WO2024060662A1 - 一种基于气体流动的防附着纺织用led灯管 - Google Patents

一种基于气体流动的防附着纺织用led灯管 Download PDF

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Publication number
WO2024060662A1
WO2024060662A1 PCT/CN2023/096420 CN2023096420W WO2024060662A1 WO 2024060662 A1 WO2024060662 A1 WO 2024060662A1 CN 2023096420 W CN2023096420 W CN 2023096420W WO 2024060662 A1 WO2024060662 A1 WO 2024060662A1
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WO
WIPO (PCT)
Prior art keywords
plug
led lamp
protective shell
power supply
gas flow
Prior art date
Application number
PCT/CN2023/096420
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English (en)
French (fr)
Inventor
胡博
邬国平
Original Assignee
安徽兆利光电科技有限公司
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Publication of WO2024060662A1 publication Critical patent/WO2024060662A1/zh

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Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21KNON-ELECTRIC LIGHT SOURCES USING LUMINESCENCE; LIGHT SOURCES USING ELECTROCHEMILUMINESCENCE; LIGHT SOURCES USING CHARGES OF COMBUSTIBLE MATERIAL; LIGHT SOURCES USING SEMICONDUCTOR DEVICES AS LIGHT-GENERATING ELEMENTS; LIGHT SOURCES NOT OTHERWISE PROVIDED FOR
    • F21K9/00Light sources using semiconductor devices as light-generating elements, e.g. using light-emitting diodes [LED] or lasers
    • F21K9/20Light sources comprising attachment means
    • F21K9/27Retrofit light sources for lighting devices with two fittings for each light source, e.g. for substitution of fluorescent tubes
    • F21K9/275Details of bases or housings, i.e. the parts between the light-generating element and the end caps; Arrangement of components within bases or housings
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21KNON-ELECTRIC LIGHT SOURCES USING LUMINESCENCE; LIGHT SOURCES USING ELECTROCHEMILUMINESCENCE; LIGHT SOURCES USING CHARGES OF COMBUSTIBLE MATERIAL; LIGHT SOURCES USING SEMICONDUCTOR DEVICES AS LIGHT-GENERATING ELEMENTS; LIGHT SOURCES NOT OTHERWISE PROVIDED FOR
    • F21K9/00Light sources using semiconductor devices as light-generating elements, e.g. using light-emitting diodes [LED] or lasers
    • F21K9/20Light sources comprising attachment means
    • F21K9/27Retrofit light sources for lighting devices with two fittings for each light source, e.g. for substitution of fluorescent tubes
    • F21K9/278Arrangement or mounting of circuit elements integrated in the light source
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21VFUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
    • F21V15/00Protecting lighting devices from damage
    • F21V15/005Measures against vandalism, stealing or tampering
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21VFUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
    • F21V15/00Protecting lighting devices from damage
    • F21V15/01Housings, e.g. material or assembling of housing parts
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21YINDEXING SCHEME ASSOCIATED WITH SUBCLASSES F21K, F21L, F21S and F21V, RELATING TO THE FORM OR THE KIND OF THE LIGHT SOURCES OR OF THE COLOUR OF THE LIGHT EMITTED
    • F21Y2115/00Light-generating elements of semiconductor light sources
    • F21Y2115/10Light-emitting diodes [LED]

Definitions

  • the present invention relates to the technical field of LED lamp tubes, specifically an anti-adhesion textile LED lamp tube based on gas flow.
  • LED tubes have gradually replaced traditional incandescent lamps due to their energy-saving and environmentally friendly advantages. They can save more than 85% of electricity when used, so they are widely used in all walks of life. Textile workshops are fine processing, so they need lamps with relatively high illumination. , and then LED lamps are also widely used in the textile industry;
  • the patent name disclosed with the announcement number "CN105987297B” is "a full-circle light LED lamp”.
  • the filled transparent thermal oil or transparent thermal silica gel has good transparency and thermal conductivity, which can ensure the light emitted by the wick. While smoothly ejecting from the lamp casing, the heat emitted by the wick is quickly transferred to the lamp casing and dissipated, thereby greatly accelerating the heat dissipation capacity of the LED lamp; in addition, the above-mentioned filling material It has the characteristic that the effect of thermal expansion and contraction is not obvious, because after the lamp shell is installed on the lamp tube and the two ends are blocked, the interior is a highly airtight space.
  • LED lamp tubes in the prior art have the problem that threads and thread ends are easily adhered, thereby affecting the lighting brightness.
  • the purpose of the present invention is to provide an anti-adhesion textile LED lamp based on gas flow to solve the problems existing in the prior art.
  • the flowing The gas is blown out from the blowing hole, which can prevent fabric debris such as lint and thread ends from adhering to the surface of the LED tube, ensuring the lighting brightness of the LED tube.
  • the present invention provides the following solutions:
  • An anti-adhesion textile LED lamp based on gas flow including an aluminum lamp body, and a power supply insulation box installed inside the aluminum lamp body;
  • An aluminum substrate is fixed on the lower surface of the power insulating box, and LED lamp beads are installed on the lower surface of the aluminum substrate;
  • a driving power supply is installed inside the power supply insulation box, and power supply box plugs are fixed on the left and right ends of the power supply insulation box;
  • a PC plug b is fixed on the outside of the left end of the power supply insulation box, and a PC plug a is fixed on the outside of the right end of the power supply insulation box;
  • the two power box plugs are respectively arranged in PC plug a and PC plug b;
  • a first protective shell is disposed below the LED lamp bead, and a second protective shell is disposed below the first protective shell;
  • the left and right ends of the first protective shell and the second protective shell are connected to PC plug b and PC plug a;
  • Blow holes are provided at equal intervals inside the second protective shell
  • the upper surface of the PC plug b is provided with an accommodating groove and a vent, and a motor is installed inside the accommodating groove, and the output end of the motor is connected to the top of the vertical rod through a coupling;
  • the bottom end of the vertical rod passes through the inner wall of the bearing connected to the PC plug b, and a fan blade is fixed on the outside of the bottom end of the vertical rod;
  • the bottom end of the PC plug b is slotted with a stopper, and a flow groove is provided inside the PC plug b on the right side of the stopper, and the right side of the flow groove is between the first protective shell and the second protective shell. The gaps between them are connected.
  • the first protective housing and the second protective housing are arranged in an arc-shaped structure, and there is a gap between the first protective housing and the second protective housing.
  • the first protective shell and the second protective shell are used in cooperation with each other.
  • two ventilation openings are provided below the accommodation tank, and the two ventilation openings are vertically aligned with each other.
  • the vertical centerline of the rod is set symmetrically.
  • the vent can well transport the gas in the accommodation tank to the PC plug b.
  • a filter plate is symmetrically arranged inside the accommodation tank, and sliders are fixed on the left and right sides of the upper end of the filter plate.
  • a slide groove is provided on the upper surface of the PC plug b, and the slide groove is arranged above the accommodating groove, and a slider is slidably connected inside the slide groove, and a return spring a is installed inside the slide groove, and the bottom end of the return spring a is connected to the slider.
  • the slide block is engaged and slidably connected inside the chute, so that the filter plate can be raised and lowered stably.
  • connecting rods are fixed on both left and right sides of the vertical rod, and a push plate is fixed on the outer end of the connecting rod, and the push plate and the connecting rod are arranged vertically, and the top of the push plate is arranged in an arc shape.
  • a push plate is provided outside the lower end of the filter plate, and the filter plate forms a reciprocating lifting structure through the push plate.
  • the push plate can push the filter plate, causing the filter plate to move up and down.
  • the bottom of the stopper is fixed with a return spring b, and the bottom of the return spring b is fixedly connected to the inside of the PC plug b.
  • the stopper can be lifted and lowered reciprocally well.
  • a fan blade is provided above the power box plug in the PC plug b, and the ventilation opening is arranged in an arc-shaped structure.
  • the fan blades can rotate well to generate a certain air volume.
  • the flow groove connects the space inside the PC plug b with the gap between the first protective shell and the second protective shell.
  • the gas in the PC plug b flows into the gap between the first protective shell and the second protective shell through the flow groove, so that the gas can flow well.
  • This anti-adhesion textile LED lamp based on gas flow uses the second protective shell, the first protective shell and the blowing hole in conjunction with each other.
  • the flowing gas is blown out from the blowing hole, thereby preventing fabrics such as thread ends and filament ends from being blown out.
  • Debris adheres to the surface of the LED tube, and its details are as follows:
  • a second protective shell is provided. Through the cooperative use of the second protective shell, the first protective shell and the blowing hole, the gas generated inside the LED lamp tube is dispersed between the second protective shell and the first protective shell. The flowing gas flows in the gap, and then the flowing gas is blown out from the blowing hole, and then the gas blown out from the blowing hole blows off the threads and threads and other fabric debris adhered to the surface of the second protective shell, thereby preventing these threads and threads, etc. Fabric debris adheres to the surface of the LED tube so that the LED tube can be used well in the textile factory;
  • a stopper is installed.
  • the setting of the stopper facilitates the blocking of the left end of the flow tank, thereby preventing external impurities from entering the PC plug b through the blow hole and the flow tank.
  • the PC plug b can be blocked to protect;
  • a connecting rod and a push plate are fixed.
  • the rotation of the connecting rod can drive the push plate to rotate together, so that the push plate with an arc-shaped top can reciprocate the filter plate when rotating with the center of the vertical rod as the center of the circle.
  • the upward push makes it easy to shake the filter plate and avoid clogging of the filter plate due to long-term use, which affects the filtration work of the filter plate.
  • Figure 1 is a schematic diagram of the main cross-sectional structure of the present invention.
  • Figure 2 is a schematic diagram of the three-dimensional structure of the present invention.
  • Figure 3 is a schematic diagram of the main cross-sectional structure of the PC plug b of the present invention.
  • Figure 4 is a schematic diagram of the main cross-sectional structure of the filter plate of the present invention.
  • Figure 5 is a schematic cross-sectional structural view of the connection side of the filter plate and push plate of the present invention.
  • FIG6 is a schematic diagram of the three-dimensional structure of the second protective housing of the present invention.
  • Figure 7 is an enlarged structural schematic diagram of position A in Figure 4 of the present invention.
  • Figure 8 is an enlarged structural schematic diagram of position B in Figure 3 of the present invention.
  • the purpose of the present invention is to provide an anti-adhesion textile LED lamp based on gas flow to solve the problems existing in the existing technology.
  • the anti-adhesion textile LED lamp based on gas flow in this embodiment includes an aluminum lamp body 1, and a power insulation box 6 installed inside the aluminum lamp body 1; power insulation
  • the aluminum substrate 3 is fixed on the lower surface of the box 6, and the LED lamp beads 12 are installed on the lower surface of the aluminum substrate 3.
  • the entire LED lamp tube is installed on the lamp stand in the textile factory, and then The entire LED lamp tube is ready for use.
  • the LED lamp bead 12 begins to perform lighting work.
  • a first protective housing 4 is provided below the LED lamp bead 12, and a second protective housing 5 is provided below the first protective housing 4. , the light passes through the first protective shell 4 and the second protective shell 5 to perform lighting operations in the textile factory.
  • a driving power supply 14 is installed inside the power insulating box 6, and power box plugs 7 are fixed on the left and right ends of the power insulating box 6; among them, the power insulating box 6
  • a PC plug b9 is fixed on the outside of the left end of the power supply insulation box 6, and a PC plug a8 is fixed on the outside of the right end of the power supply insulation box 6; among them, the two power supply box plugs 7 are respectively set in the PC plug a8 and the PC plug b9, where, The left and right ends of the first protective shell 4 and the second protective shell 5 are connected to the PC plug b9 and the PC plug a8;
  • the PC plug b9 has an accommodating groove 23 and a vent 17 inside the upper surface, and a motor is installed inside the accommodating groove 23, and the output end of the motor is connected to the top of the vertical rod 11 through a coupling.
  • the motor causes the motor to drive the vertical rod 11 to rotate.
  • the bottom end of the vertical rod 11 passes through the bearing and is connected to the inner wall of the PC plug b9, and a fan blade 15 is fixed on the outside of the bottom end of the vertical rod 11. Then the vertical rod 11 drives the lower end.
  • the fan blade 15 rotates, and the fan blade 15 generates a certain amount of wind when rotating.
  • Two vents 17 are provided below the accommodating groove 23, and the two vents 17 are arranged symmetrically with respect to the vertical centerline of the vertical rod 11, PC A fan blade 15 is provided above the power box plug 7 in the plug b9, and the vent 17 is arranged in an arc shape.
  • the outside wind is mechanically filtered through the filter plate 16 and then enters the PC plug on the left through the vent 17.
  • Bronze pins 10 are fixed to the outside of PC plugs b9 and PC plugs a8; a return spring b22 is fixed to the bottom of the block 21, and the bottom of the return spring b22 is fixedly connected to the inside of the PC plug b9.
  • the wind volume is large, which will press the return spring b22 downward on the block 21, so that the return spring b22 accumulates force, so that the block 21 is separated from the flow groove 2.
  • the wind in the PC plug b9 on the left side enters the flow groove 2, and the flow groove 2 connects the space inside the PC plug b9 with the gap between the first protective shell 4 and the second protective shell 5, so that the gas flows in the flow groove 2, and then the wind enters the first protective shell 4 through the flow groove 2.
  • the air flows in the space between the protective shell 4 and the second protective shell 5, and the second protective shell 5 is provided with air blowing holes 13 at equal intervals inside. Then, the air is discharged outward through the air blowing holes 13 on the surface of the second protective shell 5.
  • the debris and impurities on the surface of the second protective shell 5 will be blown away. Therefore, it can be prevented that the external debris adheres to the second protective shell 5 and affects the light transmission performance of the second protective shell 5, so that the LED lamp tube is well used for lighting in textiles.
  • a block 21 is placed in the bottom groove of the PC plug b9, and a flow groove 2 is provided inside the PC plug b9 on the right side of the block 21, and the right side of the flow groove 2 is connected to the
  • Connecting rods 111 are fixed on both left and right sides of the vertical rod 11, and a push plate 112 is fixed on the outer end of the connecting rod 111, and the push plate 112 and the connecting rod 111 are arranged vertically, and the top of the push plate 112 is arranged in an arc shape.
  • the vertical rod 11 rotates, it drives the connecting rod 111 and the push plate 112 to rotate together, so that the top of the push plate 112 pushes the filter plate 16 upward, PC
  • a chute 18 is provided on the upper surface of the plug b9, and the chute 18 is arranged above the accommodating groove 23.
  • a slide block 19 is engaged and slidably connected to the inside of the chute 18, and a return spring is installed inside the chute 18.
  • the filter plate 16 When the push plate 112 and the filter plate 16 When separating, the filter plate 16 automatically moves downward through the force accumulated by the return spring a20. This is repeated, so that when the push plate 112 rotates, it can drive the filter plate 16 to move up and down, and then the filter plate 16 can vibrate automatically. It is convenient for the filter plate 16 to shake off the impurities on the surface and avoid clogging of the mesh inside the filter plate 16.
  • a push plate 112 is provided outside the lower end of the filter plate 16, and a filter plate 16 is symmetrically provided inside the accommodation tank 23, and the filter plate 16 Slide blocks 19 are fixed on the left and right sides of the upper end, and the filter plate 16 forms a reciprocating lifting structure through the push plate 112;
  • the working principle of this embodiment is as follows: when the anti-attachment textile LED lamp tube based on gas flow is used, first, when it is necessary to clean the fabric debris such as thread ends and silk ends that are adhered to the surface of the LED lamp tube, the motor drives the vertical rod 11 to rotate, and the fan blades 15 generate a certain wind force when rotating, so that the block 21 is separated from the flow groove 2, and then the wind enters the space between the first protective shell 4 and the second protective shell 5 through the flow groove 2 to flow, and the wind blows out through the blowing hole 13 to blow away the debris and impurities on the surface of the second protective shell 5;
  • the accumulated force of the return spring b22 automatically drives the block 21 to move upward, so that the right end of the block 21 fits into the flow groove 2, thereby completing a series of tasks.
  • plural means two or more; the terms “upper”, “lower”, “left”, “right”, “inner”, “outer” , “front end”, “rear end”, “head”, “tail”, etc. indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present invention and simplifying the description, rather than Any indication or implication that the referred device or element must have a specific orientation, be constructed and operate in a specific orientation should not be construed as a limitation on the invention. Furthermore, the terms “first,” “second,” “third,” etc. are used for descriptive purposes only and are not to be construed as indicating or implying relative importance.
  • connection should be understood in a broad sense.
  • it can be a fixed connection, a detachable connection, or an integral connection.
  • Ground connection can be a mechanical connection or an electrical connection; it can be a direct connection or an indirect connection through an intermediate medium.
  • specific meanings of the above terms in the present invention can be understood on a case-by-case basis.

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  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Physics & Mathematics (AREA)
  • Microelectronics & Electronic Packaging (AREA)
  • Optics & Photonics (AREA)
  • Non-Portable Lighting Devices Or Systems Thereof (AREA)

Abstract

一种基于气体流动的防附着纺织用LED灯管,包括电源绝缘盒(6)和LED灯珠(12)。电源绝缘盒(6)的左右两端均固定有电源盒堵头(7);电源绝缘盒(6)的左端外侧固定有PC堵头b(9),电源绝缘盒(6)的右端外侧固定有PC堵头a(8);LED灯珠(12)的下方设置有第一防护外壳(4),第一防护外壳(4)的下方设置有第二防护外壳(5)。第二防护外壳(5)的内部开设有吹气孔(13); PC堵头b(9)的底端开槽放置有挡块(21),挡块(21)右侧的PC堵头b(9)的内部开设有流动槽(2),流动槽(2)的右侧与第一和第二防护外壳(4,5)之间的空隙相连通。通过第一和第二防护外壳(4,5)和吹气孔(13)三者的配合使用,使得,灯管内部产生的气体在第一和第二防护外壳(4,5)之间的空隙内进行流动,然后气体从吹气孔(13)内吹出,从吹气孔(13)内吹出的气体将第二防护外壳(5)表面粘连的织物碎屑吹掉,防止这些织物碎屑粘附在灯管表面,以便于灯管很好地在纺织厂内进行使用。

Description

一种基于气体流动的防附着纺织用LED灯管 技术领域
本发明涉及LED灯管技术领域,具体为一种基于气体流动的防附着纺织用LED灯管。
背景技术
LED灯管由于其节能环保的优点逐渐取代了传统的白炽灯,在使用时可节电85%以上,因此被广泛用于各行各业,纺织车间属于精细加工,因此需要照明度比较高的灯具,继而LED灯管也被广泛用于纺织行业;
公告号为“CN105987297B”公开的专利名称为“一种全周光LED灯管”,填充的所述透明导热油或者透明导热硅胶具有很好的透明度和导热性能,可保证所述灯芯发出的光顺利从所述灯管外壳射出的同时,使得所述灯芯发出的热量迅速传递到所述灯管外壳上并散出,从而极大的加快了所述LED灯管的散热能力;此外上述填充材料具有热胀冷缩效应不明显的特点,因为所述灯管外壳安装到灯管上两端堵住之后,内部是一个密闭度很高的空间,如果不填充上述材料排出空气,大量的空气会因为热胀冷缩效应,使得所述灯管内部压强极其不稳定,影响灯管内部机构稳定,甚至损坏灯管,但是该LED灯管在纺织厂进行照明使用时,由于纺织工程中带静电的尘体到处飞扬,车间里面弥漫着线头和丝头,带着几千伏的静电压,随时会落在LED灯管上,粘连在LED灯管的表面,这样会影响LED灯管的照明亮度;
综上,现有技术中的LED灯管存在容易粘连线头和丝头进而影响照明亮度的问题。
发明内容
本发明的目的是提供一种基于气体流动的防附着纺织用LED灯管,以解决现有技术存在的问题,通过第二防护外壳、第一防护外壳和吹气孔三者的配合使用,流动的气体从吹气孔内吹出,继而可以防止线头和丝头等织物碎屑粘附在LED灯管表面,保证LED灯管的照明亮度。
为实现上述目的,本发明提供了如下方案:
一种基于气体流动的防附着纺织用LED灯管,包括铝材灯体,以及安装在所述铝材灯体内侧的电源绝缘盒;
所述电源绝缘盒的下表面固定有铝基板,且铝基板的下表面安装有LED灯珠;
还包括:
所述电源绝缘盒的内部安装有驱动电源,且电源绝缘盒的左右两端均固定有电源盒堵头;
其中,所述电源绝缘盒的左端外侧固定有PC堵头b,且电源绝缘盒的右端外侧固定有PC堵头a;
其中,两个所述电源盒堵头分别设置在PC堵头a和PC堵头b内;
所述LED灯珠的下方设置有第一防护外壳,且第一防护外壳的下方设置有第二防护外壳;
其中,所述第一防护外壳和第二防护外壳的左右两端均与PC堵头b和PC堵头a相连接;
所述第二防护外壳的内部等间距开设有吹气孔;
所述PC堵头b的上表面内部开设有容置槽和通气口,且容置槽的内部安装有电机,并且电机的输出端通过联轴器与竖杆的顶端相连接;
其中,所述竖杆的底端贯穿轴承连接PC堵头b的内壁,且竖杆的底端外侧固定有扇叶;
所述PC堵头b和PC堵头a的外侧均固定有青铜针脚;
所述PC堵头b的底端开槽放置有挡块,且挡块右侧的PC堵头b的内部开设有流动槽,并且流动槽的右侧与第一防护外壳和第二防护外壳之间的空隙相连通。
优选的,所述第一防护外壳和第二防护外壳均呈弧形状结构设置,且第一防护外壳和第二防护外壳之间存在间距。
通过上述结构的设置,使得第一防护外壳和第二防护外壳相互配合进行使用。
优选的,所述容置槽的下方设置有两个通气口,且两个通气口关于竖 杆的竖向中心线对称设置。
通过上述结构的设置,使得通气口很好的将容置槽内的气体输送到PC堵头b内。
优选的,所述容置槽的内部对称设置有过滤板,且过滤板的上端左右两侧固定有滑块。
通过上述结构的设置,便于过滤板很好的对外界的空气进行过滤,避免外界的杂质进入到。
优选的,所述PC堵头b的上表面开设有滑槽,且滑槽设置在容置槽的上方,并且滑槽的内部卡合滑动连接有滑块,且滑槽的内部安装有复位弹簧a,而且复位弹簧a的底端与滑块相连接。
通过上述结构的设置,滑槽的内部卡合滑动连接有滑块,使得过滤板稳定的升降。
优选的,所述竖杆的左右两侧均固定有连接杆,且连接杆的外端固定有推板,并且推板与连接杆呈垂直设置,且推板的顶端呈弧形状设置。
通过上述结构的设置,以便于竖杆旋转带动连接杆和推板一同进行旋转。
优选的,所述过滤板的下端外侧设置有推板,且过滤板通过推板构成往复升降结构。
通过上述结构的设置,使得推板可对过滤板进行推动,使得过滤板进行往复升降。
优选的,所述挡块的底部固定有复位弹簧b,且复位弹簧b的底部与PC堵头b的内部固定连接。
通过上述结构的设置,以便于挡块很好的进行往复升降。
优选的,所述PC堵头b内的电源盒堵头的上方设置有扇叶,所述通气口呈弧形状结构设置。
通过上述结构的设置,使得扇叶很好的旋转产生一定的风量。
优选的,所述流动槽将PC堵头b内部的空间与第一防护外壳和第二防护外壳之间的空隙内相连通。
通过上述结构的设置,使得PC堵头b内的气体通过流动槽流入到第一防护外壳和第二防护外壳之间的空隙内,便于气体很好的进行流动。
本发明相对于现有技术取得了以下有益技术效果:
该基于气体流动的防附着纺织用LED灯管,通过第二防护外壳、第一防护外壳和吹气孔三者的配合使用,流动的气体从吹气孔内吹出,继而可以防止这些线头和丝头等织物碎屑粘附在LED灯管表面,其具体内容如下:
(1)设置有第二防护外壳,通过第二防护外壳、第一防护外壳和吹气孔三者的配合使用,使得LED灯管内部产生的气体在第二防护外壳与第一防护外壳之间的空隙内进行流动,然后流动的气体从吹气孔内吹出,继而便于从吹气孔内吹出的气体将第二防护外壳表面粘连的线头和丝头等织物碎屑吹掉,继而可以防止这些线头和丝头等织物碎屑粘附在LED灯管表面,以便于LED灯管很好的在纺织厂内进行使用;
(2)安装有挡块,通过挡块的设置便于对流动槽的左端进行遮挡,继而可避免外界的杂质通过吹气孔和流动槽进入到PC堵头b内,由此可对PC堵头b进行保护;
(3)固定有连接杆和推板,通过连接杆的旋转可带动推板一同进行旋转,继而使得顶端呈弧形状的推板在以竖杆的圆心为圆心进行旋转时可对过滤板往复式的向上推动,由此便于对过滤板进行晃动,避免过滤板长时间使用而发生堵塞,影响过滤板的过滤工作。
附图说明
为了更清楚地说明本发明实施例或现有技术中的技术方案,下面将对实施例中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本发明的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。
图1为本发明主剖视结构示意图;
图2为本发明立体结构示意图;
图3为本发明PC堵头b主剖视结构示意图;
图4为本发明过滤板主剖视结构示意图;
图5为本发明过滤板与推板连接侧剖视结构示意图;
图6为本发明第二防护外壳立体结构示意图;
图7为本发明图4中A处放大结构示意图;
图8为本发明图3中B处放大结构示意图。
图中:1、铝材灯体;2、流动槽;3、铝基板;4、第一防护外壳;5、第二防护外壳;6、电源绝缘盒;7、电源盒堵头;8、PC堵头a;9、PC堵头b;10、青铜针脚;11、竖杆;111、连接杆;112、推板;12、LED灯珠;13、吹气孔;14、驱动电源;15、扇叶;16、过滤板;17、通气口;18、滑槽;19、滑块;20、复位弹簧a;21、挡块;22、复位弹簧b;23、容置槽。
具体实施方式
下面将结合本发明实施例中的附图,对本发明实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本发明一部分实施例,而不是全部的实施例。基于本发明中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本发明保护的范围。
本发明的目的是提供一种基于气体流动的防附着纺织用LED灯管,以解决现有技术存在的问题。
为使本发明的上述目的、特征和优点能够更加明显易懂,下面结合附图和具体实施方式对本发明作进一步详细的说明。
本实施例中的基于气体流动的防附着纺织用LED灯管,如图1-图8所示,包括铝材灯体1,以及安装在铝材灯体1内侧的电源绝缘盒6;电源绝缘盒6的下表面固定有铝基板3,且铝基板3的下表面安装有LED灯珠12,如附图1-2所示,将整个LED灯管安装在纺织厂内的灯架上,然后整个LED灯管便可以进行使用了,这时LED灯珠12开始进行照明工作,LED灯珠12的下方设置有第一防护外壳4,且第一防护外壳4的下方设置有第二防护外壳5,光亮穿过第一防护外壳4和第二防护外壳5对纺织厂内进行照明作业,纺织厂内在进行纺织工作时周边会有线头和丝头等织物碎屑在空气中飘散,有些会直接向上飘动而落在LED灯管上的第二防护外壳5上,长时间的话会使得第二防护外壳5表面粘连较多的线头和丝头等 织物碎屑,从而会影响LED灯管的照明使用;电源绝缘盒6的内部安装有驱动电源14,且电源绝缘盒6的左右两端均固定有电源盒堵头7;其中,电源绝缘盒6的左端外侧固定有PC堵头b9,且电源绝缘盒6的右端外侧固定有PC堵头a8;其中,两个电源盒堵头7分别设置在PC堵头a8和PC堵头b9内,其中,第一防护外壳4和第二防护外壳5的左右两端均与PC堵头b9和PC堵头a8相连接;
PC堵头b9的上表面内部开设有容置槽23和通气口17,且容置槽23的内部安装有电机,并且电机的输出端通过联轴器与竖杆11的顶端相连接,这时当需要对LED灯管表面粘连较多的线头和丝头等织物碎屑进行清理时,这时如附图1、附图3-5和附图7-8所示,启动PC堵头b9内的电机,使得电机带动竖杆11进行旋转,其中,竖杆11的底端贯穿轴承连接PC堵头b9的内壁,且竖杆11的底端外侧固定有扇叶15,然后竖杆11带动下端的扇叶15进行旋转,扇叶15在旋转时产生一定的风力,容置槽23的下方设置有两个通气口17,且两个通气口17关于竖杆11的竖向中心线对称设置,PC堵头b9内的电源盒堵头7的上方设置有扇叶15,通气口17呈弧形状结构设置,同时使得外界的风通过过滤板16机械过滤然后通过通气口17进入到左侧的PC堵头b9内;
PC堵头b9和PC堵头a8的外侧均固定有青铜针脚10;挡块21的底部固定有复位弹簧b22,且复位弹簧b22的底部与PC堵头b9的内部固定连接,这时风量较大会对挡块21向下对复位弹簧b22按压,使得复位弹簧b22蓄力,使得挡块21与流动槽2分离,这时左侧的PC堵头b9内的风便进入到流动槽2内,流动槽2将PC堵头b9内部的空间与第一防护外壳4和第二防护外壳5之间的空隙内相连通,使得气体在流动槽2内流动,然后风通过流动槽2进入到第一防护外壳4和第二防护外壳5之间的空间内进行流动,第二防护外壳5的内部等间距开设有吹气孔13,然后再通过第二防护外壳5表面的吹气孔13向外排出,风通过吹气孔13吹出时会将第二防护外壳5表面的碎屑杂质吹掉,因此可避免外界的碎屑粘连在第二防护外壳5上而影响第二防护外壳5的透光性能,使得LED灯管很好的应用在纺织里进行照明使用,PC堵头b9的底端开槽放置有挡块21,且挡块21右侧的PC堵头b9的内部开设有流动槽2,并且流动槽2的右侧与 第一防护外壳4和第二防护外壳5之间的空隙相连通,第一防护外壳4和第二防护外壳5均呈弧形状结构设置,且第一防护外壳4和第二防护外壳5之间存在间距;
竖杆11的左右两侧均固定有连接杆111,且连接杆111的外端固定有推板112,并且推板112与连接杆111呈垂直设置,且推板112的顶端呈弧形状设置,如附图1、附图3-5和附图7所示,竖杆11在旋转时带动连接杆111和推板112一同进行旋转,使得推板112的顶端对过滤板16进行向上推动,PC堵头b9的上表面开设有滑槽18,且滑槽18设置在容置槽23的上方,并且滑槽18的内部卡合滑动连接有滑块19,且滑槽18的内部安装有复位弹簧a20,而且复位弹簧a20的底端与滑块19相连接,这时过滤板16的左右两端顶部的滑块19对滑槽18内的复位弹簧a20挤压,当推板112与过滤板16分离时,这时过滤板16通过复位弹簧a20的蓄力自动向下移动,如此反复,使得推板112旋转时可带动过滤板16往复升降,继而使得过滤板16可很好的进行自动震动,便于过滤板16将表面的杂质震动掉,避免过滤板16内部的网孔堵塞,过滤板16的下端外侧设置有推板112,容置槽23的内部对称设置有过滤板16,且过滤板16的上端左右两侧固定有滑块19,且过滤板16通过推板112构成往复升降结构;
当扇叶15不工作时,这时如附图8所示,左侧的PC堵头b9内风量很小时,这时通过复位弹簧b22的蓄力自动带动挡块21向上移动,从而使得挡块21的右端与流动槽2贴合,对流动槽2进行遮挡,由此避免外界的杂质通过吹气孔13和流动槽2进入到左侧的PC堵头b9内。
本实施例的工作原理:在使用该基于气体流动的防附着纺织用LED灯管时,首先,当需要对LED灯管表面粘连较多的线头和丝头等织物碎屑进行清理时,电机带动竖杆11进行旋转,扇叶15在旋转时产生一定的风力,使得挡块21与流动槽2分离,然后风通过流动槽2进入到第一防护外壳4和第二防护外壳5之间的空间内进行流动,风通过吹气孔13吹出时会将第二防护外壳5表面的碎屑杂质吹掉;
竖杆11在旋转时带动连接杆111和推板112一同进行旋转,如此反复,使得推板112旋转时可带动过滤板16往复升降,避免过滤板16内部 的网孔堵塞;
通过复位弹簧b22的蓄力自动带动挡块21向上移动,从而使得挡块21的右端与流动槽2贴合,从而完成一系列工作。
在本发明的描述中,除非另有说明,“多个”的含义是两个或两个以上;术语“上”、“下”、“左”、“右”、“内”、“外”、“前端”、“后端”、“头部”、“尾部”等指示的方位或位置关系为基于附图所示的方位或位置关系,仅是为了便于描述本发明和简化描述,而不是指示或暗示所指的装置或元件必须具有特定的方位、以特定的方位构造和操作,因此不能理解为对本发明的限制。此外,术语“第一”、“第二”、“第三”等仅用于描述目的,而不能理解为指示或暗示相对重要性。
在本发明的描述中,需要说明的是,除非另有明确的规定和限定,术语“相连”、“连接”应做广义理解,例如,可以是固定连接,也可以是可拆卸连接,或一体地连接;可以是机械连接,也可以是电连接;可以是直接相连,也可以通过中间媒介间接相连。对于本领域的普通技术人员而言,可以具体情况理解上述术语在本发明中的具体含义。
尽管参照前述实施例对本发明进行了详细的说明,对于本领域的技术人员来说,其依然可以对前述各实施例所记载的技术方案进行修改,或者对其中部分技术特征进行等同替换,凡在本发明的精神和原则之内,所作的任何修改、等同替换、改进等,均应包含在本发明的保护范围之内。

Claims (10)

  1. 一种基于气体流动的防附着纺织用LED灯管,包括铝材灯体(1),和安装在所述铝材灯体(1)内侧的电源绝缘盒(6);
    所述电源绝缘盒(6)的下表面固定有铝基板(3),且所述铝基板(3)的下表面安装有LED灯珠(12);其特征在于:
    所述电源绝缘盒(6)的内部安装有驱动电源(14),且电源绝缘盒(6)的左右两端均固定有电源盒堵头(7);
    其中,所述电源绝缘盒(6)的左端外侧固定有PC堵头b(9),所述电源绝缘盒(6)的右端外侧固定有PC堵头a(8);两个所述电源盒堵头(7)分别设置在所述PC堵头a(8)和PC堵头b(9)内;
    所述LED灯珠(12)的下方设置有第一防护外壳(4),所述第一防护外壳(4)的下方设置有第二防护外壳(5);所述第一防护外壳(4)和第二防护外壳(5)的左右两端均与所述PC堵头b(9)和PC堵头a(8)相连;所述第二防护外壳(5)的内部等间距开设有吹气孔(13);
    所述PC堵头b(9)的上表面内部开设有容置槽(23)和通气口(17),所述容置槽(23)的内部安装有电机,所述电机的输出端通过联轴器与竖杆(11)的顶端相连接;
    所述竖杆(11)的底端贯穿轴承连接PC堵头b(9)的内壁,且所述竖杆(11)的底端外侧固定有扇叶(15);
    所述PC堵头b(9)和PC堵头a(8)的外侧均固定有青铜针脚(10);
    所述PC堵头b(9)的底端开槽放置有挡块(21),所述挡块(21)右侧的所述PC堵头b(9)的内部开设有流动槽(2),所述流动槽(2) 的右侧与所述第一防护外壳(4)和所述第二防护外壳(5)之间的空隙相连通。
  2. 根据权利要求1所述的一种基于气体流动的防附着纺织用LED灯管,其特征在于:所述第一防护外壳(4)和第二防护外壳(5)均呈弧形状结构设置,所述第一防护外壳(4)和第二防护外壳(5)之间还存在间距。
  3. 根据权利要求1所述的一种基于气体流动的防附着纺织用LED灯管,其特征在于:所述容置槽(23)的下方设置有两个通气口(17),且两个所述通气口(17)关于竖杆(11)的竖向中心线对称设置。
  4. 根据权利要求1所述的一种基于气体流动的防附着纺织用LED灯管,其特征在于:所述容置槽(23)的内部对称设置有过滤板(16),所述过滤板(16)的上端左右两侧固定有滑块(19)。
  5. 根据权利要求4所述的一种基于气体流动的防附着纺织用LED灯管,其特征在于:所述PC堵头b(9)的上表面开设有滑槽(18),所述滑槽(18)设置于所述容置槽(23)的上方,所述滑槽(18)的内部卡合滑动连接有所述滑块(19),所述滑槽(18)的内部还安装有复位弹簧a(20),所述复位弹簧a(20)的底端与所述滑块(19)相连接。
  6. 根据权利要求1所述的一种基于气体流动的防附着纺织用LED灯管,其特征在于:所述竖杆(11)的左右两侧均固定有连接杆(111),所述连接杆(111)的外端固定有推板(112),所述推板(112)与所述连接杆(111)呈垂直设置,且所述推板(112)的顶端呈弧形状设置。
  7. 根据权利要求4所述的一种基于气体流动的防附着纺织用LED灯 管,其特征在于:所述过滤板(16)的下端外侧设置有推板(112),且所述过滤板(16)通过推板(112)构成往复升降结构。
  8. 根据权利要求1所述的一种基于气体流动的防附着纺织用LED灯管,其特征在于:所述挡块(21)的底部固定有复位弹簧b(22),所述复位弹簧b(22)的底部与所述PC堵头b(9)的内部固定连接。
  9. 根据权利要求1所述的一种基于气体流动的防附着纺织用LED灯管,其特征在于:所述PC堵头b(9)内的所述电源盒堵头(7)的上方设置有扇叶(15),所述通气口(17)呈弧形状结构设置。
  10. 根据权利要求1所述的一种基于气体流动的防附着纺织用LED灯管,其特征在于:所述流动槽(2)将所述PC堵头b(9)内部的空间与所述第一防护外壳(4)和第二防护外壳(5)之间的空隙内相连通。
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