Pad holder and brake caliper device for railway vehicles
The pad holder design with a limiting and fixing mechanism ensures correct brake pad installation in railway vehicles, addressing the issue of incorrect installation in existing systems.
Patent Information
- Application Number
- JP2021085395
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Filing Date
- 2021-05-20
- Publication Date
- 2025-09-11
- Estimated Expiration
- 2041-05-20
AI Technical Summary
Existing brake pad holders for railway vehicles do not reliably prevent incorrect installation without requiring special shapes on the brake pads, leading to potential installation errors.
A pad holder design with an arcuate brake pad attachment to a base plate, featuring a limiting portion that prevents incorrect insertion by engaging with the brake pad in one direction while allowing correct insertion, and a fixing portion to secure the pad in the correct orientation.
Prevents incorrect installation of brake pads by ensuring they are attached in the correct orientation, enhancing the reliability and efficiency of brake caliper devices in railway vehicles.
Smart Images

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Abstract
Description
[Technical Field]
[0001] The present invention relates to a pad holder and a brake caliper device for a railway vehicle. [Background technology]
[0002] Conventionally, there has been known a brake caliper device that applies a braking force to a wheel by pressing a brake pad against a disc that rotates integrally with the wheel of a railway vehicle, etc. The brake caliper device includes, for example, a pad holder on which the brake pad is attached, a caliper lever to which the pad holder is attached, and a cylinder device that is operated by a fluid such as compressed air to move the caliper lever and move the pad holder toward and away from the disc.
[0003] There is a known technique for preventing incorrect installation when installing brake pads on a brake caliper device. Patent Document 1 discloses that a brake pad assembly is divided into an upper brake pad assembly and a lower brake pad assembly, and that part of the end face of each of the two brake pad assemblies is biased relative to the other part. In Patent Document 1, this technique prevents the brake pad assembly from being installed on the brake caliper device when the brake pad assembly is incorrectly combined. [Prior art documents] [Patent documents]
[0004] [Patent Document 1] Japanese Patent Application Laid-Open No. 2015-10614 Summary of the Invention [Problem to be solved by the invention]
[0005] There is a need for a pad holder that can reliably prevent incorrect installation of brake pads when installing brake pads in the pad holder of a brake caliper device. In particular, there is a need for a pad holder that can prevent incorrect installation without requiring the brake pads to have a special shape as in Patent Document 1.
[0006] The present invention has been made in consideration of the above circumstances, and has as its object to provide a pad holder that prevents brake pads from being installed incorrectly. [Means for solving the problem]
[0007] The pad holder according to the present invention comprises: A pad holder in which an arcuate brake pad is attached to a base plate, The base plate is an insertion portion into which a linear insertion portion provided on the brake pad is inserted; a limiting portion that does not come into contact with the brake pad when the inserting portion is inserted in one longitudinal direction, and that comes into contact with the brake pad when the inserting portion is inserted in the other longitudinal direction, thereby limiting insertion of the inserting portion into the inserted portion; It has.
[0008] In the pad holder according to the present invention, The brake pads are a first length, which is the maximum length from a center line in the width direction of the inserted portion to one side of the width direction, is longer than a second length, which is the maximum length from the center line to the other side of the width direction; The limiting portion may be provided in a region on the base plate, the distance from the center line in the width direction being greater than the second length and less than the first length.
[0009] In the pad holder according to the present invention, The limiting portion may be provided on the entrance side where the brake pad is inserted.
[0010] In the pad holder according to the present invention, The brake pad is divided into two parts at a dividing plane perpendicular to the longitudinal direction, such that the continuous insertion portion is plane-symmetrical with respect to the dividing plane, and the total length of the two divided brake pads in the longitudinal direction is longer than the total length of the insertion portion of the brake pad, The pad holder may further have a fixing portion that engages with the brake pad at a location where the end of the insertion portion opposite the insertion direction of the brake pad is located when the insertion portion of the two-piece brake pad is inserted in one of the directions, thereby fixing the brake pad.
[0011] In the pad holder according to the present invention, When the two divided brake pads are attached to the base plate in the correct orientation, the end opposite the insertion direction of the tip pad located at the tip end of the two divided brake pads in the insertion direction and the end on the tip side of the insertion direction of the base pad located at the opposite end of the two divided brake pads in the insertion direction may be continuous.
[0012] In the pad holder according to the present invention, The brake pad may be shaped to comply with UIC standards.
[0013] In the pad holder according to the present invention, The brake pads are 200cm 2 It is a conforming shape, The region where the limiting portion is provided may be a region that is more than 6.5 cm and less than 7.5 cm away from the center line in the width direction of the inserted portion.
[0014] In the pad holder according to the present invention, The brake pads are 200cm 2 It is a conforming shape, The region where the limiting portion is provided may be a region that is more than 32.1 cm and less than 35.95 cm away from the end of the inserted portion on the tip side in the insertion direction of the brake pad in the longitudinal direction.
[0015] In the pad holder according to the present invention, The brake pads are 175cm 2 It is a conforming shape, The region where the limiting portion is provided may be a region that is more than 6.4 cm and less than 7.6 cm away from the center line in the width direction of the inserted portion.
[0016] In the pad holder according to the present invention, The brake pads are 175cm 2 It is a conforming shape, The region where the limiting portion is provided may be a region that is more than 30.46 cm and less than 32.27 cm away from the end of the inserted portion on the tip side in the insertion direction of the brake pad in the longitudinal direction.
[0017] In the pad holder according to the present invention, The length of the limiting portion in the height direction may be 3 mm or more and less than the wear limit of the brake pad.
[0018] In the pad holder according to the present invention, The base plate may be provided at its tip end in the direction of insertion of the brake pad with a mounting hole for mounting a pin for rotatably connecting with a hanger mounted on a bogie of a railway vehicle.
[0019] The brake caliper device for a railway vehicle according to the present invention comprises: a pair of pad holders on which a pair of brake pads, each of which has an arch-shaped shape, are attached, the base plate having an insertion portion into which a linear insertion portion provided on the brake pad is inserted, and a limiting portion that does not come into contact with the brake pad when the insertion portion is inserted in one longitudinal direction, and that comes into contact with the brake pad when the insertion portion is inserted in the other longitudinal direction, thereby limiting insertion of the insertion portion into the insertion portion; a pair of caliper levers, each of which has a tip end attached to one of the pair of pad holders; an actuator that drives each of the pair of caliper levers so that the brake pads attached to the pad holders are pressed against wheels of a railway vehicle; Equipped with. [Effects of the Invention]
[0020] According to the present invention, it is possible to provide a pad holder that prevents brake pads from being installed incorrectly. [Brief explanation of the drawings]
[0021] [Figure 1] 1 is a perspective view showing a brake caliper device including a pad holder according to an embodiment of the present invention; [Figure 2] 2 is a perspective view showing a pad holder and a brake pad attached to the pad holder in the embodiment. FIG. [Figure 3] FIG. 2 is a front view showing a pad holder and a brake pad attached to the pad holder in the embodiment. [Figure 4] FIG. 4 is a cross-sectional view of the brake pad taken along line AA in FIG. 3. [Figure 5] FIG. 2 is a side view showing a brake pad according to the embodiment. [Figure 6] 10A and 10B are diagrams showing examples of patterns in which brake pads are incorrectly attached to a base plate. [Figure 7] 10A and 10B are diagrams showing examples of patterns in which brake pads are incorrectly attached to a base plate. [Figure 8] 10A and 10B are diagrams showing examples of patterns in which brake pads are incorrectly attached to a base plate. [Figure 9] 10A and 10B are diagrams showing examples of patterns in which brake pads are incorrectly attached to a base plate. [Figure 10] 10A and 10B are diagrams showing examples of patterns in which brake pads are incorrectly attached to a base plate. [Figure 11] 10A and 10B are diagrams showing examples of patterns in which brake pads are incorrectly attached to a base plate. [Figure 12] 10A and 10B are diagrams showing examples of patterns in which brake pads are incorrectly attached to a base plate. [Figure 13] 10A and 10B are diagrams showing examples of patterns in which brake pads are incorrectly attached to a base plate. [Figure 14] 10A and 10B are diagrams showing examples of patterns in which brake pads are incorrectly attached to a base plate. [Figure 15] 10A and 10B are diagrams showing examples of patterns in which brake pads are incorrectly attached to a base plate. [Figure 16] 10A and 10B are diagrams showing examples of patterns in which brake pads are incorrectly attached to a base plate. [Figure 17] 10A and 10B are diagrams showing examples of patterns in which brake pads are incorrectly attached to a base plate. [Figure 18] 10A and 10B are diagrams showing examples of patterns in which brake pads are incorrectly attached to a base plate. [Figure 19] 10A and 10B are diagrams showing examples of patterns in which brake pads are incorrectly attached to a base plate. [Figure 20] 10A and 10B are diagrams showing examples of patterns in which brake pads are incorrectly attached to a base plate. [Figure 21] FIG. 10 is a perspective view showing a pad holder and a brake pad attached to the pad holder in a modified example. DETAILED DESCRIPTION OF THE INVENTION
[0022] DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS An embodiment of the present invention will be described in detail with reference to the drawings. Figures 1 to 20 are diagrams for explaining this embodiment. Among these, Figure 1 is a perspective view showing a brake caliper device 1.
[0023] To clarify the directional relationships between the drawings, several drawings, including FIG. 1, use arrows to indicate the first direction DA, the second direction DB, and the third direction DC as common directions between the drawings. The tip of the arrow represents one of the directions SA1, SB1, and SC1 of each of the directions DA, DB, and DC. Arrows pointing toward the front of the drawing along a direction perpendicular to the plane of the drawing are indicated by a symbol with an X inside a circle, as shown in FIG. 3, for example. Furthermore, in the diagram showing the pad holder 2 provided in the brake caliper device 1, the direction and orientation are shown when the brake pad 3 is properly attached to the pad holder 2, which also forms the brake caliper device 1 together with other components. Furthermore, in the diagram showing the brake pad 3 attached to the pad holder 2 alone, as in FIG. 5 described later, the direction and orientation are shown when the brake pad 3 is properly attached to the pad holder 2, which also forms the brake caliper device 1 together with other components.
[0024] In the illustrated example, the first direction DA, the second direction DB, and the third direction DC are perpendicular to one another. The first direction DA is parallel to the vertical direction. One side SA1 of the first direction DA is above in the vertical direction, and the other side SA1 opposite to the one side of the first direction DA is below in the vertical direction.
[0025] First, a brake caliper device 1 including a pad holder 2 according to this embodiment will be described with reference to Fig. 1. The brake caliper device 1 shown in Fig. 1 is a brake caliper device for a railway vehicle that is attached to the railway vehicle and applies braking force to the wheels of the railway vehicle.
[0026] The brake caliper device 1 comprises a pair of pad holders 2, a pair of caliper levers 4 to which each of the pair of pad holders 2 is attached at its tip, and an actuator 5 that drives each of the pair of caliper levers 4 so that the brake pads attached to the pad holders 2 are pressed against the wheels of the railway vehicle.
[0027] The brake caliper device 1 shown in Fig. 1 is a so-called bracket-type brake caliper device 1. The brake caliper device 1 further includes a bracket 6 attached to a bogie of a railway vehicle, and a body 7 rotatably suspended from the bracket 6. The body 7 rotatably holds each of a pair of caliper levers 4 so that a pair of brake pads 3 (described later) attached to a pair of pad holders 2 can move between a position where they are pressed against a wheel disc (not shown) and a position where they are not pressed against the wheel disc.
[0028] As will be described later, a pair of brake pads 3, each of which is arch-shaped, are attached to the base plates 24 of the pair of pad holders 2. One of the pair of pad holders 2 will be referred to as the first pad holder 21, and the other of the pair of pad holders 2 will be referred to as the second pad holder 22. Furthermore, one of the pair of brake pads 3 attached to the pair of pad holders 2 will be referred to as the first brake pad 31, and the other of the pair of brake pads 3 will be referred to as the second brake pad 32. Here, the first brake pad 31 is attached to the first pad holder 21. Furthermore, the second brake pad 32 is attached to the second pad holder 22.
[0029] The actuator 5 also outputs a force that causes the pair of caliper levers 4 to clamp the disc via the pad holder 2 and the brake pad 3. In the example shown in Fig. 1, the actuator 5 is a cylinder device that outputs a force that causes the pair of caliper levers 4 to clamp the disc by supplying and discharging compressed air. In the example shown in Fig. 1, the cylinder device that is the actuator 5 drives each of the pair of caliper levers 4 to rotate them relative to the body 7, thereby pressing the brake pad 3 attached to the pad holder 2 against the disc.
[0030] By attaching a pair of brake pads 3 (described later) to a pair of pad holders 2 of the brake caliper device 1 shown in Figure 1, a brake caliper device with brake pads can be formed, which includes the brake caliper device 1 and the pair of brake pads 3.
[0031] FIG. 2 is a perspective view showing a first pad holder 21 according to this embodiment and a first brake pad 31 attached to the first pad holder 21 in the correct orientation. Hereinafter, the pad holder 2 and the brake pad 3 will be described using the first pad holder 21 and the first brake pad 31 as an example. As shown in FIG. 1 , the second pad holder 22 has a shape that is plane-symmetrical to the first pad holder 21 with respect to a plane parallel to the first direction DA and the second direction DB. The description of the second pad holder 22 is the same as the description of the first pad holder 21, except that the shape of the second pad holder 22 is plane-symmetrical to the shape of the first pad holder 21, as described above. Furthermore, the second brake pad 32 has a shape that is plane-symmetrical to the first brake pad 31 with respect to a plane parallel to the first direction DA and the second direction DB, when the pair of brake pads 3 are attached to the pair of pad holders 2 of the brake caliper device 1. The description of the second brake pad 32 is the same as the description of the first brake pad 31, except that the shape of the second brake pad 32 is plane symmetrical to the shape of the first brake pad 31, as described above.
[0032] The brake pad 3 mounted on the pad holder 2 will now be described. Fig. 3 is a front view showing a first brake pad 31 mounted in the correct orientation on the first pad holder 21 according to this embodiment, together with the first pad holder 21, as viewed from the side of the surface that faces the disc when mounted on the first pad holder 21. Fig. 4 is a cross-sectional view showing a cross section of the first brake pad 31 mounted on the first pad holder 21 along line AA in Fig. 3, together with a portion of the cross section of the first pad holder 21.
[0033] The brake pad 3 is provided with a linear insertion portion 33. As shown in FIG. 4, the brake pad 3 has a pad body 34 and the insertion portion 33 formed on the pad body 34. As shown in FIG. 4, the pad body 34 has a first surface 3a that faces the disc when the brake pad 3 is attached to the pad holder 2, and a second surface 3b that faces the pad holder 2. The insertion portion 33 is formed on the second surface 3b of the pad body 34. The lines labeled 331 and 231 in FIG. 3 respectively indicate the position of the base 33b of the insertion portion 33 formed on the second surface 3b of the pad body 34 and the position of the opening 23b of the inserted portion 23 (described later) of the pad holder 2 to which the brake pad 3 is attached. As shown in FIG. 3, the insertion portion 33 according to this embodiment has a linear shape with the first direction DA as its longitudinal direction. Although not shown, a linear groove may be provided on the first surface 3a of the pad body 34.
[0034] The insertion portion 33 is linear and has a shape that can engage with the inserted portion 23 of the pad holder 2, which will be described later. In the example shown in FIG. 4, the insertion portion 33 is a linear convex portion. In this case, as will be described later, the inserted portion 23 is a linear concave portion. Although not shown, the insertion portion 33 may also be a linear concave portion. In this case, the inserted portion 23 is a linear convex portion. The width direction of the insertion portion 33, which is a linear convex portion (the second direction DB shown in FIGS. 2 and 3), or the width direction of the insertion portion 33, which is a linear concave portion, is also referred to as the short side direction. Below, an example will be described in which the insertion portion 33 is a linear convex portion and the inserted portion 23 is a linear concave portion.
[0035] When the insertion portion 33 is a linear convex portion as shown in Figure 4, the width w2 in the short direction of the tip 33a of the insertion portion 33 in the height direction (third direction DC) of the insertion portion 33 is larger than the width w1 in the short direction of the base 33b of the insertion portion 33.
[0036] The brake pad 3 has an arched shape. Here, the term "arched" means that, when viewed from the thickness direction of the brake pad 3 as shown in FIG. 3, at least a portion of a first side 3c of the brake pad 3 located on one side of the short side is convex toward one side of the short side, and at least a portion of a second side 3d located on the other side of the short side is concave toward one side of the short side. In this embodiment, as shown in FIG. 3, the entire first side 3c of the brake pad 3 located on one side SB1 of the second direction DB is convex toward one side SB1 of the second direction DB, and a portion of the second side 3d located opposite the one side SB1 of the second direction DB is concave toward one side SB1 of the second direction DB. The portion of the first side 3c that is convex toward one side of the short side may be arc-shaped. The portion of the second side 3d that is concave toward one side of the short side may be arc-shaped.
[0037] As shown in FIG. 3 , a virtual line L2 that can be drawn in a view of the brake pad 3 viewed from the thickness direction (third direction DC in FIG. 2 ) and passes through the center of the insertion portion 33 in the lateral direction and extends in the longitudinal direction of the insertion portion 33 is referred to as the insertion portion center line L2. In this embodiment, the maximum length w5 in the lateral direction of the insertion portion 33 from the insertion portion center line L2 to one side of the lateral direction (one side SB1 in the second direction DB) is longer than the maximum length w6 from the insertion portion center line L2 to the other side of the lateral direction (the side opposite to one side SB1 in the second direction DB). In this embodiment, the length w5 corresponds to the maximum distance in the lateral direction between the insertion portion center line L2 and a first side 3c, which is located on one side of the lateral direction among the sides of the brake pad 3. Furthermore, the length w6 corresponds to the maximum distance in the lateral direction between the insertion portion center line L2 and a second side 3d, which is located on the other side of the lateral direction among the sides of the brake pad 3.
[0038] FIG. 5 is a side view showing the first brake pad 31 shown in FIG. 2 as viewed from one side SB1 in the second direction DB. As shown in FIGS. 3 and 5, the brake pad 3 according to this embodiment is divided into two parts at a dividing plane 3e perpendicular to the longitudinal direction. Furthermore, as shown in FIGS. 3 and 5, the insertion portion 33 is plane-symmetrical with respect to the dividing plane 3e. In the example shown in FIGS. 3 and 5, a portion of the insertion portion 33 located on one side of the dividing plane 3e in the longitudinal direction (one side SA1 in the first direction DA) and a portion of the insertion portion 33 located on the other side of the dividing plane 3e in the longitudinal direction (the opposite side SA1 in the first direction DA) are in surface contact at the dividing plane 3e, thereby forming a continuous piece. When the brake pad is divided into two parts plane-symmetrically, the insertion portion 33 being continuous means that a portion of the insertion portion 33 included in one of the two divided brake pads 3 and a portion of the insertion portion 33 included in the other of the two divided brake pads 3 are in surface contact with each other. Although not shown, when the brake pad 3 is attached to the pad holder 2, a portion of the insertion portion 33 located on one side of the dividing surface 3e in the longitudinal direction and a portion of the insertion portion 33 located on the other side of the dividing surface 3e in the longitudinal direction may be spaced apart from each other. In the examples shown in Figures 3 and 5, the entire brake pad 3 is plane-symmetrical with respect to the dividing surface 3e.
[0039] Of the two divided brake pads 3, a portion located on one side of the dividing surface 3e in the longitudinal direction (one side SA1 in the first direction DA) is referred to as the tip pad 35. Furthermore, of the two divided brake pads 3, a portion located on the other side of the dividing surface 3e in the longitudinal direction (the opposite side of the one side SA1 in the first direction DA) is referred to as the root pad 36. The tip pad 35 includes a portion of the two divided pad bodies 34 located on one side of the dividing surface 3e in the longitudinal direction and a portion of the two divided insertion portions 33 located on one side of the dividing surface 3e in the longitudinal direction. Furthermore, the root pad 36 includes a portion of the two divided pad bodies 34 located on the other side of the dividing surface 3e in the longitudinal direction and a portion of the two divided insertion portions 33 located on the other side of the dividing surface 3e in the longitudinal direction. In the example shown in FIGS. 3 and 5, the tip pad 35 and the root pad 36 are plane-symmetrical with respect to the dividing surface 3e. The portion of the inserting portion 33 that is included in the tip pad 35 is referred to as a tip inserting portion 351. The portion of the inserting portion 33 that is included in the base pad 36 is referred to as a base inserting portion 361.
[0040] In other words, the brake pad 3 includes a tip pad 35 and a root pad 36 that are separable from each other. When the two-piece brake pad 3 is attached to the base plate 24 in the correct orientation, the tip pad 35 and the root pad 36 come into surface contact with each other. The surface where the tip pad 35 and the root pad 36 come into contact with each other corresponds to the above-mentioned dividing surface 3e. In other words, when the tip pad 35 and the root pad 36 are attached to the base plate 24 in the correct orientation, the tip pad 35 and the root pad 36 are plane-symmetrical with respect to the plane where they come into surface contact with each other.
[0041] In the example shown in Fig. 3, the tip pad 35 and the root pad 36 included in one brake pad 3 have different shapes. Note that the tip pad 35 of the first brake pad 31 attached to the first pad holder 21 shown in Fig. 1 and the root pad 36 of the second brake pad 32 attached to the second pad holder 22 have the same shape. Also, the root pad 36 of the first brake pad 31 attached to the first pad holder 21 shown in Fig. 1 and the tip pad 35 of the second brake pad 32 attached to the second pad holder 22 have the same shape.
[0042] Fig. 5 is a side view showing the brake pad 3 shown in Fig. 2 as viewed from one side SB1 in the second direction DB. As shown in Fig. 5, the total length w7 of the two-piece brake pad 3 in the longitudinal direction (first direction DA) is longer than the total length w8 of the insertion portion 33 of the brake pad 3 in the longitudinal direction. In this case, the brake pad 3, which is divided into the tip pad 35 and the root pad 36, is plane-symmetrical with respect to the dividing plane 3e, and therefore the following relationship also holds: The length w17 of the tip pad 35 in the longitudinal direction is longer than the length w15 of the tip insertion portion 351 in the longitudinal direction. Furthermore, the length w16 of the root pad 36 in the longitudinal direction is longer than the length w14 of the root insertion portion 361 in the longitudinal direction.
[0043] As an example, the brake pad 3 has a shape that complies with the UIC standard (a standard established by the International Union of Railways). 2 The brake pad 3 conforms to the UIC standard of 175cm. 2 It may also be a conformal shape.
[0044] The pad holder 2 will now be described. As shown in FIG. 1, the pad holder 2 includes a base plate 24 on which the brake pad 3 is attached. The base plate 24 includes a base plate main body 26, an insertion portion 23 into which the insertion portion 33 of the brake pad 3 is inserted, and a limiting portion 25, which will be described later. In this embodiment, as shown in FIG. 2, the base plate main body 26 has an attachment surface 26a that faces the brake pad 3 attached to the base plate 24. The insertion portion 23 and the limiting portion 25 are formed on the attachment surface 26a of the base plate main body 26. The pad holder 2 according to this embodiment also includes a fixing portion 27 that fixes the brake pad 3.
[0045] The inserted portion 23 has a shape that can engage with the insertion portion 33 of the brake pad 3 described above. As described above, in the example shown in FIG. 4, the inserted portion 23 is a linear recess extending in the first direction DA. Also, as described above, although not shown, when the insertion portion 33 is a linear recess, the inserted portion 23 is a linear convex portion. The width direction of the insertion portion 33, which is a linear recess (the second direction DB shown in FIGS. 2 and 3), or the width direction of the insertion portion 33, which is a linear recess, is also referred to as the width direction. When the brake pad 3 is attached to the base plate 24, the short-side direction of the insertion portion 33 and the width direction of the inserted portion 23 coincide. In the example shown in FIG. 2, the short-side direction of the insertion portion 33 and the width direction of the inserted portion 23 both coincide with the second direction DB.
[0046] When the inserted portion 23 is a linear recess as shown in FIG. 4, the width w4 of the bottom 23a of the inserted portion 23 in the width direction is larger than the width w3 of the opening 23b of the inserted portion 23 in the width direction. Furthermore, the width w3 of the opening 23b of the inserted portion 23 in the width direction is smaller than the width w2 of the tip 33a of the inserting portion 33 in the lateral direction and is equal to or larger than the width w1 of the base 33b of the inserting portion 33 in the lateral direction. Furthermore, the width w4 of the bottom 23a of the inserted portion 23 in the width direction is equal to or larger than the width w2 of the tip 33a of the inserting portion 33 in the lateral direction. This prevents the inserting portion 33 from slipping out toward one side SC1 of the third direction D3 shown in FIG. 2 when the inserting portion 33 and the inserted portion 23 are engaged with each other. In the example shown in FIG. 4, the widths w1 and w3 are the same, and the widths w2 and w4 are the same.
[0047] The brake pad 3 can be attached to the base plate 24 by inserting the insertion portion 33 of the brake pad 3 into the insertion receiving portion 23 of the base plate 24. When the insertion portion 33 is one of a linear convex portion or a linear concave portion and the insertion receiving portion 23 is the other of a linear convex portion or a linear concave portion, the brake pad 3 can be attached to the base plate 24 by the following method. First, the end of the insertion receiving portion 23 in the extension direction is brought close to the end of the longitudinal direction of the insertion portion 33, and the end of the insertion portion 33 and the end of the insertion receiving portion 23 are engaged. Next, while maintaining the engagement between the insertion portion 33 and the insertion receiving portion 23, the brake pad 3 is slid in the extension direction of the insertion receiving portion 23. In this way, the insertion portion 33 is inserted into the insertion receiving portion 23, and the brake pad 3 can be attached to the base plate 24, as shown in FIG. 2 .
[0048] 1, the inserted portion 23, which is a linear recess, has a closed end 23c located on one side in the longitudinal direction (one side SA1 of the first direction DA) and an open end 23d located on the other side in the longitudinal direction (the opposite side from one side SA1 of the first direction DA). In this case, the end of the inserting portion 33 and the open end 23d of the inserted portion 23 are engaged with each other, and the brake pad 3 is then slid toward the closed end 23c, whereby the inserting portion 33 is inserted into the inserted portion 23 and the brake pad 3 can be attached to the base plate 24.
[0049] In particular, the brake pad 3 divided into a tip pad 35 and a root pad 36 can be attached to the base plate 24 by the following method. First, the end of the tip insertion portion 351 of the tip pad 35, which forms the first end 33c, one of the ends of the insertion portion 33, is engaged with the open end 23d of the inserted portion 23. Next, the tip pad 35 is slid toward the closed end 23c. Next, the end of the root insertion portion 361 of the root pad 36, which is on the dividing surface 3e side, is engaged with the open end 23d of the inserted portion 23. Then, the root pad 36 is slid toward the closed end 23c. By the above method, the brake pad 3 divided into two parts as shown in FIG. 3 can be attached to the base plate 24.
[0050] When the brake pad 3 is attached to the base plate 24, the direction in which the brake pad 3 is slid relative to the base plate 24 is also referred to as the insertion direction of the brake pad 3. In the pad holder 2 shown in FIG. 1, the insertion direction is the direction from the open end 23d toward the closed end 23c along the insertion receiving portion 23. In other words, in the pad holder 2 shown in FIG. 1, the insertion direction is the direction from the opposite side of one side SA1 toward one side SA1 along the first direction DA. When the two-piece brake pad 3 is attached to the base plate 24 in the correct orientation, the tip pad 35 corresponds to one of the two pieces of the brake pad 3 located on the tip side in the insertion direction (one side SA1 in the first direction DA). Furthermore, the root pad 36 corresponds to the other of the two pieces of the brake pad 3 located on the opposite side of the insertion direction (the opposite side of one side SA1 in the first direction DA).
[0051] As shown in FIG. 3 , a virtual line L3 that can be drawn in a view of the base plate 24 viewed from the thickness direction (third direction DC in FIG. 2 ) passes through the center of the inserted portion 23 in the width direction and extends in the direction in which the inserted portion 23 extends. This line L3 is referred to as the center line L3. Furthermore, when the brake pad 3 is attached to the base plate 24 as shown in FIG. 3 , the maximum length from the center line L3 in the width direction of the inserted portion 23 to one side of the brake pad 3 in the width direction (one side SB1 in the second direction DB) is referred to as the first length w9. Furthermore, the maximum length from the center line L3 in the width direction of the inserted portion 23 to the other side of the brake pad 3 in the width direction (the side opposite to one side SB1 in the second direction DB) is referred to as the second length w10. Here, in this embodiment, when the inserting portion 33 and the inserted portion 23 are engaged with each other and the brake pad 3 is attached to the base plate 24, the above-described inserting portion center line L2 and center line L3 overlap. Therefore, the first length w9 matches the above-mentioned length w5, and the second length w10 matches the above-mentioned length w6. As described above, in the brake pad 3 of this embodiment, the length w5 is longer than the length w6. As a result, the first length w9, which is the maximum length from the center line L3 in the width direction of the inserted portion 23 to one side in the width direction, is longer than the second length w10, which is the maximum length from the center line L3 in the width direction of the inserted portion 23 to the other side in the width direction.
[0052] Next, the limiting portion 25 will be described. The limiting portion 25 is a portion that limits the insertion of the inserting portion 33 into the inserted portion 23 when the inserting portion 33 is inserted into the inserted portion 23 in the wrong orientation. Furthermore, the limiting portion 25 does not limit the insertion of the inserting portion 33 into the inserted portion 23 when the inserting portion 33 is inserted into the inserted portion 23 in the correct orientation. In the example shown in FIG. 1 , the limiting portion 25 is a protrusion formed on the mounting surface 26a of the base plate main body 26.
[0053] The limiting portion 25 will be described in more detail. In the brake pad 3 shown in FIG. 3, a first end 33c, which is one of the longitudinal ends of the insertion portion 33, faces the tip side in the insertion direction (one side SA1 of the first direction DA). A second end 33d, which is the other longitudinal end of the insertion portion 33, faces the opposite side to the insertion direction (the opposite side to one side SA1 of the first direction DA). Such an orientation of the insertion portion 33 is referred to as one longitudinal direction or simply as one direction. The orientation of the insertion portion 33 of the brake pad 3 may also be the orientation shown in FIG. 6. In the example shown in FIG. 6, the second end 33d faces the tip side in the insertion direction (one side SA1 of the first direction DA). The first end 33c faces the opposite side to the insertion direction (the opposite side to one side SA1 of the first direction DA). Such an orientation of the insertion portion 33 is referred to as the other longitudinal direction or simply as the other longitudinal direction. In this embodiment, a state in which the inserting portion 33 is inserted into the inserted portion 23 in one longitudinal direction corresponds to a state in which the inserting portion 33 is inserted into the inserted portion 23 in the correct direction. Also, a state in which the inserting portion 33 is inserted into the inserted portion 23 in the other longitudinal direction corresponds to a state in which the inserting portion 33 is inserted into the inserted portion 23 in the wrong direction.
[0054] Here, as shown in FIG. 3 , when the insertion portion 33 is inserted into the insertion receiving portion 23 in one longitudinal direction, the brake pad 3 does not come into contact with the limiting portion 25. Therefore, when the insertion portion 33 is inserted into the insertion receiving portion 23 in one longitudinal direction, the insertion portion 33 can be inserted into the insertion receiving portion 23 until the insertion portion 33 comes into contact with the closed end 23c of the insertion receiving portion 23. Furthermore, when the insertion portion 33 is inserted in the other longitudinal direction, as shown in FIG. 6 , the limiting portion 25 comes into contact with the brake pad 3 and limits the insertion of the insertion portion 33 into the insertion receiving portion 23. This makes it possible to limit the insertion of the insertion portion 33 into the insertion receiving portion 23 when the insertion portion 33 is inserted into the insertion receiving portion 23 in the other longitudinal direction. Therefore, it is possible to prevent the brake pad 3 from being attached to the base plate 24 in the wrong orientation. For example, when the insertion portion 33 is inserted into the insertion receiving portion 23 in the other longitudinal direction, the limiting portion 25 comes into contact with the pad body 34 of the brake pad 3.
[0055] In the examples shown in FIGS. 3 and 6 , the limiting portion 25 is provided in a region on the base plate 24 where the distance from the center line L3 in the width direction is greater than the second length w10 and less than the first length w9. That is, the distance w11 in the width direction between the limiting portion 25 and the center line L3 shown in FIG. 3 is greater than the second length w10 and less than the first length w9. Here, the first length w9 corresponds to the maximum distance in the width direction between the first side 3 c of the brake pad 3 and the center line L3 when the insertion portion 33 is inserted into the insertion receiving portion 23. Furthermore, the second length w10 corresponds to the maximum distance in the width direction between the second side 3 d of the brake pad 3 and the center line L3 when the insertion portion 33 is inserted into the insertion receiving portion 23. Therefore, the following effect is obtained by making the distance w11 in the width direction between the limiting portion 25 and the center line L3 greater than the second length w10 and less than the first length w9. As shown in FIG. 3 , when the inserting portion 33 is inserted into the receiving portion 23 with the second side 3d of the brake pad 3 facing the limiting portion 25 side (the opposite side of one side SB1 in the second direction DB) as viewed from the center line L3 in the width direction, the second side 3d of the brake pad 3 does not come into contact with the limiting portion 25. In this case, it is possible to prevent the insertion of the inserting portion 33 into the receiving portion 23 from being restricted. Also, as shown in FIG. 6 , when the inserting portion 33 is inserted into the receiving portion 23 with the first side 3c of the brake pad 3 facing the limiting portion 25 side (the opposite side of one side SB1 in the second direction DB) as viewed from the center line L3 in the width direction, the first side 3c of the brake pad 3 comes into contact with the limiting portion 25. In this case, it is possible to restrict the insertion of the inserting portion 33 into the receiving portion 23.
[0056] In this embodiment, when the brake pad 3 is attached to the base plate 24 in the correct orientation as shown in FIG. 3 , the first side 3 c is located on one side in the width direction (one side SB1 in the second direction DB), and the second side 3 d is located on the other side in the width direction (the opposite side to one side SB1 in the second direction DB). The limiting portion 25 is located on the other side in the width direction than the position of the second side 3 d when the brake pad 3 is attached to the base plate 24 in the correct orientation. For this reason, when attempting to attach the brake pad 3 to the base plate 24 in the correct orientation, the limiting portion 25 does not come into contact with the brake pad 3, and therefore attachment of the brake pad 3 is not restricted. On the other hand, when attempting to attach the brake pad 3 to the base plate 24 in the wrong orientation, that is, when the first side 3 c is located on the other side in the width direction and the second side 3 d is located on one side in the width direction as shown in FIG. 6 , the limiting portion 25 comes into contact with the first side 3 c of the brake pad 3, and therefore attachment of the brake pad 3 is restricted.
[0057] For example, the shape of the brake pad 3 attached to the base plate 24 is 200 cm according to the UIC standard. 2 In the case of a shape conforming to the mold, the region where the limiting portion 25 is provided is a region that is more than 6.5 cm and less than 7.5 cm away from the center line L3 in the width direction of the inserted portion 23. In other words, the distance w11 in the width direction between the limiting portion 25 and the center line L3 is more than 6.5 cm and less than 7.5 cm. 2 When the brake pad 3 conforming to the mold is mounted on the base plate 24, the first length w9 is 7.5 cm and the second length w10 is 6.5 cm. Therefore, by setting the distance w11 to be greater than 6.5 cm and less than 7.5 cm, the 200 cm of the UIC standard can be achieved. 2 When the brake pad 3 having a shape conforming to the mold is attached to the base plate 24, the above-mentioned condition that the distance w11 is greater than the second length w10 and less than the first length w9 can be satisfied.
[0058] As another example, the shape of the brake pad 3 attached to the base plate 24 is 175 cm 2In the case of a shape conforming to the mold, the region where the limiting portion 25 is provided is a region that is more than 6.4 cm and less than 7.6 cm away from the center line L3 in the width direction of the inserted portion 23. In other words, the distance w11 in the width direction between the limiting portion 25 and the center line L3 is more than 6.4 cm and less than 7.6 cm. 2 When the brake pad 3 conforming to the mold shape is mounted on the base plate 24, the first length w9 is 7.6 cm and the second length w10 is 6.4 cm. Therefore, by setting the distance w11 to be greater than 6.4 cm and less than 7.6 cm, the 175 cm of the UIC standard can be achieved. 2 When the brake pad 3 having a shape conforming to the mold is attached to the base plate 24, the above-mentioned condition that the distance w11 is greater than the second length w10 and less than the first length w9 can be satisfied.
[0059] The position of the limiting portion 25 in the extension direction (first direction DA) of the inserted portion 23 will be described. As shown in FIG. 3 , the limiting portion 25 is provided on the entrance side where the brake pad 3 is inserted. Here, "the limiting portion 25 is provided on the entrance side" means that the limiting portion 25 is provided closer to the entrance side than the center in the longitudinal direction of the inserting portion 33 when the inserting portion 33 is inserted into the inserted portion 23 in the correct orientation and the brake pad 3 is attached to the base plate 24. In this embodiment, the open end 23 d serves as the entrance for inserting the inserting portion 33 into the inserted portion 23, and the limiting portion 25 is provided on the open end 23 d side. By providing the limiting portion 25 on the entrance side, the brake pad 3 comes into contact with the limiting portion 25 earlier when the inserting portion 33 is inserted into the inserted portion 23 in the incorrect orientation and slid in the insertion direction than when the limiting portion 25 is provided closer to the closed end 23 c. This allows the worker attaching the brake pad 3 to the base plate 24 to notice at an earlier stage that the orientation of the insertion portion 33 is incorrect. Note that the limiting portion 25 may be located at least partially closer to the entrance side than the position of the end 3g of the brake pad 3 that is on the opposite side to the insertion direction when the insertion portion 33 is inserted into the insertion receiving portion 23 in the correct orientation and the brake pad 3 is attached to the base plate 24.
[0060] The length w12 of the limiting portion 25 in the height direction (third direction DC in FIG. 2) shown in FIG. 2 is 3 mm or more and less than the wear limit of the brake pad 3. The meaning of the wear limit of the brake pad 3 will be explained. When the brake caliper device 1 is used, the brake pad 3 comes into contact with the brake disc and wears. As the wear of the brake pad 3 progresses, the thickness of the brake pad 3 decreases. Here, the wear limit of the brake pad 3 is the thickness of the brake pad 3 when the wear of the brake pad 3 has progressed to the maximum allowable degree. The wear limit is a value corresponding to the usage limit and maximum wear amount of the brake pad 3, which wears due to the braking operation of the brake caliper device 1.
[0061] By making the length w12 3 mm or more, even if the insertion portion 33 is inserted into the insertion receiving portion 23 in the opposite direction to the correct direction, the contact of the limiting portion 25 with the brake pad 3 can stably limit the insertion of the insertion portion 33 into the insertion receiving portion 23. Furthermore, by making the length w12 less than the wear limit of the brake pad 3, contact between the disc brake and the limiting portion 25 due to the progression of wear of the brake pad 3 is suppressed. Therefore, damage caused by contact between the disc brake and the limiting portion 25 is suppressed.
[0062] The fixing portion 27 will be described. The fixing portion 27 is a portion that engages with the insertion portion 33 inserted into the insertion portion 23 in the correct orientation to fix the brake pad 3. The line labeled 271 in FIG. 3 indicates the position of the fixing portion 27. In the example shown in FIGS. 1 and 2, a groove portion 27a extending in the width direction is provided on the mounting surface 26a of the base plate main body 26. The fixing portion 27 is provided as a linear member extending in the width direction that can be accommodated in the groove portion 27a. In this embodiment, the fixing portion 27 is biased by a spring or the like so as to be positioned inside the insertion portion 23, which is an at least partially linear recess. When the fixing portion 27 is pressed against the bias, it is accommodated in the groove portion 27a and is no longer positioned inside the insertion portion 23.
[0063] When the pad holder 2 includes the fixing portion 27, the inserting portion 33 can be inserted into the inserted portion 23 without being restricted by the fixing portion 27 by pressing the fixing portion 27 and accommodating it in the groove 27a. Furthermore, when the inserting portion 33 is inserted into the inserted portion 23 in the correct orientation and slid in the insertion direction, when the second end 33d of the inserting portion 33 moves further in the insertion direction than the fixing portion 27, the fixing portion 27 advances again inside the inserted portion 23 due to the bias of a spring or the like. Therefore, the position of the inserting portion 33 in the extension direction of the inserted portion 23 is fixed between the fixing portion 27 and the closed end 23c. This allows the position of the brake pad 3 in the extension direction of the inserted portion 23 to be fixed.
[0064] The function of the fixing portion 27 when the pad holder 2 is divided into two parts as described above will be described. Consider the case where the insertion portion 33 of the two divided brake pads 3 is inserted in one orientation, i.e., the correct orientation. In particular, consider the case where the insertion portion 33 of the two divided brake pads 3 is inserted so that the tip pad 35 of the two divided brake pads 3 contacts the closed end 23c and the root pad 36 contacts the tip pad 35, as shown in FIG. 3 . In this case, the fixing portion 27 engages with the brake pad 3 at a location where the end (second end 33d) of the insertion portion 33 is located on the opposite side to the insertion direction of the brake pad 3 (the opposite side to one side SA1 in the first direction DA), thereby fixing the brake pad 3. In other words, the fixing portion 27 fixes the brake pad 3 by sandwiching and fixing the insertion portion 33 between the fixing portion 27 and the closed end 23c in the longitudinal direction. In this case, the distance w13 between the fixing portion 27 and the closed end 23c in the extension direction of the inserted portion 23 shown in Fig. 3 is adjusted so that the inserting portion 33 can be sandwiched and fixed in place by the fixing portion 27 and the closed end 23c in the longitudinal direction. The distance w13 is equal to or greater than the total length w8 of the inserting portion 33 in the longitudinal direction. For example, the distance w13 is the same as the total length w8 of the inserting portion 33 in the longitudinal direction.
[0065] Moreover, the base plate 24 according to this embodiment further includes a lever attachment portion 28 for attaching the brake pad 3 to the caliper lever 4, which is provided on the surface opposite to the attachment surface 26a of the base plate main body 26. In the example shown in FIG. 1, the lever attachment portion 28 is a pair of protrusions that protrude from the surface opposite to the attachment surface 26a of the base plate main body 26. In the example shown in FIG. 1, the lever attachment portion 28 of the pad holder 2 is attached to the tip of the caliper lever 4 via a pad rotation pin 8. The pad rotation pin 8 is rotatable with respect to the caliper lever 4. The pad rotation pin 8 is fixed to the pad holder 2. Moreover, the pad holder 2 may be attached to the tip of the caliper lever 4 by being fastened with a screw.
[0066] Next, the function and effect of the pad holder 2 according to this embodiment when the brake pad 3 divided into the tip pad 35 and the base pad 36 is attached to the base plate 24 will be described in detail.
[0067] When the brake pad 3 is divided into two parts, a tip pad 35 and a root pad 36, possible patterns of incorrect installation of the brake pad 3 on the base plate 24 are not limited to the pattern shown in FIG. 6. For example, possible incorrect installation patterns include one in which the tip pad 35 or the root pad 36 is oriented correctly but the other is oriented incorrectly. Another possible incorrect installation pattern is one in which the root pad 36 is mistakenly installed before the tip pad 35. Another possible incorrect installation pattern is one in which two tip pads 35 or two root pads 36 are mistakenly installed on the pad holder 2, when the correct brake pad 3 should be a combination of a tip pad 35 and a root pad 36 with different shapes. Considering the above, a total of 15 possible incorrect installation patterns of the divided brake pad 3 are the one pattern shown in FIG. 6 and the 14 patterns shown in FIGS. 7 to 20.
[0068] As described above, the total length w7 in the longitudinal direction of the two-piece brake pad 3 is longer than the total length w8 in the longitudinal direction of the insertion portion 33 of the brake pad 3. Furthermore, the length w17 in the longitudinal direction of the tip pad 35 is longer than the length w15 in the longitudinal direction of the tip insertion portion 351, and the length w16 in the longitudinal direction of the root pad 36 is longer than the length w14 in the longitudinal direction of the root insertion portion 361. Furthermore, the pad holder 2 includes a fixing portion 27 that engages with the brake pad 3 to fix the brake pad. As described above, the distance w13 between the fixing portion 27 and the closed end 23c is adjusted so that the insertion portion 33 can be sandwiched and fixed in place by the fixing portion 27 and the closed end 23c in the longitudinal direction.
[0069] Based on the above, let us consider improper installation patterns, particularly those shown in Figures 9, 10, and 13. In the improper installation patterns shown in Figures 9, 10, and 13, the tip pad 35 or the root pad 36 is about to be installed so that the end of the tip pad 35 or the root pad 36 closest to the dividing surface 3e of the brake pad 3 faces outward in the direction in which the inserted portion 23 extends. In this case, due to the relationship between the dimensions of the brake pad 3 and the distance w13 between the fixing portion 27 and the closed end 23c, as shown in Figures 9, 10, and 13, the insertion portion 33 cannot be accommodated between the fixing portion 27 and the closed end 23c in the direction in which the inserted portion 23 extends. Therefore, in the patterns shown in Figures 9, 10, and 13, it is not possible to fix the brake pad 3 by having the fixing portion 27 extend inside the inserted portion 23. From the above, if an incorrect installation is about to occur in a pattern such as that shown in Figures 9, 10, and 13, the worker can notice that an incorrect installation is about to occur by confirming that the brake pad 3 cannot be fixed using the fixing portion 27.
[0070] Specifically, the distance w13 satisfies the following condition to alert the operator to the improper insertion of the tip pad 351 in the longitudinal direction, as shown in Figures 9, 10, and 13. The distance w13 is less than the sum of the length w15 of the tip pad 351 in the longitudinal direction and the length w16 of the base pad 36 in the longitudinal direction. The distance w13 is also less than the sum of the length w14 of the base pad 361 in the longitudinal direction and the length w17 of the tip pad 35 in the longitudinal direction.
[0071] For example, the shape of the brake pad 3 attached to the base plate 24 is 200 cm according to the UIC standard. 2 In the case of a shape conforming to the mold, the region where the limiting portion 25 is provided is a region of the inserted portion 23 that is more than 32.1 cm and less than 35.95 cm away in the longitudinal direction from the end (closed end 23c) of the inserted portion 23 on the leading end side in the insertion direction of the brake pad 3 (one side SA1 of the first direction DA). In other words, when the brake pad 3 is attached to the base plate 24, the distance w13 between the closed end 23c, which is the end of the inserted portion 23 located on the leading end side in the insertion direction, and the fixed portion 27 is more than 32.1 cm and less than 35.95 cm. 2 When a brake pad 3 conforming to the mold shape is mounted on the base plate 24, the maximum value of the overall length w8 in the longitudinal direction of the insertion portion 33 described above is 32.1 cm. In addition, the minimum value of the total length of the length w15 in the longitudinal direction of the tip insertion portion 351 and the length w16 in the longitudinal direction of the root pad 36, and the minimum value of the total length of the length w14 in the longitudinal direction of the root insertion portion 361 and the length w17 in the longitudinal direction of the tip pad 35, are both 35.95 cm. Therefore, by setting the distance w13 to be greater than 32.1 cm and less than 35.95 cm, the 200 cm limit of the UIC standard can be achieved. 2When a brake pad 3 having a shape conforming to the mold is attached to the base plate 24, the following conditions can be satisfied: the above-mentioned distance w13 is equal to or greater than the total longitudinal length w8 of the insertion portion 33; the distance w13 is less than the total length of the longitudinal length w15 of the tip insertion portion 351 and the longitudinal length w16 of the root pad 36; and the distance w13 is less than the total length of the longitudinal length w14 of the root insertion portion 361 and the longitudinal length w17 of the tip pad 35.
[0072] As another example, the shape of the brake pad 3 attached to the base plate 24 is 175 cm 2 In the case of a shape conforming to the mold, the region where the limiting portion 25 is provided is a region of the inserted portion 23 that is more than 30.46 cm but less than 32.27 cm away in the longitudinal direction from the end (closed end 23c) on the leading end side in the insertion direction of the brake pad 3 (one side SA1 of the first direction DA). In other words, when the brake pad 3 is attached to the base plate 24, the distance w13 between the closed end 23c, which is the end of the inserted portion 23 located on the leading end side in the insertion direction, and the fixed portion 27 is more than 30.46 cm but less than 32.27 cm. 2 When a brake pad 3 conforming to the mold shape is mounted on the base plate 24, the maximum value of the overall length w8 in the longitudinal direction of the insertion portion 33 described above is 30.46 cm. In addition, the minimum value of the total length of the length w15 in the longitudinal direction of the tip insertion portion 351 and the length w16 in the longitudinal direction of the root pad 36, and the minimum value of the total length of the length w14 in the longitudinal direction of the root insertion portion 361 and the length w17 in the longitudinal direction of the tip pad 35, are both 32.27 cm. Therefore, by setting the distance w13 to be greater than 30.46 cm and less than 32.27 cm, the 175 cm limit of the UIC standard can be achieved. 2When a brake pad 3 having a shape conforming to the mold is attached to the base plate 24, the following conditions can be satisfied: the above-mentioned distance w13 is equal to or greater than the total longitudinal length w8 of the insertion portion 33; the distance w13 is less than the total length of the longitudinal length w15 of the tip insertion portion 351 and the longitudinal length w16 of the root pad 36; and the distance w13 is less than the total length of the longitudinal length w14 of the root insertion portion 361 and the longitudinal length w17 of the tip pad 35.
[0073] As described above, when an improper attachment is about to occur in the patterns shown in Figures 9, 10, and 13, the fixing portion 27 can alert the worker to the improper attachment. However, in the patterns shown in Figures 6, 8, and 15, the insertion portion 33 is caught between the fixing portion 27 and the closed end portion 23c, even though this is an improper attachment pattern. Therefore, the fixing portion 27 cannot alert the worker to the improper attachment in the patterns shown in Figures 6, 8, and 15.
[0074] Here, the base plate 24 of the pad holder 2 according to this embodiment has a limiting portion 25. As described above, the limiting portion 25 does not contact the brake pad 3 when the insertion portion 33 of the brake pad 3 is inserted in one longitudinal direction. Furthermore, when the insertion portion 33 is inserted in the other longitudinal direction, the limiting portion 25 contacts the brake pad 3 and limits insertion of the insertion portion 33 into the insertion receiving portion 23. In this embodiment, the limiting portion 25 is located at a position where, when the end of the tip pad 35 on the dividing surface 3e side is oriented in the insertion direction and the tip insertion portion 351 is engaged with the insertion receiving portion 23, the limiting portion 25 can limit sliding of the end on the dividing surface 3e side to the position where the dividing surface 3e would be if the brake pad 3 were correctly attached to the base plate 24. This allows the limiting portion 25 to prevent incorrect attachment in the pattern shown in FIG. 8 . In this embodiment, the limiting portion 25 is provided at a position where, when the end of the root pad 36 opposite the dividing surface 3e side is turned in the insertion direction and the root insertion portion 361 is engaged with the inserted portion 23, the limiting portion 25 can limit the sliding of the end opposite the dividing surface 3e side to the position of the closed end 23c. This makes it possible to prevent incorrect insertion in the patterns shown in FIGS. 6 and 15.
[0075] Specifically, if the position of the limiting portion 25 satisfies the following requirements, the limiting portion 25 can prevent incorrect attachment of the patterns shown in Figures 6, 8, and 15. First, as described above, the distance w11 in the width direction between the limiting portion 25 and the center line L3 is greater than the second length w10 and less than the first length w9. Also, as described above, the limiting portion 25 is at least partially located closer to the entrance side than the position of the end 3g of the brake pad 3 that is on the opposite side to the insertion direction when the inserting portion 33 is inserted into the inserted portion 23 in the correct orientation and the brake pad 3 is attached to the base plate 24.
[0076] As described above, the pad holder 2 according to this embodiment can prevent all of the 15 patterns of incorrect attachment shown in FIGS. 6 to 20 by combining the restricting portion 25 and the fixing portion 27.
[0077] 7, 11, 12, 14, and 16 to 20 can be prevented by the fixing portion 27 even if the pad holder 2 does not have the limiting portion 25, as with the fixing portion 27 in the patterns shown in FIGS. 9, 10, and 13. However, when the pad holder 2 has the fixing portion 27 and the limiting portion 25, the following effect is achieved in preventing the fixing portion 27 in the patterns shown in FIGS. 7, 11, 12, 14, and 16 to 20, compared to when the pad holder 2 has the fixing portion 27 but does not have the limiting portion 25. If the pad holder 2 has the fixing portion 27 but does not have the limiting portion 25, the worker will only realize that the brake pad 3 is about to be fixed by the fixing portion 27 after completing the operation of sliding the insertion portion 33 in the insertion direction. In contrast, when the pad holder 2 has the fixing portion 27 and the limiting portion 25, the worker notices that an incorrect installation is imminent when he or she confirms that the brake pad 3 comes into contact with the limiting portion 25 while sliding the insertion portion 33 in the insertion direction. Therefore, the pad holder 2 having the fixing portion 27 and the limiting portion 25 can make the worker realize that an incorrect installation is imminent at an earlier stage in the work process.
[0078] In this embodiment, as shown in Fig. 3, when the two-piece brake pad 3 is attached to the base plate 24 in the correct orientation, the end of the tip pad 35 on the opposite side to the insertion direction (opposite side to one side SA1 of the first direction DA) and the end of the root pad 36 on the tip side in the insertion direction (one side SA1 of the first direction DA) are continuous. In the example shown in Fig. 3, the end of the tip pad 35 on the opposite side to the insertion direction and the end of the root pad 36 on the tip side in the insertion direction are in surface contact with each other at the position of the dividing surface 3e. At the position of the dividing surface 3e, the end of the tip pad 35 on the opposite side to the insertion direction and the end of the root pad 36 on the tip side in the insertion direction are continuous. Here, the expression "the end of the tip pad 35 on the opposite side to the insertion direction and the end of the root pad 36 on the tip side in the insertion direction are continuous" means that, as shown in Figure 3, one tangent line L4 can be drawn at the position of the dividing surface 3e to the first side 3c of the brake pad 3, and one tangent line L5 can be drawn at the position of the dividing surface 3e to the second side 3d of the brake pad 3. In other words, it can be said that the orientation of the tip pad 35 and the root pad 36 is correct when the end of the tip pad 35 on the opposite side to the insertion direction and the end of the root pad 36 on the tip side in the insertion direction are continuous.
[0079] As described above, one embodiment has been described with reference to specific examples, but the above-described specific examples are not intended to limit the embodiment. The above-described embodiment can be implemented with various other specific examples, and various omissions, substitutions, and modifications can be made without departing from the spirit of the embodiment.
[0080] An example of the modification will be described below with reference to the drawings. In the following description and the drawings used in the following description, parts that can be configured similarly to the above-described specific example will be designated by the same reference numerals as those used for the corresponding parts in the above-described specific example, and duplicated descriptions will be omitted.
[0081] (Variation) In the above-described embodiment, an example has been described in which the brake caliper device 1 is a so-called bracket type. However, the configuration of the brake caliper device 1 is not limited to this. For example, the brake caliper device 1 may be a so-called three-point suspension type. FIG. 21 is a diagram showing an example of a pad holder 2 to which a brake pad 3 is attached in a three-point suspension type brake caliper device 1. In the example shown in FIG. 21 , a mounting hole 29a is provided on the tip side of the base plate 24 of the pad holder 2 in the insertion direction of the brake pad 3 (one side SA1 of the first direction DA), for mounting a pin for rotatably connecting with a hanger attached to a bogie of the railway vehicle. The mounting hole 29a is provided on the tip side in the insertion direction of the brake pad 3 relative to the center of the base plate 24 in the extension direction (first direction DA) of the inserted portion 23.
[0082] 21, the base plate 24 further has a hanger attachment portion 29 for providing an attachment hole 29a, which is provided on the surface opposite to the mounting surface 26a of the base plate main body 26. In the example shown in Fig. 21, the hanger attachment portion 29 is a protrusion that protrudes from the surface opposite to the mounting surface 26a of the base plate main body 26. In the example shown in Fig. 21, the hanger attachment portion 29 is provided on the end portion on the tip side in the insertion direction of the base plate 24. The hanger attachment portion 29 is provided with an attachment hole 29a so as to extend in the width direction (second direction DB).
[0083] 21, the pad holder 2 is attached, using a pin and an attachment hole 29a, to a hanger located at the tip end side in the insertion direction of the pad holder 2. In this case, the hanger is located on the side of the pad holder 2 opposite to the side where the open end 23d, which is the entrance for inserting the inserting portion 33 into the inserting portion 23, is located in the extension direction of the inserted portion 23. Therefore, when attaching the brake pad 3 to the pad holder 2, the insertion portion 33 can be inserted into the inserted portion 23 without the hanger getting in the way.
[0084] Among the embodiments disclosed in this specification, those that are comprised of multiple objects may be integrated, and conversely, those that are comprised of a single object may be separated into multiple objects. Regardless of whether they are integrated, it is sufficient that they are configured to achieve the object of the invention.
[0085] The aspects of the present invention are not limited to the individual embodiments described above, but include various modifications that may be conceived by those skilled in the art, and the effects of the present invention are not limited to the above-described contents. In other words, various additions, modifications, and partial deletions are possible within the scope of the conceptual idea and spirit of the present invention that can be derived from the contents defined in the claims and their equivalents. [Explanation of symbols]
[0086] 1. Brake caliper device 2 Pad holder 21 First pad holder 22 Second pad holder 23 Inserted part 23c closed end 23d open end 24 base plate 25 Restricted Section 26 Base plate body 27 Fixed part 29a Mounting hole 3 brake pads 3e split plane 31 First brake pad 32 No. 2 brake pad 33 Insertion section 35 Tip Pad 36 Root Pad 4 Caliper lever 5 Actuators
Claims
1. A pad holder in which an arcuate brake pad is attached to a base plate, The base plate is an insertion portion into which a linear insertion portion provided on the brake pad is inserted; a limiting portion that does not come into contact with the brake pad when the inserting portion is inserted in one longitudinal direction, and that comes into contact with the brake pad when the inserting portion is inserted in the other longitudinal direction, thereby limiting insertion of the inserting portion into the inserted portion; and The brake pad is configured such that the continuous insertion portion is divided into two, a tip pad and a base pad, at a division plane perpendicular to the longitudinal direction so as to be plane-symmetrical with respect to the division plane, the pad holder further includes a fixing portion that engages with the brake pad at a location where an end of the insertion portion opposite to the insertion direction of the brake pad is located when the insertion portion of the two-piece brake pad is inserted in the one orientation, and fixes the brake pad; the tip pad has a tip insertion portion that is a portion of the insertion portion that is included in the tip pad, the base pad has a base insertion portion that is a portion of the insertion portion that is included in the base pad, the inserted portion has a closed end portion located on one side in the extending direction of the inserted portion and an open end portion located on the other side in the extending direction of the inserted portion, the inserting portion of the brake pad is inserted into the inserting portion by engaging the inserting portion with the open end of the inserting portion and then sliding the brake pad from the open end toward the closed end, A pad holder in which the distance between the fixed portion and the closed end in the direction of extension of the inserted portion is fixed, is greater than or equal to the total length of the insertion portion, is less than the sum of the longitudinal length of the tip insertion portion and the longitudinal length of the root pad, and is less than the sum of the longitudinal length of the root insertion portion and the longitudinal length of the tip pad.
2. The brake pad is a first length, which is a maximum length from a center line in the width direction of the inserted portion to one side of the width direction, is longer than a second length, which is a maximum length from the center line to the other side of the width direction; the limiting portion is provided in a region on the base plate where a distance from the center line in the width direction is greater than the second length and less than the first length. The pad holder according to claim 1 .
3. The pad holder according to claim 1 or 2, wherein the limiting portion is provided on an inlet side through which the brake pad is inserted.
4. The total length of the longitudinal direction of the divided brake pad is longer than the total length of the insertion portion of the brake pad. A pad holder according to any one of claims 1 to 3.
5. 5. The pad holder according to claim 4, wherein when the two divided brake pads are attached to the base plate in the correct orientation, an end portion opposite the insertion direction of a tip pad located at the tip end of the two divided brake pads in the insertion direction and an end portion on the tip side of a base pad located at the opposite end of the insertion direction of the two divided brake pads are continuous.
6. 6. The pad holder according to claim 4, wherein the brake pad has a shape conforming to the UIC standard.
7. The brake pad is 200 cm 2 It is a conforming shape, 7. The pad holder according to claim 6, wherein the region where the limiting portion is provided is a region that is more than 6.5 cm and less than 7.5 cm away from a center line in the width direction of the inserted portion in the width direction of the inserted portion.
8. The brake pad is 200 cm 2 It is a conforming shape, 8. A pad holder as described in claim 6 or 7, wherein the region in which the limiting portion is provided is a region of the inserted portion that is more than 32.1 cm and less than 35.95 cm away from the tip end of the inserted portion in the insertion direction of the brake pad in the longitudinal direction.
9. The brake pads are 175 cm 2 It is a conforming shape, 7. The pad holder according to claim 6, wherein the region where the limiting portion is provided is a region that is more than 6.4 cm and less than 7.6 cm away from a center line in the width direction of the inserted portion in the width direction of the inserted portion.
10. The brake pads are 175 cm 2 It is a conforming shape, 10. The pad holder according to claim 6, wherein the region in which the limiting portion is provided is a region of the inserted portion that is more than 30.46 cm and less than 32.27 cm away from the tip end of the inserted portion in the insertion direction of the brake pad in the longitudinal direction.
11. The pad holder according to claim 1 , wherein the length of the limiting portion in the height direction is equal to or greater than 3 mm and is less than a wear limit of the brake pad.
12. 12. A pad holder as described in any one of claims 1 to 11, wherein a mounting hole is provided at the tip side of the base plate in the insertion direction of the brake pad, for mounting a pin for rotatably connecting to a hanger attached to a bogie of a railway vehicle.
13. a pair of pad holders on which a pair of brake pads, each of which has an arch-shaped shape, are attached, the base plate having an insertion portion into which a linear insertion portion provided on the brake pad is inserted, and a limiting portion that does not come into contact with the brake pad when the insertion portion is inserted in one longitudinal direction, and that comes into contact with the brake pad when the insertion portion is inserted in the other longitudinal direction, thereby limiting insertion of the insertion portion into the insertion portion; a pair of caliper levers, each of which has a tip end attached to one of the pair of pad holders; an actuator that drives each of the pair of caliper levers so that the brake pads attached to the pad holders are pressed against wheels of a railway vehicle; Equipped with The brake pad is configured such that the continuous insertion portion is divided into two, a tip pad and a base pad, at a division plane perpendicular to the longitudinal direction so as to be plane-symmetrical with respect to the division plane, the pad holder further includes a fixing portion that engages with the brake pad at a location where an end of the insertion portion opposite to the insertion direction of the brake pad is located when the insertion portion of the two-piece brake pad is inserted in the one orientation, and fixes the brake pad; the tip pad has a tip insertion portion that is a portion of the insertion portion that is included in the tip pad, the base pad has a base insertion portion that is a portion of the insertion portion that is included in the base pad, the inserted portion has a closed end portion located on one side in the extending direction of the inserted portion and an open end portion located on the other side in the extending direction of the inserted portion, the inserting portion of the brake pad is inserted into the inserting portion by engaging the inserting portion with the open end of the inserting portion and then sliding the brake pad from the open end toward the closed end, A brake caliper device for a railway vehicle, wherein the distance between the fixed portion and the closed end in the direction of extension of the inserted portion is fixed, is greater than or equal to the total length of the insertion portion, is less than the sum of the longitudinal length of the tip insertion portion and the longitudinal length of the root pad, and is also less than the sum of the longitudinal length of the root insertion portion and the longitudinal length of the tip pad.
Citation Information
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