WO2016029334A1 - 使电蜡烛火焰有动态视觉效果的方法和装置 - Google Patents

使电蜡烛火焰有动态视觉效果的方法和装置 Download PDF

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Publication number
WO2016029334A1
WO2016029334A1 PCT/CN2014/085078 CN2014085078W WO2016029334A1 WO 2016029334 A1 WO2016029334 A1 WO 2016029334A1 CN 2014085078 W CN2014085078 W CN 2014085078W WO 2016029334 A1 WO2016029334 A1 WO 2016029334A1
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WO
WIPO (PCT)
Prior art keywords
candle flame
simulant
flame
candle
water
Prior art date
Application number
PCT/CN2014/085078
Other languages
English (en)
French (fr)
Inventor
吴望
Original Assignee
深圳市兴日生实业有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 深圳市兴日生实业有限公司 filed Critical 深圳市兴日生实业有限公司
Priority to EP14900808.8A priority Critical patent/EP3096075B1/en
Priority to US15/114,817 priority patent/US9897270B2/en
Priority to PCT/CN2014/085078 priority patent/WO2016029334A1/zh
Publication of WO2016029334A1 publication Critical patent/WO2016029334A1/zh

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Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21SNON-PORTABLE LIGHTING DEVICES; SYSTEMS THEREOF; VEHICLE LIGHTING DEVICES SPECIALLY ADAPTED FOR VEHICLE EXTERIORS
    • F21S6/00Lighting devices intended to be free-standing
    • F21S6/001Lighting devices intended to be free-standing being candle-shaped
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F04POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
    • F04DNON-POSITIVE-DISPLACEMENT PUMPS
    • F04D29/00Details, component parts, or accessories
    • F04D29/18Rotors
    • F04D29/22Rotors specially for centrifugal pumps
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F04POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
    • F04DNON-POSITIVE-DISPLACEMENT PUMPS
    • F04D29/00Details, component parts, or accessories
    • F04D29/26Rotors specially for elastic fluids
    • F04D29/28Rotors specially for elastic fluids for centrifugal or helico-centrifugal pumps for radial-flow or helico-centrifugal pumps
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21SNON-PORTABLE LIGHTING DEVICES; SYSTEMS THEREOF; VEHICLE LIGHTING DEVICES SPECIALLY ADAPTED FOR VEHICLE EXTERIORS
    • F21S10/00Lighting devices or systems producing a varying lighting effect
    • F21S10/04Lighting devices or systems producing a varying lighting effect simulating flames
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B05SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05BSPRAYING APPARATUS; ATOMISING APPARATUS; NOZZLES
    • B05B17/00Apparatus for spraying or atomising liquids or other fluent materials, not covered by the preceding groups
    • B05B17/04Apparatus for spraying or atomising liquids or other fluent materials, not covered by the preceding groups operating with special methods
    • B05B17/06Apparatus for spraying or atomising liquids or other fluent materials, not covered by the preceding groups operating with special methods using ultrasonic or other kinds of vibrations
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21SNON-PORTABLE LIGHTING DEVICES; SYSTEMS THEREOF; VEHICLE LIGHTING DEVICES SPECIALLY ADAPTED FOR VEHICLE EXTERIORS
    • F21S10/00Lighting devices or systems producing a varying lighting effect
    • F21S10/04Lighting devices or systems producing a varying lighting effect simulating flames
    • F21S10/046Lighting devices or systems producing a varying lighting effect simulating flames by movement of parts, e.g. by movement of reflectors or light sources
    • 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 a combination of a lighting device and other articles, and more particularly to a device and system for illuminating a device to be combined with other articles to produce a variable illumination effect, and more particularly to a simulated flame involving a dynamic visual effect of an electric candle flame.
  • the prior art analog electric candle device uses a flaming shaped light bulb to control its light flashing to simulate a dynamic flame. But this only simulates the illumination of a dynamic flame, and its flame appearance is not realistic enough.
  • the technical solution disclosed in US Pat. No. 8,070,319 B2 better simulates a dynamic flame, and the image is realistic, but its pendulum-shaped candle flame simulant must be maintained by electromagnetic force, and used for the candlestick combined with water, and its electromagnetic drive
  • the organization needs a complicated waterproof seal design, which is technically difficult and costly. Summary of the invention
  • the technical problem to be solved by the present invention is to provide a method and apparatus for making the electric candle flame have a dynamic visual effect by avoiding the deficiencies of the prior art and having a simple structure and low cost.
  • a method for making a dynamic visual effect of an electric candle flame comprising the following steps:
  • a removable upper cover is mounted on at least one can-shaped housing that is open only at one end, and a simple candle flame simulant seat is fixed in the center of the upper cover, and the first or second candle flame simulant is pivoted
  • the vertical façade is swingably mounted in the candle flame simulant housing;
  • the LED lamp On the lower front side of the plane of the first or second candle flame simulant head, on the vertical wall of the candle flame simulant seat, the LED lamp is mounted so that the light is directed obliquely upward at the elevation angle ⁇ toward the first or The plane of the second candle flame simulating the head of the object;
  • a water agitation device is arranged in the lower part of the casing, and water is injected to immerse the tail end of the lower part of the first candle flame simulant; the LED lamp is lit, the water agitation device is activated, and the water outlet of the water outlet is caused to fluctuate by the water surface, causing fluctuations.
  • First candle flame mode The object reciprocates and the LED light is projected onto the head of the first candle flame simulant, causing a visual effect of the dynamic flame.
  • the second candle flame simulant since the lower end of the lower end is coaxially orthogonally coupled with the horizontally presented lower end, although the water is injected into the casing, the lower end should not be touched.
  • the second candle flame simulant is oscillated by the unbalanced water droplets falling into the lower end of the casing, causing a visual effect of the dynamic flame.
  • the technical solution for solving the technical problem of the present invention may also be: A method for making a dynamic visual effect of an electric candle flame, comprising the following steps:
  • A. a removable upper cover is mounted on at least one can-shaped housing that is open only at one end, a simple candle flame simulant mounting frame is fixed in the center of the upper cover, and the third candle flame simulant is provided by the lower part of the mounting frame a central through hole of the candle flame simulant support, axially rotatably mounted in the candle flame simulating mount;
  • the LED lamp On the lower front side of the plane of the head of the third candle flame simulant, on the vertical wall of the candle flame simulating mount, the LED lamp is mounted so that the light is directed obliquely upward at the elevation angle ⁇ toward the third candle flame simulation.
  • a spiral or a plurality of inclined flat plate-like impellers similar to a turbine rotor are coaxially mounted at a lower portion of the middle portion of the third candle flame simulant in the axial direction, the tail shaft end of which is inserted into the candle flame simulant support Inside the central through hole;
  • the water flow impacts the impeller from the bottom up in the axial direction, causing the third candle flame simulant to rotate, and the LED light is projected onto the head of the third candle flame simulant, causing a dynamic flame Visual effects.
  • the technical solution for solving the technical problem of the present invention may further be: an electric candle device having a dynamic flame visual effect, comprising a casing, an upper cover and at least one first or second candle flame simulant, the casing Only one end is open, the upper cover is mounted thereon, and the first or second candle flame simulating material passes through the central through hole of the upper cover, and the head candle flame protrudes outside the upper cover; in particular, the LED lamp and the pivot are also included a candle flame simulant base and a water agitation device; the candle flame simulant base is simplified and fixed in the center of the upper cover, and the first or second candle flame simulant is swingably mounted in the tree upright by means of a pivot In the candle flame simulant base; the LED lamp is mounted on the vertical wall of the candle flame simulant base, located in the lower front plane of the first or second candle flame simulant side, and the light is directed obliquely upward at the elevation angle ⁇ The plane of the first or second candle flame simulant; the lower portion of
  • the elevation angle of the light emitted by the LED lamp may be 20° ⁇ ⁇ ⁇ 70°.
  • the first or second candle flame simulant may have a flat shape as a whole, the upper part of which has a flame-like shape, is made of a light-transmitting material, and the lower part may be thickened to cause the center of gravity of the candle flame simulant to move downward, the first Or the second candle flame has a through hole in the middle of the simulating portion, is inserted on the pivot shaft, and is erected because the lower portion thereof is heavier than the upper portion, and can be swung.
  • the lower end of the second candle flame simulant may also be coaxially orthogonally coupled with the horizontally presented lower end.
  • the electric candle device When the electric candle device is in operation, firstly, water is injected into the casing, the height of the water is immersed in the lower part of the first candle flame simulant, the LED lamp is illuminated, the water agitation device is activated, and the water column of the water agitating device water outlet is activated.
  • the impact of the water surface causes the water surface to fluctuate.
  • the fluctuating water surface causes the first candle flame simulant to oscillate.
  • the LED light is directed toward the upper plane of the first candle flame simulant, and the first candle flame simulant of the swing produces a dynamic flame visual effect.
  • the water agitation device may be a water pump, a gas pump, an ultrasonic atomizer, a wave generator, or the like. It is also possible to directly immerse the lower end of the first candle flame simulant in the flowing body of water.
  • the wave generators used here are often used in artificial aquaculture tanks for artificially making waves or surges.
  • a water agitation device or other external water pipe may be used to generate water droplets in the electric candle case and adhere to the outer cylindrical surface of the candle flame simulant seat, along which the water drops are The outer cylindrical surface slides down to form water droplets, and many water droplets are continuously splashed on the lower end of the second candle flame simulant, so that the candle flame simulant reciprocates around the pivot, resulting in a dynamic flame visual effect.
  • the lower portion of the casing also contains water, but the water surface does not touch the lower end.
  • the technical solution for solving the technical problem of the present invention may further be: an electric candle device having a dynamic flame visual effect, comprising a casing, an upper cover and at least one third candle flame simulant, wherein the casing is open only at one end
  • the upper cover is mounted thereon, and the third candle flame simulating material passes through the central through hole of the upper cover, and the head candle flame protrudes outside the upper cover
  • the candle flame simulant mount is simplified and fixed to the center of the upper cover, and the third candle flame simulant is supported by the candle flame simulant at the lower portion of the mount
  • the central through hole of the seat is axially rotatably mounted in the candle flame simulant mounting frame;
  • the LED lamp is mounted on the vertical wall of the candle flame simulating object seat, and is located in the lower front side of the plane of the third candle flame simulant head. The light is directed
  • a submersible pump is disposed at a lower portion of the casing, and water is injected therein; or external water is introduced from the central through hole of a larger diameter below the support seat, and flows upward from the axial direction, and flows from the discharge hole beside the impeller side. Go out.
  • the beneficial effects of the invention are: the dynamic visual effect of the simulated candle flame is obvious, the device structure is simple, and the cost is low.
  • FIG. 1 is a first preferred embodiment of a method and apparatus for making a dynamic visual effect of an electric candle flame according to the present invention, and is a schematic projection view of a single-candle electric candle device;
  • Figure 2 is a second perspective view of the first preferred embodiment, which is a schematic projection of a multi-candle electric candle device;
  • Figure 3 is a partial cross-sectional view of Figure 1;
  • Figure 4 is a partial cross-sectional view of Figure 2;
  • FIG. 5 is a second preferred embodiment of a method and apparatus for providing a dynamic visual effect of an electric candle flame according to the present invention, and is a partial cross-sectional view and an operational view of the electric candle device including the second candle flame simulant 25;
  • Figure 6 is a schematic projection view of the second candle flame simulant 25 of the second preferred embodiment
  • FIG. 7 is a third preferred embodiment of a method and apparatus for providing a dynamic visual effect of an electric candle flame according to the present invention, and is a partial cross-sectional view and an operational view of the electric candle device including a third candle flame simulant 35;
  • Figure 8 is a schematic exploded view showing the coaxial state of the electric candle device of the third preferred embodiment.
  • 11 is the housing, 12 is the fluctuating water surface, 13 is the upper cover, 14 is the LED lamp; 15, 25, 35 are the first to third candle flame simulations of the first to third embodiments, respectively.
  • 156, 256 are the through holes of the first or second candle flame simulant section for penetrating the pivot 16; 251 is the lower end of the second candle flame simulant of the second embodiment, 16 is a pivot; 17 is a candle flame simulant mount of the first and second embodiments, 37 is a candle flame simulant mount of the third embodiment, 39 is a candle flame simulant mount of the third embodiment; 18 is a water agitation device, 181 is the water agitating device water outlet, 171 is a water ball attached to the outer cylindrical surface of the candle flame simulant seat 17, and 172 is a falling water ball; DR is an indication line of the third flame simulant 35 rotation direction, and DF is the water flow direction.
  • the indicator line, DL is an indication line for the direction in which the LED luminaire 14
  • a method for providing a dynamic visual effect to an electric candle flame comprising the steps of:
  • a removable upper cover 13 is mounted on at least one can-shaped housing 11 that is open only at one end, and the upper cover 13 is fixed at the center with a simple candle flame simulant seat 17, a first or second candle flame simulant 15, 25 is pivotally mounted in the candle flame simulant seat 17 in the vertical erection by means of the pivot shaft 16;
  • the LED lamp 14 is mounted so that the light is tilted upward at an elevation angle ⁇ Said plane to the head of the first or second candle flame simulating article 15, 25;
  • a water agitating device 18 is disposed at a lower portion of the casing 11, and water is injected to immerse the lower tail end of the first candle flame simulant 15;
  • the LED lamp is turned on, and the water agitation device 18 is activated, and the water outlet 181 emits a water column to impact the water surface to cause fluctuation, so that the first candle flame simulant 15 reciprocates, and the LED light is projected onto the head of the first candle flame simulant 15 to cause dynamic The visual effect of the flame.
  • the LED lamp 14 involved has an elevation angle of 20° ⁇ ⁇ ⁇ 70°.
  • the first or second candle flame simulants 15, 25 are generally flat, the head has a flame-like shape, is made of a light-transmitting material, and the lower portion is thickened to cause the first The center of gravity of the first or second candle flame simulating objects 15, 25 is moved downward, and the lower portion of the middle portion of the first or second candle flame simulating bodies 15, 25 has through holes 156, 256 which are threaded on the pivot shaft 16 due to The lower portion is heavier than the upper portion and can be oscillated back and forth.
  • the first and second embodiments of the present invention are also directed to an electric candle device having a dynamic flame visual effect, comprising a housing 11, an upper cover 13, and at least one first or second candle flame simulant 15, 25, the housing 11 Only one end is open, the upper cover 13 is mounted thereon, and the first or second candle flame simulating objects 15, 25 pass through the central through hole of the upper cover 13, and the head candle flame protrudes from the outer cover 13; in particular, The LED lamp 14 , the pivot 16 , the candle flame simulant base 17 and the water agitation device 18 are included; the candle flame simulant base 17 is simple and fixed to the center of the upper cover 13 , and the first or second candle flame simulant 15, 25 is pivotally mounted in the candle flame simulant base 17 in the vertical façade by means of the pivot shaft 16; the LED luminaire 14 is mounted on the vertical wall of the candle flame simulant base 17, located in the first or second candle flame simulation a lower front side of the plane of the head 15 side, the light of which is directed obliquely upward at
  • a water agitation device 18 is disposed at a lower portion of the casing 11, and water is injected to immerse the tail end of the lower portion of the first candle flame simulant 15.
  • the elevation angle of the light emitted by the LED lamp 14 is 20 ° ⁇ ⁇ ⁇ 70 °.
  • the first or second candle flame simulating objects 15, 25 are generally flat, the head has a flame-like shape, and the lower portion is thickened to cause the center of gravity of the candle flame simulant to move downward, the first or second candle flame
  • the lower portions of the middle portions of the simulating objects 15 and 25 respectively have through holes 156 and 256 which are passed through the pivot shaft 16 and are erected because the lower portion thereof is heavier than the upper portion and can be swung.
  • the lower end of the second candle flame simulant 25 is also coaxially orthogonally coupled to the lower end stage 251 which is horizontally presented.
  • the lower portion of the casing is filled with water, but the water surface does not touch the lower end 251.
  • the water agitation device 18 is a water pump, a gas pump, an ultrasonic atomizer or an wave generator. It is also possible to directly immerse the lower end of the first candle flame simulant 15 in the flowing body of water.
  • the wave generators used here are often used in artificial aquaculture tanks for artificially making waves or surges.
  • FIG. 5 is a partial cross-sectional view and an operational view of the electric candle device including the second candle flame simulant 25 in accordance with a second preferred embodiment of the present invention.
  • water agitation device 18 or other external water pipeline water droplets are generated in the electric candle casing 11 and attached to the outer cylindrical surface of the candle flame simulant base 17, and the water droplets 171 slide down along the outer cylindrical surface to form water droplets.
  • a plurality of water droplets 172 are continuously splashed on the second candle flame simulating lower end 251, so that the second candle flame simulant 25 reciprocates around the pivot 16 to cause a visual effect of the dynamic flame.
  • a method for making a dynamic visual effect of an electric candle flame includes the following steps:
  • a removable upper cover 13 is mounted on at least one can-shaped housing 11 that is open only at one end, and a simple candle flame simulant mounting bracket 37 is fixed in the center of the upper cover 13, and the third candle flame simulant 35 is a central through hole 396 of the candle flame simulant support 39 at the lower portion of the mounting bracket 37 is axially rotatably mounted in the candle flame simulating mount 37;
  • the LED lamp 14 is mounted on the vertical wall of the candle flame simulating mount 37, so that the light is directed obliquely upward at the elevation angle ⁇ toward the third The plane of the head of the candle flame mimic 35;
  • a third embodiment of the present invention is also directed to an electric candle device having a dynamic flame visual effect, comprising a housing 11, an upper cover 13 and at least one third candle flame simulant 35, the housing 11 having only one end open, the upper cover 13 being mounted
  • the third candle flame simulant 35 passes through the central through hole of the upper cover 13, and the head candle flame protrudes from the outer cover 13; in particular, the LED lamp 14 and the candle flame simulant mounting frame 37 are further included.
  • a central through hole 396 of the candle flame simulant holder 39 at the lower portion of the mounting bracket 37 is axially rotatably mounted in the candle flame simulating mount 37; the central through hole 396 is a lower portion of the candle flame simulating mount 37
  • the axially mounted candle flame simulating seat 39 has a relatively axial length through hole in the upper portion thereof, and the tail shaft end 356 of the third candle flame simulant 35 is inserted therein to be limited in horizontal displacement, and the first portion is also ensured.
  • Three-candle flame simulant 35 Fixed upright posture rotated.
  • the LED lamp 14 is mounted on the vertical wall of the candle flame simulating mount 37, located at the lower front of the plane of the head side of the third candle flame simulant 35, and the light is directed obliquely upward at the elevation angle ⁇ toward the third candle flame simulation.
  • a submersible pump is disposed at a lower portion of the casing 11 and water is injected therein; or external water is introduced from the central through hole of a larger diameter below the candle flame simulant holder 39, and upwardly from the axial direction, and from the impeller 352 The side of the drain hole flows out.
  • the elevation angle of the light emitted by the LED lamp 14 is 20. ⁇ ⁇ ⁇ 70. .
  • the third candle flame simulant 35 has a flat, flame-like shape and is made of a light transmissive material; the third candle flame simulant 35 is axially disposed at a lower portion of the middle portion, and is coaxially mounted similarly A spiral or a plurality of inclined flat impellers 352 of the turbine rotor, the tail shaft end 356 of which is inserted into the axial center through hole 396 of the candle flame simulant holder 39.

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  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Non-Portable Lighting Devices Or Systems Thereof (AREA)

Abstract

一种使电蜡烛火焰有动态视觉效果的方法和装置,装置包括壳体(11)、上盖(13)和第一或第二烛焰模拟物(15、25),还包括LED灯具(14)、枢轴(16)、烛焰模拟物座(17)和水搅动装置(18);烛焰模拟物座(17)呈筒状、固定于上盖(13)中央,烛焰模拟物(15、25)借助枢轴(16)在竖直立面内可摆动地安装于烛焰模拟物座(17)内;LED灯具(14)安装于烛焰模拟物座(17)的立壁上,位于烛焰模拟物(15、25)一侧平面的下前方,其光线以仰角β往上倾斜地射向烛焰模拟物(15、25)的平面;壳体(11)下部盛水,其内安装水搅动装置(18)。电蜡烛装置火焰动感逼真,并且结构简单、生产成本低。

Description

使电蜡烛火焰有动态视觉效果的方法和装置
技术领域
本发明涉及照明装置和其他物品结合的组合物, 尤其涉及照明装置与其他物品在结构上 组合而产生变幻照明效果的装置和系统, 特别是涉及模拟火焰, 涉及使电蜡烛火焰有动态视 觉效果的方法和装置。 背景技术
现代社会, 人们在婚礼喜庆、 朋友聚会、 生日庆典, 或是在餐厅、 酒吧和咖啡厅等场所, 都会点上蜡烛来烘托、 渲染浪漫气氛。 但是, 传统的蜡烛, 不但燃烧持续时间短、 污染环境 和造成资源浪费, 而且危害人体健康, 还容易引发火灾, 从而导致仿真火焰和模拟电蜡烛装 置越来越受欢迎、 越来越普及。
现有技术模拟电蜡烛装置釆用火焰状外形的电灯泡, 控制其灯光闪烁以模拟动态火焰。 但是这只模拟了动态火焰的光照, 而且其火焰外观也不够逼真。 美国专利 US 8,070,319B2公 开的技术方案较好地模拟了动态火焰, 影像逼真, 但是其钟摆状的烛焰模拟物须借助电磁力 维持推动, 将其用于同水结合造型的烛台, 其电磁驱动机构需要复杂的防水密封设计, 技术 难度较大, 成本也比较高。 发明内容
本发明要解决的技术问题在于避免现有技术的不足之处而提供一种结构简单、 造价低廉 的使电蜡烛火焰有动态视觉效果的方法和装置。
本发明解决所述技术问题釆用的技术方案是: 一种使电蜡烛火焰有动态视觉效果的方 法, 包括如下步骤:
A.在至少一个仅一端开口的罐状壳体上安装可移除的上盖, 该上盖中央固定有简状的烛 焰模拟物座,第一或第二烛焰模拟物借助枢轴在竖直立面内可摆动地安装于烛焰模拟物座内;
B.让所述第一或第二烛焰模拟物穿越上盖的中央贯通孔, 使其头部烛焰伸出于上盖外;
C.在第一或第二烛焰模拟物头部一侧平面的下前方、 烛焰模拟物座的立壁上, 安装 LED 灯具, 使其光线以仰角 β往上倾斜地射向该第一或第二烛焰模拟物头部的所述平面;
D. 在壳体下部设置水搅动装置, 并且注入水, 使之浸没第一烛焰模拟物下部的尾端; 点亮 LED灯, 启动水搅动装置, 其出水口射出水柱冲击水面产生波动, 致使第一烛焰模 拟物往复摆动, LED灯光投射到该第一烛焰模拟物头部, 造成动态火焰的视觉效果。 至于第 二烛焰模拟物, 因为其下部尾端共轴线地正交联结有水平呈现的下端台, 所述壳体内虽然注 入了水, 但不应触及该下端台。 所述第二烛焰模拟物是靠壳体内不断下落至所述下端台上的 水滴不平衡而摆动, 造成动态火焰的视觉效果的。
本发明解决所述技术问题釆用的技术方案还可以是: 一种使电蜡烛火焰有动态视觉效果 的方法, 包括如下步骤:
A.在至少一个仅一端开口的罐状壳体上安装可移除的上盖, 该上盖中央固定有简状的烛 焰模拟物安装架, 第三烛焰模拟物借助该安装架下部的烛焰模拟物支承座的中央贯通孔, 轴 向可转动地安装于烛焰模拟物安装架内;
B.让所述第三烛焰模拟物穿越上盖的中央贯通孔, 使其头部烛焰伸出于上盖外;
C.在第三烛焰模拟物头部一侧平面的下前方、烛焰模拟物安装架的立壁上, 安装 LED灯 具, 使其光线以仰角 β往上倾斜地射向该第三烛焰模拟物头部的所述平面;
D. 在第三烛焰模拟物沿轴向的中段下部,共轴线地安装类似水轮机转子的螺旋状或多片 倾斜平板状的叶轮, 其尾部轴端插入在所述烛焰模拟物支承座的中央贯通孔内;
Ε.在壳体内注水, 并在其内设置潜水泵, 或者引入外来水从该烛焰模拟物支承座下面更 大直径的中央贯通孔沿轴向侧边孔往上涌出, 又从所述叶轮侧旁的泄流通道流出去;
启动所述潜水泵或者打开引入外来水的阀门, 水流沿轴向自下往上冲击叶轮, 致使第三 烛焰模拟物旋转, LED灯光投射到该第三烛焰模拟物头部, 造成动态火焰的视觉效果。
本发明解决所述技术问题釆用的技术方案再可以是: 一种有动态火焰视觉效果的电蜡烛 装置, 包括壳体、 上盖和至少一枚第一或第二烛焰模拟物, 壳体仅一端开口, 上盖安装于其 上, 第一或第二烛焰模拟物穿越上盖的中央贯通孔, 其头部烛焰伸出于上盖外; 尤其是, 还 包括 LED灯具、 枢轴、 烛焰模拟物座和水搅动装置; 所述烛焰模拟物座呈简状、 且固定于上 盖中央,第一或第二烛焰模拟物借助枢轴在树直立面内可摆动地安装于烛焰模拟物座内; LED 灯具安装于烛焰模拟物座的立壁上, 位于第一或第二烛焰模拟物一侧平面的下前方, 其光线 以仰角 β往上倾斜地射向该第一或第二烛焰模拟物的所述平面; 壳体下部盛水, 其内安装有 水搅动装置。
所述 LED灯具光线射出的仰角可以是 20°≤β <70°。
所述第一或第二烛焰模拟物整体可以呈扁平状, 其上部有火焰般的造型, 用透光材料制 成, 下部可以加厚致使该烛焰模拟物重心下移, 所述第一或第二烛焰模拟物中部有贯通孔, 被穿于所述枢轴上, 由于其下部比上部重而呈竖立状态, 并可以摆动。 作为本发明的第二优选实施例, 所述第二烛焰模拟物的下部尾端还可以共轴线地正交联 结有水平呈现的下端台。
所述电蜡烛装置工作时, 首先要对所述壳体内注水, 使水的高度浸没所述第一烛焰模拟 物下部, 点亮 LED灯具, 启动水搅动装置, 该水搅动装置出水口的水柱遂冲击水面, 使水面 产生波动, 波动的水面令第一烛焰模拟物摆动, LED灯光射向第一烛焰模拟物上部平面, 摆 动的第一烛焰模拟物便产生动态火焰的视觉效果。
所述水搅动装置可以是水泵、 气泵、 超声波雾化器、 造浪器等。 也可以直接使第一烛焰 模拟物下部尾端浸泡在流动的水体中。 此处所说造浪器常在水族养殖箱内用于人工制造波浪 或涌, 有巿售。
作为本发明的第二优选实施例, 还可以利用水搅动装置或其他外接水管路, 令所述电蜡 烛壳体内产生水珠, 附着于烛焰模拟物座外圆柱面上, 水珠沿所述外圆柱面滑落下来形成水 滴, 诸多水滴不断溅落在第二烛焰模拟物下端台上, 使得烛焰模拟物绕枢轴往复摆动, 造成 动态火焰的视觉效果。 此时所述壳体下部也盛水, 但水面不触及所述下端台。
本发明解决所述技术问题釆用的技术方案更可以是: 一种有动态火焰视觉效果的电蜡烛 装置, 包括壳体、 上盖和至少一枚第三烛焰模拟物, 壳体仅一端开口, 上盖安装于其上, 第 三烛焰模拟物穿越上盖的中央贯通孔,其头部烛焰伸出于上盖外;尤其是,还包括 LED灯具、 烛焰模拟物安装架, 以及同轴安装于其下部的烛焰模拟物支承座; 所述烛焰模拟物安装架呈 简状、 且固定于上盖中央, 第三烛焰模拟物借助该安装架下部的烛焰模拟物支承座的中央贯 通孔, 轴向可转动地安装于烛焰模拟物安装架内; LED灯具安装于烛焰模拟物座的立壁上, 位于第三烛焰模拟物头部一侧平面的下前方, 其光线以仰角 β往上倾斜地射向该第三烛焰模 拟物头部的所述平面;
壳体下部设置有潜水泵, 并在其内注水; 或者引入外来水从该支承座下面更大直径的中 央贯通孔沿轴向往上涌出, 又从所述叶轮侧旁的泄流孔流出去。
同现有技术相比较, 本发明的有益效果是: 模拟蜡烛火焰的动态视觉效果明显, 装置结 构简单、 造价低廉。 附图说明
图 1是本发明使电蜡烛火焰有动态视觉效果的方法和装置之第一优选实施例之一,是单烛 头电蜡烛装置的轴测投影示意图;
图 2是所述第一优选实施例之二, 为多烛头电蜡烛装置的轴测投影示意图; 图 3是图 1的局部剖视示意图;
图 4是图 2的局部剖视示意图;
图 5是本发明使电蜡烛火焰有动态视觉效果的方法和装置之第二优选实施例,是包括第二 烛焰模拟物 25的所述电蜡烛装置的局部剖视及工作状态示意图;
图 6是所述第二优选实施例第二烛焰模拟物 25的轴测投影示意图;
图 7是本发明使电蜡烛火焰有动态视觉效果的方法和装置之第三优选实施例,是包括第三 烛焰模拟物 35的所述电蜡烛装置的局部剖视及工作状态示意图;
图 8是所述第三优选实施例电蜡烛装置共轴线的分解状态示意图 。
在上述各图中: 11为壳体, 12为波动的水面, 13为上盖, 14为 LED灯具; 15、 25、 35分 别为第一至第三实施例的第一至第三烛焰模拟物, 156、 256分别是第一或第二烛焰模拟物中 段下部用于穿入枢轴 16的贯通孔; 251为第二实施例第二烛焰模拟物的下端台, 16为枢轴; 17 为第一、 第二实施例的烛焰模拟物座, 37是第三实施例的烛焰模拟物安装架, 39是第三实施 例的烛焰模拟物支承座; 18为水搅动装置, 181为水搅动装置出水口, 171为附着于烛焰模拟 物座 17外圆柱面的水珠、 172为下落的水珠; DR是第三火焰模拟物 35旋转方向的指示线, DF 是水流方向的指示线, DL是 LED灯具 14射出光线方向的指示线。 具体实施方式
下面结合各附图对本发明作进一步的描述。
参见图 1至图 6,本发明的第一、 第二优选实施例, 一种使电蜡烛火焰有动态视觉效果的方 法, 包括如下步骤:
A.在至少一个仅一端开口的罐状壳体 11上安装可移除的上盖 13 , 该上盖 13中央固定有简 状的烛焰模拟物座 17, 第一或第二烛焰模拟物 15、 25借助枢轴 16在竖直立面内可摆动地安装 于烛焰模拟物座 17内;
B.让所述第一或第二烛焰模拟物 15、 25穿越上盖 13的中央贯通孔, 使其头部烛焰伸出于 上盖 13外;
C.在第一或第二烛焰模拟物 15、 25头部一侧平面的下前方、 烛焰模拟物座 17的立壁上, 安装 LED灯具 14, 使其光线以仰角 β往上倾斜地射向该第一或第二烛焰模拟物 15、 25头部的所 述平面;
D. 在壳体 11下部设置水搅动装置 18 , 并且注入水, 使之浸没第一烛焰模拟物 15的下部尾 端; 点亮 LED灯, 启动水搅动装置 18 , 其出水口 181射出水柱冲击水面产生波动, 致使第一烛 焰模拟物 15往复摆动, LED灯光投射到该第一烛焰模拟物 15头部, 造成动态火焰的视觉效果。
在实施所述步骤 C.时, 涉及的 LED灯具 14, 其光线射出的仰角是, 20°≤β≤70°。 在实施所 述步骤 Α.时, 涉及的第一或第二烛焰模拟物 15、 25整体呈扁平状, 其头部有火焰般的造型, 用透光材料制成, 下部加厚致使该第一或第二烛焰模拟物 15、 25重心下移, 所述第一或第二 烛焰模拟物 15、 25中段下部有贯通孔 156、 256, 被穿于所述枢轴 16上, 由于其下部比上部重 而呈竖立状态, 并可以往复摆动。
本发明的第一、 第二实施例还涉及有动态火焰视觉效果的电蜡烛装置, 包括壳体 11、 上 盖 13和至少一枚第一或第二烛焰模拟物 15、 25, 壳体 11仅一端开口, 上盖 13安装于其上, 第 一或第二烛焰模拟物 15、 25穿越上盖 13的中央贯通孔, 其头部烛焰伸出于上盖 13外; 尤其是, 还包括 LED灯具 14、 枢轴 16、 烛焰模拟物座 17和水搅动装置 18; 所述烛焰模拟物座 17呈简状、 且固定于上盖 13中央, 第一或第二烛焰模拟物 15、 25借助枢轴 16在竖直立面内可摆动地安装 于烛焰模拟物座 17内; LED灯具 14安装于烛焰模拟物座 17的立壁上, 位于第一或第二烛焰模 拟物 15、 25头部一侧平面的下前方, 其光线以仰角 β往上倾斜地射向该第一或第二烛焰模拟物 15、 25头部的所述平面;
壳体 11下部设置有水搅动装置 18 , 并且注入水, 使之浸没第一烛焰模拟物 15下部的尾端。 所述 LED灯具 14光线射出的仰角是, 20°≤β≤70°。 所述第一或第二烛焰模拟物 15、 25整体 呈扁平状, 其头部有火焰般的造型, 下部加厚致使该烛焰模拟物重心下移, 所述第一或第二 烛焰模拟物 15、 25中段下部分别有贯通孔 156、 256, 被穿于所述枢轴 16上, 由于其下部比上 部重而呈竖立状态, 并可以摆动。
作为本发明的第二实施例, 其第二烛焰模拟物 25的下部尾端还共轴线地正交联结有水平 呈现的下端台 251。 所述壳体下部盛水, 但水面不触及该下端台 251。
所述水搅动装置 18是水泵、 气泵、 超声波雾化器或造浪器。 也可以直接使第一烛焰模拟 物 15下部尾端浸泡在流动的水体中。 此处所说造浪器常在水族养殖箱内用于人工制造波浪或 涌, 有巿售。
图 5是本发明第二优选实施例包括第二烛焰模拟物 25的所述电蜡烛装置的局部剖视及工 作状态示意图。 利用水搅动装置 18或其他外接水管路, 令所述电蜡烛壳体 11内产生水珠, 附 着于烛焰模拟物座 17外圆柱面上, 水珠 171沿所述外圆柱面滑落下来形成水滴 172, 诸多水滴 172不断溅落在第二烛焰模拟物下端台 251上, 使得第二烛焰模拟物 25绕枢轴 16往复摆动, 造 成动态火焰的视觉效果。 参见图 7和图 8,本发明的第三优选实施例, 一种使电蜡烛火焰有动态视觉效果的方法, 包 括如下步骤:
A.在至少一个仅一端开口的罐状壳体 11上安装可移除的上盖 13 , 该上盖 13中央固定有简 状的烛焰模拟物安装架 37, 第三烛焰模拟物 35借助该安装架 37下部的烛焰模拟物支承座 39的 中央贯通孔 396, 轴向可转动地安装于烛焰模拟物安装架 37内;
B.让所述第三烛焰模拟物 35穿越上盖 13的中央贯通孔, 使其头部烛焰伸出于上盖 13外;
C.在第三烛焰模拟物 35头部一侧平面的下前方、烛焰模拟物安装架 37的立壁上,安装 LED 灯具 14, 使其光线以仰角 β往上倾斜地射向该第三烛焰模拟物 35头部的所述平面;
D.在第三烛焰模拟物 35沿轴向的中段下部, 共轴线地安装类似水轮机转子的螺旋状或多 片倾斜平板状的叶轮 352 , 其尾部轴端 356插入在所述烛焰模拟物支承座 39的中央贯通孔 396 内;
Ε.在壳体 11内注水, 并在其内设置潜水泵, 或者引入外来水从该烛焰模拟物支承座 39下 面更大直径的中央贯通孔沿轴向侧边孔往上涌出, 又从所述叶轮 352侧旁的泄流通道流出去; 启动所述潜水泵或者打开引入外来水的阀门,水流沿轴向自下往上冲击叶轮 352令第三烛 焰模拟物 35旋转, LED灯光投射到该第三烛焰模拟物 35头部, 造成动态火焰的视觉效果。
本发明的第三实施例还涉及有动态火焰视觉效果的电蜡烛装置, 包括壳体 11、 上盖 13和 至少一枚第三烛焰模拟物 35, 壳体 11仅一端开口, 上盖 13安装于其上, 第三烛焰模拟物 35穿 越上盖 13的中央贯通孔, 其头部烛焰伸出于上盖 13外; 尤其是, 还包括 LED灯具 14、 烛焰模 拟物安装架 37 , 以及同轴安装于其下部的烛焰模拟物支承座 39; 所述烛焰模拟物安装架 37呈 简状、 且固定于上盖 13中央, 第三烛焰模拟物 35借助该烛焰模拟物安装架 37下部的烛焰模拟 物支承座 39的中央贯通孔 396, 轴向可转动地安装于烛焰模拟物安装架 37内; 所述中央贯通孔 396是烛焰模拟物安装架 37下部共轴线地安装的烛焰模拟物支承座 39上段有相当轴向长度的 贯通孔, 第三烛焰模拟物 35的尾部轴端 356插入其中而被限制了水平方向位移, 同时也保证了 所述第三烛焰模拟物 35稳定地以竖立姿态转动。
LED灯具 14安装于烛焰模拟物安装架 37的立壁上, 位于第三烛焰模拟物 35头部一侧平面 的下前方, 其光线以仰角 β往上倾斜地射向该第三烛焰模拟物 35头部的所述平面;
壳体 11下部设置有潜水泵, 并在其内注水; 或者引入外来水从该烛焰模拟物支承座 39下 面更大直径的中央贯通孔沿轴向往上涌出, 又从所述叶轮 352侧旁的泄流孔流出去。
所述 LED灯 14光线射出的仰角是, 20。≤β≤70。。 所述第三烛焰模拟物 35头部扁平、 有火焰 般的造型, 用透光材料制成; 该第三烛焰模拟物 35沿轴向的中段下部, 共轴线地安装有类似 水轮机转子的螺旋状或多片倾斜平板状的叶轮 352 , 其尾部轴端 356插入在所述烛焰模拟物支 承座 39的轴向中央贯通孔 396内。

Claims

权 利 要 求
1. 一种使电蜡烛火焰有动态视觉效果的方法, 包括如下步骤:
A.在至少一个仅一端开口的罐状壳体(11)上安装可移除的上盖(13), 该上盖(13) 中央固定有简状的烛焰模拟物座 (17), 第一或第二烛焰模拟物 (15、 25)借助枢轴 (16) 在竖直立面内可摆动地安装于烛焰模拟物座 (17) 内;
B.让所述第一或第二烛焰模拟物 (15、 25)穿越上盖(13) 的中央贯通孔, 使其头部 烛焰伸出于上盖(13) 夕卜;
C.在第一或第二烛焰模拟物 (15、 25) 头部一侧平面的下前方、 烛焰模拟物座 (17) 的立壁上, 安装 LED灯具(14), 使其光线以仰角 β往上倾斜地射向该第一或第二烛焰模 拟物 (15、 25) 头部的所述平面;
D. 在壳体(11)下部设置水搅动装置(18), 并且注入水, 使之浸没第一烛焰模拟物 (15) 下部的尾端;
点亮 LED灯具, 启动水搅动装置(18), 其出水口 (181) 射出水柱冲击水面产生波 动, 致使第一烛焰模拟物(15)往复摆动, LED灯光投射到该第一烛焰模拟物(15)头部, 造成动态火焰的视觉效果。
2. 按照权利要求 1所述的使电蜡烛火焰有动态视觉效果的方法, 其特征在于:
在实施所述步骤 C.之后, 跳过步骤 D.而直接实施步骤 E.:
E.在所述第二烛焰模拟物 (25 )下部的尾端共轴线地正交联结水平呈现的下端台(251), 所述壳体(11) 下部盛水, 但水面不触及下端台 (251);
在壳体(11)下部还设置水搅动装置(18)或引入其他外接水管路; 点亮 LED灯具, 启动水搅动装置(18), 诸多水滴不断溅落在所述下端台 (251)上, 使得第二烛焰模拟物 (25) 绕枢轴 (16)往复摆动, 造成动态火焰的视觉效果。
3. 按照权利要求 1所述的使电蜡烛火焰有动态视觉效果的方法, 其特征在于:
在实施所述步骤 C.时, 涉及的 LED灯具 (14), 其光线射出的仰角是, 20°≤β≤70°。
4. 按照权利要求 1所述的使电蜡烛火焰有动态视觉效果的方法, 其特征在于:
在实施所述步骤 Α.时, 涉及的第一或第二烛焰模拟物 (15、 25)整体呈扁平状, 其 头部有火焰般的造型, 下部加厚致使各该烛焰模拟物重心下移, 所述第一或第二烛焰模拟 物 (15、 25) 中部有贯通孔 (156、 256), 被穿于所述枢轴 (16) 上, 由于其下部比上部 重而呈竖立状态, 并可以往复摆动。
5. 一种使电蜡烛火焰有动态视觉效果的方法, 包括如下步骤:
A.在至少一个仅一端开口的罐状壳体(11)上安装可移除的上盖(13), 该上盖(13) 中央固定有简状的烛焰模拟物安装架 (37), 第三烛焰模拟物 (35)借助该安装架 (37) 下部的烛焰模拟物支承座(39) 的中央贯通孔(396), 轴向可转动地安装于烛焰模拟物安 装架 (37) 内;
B.让所述第三烛焰模拟物 (35)穿越上盖(13)的中央贯通孔, 使其头部烛焰伸出于 上盖(13) 外;
C.在第三烛焰模拟物 (35)头部一侧平面的下前方、 烛焰模拟物安装架(37)的立壁 上, 安装 LED灯具(14), 使其光线以仰角 β往上倾斜地射向该第三烛焰模拟物 (35) 头 部的所述平面;
D. 在第三烛焰模拟物 (35) 沿轴向的中段下部, 共轴线地安装类似水轮机转子的螺 旋状或多片倾斜平板状的叶轮 ( 352 ), 其尾部轴端 ( 356 )插入在所述支承座 (39) 的中 央贯通孔 (396) 内;
Ε.在壳体(11 ) 内注水, 并在其内设置潜水泵, 或者引入外来水从该支承座 (39) 下 面更大直径的中央贯通孔沿轴向侧边孔往上涌出, 又从所述叶轮 ( 352 )侧旁的泄流通道 流出去;
启动所述潜水泵或者打开引入外来水的阀门, 水流沿轴向自下往上冲击叶轮 ( 352 ) 令第三烛焰模拟物(35)旋转, LED灯光投射到该第三烛焰模拟物(35)头部, 造成动态 火焰的视觉效果。
6. 按照权利要求 5所述的使电蜡烛火焰有动态视觉效果的方法, 其特征在于:
在实施所述步骤 C.时, 涉及的 LED灯具 (14), 其光线射出的仰角是, 20°≤β≤70°。
7. 按照权利要求 5所述的使电蜡烛火焰有动态视觉效果的方法, 其特征在于:
所述步骤 Α.中, 所述中央贯通孔 (396)是烛焰模拟物安装架(37) 下部共轴线地安 装的支承座 (39)上段有相当轴向长度的贯通孔, 第三烛焰模拟物 (35) 的尾部轴端插入 其中而被限制了水平方向位移。
8. —种有动态火焰视觉效果的电蜡烛装置, 包括壳体(11)、 上盖(13 )和至少一枚第一或 第二烛焰模拟物 ( 15、 25 ) , 壳体( 11 )仅一端开口, 上盖( 13 ) 安装于其上, 第一或第 二烛焰模拟物(15、 25)穿越上盖(13)的中央贯通孔, 其头部烛焰伸出于上盖(13)夕卜; 尤其是, 还包括 LED灯具 (14)、 枢轴 (16)、 烛焰模拟物座 (17)和水搅动装置(18); 所述烛焰模拟物座(17)呈简状、 且固定于上盖(13)中央, 第一或第二烛焰模拟物(15、 25 )借助枢轴( 16 )在竖直立面内可摆动地安装于烛焰模拟物座( 17 )内; LED灯具( 14 ) 安装于烛焰模拟物座(17)的立壁上, 位于第一或第二烛焰模拟物(15、 25)头部一侧平 面的下前方, 其光线以仰角 β往上倾斜地射向该第一或第二烛焰模拟物(15、 25)头部的 所述平面;
壳体( 11 )下部设置有水搅动装置( 18 ), 并且注入水,使之浸没第一烛焰模拟物( 15 ) 的尾部。
9. 按照权利要求 8所述的有动态火焰视觉效果的电蜡烛装置, 其特征在于:
所述 LED灯( 14 ) 光线射出的仰角是, 20°≤β <70°。
10.按照权利要求 8所述的有动态火焰视觉效果的电蜡烛装置, 其特征在于:
所述第一或第二烛焰模拟物(15、 25)整体呈扁平状, 其头部有火焰般的造型, 下部 加厚致使各该烛焰模拟物重心下移, 所述第一或第二烛焰模拟物 (15、 25) 中部有贯通孔 ( 156、 256), 被穿于所述枢轴 (16) 上, 由于其下部比上部重而呈竖立状态, 并可以摆 动。
11.按照权利要求 8所述的有动态火焰视觉效果的电蜡烛装置, 其特征在于:
所述第一或第二烛焰模拟物 (15、 25)有火焰般造型的扁平头部, 用透光材料制成。
12.按照权利要求 8至 11之任一项所述的有动态火焰视觉效果的电蜡烛装置, 其特征在于: 所述第二烛焰模拟物 (25) 的下部共轴线地正交联结有水平呈现的下端台 (251)。
13.按照权利要求 8所述的有动态火焰视觉效果的电蜡烛装置, 其特征在于:
所述水搅动装置(18)是水泵、 气泵、 超声波雾化器或造浪器。
14.一种有动态火焰视觉效果的电蜡烛装置, 包括壳体(11)、 上盖(13 )和至少一枚第三烛 焰模拟物( 35 ) , 壳体( 11 )仅一端开口, 上盖( 13 )安装于其上, 第三烛焰模拟物( 35 ) 穿越上盖(13 ) 的中央贯通孔, 其头部烛焰伸出于上盖(13) 外; 尤其是, 还包括 LED 灯具(14)、 烛焰模拟物安装架(37), 以及同轴安装于其下部的烛焰模拟物支承座(39); 所述烛焰模拟物安装架 (37) 呈简状、 且固定于上盖(13) 中央, 第三烛焰模拟物 (35) 借助该安装架(37)下部的烛焰模拟物支承座(39)的中央贯通孔(396), 轴向可转动地 安装于烛焰模拟物安装架 (37) 内; LED 灯具 (14) 安装于烛焰模拟物安装架 (37) 的 立壁上, 位于第三烛焰模拟物(35)头部一侧平面的下前方, 其光线以仰角 β往上倾斜地 射向该第三烛焰模拟物 (35) 头部的所述平面;
壳体(11 )下部设置有潜水泵, 并在其内注水; 或者引入外来水从该支承座(39)下 面更大直径的中央贯通孔沿轴向往上涌出, 又从所述叶轮 ( 352 )侧旁的泄流孔流出去。 按照权利要求 14所述的有动态火焰视觉效果的电蜡烛装置, 其特征在于:
所述 LED灯具 (14) 光线射出的仰角是, 20°≤β≤70°。 按照权利要求 14所述的有动态火焰视觉效果的电蜡烛装置, 其特征在于:
所述第三烛焰模拟物(35)头部扁平、 有火焰般的造型; 该第三烛焰模拟物(35) 沿 轴向的中段下部, 共轴线地安装有类似水轮机转子的螺旋状或多片倾斜平板状的叶轮 ( 352 ), 其尾部轴端插入在所述支承座 (39) 内。 按照权利要求 14至 16之任一项所述的有动态火焰视觉效果的电蜡烛装置, 其特征在于: 所述第三烛焰模拟物 (35)有火焰般造型的扁平头部, 用透光材料制成。
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