WO2019119713A1 - 一种窗帘导轨 - Google Patents

一种窗帘导轨 Download PDF

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Publication number
WO2019119713A1
WO2019119713A1 PCT/CN2018/086237 CN2018086237W WO2019119713A1 WO 2019119713 A1 WO2019119713 A1 WO 2019119713A1 CN 2018086237 W CN2018086237 W CN 2018086237W WO 2019119713 A1 WO2019119713 A1 WO 2019119713A1
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WO
WIPO (PCT)
Prior art keywords
gear
belt
groove
bar
ball bearing
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Application number
PCT/CN2018/086237
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English (en)
French (fr)
Inventor
徐和城
Original Assignee
绍兴卓亚装饰材料有限公司
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Application filed by 绍兴卓亚装饰材料有限公司 filed Critical 绍兴卓亚装饰材料有限公司
Publication of WO2019119713A1 publication Critical patent/WO2019119713A1/zh

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Classifications

    • EFIXED CONSTRUCTIONS
    • E06DOORS, WINDOWS, SHUTTERS, OR ROLLER BLINDS IN GENERAL; LADDERS
    • E06BFIXED OR MOVABLE CLOSURES FOR OPENINGS IN BUILDINGS, VEHICLES, FENCES OR LIKE ENCLOSURES IN GENERAL, e.g. DOORS, WINDOWS, BLINDS, GATES
    • E06B9/00Screening or protective devices for wall or similar openings, with or without operating or securing mechanisms; Closures of similar construction
    • E06B9/24Screens or other constructions affording protection against light, especially against sunshine; Similar screens for privacy or appearance; Slat blinds
    • E06B9/26Lamellar or like blinds, e.g. venetian blinds
    • E06B9/36Lamellar or like blinds, e.g. venetian blinds with vertical lamellae ; Supporting rails therefor
    • E06B9/367Lamellae suspensions ; Bottom weights; Bottom guides
    • EFIXED CONSTRUCTIONS
    • E06DOORS, WINDOWS, SHUTTERS, OR ROLLER BLINDS IN GENERAL; LADDERS
    • E06BFIXED OR MOVABLE CLOSURES FOR OPENINGS IN BUILDINGS, VEHICLES, FENCES OR LIKE ENCLOSURES IN GENERAL, e.g. DOORS, WINDOWS, BLINDS, GATES
    • E06B9/00Screening or protective devices for wall or similar openings, with or without operating or securing mechanisms; Closures of similar construction
    • E06B9/24Screens or other constructions affording protection against light, especially against sunshine; Similar screens for privacy or appearance; Slat blinds
    • E06B9/26Lamellar or like blinds, e.g. venetian blinds
    • E06B9/36Lamellar or like blinds, e.g. venetian blinds with vertical lamellae ; Supporting rails therefor
    • E06B9/368Driving means other than pulling cords

Definitions

  • the present invention relates to a curtain device, and more particularly to a curtain rail.
  • the curtains that can be turned on the market mostly use linear orbits, but with the improvement of people's living standards, the use of curved windows at the corners of the houses is gradually increasing, and the conventional linear orbits cannot match the contours of the curved windows.
  • the existing curtain rails are mainly divided into two types.
  • One type is passed through a ball-shaped device through a linear rigid gear bar, and is fixed on the two ends of the rail by a device such as a middle slider, and the ball rolling device rotates and rotates.
  • the gear bar and the arc of the track cannot be exactly aligned.
  • the resistance is too large to be smoothly operated and used. If the size of the window is too large, it cannot be used in multiple stages.
  • the operation and rotation of the ball device are driven by a single transmission force.
  • the structure principle is belt transmission, which first drives the differential gear of the ball device in the track to rotate.
  • the ball bearing device drives all subsequent ball bearing devices to operate.
  • the number of such ball guide ball devices is large, the power demand is large, the transmission system is very demanding, the cost is high or the service life is short, and the faults are more, and the window type of 3 meters or more is not stable and durable.
  • the traditional curtain guide rails also exist: the ball bearing device rubs the inner walls on both sides of the track at the curved track, resulting in increased resistance and unsmooth operation; the deviation of the gear bar and the track curvature causes the operation to be unsmooth; the transportation of the guide rail to the high building is inconvenient Only the track segment is disassembled, and the ball-moving device does not operate smoothly at the joint portion; the single blade jam causes the other blades to fail to rotate; the blade rotation angle is affected by the wind and the like.
  • the invention is directed to the shortcomings of the prior art curtain track structure not suitable for the curved window, and provides a curtain track, which separates the gear bar and the ball bearing device and places them in the gear bar groove, so that the basic condition can be achieved when the arc is bent.
  • the error-free state reduces the resistance of the ball bearing device during operation.
  • This technical solution eliminates the need for a middle slider, further reducing the resistance. Even if the window width exceeds 3 meters, the gear bar will not sag and fall.
  • a curtain rail comprising a track, a ball bearing device and a transmission mechanism
  • the track comprises a ball groove and a gear bar groove
  • the ball groove and the gear bar groove pass through the slit
  • the gear bar is provided with a gear bar
  • the transmission mechanism drives the gear bar to rotate in the gear bar slot
  • the transmission mechanism drives the ball device to move in the ball groove
  • the gear bar cooperates with the ball device.
  • the gear bar is separated from the ball bearing device and placed in the gear bar slot.
  • the gear bar groove covers the gear bar so that it does not sag in the arc segment.
  • the gear bar can be traditionally The rigid material is replaced by a flexible material such as plastic, rubber or fiberglass, which is convenient for winding and transporting; the tooth groove of the gear bar can guide the operation of the ball bearing device; the transmission mechanism controls the curtain blade by controlling the ball bearing device in the ball groove groove The transmission, by controlling the rotation of the gear bar, controls the orientation of the curtain blades.
  • the ball bearing device comprises a first transmission gear, a worm, a worm wheel and a blade buckle
  • the worm wheel is fixedly connected with the blade
  • the gear bar is meshed with the first transmission gear
  • the gear bar rotates to drive the first transmission gear to rotate
  • the first transmission The gear drives the worm to rotate
  • the curtain blade is fixed on the blade buckle.
  • the structure requires less power, light and labor-saving during operation, and can be easily rotated when the blade is heavier.
  • the setting of the worm gear makes the rotation of the curtain blade irreversible, and the worm can drive the worm wheel. Rotation changes the blade steering, but the worm wheel does not drive the worm to rotate, and in addition, the blades are not steered by the wind.
  • the ball bearing device further comprises a second transmission gear
  • the second transmission gear meshes with the first transmission gear
  • one side of the second transmission gear is provided with a groove
  • one end of the worm is clamped in the groove
  • normally the second The rotation of the transmission gear drives the worm to rotate, and when the worm cannot rotate, the second transmission gear rotates relative to the worm.
  • One end of the worm is clamped in the groove.
  • the second transmission gear drives the worm to rotate, and the two do not move relative to each other.
  • the track further comprises a slider fixing seat, the slider fixing seat is provided with a sliding bar, the sliding bar is provided with a sliding bar protrusion, and the bottom of the ball guiding device is provided with a guiding groove, and the sliding bar protrusion is stuck in the guiding groove,
  • the ball bearing device moves along the slider by the guide groove.
  • the slider uses a smooth and wear-resistant flexible material, such as polyvinyl chloride, which is convenient for winding and transporting, and has small deformation of the curved inner diameter.
  • the slider protrusion and the guiding groove cooperate to make the ball movement device smoother, less noise, and less. Friction, the slider protrusion has a guiding effect on the ball bearing device, so that the two sides of the ball bearing device do not contact the inner wall of the rail to reduce friction.
  • the ball bearing device is provided with a belt bayonet
  • the track further comprises two belt grooves on both sides of the belt
  • the belt groove comprises a notch, an upper baffle at the upper end of the notch and a lower baffle at the lower end of the notch, the upper block
  • the length of the plate is greater than the length of the lower baffle
  • the belt is inserted in the belt groove, and the belt is fixedly connected with the belt bayonet of the ball bearing device.
  • the belt is transported by the belt, and the width of the notch is smaller than the width of the baffle. It is convenient to lock the belt into the belt groove when the belt is installed.
  • the belt is connected to the ball guide device at one end of the curtain rail by the card member, and the ball device is driven.
  • the curtain vane is conveyed by the cooperation of the adjacent ball device through the distance piece, and the belt groove is located on the side of the rail to reduce the deformation of the belt during operation and reduce the resistance.
  • the side of the ball bearing device is provided with a distance slot, and one end of the distance piece is a fixed end, which is fixedly connected with the distance of the chip slot, and the other end is a limiting end, and the limiting end is provided with a limiting protrusion, the distance piece is The limiting end passes through the distance piece bayonet of the adjacent ball bearing device and is slidably connected with the adjacent ball bearing device.
  • the limiting protrusion on the distance piece of the ball bearing device is adjacent to the adjacent The distance between the ball and the device is offset.
  • the traditional distance chip bayonet is arranged on the top of the ball-moving device. When the track becomes curved, the distance piece itself is straight, the operation is not smooth, and the distance of the film bayonet is set on the side, and the resistance of the ball-moving device is significantly reduced. Extended service life.
  • the rail is provided with two connecting grooves, and the connecting groove is provided with a cover.
  • the cover fills the gap between the track and the curtain vanes, achieving a better shading effect.
  • the track is connected to the adjacent track by a connecting member made of a flexible material such as rubber, fiberglass or plastic.
  • a connecting member made of a flexible material such as rubber, fiberglass or plastic.
  • the curtain track can be divided into multiple sections for splicing.
  • the rails are connected by connecting members, and the two ends of the connecting member are respectively connected with the adjacent two rails, and the segmented rails are convenient to carry and after installation.
  • the curtain rail is a complete whole, which does not need to be installed in several independent rails, causing gaps between the curtains to leak light.
  • the gear rods pass through the gear rod groove.
  • the gear rods are made of flexible materials such as rubber, fiberglass or plastic.
  • the ball-making device does not issue a card when it slides, which is smoother.
  • the gear bar can be wrapped and packaged with a flexible material for convenient transportation.
  • the transmission mechanism comprises a casing, wherein the casing is provided with a driving belt gear, a driven belt gear, a driving gear bar gear and a driven gear bar gear, the driven belt gear is matched with the belt, and the driven gear bar gear is fixed with the gear bar
  • the driving belt gear meshes with the driven belt gear
  • the driving gear bar gear meshes with the driven gear bar gear.
  • the driving belt gear, the driving gear bar gear and the driven gear bar gear are bevel gears
  • the driven belt gear comprises a coaxially fixedly connected belt bevel gear and a belt transmission gear
  • the belt bevel gear meshes with the driving belt gear
  • the transmission gear is matched with the belt
  • the torsion bar is arranged in the direction of the gear shaft of the driving gear bar
  • the driven belt gear is hollow
  • the torsion bar passes through the driven belt gear along the axis of the driven belt gear.
  • the invention adopts the above technical solutions and has remarkable technical effects: it can be applied to curved windows, has small running resistance, low noise, long service life, and can be applied to larger and heavier curtains due to less torque required for rotation of the blades.
  • the blade will not be steered by the wind. A few blades will not affect the steering of other blades.
  • the track can be transported in sections.
  • the gear bar can be transported by rigid material or flexible material to reduce transportation costs.
  • Figure 1 is a schematic view of the structure of the present invention.
  • FIG. 2 is a schematic view of a track structure.
  • Figure 3 is an exploded view of the ball bearing device.
  • Figure 4 is a cross-sectional view of the ball bearing device and the track mating structure.
  • Figure 5 is an enlarged view of the second transmission gear and the worm.
  • Figure 6 is a schematic view showing the internal structure of the transport mechanism.
  • Figure 7 is a front elevational view of the internal structure of the transport mechanism.
  • Figure 8 is a schematic view of the ball bearing device and the distance piece.
  • a curtain rail as shown in FIGS. 1-8, includes a track 1, a ball bearing device 2, and a transmission mechanism 3.
  • the track 1 includes a ball groove 11 and a gear bar groove 12, and the ball groove 11 and the gear bar groove 12 pass through the slit.
  • the 13-phase communication is provided with a gear bar 14 in the gear bar slot 12, and the transmission mechanism 3 drives the gear bar 14 to rotate in the gear bar slot 12, and the transmission mechanism 3 drives the ball-moving device 2 to move in the ball-growing groove 11, the gear bar 14 and The ball bearing device 2 cooperates.
  • the ball bearing device 2 includes a first transmission gear 21, a worm 23, a worm wheel 24 and a blade buckle 25.
  • the worm wheel 24 is fixedly coupled to the blade buckle 25, the gear bar 14 is meshed with the first transmission gear 21, and the gear bar 14 is rotated to drive the first
  • the transmission gear 21 rotates
  • the first transmission gear 21 drives the worm 23 to rotate
  • the worm 23 meshes with the worm wheel 24 to rotate the blade buckle 25.
  • the ball bearing device 2 further includes a second transmission gear 22, the second transmission gear 22 is meshed with the first transmission gear 21, and one end of the second transmission gear 22 is provided with a groove 221, and one end of the worm 23 is locked in the groove 221, Normally, the second transmission gear 22 rotates to drive the worm 23 to rotate. When the worm 23 cannot rotate, the second transmission gear 22 rotates relative to the worm 23.
  • the track 1 further includes a slider fixing seat 15 .
  • the slider fixing seat 15 is provided with a sliding bar 5 .
  • the sliding bar 5 is provided with a sliding bar protrusion 51 .
  • the bottom of the ball guiding device 2 is provided with a guiding groove 26 , and the sliding bar protrusion 51 . Jammed in the guide groove 26, the ball bearing device 2 moves along the slider projection 51 through the guide groove 26.
  • the ball bearing device 2 is provided with a belt bayonet 27, and the rail 1 further comprises two belt grooves 16 on both sides of the belt.
  • the belt groove 16 includes a notch 161, an upper baffle 161 at the upper end of the notch 161, and a lower end of the notch 161.
  • the lower baffle 163 has a length longer than the length of the lower baffle 163, and the belt is disposed in the belt groove 16, and the belt is fixedly connected to the belt bayonet 27 of the ball bearing device 2.
  • the side of the ball-moving device 2 is provided with a distance-mounting opening 28, and one end of the distance piece 4 is a fixed end 41, which is fixedly connected with the distance-to-piece card slot 28, the other end is a limiting end 42, and the limiting end 42 is provided with a limiting protrusion. 43.
  • the limiting end 42 of the distance piece 4 passes through the distance piece bayonet 28 of the adjacent ball bearing device 2, and is slidably connected with the adjacent ball bearing device 2, and when the ball bearing device 2 is in the opened state, the ball bearing device
  • the limit projections 43 on the distance piece 28 of 2 are offset from the distance piece bayonet 28 of the adjacent ball bearing device 2.
  • the rail 1 is provided with two connecting grooves 17, and the connecting groove 17 is provided with a cover.
  • the transmission mechanism 3 includes a casing 36.
  • the casing 36 is provided with a driving belt gear 31, a driven belt gear 32, a driving gear bar gear 33 and a driven gear bar gear 34.
  • the driven belt gear 32 cooperates with the belt, and the driven gear bar
  • the gear 34 is fixedly coupled to the gear bar 14, the drive belt gear 31 meshes with the driven belt gear 32, and the drive gear bar gear 33 meshes with the driven gear bar gear 34.
  • the driving belt gear 31, the driving gear bar gear 33, and the driven gear bar gear 34 are both bevel gears, and the driven belt gear 32 includes a coaxially fixedly connected belt bevel gear 321 and a belt transmission gear 322, a belt bevel gear 321 and an active belt.
  • the gear 31 meshes, the belt transmission gear 322 cooperates with the belt, the drive gear bar gear 33 is provided with a torsion bar 35 in the axial direction, the driven belt gear 34 is hollow, and the torsion bar 35 passes through the driven belt gear along the axis of the driven belt gear 32. 32.
  • the track 1 and the adjacent track 1 are connected by a connecting member, and the gear bar 14 is made of a flexible material such as rubber, fiberglass or plastic, and is inserted into the gear bar groove 12 during installation.
  • the slider is made of polyvinyl chloride, which can be transported by roller when transported, and inserted into the slider holder 15 during installation.
  • the belt is transported by rollers, and is installed into the belt groove 16 through the notch 161 during installation.
  • a plurality of ball bearing devices 2 are arranged in the curtain rail.
  • the driving gear bar gear 33 When in use, the driving gear bar gear 33 is rotated by rotating the torsion bar 35, and the driven gear bar gear 34 is driven to rotate the gear bar 14.
  • the gear bar 14 rotates to drive the first transmission gear 21, and then the second transmission gear 22 rotates, and one end is clamped.
  • the worm 23 in the groove 221 of the second transmission gear 22 rotates to drive the worm wheel 24 to rotate, and the blade buckle 25 fixedly connected with the worm wheel 24 rotates the curtain blade clamped on the blade buckle 25 to change the angle and adjust The light is strong.
  • the driving belt gear 31 is fixedly connected with the belt gear driving shaft 37.
  • the belt gear driving shaft 37 is provided with a pulling rope.
  • the driving belt gear 31 is rotated by pulling the pulling rope, and the belt bevel gear 321 , the belt conveying gear 322 and the belt cone are driven.
  • the gear 321 is fixedly connected, the belt transmission gear 322 rotates to drive the belt, and the belt is fixedly connected with the ball bearing device 2 at the other end.
  • the belt movement drives the ball device 2 to move in the track.
  • the limiting protrusion 43 of the distance piece 4 is offset from the distance piece bayonet opening 28 of the adjacent ball bearing device 2, so that the moving ball bearing device 2 can drive the adjacent ball bearing device 2 to move in the belt moving direction through the distance piece 4, and walk The bead device 2 starts to move in order to open and close the curtain.
  • gear bar 14 is an aluminum rod of rigid material, which is transported in sections, and is clamped when the adjacent gear bar 14 is mounted.

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  • Engineering & Computer Science (AREA)
  • Structural Engineering (AREA)
  • Architecture (AREA)
  • Civil Engineering (AREA)
  • Curtains And Furnishings For Windows Or Doors (AREA)

Abstract

一种窗帘导轨,包括轨道(1)、走珠装置(2)和传动机构(3),轨道(1)包括走珠槽(11)和齿轮棒槽(12),走珠槽(11)和齿轮棒槽(12)通过切口(13)相连通,齿轮棒槽(12)内设有齿轮棒(14),传动机构(3)带动齿轮棒(14)在齿轮棒槽(12)内转动,传动机构(3)带动走珠装置(2)在走珠槽(11)内运动,齿轮棒(14)与走珠装置(2)相配合。该窗帘导轨可用于弧形窗,运行阻力小、噪音小、使用寿命长,叶片不会被风吹转向,少数叶片卡住不会影响其他叶片转向,轨道(1)可分段运输、齿轮棒(14)可使用刚性材质分段运输或柔性材质打包运输,降低运输成本。

Description

一种窗帘导轨 技术领域
本发明涉及窗帘装置,尤其涉及了一种窗帘导轨。
背景技术
目前市场上叶片可转向的窗帘多采用直线轨道,但随着人们生活水平的提高,房屋拐角处使用弧形窗逐渐增多,传统的直线轨道无法匹配弧形窗轮廓。
现有的窗帘导轨主要分为两类,一类通过直线状的刚性齿轮棒穿过走珠装置,使用中托滑块等装置将其固定在轨道两端配件上,走珠装置滑动与旋转分为两步控制操作,此款若将制作成弧线形,齿轮棒与轨道弧度不能精确保持一致,走珠装置与中托滑块滑动到弧形段时阻力过大,无法顺畅运行与使用,窗型尺寸过大无法多段拼接使用;另一类,走珠装置运行与旋转由单一传动力传动,其结构原理为皮带式传动,先带动轨道内走珠装置的差速齿轮转动,后带动运行端第一个走珠装置,该走珠装置牵引后续所有的走珠装置运行。此类导轨走珠装置数量多,动力需求大,对传动系统要求很高,造价高昂或使用寿命较短,故障较多,针对3米以上的窗型不够稳定耐用。
此外,传统窗帘导轨还存在:走珠装置在弧形轨道处磨擦轨道的两侧内壁,导致阻力增大,运行不顺畅;齿轮棒与轨道弧度有偏差导致运行不顺畅;将导轨运输至高楼不便,仅将轨道分段拆卸,走珠装置在接合部位的运行不畅;单片叶片卡住导致其他叶片也无法转动;叶片旋转角度受风影响发生变动等问题。
技术问题
本发明针对现有技术中窗帘轨道结构不适用于弧形窗的缺点,提供了一种窗帘轨道,将齿轮棒和走珠装置分离并置于齿轮棒槽内,使其弯弧时能达到基本无误差的状态,减少走珠装置运行时的阻力,本技术方案无需中托滑块,进一步减少了阻力,即使窗户宽度超过3米,齿轮棒也不会下垂掉落。
技术解决方案
为了解决上述技术问题,本发明通过下述技术方案得以解决:一种窗帘导轨,包括轨道、走珠装置和传动机构,轨道包括走珠槽和齿轮棒槽,走珠槽和齿轮棒槽通过切口相连通,齿轮棒槽内设有齿轮棒,传动机构带动齿轮棒在齿轮棒槽内转动,传动机构带动走珠装置在走珠槽内运动,齿轮棒与走珠装置相配合。齿轮棒与走珠装置分离并置于齿轮棒槽内,齿轮棒槽罩住齿轮棒,使其在弧形段不会出现下垂的情况,由于齿轮棒槽的设置,因此齿轮棒可以由传统的刚性材质替换为塑料、橡胶、玻璃纤维等可弯曲材质,方便打卷运输;齿轮棒的齿槽可对走珠装置的运行导向;传动机构通过控制走珠装置在走珠槽内运动控制窗帘叶片的传送、通过控制齿轮棒的旋转控制窗帘叶片的摆向。
作为优选,走珠装置包括第一传动齿轮、蜗杆、蜗轮和叶片卡扣,蜗轮与叶片卡扣固定连接,齿轮棒与第一传动齿轮啮合,齿轮棒旋转带动第一传动齿轮转动,第一传动齿轮带动蜗杆转动,蜗杆与蜗轮啮合,使叶片卡扣旋转。窗帘叶片固定在叶片卡扣上,该结构所需动力小,操作时轻巧省力,在叶片较重的情况下也能轻松旋转,蜗轮蜗杆的设置,使窗帘叶片的旋转不可逆向,蜗杆可以带动蜗轮旋转改变叶片转向,但蜗轮无法带动蜗杆旋转,此外,叶片不会被风吹转向。
作为优选,走珠装置还包括第二传动齿轮,第二传动齿轮与第一传动齿轮啮合,第二传动齿轮的一面设有凹槽,蜗杆的一端卡设在凹槽内,正常情况下第二传动齿轮转动带动蜗杆转动,当蜗杆无法转动时,第二传动齿轮相对蜗杆转动。蜗杆的一端卡设在凹槽内,正常情况第二传动齿轮带动蜗杆转动,两者不相对运动,当叶片被卡住导致蜗杆无法被第二传动齿轮带动时,两者会相对旋转,避免因为一片叶片被卡死导致所有叶片无法转向或由于叶片卡住使用者过度用力选择导致部件被破坏的情况。
作为优选,轨道还包括滑条固定座,滑条固定座内设有滑条,滑条上设有滑条凸起,走珠装置底部设有引导槽,滑条凸起卡在引导槽内,走珠装置通过引导槽沿滑条凸起运动。滑条使用光滑、耐磨的柔性材料,如聚氯乙烯,打卷运输方便、弯弧内径变形小,滑条凸起与引导槽配合使走珠装置运动更顺畅、噪音小、减小所受摩擦,滑条凸起对走珠装置具有导向作用,使走珠装置两侧不与轨道内壁接触,减少摩擦。
作为优选,走珠装置上设有皮带卡口,轨道还包括位于皮带两侧的两个皮带槽,皮带槽包括槽口、槽口上端的上挡板和槽口下端的下挡板,上挡板长度大于下挡板长度,皮带穿设于皮带槽中,皮带与走珠装置的皮带卡口固定连接。皮带打卷运输,槽口宽度小于挡板宽度,方便在安装时将皮带保持环状直接卡入皮带槽,皮带通过卡件连接窗帘导轨一端的一个走珠装置带动该走珠装置,走珠装置与相邻走珠装置通过距离片的配合实现窗帘叶片的传送,皮带槽位于轨道侧面,减少运行过程中皮带形变,减少阻力。
作为优选,走珠装置侧面设有距离片卡口,距离片的一端为固定端,与距离片卡口固定连接,另一端为限位端,限位端上设有限位凸起,距离片的限位端穿过相邻走珠装置的距离片卡口,与相邻走珠装置滑动连接,当走珠装置间处于拉开状态时,走珠装置的距离片上的限位凸起与相邻走珠装置的距离片卡口相抵。传统的距离片卡口设置在走珠装置顶部,当轨道变为弧形,距离片本身为直线,运行不顺畅,将距离片卡口设置在侧面,走珠装置运行所受阻力明显减小,使用寿命延长。
作为优选,轨道上设有两条连接槽,连接槽上设有外罩。外罩填补了轨道与窗帘叶片间的空隙,达到了更好的遮光效果。
作为优选,轨道与相邻轨道通过连接件连接,齿轮棒为橡胶、玻璃纤维或塑料等柔性材料制成。当适用窗户较长时,可以将窗帘轨道分为多段轨道进行拼接,安装时轨道间通过连接件连接,连接件的两端分别与相邻的二轨道连接,分段式轨道搬运方便,安装后窗帘导轨为一个完整整体,无需分几条独立轨道安装,造成窗帘间出现缝隙漏光,齿轮棒穿过齿轮棒槽,齿轮棒使用如橡胶、玻璃纤维或塑料等柔性材料制成,一体成型不分段,使走珠装置运行滑动时不发卡,更为顺畅,齿轮棒使用柔性材质可以打卷包装,方便运输。
作为优选,传动机构包括外壳,外壳内设有主动皮带齿轮、从动皮带齿轮、主动齿轮棒齿轮和从动齿轮棒齿轮,从动皮带齿轮与皮带相配合,从动齿轮棒齿轮与齿轮棒固定连接,主动皮带齿轮与从动皮带齿轮啮合,主动齿轮棒齿轮与从动齿轮棒齿轮啮合。
作为优选,主动皮带齿轮、主动齿轮棒齿轮、从动齿轮棒齿轮均为锥齿轮,从动皮带齿轮包括同轴固定连接的皮带锥齿轮和皮带传送齿轮,皮带锥齿轮与主动皮带齿轮啮合,皮带传送齿轮与皮带相配合,主动齿轮棒齿轮轴方向上设有扭棒,从动皮带齿轮中空,扭棒沿从动皮带齿轮轴线穿过从动皮带齿轮。通过控制主动齿轮棒齿轮窗帘叶片的传送,选择扭棒控制窗帘叶片的摆向。
有益效果
本发明由于采用了以上技术方案,具有显著的技术效果:可适用于弧形窗,运行阻力小、噪音小、使用寿命长,由于叶片旋转所需扭力小,可以适用更大、更重的窗帘,叶片不会被风吹转向,少数叶片卡住不会影响其他叶片转向,轨道可分段运输、齿轮棒可使用刚性材质分段运输或柔性材质打包运输,降低运输成本。
附图说明
图1是本发明的结构示意图。
图2是轨道结构示意图。
图3是走珠装置爆炸图。
图4是走珠装置与轨道配合结构剖面图。
图5是第二传动齿轮和蜗杆放大图。
图6是传送机构内部结构示意图。
图7是传送机构内部结构正视图。
图8是走珠装置和距离片配合示意图。
以上附图中各数字标号所指代的部位名称如下:其中,1—轨道、11—走珠槽、12—齿轮棒槽、13—切口、14—齿轮棒、15—滑条固定座、16—皮带槽、161—槽口、162—上挡板、163—下挡板、17—连接槽;
2—走珠装置、21—第一传动齿轮、22—第二传动齿轮、221—凹槽、23—蜗杆、24—蜗轮、25—叶片卡扣、26—引导槽、27—皮带卡口、28—距离片卡口;
3—传动机构、31—主动皮带齿轮、32—从动皮带齿轮、321—皮带锥齿轮、322—皮带传送齿轮、33—主动齿轮棒齿轮、34—从动齿轮棒齿轮、35—扭棒、36—外壳、37—皮带齿轮驱动轴;
4—距离片、41—固定端、42—限位端、43—限位凸起;
5—滑条、51—滑条凸起。
本发明的实施方式
下面结合附图与实施例对本发明作进一步详细描述。
实施例1
一种窗帘导轨,如图1-8所示,包括轨道1、走珠装置2和传动机构3,轨道1包括走珠槽11和齿轮棒槽12,走珠槽11和齿轮棒槽12通过切口13相连通,齿轮棒槽12内设有齿轮棒14,传动机构3带动齿轮棒14在齿轮棒槽12内转动,传动机构3带动走珠装置2在走珠槽11内运动,齿轮棒14与走珠装置2相配合。走珠装置2包括第一传动齿轮21、蜗杆23、蜗轮24和叶片卡扣25,蜗轮24与叶片卡扣25固定连接,齿轮棒14与第一传动齿轮21啮合,齿轮棒14旋转带动第一传动齿轮21转动,第一传动齿轮21带动蜗杆23转动,蜗杆23与蜗轮24啮合,使叶片卡扣25旋转。走珠装置2还包括第二传动齿轮22,第二传动齿轮22与第一传动齿轮21啮合,第二传动齿轮22的一面设有凹槽221,蜗杆23的一端卡设在凹槽221内,正常情况下,第二传动齿轮22转动带动蜗杆23转动,当蜗杆23无法转动时,第二传动齿轮22相对蜗杆23转动。轨道1还包括滑条固定座15,滑条固定座15内设有滑条5,滑条5上设有滑条凸起51,走珠装置2底部设有引导槽26,滑条凸起51卡在引导槽26内,走珠装置2通过引导槽26沿滑条凸起51运动。走珠装置2上设有皮带卡口27,轨道1还包括位于皮带两侧的两个皮带槽16,皮带槽16包括槽口161、槽口161上端的上挡板161和槽口161下端的下挡板163,上挡板162长度大于下挡板163长度,皮带穿设于皮带槽16中,皮带与走珠装置2的皮带卡口27固定连接。走珠装置2侧面设有距离片卡口28,距离片4的一端为固定端41,与距离片卡口28固定连接,另一端为限位端42,限位端上42设有限位凸起43,距离片4的限位端42穿过相邻走珠装置2的距离片卡口28,与相邻走珠装置2滑动连接,当走珠装置2间处于拉开状态时,走珠装置2的距离片28上的限位凸起43与相邻走珠装置2的距离片卡口28相抵。轨道1上设有两条连接槽17,连接槽17上设有外罩。传动机构3包括外壳36,外壳36内设有主动皮带齿轮31、从动皮带齿轮32、主动齿轮棒齿轮33和从动齿轮棒齿轮34,从动皮带齿轮32与皮带相配合,从动齿轮棒齿轮34与齿轮棒14固定连接,主动皮带齿轮31与从动皮带齿轮32啮合,主动齿轮棒齿轮33与从动齿轮棒齿轮34啮合。主动皮带齿轮31、主动齿轮棒齿轮33、从动齿轮棒齿轮34均为锥齿轮,从动皮带齿轮32包括同轴固定连接的皮带锥齿轮321和皮带传送齿轮322,皮带锥齿轮321与主动皮带齿轮31啮合,皮带传送齿轮322与皮带相配合,主动齿轮棒齿轮33轴方向上设有扭棒35,从动皮带齿轮34中空,扭棒35沿从动皮带齿轮32轴线穿过从动皮带齿轮32。
轨道1与相邻轨道1通过连接件连接,齿轮棒14为橡胶、玻璃纤维或塑料等柔性材料制成,安装时插入齿轮棒槽12内。滑条使用聚氯乙烯,运输时可打卷运输,安装时插入滑条固定座15。皮带打卷运输,安装时通过槽口161安装入皮带槽16内。窗帘导轨内设有多个走珠装置2。
使用时通过旋转扭棒35使主动齿轮棒齿轮33转动,带动从动齿轮棒齿轮34使齿轮棒14转动,齿轮棒14转动带动第一传动齿轮21,继而第二传动齿轮22转动,一端卡设在第二传动齿轮22的凹槽221内的蜗杆23转动,带动蜗轮24转动,进而与蜗轮24固定连接的叶片卡扣25,使夹在叶片卡扣25上的窗帘叶片转动,改变角度,调节光线强弱。
主动皮带齿轮31与皮带齿轮驱动轴37固定连接,皮带齿轮驱动轴37上设有拉绳,使用时通过拉动拉绳使主动皮带齿轮31转动,带动皮带锥齿轮321  ,皮带传送齿轮322与皮带锥齿轮321固定连接,皮带传送齿轮322转动带动皮带运动,皮带与另一端的走珠装置2固定连接,皮带运动带动走珠装置2在轨道内运动,由于走珠装置2间通过距离片4连接,距离片4的限位凸起43与相邻走珠装置2的距离片卡口28相抵,因此运动的走珠装置2能够通过距离片4带动相邻走珠装置2向皮带运动方向移动,走珠装置2依次开始运动,从而实现窗帘的开闭。
实施例2
与实施例1基本相同,区别在于,齿轮棒14为刚性材质的铝棒,分段运输,相邻齿轮棒14安装时卡接。
总之,以上所述仅为本发明的较佳实施例,凡依本发明申请专利范围所作的均等变化与修饰,皆应属本发明专利的涵盖范围。

Claims (10)

  1. 一种窗帘导轨,包括轨道(1)、走珠装置(2)和传动机构(3),其特征在于:轨道(1)包括走珠槽(11)和齿轮棒槽(12),走珠槽(11)和齿轮棒槽(12)通过切口(13)相连通,齿轮棒槽(12)内设有齿轮棒(14),传动机构(3)带动齿轮棒(14)在齿轮棒槽(12)内转动,传动机构(3)带动走珠装置(2)在走珠槽(11)内运动,齿轮棒(14)与走珠装置(2)相配合。
  2. 根据权利要求1所述的一种窗帘导轨,其特征在于:走珠装置(2)包括第一传动齿轮(21)、蜗杆(23)、蜗轮(24)和叶片卡扣(25),蜗轮(24)与叶片卡扣(25)固定连接,齿轮棒(14)与第一传动齿轮(21)啮合,齿轮棒(14)旋转带动第一传动齿轮(21)转动,第一传动齿轮(21)带动蜗杆(23)转动,蜗杆(23)与蜗轮(24)啮合,使叶片卡扣(25)旋转。
  3. 根据权利要求2所述的一种窗帘导轨,其特征在于:走珠装置(2)还包括第二传动齿轮(22),第二传动齿轮(22)与第一传动齿轮(21)啮合,第二传动齿轮(22)的一面设有凹槽(221),蜗杆(23)的一端卡设在凹槽(221)内,正常情况下,第二传动齿轮(22)转动带动蜗杆(23)转动,当蜗杆(23)无法转动时,第二传动齿轮(22)相对蜗杆(23)转动。
  4. 根据权利要求1所述的一种窗帘导轨,其特征在于:轨道(1)还包括滑条固定座(15),滑条固定座(15)内设有滑条(5),滑条(5)上设有滑条凸起(51),走珠装置(2)底部设有引导槽(26),滑条凸起(51)卡在引导槽(26)内,走珠装置(2)通过引导槽(26)沿滑条凸起(51)运动。
  5. 根据权利要求1所述的一种窗帘导轨,其特征在于:走珠装置(2)上设有皮带卡口(27),轨道(1)还包括位于皮带两侧的两个皮带槽(16),皮带槽(16)包括槽口(161)、槽口(161)上端的上挡板(161)和槽口(161)下端的下挡板(163),上挡板(162)长度大于下挡板(163)长度,皮带穿设于皮带槽(16)中,皮带与走珠装置(2)的皮带卡口(27)固定连接。
  6. 根据权利要求1所述的一种窗帘导轨,其特征在于:走珠装置(2)侧面设有距离片卡口(28),距离片(4)的一端为固定端(41),与距离片卡口(28)固定连接,另一端为限位端(42),限位端上(42)设有限位凸起(43),距离片(4)的限位端(42)穿过相邻走珠装置(2)的距离片卡口(28),与相邻走珠装置(2)滑动连接,当走珠装置(2)间处于拉开状态时,走珠装置(2)的距离片(4)上的限位凸起(43)与相邻走珠装置(2)的距离片卡口(28)相抵。
  7. 根据权利要求1所述的一种窗帘导轨,其特征在于:轨道(1)上设有两条连接槽(17),连接槽(17)上设有外罩。
  8. 根据权利要求1所述的一种窗帘导轨,其特征在于:轨道(1)与相邻轨道(1)通过连接件连接,齿轮棒(14)为橡胶、玻璃纤维或塑料等柔性材料制成。
  9. 根据权利要求5所述的一种窗帘导轨,其特征在于:传动机构(3)包括外壳(36),外壳(36)内设有主动皮带齿轮(31)、从动皮带齿轮(32)、主动齿轮棒齿轮(33)和从动齿轮棒齿轮(34),从动皮带齿轮(32)与皮带相配合,从动齿轮棒齿轮(34)与齿轮棒(14)固定连接,主动皮带齿轮(31)与从动皮带齿轮(32)啮合,主动齿轮棒齿轮(33)与从动齿轮棒齿轮(34)啮合。
  10. 根据权利要求9所述的一种窗帘导轨,其特征在于:主动皮带齿轮(31)、主动齿轮棒齿轮(33)、从动齿轮棒齿轮(34)均为锥齿轮,从动皮带齿轮(32)包括同轴固定连接的皮带锥齿轮(321)和皮带传送齿轮(322),皮带锥齿轮(321)与主动皮带齿轮(31)啮合,皮带传送齿轮(322)与皮带相配合,主动齿轮棒齿轮(33)轴方向上设有扭棒(35),从动皮带齿轮(34)中空,扭棒(35)沿从动皮带齿轮(32)轴线穿过从动皮带齿轮(32)。
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