[0001] The present invention relates to a slat raising/lowering and rotating apparatus for
a horizontal type venetian blind and has particular application to a slat raising/lowering
and rotating apparatus including pull cords for raising and lowering horizontal slats
and ladder cords for supporting the horizontal slats and for controlling rotation
of them in which each pull cord is arranged to be wound onto or unwound from a winding
drum to raise or lower the slats, and each ladder cord is mounted at its upper end
on said winding drum, whereby raising and lowering of the slats and rotation of them
can be controlled by operating a single rotating shaft for driving the winding drums.
[0002] Heretofore, a horizontal type venetian blind having a slat raising and lowering mechanism
in which horizontal slats are raised or lowered under the action of pull cords which
are arranged to be wound onto or unwound from winding drums driven by a single driving
shaft to raise or lower the horizontal slats has been widely used. The slat raising
and lowering mechanism of the above kind has several disadvantages. Firstly, if the
pull cord is collectively wound onto a particular position of the winding drum, a
diameter of the cord wound onto the winding drum is gradually increased and a speed
of winding the pull cord is gradually increased as an amount of the wound pull cord
is increased. Secondly, if the pull cord becomes caught between the previously wound
turns of the pull cord, the pull cord cannot be smoothly unwound from the winding
drum when the slats are lowered.
[0003] Heretofore, the horizontal type venetian blind in which the slat raising/lowering
operation and the slat rotating operation are effected by rotation of the single driving
shaft usually comprises a slat raising/lowering and rotating mechanism including winding
drums for winding pull cords for raising and lowering the slats and rotating drums
supporting upper ends of ladder cords.
[0004] In such slat raising/lowering and rotating mechanism, in view of decreasing the size
of the blind body and parts thereof and improving the appearance of the blind it is
required to dispose the pull cord and the ladder cord so that these cords depend from
closed positions of a blind headbox. Accordingly, it has been a usual practice to
arrange the rotating drum around the periphery of the winding drum, while holding
frictional engagement between these drums.
[0005] In the case of this mechanism, if the diameter of the winding drum is decreased,
the slat raising and lowering speed is decreased. On the other hand, if the diameter
is increased, the size of the headbox containing the drums is necessarily increased
and the diameter of the rotating drum is increased, with the result that the slat
rotating characteristic is deteriorated.
[0006] In order to overcome the above-described problems, it has been proposed to provide
a cord winding apparatus in which a winding drum for winding a slat raising and lowering
cord is constructed to be moved in axial direction, depending upon rotation of said
winding drum, and said cord is fixed at its upper end to the winding drum, so that
the cord is successively wound in helical form around the winding drum. (See Japanese
Patent Publication No. 23035/1981. Japanese Utility Model Publication No. 44797/1983).
[0007] In such construction, it is required to form a male thread on the winding drum along
the whole length thereof and to form a female thread on one end of a drum bearing
member, so that the winding drum is moved in axial direction owing to the meshing
engagement of said male thread and said female thread, when the drum is rotated. However,
it requires considerably troublesome work to form such female thread portion at an
end of the drum bearing member. Furthermore, in view of the fact that in order to
improve the appearance of the blind narrower width of slat becomes widely used in
the blind and, in practice, 15 mm width of slat is usually used at present, while
35 mm width of slat has been usually used in the conventional blind and, consequently,
a headbox which supports the blind becomes smaller, so that it is necessary to decrease
the size of the drum bearing member contained in the headbox. Therefore, it becomes
very difficult to form the female thread portion on the drum bearing member.
[0008] Furthermore, if the diameter of the winding drum is decreased, the slat raising and
lowering speed is also decreased, while if the diameter of the winding drum is increased,
the size of the headbox must be increased and the diameter of the winding drum is
necessarily increased, with the result that the slat rotating characteristic is deteriorated,
as described above.
[0009] In order to overcome such problem, it has been proposed to provide an apparatus including
guide members which serve to narrower the horizontal width of the upper portion of
the ladder cord near the position where the ladder cord is introduced into the headbox.
[0010] According to such apparatus, the torque required to rotate the slats is necessarily
increased and in the conventional construction in which the upper portion of the ladder
cord is frictionally engaged on the winding drum, the larger friction is required,
so that more heavy force is required to effect slat raising/lowering operation or
the slat rotating characteristic is deteriorated.
[0011] It has been also proposed to provide an apparatus in which a clutch spring having
a diameter slightly smaller than an outer diameter of the winding drum is mounted
on the periphery of said winding drum, said clutch spring having both ends projected
outwardly of the winding drum, and the ladder cord is connected, at upper ends of
its frond and rear sides, to said outwardly projecting end portions of the clutch
spring, so that at the time of rotating the slats, the upper end portions of the ladder
cord tend to decrease the inner diameter of the clutch spring. Furthermore, actuating
pieces are arranged to come into engagement with the outwardly projecting end portions
of the clutch spring when the rotation of the slats has been completed. Such actuating
pieces act to loosen the clutch spring after completion of the slat rotating operation,
so that the rotation of the slats can be smoothly effected. If the above-mentioned
ladder cord narrowering construction is applied to this apparatus, the upper end portions
of the ladder cord are directly connected to the outwardly projecting end portions
of the clutch spring, so that the ladder cord constantly acts to decrease the diameter
of the clutch spring, with the result that the operating force is increased.
[0012] US-A-3,310,099 discloses a venetian blind comprising a winding drum for the lift
cord with a female thread formed along its axis, a drum bearing member passing through
the winding drum and having a male thread formed to engage the female thread of the
winding drum so that as the winding drum is rotated, the meshed threads cause the
winding drum to move in an axial direction. A ladder drum, for rotating ladder tapes,
has two axially extending lugs which engage hooks at respective ends of a clutch spring
so that rotation of the cluth spring drives the ladder drum.
[0013] DE-A-1509809 discloses a clutch mechanism for holding the ladder cords and for transmitting
a rotational force from the winding drum to the ladder cord in order to change the
axial rotation of the blind slats.
[0014] According to the present invention the present invention provides a slat raisin/lowering
apparatus as set out in claim 1.
[0015] The remaining claims set out optional features.
[0016] An embodiment of the ivention provides a slat raising/lowering and rotating apparatus
for a horizontal venetian blind including a cord winding drum for winding a slat raising/lowering
cord theron, said cord winding drum being arranged in a headbox of the blind so that
said winding drum is moved in axial direction, depending upon a rotation thereof,
and a slat raising/lowering cord connected, at its upper end, to an end of said cord
winding drum so that the cord is successively wound in a helical form around the winding
drum, said apparatus comprising a male thread portion integrally formed near an end
of said winding drum opposite to the end thereof to which the slat raising/lowering
cord is connected and a drum bearing member for rotatably supporting said cord winding
drum, said drum bearing member having an upwardly opened side and inner side walls
having racks arranged to make meshing engagement with said male thread portion of
the winding drum. In this arrangement the need to form a thread for engagement with
the winding drum is avoided.
[0017] In an embodiment of the invention the apparatus comprises a clutch spring having
a diameter slightly smaller than an outer diameter of said winding drum and mounted
thereon, said clutch spring being projected, at its both ends, outwardly of the winding
drum, a support piece horizontally arranged and connected to an upper end of a ladder
cord for supporting blind slats, said support piece being mounted on a peripheral
surface of said winding drum at a position between the outwardly projected ends of
said clutch spring, an actuating portion formed on a drum bearing member for supporting
said winding drum, said actuating portion being arranged at a postion where said clutch
spring comes into contact with said actuating portion, and a narrowering portion for
narrowering a horizontal width of said ladder cord to a width smaller than an outer
diameter of said winding drum.
[0018] The drawings illustrate a preferred embodiment of the present invention.
[0019] Fig. 1 is an exploded perspective view of an embodiment of the present invention.
[0020] Fig. 2 is a side view, partly broken, of the embodiment shown in Fig. 1.
[0021] Figs. 3A, 3B and 3C are sectional views for explaining the operation of the embodiment
shown in Fig. 1.
[0022] The apparatus shown in Figs. 1 and 2 includes a cord winding drum 1 for winding and
unwinding a slat raising/lowering cord 2 for raising and lowering blind slats. Said
cord winding drum 1 is supported in a drum bearing member 3. A rotating shaft 4 for
driving said winding drum 1 is passed through the winding drum, so that said drum
1 is rotated by said rotating shaft 4 but it is freely slidable along its axial direction.
A ladder cord 5 is provided to support blind slats and to control rotation of the
blind slats.
[0023] The slat raising/lowering and rotating apparatus according to the present invention
is so constructed that slat raising/lowering operation and slat rotating operation
can be controlled by rotating the single driving shaft in one direction or the other.
[0024] A male thread portion 11 is formed at one end of said winding drum 1. The drum bearing
member 3 for supporting the winding drum 1 is formed as an upwardly opened case, and
rack portions 31 are formed on inside walls of said drum bearing member so that said
male thread portion 11 is in meshing engagement with said rack portions 31.
[0025] In the apparatus as described above, when the rotating shaft 4 is rotated in one
direction, the winding drum 1 is moved in an axial direction, so that the cord 2 is
successively wound in a helical form around the winding drum 1, thereby raising the
slats. When the rotating shaft 4 is rotated in the other direction, the winding drum
1 is moved in the opposite axial direction, so that the cord 2 is successively unwound
from the winding drum 1, thereby lowcring the slats.
[0026] A clutch spring 6 having an inner diameter slightly smaller than an outer diameter
of the winding drum 1 is mounted on said winding drum 1. The clutch spring 6 has projected
portions 6a and 6b, at its both ends, which project outwardly of the winding drum
1. The ladder cord 5 has a support piece 7 which is disposed in a horizontal direction
at the upper end of said ladder cord. This support piece 7 is mounted on an outer
surface of the winding drum 1 at a position between said outwardly projected end portions
6a and 6b of the clutch spring 6. Actuating portions 8 are formed on the drum bearing
member 3 for supporting the winding drum 1 and said actuating portions are arranged
to receive the end portion 6a or 6b of the clutch spring 6.
[0027] Guide portions 9 are formed on the drum casing at positions where the ladder cord
5 passes into the drum bearing member. Said guide portions 9 serve to narrower a horizontal
width of the ladder cord to a size smaller than the outer diameter of the winding
drum 1.
[0028] The operation of the slat raising/lowering and rotating apparatus for the horizontal
type blind will be explained, with reference to Figs. 3A, 3B and 3C.
[0029] Fig. 3A shows a state of the apparatus where the slats are not yet rotated. When
the winding drum 1 is rotated in one direction, the cord 2 is unwound from the winding
drum 1, whereby the slats are lowered. At the same time, one vertical cord portion
at one side of the ladder cord 5 moves in downward direction, while the other vertical
cord portion at the outer side of the ladder cord moves in upward direction, whereby
the slats are rotated in one direction. The horizontal width of the ladder cord 5
is narrowered at its upper portion by the guide portions 9, as described above, so
that the slats are forcibly rotated toward their vertical positions and thus superior
rotating characteristic can be attained.
[0030] The clutch spring 5 is connected with the ladder cord through the intermediary of
the horizontal support piece 7, as described above. At the time of the slat raising
and lowering operation, one of the outwardly projected end portions of the clutch
spring comes into engagement with the corresponding actuating portion of the drum
bearing member, so that the clutch spring becomes expanded. Accordingly, the clutch
spring is relieved of the load of the ladder cord, so that the operating force required
to raise or lower the slats becomes lighter. The support piece 7 attached to the upper
end of the ladder cord 5 is slidable in circumferential direction around the winding
drum 1 between the projected end portions 6a and 6b of the clutch spring, so that
after the projected end portion of the clutch spring has come into engagement with
the actuating portion 8, as shown in Fig. 3B, substantially whole load caused by the
rotation of the winding drum and the weight of the slats is applied to the vertical
cord portion at the right side of the ladder cord, so that the slats are further rotated
in the rightward direction by light operating force until the slats reach to the completely
closed state (Fig. 3C).
[0031] Thus it will be understood that the present embodiment provides a slat raising/lowering
and rotating apparatus for a horizontal type blind in which a slat raising/lowering
cord is wound on and unwound from a cord winding drum in a helical form, whereby the
slat raising/lowering cord can be smoothly wound on and unwound from the winding drum,
without causing gradual increasing of the wound diameter of the cord or without causing
the cord to be caught between the previously wound turns of the slat raising/lowering
cord.
1. A slat raising/lowering apparatus for a horizontal type venetian blind in which a
slat raising/lowering cord (2) is wound onto or off from a spindle (1) to raise and
lower the slats, and the spindle (1) has a screw thread (11) to move it axially as
it rotates whereby the slat raising/lowering cord (2) is wound on the spindle (1)
helically,
characterised in that
the screw thread (11) is a male thread and the apparatus comprises a rack (31)
extending longitudinally of the spindle (1) with which its screw thread (11) meshes
to drive it in said axial movement.
2. An apparatus according to claim 1, in which said rack (31) is a part of a member (3)
which bears the spindle (1).
3. An apparatus according to claim 2, wherein said member (3) is upwardly open.
4. An apparatus according to claim 1, wherein guide means (9) is arranged at a position
where a ladder cord (5) is introduced into the apparatus to narrow a horizontal width
of the ladder cord (5) to a width smaller than the outer diameter of the spindle (1).
5. An apparatus according to claim 1, wherein said apparatus comprises a clutch spring
(6) having a diameter slightly smaller than an outer diameter of said spindle (1)
and mounted on said spindle (1), said clutch spring (6) being projected outwardly,
at its both ends;
a support piece (7) arranged in horizontal direction and connected to an upper
end of a ladder cord (5) for supporting blind slats, said support piece being mounted
on an outer periphery of said spindle (1) at a position between the outwardly projected
portions at the both ends of said clutch spring (6); and
actuating portions (8) formed on a spindle bearing member (3) and arranged to abut
against an end of said clutch spring (6).
1. Vorrichtung zum Hochziehen und Herablassen von Lamellen für eine waagerechte Jalousie,
bei der eine Schnur (2) zum Hochziehen und Herablassen der Lamellen auf eine Spindel
(1) auf- oder von ihr abgewickelt wird, um die Lamellen hochzuziehen oder herabzulassen,
und die Spindel (1) ein Schraubengewinde (11) hat, um sie axial bei ihrer Drehung
zu bewegen, wodurch die Schnur (2) zum Hochziehen und Herablassen der Lamellen spiralförmig
auf die Spindel (1) aufgewickelt wird,
dadurch gekennzeichnet, daß
das Schraubengewinde (11) ein Außengewinde ist und die Vorrichtung eine in Längsrichtung
der Spindel (1) verlaufende Zahnstange (31) hat, in die ihr Schraubengewinde (11)
eingreift, um sie in die axiale Bewegung zu versetzen.
2. Vorrichtung nach Anspruch 1, wobei die Zahnstange (31) Bestandteil eines Teils (3)
bildet, das die Spindel (1) stützt.
3. Vorrichtung nach Anspruch 2, wobei das Teil (3) nach oben offen ist.
4. Vorrichtung nach Anspruch 1, wobei eine Führungseinrichtung (9) an einer Position
angeordnet ist, an der eine Leiterschnur (5) in die Vorrichtung einläuft, um eine
waagerechte Breite der Leiterschnur (5) auf eine Breite zu verengen, die kleiner als
der Außendurchmesser der Spindel (1) ist.
5. Vorrichtung nach Anspruch 1, wobei die Vorrichtung aufweist: eine Kupplungsfeder (6),
die einen etwas kleineren Durchmesser als ein Außendurchmesser der Spindel (1) hat
und an der Spindel (1) angebracht ist, wobei die Kupplungsfeder (6) an ihren beiden
Enden nach außen vorragt;
ein waagerecht angeordnetes und mit einem oberen Ende einer Leiterschnur (5) zum Halten
von Jalousielamellen verbundenes Haltestück (7), wobei das Haltestück an einem Außenumfang
der Spindel (1) an einer Position zwischen den nach außen vorragenden Abschnitten
an den beiden Enden der Kupplungsfeder (6) angebracht ist; und Betätigungsabschnitte
(8), die auf einem Spindellagerteil (3) ausgebildet und so angeordnet sind, daß sie
an einem Ende der Kupplungsfeder (6) anliegen.
1. Dispositif d'entraînement de lamelles pour un store vénitien du type horizontal dans
lequel un cordon d'entraînement de lamelles (2) est enroulé autour ou déroulé d'un
axe (1) pour entraîner les lamelles et dans lequel l'axe (1) comporte un filet de
vis (11) pour déplacer celui-ci dans le sens axial pendant sa rotation ce qui a pour
effet de permettre l'enroulement du cordon d'entraînement des lamelles (2) sur l'axe
(1) de manière hélicoïdale,
caractérisé en ce que
le filet de vis (11) est un filet extérieur et en ce que le dispositif comprend
une crémaillère (31) s'étendant dans le sens longitudinal de l'axe (1) avec lequel
s'engrène son filet de vis (11) pour entraîner celui-ci dans le déplacement axial.
2. Dispositif selon la revendication 1, dans lequel la crémaillère (31) est une partie
d'un élément (3) qui supporte l'axe (1).
3. Dispositif selon la revendication 2, dans lequel l'élément (3) est ouvert vers le
haut.
4. Dispositif selon la revendication 1, dans lequel un moyen de guidage (9) est disposé
à un emplacement où un cordon d'articulation (5) est introduit dans le dispositif
pour rétrécir une largeur horizontale du cordon d'articulation (5) jusqu'à une largeur
inférieure au diamètre extérieur de l'axe (1).
5. Dispositif selon la revendication 1, dans lequel le dispositif comprend un embrayage
à ressort (6) ayant un diamètre légèrement inférieur à un diamètre extérieur de l'axe
(1) et qui est monté sur l'axe (1), l'embrayage à ressort (6) faisant saillie vers
l'extérieur, à ses deux extrémités, un élément de support (7) disposé dans le sens
horizontal et connecté à une extrémité supérieure d'un cordon d'articulation (5) pour
supporter des lamelles de store, l'élément de support étant monté sur un pourtour
extérieur de l'axe (1) à un emplacement situé entre les parties de saillie extérieures
aux deux extrémités de l'embrayage à ressort (6), et
des parties de commande (8) formées sur un élément de support d'axe (3) et disposées
pour venir en aboutement contre une extrémité de l'embrayage à ressort (6).