CN1184427C - Disk-type brake - Google Patents

Disk-type brake Download PDF

Info

Publication number
CN1184427C
CN1184427C CN02107905.6A CN02107905A CN1184427C CN 1184427 C CN1184427 C CN 1184427C CN 02107905 A CN02107905 A CN 02107905A CN 1184427 C CN1184427 C CN 1184427C
Authority
CN
China
Prior art keywords
disk
moment
brake slipper
receiving portion
center line
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN02107905.6A
Other languages
Chinese (zh)
Other versions
CN1375645A (en
Inventor
南里圭介
佐野隆
志村幸利
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Hitachi Ltd
Original Assignee
TO KIKO CO Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by TO KIKO CO Ltd filed Critical TO KIKO CO Ltd
Publication of CN1375645A publication Critical patent/CN1375645A/en
Application granted granted Critical
Publication of CN1184427C publication Critical patent/CN1184427C/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

Links

Images

Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16DCOUPLINGS FOR TRANSMITTING ROTATION; CLUTCHES; BRAKES
    • F16D65/00Parts or details
    • F16D65/02Braking members; Mounting thereof
    • F16D65/04Bands, shoes or pads; Pivots or supporting members therefor
    • F16D65/092Bands, shoes or pads; Pivots or supporting members therefor for axially-engaging brakes, e.g. disc brakes
    • F16D65/095Pivots or supporting members therefor
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16DCOUPLINGS FOR TRANSMITTING ROTATION; CLUTCHES; BRAKES
    • F16D65/00Parts or details
    • F16D65/14Actuating mechanisms for brakes; Means for initiating operation at a predetermined position
    • F16D65/16Actuating mechanisms for brakes; Means for initiating operation at a predetermined position arranged in or on the brake
    • F16D65/18Actuating mechanisms for brakes; Means for initiating operation at a predetermined position arranged in or on the brake adapted for drawing members together, e.g. for disc brakes
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16DCOUPLINGS FOR TRANSMITTING ROTATION; CLUTCHES; BRAKES
    • F16D55/00Brakes with substantially-radial braking surfaces pressed together in axial direction, e.g. disc brakes
    • F16D2055/0004Parts or details of disc brakes
    • F16D2055/0016Brake calipers
    • F16D2055/002Brake calipers assembled from a plurality of parts
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16DCOUPLINGS FOR TRANSMITTING ROTATION; CLUTCHES; BRAKES
    • F16D55/00Brakes with substantially-radial braking surfaces pressed together in axial direction, e.g. disc brakes
    • F16D2055/0075Constructional features of axially engaged brakes
    • F16D2055/0091Plural actuators arranged side by side on the same side of the rotor

Landscapes

  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Braking Arrangements (AREA)

Abstract

A disk-type brake, which can furthest reduce the thickness of the torque receiving department between the pistons and do not sacrifice the length. The disk-type brake has a plurality of pairs of pistons (15, 16) on both sides of the disk swivel, a plurality of brake pads (22,23) are compressed on the disk swivel (D) through the advancing towards each pair of pistons (15, 16), meanwhile, the sides of a plurality of brake pads (22,23) are supported on the torque receiving part (31, 32, 33) of the stand case (1) to generate braking force. The configure of the plurality of brake pads (22,23) is: in the radial of the disk swivel (D), at the center of rotation (O) relative to the disk swivel (D) and one point (P) in the region of the opposite to the stand case (1), the center lines of all blocks intersect to reduce the forward angle of the triangle in the torque receiving part (33) of the middle as much as possible, to reduce the arrange columns of the pistons (15, 16).

Description

Disk type braker
Technical field
The present invention relates to be used for the disk type braker of Motor Vehicle braking, particularly be used for the disk type braker of two-wheeled vehicle.
Background technique
Two-wheeled vehicle has following break with disk type braker, interior adorn a plurality of at least on the support main body of the piston that a side that disk is turned is arranged along its sense of rotation, support slidably corresponding to described each cylinder configuration in disk the many of both sides that turn brake slipper, along with the propelling of described each piston makes each brake slipper is crimped on disk turns, the side that while is supported each brake slipper by the moment of torsion receiving portion of being located on the support main body, thus braking force produced.In addition, described piston is configured in the both sides that disk is turned relatively in the disk type braker of support fixed, only is configured in the side that disk is turned in the disk type braker of support float type.
In this disk type braker, each brake slipper forms following structure at present usually, promptly be configured to the side of turning at disk, the rotating center of turning at disk, the center line of each piece is intersected, on the other hand, in being located at the moment of torsion receiving portion of above-mentioned support main body, be disposed at the mutual moment of torsion receiving portion of piston by two brake slipper of adjacency shared (reference example is opened flat 3-53643 communique strictly according to the facts).
That is to say, in above-mentioned existing disk type braker, the rotating center that the intersection point of each piece center line and disk are turned is consistent and by the moment of torsion receiving portion of the shared piston space of brake slipper of adjacency, the wall thickness of tangent direction because the disk that need thicken the support outer circumferential side to a certain extent for the rigidity that improves support is turned, and in order to strengthen the area of contact that brake slipper and disk are turned, need the turn wall thickness of tangent direction of the disk of attenuate support outer circumferential side to a certain extent, therefore, the moment of torsion receiving portion of this piston space has to adopt the symmetry center that left and right sides moment of torsion is accepted face to place the form of the isosceles triangle on the line of the rotating center of turning by disk.In other words, therefore the moment of torsion receiving portion of piston space has increased the arrangement pitches of piston because its distinctive triangular shaped support outer circumferential side wall thickness that makes is very thick, and support is maximized, and weight is also very big.
In addition, under the situation of the wall thickness of the moment of torsion receiving portion that has reduced piston space just to the arrangement pitches that reduces piston, can produce following new problem, that is: the leg-of-mutton forward end of this moment of torsion receiving portion is damaged, can not fully guarantee the length of moment of torsion receiving portion, the posture instability of brake slipper during braking.
Summary of the invention
The present invention develops in view of the above problems, and its purpose is to provide a kind of disk type braker, and it can not sacrificed its length and subdue the wall thickness of the moment of torsion receiving portion of piston space to greatest extent, thereby realizes the miniaturization and of support.
In order to address the above problem, first aspect present invention provides a kind of disk type braker, this disk type braker interior adorn a plurality of at least on the support main body of the piston that a side that disk is turned is arranged along its sense of rotation, corresponding with described piston be provided with many to being disposed at the turn paired brake slipper of both sides of disk, propelling by described each piston makes each be crimped on disk turns brake slipper, and be bearing in the moment of torsion receiving portion of supporting each brake slipper slidably, thereby produce braking force; One side of turning at described disk adjacent described each brake slipper mutually is configured to: turn radially at described disk, the rotating center of turning at this disk relatively and the zone of described support main body opposition side a bit, each piece center line is crossing.
In the disk type braker of this structure, turn between the brake slipper of a side in disk by making in mutual disposed adjacent, the turn elongation line of rotating center side of the disk that each moment of torsion of moment of torsion receiving portion is accepted face, turn radially at described disk, in the zone of rotating center that relative this disk is turned and described support main body same side any is crossing, simultaneously, the intersection point of this each brake slipper center line is set in the rotating center that relative disk turns and the zone of described support main body opposition side, the toe angle of the moment of torsion receiving portion of the piston space of being located at the support main body is reduced, can improve the rigidity of support main body and strengthen brake slipper and area of contact that disk is turned, and, even the wall thickness of the support outer circumferential side of this moment of torsion receiving portion of attenuate can not make the forward end of moment of torsion receiving portion damaged yet.
Second aspect present invention is in the described invention of first aspect present invention, and the intersection point of the piece center line of described each brake slipper is positioned at the zone that disk is turned.
In the disk type braker that so constitutes, in the zone that radially disk is turned in the zone of disk rotating center of turning and described support main body opposition side relatively that is set in that disk turns by intersection point, can set the wall thickness of the piston space moment of torsion receiving portion of being located at the support main body best with the piece center line of each brake slipper.
Third aspect present invention is in the fermentation of the present invention first or second aspect, and the intersection point of the piece center line of described each brake slipper is turned on the center line of the moment of torsion receiving portion between each brake slipper of a side being disposed at described disk.
In the disk type braker that so constitutes, the intersection point of the piece center line by making described each brake slipper is turned on the center line of the moment of torsion receiving portion between each brake slipper of a side being disposed at described disk, can make each brake slipper adopt the parts of similar shape.
Description of drawings
Fig. 1 is the front elevation of brake slipper configuration status of the disk type braker of the expression embodiment of the invention 1;
Fig. 2 is the front elevation with middle minute this disk type braker of state representation structure;
Fig. 3 is the integrally-built planimetric map of this disk type braker of expression;
Fig. 4 is the integrally-built front elevation of this disk type braker of expression;
Fig. 5 is the shape of brake pad spring in this disk type braker of expression and the front elevation of assembled state;
Fig. 6 is the planimetric map of the shape of expression brake pad spring;
Fig. 7 is the profile of the shape of expression brake pad spring;
Fig. 8 is the front elevation of brake slipper configuration status of the disk type braker of the expression embodiment of the invention 2;
Fig. 9 is the front elevation of brake slipper configuration status of the disk type braker of the expression embodiment of the invention 3.
Embodiment
Embodiments of the invention are described with reference to the accompanying drawings.
Fig. 1~Fig. 7 represents embodiments of the invention 1.Disk type braker as present embodiment 1 constitutes the support fixed, its overall structure such as Fig. 2~and shown in Figure 4.In these figure, label 1 is the support main body, support main body 1 will be disposed at disk turn D inboard (vehicle interior side) inboard support halfbody 2A and be disposed at the turn outside support halfbody 2B butt joint in the D outside (vehicle outside) of disk and link and be one.In more detail, each support halfbody 2A and 2B have at three places of the circumferential both sides of the D that turns along disk and central part to turn axially outstanding protuberance 3A, 4A, 5A and 3B, 4B, the 5B of D of disk, under the state that these relative protuberance 3A and 3B, 4A and 4B, 5A and 5B are docked mutually, utilize the connecting bolt 6 of these relative protuberances of break-through to link.
The bolt (not shown) that support main body 1 utilizes break-through to be located at two mounting holes 7 of its outside support halfbody 2B is installed on for example two-wheeled front fork of the non-rotating portion of car body, under this installment state, described relative protuberance 3A and 3B, 4A and 4B, 5A and 5B are configured in and stride the disk position of D of turning, thereby form three the bridge portions 8,9,10 that connect inboard support halfbody 2A and outside support halfbody 2B.And these three bridge portions 8,9,10 constitute opening portion 11 each other, dispose the lid spring 12 that describes in detail in the back in each opening portion 11.
Arrange and be formed with two cylinder holes (clutch release slave cylinder) 13,14 along the turn sense of rotation of D of disk respectively at inboard support halfbody 2A and outside support halfbody 2B, take in the piston 15,16 (Fig. 2) of bottom tube-like in each cylinder hole 13,14 slidably.In addition, these cylinder holes 13,14 and piston 15,16 only show inboard, and the omission in the outside diagram.Cylinder hole 13,14 is mutually relatively configuration between inboard support halfbody 2A and outside support halfbody 2B, and therefore, support clips the disk D that turns in this formation and has the relative type of four pistons of two pairs of pistons 15,16.In addition, by the through hole 17 (Fig. 2) that is provided with in each support halfbody 2A and the 2B from feeding mouth 19 to each cylinder hole 13,14 supply system hydrodynamic, along with two pairs of pistons of supply 15,16 of this brake fluid are outstanding synchronously.In addition, label 18 is to be used to install the gas bleeder valve mounting hole of exhaust with gas bleeder valve.
Inboard support halfbody 2A and outside support halfbody 2B face described two opening portions 11 outstanding key seat 20 and 21 of being provided with respectively.The key seat 20 of inboard support halfbody 2A side and the key seat 21 of outside support halfbody 2B side are in the turn axial relative configuration of D of disk, set up butt joint pin 24 between these relative two key seats 20 and 21, these butt joint pin 24 supports slidably are disposed at turn each a pair of brake slipper 22,23 of D both sides of disk.Each a pair of brake slipper 22,23 only shows inboard, and the omission in the outside diagram.Each brake slipper 22,23 is made of the liner plate 25 of rectangle and the friction member 26 that is bonded on this liner plate 25, utilize be located at be integrally formed in these liner plate 25 center upper portion by hole 28 break-through of hanging part 27 and hang on the described butt joint pin 24.Around side portion on the top of liner plate 26 also is formed with the shoulder 29,30 (with reference to Fig. 5) that contacts with lid spring 12, to this with aftermentioned.
On inboard support halfbody 2A and outside support halfbody 2B, as shown in Figure 2, be provided with three guide portions (moment of torsion receiving portion) 31,32,33, each a pair of brake slipper 22,23 is led and bears the moment of torsion that produces at each a pair of brake slipper 22,23.In addition, relevant these moment of torsion receiving portions 31,32,33 only show inboard, and the omission in the outside diagram.These three moment of torsion receiving portions 31,32,33 are located at and each protuberance 3B, 4B of each protuberance 3A, 4A, 5A and the outside support halfbody 2B of the inboard support halfbody 2A that forms described bridge portion 8,9,10, the position that 5B is connected.The moment of torsion receiving portion 31,32 that is positioned at support main body 1 both sides in these moment of torsion receiving portions has moment of torsion in inboard (with reference to Fig. 1) separately and accepts face 31a, 32a, the both sides of middle moment of torsion receiving portion 33 have moment of torsion respectively and accept face 33a, 33b, the moment of torsion receiving portion 33 of each a pair of brake slipper 22,23 shared centre is accepted face 33a, 33b and therewith the moment of torsion of the moment of torsion receiving portion 31,32 of the support both sides of establishing is accepted to be directed between face 31a, the 32a at the moment of torsion of its both sides.
Like this, in the support main body 1 of present embodiment 1, as shown in Figure 1, each a pair of brake slipper 22,23 is configured to: center line separately (piece center line) C 1, C 2In the turn side of D of disk, the rotating center O that turns with respect to disk is intersecting along turn 1 P in zone of radially opposition side of D of disk with a side that is provided with support main body 1.In present embodiment 1, intersection point P is in disk and turns in the zone of D.
In the support main body 1 of present embodiment 1, at the center line of the moment of torsion receiving portion 33 of middle (between the brake slipper 22,23) (disk turn D the center line of wall thickness of tangent direction) C 0On have the center line C of described each a pair of brake slipper 22,23 1, C 2Intersection point P.
The moment of torsion receiving portion 33 of described centre is being common to each a pair of brake slipper 22,23 o'clock, and the symmetry center that formation left and right sides moment of torsion is accepted face 33a, 33b places described center line C 0On the isosceles triangle mode, left and right sides moment of torsion accept face 33a, 33b disk turn D radially towards elongation line E1, the E2 of rotating center O side, 1 Q in described disk is turned the zone of the D that radially turns with respect to the disk of described rotating center O and described support main body same side of D is crossing.
Here, the center line C of above-mentioned brake slipper 22,23 1, C 2Formation by the disk of each brake slipper 22,23 friction member 26,26 separately turn radial direction outside end face central point, and accept the parallel line of face 33a, 33b with the moment of torsion of middle moment of torsion receiving portion 33 between each brake slipper 22,23 respectively.
In addition, in present embodiment 1, the center line C of middle moment of torsion receiving portion 33 0With described support center line C cConsistent.
Know clearly as Fig. 5~7 and to show, the lid springs 12 that are disposed in the mutual opening portion 11 of above-mentioned bridge portion 8,9,10 comprise: pin cap portion 35 covers the top of described butt joint pin 24; A pair of first press part 36A, 36B contact with the shoulder 29 of a side of the liner plate 25 that constitutes each a pair of brake slipper 22,23; A pair of second press part 37A, 37B contact with the shoulder 30 of the opposite side of described liner plate 25; Lock bonding part 38 is fastened on each butt joint pin 24 from downside (the rotating center O side that disk is turned); Operation unit 39 is connected this lock bonding part 38.
This lid spring 12 is integrally formed by sheetmetal such as die-cut or bending stainless-steel sheet, is provided with in its pin cap portion 35 and strengthens using flank 35a.A pair of first press part 36A, 36B are formed to two banded sheets that are directed downwards diagonally extending by self-marketing cap 35, and a pair of second press part 37A, 37B are formed to two curved tabs of extending with described banded sheet opposite direction and on the way the ㄑ font is crooked to the inside by self-marketing cap 35.And, lock bonding part 38 by the middle body of self-marketing cap 35 by inboardly extending and on the way form to it between a pair of second press part 37A, the 37B to the banded curved tabs of pin cap portion 35 side U oxbows.And operation unit 39 is by making the curved tabs that forms described lock bonding part 38 by between a pair of first press part 36A, the 36B and the prolongation sheet that makes its front end bend to reverse U shape simultaneously that stands up significantly forms.
Above-mentioned lid spring 12 is installed makes lock bonding part 35 be fastened on the butt joint pin 24 and two shoulders 29,30 of the liner plate 25 of first, second piece press part 36A, 36B, 37A, each a pair of brake slipper 22,23 of 37B and formation are contacted from downside.Thus, make each a pair of brake slipper 22,23 to the pressured elastic force of the intersection point P of their center line side in each a pair of first, second piece press part 36A, 36B, 37A, 37B generation, its result, the posture of each a pair of brake slipper 22,23 is controlled.
In the disk type braker of said structure, when from feeding mouth 19 in each cylinder hole 13,14 during the supply system hydrodynamic, two pairs of pistons 15,16 are outstanding synchronously, each a pair of brake slipper 22,23 is crimped on disk and turns on the two sides of D.At this moment, when the disk D that turns is seen when arrow F direction (counterclockwise) is rotated by Fig. 2, one side of the liner plate 25 of a pair of brake slipper 22 of disk screw-in side is accepted face 33a with the moment of torsion of the disk screw-in side of the moment of torsion receiving portion 33 of central authorities and is contacted, one side of the liner plate 25 of a pair of brake slipper 23 of disk back-out side is accepted face 32a with the moment of torsion of the moment of torsion receiving portion 32 of disk back-out side and is contacted, and produces braking force.On the other hand, when the disk D that turns is seen when arrow F ' direction (clockwise direction) is rotated by Fig. 2, one side of the liner plate 25 of a pair of brake slipper 23 of disk screw-in side is accepted face 33b with the moment of torsion of the disk screw-in side of the moment of torsion receiving portion 33 of central authorities and is contacted, one side of the liner plate 25 of a pair of brake slipper 22 of disk back-out side is accepted face 31a with the moment of torsion of the moment of torsion receiving portion 31 of disk back-out side and is contacted, and produces braking force equally.
Like this, because the piece center line C of each a pair of brake slipper 22,23 as mentioned above 1, C 2Turn D radially at disk, intersect at 1 P with respect to the zone of described rotating center O and described support main body 1 opposition side, thus in the middle of the situation of the toe angle of the moment of torsion receiving portion 33 rotating center binding of turning less than the intersection point that makes the piece center line and disk.That is to say that even the wall thickness of the moment of torsion receiving portion of piston space 33 attenuate support outer circumferential sides, its forward end can be not damaged yet, can fully guarantee its length.In other words, but because the wall thickness of the moment of torsion receiving portion 33 of attenuate piston space, the corresponding arrangement pitches that just can reduce two pairs of pistons 15,16, its result can realize the miniaturization and of support.In present embodiment 1, especially because described moment of torsion receiving portion 33 is located at the position of the bridge portion 10 (protuberance 5A, 5B) that passes through near connecting bolt 6, so the rigidity of this moment of torsion receiving portion 33 is enough, the action of each a pair of brake slipper 22,23 is stable, the eccentric wear that can alleviate braking drag, reduction cushion pad decreases, and improves the emotivity of brake rod etc.
In present embodiment 1, intersection point P is in disk and turns in the zone of D, even the wall thickness of middle moment of torsion receiving portion 33 is set at when bearing braking the wall thickness that the braking torque from brake slipper 22 or 23 also can not be out of shape.
In the support main body 1 of present embodiment 1, the center line C of described each a pair of brake slipper 22,23 1, C 2Intersection point P be positioned in the middle of the center line center line of D tangent direction wall thickness (disk turn) C of moment of torsion receiving portion 33 of (between the brake slipper 22,23) 0On.Thus, the parts that brake slipper 22,23 uses with shape have been guaranteed.
The moment of torsion receiving portion 33 of described centre places described center line C so formation left and right sides moment of torsion is accepted the symmetry center of face 33a, 33b because shared by each a pair of brake slipper 22,23 0On the isosceles triangle form, left and right sides moment of torsion accept face 33a, 33b disk turn D radially towards the elongation line of rotating center O side, turn radially a bit intersecting in the disk of described relatively rotating center O and described support main body homonymy is turned the zone of D of D at described disk, the toe angle of the moment of torsion receiving portion 33 of centre is attached at the occasion of the rotating center O that disk turns less than the intersection point of piece center line.
In present embodiment 1, brake pad spring 12 forms by induce bending lock bonding part 38 to be locked in the structure of docking on the pin 24 in the inboard of pin cap portion 35, so the almost total length of butt joint pin 24 is covered from the outside by pin cap portion 35, foreign matter can not invaded the slide part of each a pair of brake slipper 22,23 yet, and the slip of each brake slipper 22,23 is stabilized to be kept.In addition, owing to first, second piece press part 36A, 36B, 37A, 37B contact with the shoulder 29,30 of brake slipper 22,23 independently of one another, so can not influence each other, the brake slipper pressing force that acts on each a pair of brake slipper 22,23 is even.And, this brake pad spring 12 stands up as operation unit 39 extending portion of lock bonding part 38, so by through these operation unit 39 depresses pin sticking departments 38, can easily butt joint pin 24 be inserted each brake slipper 22,23 by the hole 28 of hanging part 27, can easily carry out the assembling of each brake slipper 22,23.
Fig. 8 is the figure of the expression embodiment of the invention 2.Present embodiment 2 is a kind of support fixed disk type brakers similarly to Example 1, and its support formation has the relative type of six pistons of three pairs of pistons 41,42,43.In addition, the basic structure of support main body 1 and embodiment's 1 structure does not have special variation, thus at this same structural element is used prosign, and omit repeat specification.In present embodiment 2, in support main body 1, dispose three pairs of brake slipper 44,45,46 corresponding to described three pairs of pistons 41,42,43, and on support main body 1, outside the moment of torsion receiving portion 31,32 of described both sides, also be provided with shared two the moment of torsion receiving portions 47,48 of described three pairs of brake slipper 44,45,46.In addition, about piston 41,42,43 and brake slipper 44,45,46, only shown inboard, the omission in the outside diagram.
Like this, support main body 1 is positioned as its center line (support center line) C cBy disc centre O.Each a pair of brake slipper 44,45,46 is configured to center line C separately 1, C 2, C 3In the turn side of D of disk, turn D radially at described disk, 1 P in the zone of the rotating center O of the D that turns with respect to disk and described support main body 1 opposition side intersects.In this case, the moment of torsion receiving portion 47,48 of middle (piston space) is because shared by each a pair of brake slipper 44,45,46, so same with the moment of torsion receiving portion 33 among the embodiment 1, the symmetry center that formation left and right sides moment of torsion is accepted face 33a, 33b places by the isosceles triangle mode on the line of described intersection point P.Be in present embodiment 2 owing to be the relative type of six pistons, so the center line C of middle a pair of brake slipper 46 with three pairs of relative pistons 41,42,43 3With described support center line C cConsistent.
The center line C of adjacent brake slipper 44,45 1, C 3Intersection point be in the center line C of the moment of torsion receiving portion 47 of 44,45 of this brake slipper 0On, the center line C of adjacent brake slipper 45,46 2, C 3Intersection point be in the center line C of the moment of torsion receiving portion 47 of 44,45 of this brake slipper 0' on.
In present embodiment 2, the piece center line C of each a pair of brake slipper 44,45,46 1, C 2, C 3Be configured to turn D radially at described disk, 1 P in the zone of the rotating center O of the D that turns with respect to disk and described support main body 1 opposition side intersects.So in the middle of the occasion of the toe angle of moment of torsion receiving portion 47, the 48 rotating center O binding of turning less than the intersection point that makes the piece center line and disk.That is to say that even the wall thickness of the moment of torsion receiving portion of piston space 47,48 attenuate support outer circumferential sides, its forward end can be not damaged yet, can fully guarantee its length.Can reduce the arrangement pitches of piston 41,42,43 equally with the foregoing description 1.
In addition, in described embodiment 2, the piece center line C of each a pair of brake slipper 44,45,46 1, C 2, C 3Be configured to turn D radially at described disk, 1 P in the zone of the rotating center O of the D that turns with respect to disk and described support main body 1 opposition side intersects.But be not limited to this, as long as the center line C of adjacent brake slipper 44,45 1, C 3Intersection point and the center line C of adjacent brake slipper 45,46 2, C 3Intersection point turn D radially at described disk, be in respect to the turn zone of rotating center O and described support main body 1 opposition side of D of disk, then these intersection points can be different points.
Fig. 9 is the figure of expression present embodiment 3.Present embodiment 3 is a kind of support fixed disk type brakers similarly to Example 1, is the center line C with the moment of torsion receiving portion 33 ' in the middle of it 0Center line C with support main body 1 cTurning to disk, sense of rotation (right side among the figure) the skew back of D constitutes.The basic structure of support main body 1 and embodiment's 1 structure does not have special variation, thus give prosign at this to same structural element, and omit repeat specification.
As shown in Figure 9, in present embodiment 3, each a pair of brake slipper 22,23 is configured to center line C separately 1, C 2In the turn side of D of disk, turn D radially at described disk, 1 P in the zone of the rotating center O of the D that turns with respect to disk and described support main body 1 opposition side intersects.
Like this, even as mentioned above at the center line C of support main body 1 cUnder moment of torsion receiving portion 33 ' the inconsistent situation of centre, as long as each a pair of brake slipper 22,23 is configured to center line C separately 1, C 2In the turn side of D of disk, turn D radially at described disk, 1 P in the zone of the rotating center O of the D that turns with respect to disk and described support main body 1 opposition side intersects, then the occasion of the toe angle of Zhong Jian the moment of torsion receiving portion 33 rotating center O binding of turning less than the intersection point that makes the piece center line and disk.That is to say that even the wall thickness of the moment of torsion receiving portion of piston space 33 attenuate support outer circumferential sides, its forward end can be not damaged yet, can fully guarantee its length.In other words, but because the wall thickness of the moment of torsion receiving portion 33 of attenuate piston space, the corresponding arrangement pitches that just can reduce two pairs of pistons 15,16, its result can realize the miniaturization and of support.
In addition, in above-mentioned three embodiments, center line intersection point P, the P that each brake slipper has been described is in moment of torsion receiving portion 33,47,48,33 ' center line C 0, C 0' on situation, but center line intersection point P, the P ' of each brake slipper not necessarily will be in moment of torsion receiving portion 33,47,48,33 ' center line C 0, C 0' on.
In the foregoing description 1 and embodiment 3, moment of torsion receiving portion 33,33 ' center line are by the turn rotating center O of D of disk, but shown in embodiment 2, form each moment of torsion receiving portion 33,33 ' time, moment of torsion receiving portion 33,33 ' center line are also necessary by the turn rotating center O of D of disk.
In above-mentioned three embodiments, the support fixed has been described and has been that support halfbody 2A and 2B are linked all-in-one-piece two element structures, still, even a present invention's support fixed and an element structure or support float type structure also can.
As above described in detail, according to disk type braker of the present invention, by mutual disposed adjacent is set in the rotating center of turning with respect to disk and the regional this simple improvement of described support main body opposition side at the turn intersection point of each brake slipper center line of a side of disk, just can not sacrifice length and subdue the wall thickness of piston space moment of torsion receiving portion to greatest extent, make its optimization, the miniaturization and of support is had very big effect.

Claims (3)

1, a kind of disk type braker, this disk type braker interior adorn a plurality of at least on the support main body of the piston that a side that disk is turned is arranged along its sense of rotation, corresponding with described piston be provided with many to being disposed at the turn paired brake slipper of both sides of disk, propelling by described each piston makes each be crimped on disk turns brake slipper, and be bearing in the moment of torsion receiving portion of supporting each brake slipper slidably, thereby generation braking force, it is characterized in that, the turn elongation line of rotating center side of the disk that each moment of torsion that is disposed at the moment of torsion receiving portion between the brake slipper of the side that described disk turns is accepted face, turn radially at described disk, a bit intersecting in the disk of rotating center of turning with respect to described disk and described support main body same side is turned the zone, simultaneously, mutual adjacent described each brake slipper of one side of turning at described disk is configured to: turn radially at described disk, the rotating center of turning at relative this disk and the zone of described support main body opposition side a bit, each piece center line is crossing.
2, disk type braker as claimed in claim 1 is characterized in that, the intersection point of the piece center line of described each brake slipper is positioned at the zone that disk is turned.
3, disk type braker as claimed in claim 1 or 2 is characterized in that, the intersection point of the piece center line of described each brake slipper is turned on the center line of the moment of torsion receiving portion between each brake slipper of a side being disposed at described disk.
CN02107905.6A 2001-03-21 2002-03-21 Disk-type brake Expired - Fee Related CN1184427C (en)

Applications Claiming Priority (3)

Application Number Priority Date Filing Date Title
JP080493/01 2001-03-21
JP080493/2001 2001-03-21
JP2001080493 2001-03-21

Publications (2)

Publication Number Publication Date
CN1375645A CN1375645A (en) 2002-10-23
CN1184427C true CN1184427C (en) 2005-01-12

Family

ID=18936770

Family Applications (1)

Application Number Title Priority Date Filing Date
CN02107905.6A Expired - Fee Related CN1184427C (en) 2001-03-21 2002-03-21 Disk-type brake

Country Status (3)

Country Link
CN (1) CN1184427C (en)
DE (1) DE10212670B4 (en)
IT (1) ITTO20020248A1 (en)

Families Citing this family (11)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP4606718B2 (en) * 2003-09-12 2011-01-05 川崎重工業株式会社 Caliper for disc brake device, disc brake device, and motorcycle
JP2007064296A (en) * 2005-08-30 2007-03-15 Yamaha Motor Co Ltd Disc brake device and motorcycle equipped with this disc brake device
JP4803019B2 (en) * 2006-12-20 2011-10-26 トヨタ自動車株式会社 Disc brake device
IT1399203B1 (en) * 2010-03-31 2013-04-11 Freni Brembo Spa BODY CALIPER OF A DISC BRAKE
JP5725286B2 (en) * 2011-02-18 2015-05-27 曙ブレーキ工業株式会社 Pad clip assembly structure
DE102011052169A1 (en) * 2011-07-27 2013-01-31 Dr. Ing. H.C. F. Porsche Aktiengesellschaft Brake caliper for disc brake of motor vehicle, has brake pistons that are arranged in supporting structure in side walls, and are guided in hydraulic brake cylinders which are interconnected by connecting channels
USD831551S1 (en) 2016-08-30 2018-10-23 Akebono Brake Industry Co., Ltd Brake caliper
US10539199B2 (en) 2017-01-20 2020-01-21 Akebono Brake Industry Co., Ltd Multi-piston caliper
DE202017107807U1 (en) 2017-12-21 2018-02-05 Akebono Brake Industry Co., Ltd. More piston caliper
IT201800020251A1 (en) * 2018-12-20 2020-06-20 Freni Brembo Spa Caliper body and brake caliper with said body
JPWO2021161642A1 (en) * 2020-02-12 2021-08-19

Family Cites Families (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS61149624A (en) * 1984-12-22 1986-07-08 Sumitomo Electric Ind Ltd Disc brake using combination calipers
JPH0353643U (en) * 1989-09-29 1991-05-23
DE9014039U1 (en) * 1990-10-09 1992-02-06 Lucas Industries P.L.C., Birmingham, West Midlands, Gb
DE9420095U1 (en) * 1994-12-15 1995-02-02 Thier Motorcycle Parts Vof Brake caliper
JPH09100851A (en) * 1995-10-06 1997-04-15 Nissin Kogyo Kk Vehicular disc brake

Also Published As

Publication number Publication date
ITTO20020248A1 (en) 2003-09-22
DE10212670A1 (en) 2002-12-05
DE10212670B4 (en) 2007-09-06
CN1375645A (en) 2002-10-23
ITTO20020248A0 (en) 2002-03-20

Similar Documents

Publication Publication Date Title
CN1184427C (en) Disk-type brake
US8701841B2 (en) Caliper body of a disc brake
CN1205082C (en) Brake of motor bicycle
CN100347461C (en) Drum brake and brake shoe for one such brake
CN1213894C (en) Disc brake assembly for bicycle
GB2134199A (en) Series type brake system for a vehicle
JPS60244689A (en) Shock absorber for rear wheel of motorcycle
CN1982130A (en) Interlocking brake system for bar-handle vehicle
CN105757148A (en) Pad Liner For Reducing Drag In Brake Caliper Of Vehicle Brake
CN1293317C (en) Pad and bicycle assembly with the pad
CN102483112A (en) Pneumatic disc brake device for railroad vehicle
CN1924389A (en) Disk braking device and motorcycle provided with the disk braking device
CN101846148A (en) Disk type braker
CN101918267B (en) Interlock brake apparatus of motorcycle
CN1920322A (en) Mass reduction for twin piston calipers
CN1302210C (en) Disc-type brake
CN101852401A (en) Flasher support structure
JP2008049878A (en) Axle mounting structure
JP5856311B2 (en) Pedal device for vehicle
CN2846882Y (en) Resetting structure of brake sheet
CN114060437B (en) Disc brake device
CN110966320B (en) Brake for vehicle and vehicle
US20040206587A1 (en) Disk brake unit for motorcycle
CN219809054U (en) Brake spring rod structure
CN1623049A (en) Torque plate

Legal Events

Date Code Title Description
C10 Entry into substantive examination
SE01 Entry into force of request for substantive examination
C06 Publication
PB01 Publication
C10 Entry into substantive examination
SE01 Entry into force of request for substantive examination
C14 Grant of patent or utility model
GR01 Patent grant
C56 Change in the name or address of the patentee

Owner name: HITACHI CO., LTD.

Free format text: FORMER NAME OR ADDRESS: TOKICO LTD.

CP03 Change of name, title or address

Address after: Tokyo, Japan, Japan

Patentee after: Hitachi Ltd.

Address before: Kanagawa

Patentee before: To Kiko Co., Ltd.

CF01 Termination of patent right due to non-payment of annual fee
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20050112

Termination date: 20210321