[Technical Field]
[0001] The present invention relates to a polishing holder removing device for a grinder
that allows a grinding tool to be simply coupled/decoupled to/from a coupler, which
is mounted on a rotary shaft of a body of a hand grinder and is rotated at a high
speed, and that can ensure anti-vibration, stability, continuity, and smooth transmission
of power in grinding by more firmly coupling the grinding tool to the coupler.
[Background Art]
[0002] In general, there is a need for secondary machining for incompletely machined portions
or rough surfaces, or before painting, after primary machining on parts for various
industrial fields including a vehicle or a ship. A grinder that precisely grinds an
object by rotating a grindstone is used for work requiring some degree of precision,
while a hand grinder, which is light and convenient to use, is generally used to finish
parts that do not require high precision.
[0003] In common hand grinders, a rotary shafts is rotated at a high speed by an electric
motor or air pressure generated by a compressor, a grinding tool on the rotary shaft
polishes an object made of wood, stone, or steel or by grinding the surface or finishes
an object by grinding incompletely machined portion, or edges and corners.
[0004] In relation to those hand grinders, a "Grinding Head for a Grinder" has been disclosed
in Korean Utility Model No.
0356304, in which a head equipped with a grinding plate is separably fitted on a rotary shaft
by a fastener such as a nut, but it is required to repeat tightening or loosening
the nut with a specific tool such as a spanner. Further, it unnecessarily takes time
to replace the grinding plate and it is required to move the grinder to a place, where
the grinding plate can be replaced, when working at a small place or a high place,
so it is difficult to continuously work, thereby deteriorating work efficiency.
[0005] Further, in consideration of this problem, Korean Utility Model Nos.
0373648 and
0376952 has proposed structures in which a sleeve that axially moves is mounted around a
coupler and a grinding tool can be coupled/decoupled in a one-touch way by moving
in/out a locking ball.
[0006] However, in these cases, a worker is supposed to couple/decouple a grinding tool,
which is a consumable part, by pushing the sleeve with the grinding tool in one hand,
so there is still inconvenience. Further, the locking ball is moved into/out of a
groove at the end of a grinding tool, so a grinding tool that rotates at a high speed
during grinding vibrates.
[0007] Further, the grinding tool is supported in close contact with the coupler by three
projections around the grinding tool, so power is not fully transmitted in work needing
a predetermined force and the coupling force is decreased by friction force or fine
vibration, so a worker feels great discomfort.
[0008] The applicant(s) has proposed a technique in Korean Patent No.
1056036 in consideration of these problems in the related art. According to the configuration
proposed in this document, which is the basis for the preamble of appended claim 1,
a grinding tool that is mounted on a rotary shaft of the body of a grinder can be
simply coupled/decoupled, so there is no need for a specific tool or fastener, and
accordingly, work efficiency can be improved. Further, a grinding tool and a coupler
can be coupled in a gear type, so the coupling force of the coupler and the grinding
tool is increased, and accordingly, stability can be ensured with minimum vibration
in work.
[0009] However, it was found that the product has some important defects in repeated tests
before it is supplied to work sites, and it was necessary to improve some functions
in order to remove these defects. That is, the defects in this technique are as follows.
[0010] First, when large shock is applied to a grinding tool that is a consumable part in
grinding, first and second bodies of the grinding tool are separated and the separated
second body is stuck in a coupler of the grinder body, the grinder is broken.
[0011] Second, large vibration is generated, as compared with existing grinders. The second
body of grinding tools is made of resin, so vibration is generated by elasticity that
is a feature of the material.
[0012] Third, dust produced in grinding is accumulated and hardened on the operation portions
of a coupler, which causes malfunction. When the grinder is used at a work site with
a large amount of dust, dust such as paint, oil, and iron powder is accumulated and
hardened in grooves of bearings, which causes malfunction.
[0013] Fourth, a manufacturing process of abrasives is complicated, so it takes a long period
and large costs, and accordingly, competitiveness is deteriorated.
[Documents of Related Art]
[Patent Document]
[0014]
(Patent Document 1) Korean Utility Model No. 0356304 (registered on 6 July, 2004), Title : Grinding Head for Grinder.
(Patent Document 2) Korean Utility Model No. 0373648 (registered on 10 January, 2005), Title : Polishing holder structure for hand grinder.
(Patent Document 3) Korean Utility Model No. 0376952

(registered on 16 February, 2005) Title: Polishing holder structure for hand grinder.
(Patent Document 4) Korean Patent No. 1056036 (registered on 4 August, 2011), Title: A polishing holder removing device for grinder. As stated above, this document
represents the closest prior art to the subject-matter of appended claim 1.
[Disclosure]
[Technical Problem]
[0015] The present invention provides a polishing holder removing device for a grinder that
does not need a specific tool or fastener by allowing a grinding tool to be simply
coupled/decoupled to/from a rotary shaft of a grinder body and can considerably improve
work efficiency by making it easy to replace consumable parts and allowing for continuous
work.
[0016] Further, the present invention also provides a polishing holder removing device for
a grinder that can increase coupling force between a coupler and a grinding tool by
combining a grinding tool and a coupler in a mechanical contact type using surface
contact, prevent vibration and separation in work by holding a grinding tool in a
double structure at the front and rear with a bearing, and transmit power well.
[0017] Further, a preferable aspect of the present invention also provides a polishing holder
removing device for a grinder that can prevent permeation of dirt using a sealing
member at the joint of a grinding tool and a coupler and discharge even dust, which
may flow into a grinder body, to the outside using a specific exit formed in a coupler.
[Technical Solution]
[0018] According to the present invention, there is provided a polishing holder removing
device as defined in appended claim 1. Preferable embodiments thereof are defined
in the dependent claims.
[Advantageous Effects]
[0019] As set forth above, according to exemplary embodiments of the invention, a grinding
tool that is mounted on the rotary shaft of the grinder body can be simply mounted,
so there is no specific tool or fastener and a grinding tool can be immediately replaced
when a grinder is used, and accordingly, work efficiency can be significantly improved.
[0020] Further, a grinding tool is fastened in a double fixing type by a bearing and a surface
contact portion axially formed on the outer side of the grinding tool and on the inner
side of the coupler, so a coupling force between the coupler and the grinding tool
can be increased. Accordingly, vibration can be minimized in working and power can
be smoothly transmitted.
[0021] Further, it is possible to prevent permeation of dust at the gaps between the grinding
tool and the coupler and specific exit holes are formed in the coupler, so it is possible
to easily discharge even dust, which may flow into the grinder body, using a centrifugal
force generated by the coupler rotating.
[Description of Drawings]
[0022] The above and other aspects, features and other advantages of the present invention
will be more clearly understood from the following detailed description taken in conjunction
with the accompanying drawings, in which:
FIG. 1 is an exploded perspective view of parts for illustrating a polishing holder
removing device for a grinder, according to the prior art;
FIGS. 2A and 2B are a view illustrating the external appearance of a grinding tool
and a cross-sectional view taken along line A-A;
FIG. 3 is a view illustrating the external appearance of another configuration of
the grinding tool according to the prior art;
FIGS. 4A and 4B are a view illustrating a coupler where a grinding tool is coupled
and a cross-sectional view taken along line B-B;
FIGS. 5A and 5B are cross-sectional view illustrating a sleeve and a cap nut according
to the prior art;
FIG. 6 is a cross-sectional view illustrating parts combined with the coupler according
to the prior art;
FIGS. 7A and 7B are cross-sectional view illustrating assembly and operational relationships
of parts according to the prior art;
FIG. 8 is an exploded perspective view of parts in a polishing holder removing device
for a grinder according to the present invention;
FIG. 9 is a perspective view of a coupler assembly combined with parts according to
the present invention;
FIGS. 10A, 10B, and 10C are cross-sectional view of a coupler, a sleeve, and a cap
nut, respectively, according to the present invention;
FIG. 11 is a cross-sectional view of the coupler assembly combined with parts according
to the present invention;
FIG. 12 is a view illustrating the grinding tool and the coupler assembly according
to the present invention, that are separated;
FIGS. 13A and 13B are partial cross-sectional views illustrating operational relationship
of parts according to the present invention; and
FIG. 14 is a cross-sectional view illustrating a process of coupling the grinding
tool according to the present invention.
[Best Mode]
[0023] Exemplary embodiments of the present invention will now be described in detail with
reference to the accompanying drawings.
[0024] The present invention employs some of the configuration in Korean Patent No.
1056036, but improves defects of the patent, so the configuration of this device will be
cited first and then the configuration relating to improvement by the present invention
will be described in detail.
[0025] As illustrated in FIGS. 1 to 7B, a polishing holder removing device for a grinder
includes a grinding tool 11 that is coupled with various abrasives P1, depending on
the objects to be machined, a coupler 12 where the grinding tool 11 is fitted and
fixed and that is rotated at a high speed by a rotary shaft P3 of a grinder body P2,
and a sleeve 13 that elastically slide around the outer side of the coupler 12.
[0026] There are further provided locking balls 14 that are moved into/out of the coupler
12 when the sleeve 13 is moved so that the grinding tool 11 can be coupled/decoupled,
a spring 15 that applies elasticity to the sleeve 13, and a cap nut 16 that is coupled
to the front portion of the coupler 12 to retain the locking balls 14.
[0027] A pair of flanges 17a and 17b are formed on the body of the grinding tool 11, a groove
18a is formed between the flanges, and an outer toothed-portion 18b longitudinally
machined is formed around an extension that extends from the end of the flange 17b.
[0028] The grinding tool 11 is a common consumable part that is discarded after being used
for a predetermined period of time and an abrasive P1 is formed like a brush by winding
thin metal wires in the embodiment, but grinding stones formed in various shapes such
as a disc, a cone, and a cup may be used, depending on the material, size, and use
of objects to be machined.
[0029] Further, as illustrated in FIG. 3, the grinding tool 11 may be manufactured by separately
forming a first body 19A equipped with the abrasive P1 and a second body 19B having
the outer toothed-portion 18b and then combining the bodies, in which a shank 20b
having slits 20a may be formed at an end of the first body 19A and an insertion hole
20c may be formed at the second body 19B to combine them.
[0030] In this case, an adhesive may be applied to the slits 20a of the first body 19A so
that they can be held like a single unit in the insertion hole 20c of the second body
19B.
[0031] Fourth through holes 21a are formed on the same line around the body of the coupler
12, a threaded-portion 21b and a step 21c are formed at both ends, respectively, and
a seating hole 22a for receiving the flanges 17a and 17b of the grinding tool 11 are
formed in the body.
[0032] Further, an inner toothed-portion 22b is formed at the center portion connected to
the seating hole 22a and a female threaded-portion 22c is formed behind the inner
toothed-portion 22b, so it can be thread-fastened to a rotary shaft P3 mounted on
a common grinder body P2.
[0033] Meanwhile, the locking balls 14 are disposed in the four through holes 21a formed
in the coupler 12, and are moved into/out of the through holes 21a of the coupler
12 to be fitted/separated into/from the groove 18a of the grinding tool 11 when the
sleeve 13 slides, so the grinding tool 11 can be freely coupled/decoupled to/from
the coupler 12.
[0034] Further, a protrusion 24 having an inclined surface 23a and a step 23b is formed
at a side on the inner side of the sleeve 13 that is disposed around the coupler 12,
an anti-sliding portion 25 is formed around the outer side of the sleeve 13, and the
spring 15 is disposed between the step 23b at the protrusion 24 of the sleeve 13 and
the step 21c on the outer side of the coupler, so the sleeve 13 can be elastically
moved.
[0035] The cap nut 16 having a locking protrusion 16a is fastened to the threaded-portion
21b at the front end of the coupler 12, so the sleeve 13 can be retained and a single
product can be achieved.
[0036] This configuration has been disclosed in Korean Patent No.
1056036 by the applicant(s) and the present invention can provide a hand grinder having higher
performance by removing defects in the related art described above, on the basis of
the configuration.
[0037] As illustrated in FIGS. 8 to 14, a polishing holder removing device for a grinder
according to the present invention include a grinding tool 110 that is equipped with
an abrasive P1 at a portion of the body, a coupler 120 that is mounted on a grinder
body P2, a sleeve 130 that slides on the outer side of the coupler 120, locking balls
140 that are disposed in the coupler 120 to fix or release the grinding tool 110,
a spring 150 that provides elasticity when the sleeve 130 slides, and a cap nut 160
that retains the sleeve 130.
[0038] The grinding tool 110, as described above, can be equipped with not only an abrasive
P1 formed like a brush, but also a grinding stone formed in the shape of a disc, a
cone, and a cup, depending on the material, size, and use of an object to be machined,
and a cylindrical shank 111, a groove 112, and a rectangular shank 113 are sequentially
formed at an end portion of the body of the grinding tool 110.
[0039] Further, the coupler 120 has a seating hole 121a and a rectangular hole 121b where
the grinding tool 110 is fitted and fixed, a threaded-hole 121c for fastening to a
grinder body P2, and a flange having two lines of through holes 122a and 122b formed
around the outer side.
[0040] Two to four through holes 122a and 122b may be formed in two lines around the outer
side of the coupler 120 and three ball holes may be formed with intervals of 120°.
[0041] Further, a thread 124a is formed at the front end portion of the coupler 120 and
two to four dust exit holes 125 connected vertically from the rectangular hole 121b
are formed in another flange 123.
[0042] The sleeve 130 is fitted on the coupler 120 to slide left and right, in which a lower
dustproof groove 133 having a step 132a and a seating groove 134 are formed at a side
in the sleeve 130 and an upper dustproof groove 135 is formed at the other side.
[0043] A dustproof rubber 136a and a washer 136b are disposed in the lower dustproof groove
133 and an upper dustproof rubber 137a is disposed in the upper dustproof groove 135,
so it is possible to prevent permeation of dust produced by grinding. Further, a pair
of projections 138b and 138c divided by a spherical groove 138a is formed on the inner
side 131 of the sleeve 130.
[0044] The locking balls 140 are disposed in the through holes 122a and 122b formed in the
coupler 120 and moved toward/away from the cylindrical shank 111 and the groove 112
of the grinding tool 110 when the sleeve 130 moves so that the grinding tool 110 can
be fixed or released.
[0045] Further, the spring 150 is disposed on the flange of the coupler 120 and a seating
groove 134a of the sleeve 130 and can apply elasticity when the sleeve 130 horizontally
moves.
[0046] A thread 162a formed on the inner side of the flange 161 of the cap nut 160 is fastened
to the thread 124a formed at the front end portion of the coupler 120, so the cap
nut 160 can retain the sleeve 130.
[0047] According to the present invention having the configuration described above, the
locking balls 140 are put into the two lines of through holes 122a and 122b formed
around the coupler 120 and then the sleeve 130 is coupled to the front end portion
of the coupler 120 with the spring 150 fitted on the outer side, so the locking balls
140 are retained in the through holes 122a and 122b.
[0048] Thereafter, the cap nut 160 is fastened to the thread 124 formed at the front end
portion of the coupler 120, so a single product can be achieved, as illustrated in
FIG. 9, and the threaded-hole 121c formed at the rear portion of the coupler 120 can
be fastened to the grinder body P2.
[0049] In this state, in order to insert the grinding tool 110 into the seating hole 121a
of the coupler 120, the sleeve 130 is pulled to the right, that is, toward the grinder
body P2 against the spring 150 and the cylindrical shank 111 of the grinding tool
110 is fitted into the seating hole 121a of the coupler 120, so the grinding tool
110 can be easily mounted.
[0050] That is, as illustrated in FIGS. 13A and 13B, as the cylindrical shank 111 of the
grinding tool 110 is inserted, the locking balls 140 are pushed out of the through
holes 122a and 122b and temporarily moved to the portion between the projections 138a
and 138b. Further, as the sleeve 130 is returned by the restoring force of the spring
150, the projections 138a and 138b push the locking balls 140 and move toward the
cylindrical shank 111 and the groove 112 of the grinding tool 110, so the grinding
tool 110 can be firmly fixed.
[0051] In this case, As the grinding tool 110 is inserted into the seating hole 121a of
the coupler 120, the rectangular shank 113 formed at the end portion of the grinding
tool 110 is locked into a rectangular hole 121b formed at the center portion inside
the coupler 120, so the grinding tool 110 can be further retained.
[0052] Accordingly, the coupling force between the coupler 120 and the grinding tool 110
rotated at a high speed in grinding is increased, so vibration can be minimized in
work and stability can be ensured. Further, power can be very smoothly transmitted
from the grinder body P2.
[0053] Further, in order to separate the grinding tool 110 from the coupler 120, as described
above, a space to which the locking balls 140 can be moved is formed by pulling the
sleeve 130 toward the grinder body P2 and then the grinding tool 110 is pulled out
of the seating hole 121a of the coupler 120, so the grinding tool 110 can be easily
separated.
[0054] Meanwhile, during various types of grinding with the grinding tool 110 mounted, dust
such as paint or iron powder are collected and accumulated in the gaps between parts,
so the grinding tool 110 cannot be easily coupled/decoupled to/from the coupler 120
in the related art.
However, in the present invention, since the washer 136b, including the lower dustproof
rubber 136a, is disposed in the lower dustproof groove 133 formed on the coupler 120
and the upper dustproof rubber 137a is disposed in the upper dustproof groove 135,
dust permeates very little into the coupler 120.
[0055] Further, since the dust exit holes 125 are formed in the other flange 123 of the
coupler 120 and a centrifugal force is exerted in the coupler 120 and the grinding
tool 110 rotated at a high speed, so dust that may remain in the coupler 120 can be
discharged outside.
[0056] Further, since the cylindrical shank 111, the groove 112, and the rectangular shank
113 are continuously formed at a side of the body of the grinding tool 110 and fixed
by the two lines of locking balls 140 in the coupler 120, the grinding tool 120 is
not separated from the coupler 120 and the existing grinding tool 110 can be used
as it is. Accordingly, compatibility of consumable parts can be achieved and factors
causing vibration can be effectively removed.
[0057] While the present invention has been illustrated and described in connection with
the exemplary embodiments, it will be apparent to those skilled in the art that modifications
and variations can be made without departing from the scope of the invention as defined
by the appended claims.
1. A polishing holder removing device (110, 120, 130, 140, 150, 160) for a grinder, including
- a grinding tool (110) that is equipped with an abrasive (P1) at a portion of a grinding
tool body of the grinding tool (110),
- a coupler (120) that is mountable on a rotary shaft of a grinder body (P2) of a
grinder,
- a sleeve (130) disposed around the coupler (120) to slide on the outer side of the
coupler (120),
- locking balls (140) that are disposed in the coupler (120) to fix or release the
grinding tool (110),
- a spring (150) that provides elasticity when the sleeve (130) slides, and
- a cap nut (160) that retains the sleeve (130),
wherein a cylindrical shank (111) and a groove (112) are formed at an end portion
of the grinding tool body of the grinding tool (110),
the coupler (120) has a seating hole (121a) where the grinding tool (110) is fitted
and fixed, a threaded-hole (121c) for fastening to the grinder body (P2) of the grinder,
and a flange having through-holes (122a, 122b) formed around the outer side,
the sleeve (130) is fitted on the coupler (120) to slide, a first dustproof groove
(133) having a step (132a) and a seating groove (134a) is formed at a side in the
sleeve (130), and a second dustproof groove (135) is formed at the other side,
the locking balls (140) are disposed in the through holes (122a, 122b) formed in the
coupler (120) and moved toward/away from the cylindrical shank (111) and the groove
(112) of the grinding tool (110) when the sleeve (130) moves so that the grinding
tool (110) can be fixed or released,
the spring (150) is disposed on the flange of the coupler (120) and the seating groove
(134a) of the sleeve (130) and applies elasticity when the sleeve (130) slides,
the cap nut (160) is fastened to a front end portion of the coupler (120) to retain
the sleeve (130),
characterized in that the cylindrical shank (111), the groove (112), and a rectangular shank (113) are
sequentially formed at the end portion of the grinding tool body of the grinding tool
(110),
and
in that the coupler (120) further has a rectangular hole (121b) where the grinding tool (110)
is fitted and fixed,
and
in that the through-holes (122a, 122b) are formed in two lines around the outer side of the
coupler (120).
2. The device (110, 120, 130, 140, 150, 160) of claim 1, wherein dust exist holes (125)
connected to the rectangular hole (121b) are formed in another flange (123) of the
coupler (120).
3. The device (110, 120, 130, 140, 150, 160) of claim 1, wherein projections (138c) divided
by a spherical groove (138a) are formed on the inner side of the sleeve (130) to retain
the locking balls (140), and
a first dustproof rubber (136a) and a washer (136b) are disposed in the first dustproof
groove (133) and a second dustproof rubber (137a) is disposed in the second dustproof
groove (135) to prevent permeation of dust.
1. Polierhalter-Entfernungsvorrichtung (110, 120, 130, 140, 150, 160) für eine Schleifmaschine,
aufweisend
- ein Schleifwerkzeug (110), das mit einem Schleifmittel (P1) an einem Abschnitt eines
Schleifwerkzeugkörpers des Schleifwerkzeugs (110) ausgestattet ist,
- eine Kopplungseinrichtung (120), die an einer Drehwelle eines Schleifmaschinenkörpers
(P2) einer Schleifmaschine montierbar ist,
- eine Hülse (130), die um die Kopplungseinrichtung (120) herum angeordnet ist, um
auf der Außenseite der Kopplungseinrichtung (120) zu gleiten,
- Verriegelungskugeln (140), die in der Kopplungseinrichtung (120) angeordnet sind,
um das Schleifwerkzeug (110) zu fixieren oder freizugeben,
- eine Feder (150), die beim Gleiten der Hülse (130) eine Elastizität bereitstellt,
und
- eine Überwurfmutter (160), die die Hülse (130) hält,
wobei ein zylindrischer Schaft (111) und eine Nut (112) an einem Endabschnitt des
Schleifwerkzeugkörpers des Schleifwerkzeugs (110) ausgebildet sind,
wobei die Kopplungseinrichtung (120) ein Sitzloch (121a), in das das Schleifwerkzeug
(110) eingesetzt und fixiert wird, ein Gewindeloch (121c) zur Befestigung am Schleifmaschinenkörper
(P2) der Schleifmaschine, und einen Flansch mit um die Außenseite herum ausgebildeten
Löchern (122a, 122b) aufweist,
wobei die Hülse (130) auf die Kopplungseinrichtung (120) aufgeschoben ist, um zu gleiten,
wobei eine erste staubdichte Nut (133) mit einer Stufe (132a) und einer Sitznut (134a)
an einer Seite in der Hülse (130) ausgebildet ist, und eine zweite staubdichte Nut
(135) auf der anderen Seite ausgebildet ist,
wobei die Verriegelungskugeln (140) in den Durchgangslöchern (122a, 122b) angeordnet
sind, die in der Kopplungseinrichtung (120) ausgebildet sind, und in Richtung zum
zylindrischen Schaft (111) und der Nut (112) des Schleifwerkzeugs (110) hin bzw. von
diesen weg bewegt werden, wenn die Hülse (130) sich bewegt, so dass das Schleifwerkzeug
(110) fixiert oder freigegeben werden kann,
wobei die Feder (150) an dem Flansch der Kopplungseinrichtung (120) und der Sitznut
(134a) der Hülse (130) angeordnet ist und beim Gleiten der Hülse (130) die Elastizität
ausübt,
wobei die Überwurfmutter (160) an einem vorderen Endabschnitt der Kopplungseinrichtung
(120) befestigt ist, um die Hülse (130) zurückzuhalten,
dadurch gekennzeichnet, dass der zylindrische Schaft (111), die Nut (112) und ein rechteckiger Schaft (113) nacheinander
am Endabschnitt des Schleifwerkzeugkörpers des Schleifwerkzeugs (110) ausgebildet
sind,
und dass die Kopplungseinrichtung (120) ferner ein rechteckiges Loch (121b) aufweist,
in welchem das Schleifwerkzeug (110) eingepasst und fixiert ist,
und dass die Durchgangslöcher (122a, 122b) in zwei Linien um die Außenseite der Kopplungseinrichtung
(120) herum ausgebildet sind.
2. Vorrichtung (110, 120, 130, 140, 150, 160) nach Anspruch 1, wobei mit dem rechteckigen
Loch (121b) verbundene Staubaustrittslöcher (125) in einem weiteren Flansch (123)
der Kopplungseinrichtung (120) ausgebildet sind.
3. Vorrichtung (110, 120, 130, 140, 150, 160) nach Anspruch 1, wobei Vorsprünge (138c),
die durch eine sphärische Nut (138a) unterteilt sind, an der Innenseite der Hülse
(130) ausgebildet sind, um die Verriegelungskugeln (140) zurückzuhalten, und
ein erster staubdichter Gummi (136a) und eine Unterlegscheibe (136b) in der ersten
staubdichten Nut (133) angeordnet sind, und ein zweiter staubdichter Gummi (137a)
in der zweiten staubdichten Nut (135) angeordnet ist, um das Eindringen von Staub
zu verhindern.
1. Dispositif d'enlèvement de support de polissage (110, 120, 130, 140, 150, 160) pour
meuleuse, incluant
- un outil de meulage (110) qui est équipé d'un abrasif (P1) au niveau d'une section
de corps d'outil de meulage de l'outil de meulage (110),
- un coupleur (120) qui peut être monté sur un arbre rotatif d'un corps de meuleuse
(P2) d'une meuleuse,
- un manchon (130) disposé autour du coupleur (120) de manière à glisser sur la face
extérieure du coupleur (120),
- des billes de verrouillage (140) qui sont disposées dans le coupleur (120) de manière
à fixer ou relâcher l'outil de meulage (110),
- un ressort (150) qui confère de l'élasticité lorsque le manchon (130) coulisse,
et
- un écrou-chapeau (160) qui retient le manchon (130),
une tige cylindrique (111) et une gorge (112) étant formées à une section terminale
du corps d'outil de meulage de l'outil de meulage (110),
le coupleur (120) comportant un trou d'assise (121a) où l'outil de meulage (110) est
ajusté et fixé, un trou fileté (121c) pour fixation au corps de meuleuse (P2) de la
meuleuse, et une bride dotée de trous traversants (122a, 122b) pratiqués autour de
la face extérieure,
le manchon (130) étant ajusté sur le coupleur (120) pour coulisser, une première gorge
antipoussière (133) comportant un échelon (132a) et une gorge d'assise (134a) étant
formée sur une face dans le manchon (130), et une seconde gorge antipoussière (135)
étant formée sur l'autre face,
les billes de verrouillage (140) étant disposées dans les trous traversants (122a,
122b) pratiqués dans le coupleur (120) et déplacées vers/depuis la tige cylindrique
(111) et la gorge (112) de l'outil de meulage (110) lorsque le manchon (130) se déplace
de manière à ce que l'outil de meulage (110) puisse être fixé ou relâché,
le ressort (150) étant disposé sur la bride du coupleur (120) et la gorge d'assise
(134a) du manchon (130) et appliquant de l'élasticité lorsque le manchon (130) coulisse,
l'écrou-chapeau (160) étant fixé à une section terminale avant du coupleur (120) pour
retenir le manchon (130),
caractérisé en ce que la tige cylindrique (111), la gorge (112), et une tige rectangulaire (113) sont formées
séquentiellement à la section terminale du corps d'outil de meulage de l'outil de
meulage (110),
et
en ce que le coupleur (120) comporte en outre un trou rectangulaire (121b) où l'outil de meulage
(110) est ajusté et fixé,
et
en ce que les trous traversants (122a, 122b) sont pratiqués en deux lignes autour de la face
extérieure du coupleur (120).
2. Dispositif (110, 120, 130, 140, 150, 160) selon la revendication 1, dans lequel des
trous de sortie de poussière (125) connectés au trou rectangulaire (121b) sont pratiqués
dans une autre bride (123) du coupleur (120) .
3. Dispositif (110, 120, 130, 140, 150, 160) selon la revendication 1, dans lequel des
saillies (138c) divisées par une gorge sphérique (138a) sont formées sur la face intérieure
du manchon (130) pour retenir les billes de verrouillage (140), et
un premier caoutchouc antipoussière (136a) et une rondelle (136b) sont disposés dans
la première gorge antipoussière (133) et un second caoutchouc antipoussière (137a)
est disposé dans la seconde gorge antipoussière (135) pour empêcher la pénétration
de poussière.