WO2023197870A1 - 扇叶结构及风扇灯 - Google Patents
扇叶结构及风扇灯 Download PDFInfo
- Publication number
- WO2023197870A1 WO2023197870A1 PCT/CN2023/084737 CN2023084737W WO2023197870A1 WO 2023197870 A1 WO2023197870 A1 WO 2023197870A1 CN 2023084737 W CN2023084737 W CN 2023084737W WO 2023197870 A1 WO2023197870 A1 WO 2023197870A1
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- WO
- WIPO (PCT)
- Prior art keywords
- fan blade
- fan
- blade structure
- edge
- curvature
- Prior art date
- Legal status (The legal status 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 status listed.)
- Ceased
Links
Classifications
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F04—POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
- F04D—NON-POSITIVE-DISPLACEMENT PUMPS
- F04D25/00—Pumping installations or systems
- F04D25/02—Units comprising pumps and their driving means
- F04D25/08—Units comprising pumps and their driving means the working fluid being air, e.g. for ventilation
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F04—POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
- F04D—NON-POSITIVE-DISPLACEMENT PUMPS
- F04D27/00—Control, e.g. regulation, of pumps, pumping installations or pumping systems specially adapted for elastic fluids
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F04—POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
- F04D—NON-POSITIVE-DISPLACEMENT PUMPS
- F04D29/00—Details, component parts, or accessories
- F04D29/26—Rotors specially for elastic fluids
- F04D29/32—Rotors specially for elastic fluids for axial flow pumps
- F04D29/34—Blade mountings
- F04D29/36—Blade mountings adjustable
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F04—POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
- F04D—NON-POSITIVE-DISPLACEMENT PUMPS
- F04D29/00—Details, component parts, or accessories
- F04D29/26—Rotors specially for elastic fluids
- F04D29/32—Rotors specially for elastic fluids for axial flow pumps
- F04D29/38—Blades
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F04—POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
- F04D—NON-POSITIVE-DISPLACEMENT PUMPS
- F04D29/00—Details, component parts, or accessories
- F04D29/60—Mounting; Assembling; Disassembling
- F04D29/64—Mounting; Assembling; Disassembling of axial pumps
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F21—LIGHTING
- F21V—FUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
- F21V33/00—Structural combinations of lighting devices with other articles, not otherwise provided for
Definitions
- the present application relates to the technical field of fan lights, and in particular to a fan blade structure and a fan light.
- fan lights on the market mainly use straight fan blades to blow air.
- the straight fan blades cannot stir the air well, resulting in insufficient wind power, and the straight fan blades are impacted by the air. It is easy to deform and bend, thus affecting the service life of the fan blades and fan lights.
- the purpose of this application is to provide a fan blade structure and a fan light to improve the blowing effect.
- the present application provides a fan blade structure, including a fan blade body, which includes a first side located on the wind receiving side, a second side located on the leeward side, and a fan blade connected to the first side. and the third side between the second side, the first side, the second side and the third side are all curved edges, and the end of the fan blade body close to the third side is defined as the fan blade end, so One end of the fan blade body away from the third side is the fan blade root.
- the first side has a first end close to the fan blade root and a second end connected to the third side.
- the first side The radius of curvature of the side first decreases and then increases from the first end to the second end, and the radius of curvature of the first side is between 55 mm and 200 mm; the radius of curvature of the second side is greater than the The radius of curvature of the first side, and the radius of curvature of the second side is between 55 mm and 300 mm; the third side has a third end connected to the first side and a third end connected to the second side. Four ends, the radius of curvature of the third side gradually increases from the third end to the fourth end to form an acute-angle structure at the connection between the third side and the second side, and the The radius of curvature of the third side is between 80mm and 400mm.
- the fan blade structure further includes a flow guide portion, and the first side, the second side and the third side surround the outer peripheral edge of the flow guide portion.
- the transverse curvature of the flow portion gradually increases from the first side toward the second side; the longitudinal curvature of the flow guide portion first gradually increases and then decreases from the root of the fan blade toward the end of the fan blade.
- both the first side and the second side extend gradually and smoothly upward from the root of the fan blade to the end of the fan blade, and the height of the first side in the horizontal direction Higher than the height of the second side in the horizontal direction.
- the highest point of the fan blade structure is located at one end of the first side close to the end of the fan blade; the lowest point of the fan blade structure is located on the second side close to the fan blade. One end of the root.
- the distance between the highest point of the fan blade structure and the root of the fan blade accounts for 50% to 75% of the total length of the fan blade structure.
- the height of the highest point of the fan blade structure relative to the horizontal plane where the root of the fan blade is located ranges from 45 mm to 115 mm.
- the horizontal plane where the lowest point of the fan blade structure is located is flush with the horizontal plane where the root of the fan blade is located.
- the thickness of the fan blade body gradually decreases from the root of the fan blade to the end of the fan blade.
- the fan blade structure further includes a first reinforcing rib and a second reinforcing rib.
- the first reinforcing rib is provided in the length direction of the fan blade body and extends from the root of the fan blade toward The end of the fan blade extends; the second reinforcing rib is provided at the root of the fan blade.
- the fan blade body includes a flow guide portion, the flow guide portion is connected between the first side and the second side, and the flow guide portion extends from the first side The direction to the second side curves and extends downward, and in the width direction of the flow guide portion, the thickness of the first side is smaller than the thickness of the flow guide portion.
- the present application also provides a fan light, which includes a fan light main body and a plurality of the aforementioned fan blade structures.
- the plurality of fan blade structures are collapsibly or unfoldably disposed on the fan light main body.
- the fan light includes three fan blade structures, and the orthographic projections of adjacent fan blade structures on the horizontal plane do not overlap with each other.
- the side of the second side of the previous fan blade structure close to the end of the fan blade is in contact with the first side of the latter fan blade structure.
- the sides of the sides close to the root of the fan blade are arranged oppositely, and a gap is formed between the previous fan blade structure and the following fan blade structure.
- this application improves the overall intensity and blowing effect of the fan lamp by improving the shape and curvature radius of the fan blade structure.
- Figure 1 is a schematic structural diagram of a fan blade structure in accordance with a preferred embodiment of the present application.
- Figure 2 is a schematic structural diagram of the fan blade structure shown in Figure 1 at a first angle.
- Figure 3 is a schematic structural diagram of the fan blade structure shown in Figure 1 at a second angle.
- Figure 4 is a schematic structural diagram of the fan blade structure shown in Figure 1 at a third angle.
- Figure 5 is a schematic structural diagram of the fan blade structure shown in Figure 1 at a fourth angle.
- Figure 6 is a schematic structural diagram of a fan light according to a preferred embodiment of the present application.
- FIG. 7 is an exploded view of the fan light shown in FIG. 6 .
- FIG. 8 is a perspective view of the structure of the rotating disk and fan blades on the fan light shown in FIG. 6 .
- FIG. 9 is a top view of the structure of the rotating disk and fan blades on the fan lamp shown in FIG. 6 .
- FIG. 10 is a partial enlarged view of the circled portion in FIG. 8 .
- FIG 11 is a schematic structural diagram of the chassis in Figure 7 from a first perspective.
- Figure 12 is a schematic structural diagram of the mask in Figure 7.
- FIG. 13 is a partial enlarged view of circle A in FIG. 12 .
- Figure 14 is a cross-sectional view of the chassis and mask in Figure 7 after assembly.
- FIG. 15 is a partial enlarged view of circle B in FIG. 14 .
- FIG 16 is a schematic structural diagram of the chassis, drive module and light source module in Figure 14 after assembly.
- Figure 17 is a schematic structural diagram of the cover plate in Figure 14.
- Figure 18 is a cross-sectional view of the cover plate and chassis in Figure 14 after assembly.
- Figure 19 is a schematic diagram of the protective cover shown in Figure 14 after being removed from the assembled temperature sensor, driving component and turntable.
- Figure 20 is a schematic structural diagram of the chassis in Figure 12 from a second perspective.
- FIG. 21 is a schematic structural diagram of the reinforcement part in FIG. 20 from a first perspective.
- Fig. 22 is a schematic structural diagram of the reinforcing portion in Fig. 20 from a second perspective.
- 100-Fan blade structure 1-Fan blade body, 1a-Fan blade end, 1b-Fan blade root, 11-First side, 111-First arc segment, 112-Fourth arc segment, 113-Second arc Segment, 114-third arc segment, 12-second side, 121-fifth arc segment, 122-eleventh arc segment, 123-sixth arc segment, 124-seventh arc segment, 125-eighth arc segment , 126-ninth arc segment, 127-tenth arc segment, 13-third side, 131-twelfth arc segment, 132-thirteenth arc segment, 14-guide part, A-first dotted line, B -The second dotted line, C-the third dotted line, 15-acute angle structure, 16-first reinforcement rib, 2-connection structure, 21-rotating part, 22-guide part, 17-second reinforcement rib;
- FIGS. 1 to 5 are the fan blade structure 100 of the present application.
- the fan blade structure 100 can be used in products such as electric fans and fan lamps.
- the fan blade structure 100 can be used in hair drying products such as electric fans and fan lamps.
- a component used to promote the flow of air It can rotate around its own axis of rotation at high speed to promote the flow of surrounding air, thereby achieving a blowing effect.
- the embodiments of the present application mainly improve the shape of the fan blade structure 100. Compared with the traditional fan blade structure, the shape of the fan blade structure 100 is improved.
- the fan blade structure 100 in the embodiment has better blowing effect and structural strength.
- the fan blade structure 100 includes a fan blade body 1, and the fan blade body 1 includes a first edge 11 located on the windward side. , the second side 12 located on the leeward side and the third side 13 connected between the first side 11 and the second side 12.
- the first side 11, the second side 12 and the third side 13 are all curved sides.
- the end of the fan blade body 1 close to the third side 13 is defined as the blade end 1a, and the end of the fan blade main body 1 away from the third side 13 is defined as the fan blade root 1b.
- the third side 13 Connected between the first side 11 and the second side 12 and provided at the fan blade end 1a, the fan blade body 1 also includes a flow guide portion 14 connected between the first side 11 and the second side 12, and the third One side 11 , the second side 12 and the third side 13 are connected seamlessly to jointly surround the outer peripheral edge of the flow guide portion 14 .
- the first side 11 and the second side 12 are respectively located on both sides of the blade structure 100 in the width direction, and the air guide 14 is connected between the first side 11 and the second side 12 .
- the first side 11 is arranged in the shape of an inner concave arc
- the second side 12 and the third side 13 are both arranged in the shape of an outer convex arc.
- the first side 11 and the second side 12 each protrude toward the leeward side as a whole. , so that both ends of the fan blade structure 100 in the length direction are located on the front side, and the middle area is relatively located on the rear side.
- the heights of the first side 11 and the second side 12 in the horizontal direction gradually increase from the blade root 1b toward the blade end 1a, and the height of the second side 12 in the horizontal direction is lower than that of the blade end 1a.
- the height of one side 11 in the horizontal direction allows the air guide 14 to smoothly curve and extend downward from the first side 11 to the second side 12 , so that the overall fan blade structure 100 is high on the windward side and low on the leeward side. Structural form.
- the airflow enters the air guide part 14 from the first side 11 , and after being guided by the air guide part 14 , flows out of the fan blade structure 100 through the second side 12 , thereby changing the air flow.
- the direction improves the driving effect, thereby improving the blowing effect of the fan blade structure 100.
- the first side 11 gradually extends smoothly and obliquely upward from the blade root 1 b toward the blade end 1 a, that is, the two ends of the first side 11 along its length direction are not on the same horizontal plane.
- the structural design of the second side 12 is the same as that of the first side 11 .
- the height of the entire fan blade root 1b is lower than the height of the fan blade end 1a.
- the direction of the gas flow can be effectively improved, thereby achieving a better blowing effect.
- the adjacent fan blade structures 100 are arranged in a staggered manner and do not overlap with each other when viewed from above.
- the orthographic projections of the adjacent fan blade structures 100 on the horizontal plane are different from each other. overlapping.
- the side of the second side 12 of the previous fan blade structure 100 close to the blade end 1a is opposite to the side of the first side 11 of the following fan blade structure 100 close to the blade root 1b, that is, the previous fan blade
- the blade end 1a of the structure 100 is located in front of the blade root 1b of the adjacent subsequent blade structure 100, and there is a gap between the two, so that the blade structure 100 can freely telescope and rotate, and there is It is beneficial to the miniaturization of the fan light 200 product.
- the highest point of the fan blade structure 100 is located at an end of the first side 11 close to the blade end 1a, and the lowest point of the fan blade structure 100 is located at an end of the second side 12 close to the fan blade root 1b.
- the distance between the highest point of the fan blade structure 100 and the fan blade root 1b accounts for 50% to 75% of the total length of the fan blade structure 100, preferably two-thirds.
- the height of the highest point of the fan blade structure 100 relative to the horizontal plane where the fan blade root 1b is located ranges from 45 mm to 115 mm, preferably 90 mm.
- the horizontal plane where the lowest point of the fan blade structure 100 is located is flush with the horizontal plane where the fan blade root 1b is located. In this way, the riding effect of the fan blade structure 100 can be improved, thereby increasing the air output.
- the linear velocity of the fan blade root 1b is larger, and the linear velocity of the fan blade end 1a is smaller.
- the fan blade main body 1 is gradually widened from the fan blade root 1b to the fan blade end 1a.
- the strength and stability of the entire fan blade main body 1 can be improved, so that the fan blade main body 1 can withstand heavy loads.
- the large centrifugal force does not cause deformation or damage, ensuring the normal use of the fan blade structure 100 .
- more air can be caused to generate a greater flow speed along with the fan blade body 1 , thereby increasing the wind power of the fan blade structure 100 .
- the width of the fan blade body 1 can also be set to a constant value in the direction from the fan blade root 1b to the fan blade end 1a, that is, the distance from the first side 11 to the second side 12 remains unchanged. .
- the first side 11 has a first end close to the fan blade root 1b and a second end connected to the third side 13.
- the curvature radius of the first side 11 first decreases from the first end to the second end.
- the radius of curvature of the second side 12 shows a regular change trend of first increasing and then decreasing, so that the second side 12 maintains a curved shape.
- the third side 13 has the function of guiding air flow, which can reduce the resistance of the fan blade structure 100 to the air flow, thereby reducing energy consumption and noise.
- the third side 13 has a third end connected to the first side 11 and a fourth end connected to the second side 12 , wherein the radius of curvature of the third side 13 gradually increases from the third end to the fourth end.
- the changing trend of the curvature radius of the first side 11 and the third side 13 enables the fan blade structure 100 to reduce the airflow impact it receives during operation, thereby improving its overall strength.
- connection between the third side 13 and the second side 12 forms an acute angle structure 15.
- it can reduce the mass of the fan blade end 1a, which is beneficial to the stability of the fan blade main body 1 during high-speed rotation.
- the eddy current at the blade end 1a can be dispersed through the acute-angle structure 15, which is beneficial to noise reduction.
- the specific angle of the acute-angle structure 15 can be set according to actual needs, and is not subject to excessive restrictions.
- the first side 11 is formed by a first arc segment extending from the fan blade root 1b toward the third side 13. 111.
- the fourth arc segment 112, the second arc segment 113 and the third arc segment 114 are composed of, wherein the curvature radius of the first side 11 gradually decreases from the first arc segment 111 to the second arc segment 113, and decreases from the second arc segment 111 to the second arc segment 113.
- the arc section 113 to the third arc section 114 gradually increase, and the curvature radius of the first side 11 is between 55 mm and 200 mm.
- the radius of curvature of the first side 11 ranges from 62.2 mm to 174.8 mm.
- the second arc segment 113 has the smallest radius of curvature, which is 62.1 mm.
- the first arc segment 111 has the largest radius of curvature, which is 174.8 mm.
- the radius of curvature of the arc segment 114 is greater than the radius of curvature of the fourth arc segment 112 , and the radius of curvature of the third arc segment 114 is 132.2 mm, and the radius of curvature of the fourth arc segment 112 is 110.0 mm.
- the second side 12 consists of a fifth arc segment 121, an eleventh arc segment 122, a sixth arc segment 123, a seventh arc segment 124, an eighth arc segment 125, and a third arc segment extending from the blade root 1b toward the blade end 1a. It consists of nine arc segments 126 and a tenth arc segment 127.
- the curvature radius of the second side 12 gradually increases from the fifth arc segment 121 to the sixth arc segment 123, and gradually decreases from the sixth arc segment 123 to the seventh arc segment 124. is small, then gradually increases from the eighth arc segment 125 to the ninth arc segment 126, and gradually decreases from the ninth arc segment to the tenth arc segment 127.
- the radius of curvature of the second side 12 is greater than the radius of curvature of the first side 11, and the radius of curvature of the second side 12 is between 55 mm and 200 mm.
- the radius of curvature of the second side 12 is the smallest, which is 59.8 mm.
- the ninth arc Segment 126 has the largest radius of curvature, 261.0 mm.
- the third side 13 is composed of a continuous twelfth arc segment 131 and a thirteenth arc segment 132.
- the twelfth arc segment 131 is connected to the first side 11, the thirteenth arc segment 132 is connected to the second side 12, and the third side 13 is connected to the second side 12.
- the radius of curvature of the twelve arc segments 131 is smaller than the radius of curvature of the thirteenth arc segment 132 .
- the radius of curvature of the third side 13 is between 80 mm and 400 mm.
- the radius of curvature of the twelfth arc segment 131 is 83.75 mm
- the radius of curvature of the thirteenth arc segment 132 is 383.31 mm.
- the riding effect of the fan blade structure 100 is improved, thereby increasing the air output.
- the air guide 14 in the width direction of the air guide 14 , includes a first cross section and a second cross section provided from the blade root 1 b to the fan blade end 1 a. and the third cross-section (corresponding to the cross-sections at the first dotted line A, the second dotted line B and the third dotted line C respectively), that is, the first cross-section, the second cross-section and the third cross-section are all along the direction of the flow guide 14 its cross-section across its width. Viewed as a whole, the transverse curvature radius of the cross-section of the air guide portion 14 gradually decreases from the first side 11 toward the second side 12 .
- the transverse curvature of the air guide portion 14 gradually decreases from the first side 11 toward the second side 12 . Increase it, so you can get a good driving effect.
- the longitudinal curvature radius of the air guide portion 14 first gradually decreases from the blade root 1b toward the fan blade end 1a, then slightly increases, then slightly decreases, and then gradually increases.
- the longitudinal curvature radius of the air guide portion 14 extends from the fan blade root 1b to the fan blade end 1a. Toward the fan blade end 1a, it first gradually increases and then slightly decreases, then slightly increases and then gradually decreases, which is equivalent to first gradually increasing and then gradually decreasing, and the process of slight decrease and slight increase can be ignored.
- the longitudinal direction of the flow guide portion 14 is its length direction, and the transverse direction is its width direction.
- the fan blade structure 100 can be used in the fan light 200 product to obtain a better blowing effect; on the other hand, the overall strength of the fan blade structure 100 can also be improved.
- the fan blade structure 100 also includes a connecting structure 2.
- the connecting structure 2 is fixedly connected to the side of the fan blade root 1b away from the fan blade end 1a.
- the fan blade main body 1 passes through the connecting structure 2.
- the connection structure 2 is provided between the first side 11 and the second side 12 and protrudes from the fan blade root 1 b to facilitate its connection with the fan light main body 201 .
- the connecting structure 2 and the flow guide 14 are assembled and matched to form a whole body, In other embodiments, it can also be made using an integrated molding process.
- the thickness of the fan blade body 1 gradually decreases from the fan blade root 1b to the fan blade end 1a. That is, the fan blade root 1b is thicker and the fan blade end 1a is thinner.
- the overall thickness is a gradual transition, which can enhance the fan blade structure.
- the overall strength and stability of the fan blade structure 100 ensure that the fan blade structure 100 will not deform or bend when rotating at high speed, thus ensuring the normal use of the fan blade structure 100.
- the thickness of the first side 11 and the second side 12 gradually decreases from the blade root 1b toward the blade end 1a to form a gradually curved structure, and in the width direction of the air guide 14, the thickness of the first side 11 is less than
- the thickness of the air guide part 14 makes the blown wind area wider and softer, making people feel more comfortable, thereby achieving a good wind cutting effect.
- the fan blade structure 100 is also provided with a first reinforcing rib 16 and a second reinforcing rib 17 .
- the first reinforcing rib 16 is provided at the air guide part. 14 and extends from the fan blade root 1b toward the fan blade end 1a, and the width of the first reinforcing rib 16 gradually decreases to form a fishbone-like structure.
- the first reinforcing rib 16 is provided in the middle area in the width direction of the air guide 14.
- the specific location and cross-sectional shape of the first reinforcing rib 16 can be further limited according to specific needs, which is not covered in this application. limited.
- the second reinforcing rib 17 is provided at the fan blade root 1b.
- the two ends of the second reinforcing rib 17 are respectively connected to the connecting structure 2 and the fan blade root 1b to enhance the connection strength between the two.
- the number of the second reinforcing ribs 17 is multiple, and they are arranged in an annular shape at equal intervals between the connecting structure 2 and the fan blade root 1b.
- the specific number of the second reinforcing ribs 17 can be based on the actual structure of the fan blade structure 100. Size setting is not limited in this application.
- the present application also discloses a fan light 200, which includes a fan light main body 201 and a plurality of fan blade structures 100.
- the plurality of fan blade structures 100 can be folded or deployed on the fan light.
- Subject 201 By providing the fan blade structure 100, the overall strength and blowing effect of the fan light 200 can be improved.
- connection structure 2 of the fan blade structure 100 includes a rotating part 21.
- the fan light main body 201 is provided with a turntable 30.
- the turntable Mounting parts 32 are provided at corresponding intervals on the blade 30, and the rotating part 21 is connected to the mounting part 32 using fasteners.
- the fan blade structure 100 and the turntable 30 can be relative to each other through the cooperation between the rotating part 21 and the mounting part 32.
- the fan blade structures 100 are arranged on the turntable 30 in a staggered manner, which can make full use of the limited space on the turntable 30, thereby facilitating the miniaturization of the fan light 200 product.
- the fan blade structure 100 when the fan blade structure 100 is in the folded state, from the perspective of an observer, it can be ensured that the fan blade structure 100 can be blocked by the turntable 30 , thereby improving the overall aesthetics of the fan light 200 .
- the mounting part 32 is a groove
- the rotating part 21 is a protrusion
- the fastener is a screw or bolt, or the like.
- the mounting part 32 may be replaced by a protrusion
- the rotating part 21 may be a groove. It can be understood that the number of the mounting portions 32 corresponds to the number of the fan blade structures 100 one-to-one.
- the turntable 30 is provided with a plurality of guide grooves 321 at intervals, and the guide grooves 321 are opposite to the mounting portion 32 It is arranged close to the central axis of the fan light body 201.
- the connection structure 2 of the fan blade structure 100 also includes a guide portion 22, which is correspondingly received in the guide groove 321. That is, the plurality of fan blade structures 100 are rotatably spaced on the turntable 30, and the guide portion 22 can be positioned relative to the turntable 30.
- the guide groove 321 slides, that is, the guide part 22 can slide from one end of the guide groove 321 to the other end, from The unfolding and folding actions of the fan blade structure 100 are completed.
- the guide portion 22 can be a guide column, a guide pin, a guide shaft or other structures that can achieve the same guide function.
- the arrangement of multiple guide grooves 321 can achieve synchronous expansion or synchronous collapse of multiple fan blade structures 100. action. It can be understood that the number of guide grooves 321 corresponds to the number of fan blade structures 100 one-to-one. Preferably, the number of the fan blade structures 100 is three. When the three fan blade structures 100 are all folded, the side of the first side 11 of the previous fan blade structure 100 close to the fan blade root 1b is in contact with the following fan blade.
- the side of the second side 12 of the structure 100 close to the blade end 1a is arranged oppositely, and a gap is formed between the previous blade structure 100 and the following blade structure 100, so that there is a gap between the three blade structures 100. Do not overlap with each other.
- the guide groove 321 also has the function of limiting the rotation angle of the fan blade structure 100 relative to the fan light body 201, so that the fan blade structure 100 can meet the requirements of the unfolded state or the folded state respectively.
- the guide groove 321 is an arc-shaped groove.
- the setting of the turntable 30 can not only realize the installation of multiple fan blade structures 100, but also enable the multiple fan blade structures 100 to complete synchronous unfolding or synchronous closing actions. It can also limit the rotation angle of the fan blade structure 100, thereby ensuring that the fan Normal operation of lamp 200.
- the fan light main body 201 also includes a lighting component, a driving component 31 connected to the turntable 30, and a suspension component.
- the lighting assembly includes a chassis 40, a light source module 41 integrated on the chassis 40, a drive module 42 electrically connected to the light source module 41, and a mask 43 fixedly connected to the chassis 40.
- the chassis 40 and the mask 43 together form a space for housing the light source module 41 and
- the receiving cavity of the driving module 42 and the mask 43 are configured to emit the emitted light of the light source module 41 from the mask 43 to achieve a lighting effect.
- the driving module 42 is preferably integrated on the chassis 40.
- the driving module 42 can also be arranged on the fan blade structure 100 or the suspension assembly according to the actual situation, as long as the driving module 42 can realize the effect of the lighting assembly and the fan blade structure. A driving effect of 100 is enough.
- the driving member 31 is configured to drive the turntable 30 to rotate, so as to drive the fan blade structure 100 to open or collapse relative to the turntable 30 .
- the suspension assembly includes a ceiling assembly 50 and a suspension rod 51 . One end of the suspension rod 51 is connected to the driving member 31 , and the other end is connected to the ceiling assembly 50 .
- the lighting assembly is arranged below the turntable 30. The lighting assembly is connected to the driving member 31, and the suspension rod 51 is connected to the driving member 31, so that the lighting assembly can be stably suspended on the roof or other installation surface.
- the cross section of the fan light 200 of the present application is circular, so the mask 43 , the chassis 40 and the turntable 30 are also circular.
- the chassis 40 includes a body part 401 and a protruding part 402 surrounding the outer peripheral edge of the body part 401.
- a positioning part 403 is provided on the inner wall of the protruding part 402, and the mask 43 is correspondingly provided with a matching part that matches the positioning part 403. 431, the matching part 431 is configured to cooperate with the positioning part 403, so that the mask 43 and the chassis 40 are fixedly connected.
- the positioning portion 403 is configured as a convex rib protruding toward the center of the chassis 40 , and the convex ribs 403 are evenly distributed on the inner side wall of the protruding portion 402 , and the fitting portion 431 is configured from the outer side wall of the mask 43 toward the mask 43
- the center position of the base plate is recessed, whereby the ribs 403 protrude into the fitting portion 431 to fix the chassis 40 and the mask 43 .
- Such an arrangement can simplify the assembly of the mask 43 and the chassis 40, making the installation of the fan light 200 more convenient.
- the fitting portion 431 is provided around the edge of the mask 43 .
- the mask 43 includes a first side wall 4310 , a second side wall 4311 opposite to the first side wall 4310 and a second side wall connected to the first side wall 4311 .
- the connecting wall 4312 of the wall 4310 and the second side wall 4311, and the matching portion 431 are formed by the first side wall 4310 and the connecting wall 4312.
- the first side wall 4310 is received in the receiving cavity and abuts against the upper surface of the protruding rib 403 .
- the protruding rib 403 extends into the fitting portion 431 and abuts against the connecting wall 4312 .
- the second side wall 4311 abuts against the protruding portion 402 , such an arrangement can reduce the gap between the mask 43 and the chassis 40, which not only makes the chassis 40 and the mask 43 difficult to disassemble after installation, but also prevents mosquitoes from entering the receiving cavity.
- the chassis 40 is also provided with a contact portion 404, which protrudes toward the mask 43 and is used to contact the inner side wall of the connecting wall 4312.
- the connecting wall 4312 is pressed in the inner and outer directions. That is to say, by utilizing the staggered ribs 403 and the abutting portions 404, when the chassis 40 and the mask 43 are assembled, the ribs 403 and the abutting portions 404 can squeeze the connecting wall 4312 in the inner and outer directions, further ensuring that The mask 43 is not easy to fall off from the chassis 40, and the chassis 40 and the mask 43 are easily assembled on the basis of extrusion and fixation, and are not easy to disassemble after assembly.
- connection form between the positioning part 403 and the matching part 431 can be designed as a non-detachable connection, that is, the positioning part 403 and the matching part 431 are used to make the chassis 40 It is fixedly connected to the mask 43, which not only ensures that the gap between the mask 43 and the chassis 40 is smaller, but also ensures the stability of the connection between the various components in the lighting assembly, which will not be affected by human or environmental reasons.
- the connection stability between the mask 43 and the chassis 40 also protects the structure inside the receiving cavity to prevent pollutants such as dust and mosquitoes from entering the receiving cavity, destroying the luminous efficiency of the light source module 41, damaging the lighting components, and affecting the fan light 200 service life.
- a receiving groove 405 for placing the drive module 42 is formed in a recessed middle position of the chassis 40 toward the turntable 30 , and the receiving groove 405 is connected with the receiving cavity.
- the light source module 41 is arranged in a ring shape, and the light source module 41 surrounds the receiving groove 405 and is closely fixed to the chassis 40; the light source module 41 includes a ring-shaped light source plate 410 and LED light sources 411 evenly distributed on the light source plate 410. Such an arrangement not only effectively improves the space utilization in the receiving cavity, but also prevents the driving module 42 from blocking the light source module 41 .
- the drive module 42 includes a circuit board 420 and a cover 421 for protecting the circuit board 420.
- the entire circuit board 420 is placed in the receiving slot 405 and is fixedly connected to the chassis 40.
- Multiple functional components are integrated on the circuit board 420. Used to adjust the brightness and temperature of lighting components.
- the cover 421 is assembled and fixed with the inner wall of the receiving groove 405 to cover and protect the circuit board 420 .
- the fixing method of the cover 421 and the inner wall of the receiving groove 405 is a snap connection, but it should not be limited to this, as long as the cover 421 can be detached from the chassis 40 .
- the driving module 42 also includes several wires.
- a first rack 4210 is protrudingly provided on the side of the cover 421 facing the circuit board 420 .
- a second rack 4210 is provided at the center of the chassis 40 .
- Rack 4210' when the cover plate 421 and the chassis 40 are snap-fastened, the first rack 4210 and the second rack 4210' are arranged opposite to each other up and down, and are formed between the first rack 4210 and the second rack 4210'.
- There is a clamping space 4211 and the wires are clamped in the clamping space 4211 to prevent the wires from being pulled during assembly or use.
- the first rack 4210 in this application is arranged in an annular shape and is located at the center of the cover 421, and the second rack 4210' is also arranged in an annular shape and is located at the center of the chassis 40, so that multiple wires can Centrally stored and stuck between the first rack 4210 and the second rack 4210' to prevent the wires from being pulled. It is also easy to install.
- a flame retardant pad 44 is provided between the chassis 40 and the circuit board 420 to prevent the drive module 42 from overheating. Both sides of the flame retardant pad 44 are fixedly connected to the chassis 40 and the circuit board 420 respectively to prevent the circuit board from overheating. 420 spontaneous combustion due to excessive temperature during work.
- the flame-retardant pad 44 does not need to be provided between the chassis 40 and the circuit board 420. That is, whether the flame-retardant pad 44 is provided or not can be determined according to the specific material of the chassis 40.
- the driving part 31 is electrically connected to the driving module 42, so that the driving module 42 can provide power to the driving part 31 or the light source module 41 alone to start the lighting assembly or the fan blade structure 100 alone, or it can also provide power to the driving part 31 and the light source module at the same time. 41 provides power to activate the lighting assembly and the fan blade structure 100 simultaneously. In this way, the space utilization rate of the receiving cavity is more effectively improved, and the weight of the entire fan light 200 is also effectively reduced.
- the driving member 31 is a DC motor; of course, in other embodiments, the driving member 31 can also be an AC motor, as long as the driving member 31 can drive the turntable 30 to rotate, there is no limitation here.
- the driving member 31 in this application is preferably an external rotor motor.
- the external rotor motor includes a stator and a rotor surrounding the stator.
- the stator is fixedly connected to the chassis 40 and the rotor is fixedly connected to the turntable 30 .
- one end of the external rotor motor is connected to the suspension rod 51 , and the other end passes through the turntable 30 and the chassis 40 respectively, and is fixedly connected to the chassis 40 .
- the turntable 30 can rotate relative to the chassis 40 driven by the rotor, so that the fan blade structure 100 on the turntable 30 expands or collapses.
- the driving component 31 can also be a driving component with other structures, as long as it can drive the turntable 30 to rotate relative to the chassis 40, and there are no excessive restrictions here.
- the size of the external rotor motor in this application is smaller and thinner than the traditional motor. With this arrangement, when the entire fan light 200 is viewed upward at 45°, the overall fan light 200 looks more beautiful.
- the fan light 200 of the present application also includes a temperature sensor 33 for detecting the ambient temperature around the fan light 200.
- the temperature sensor 33 is fixedly connected to the driving member 31 and is located at one end of the driving member 31 close to the suspension rod 51.
- the temperature sensor 33 is a temperature sensor 33 with intelligent control function, which is used to detect the ambient temperature around the fan light 200 in real time, and to control the rotation speed of the fan blade structure 100 in real time according to the current ambient temperature, such as when the ambient temperature rises.
- the rotation speed of the fan blade structure 100 increases, and when the ambient temperature drops, the rotation speed of the fan blade structure 100 decreases, thereby achieving the purpose of intelligent control.
- the temperature sensor 33 is covered with a protective cover 34 .
- the protective cover 34 is provided in a hollow shape and is fixedly connected to the driving member 31 to protect the temperature sensor 33 .
- the temperature sensor 33 of the present application can also be disposed at other locations, as long as it can detect the temperature of the environment around the fan light 200 in real time, and there are no excessive restrictions here.
- a reinforcing part 45 is provided between the chassis 40 and the turntable 30 .
- the reinforcing part 45 is configured to fit the chassis 40 , and the reinforcing part 45 has a fixing part 452 that passes through the chassis 40 And fixedly connected with the chassis 40.
- the reinforcing part 45 is provided at the middle position of the chassis 40.
- the side of the chassis 40 close to the turntable 30 is provided with a first groove 406 with an opening direction facing the turntable 30.
- the reinforcing part 45 is placed In the first groove 406 and in contact with the side wall of the first groove 406 .
- a second groove 407 is recessed in the middle of the first groove 406, and a protruding portion 450 matching the second groove 407 is provided in the middle of the reinforcing portion 45.
- the protruding portion 450 is placed in the second groove 407.
- a perforation 451 is provided at the center of the protrusion 450, and a hole corresponding to the perforation 451 is provided on the chassis 40.
- the fixing portion 452 is torn and formed on the protruding portion 450.
- One part of the fixing portion 452 is located at the edge of the through hole 451, and the other part is located around the side of the through hole 451.
- a groove 453 opposite to the protruding part 450 is formed on the reinforcing part 45. That is to say, when the groove 453 is formed on the reinforcing part 45, the other side of the reinforcing part 45 protrudes outward simultaneously, that is, a protrusion is formed. Department 450.
- the driving member 31 passes through the through hole 451 and the through hole 408 in sequence, and abuts against the inner wall of the groove 453 .
- the reinforcing portion 45 can not only strengthen the structural strength of the chassis 40 to prevent the chassis 40 from being damaged when the fan blade structure 100 rotates, but can also be cooperatively connected with the chassis 40 and the turntable 30 to increase the heat dissipation between the chassis 40 and the turntable 30 area.
- protruding ribs 454 are formed on the side of the reinforcing part 45 facing the turntable 30 .
- the protruding ribs 454 are evenly distributed on the reinforcing part 45 and connect the outer wall surface of the groove 453 and the outer surface of the reinforcing part 45 .
- the edges are connected.
- the reinforcing part 45 is also provided with positioning holes 455, and the chassis 40 is correspondingly provided with positioning ribs 409 that match the positioning holes 455.
- the positioning ribs 409 extend into the positioning holes 455, which not only plays a pre-installation role , and can also limit the shaking between the reinforcing part 45 and the chassis 40.
- the purpose of setting the waist-shaped holes 4550 is mainly to prevent tolerances from occurring when the reinforcement part 45 and the chassis 40 are assembled, and thereby facilitate the connection between the reinforcement part 45 and the chassis 40 . room assembly.
- annular groove 40A is formed near the edge of the chassis 40.
- the opening of the annular groove 40A faces the turntable 30.
- a convex edge 301 is provided at the edge of the turntable 30.
- the annular groove 40A is formed between the body part 401 and the protruding part 402 of the chassis 40 , and the bottom of the annular groove 40A is configured to abut the second side wall 4311 of the mask 43 .
- the turntable 30 and the chassis 40 are stacked up and down.
- the driving parts 31 pass through the turntable 30 and the chassis 40 respectively, so that the rotor and the turntable 30 are fixedly connected, and the stator is fixedly connected to the chassis 40.
- the convex edge 301 is accommodated in the annular groove 40A. On the one hand, it can make the assembly between the turntable 30 and the chassis 40 more beautiful. On the other hand, it can also make the convex edge 301 rotate in the annular groove 40A. The error can be effectively controlled, and the chassis 40 can also be used to block the rotation of the turntable 30 .
- the turntable 30, the driving member 31 and the chassis 40 can be connected as one, that is, the fan blade structure 100 and the lighting assembly are connected as one, so that under the driving action of the driving member 31, the turntable 30 can rotate relative to the chassis 40. Then the fan blade structure 100 is driven to expand or collapse.
- suspension component can also be configured with reference to existing technical solutions, and the specific structure of the suspension component is not limited.
- the fan blade structure 100 of the present application mainly makes improvements in shape and curvature radius, the test results of two samples will be used in the following description to illustrate the blowing effect of the fan blade structure 100 of the present application.
- sample 1 and sample 2 Two identical fan lamp 200 products with the rotation speed as the only variable are regarded as sample 1 and sample 2.
- the rotation speed of sample 1 is 250 rpm and the rotation speed of sample 2 is 260 rpm.
- Multiple measurements are defined. point, when sample 1 and sample 2 are started, test various performance data of both, such as test voltage, input power and energy efficiency value, etc. The test results are as shown in the table 1 shown. By testing the wind speed at different measurement points, the blowing effects of Sample 1 and Sample 2 are compared. The test results are shown in Table 2 and Table 3 respectively.
- the measured wind speeds are also different at different test points. Specifically, overall, the wind speed at the test point (including the front, back, left and right sides of the test point) first has a positive correlation and then a negative correlation with the distance from the test point to the central axis of the fan light 200 . In addition, at different ring radii, the direction of the maximum wind speed at the test point changes irregularly, which may be related to factors such as air flow in the actual test environment.
- the average wind speeds of sample 1 and sample 2 both reach the maximum value, which are 182.60m/min and 182.52m/min respectively.
- the air volume passing through the ring reaches the maximum value for both sample 1 and sample 2, which are 25.61m3/min and 24.97m3/min respectively.
- the average wind speed of sample 1 and the air volume passing through the ring are slightly higher than that of sample 2.
- the average wind speed of the fan light 200 and the air volume passing through the ring increase with the increase of the ring radius.
- the fan light 200 The average wind speed of the fan light 200 decreases as the ring radius increases, and the air volume of the fan light 200 passing through the ring first increases and then decreases as the ring radius increases.
- no wind speed is measured at the test point for either sample 1 or sample 2.
- the average wind speed of sample 2 is higher than the average wind speed of sample 1. This is related to the fact that the rotation speed of sample 2 is higher than the rotation speed of sample 1. Moreover, the air flow in the actual environment has less influence at this time.
- the fan light 200 product of the present application can achieve a wide range of blowing, and can be used in workshops, warehouses and other places that occupy a large area and need to be cooled.
- this application improves the overall strength and blowing effect of the fan light 200 by improving the shape and curvature radius of the fan blade structure 100 .
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Abstract
本申请提供了一种扇叶结构及风扇灯,扇叶结构包括扇叶主体(1),扇叶主体包括位于受风侧的第一边(11)、位于背风侧的第二边(12)以及连接于第一边和第二边之间的第三边(13),第一边、第二边及第三边均为曲边,定义扇叶主体靠近第三边的一端为扇叶端部(1a),扇叶主体远离第三边的一端为扇叶根部(1b),第一边具有靠近扇叶根部的第一端以及与第三边相连的第二端,第一边的曲率半径自第一端至第二端先减小后增大;第二边的曲率半径大于第一边的曲率半径;第三边具有与第一边相连的第三端以及与第二边相连的第四端,第三边的曲率半径自第三端至第四端逐渐增大,以在第三边与第二边的连接处形成锐角结构(15)。相较于现有技术,本申请可以提高扇叶结构的吹风效果。
Description
本申请要求了申请日为2022年4月13日,申请号为202210382927.0,发明名称为“扇叶结构及风扇灯”的中国专利申请的优先权,以及申请日为2022年4月13日,申请号为202220842543.8,发明名称为“扇叶结构及风扇灯”的中国专利申请的优先权,其全部内容通过引用结合在本申请中。
本申请涉及风扇灯技术领域,尤其涉及一种扇叶结构及风扇灯。
随着人们生活水平的日益提高,灯具的种类也日益繁多,其中,风扇灯因其具有照明和风扇的双重功能而得到越来越广泛的应用。
然而,市面上的风扇灯主要应用平直形扇叶进行鼓风,在风扇灯旋转时,平直形扇叶无法较好地搅动空气,导致风力不足,且平直形扇叶在受到空气冲击时容易变形和弯折,从而影响扇叶和风扇灯的使用寿命。
有鉴于此,确有必要提供一种改进的扇叶结构及风扇灯,以解决上述问题。
发明内容
本申请的目的在于提供一种扇叶结构及风扇灯,以提高吹风效果。
为实现上述目的,本申请提供了一种扇叶结构,包括扇叶主体,所述扇叶主体包括位于受风侧的第一边、位于背风侧的第二边以及连接于所述第一边和第二边之间的第三边,所述第一边、第二边及第三边均为曲边,定义所述扇叶主体靠近所述第三边的一端为扇叶端部,所述扇叶主体远离所述第三边的一端为扇叶根部,所述第一边具有靠近所述扇叶根部的第一端以及与所述第三边相连的第二端,所述第一边的曲率半径自所述第一端至所述第二端先减小后增大,且所述第一边的曲率半径位于55mm~200mm之间;所述第二边的曲率半径大于所述第一边的曲率半径,且所述第二边的曲率半径位于55mm~300mm之间;所述第三边具有与所述第一边相连的第三端以及与所述第二边相连的第四端,所述第三边的曲率半径自所述第三端至所述第四端逐渐增大,以在所述第三边与所述第二边的连接处形成锐角结构,且所述第三边的曲率半径位于80mm~400mm之间。
作为本申请的进一步改进,所述扇叶结构还包括导流部,所述第一边、所述第二边和所述第三边围设形成所述导流部的外周边缘,所述导流部的横向曲率自所述第一边朝向所述第二边逐渐增大;所述导流部的纵向曲率自所述扇叶根部朝向所述扇叶端部先逐渐增大后逐渐减小。
作为本申请的进一步改进,所述第一边和所述第二边均自所述扇叶根部至所述扇叶端部逐渐向上平滑倾斜延伸,且所述第一边在水平方向上的高度高于所述第二边在水平方向上的高度。
作为本申请的进一步改进,所述扇叶结构的最高点位于所述第一边靠近所述扇叶端部的一端;所述扇叶结构的最低点位于所述第二边靠近所述扇叶根部的一端。
作为本申请的进一步改进,所述扇叶结构的最高点与所述扇叶根部之间的距离占所述扇叶结构总长度的50%~75%。
作为本申请的进一步改进,所述扇叶结构的最高点相对于所述扇叶根部所在的水平面的高度范围为45mm~115mm。
作为本申请的进一步改进,所述扇叶结构的最低点所在的水平面与所述扇叶根部所在的水平面齐平。
作为本申请的进一步改进,所述扇叶主体的厚度自所述扇叶根部至所述扇叶端部逐渐减小。
作为本申请的进一步改进,所述扇叶结构还包括第一加强筋和第二加强筋,所述第一加强筋设于所述扇叶主体的长度方向上,并自所述扇叶根部朝向所述扇叶端部延伸;所述第二加强筋设于所述扇叶根部。
作为本申请的进一步改进,所述扇叶主体包括导流部,所述导流部连接于所述第一边与所述第二边之间,且所述导流部自所述第一边至所述第二边的方向向下弯曲延伸,在所述导流部的宽度方向上,所述第一边的厚度小于所述导流部的厚度。
为实现上述目的,本申请还提供了一种风扇灯,包括风扇灯主体和多个前述扇叶结构,多个所述扇叶结构可收合或展开地设置于所述风扇灯主体上。
作为本申请的进一步改进,所述风扇灯包括三个所述扇叶结构,相邻所述扇叶结构在水平面上的正投影互不重叠。
作为本申请的进一步改进,当三个扇叶结构均收合于所述风扇灯时,前一个扇叶结构的第二边的靠近扇叶端部的一侧与后一个扇叶结构的第一边的靠近扇叶根部的一侧相对设置,且所述前一个扇叶结构与所述后一个扇叶结构之间形成有间隙。
本申请的有益效果是:本申请通过对扇叶结构的形状和曲率半径进行改进,提高了风扇灯的整体强度以及吹风效果。
下面结合附图,通过对本申请的具体实施方式详细描述,将使本申请的技术方案及其它有益效果显而易见。
图1是符合本申请优选实施例的扇叶结构的结构示意图。
图2是图1所示扇叶结构在第一角度下的结构示意图。
图3是图1所示扇叶结构在第二角度下的结构示意图。
图4是图1所示扇叶结构在第三角度下的结构示意图。
图5是图1所示扇叶结构在第四角度下的结构示意图。
图6是符合本申请优选实施例的风扇灯的结构示意图。
图7是图6所示风扇灯的分解图。
图8是图6所示风扇灯上转盘与扇叶结构的立体图。
图9是图6所示风扇灯上转盘与扇叶结构的俯视图。
图10是图8中圆圈部分的局部放大图。
图11是图7中底盘的第一视角的结构示意图。
图12是图7中面罩的结构示意图。
图13是图12中圆圈A处的局部放大图。
图14是图7中底盘和面罩组装后的剖面图。
图15是图14中圆圈B处的局部放大图。
图16是图14中底盘、驱动模块以及光源模块组装后的结构示意图。
图17是图14中盖板的结构示意图。
图18是图14中盖板和底盘组装后的剖视图。
图19是图14中保护罩从组装后的温度传感器、驱动件以及转盘上拆除后的示意图。
图20是图12中底盘的第二视角的结构示意图。
图21是图20中加强部的第一视角的结构示意图。
图22是图20中加强部的第二视角的结构示意图。
附图标记:
100-扇叶结构、1-扇叶主体、1a-扇叶端部、1b-扇叶根部、11-第一边、111-第一弧段、112-第四弧段、113-第二弧段、114-第三弧段、12-第二边、121-第五弧段、122-第十一弧段、123-第六弧段、124-第七弧段、125-第八弧段、126-第九弧段、127-第十弧段、13-第三边、131-第十二弧段、132-第十三弧段、14-导流部、A-第一虚线、B-第二虚线、C-第三虚线、15-锐角结构、16-第一加强筋、2-连接结构、21-旋转部、22-导向部、17-第二加强筋;
200-风扇灯、201-风扇灯主体、30-转盘、301-凸边、31-驱动件、32-安装部、321-导向槽、33-温度传感器、34-保护罩、40-底盘、40A-环形槽、401-本体部、402-凸出部、403-定位部、404-抵接部、405-收容槽、406-第一槽、407-第二槽、408-通孔、409-定位筋、41-光源模块、410-光源板、411-光源、42-驱动模块、420-电路板、421-盖板、4210-第一齿条、4210'-第二齿条、4211-卡设空间、43-面罩、431-配合部、4310-第一侧壁、4311-第二侧壁、4312-连接壁、44-阻燃垫、45-加强部、450-突出部、451-穿孔、452-固定部、453-凹槽、454-凸肋、455-定位孔、4550-腰型孔、50-吸顶组件、51-吊杆。
为使本申请实施例的目的、技术方案和优点更加清楚,下面将结合本申请实施例的附图,对本申请实施例的技术方案进行清楚、完整地描述。
在本申请的描述中,需要理解的是,术语“上方”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申请和简化描述,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申请的限制。另外,当一个元件被认为是“连接”另一个元件,它可以是直接连接到另一个元件或者可能同时存在居中元件。除非另外定义,本申请使用的“第一”、“第二”以及类似的词语并不表示任何顺序、数量或者重要性,而只是用来区分不同的组成部分。
请参阅图1至图5所示,为本申请的扇叶结构100,该扇叶结构100可以应用于电风扇、风扇灯等产品中,扇叶结构100为电风扇、风扇灯等吹风产品中用于推动空气流动的部件,其可以围绕自身旋转轴线高速旋转,以推动周围空气的流动,从而实现吹风效果。为了进一步提升扇叶结构100的整体性能,如增大风力和提升结构强度等,本申请实施例主要针对扇叶结构100的形状进行了改进,相比于传统的扇叶结构而言,本申请实施例中的扇叶结构100具有更佳的吹风效果和结构强度。
本申请将以风扇灯为例,详细说明风扇灯的结构及其扇叶结构100、工作原理及过程。当然,本申请的扇叶结构100也可以应用于其他的吹风产品中,于此不作过多限制。
定义扇叶结构100的受风侧为内侧,背风侧为外侧,那么,在本申请实施例中,扇叶结构100包括扇叶主体1,扇叶主体1包括位于受风侧的第一边11、位于背风侧的第二边12以及连接于第一边11和第二边12之间的第三边13,第一边11、第二边12及第三边13均为曲边。当扇叶结构100旋转时,位于内侧的第一边11先与气流接触,然后气流从第一边11流至位于外侧的第二边12,直至脱离扇叶结构100。
请参阅图1和图2所示,定义扇叶主体1靠近第三边13的一端为扇叶端部1a,扇叶主体1远离第三边13的一端为扇叶根部1b,第三边13连接于第一边11和第二边12之间,并设于扇叶端部1a,扇叶主体1还包括连接于第一边11与第二边12之间的导流部14,且第一边11、第二边12和第三边13之间无痕相接,以共同围设构成导流部14的外周边缘。换言之,第一边11和第二边12分别位于扇叶结构100的宽度方向的两侧,导流部14连接于第一边11和第二边12之间。
优选地,第一边11呈内凹弧形状设置,第二边12和第三边13均呈外凸弧形状设置,换言之,第一边11和第二边12各自整体上朝向背风侧凸出,使得扇叶结构100在其长度方向上的两端位于前侧,中部区域则相对位于后侧,如此设置,当扇叶结构100高速旋转时,扇叶结构100能够承受来自气流的猛烈冲击,而且不易发生变形或弯折,从而提高扇叶结构100的整体强度和稳定性,进而提升扇叶结构100的使用寿命。
从整体上看,第一边11和第二边12在水平方向上的高度均自扇叶根部1b朝向扇叶端部1a逐渐增大,且第二边12在水平方向上的高度低于第一边11在水平方向上的高度,使得导流部14自第一边11至第二边12的方向向下平滑弯曲延伸,从而使扇叶结构100整体呈现受风侧高而背风侧低的结构形态。如此,在扇叶结构100高速旋转时,气流由第一边11进入导流部14,在受到导流部14的导流作用后,经由第二边12流出扇叶结构100,从而改变了气流方向,提升了兜风效果,进而提升了扇叶结构100的吹风效果。
进一步地,第一边11自扇叶根部1b朝向扇叶端部1a逐渐向上平滑倾斜延伸,即第一边11沿其长度方向的两端不在同一水平面上。第二边12的结构设计与第一边11的结构设计相同。如此使得整个扇叶根部1b的高度低于扇叶端部1a的高度,一方面,可以有效改善气体流动的方向,从而达到较佳的吹风效果。另一方面,在扇叶结构100的收合过程中,相邻扇叶结构100之间呈交错排列,且俯视时互不交叠,即相邻扇叶结构100在水平面上的正投影互不重叠。前一个扇叶结构100的第二边12的靠近扇叶端部1a的一侧与后一个扇叶结构100的第一边11的靠近扇叶根部1b的一侧相对设置,即前一扇叶结构100的扇叶端部1a位于与其相邻的后一扇叶结构100的扇叶根部1b的前边内侧,且两者之间留有间隙,使得扇叶结构100可以自由伸缩旋转,而且还有利于风扇灯200产品的小型化。
扇叶结构100的最高点位于第一边11靠近扇叶端部1a的一端,扇叶结构100的最低点位于第二边12靠近扇叶根部1b的一端。其中,扇叶结构100的最高点与扇叶根部1b之间的距离占扇叶结构100总长度的50%~75%,优选为三分之二。扇叶结构100的最高点相对于扇叶根部1b所在的水平面的高度范围为45mm~115mm,优选为90mm。另外,扇叶结构100的最低点所在的水平面与扇叶根部1b所在的水平面齐平。如此可以提升扇叶结构100的兜风效果,从而提高出风量。
除此以外,扇叶根部1b的线速度较大,扇叶端部1a的线速度较小。在一些实施例中,将扇叶主体1从扇叶根部1b至扇叶端部1a逐渐加宽,一方面,可以提升整个扇叶主体1的强度和稳定性,使扇叶主体1能够承受较大的离心作用而不发生变形或损坏,保证了扇叶结构100的正常使用。另一方面,在一定程度上可以使更多的空气随着扇叶主体1产生更大的流动速度,从而可以提升扇叶结构100的风力。在其他实施例中,还可以在扇叶根部1b至扇叶端部1a的方向上,将扇叶主体1的宽度设置为定值,即第一边11到第二边12的距离保持不变。
请参阅图2所示,第一边11具有靠近扇叶根部1b的第一端以及与第三边13相连的第二端,第一边11的曲率半径自第一端至第二端先减小后增大,第二边12的曲率半径呈现先增大后减小的规律性变化趋势,使得第二边12保持弯曲形状。第三边13具有对气流的导流功能,可以降低扇叶结构100对于气流的阻力,从而降低能耗以及噪声。第三边13具有与第一边11相连的第三端以及与第二边12相连的第四端,其中,第三边13的曲率半径自第三端至第四端逐渐增大。总之,第一边11和第三边13的曲率半径变化趋势,使得扇叶结构100能够降低其在运行过程中所受到的气流冲击作用,进而提升其整体强度。
另外,第三边13与第二边12的连接处形成锐角结构15,一方面,可以减少扇叶端部1a的质量,有利于扇叶主体1在高速旋转时的稳定性,另一方面,可以通过锐角结构15离散扇叶端部1a的涡流,有利于降噪。锐角结构15的具体角度可以根据实际需求设定,于此不作过多限制。
请参阅图4所示,具体地,第一边11由自扇叶根部1b朝向第三边13延伸的第一弧段
111、第四弧段112、第二弧段113和第三弧段114构成,其中,第一边11的曲率半径自第一弧段111至第二弧段113逐渐减小,并自第二弧段113至第三弧段114逐渐增大,且第一边11的曲率半径位于55mm~200mm之间。优选地,第一边11的曲率半径范围为62.2mm~174.8mm,其中,第二弧段113的曲率半径最小,为62.1mm,第一弧段111的曲率半径最大,为174.8mm,第三弧段114的曲率半径大于第四弧段112的曲率半径,且第三弧段114的曲率半径为132.2mm,第四弧段112的曲率半径为110.0mm。
第二边12由自扇叶根部1b朝向扇叶端部1a延伸的第五弧段121、第十一弧段122、第六弧段123、第七弧段124、第八弧段125、第九弧段126和第十弧段127构成,第二边12的曲率半径自第五弧段121至第六弧段123逐渐增大,并自第六弧段123至第七弧段124逐渐减小,然后自第八弧段125至第九弧段126逐渐增大、自第九弧段至第十弧段127逐渐减小。第二边12的曲率半径大于第一边11的曲率半径,且第二边12的曲率半径位于55mm~200mm之间,优选地,第二边12的曲率半径最小,为59.8mm,第九弧段126的曲率半径最大,为261.0mm。
第三边13由连续的第十二弧段131和第十三弧段132构成,第十二弧段131与第一边11相连,第十三弧段132与第二边12相连,且第十二弧段131的曲率半径小于第十三弧段132的曲率半径。第三边13的曲率半径位于80mm~400mm之间,优选地,第十二弧段131的曲率半径为83.75mm,第十三弧段132的曲率半径为383.31mm。
通过对第一边11、第二边12及第三边13的曲率半径进行设置,使得扇叶结构100的兜风效果得到了提升,继而提高了出风量。
请参阅图5所示,本申请实施例中,在导流部14的宽度方向上,导流部14包括自扇叶根部1b至扇叶端部1a设置的第一横截面、第二横截面和第三横截面(分别对应第一虚线A、第二虚线B和第三虚线C处的截断面),即第一横截面、第二横截面和第三横截面均为导流部14沿其宽度方向的横截面。从整体上看,导流部14的横截面的横向曲率半径自第一边11朝向第二边12逐渐减小,换言之,导流部14的横向曲率自第一边11朝向第二边12逐渐增大,如此可以获得很好的兜风效果。导流部14的纵向曲率半径自扇叶根部1b朝向扇叶端部1a先逐渐减小后略微增大再略微减小再逐渐增大,换言之,导流部14的纵向曲率自扇叶根部1b朝向扇叶端部1a先逐渐增大后略微减小再略微增大再逐渐减小,相当于先逐渐增大后逐渐减小,可以忽略略微减小和略微增大的过程。其中,导流部14的纵向即为其长度方向,横向即为其宽度方向。如此,一方面,使得扇叶结构100应用在风扇灯200产品中,能够获得更好的吹风效果;另一方面,还可以提升扇叶结构100的整体强度。
请参阅图1与图2所示,扇叶结构100还包括连接结构2,该连接结构2固定连接于扇叶根部1b的远离扇叶端部1a的一侧,扇叶主体1通过连接结构2与风扇灯主体201连接。具体地,连接结构2设于第一边11和第二边12之间,并突出设置在扇叶根部1b,便于其与风扇灯主体201连接。在一些实施例中,连接结构2与导流部14组装配合形成一个整体,
在其他实施例中,也可以采用一体成型工艺制成。
扇叶主体1的厚度自扇叶根部1b至扇叶端部1a逐渐减小,即扇叶根部1b较厚,扇叶端部1a较薄,整体厚度呈渐变式过渡,如此可以增强扇叶结构100的整体强度和稳定性,进而保证扇叶结构100在高速旋转时不会发生变形、弯折,保证了扇叶结构100的正常使用。第一边11和第二边12的厚度均自扇叶根部1b朝向扇叶端部1a逐渐减小以形成渐变弯曲结构,且在导流部14的宽度方向上,第一边11的厚度小于导流部14的厚度,使得吹出的风面积更广、更加柔和,让人感受更加舒适,从而实现很好的切风效果。
请参阅图3所示,为了进一步提高扇叶结构100的整体强度,扇叶结构100上还设有第一加强筋16和第二加强筋17,其中,第一加强筋16设于导流部14上并自扇叶根部1b朝向扇叶端部1a延伸形成,且第一加强筋16的宽度逐渐缩小,形成类鱼刺状结构。优选地,第一加强筋16设于导流部14宽度方向的中间区域上,当然,第一加强筋16的具体设置位置及其横断面形状可以根据具体需求进一步限定,本申请对此不做限定。
第二加强筋17设于扇叶根部1b,第二加强筋17设的两端分别与连接结构2与扇叶根部1b相接,以加强两者之间的连接强度。可选地,第二加强筋17的数量为多个,且呈环状等间距排列在连接结构2与扇叶根部1b之间,第二加强筋17的具体数量可以根据扇叶结构100的实际尺寸设定,本申请对此不做限定。
请参阅图6至图22所示,本申请还揭示了一种风扇灯200,包括风扇灯主体201及多个扇叶结构100,多个扇叶结构100可收合或展开地设置于风扇灯主体201。通过设置扇叶结构100,可以提高风扇灯200的整体强度以及吹风效果。
请参阅图8至图10并结合图19所示,为了将扇叶结构100安装在转盘30上,扇叶结构100的连接结构2包括旋转部21,风扇灯主体201上设有转盘30,转盘30上相应间隔设置有安装部32,旋转部21利用紧固件连接在安装部32上,如此,扇叶结构100与转盘30之间可以通过旋转部21与安装部32之间的配合实现相对转动。本实施例中,扇叶结构100以相互交错排列的方式设置在转盘30上,能够充分利用转盘30上的有限空间,从而有利于风扇灯200产品的小型化。而且,在扇叶结构100处于收合状态时,从观察者的角度看,可以保证扇叶结构100能够被转盘30遮挡,从而提高风扇灯200整体的美观度。
在一些实施例中,安装部32为凹槽,旋转部21为凸起,紧固件为螺钉或螺栓等等。在其他实施例中,安装部32也可以替换为凸起,旋转部21则对应为凹槽。可以理解地,安装部32的数量与扇叶结构100的数量一一对应。
进一步地,为了使多个扇叶结构100相对于风扇灯主体201能够实现同步展开或同步收合动作,本实施例中,转盘30间隔设置有多个导向槽321,导向槽321相对安装部32靠近风扇灯主体201的中心轴线设置。扇叶结构100的连接结构2还包括导向部22,该导向部22对应收容在导向槽321中,即多个扇叶结构100可转动地间隔设置于转盘30上,且导向部22可以相对于导向槽321滑动,即导向部22可以从导向槽321的一端滑动至另一端,从
而完成扇叶结构100的展开和收合动作。
可选地,导向部22可以是导向柱、导向销、导向轴或其他可以实现同等导向功能的结构,多个导向槽321的设置,可以实现多个扇叶结构100的同步展开或同步收合动作。可以理解地,导向槽321的数量与扇叶结构100的数量一一对应。优选地,扇叶结构100的数量为三个,当三个扇叶结构100均收合时,前一个扇叶结构100的第一边11的靠近扇叶根部1b的一侧与后一个扇叶结构100的第二边12的靠近扇叶端部1a的一侧相对设置,且该前一个扇叶结构100与后一个扇叶结构100之间形成有间隙,使三个扇叶结构100之间互不交叠。
此外,导向槽321还具有限制扇叶结构100相对风扇灯主体201的转动角度的功能,从而使得扇叶结构100能够分别满足展开状态或收合状态的要求。优选地,导向槽321为弧形槽。
转盘30的设置,既可以实现对于多个扇叶结构100的安装,又可以使得多个扇叶结构100完成同步展开或同步收合动作,还能够限制扇叶结构100的转动角度,从而保证风扇灯200的正常运转。
风扇灯主体201还包括照明组件、与转盘30连接的驱动件31、以及悬挂组件。照明组件包括底盘40、集成于底盘40上的光源模块41、与光源模块41电性连接的驱动模块42以及与底盘40固定连接的面罩43,底盘40和面罩43共同形成供收容光源模块41和驱动模块42的收容腔,面罩43配置为将光源模块41的出射光自面罩43射出,以实现照明效果。本申请中,驱动模块42优选为集成在底盘40上,当然,也可以根据实际情况将驱动模块42设置在扇叶结构100或悬挂组件上,只要能够实现驱动模块42对照明组件和扇叶结构100的驱动作用即可。
驱动件31配置为驱动转盘30转动,以带动扇叶结构100相对于转盘30打开或收合。悬挂组件包括吸顶组件50和吊杆51,吊杆51的一端与驱动件31连接,另一端与吸顶组件50连接。照明组件设置在转盘30的下方,照明组件与驱动件31连接,且吊杆51与驱动件31连接,使得照明组件能够稳定地悬挂在屋顶或其他安装面上。
结合图7、图11以及图12所示,本申请的风扇灯200的横截面呈圆形设置,故其面罩43、底盘40以及转盘30均也呈圆形设置。底盘40包括本体部401和围设在本体部401外周边缘处的凸出部402,凸出部402的内侧壁上设有定位部403,面罩43对应设有与定位部403相配合的配合部431,配合部431配置为与定位部403相互配合,以使面罩43和底盘40固定连接。
优选地,定位部403配置为朝向底盘40的中心位置凸出的凸筋,且凸筋403均匀分布在凸出部402的内侧壁上,配合部431配置为自面罩43的外侧壁朝向面罩43的中心位置凹陷,以此通过凸筋403突伸入配合部431来固定底盘40和面罩43。如此设置,能够简化面罩43与底盘40的组装,使得风扇灯200安装更加方便。
如图12至图15所示,进一步地,配合部431环绕面罩43的边缘设置,面罩43包括第一侧壁4310、与第一侧壁4310相对设置的第二侧壁4311以及连接第一侧壁4310和第二侧壁4311的连接壁4312,配合部431由第一侧壁4310和连接壁4312共同形成。第一侧壁4310收容在收容腔内并与凸筋403的上表面相抵接,凸筋403伸入配合部431内并与连接壁4312相抵接,第二侧壁4311与凸出部402相抵接,如此设置,能够减小面罩43与底盘40之间的间隙,不但使得底盘40和面罩43安装后不容易拆卸,而且还能够防止蚊虫进入收容腔内。
进一步地,底盘40上还设有抵接部404,该抵接部404朝向面罩43突伸,用于与连接壁4312的内侧壁相抵接,凸筋403和抵接部404错位设置,并在内外方向上挤压连接壁4312。也就是说,利用错位设置的凸筋403和抵接部404,能够在组装底盘40和面罩43时,使凸筋403和抵接部404在内外方向上对连接壁4312进行挤压,进一步保证面罩43不易从底盘40上脱落,同时在挤压固定的基础上方便组装底盘40和面罩43,且组装好后还不易拆卸。
当然,为了能够使底盘40与面罩43之间连接地更加紧密,上述定位部403与配合部431之间的连接形式可设计成不可拆卸式连接,即利用定位部403和配合部431使得底盘40和面罩43固定连接,这样不但更加保证了面罩43与底盘40之间的间隙达到更小,而且还保证了照明组件中各零部件之间的连接稳定性,不会受人为或环境原因而影响面罩43和底盘40之间的连接稳定性,同时也保护了收容腔内部的结构,以防灰尘和蚊虫等污染物进入收容腔,破坏光源模块41的发光效率,损坏照明组件,影响风扇灯200的使用寿命。
结合图7、图11、图16以及图17所示,底盘40的中间位置处朝向靠近转盘30的方向凹陷形成有用于放置驱动模块42的收容槽405,且该收容槽405与收容腔贯通。光源模块41呈环形设置,且光源模块41环绕收容槽405并与底盘40紧贴固定;光源模块41包括呈环形状的光源板410和均匀分布在光源板410上的LED光源411。如此设置,不仅有效提高了收容腔内的空间利用率,而且驱动模块42不会对光源模块41造成遮挡。
具体地,驱动模块42包括电路板420和用于保护电路板420的盖板421,整个电路板420放置于收容槽405内并与底盘40固定连接,电路板420上集成有多个功能部件,用于调节照明组件的亮度及温度等。盖板421与收容槽405的内侧壁组装固定,以遮盖和保护电路板420。本申请中,盖板421与收容槽405内侧壁的固定方式为卡扣式连接,但不应以此为限,只要能够实现盖板421从底盘40上拆卸下来的目的即可。
进一步地,结合图18所示,驱动模块42还包括若干根电线,盖板421的朝向电路板420一侧突设有第一齿条4210,对应地,底盘40的中心位置处设置有第二齿条4210’,当盖板421与底盘40卡扣固定后,第一齿条4210与第二齿条4210’上下相对设置,并在第一齿条4210和第二齿条4210’之间形成卡设空间4211,电线卡设在该卡设空间4211内,以此来防止电线组装或使用时产生拉扯。较佳地,本申请中的第一齿条4210呈环形设置并位于盖板421的中央位置处,第二齿条4210’也呈环形设置并位于底盘40的中央位置处,从而多根电线能够集中收容并卡设在第一齿条4210和第二齿条4210’之间,以防电线拉扯,
同时还方便安装。
进一步地,在底盘40和电路板420之间还设有用于防止驱动模块42过热的阻燃垫44,该阻燃垫44的两侧分别与底盘40和电路板420固定连接,以防电路板420因工作过程中温度过高而导致自燃。当然,若底盘40的材料中已经含有了阻燃材料,那么底盘40和电路板420之间也可以不设置阻燃垫44,即阻燃垫44的设置与否可以根据底盘40的具体材质而定。
驱动件31与驱动模块42电性连接,从而该驱动模块42能够单独为驱动件31或光源模块41提供电源,以单独启动照明组件或扇叶结构100,也能够同时为驱动件31和光源模块41提供电源,以同时启动照明组件和扇叶结构100。如此,更加有效提高了收容腔的空间利用率,同时也有效减轻了整个风扇灯200的重量。本实施例中,驱动件31为直流电机;当然,在其他实施例中,驱动件31也可以为交流电机,只要能够实现驱动件31驱动转盘30旋转即可,此处不作限制。
结合图7和图19所示,本申请中的驱动件31优选为外转子电机,该外转子电机包括定子和环绕定子的转子,定子与底盘40固定连接,转子与转盘30固定连接。具体地,外转子电机的一端与吊杆51连接、另一端分别穿过转盘30和底盘40,并与底盘40固定连接。如此设置,转盘30能够在转子的带动下相对于底盘40做旋转运动,以使转盘30上的扇叶结构100展开或收合。当然,驱动件31也可以是其他结构的驱动部件,只要能够驱动转盘30相对于底盘40做旋转运动即可,于此不作过多限制。进一步,本申请中的外转子电机尺寸相比于传统的电机,尺寸较小,且较为轻薄,如此设置,当45°仰视整个风扇灯200时,风扇灯200整体看起来更加美观。
本申请的风扇灯200还包括用于检测风扇灯200周围环境温度的温度传感器33,该温度传感器33与驱动件31固定连接,并位于驱动件31的靠近吊杆51的一端。优选地,温度传感器33为具有智能控制作用的温度传感器33,用于实时检测风扇灯200周围的环境温度,并根据当前的环境温度实时的控制扇叶结构100的转速,如:环境温度上升时扇叶结构100的转速增大,环境温度下降时扇叶结构100的转速降低,以此来达到智慧控制的目的。
温度传感器33上套设有保护罩34,该保护罩34呈镂空状设置并与驱动件31固定连接,以起到保护温度传感器33的作用。当然,本申请的温度传感器33也可以设置在其他位置,只要能够实时检测到风扇灯200周围环境的温度即可,于此不作过多限制。
结合图7和图20所示,底盘40与转盘30之间设有加强部45,加强部45配置为与底盘40贴合,且加强部45具有固定部452,该固定部452穿过底盘40并与底盘40固定连接。
如图20至图22所示,具体地,加强部45设于底盘40的中间位置处,底盘40的靠近转盘30的一侧设有开口方向朝向转盘30的第一槽406,加强部45放置在第一槽406内并与第一槽406的侧壁贴合。第一槽406的中间位置处凹陷形成有第二槽407,加强部45的中间位置处对应设有与第二槽407相配合的突出部450,突出部450贴合放置在第二槽407内;突出部450的中心位置处开设有穿孔451,底盘40上对应开设有与穿孔451相对应的
通孔408,固定部452在突出部450上撕裂成型,该固定部452一部分设于穿孔451的边缘处,另一部分围设在穿孔451的旁侧,这些固定部452均朝向底盘40突伸,以穿过通孔408并与底盘40固定连接。
加强部45上形成有与突出部450相背的凹槽453,也就是说,在加强部45上挤压形成凹槽453时,加强部45的另一侧同步向外突出,即形成了突出部450。驱动件31依次穿过穿孔451和通孔408,并与凹槽453的内侧壁相抵接。如此设置,加强部45不但能够加强底盘40的结构强度,以防扇叶结构100旋转时破坏底盘40,而且还能够与底盘40和转盘30配合连接,增大底盘40和转盘30之间的散热面积。
为了进一步加强底盘40的结构强度,加强部45的朝向转盘30一侧形成有凸肋454,该凸肋454均匀分布在加强部45上,且将凹槽453的外壁面和加强部45的外边缘相连。此外,加强部45上还设有定位孔455,底盘40上对应设有与定位孔455相配合的定位筋409,组装时定位筋409伸入定位孔455内,不仅能够起到预安装的作用,而且还能限制加强部45与底盘40之间的晃动。定位孔455设置有多个,主要包括圆孔和腰型孔4550,其中腰型孔4550的设置目的主要是为了防止加强部45与底盘40组装时出现公差,继而易于加强部45与底盘40之间的组装。
结合图7、图14、图19以及图20所示,底盘40靠近边缘处形成有环形槽40A,该环形槽40A的开口朝向转盘30,转盘30的边缘处设有凸边301,底盘40与转盘30组装完成后,凸边301收容在环形槽40A内。具体地,该环形槽40A形成在底盘40的本体部401与凸出部402之间,环形槽40A的底部配置为与面罩43的第二侧壁4311相抵接。本申请中,转盘30与底盘40呈上下叠放设置,驱动件31分别穿过转盘30和底盘40,并使得转子与转盘30固定连接、定子与底盘40固定连接,转盘30的边缘处设有一圈凸边301,该凸边301收容在环形槽40A内,一方面能够使得转盘30和底盘40之间的组装更加美观,另一方面也能够使得凸边301在环形槽40A内转动,对旋转误差能够进行有效的控制,同时还能利用底盘40来遮挡转盘30的旋转。如此,可将转盘30、驱动件31以及底盘40连接为一体,即扇叶结构100与照明组件连接为一体,从而在驱动件31的驱动作用下,转盘30能够相对于底盘40做旋转运动,进而带动扇叶结构100展开或收合。
需要说明的是,悬挂组件除了上述结构以外,还可以参考现有的技术方案进行其他设置,不对悬挂组件的具体结构进行限制。
因本申请的扇叶结构100主要在形状和曲率半径上作出了改进,故以下说明书部分将选用两个样品的测试结果来对本申请的扇叶结构100的吹风效果进行说明。
试验结果
将转速作为唯一变量的两个相同风扇灯200产品作为样品1和样品2,本申请实施例中,样品1的转速为250转/分钟,样品2的转速为260转/分钟,定义多个测量点,样品1和样品2启动时,测试两者的各种性能数据,如试验电压、输入功率和能效值等,测试结果如表
1所示。通过测试不同测量点处的风速,比较样品1和样品2的吹风效果,测试结果分别如表2和表3所示。
表1样品1和样品2在运转时测试的各种性能数据
从表1可以看出,在其他条件一致的情况下,由于样品1的转速低于样品2的转速,则样品1的总风量略低于样品2的总风量,这说明,总风量与风扇灯200的转速呈正比例关系。然而,样品1的能效值却略高于样品2的能效值,这说明,相较于样品2而言,样品1更为节能。
表2样品1在不同测量点处风速的测试结果
表3样品2在不同测量点处的风速测量结果
定义测试点靠近风扇灯200的一侧为测试点的前侧,以风扇灯200的中心点为圆心、测试点与风扇灯200的中心轴线之间的距离为圆环半径,此时形成一个圆环。
从表2和表3可以看出,在不同的测试点处,测试到的风速也不同。具体地,整体上看,测试点处(包括测试点的前、后、左和右侧)的风速均与测试点处到风扇灯200的中心轴线的距离先呈正相关后呈负相关的趋势。另外,在不同圆环半径处,测试点处最大风速所在的方向呈现无规律的变化,这可能和实际测试环境的空气流动等因素有关。
进一步地,在圆环半径为200米时,样品1和样品2的平均风速均达到最大值,分别为182.60m/min和182.52m/min。在圆环半径为360米时,样品1和样品2通过圆环的风量均达到最大值,分别为25.61m3/min和24.97m3/min。这说明,风扇灯200在测试点距离风扇灯200的中心轴线的距离为200米处的吹风效果最好,而风扇灯200在测试点距离风扇灯200的中心轴线的距离为360米处通过圆环的风量最高。可以看出,虽然样品1的转速低于样品2的转速,但是,样品1和样品2的平均风速以及通过圆环的风量均相差较小,也就是说,本申请的扇叶结构100在转速发生变化的情况下,因对其曲率半径进行了改进,使得其吹风效果更佳,不会因转速变化而产生较大的影响。
从整体上看,在圆环半径处于40米处,样品1的平均风速以及通过圆环的风量略高于样品2。当圆环半径处于40~200米之间时,风扇灯200的平均风速和通过圆环的风量随着圆环半径的增加而增加,当圆环半径处于200~1000米之间时,风扇灯200的平均风速随着圆环半径的增加而降低,风扇灯200的通过圆环的风量随着圆环半径的增加先增加后降低。当圆环半径超过1000米后,无论是样品1还是样品2,在测试点处均未测到风速,这是因为流动的空气在流动过程中会不断受到阻力,使得风力逐渐被削弱,最终归零。在圆环半径为920米处,样品2的平均风速高于样品1的平均风速,这和样品2的转速高于样品1的转速有关,而且,此时实际环境中空气的流动影响较小。
如前所述,本申请的风扇灯200产品可以实现大范围吹风,可以应用在车间、仓库等占地大且需要降温的场所中。
综上所述,本申请通过对扇叶结构100的形状和曲率半径进行改进,提高了风扇灯200的整体强度以及吹风效果。
以上仅为本申请的优选实施例而已,并不用于限制本申请,对于本领域的技术人员来说,本申请可以有各种更改和变化。凡在本申请的精神和原则之内,所作的任何修改、等同替换、改进等,均应包含在本申请的保护范围之内。
Claims (13)
- 一种扇叶结构,包括扇叶主体(1),所述扇叶主体(1)包括位于受风侧的第一边(11)、位于背风侧的第二边(12)以及连接于所述第一边(11)和第二边(12)之间的第三边(13),所述第一边(11)、第二边(12)及第三边(13)均为曲边,定义所述扇叶主体(1)靠近所述第三边(13)的一端为扇叶端部(1a),所述扇叶主体(1)远离所述第三边(13)的一端为扇叶根部(1b),其中,所述第一边(11)具有靠近所述扇叶根部(1b)的第一端以及与所述第三边(13)相连的第二端,所述第一边(11)的曲率半径自所述第一端至所述第二端先减小后增大,且所述第一边(11)的曲率半径位于55mm~200mm之间;所述第二边(12)的曲率半径大于所述第一边(11)的曲率半径,且所述第二边(12)的曲率半径位于55mm~300mm之间;所述第三边(13)具有与所述第一边(11)相连的第三端以及与所述第二边(12)相连的第四端,所述第三边(13)的曲率半径自所述第三端至所述第四端逐渐增大,以在所述第三边(13)与所述第二边(12)的连接处形成锐角结构(15),且所述第三边(13)的曲率半径位于80mm~400mm之间。
- 根据权利要求1所述的扇叶结构,其中,所述扇叶结构(100)还包括导流部(14),所述第一边(11)、所述第二边(12)和所述第三边(13)围设形成所述导流部(14)的外周边缘,所述导流部(14)的横向曲率自所述第一边(11)朝向所述第二边(12)逐渐增大;所述导流部(14)的纵向曲率自所述扇叶根部(1b)朝向所述扇叶端部(1a)先逐渐增大后逐渐减小。
- 根据权利要求1所述的扇叶结构,其中,所述第一边(11)和所述第二边(12)均自所述扇叶根部(1b)至所述扇叶端部(1a)逐渐向上平滑倾斜延伸,且所述第一边(11)在水平方向上的高度高于所述第二边(12)在水平方向上的高度。
- 根据权利要求1所述的扇叶结构,其中,所述扇叶结构(100)的最高点位于所述第一边(11)靠近所述扇叶端部(1a)的一端;所述扇叶结构(100)的最低点位于所述第二边(12)靠近所述扇叶根部(1b)的一端。
- 根据权利要求4所述的扇叶结构,其中,所述扇叶结构(100)的最高点与所述扇叶根部(1b)之间的距离占所述扇叶结构(100)总长度的50%~75%。
- 根据权利要求4所述的扇叶结构,其中,所述扇叶结构(100)的最高点相对于所述扇叶根部(1b)所在的水平面的高度范围为45mm~115mm。
- 根据权利要求4所述的扇叶结构,其中,所述扇叶结构(100)的最低点所在的水平面与所述扇叶根部(1b)所在的水平面齐平。
- 根据权利要求1所述的扇叶结构,其中,所述扇叶主体(1)的厚度自所述扇叶根部(1b)至所述扇叶端部(1a)逐渐减小。
- 根据权利要求1所述的扇叶结构,其中,所述扇叶结构(100)还包括第一加强筋(16) 和第二加强筋(17),所述第一加强筋(16)设于所述扇叶主体(1)的长度方向上,并自所述扇叶根部(1b)朝向所述扇叶端部(1a)延伸;所述第二加强筋(17)设于所述扇叶根部(1b)。
- 根据权利要求1所述的扇叶结构,其中,所述扇叶主体(1)包括导流部(14),所述导流部(14)连接于所述第一边(11)与所述第二边(12)之间,且所述导流部(14)自所述第一边(11)至所述第二边(12)的方向向下弯曲延伸,在所述导流部(14)的宽度方向上,所述第一边(11)的厚度小于所述导流部(14)的厚度。
- 一种风扇灯,其中,包括风扇灯主体(201)和多个如权利要求1~10中任意一项所述的扇叶结构(100),多个所述扇叶结构(100)可收合或展开地设置于所述风扇灯主体(201)上。
- 根据权利要求11所述的风扇灯,其中,所述风扇灯(200)包括三个所述扇叶结构(100),相邻所述扇叶结构(100)在水平面上的正投影互不重叠。
- 根据权利要求12所述的风扇灯,其中,当三个所述扇叶结构(100)均收合于所述风扇灯(200)时,前一个扇叶结构(100)的第二边(12)的靠近扇叶端部(1a)的一侧与后一个扇叶结构(100)的第一边(11)的靠近扇叶根部(1b)的一侧相对设置,且所述前一个扇叶结构(100)与所述后一个扇叶结构(100)之间形成有间隙。
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| CN217206968U (zh) * | 2022-04-13 | 2022-08-16 | 欧普照明股份有限公司 | 扇叶结构及风扇灯 |
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| US20080008596A1 (en) * | 2004-07-21 | 2008-01-10 | Aynsley Richard M | Fan Blades |
| WO2015146013A1 (ja) * | 2014-03-25 | 2015-10-01 | パナソニックIpマネジメント株式会社 | 扇風機用のプロペラファン、扇風機 |
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