portion 63a, and is formed by an inclined surface obtained by obliquely cutting off the front end corner of the protruding portion 65. A circular surface 65a1 is continuously formed on the upper end portion of the second abutting portion 65a. As Figure 4 shown in (a), the second abutting portion 65a abuts against the second guiding surface 54b of the guide member abutting portion 53c in the fishing line winding position.

[0056] In addition, as Figure 2 shown in (a), the abutting member 61 for reset is always urged downward by the spring member 66 disposed around the rotating shaft 60, that is, in the direction in which the protruding portion 63 and the protruding portion 65 abut against the guide member abutting portion 53c.

[0057] As Figure 3 shown in (b), the roller 64a of the abutting member 61 for reset protrudes to the inner side in the radial direction of the rotor 2 in the fishing line paying-out position and slidably contacts the outer peripheral portion 26 of the front portion of the reel body 1. On the outer peripheral portion 26, the reset member 25 is provided at a position where it interferes with the roller 64a. The reset member 25 is configured to interfere with the roller 64a during the rotation of the rotor 2 in the fishing line winding direction caused by the rotational operation of the handle 4, and impart a rotational force for resetting the wire guide support members 30A and 30B to the fishing line winding position to the abutting member 61 for reset.

[0058] Next, the operation when the wire guide support members 30A and 30B are manually pulled up from the fishing line winding position to the fishing line paying-out position will be described. When the wire guide support members 30A and 30B are manually pulled up from Figure 2 the fishing line winding position shown in (a) and (b) to Figure 3 the fishing line paying-out position shown in (a) and (b), as the wire guide support members 30A and 30B rotate, the guiding member 53 rocks in the counterclockwise rotation direction about the shaft portion 53a, and the guide member abutting portion 53c presses the abutting member 61 for reset.

[0059] At this moment, in the first half of the pulling operation when manually pulling up, the second guiding surface 54b of the guide member abutting portion 53c presses the second abutting portion 65a of the abutting member 61 for reset, and in the second half of the pulling operation, the first guiding surface 54a of the guide member abutting portion 53c presses the first abutting portion 63a of the abutting member 61 for reset. Through these pressing actions, the abutting member 61 for reset rotates about the rotating shaft 60, and the roller 64a of the abutting member 61 for reset slidably contacts the outer peripheral portion 26 of the front portion of the reel body 1.

[0060] Next, the function of the reversing mechanism 50 will be described. When the handle 4 is rotated while the wire loop support members 30A and 30B are in the fishing line paying-out position, the roller 64a of the reset abutting member 61 moves on the outer peripheral portion 26 of the front part of the reel body 1 and, as shown in Figure 6 (b), rides on the cam surface 25a of the reset member 25.

[0061] By the riding of this roller 64a, the reset abutting member 61 rotates in the clockwise rotation direction about the rotation shaft 60, and with this rotation, as shown in Figure 6 (a), the first guide surface 54a of the guide member 53 is pressed by the first abutting portion 63a. As a result, the guide member 53 rocks in the clockwise rotation direction about the shaft portion 53a. By this rocking, the force for rotating the wire loop support member 30A is transmitted through the shaft 52, and then the wire loop support member 30A starts to rotate toward the fishing line winding position.

[0062] In the first half of the rocking of the guide member 53 like this, the state where the first guide surface 54a of the guide member 53 is pressed by the first abutting portion 63a continues, and the abutting force of the first abutting portion 63a is appropriately transmitted to the first guide surface 54a of the guide member 53.

[0063] Thereafter, while the roller 64a of the reset abutting member 61 rides on the cam surface 25a of the reset member 25 and moves toward the top surface 25b, the reset abutting member 61 further rotates in the counterclockwise rotation direction about the rotation shaft 60, and with this rotation, the portion pressing the guide member 53 changes from the first abutting portion 63a to the second abutting portion 65a.

[0064] That is, in the second half of the rocking of the guide member 53, as shown in Figure 7 (b), near the force distribution point (dead point) of the biasing of the coil spring 52a of the guide 51, the portion pressing the guide member 53 changes from the first abutting portion 63a to the second abutting portion 65a, and after the change, the abutting force of the second abutting portion 65a is appropriately transmitted to the second guide surface 54b of the guide member 53. In addition, the biasing of the spring member 66 of the reset abutting member 61 is also appropriately used as the abutting force of the second abutting portion 65a.

[0065] The wire loop support member 30A is appropriately reset to the fishing line winding position by the abutting forces of the first abutting portion 63a and the second abutting portion 65a like this.

[0066] According to the embodiment described above, the abutting member 61 for resetting has two abutting portions, that is, a first abutting portion 63a that abuts against the first guiding surface 54a of the guiding member 53 during the rotation of the first half portion of the abutting member 61 for resetting, and a second abutting portion 65a that abuts against the second guiding surface 54b of the guiding member 53 during the rotation of the second half portion of the abutting member 61 for resetting. Among them, on the abutting member 61 for resetting, the first abutting portion 63a is formed on the protruding portion 63 that protrudes radially outward from the bearing portion 62 for passing through the rotating shaft 60. Therefore, the abutting force of the abutting member 61 for resetting can be transmitted to the first guiding surface 54a of the guiding member 53 on the radial extension of the bearing portion 62. Thus, when the first abutting portion 63a abuts against the first guiding surface 54a, smooth rotation of the abutting member 61 for resetting can be achieved, and the bearing portion 62 does not tilt relative to the rotating shaft 60. Thereby, the abutting force of the abutting member 61 for resetting can be efficiently transmitted to the guiding member 53, and the operating feeling during the reset of the rotational operation of the handle 4 can be improved.

[0067] In addition, since the relationship between the distance L1 from the center of the swing of the guiding member 53 (the center of the shaft portion 53a) to the first guiding surface 54a and the distance L2 from the center of the swing of the guiding member 53 (the center of the shaft portion 53a) to the second guiding surface 54b is L1 > L2, the abutting force of the abutting member 61 for resetting can be efficiently transmitted to the guiding member during the rotation of the first half portion, and the rotation of the first half portion requires a greater abutting force than the rotation of the second half portion of the abutting member 61 for resetting. Thus, the operating feeling during the reset of the rotational operation of the handle 4 can be improved.

[0068] In addition, since the second abutting portion 65a abuts against the second guiding surface 54b during the rotation of the second half portion of the abutting member 61 for resetting, it is not necessary to form the guiding member 53 to a length greater than necessary, and thus the compactness of the structure can be achieved. In addition, since the rotation of the second half portion of the abutting member 61 for resetting does not require a greater abutting force than the rotation of the first half portion, even if the configuration is such that the second abutting portion 65a abuts against the second guiding surface 54b, the abutting force of the abutting member 61 for resetting can be efficiently transmitted to the guiding member 53, and the bearing portion 62 does not tilt relative to the rotating shaft 60.

[0069] In addition, since, when observed from the radial direction of the rotating shaft 60, the abutting surface of the first abutting portion 63a and the first guiding surface 54a are substantially parallel, the abutting force can be efficiently transmitted from the first abutting portion 63a to the first guiding surface 54a. Thus, the operating feeling during the reset of the rotational operation of the handle 4 can be further improved.

[0070] As described above, although the embodiments of the present invention have been described, the present invention is not limited to the above-described configuration, and appropriate modifications can be made without departing from the gist thereof.

[0071] For example, the protruding portion 63 of the abutting member 61 for resetting only needs to protrude radially outward from the bearing portion 62 and have the first abutting portion 63a, and various shaped members can be used. In addition, the protruding portion 65 of the abutting member 61 for resetting only needs to protrude toward the guide member 51 side from the protruding portion 63 in the axial direction of the rotating shaft 60 and have the second abutting portion 65a, and various shaped members can be used.

[0072] In addition, the guide member 53 only needs to have the first guide surface 54a that abuts against the first abutting portion 63a and the second guide surface 54b that abuts against the second abutting portion 65a and satisfy the relationship of L1>L2, and various shaped members can be used. In addition, it is not necessary to use the central portion of the first guide surface 54a as the reference point for the distance L1, and further, it is not necessary to use the central portion of the second guide surface 54b as the reference point for the distance L2. The reference points for the distance L1 and the distance L2 can also be set at appropriate positions on the first guide surface 54a and the second guide surface 54b.

[0073] In addition, although in the above-described embodiment, the case where the portion pressing the guide member 53 changes from the first abutting portion 63a to the second abutting portion 65a after exceeding the dead point at the time of reset has been described, it is not limited thereto, and it can also be configured to change before and after the dead point at the time of reset.

Claims

1. A spinning reel for fishing, comprising: An arm portion provided on a rotor included in the reel body; A guide ring support member mounted on the arm portion and rotatable between a fishing line winding position and a fishing line paying-out position; And a reverse mechanism for returning the guide ring support member from the fishing line paying-out position to the fishing line winding position, Characterized in that, The reverse mechanism includes: A guide member having an end connected to the guide ring support member and swingably mounted on the arm portion; And a reset abutting member rotatably provided on the arm portion through a rotating shaft and abutting against the guide member by rotation of the rotor in the fishing line winding direction to return the guide ring support member in the fishing line paying-out position to the fishing line winding position, The reset abutting member includes: a bearing portion through which the rotating shaft passes; an extending portion extending radially outward from the bearing portion about the rotating shaft; and a protruding portion protruding from the extending portion toward the guide member in the axial direction of the rotating shaft, On the extending portion, a first abutting portion that abuts against the guide member during the first half rotation of the reset abutting member is formed, On the protruding portion, a second abutting portion that abuts against the guide member during the second half rotation of the reset abutting member is formed, On the guide member, a first guiding surface that abuts against the first abutting portion and a second guiding surface that abuts against the second abutting portion are formed, When the distance from the center of swing of the guide member to the first guiding surface is L1, And the distance from the center of swing of the guide member to the second guiding surface is L2, The relationship L1>L2 is satisfied, The first guiding surface is parallel to the central axis (O2) of the rotating shaft, The second guiding surface is parallel to the central axis (O1) of the base portion of the guide member, The first guiding surface is inclined in the right direction with respect to the second guiding surface and toward the reset abutting member on the right side.

2. The spinning reel for fishing according to claim 1, characterized in that, When viewed from the radial direction of the rotating shaft, the abutting surface of the first abutting portion and the first guiding surface abut in parallel.

Citation Information

Patent Citations

  • Spinning reel for fishing

    JP2016202133A

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