[0001] The present invention relates to a reciprocable shaft comprising an arrangement for
clamping a saw blade according to the preamble of claim 1 and has particular, although
not exclusive, relevance to such a shaft as used on a power jigsaw, or the like.
EP 0 072 282 discloses such a shaft.
[0002] The ability to clamp the blade of a power saw has long been known to be a desirable
feature. Power saws which cut using a linear reciprocal action usually operate at
high stroke speeds, such as 3,000 strokes per minute.
[0003] Because of the large forces generated by the cutting action at these reciprocal frequencies,
there is a need to rigidly clamp the blade to the shaft on which it is mounted and
which is being driven by the motor of the power saw. Failure to clamp the blade could
result in the blade working loose from its mounting and warping or snapping during
use.
[0004] However, the desire to rigidly clamp the saw blade to its driving shaft tends to
create problems with the need to change saw blades depending upon the nature of the
workpiece being sawed. For example, a different type of saw blade is used to saw wood
as opposed to metal. Thus the need to constantly change the saw blade is not helped
by the need to rigidly mount the blade on its driving shaft.
[0005] It would therefore be desirable to utilise a mechanism which on the one hand allows
rigid clamping of the saw blade to its driving shaft, and on the other hand allows
rapid interchanging of different types of saw blade.
[0006] This problem is solved by the combination of features of independent claim 1 : a
reciprocable shaft comprising an arrangement for clamping a saw blade, the arrangement
including:-
a pin adapted to engage a saw blade presented thereto, wherein the pin is rotatable
relative to said shaft about an axis; and
restraining means for restraining movement of the saw blade in a direction perpendicular
to the direction of reciprocation of the shaft;
characterised in that said pin carries a lug for mounting said saw blade the lug having
a predetermined shape so as to prevent rotation of the saw blade relative to the lug
and hence to prevent rotation of said saw blade relative to said pin and wherein the
pin is lockable in at least two locked positions about said axis relative to said
shaft, and in that said restraining means is adapted to restrain movement of the saw
blade in a direction perpendicular to the direction of reciprocation of the shaft
when said pin is in at least one said locked position, to clamp the saw blade to the
shaft.
[0007] Dependent claims 2 to 13 disclose further preferred embodiments of the invention.
[0008] The pin may be normally biased into a first position and may be moveable into a second
position. Provision of a moveable pin allows for easy manual interchange of saw blades.
[0009] Advantageously the lug may be arranged to co-operate with a correspondingly shaped
recess. By arranging for the lug to have a shape which fits in a co-operable recess
on the blade, a stable and rigid clamping of the blade may be achieved.
[0010] Preferably the pin may rotate about said axis such that when the lug is rotationally
aligned with the recess, the biasing action causes the lug to fit within the recess
thereby preventing further rotation of the pin about the axis. Additionally, when
the lug is in the recess, the pin may be locked. Also the blade for clamping may be
mounted on the lug.
[0011] In a preferred embodiment, the restraining means may comprise a plurality of arms
depending from the shaft. Advantageously the plurality of arms may be arranged in
pairs and a blade for clamping is positioned between a pair of the arms when clamped.
[0012] Preferably there is provided a saw comprising a reciprocable shaft as defined above
and a saw blade, the saw blade comprising a main body portion; a shank extending from
the main body portion; and a mounting hole formed in the shank to enable operative
coupling of the saw blade to the clamping arrangement, whereby the mounting hole extends
in two dimensions, the length of the extent in one dimension being greater than the
length of the extent in the other dimension, and wherein the one dimension extends
generally perpendicularly with respect to the other dimension. This arrangement allows
for rigid clamping of the blade in use, or when attached to its mount.
[0013] Preferably the shank is integral with the body portion. This allows for reduced use
of materials during manufacture and hence permits cost saving.
[0014] Preferably the mounting hole is formed within the body of the saw blade and does
not touch any peripheral surface of the saw blade. This permits a strong saw blade
to be formed.
[0015] Advantageously the shape of the mounting hole may be rectangular, oval or elliptical.
Also the length of extent may be greater for the dimension parallel with the line
of action of the saw blade in use than for the dimension perpendicular with the direction
of the line of action of the saw blade in use.
[0016] The present invention will now be described, by way of example only, and with reference
to the accompanying drawings, of which:-
Figure 1 shows a reciprocable shaft on which a saw blade may be mounted in accordance
with an embodiment of the present invention;
Figure 2 shows the shaft of Figure 1, but with a saw blade mounted thereon in an operating
position from one side;
Figure 3 shows the view of Figure 2, but from the other side of the saw blade;
Figure 4 shows a side view of the reciprocable shaft of Figure 1, but with the retaining
member thereof being in an unlocked position;
Figure 5 shows the shaft of Figure 1 with the saw blade mounted thereon in a locked
position;
Figure 6 shows a sectional view along the line A-A of Figure 5;
Figure 7 shows a sectional view along the line B-B of Figure 5;
Figure 8 shows a side view of a saw blade and the reciprocable shaft of Figures 2
and 3 in an unlocked position;
Figure 9 shows the view of Figure 8, but with the saw blade now retained in its stored
and locked position;
Figure 10 shows a schematic illustration of the motor and internal mechanisms of a
power tool in accordance with an embodiment of the present invention;
Figure 11 shows a schematic side representation of Figure 10;
Figure 12 shows a side view of a powered saw in accordance with an embodiment of the
present invention; and
Figure 13 shows a side view of an alternative use of a powered saw to that of Figure
12.
Figure 14 illustrates schematically various hole configurations for a saw blade in
accordance with an embodiment of the present invention.
[0017] Referring firstly to Figure 1, there is shown a shaft (2) formed from pressed metal,
such as steel, and having in the centre thereof a yoke (4). One end of the shaft (2)
is formed integrally with a depending retaining member, here a blade mount (6). The
blade mount (6) comprises a restraining means, here two arms (8) which depend from
the shaft (2). The blade mount further includes a pin (10) which will be described
in more detail below.
[0018] Referring now also to Figures 2 and 3, it can be seen that the shaft (2) is arranged
to drive a saw blade (12) presented thereto and which is mounted on the blade mount
(6). It can be seen that the saw blade (12) has a shank (14) which has formed therein
a hole (16) (seen more clearly in Figures 5, 8 and 9) for mounting the blade (12)
on a lug (18) of the pin (10). Although the saw blade (12) includes a shank in this,
preferred, embodiment, the shank may be formed integrally with the body portion, as
discussed below and with reference to Figure 14(b).
[0019] Referring now to Figure 4, it can be seen that the pin (10) comprises a head (20)
formed on one side of the blade mount (6) and a lug (18) co-operating with the head
(20) formed on the other side of the blade mount (6). The shape of the lug (18) is
the same as that of the hole (16) formed in the blade (12). This allows for the blade
(12) to be mounted snugly on the lug (18).
[0020] The pin (10) is rotatable about its axis shown as X-X in Figure 4 and it can be seen
from this figure that the blade mount (6) has a recess (21) formed therein such that
the lug (18) may sit within the recess (21) when it is in one of two positions. Because
the pin (10) is rotatable about the axis X-X, then whenever the lug (18) is aligned
with the recess (21) (in either of two positions 180° apart) then it will fit within
the recess (21). In any other position, the lug (18) cannot sit within the recess
(21).
[0021] In order for the lug (18) to be selectively aligned or not with the recess (21),
the head (20) of the pin (10) is spring biased. In this manner, therefore, whenever
the lug (18) is aligned with the recess (21) it "pops" into the recess and is held
therein until the user exerts sufficient force against the head (20) against the action
of the spring (described later below) to force the lug (18) out of the recess (21)
and therefore allow the pin (10) to be rotated about the axis X-X.
[0022] Referring now additionally to Figure 5, it can be seen that the saw blade (12) is
held in its locked position (because the lug (18) is within the recess (21)) against
the shaft (2). Because the shaft (2) is arranged to reciprocate, that is drive the
blade (12) backwards and forwards along a linear path, then it will be understood
that each of the arms (8) is arranged to flank the shank (14) of the blade (12) to
prevent the blade (12) from becoming detached from the blade mount (6). This is because
the arms (8) prevent any movement of the blade (12) in a direction perpendicular to
the direction of reciprocation of the shaft (2).
[0023] In order to understand the operation of the pin (10) and its interaction with the
blade (12), reference will now be made in particular to Figures 5, 6 and 7.
[0024] The pin (10) is spring biased, and in the case of Figure 6, it can be seen that the
head (20) of the pin (10) has not been depressed and therefore under the action of
the spring (22), the head (20) is forced to the left of Figure 6 therefore allowing
the lug (18) to sit within the recess (21). This does, of course, presuppose that
the lug (18) is aligned with the recess (21) as has been described here above. Assuming
this to be the case, then the blade will be locked in this position. Rotation of the
pin and therefore the lug (18) are not possible because the lug (18) is located within
the housing (20).
[0025] Referring now to Figure 7, it will be described how the lug (18) is released from
the recess (21) in order to allow rotation of the saw blade (12).
[0026] In Figure 7 the user has pushed the head (20) to the right of the figure and therefore
caused compression of the spring (22). The movement of the pin (10) to the right of
the figure releases the lug (18) from the recess (21) and therefore allows rotation
of the pin (10) about its axis X-X. Because the lug (18) is now no longer located
within the recess (21) then rotation of the pin (10) means that the blade (12) may
be rotated as well. Referring also to Figure 8, this shows how the saw blade (12)
has been rotated through 90° as compared with the locked position of Figure 5.
[0027] Whilst referring to Figure 8, it can be seen that, because the blade (12) is now
perpendicular to the shaft (2) rather than parallel therewith as was the case in Figure
5, then the shank (14) of the saw blade (12) is no longer constrained by the arms
(8) of the blade mount (6). This means that the entire blade (12) may be removed from
the lug (18) and could, for example, be replaced by an alternative saw blade.
[0028] Referring now to Figure 9, it can be seen that further rotation of the pin (10) and
the blade (12) is possible (because there is no alignment between the lug (18) and
the recess (20)). The saw blade (12) as shown in Figure 9 has now been rotated through
180° with respect to that of Figure 5. It will be appreciated that the lug (18) is
now realigned with the recess (21) and therefore if the user ceases to apply any force
to the head (20) of the pin (10), then the lug (18) may fall back into the recess
(21) and therefore lock the saw blade (12) in the position shown. This may be useful
when the saw is to be carried around but the blade needs to be kept safely within
the body of the saw, for example, to avoid injuring a user or damage to the saw blade.
[0029] Although only shown in dotted outline in Figure 9, it will understood that a further
pair of arms (8) may be employed in the blade mount (6) to retain the saw blade (12)
in the position shown.
[0030] Referring now to Figures 14(a), (b) and (c), it can be seen that the mounting hole
(6) extends in two, generally perpendicular directions. In the figures, these directions
have been indicated by the axes marked "x" and "y". It can be seen that the length
of extent of one of these axes, here "x", is greater than the length of extent of
the other of these axes, here "y". This is permit rigid (that is non-moveable) mounting
of the blade (12) on the lug (18).
[0031] It can be seen from these figures that it is preferable for the mounting hole (6)
to be formed within the body of the saw blade (12) such that the hole (6) does not
touch any peripheral surface of the blade (12).
[0032] Figure 14(a) illustrates the case where the hole (6) is formed as a rectangle; Figure
14(b) that where the hole (6) is formed as an ellipse; and Figure 14(c) that where
the hole (6) is formed as an oval. These variants all share the common property of
having a length of extent in one dimension greater than that in another, orthogonal,
direction.
[0033] Referring now to Figures 10 and 11 particularly, the internal mechanism of the power
tool including a clamping arrangement embodying the present invention will be described.
In these examples, the power tool is a power saw.
1. A reciprocable shaft (2) comprising an arrangement for clamping a saw blade (12),
the arrangement including:-
a pin (10) adapted to engage a saw blade (12) presented thereto, wherein the pin (10)
is rotatable relative to said shaft (2) about an axis (X-X); and
restraining means (8) for restraining movement of the saw blade (12) in a direction
perpendicular to the direction of reciprocation of the shaft;
characterised in that said pin (10) carries a lug (18) for mounting said saw blade (12) the lug (18) having
a predetermined shape so as to prevent rotation of the saw blade (12) relative to
the lug (18) and hence to prevent rotation of said saw blade relative to said pin
(10) and wherein the pin (10) is lockable in at least two locked positions about said
axis (X-X) relative to said shaft, and in that said restraining means (8) is adapted to restrain movement of the saw blade in a
direction perpendicular to the direction of reciprocation of the shaft when said pin
is in at least one said locked position, to clamp the saw blade to the shaft.
2. A shaft according to claim 1, wherein the pin (10) is normally biased into a first
position and is moveable into a second position.
3. A shaft according to claim 1 or 2, wherein the lug (18) is arranged to co-operate
with a correspondingly shaped recess (21).
4. A shaft according to claim 3, wherein the pin (10) may rotate about said axis (X-X)
such that when the lug (18) is rotationally aligned with the recess (21), the biasing
action causes the lug to fit within the recess thereby preventing further rotation
of the pin about the axis.
5. A shaft according to claim 4 wherein, when the lug (18) is within the recess (21),
the pin (10) is locked.
6. A shaft according to any one of the preceding claims, wherein a blade (12) for clamping
is mounted on the lug (18).
7. A shaft according to any one of the preceding claims, wherein the restraining means
(8) comprises a plurality of arms (8) depending from the shaft.
8. A shaft according to claim 7, wherein the plurality of arms (8) are arranged in pairs
and a blade (12) for clamping is positioned between a pair of the arms (8) when clamped.
9. A saw comprising a reciprocable shaft according to any one of the preceding claims
and a saw blade, the saw blade comprising:
a main body portion; a shank (14) extending from the main body portion; and a mounting
hole (16) formed in the shank (14) to enable operative coupling of the saw blade (12)
to the clamping arrangement,
whereby the mounting hole (16) extends in two dimensions, the length of the extent
in one dimension being greater than the length of the extent in the other dimension,
and wherein the one dimension extends generally perpendicularly with respect to the
other dimension.
10. A saw according to claim 9, wherein the shank (14) is integral with the body portion.
11. A saw according to either claim 9 or claim 10, wherein the mounting hole (16) is formed
within the body of the saw blade and does not touch any peripheral surface of the
saw blade.
12. A saw according to any one of claims 9 to 11, wherein the mounting hole (16) is rectangular,
oval or elliptical in shape.
13. A saw according to any one of claims 9 to 12, wherein the length of extent is greater
for the dimension parallel with the line of action of the saw blade use in use than
for the dimension perpendicular with the direction of the line of action of the saw
blade in use.
1. Welle (2) für eine Hin- und Herbewegung mit einer Anordnung zum Klemmen eines Sägeblatts
(12), wobei die Anordnung umfasst:
einen Stift (10), der ausgestaltet ist, mit einem ihm bereitgestellten Sägeblatt (12)
einzugreifen, wobei der Stift (10) in Bezug auf die Welle (2) um eine Achse (X-X)
drehbar ist, und
eine Halteeinrichtung (8) zum Einschränken einer Bewegung des Sägeblatts (12) in einer
Richtung senkrecht zu der Richtung der Hin- und Herbewegung der Welle,
dadurch gekennzeichnet, dass der Stift (10) einen Vorsprung (18) zum Anbringen des Sägeblatts (12) trägt, wobei
der Vorsprung (18) eine vorbestimmte Form hat, um eine Drehung des Sägeblatts (12)
relativ zu dem Vorsprung (18) zu verhindern und um somit eine Drehung des Sägeblatts
relativ zu dem Stift (10) zu verhindern, und wobei der Stift (10) in zumindest zwei
verriegelten Stellungen um die Achse (X-X) relativ zu der Welle verriegelbar ist,
und dass die Halteeinrichtung (8) ausgestaltet ist, die Bewegung des Sägeblatts in
einer Richtung senkrecht zur Richtung der Hin- und Herbewegung der Welle zu beschränken,
wenn der Stift in wenigstens einer der verriegelten Stellungen ist, um das Sägeblatt
an die Welle zu klemmen.
2. Welle nach Anspruch 1, wobei der Stift (10) normalerweise in eine erste Stellung vorgespannt
ist und in eine zweite Stellung bewegbar ist.
3. Welle nach Anspruch 1 oder 2, wobei der Vorsprung (18) angeordnet ist, um mit einer
entsprechend geformten Ausnehmung (21) zusammenzuwirken.
4. Welle nach Anspruch 3, wobei der Stift (10) um die Achse (X-X) rotieren kann, so dass,
wenn der Vorsprung (18) in Drehrichtung zu der Ausnehmung (21) ausgerichtet ist, die
Vorspannwirkung den Vorsprung veranlasst, in der Ausnehmung zu liegen, wobei eine
weitere Drehung des Stifts um die Achse verhindert wird.
5. Welle nach Anspruch 4, wobei der Stift (10) verriegelt ist, wenn der Vorsprung (18)
in der Ausnehmung (21) ist.
6. Welle nach einem der vorhergehenden Ansprüche, wobei ein Blatt (12) zum Klemmen an
dem Vorsprung (18) angebracht ist.
7. Welle nach einem der vorhergehenden Ansprüche, wobei die Halteeinrichtung (8) eine
Vielzahl von Armen (8) umfasst, die an der Welle hängen.
8. Welle nach Anspruch 7, wobei die Vielzahl von Armen (8) paarweise angeordnet sind
und ein Blatt (12) zum Klemmen zwischen einem Paar der Arme (8) angeordnet ist, wenn
es geklemmt wird.
9. Säge mit einer sich hin- und hinbewegenden Welle nach einem der vorhergehenden Ansprüche
und einem Sägeblatt, wobei das Sägeblatt umfasst:
einen Hauptkörperbereich, einen Schaft (14), der sich von dem Hauptkörperbereich erstreckt,
und eine Befestigungsbohrung (16), die in dem Schaft (14) ausgebildet ist, um eine
betriebsmäßige Verbindung des Sägeblatts (12) mit der Klemmanordnung zu ermöglichen,
wobei die Befestigungsbohrung (16) sich in zwei Dimensionen erstreckt, wobei die Länge
der Erstreckung in einer Dimension größer als die Länge der Erstreckung in der anderen
Dimension ist und wobei die eine Dimension sich im Allgemeinen senkrecht in Bezug
auf die andere Dimension erstreckt.
10. Säge nach Anspruch 9, wobei der Schaft (14) integral mit dem Körperbereich ausgebildet
ist.
11. Säge nach Anspruch 9 oder 10, wobei die Befestigungsbohrung (16) in dem Körper des
Sägeblatts gebildet ist und keine Umfangsfläche des Sägeblatts streift.
12. Säge nach einem der Ansprüche 9 bis 11, wobei die Befestigungsbohrung (16) in der
Form rechteckig, oval oder elliptisch ist.
13. Säge nach einem der Ansprüche 9 bis 12, wobei die Länge der Erstreckung für die Dimension
parallel zur Wirkungsrichtung des Sägeblatts bei der Verwendung größer ist als für
die Dimension senkrecht zur Wirkungsrichtung des Sägeblatts bei der Verwendung.
1. Un arbre (2) à mouvement en va-et-vient, comprenant un agencement pour le serrage
d'une lame de scie (12) l'agencement comprenant .

une broche (10) adaptée pour venir en prise avec une lame de scie (12) lui étant
présentée, dans lequel la broche (10) est susceptible de tourner par rapport audit
arbre (2), autour d'un axe (X-X) ; et

des moyens de retenue (8) pour limiter le mouvement de la lame de scie (12) dans
une direction perpendiculaire à la direction de mouvement de va-et-vient de l'arbre,
caractérisé en ce que ladite broche (10) porte une patte (18) pour le montage de ladite lame de scie (12),
la patte ayant une forme prédéterminée pour empêcher la rotation de la lame de scie
(12) par rapport à la patte (18) et, par conséquent, pour empêcher la rotation de
ladite lame de scie par rapport à ladite broche (10), et dans lequel ladite broche
(10) est susceptible d'être verrouillée en au moins deux positions verrouillées autour
dudit axe (X-X) par rapport audit arbre, et
en ce que lesdits moyens de retenue (8) sont adaptés pour limiter le déplacement de la lame
de scie dans une direction perpendiculaire à la direction de déplacement en va-et-vient
de l'arbre, lorsque ladite broche se trouve en au moins une dite position verrouillée,
pour serrer la lame de scie sur l'arbre.
2. Un arbre selon la revendication 1, dans lequel la broche (10) est normalement sollicitée
à une première position et est déplaçable à une deuxième position.
3. Un arbre selon la revendication 1 ou 2, dans lequel la patte (18) est agencée pour
coopérer avec une cavité (21) de forme correspondante.
4. Un arbre selon la revendication 3, dans lequel la broche (10) peut tourner autour
dudit axe (X-X), de manière que, lorsque la patte (18) est alignée en rotation avec
la cavité (21), l'action de sollicitation provoque le placement de la patte à l'intérieur
de la cavité, empêchant de cette manière la continuation de la rotation de la broche
autour de l'axe.
5. Un arbre selon la revendication 4, dans lequel, lorsque la patte (18) est placée dans
la cavité (21), la broche (10) est verrouillée.
6. Un arbre selon l'une quelconque des revendications précédentes, dans lequel une lame
(12) servant au serrage est montée sur la patte (18).
7. Un arbre selon l'une quelconque des revendications précédentes, dans lequel les moyens
de retenue (8) comprennent une pluralité de bras (8) dépendant de l'arbre.
8. Un arbre selon la revendication 7, dans lequel la pluralité de bras (8) est agencée
par paires, et une lame (2), servant au serrage, est positionnée entre une paire de
bras (8) lorsque le serrage est effectué.
9. Une scie comprenant un arbre susceptible de se déplacer en va-et-vient selon l'une
quelconque des revendications précédentes et une lame de scie, la lame de scie comprenant
:
une partie de corps principal ; une tige (14) s'étendant de la partie de corps principal
et un trou de montage, formé dans la tige (14) pour permettre un accouplement fonctionnel
de la lame de scie (12) à l'agencement de serrage,
de manière que le trou de serrage (16) s'étende en deux dimensions, l'ampleur de l'étendue
dans une direction étant supérieure à l'ampleur dans l'autre direction, et dans lequel
la première dimension s'étend globalement perpendiculairement à l'autre dimension.
10. Une scie selon la revendication 9, dans laquelle la tige (14) est réalisée d'une seule
pièce avec la partie de corps.
11. Une scie selon la revendication 9 ou la revendication 10, dans laquelle le trou de
montage (16) est formé dans le corps de la lame de scie et ne touche aucune surface
périphérique de la lame de scie.
12. Une scie selon l'une quelconque des revendications 9 à 11, dans laquelle le trou de
montage (16) est de forme rectangulaire, ovale ou elliptique.
13. Une scie selon l'une quelconque des revendications 9 à 12, dans laquelle l' ampleur
de l'étendue est supérieure, pour la dimension parallèle à la ligne d'action de la
lame de scie en utilisation, à ce qu'elle est pour la dimension perpendiculaire à
la direction de la ligne d'action de la lame de scie en utilisation.