WO2020237485A1 - 风扇吊架及风扇装置 - Google Patents

风扇吊架及风扇装置 Download PDF

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Publication number
WO2020237485A1
WO2020237485A1 PCT/CN2019/088660 CN2019088660W WO2020237485A1 WO 2020237485 A1 WO2020237485 A1 WO 2020237485A1 CN 2019088660 W CN2019088660 W CN 2019088660W WO 2020237485 A1 WO2020237485 A1 WO 2020237485A1
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WO
WIPO (PCT)
Prior art keywords
perforation
semi
locking
open
sleeve
Prior art date
Application number
PCT/CN2019/088660
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English (en)
French (fr)
Inventor
萧家祥
叶建志
Original Assignee
威刚科技股份有限公司
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 威刚科技股份有限公司 filed Critical 威刚科技股份有限公司
Priority to PCT/CN2019/088660 priority Critical patent/WO2020237485A1/zh
Publication of WO2020237485A1 publication Critical patent/WO2020237485A1/zh

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    • 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
    • F04D29/60Mounting; Assembling; Disassembling

Definitions

  • the invention relates to a hanger and a fan device, in particular to a fan hanger and a fan device suitable for industrial ceiling fans.
  • a main purpose of the present invention is to improve at least one of the above-mentioned drawbacks of the prior art and provide a fan hanger.
  • Another main objective of the present invention is to improve at least one of the above-mentioned drawbacks of the prior art and provide a fan device.
  • the embodiment of the present invention discloses a fan hanger for fixing a fan body to a structure.
  • the fan hanger includes a supporting member, a sleeve and at least two locking components.
  • the supporting member is used to cooperate with a plurality of fasteners to be fixed to the structure.
  • the supporting member includes a main plate and two side plates. The two side plates are connected to the main plate. The two side plates face each other.
  • each side sheet body includes a closed perforation and a half open perforation, and each closed perforation forms a notch on one side of the side sheet body;
  • a sleeve It can be correspondingly arranged in the accommodating slot, a fixed shaft of the fan body passes through a channel of the sleeve, and the sleeve and the fan body are fixed to each other; at least two locking components are defined as a first locking component and a The second locking component, the first locking component passes through the closed perforation and is mutually locked with the sleeve; the second locking component passes through the semi-open perforation and is mutually locked with the sleeve, and the second locking component can pass through the two A gap enters the two semi-open perforations; wherein the diameter of each semi-open perforation in a longitudinal direction or a transverse direction is larger than the radial width of a first locking shaft of the first locking component; each closed
  • the opposite sides of the main sheet are defined as a first side and a second side respectively; wherein, the two side sheets are respectively defined as a first side sheet and a second side sheet ,
  • the first side panel is formed by extending the first side edge of the main panel, the semi-open perforation of the first side panel is defined as a first semi-open perforation, and the closed perforation of the first side panel is defined as a first A closed perforation, the first semi-open perforation and the first closed perforation are set through the first side panel;
  • the gap of the first side panel is defined as a first gap;
  • the first semi-open perforation is opposite to the first side panel
  • a first notch is formed on one side of the main sheet body, the first semi-open perforation can communicate with the outside through the first notch; the first semi-open perforation is located above the first closed perforation;
  • the second side sheet is formed by the main The second side of the sheet body extends outwards, the semi-open perfor
  • the gap of the second side panel is defined as a second gap.
  • the second semi-open perforation is on the side of the second side panel opposite to the side connected to the main panel.
  • a second notch is formed on the edge, and the second semi-open perforation can communicate with the outside through the second gap;
  • the second semi-open perforation is located above the second closed perforation;
  • the first semi-open perforation and the second semi-open perforation are located corresponding to each other Position, the first notch and the second notch are located at positions corresponding to each other, and the first closed perforation and the second closed perforation are located at corresponding positions;
  • the supporting member further includes two supporting arms, which are defined as a first The support arm and a second support arm.
  • the first support arm is formed by extending one side of the first side sheet or the main sheet body, and the second support arm is formed by the second side sheet or one of the main sheet bodies.
  • the side edges extend outward; two support arms are used to cooperate with a plurality of fasteners to fix the support member to the structure; wherein, the channel is used to provide a fixed shaft of the fan body through, and the sleeve has a plurality of Fixing holes; multiple fixing holes are used to communicate with multiple shaft fixing holes of the fixed shaft, and multiple fixing holes and multiple shaft fixing holes can cooperate with multiple shaft fixing components to fix the fixed shaft
  • the sleeve has two first through holes and two second through holes, the two first through holes are arranged to face each other, and the two second through holes are arranged to face each other; first The through hole is located above the second through hole; wherein, the first locking component includes a first locking shaft and a first nut, and the first locking shaft is used for simultaneously piercing the first semi-open through hole, two A first through hole
  • the fan hanger is adapted to be fixed to a fixed beam
  • the fan hanger further includes a holding assembly
  • the holding assembly includes an auxiliary fixing member and two clamping members
  • the auxiliary fixing member has a plurality of first auxiliary elongated holes and A plurality of second auxiliary elongated perforations, a plurality of first auxiliary elongated perforations are arranged adjacent to each other, and a plurality of second auxiliary elongated perforations are arranged adjacent to each other;
  • each clamping member includes a fixed The sheet body, the lower clamping sheet body, a connecting sheet body and an upper clamping sheet body, the lower clamping sheet body is formed by extending one side of the fixed sheet body, and the lower clamping sheet body is connected with the connecting sheet body ,
  • the connecting piece is connected to the upper holding piece opposite to the side connected with the lower holding piece, the upper holding piece, the connecting piece and the lower holding piece jointly form a holding groove, the holding groove Used to clamp the fixed beam;
  • the fan hanger further includes a plurality of auxiliary fixing parts, and each lower clamping piece has a plurality of auxiliary fixing holes, and the plurality of auxiliary fixing parts are used to lock each other with the plurality of auxiliary fixing holes.
  • the fixing piece can fix the fixed beam together with each upper clamping piece.
  • the fixing sheet body, the lower clamping sheet body, the connecting sheet body and the upper clamping sheet body of each clamping member are integrally formed, and the inner side of the bending part of the clamping member protrudes to form a plurality of reinforcing structures .
  • the lowest position of the first semi-open perforation is lower than the position of the first notch; the lowest position of the second semi-open perforation is lower than the position of the second notch; the first semi-open perforation and the first closed perforation are up and down in the longitudinal direction
  • the second half-open perforation and the second closed perforation are arranged up and down in the longitudinal direction; when the sleeve is fixed to the supporting member through the first locking component and the second locking component, and the sleeve is located in the accommodating groove
  • the first side plate and the second side plate are correspondingly located on the left and right sides of the sleeve, and the central axis of the passage of the sleeve is parallel to the longitudinal direction.
  • the embodiment of the present invention also discloses a fan device, which includes a fan body, a supporting member, a sleeve and at least two locking components.
  • the fan body includes a fixed shaft and a rotating unit.
  • the fixed shaft is connected with the rotating unit, and the rotating unit is connected with a plurality of fan blades.
  • a supporting member is used to cooperate with a plurality of fasteners to be fixed to the structure.
  • the supporting member It includes a main sheet body and two side sheets.
  • the two side sheets are connected to the main sheet.
  • the two side sheets are arranged facing each other, and the main sheet and the two side sheets together form a containing groove
  • Each side panel includes a closed perforation and a half-open perforation.
  • the closed perforation is formed with a gap on one side of the side panel; a sleeve can be correspondingly arranged in the accommodating groove, and the fixed shaft passes through a channel of the sleeve , And the sleeve and the fan body are fixed to each other; at least two locking components are defined as a first locking component and a second locking component, the first locking component is locked to the sleeve, and the first locking component can Enter the two semi-open perforations through the two gaps; the second locking component penetrates through the closed perforation and is mutually locked with the sleeve; wherein the diameter of each semi-open perforation in a longitudinal direction or a transverse direction is larger than that of the first The radial width of the locking shaft; the diameter of each closed perforation in the longitudinal direction or the transverse direction is larger than the radial width of the second locking shaft.
  • the opposite sides of the main sheet are defined as a first side and a second side respectively; wherein, the two side sheets are respectively defined as a first side sheet and a second side sheet ,
  • the first side panel is formed by extending the first side edge of the main panel, the semi-open perforation of the first side panel is defined as a first semi-open perforation, and the closed perforation of the first side panel is defined as a first A closed perforation, the first semi-open perforation and the first closed perforation are set through the first side panel;
  • the gap of the first side panel is defined as a first gap;
  • the first semi-open perforation is opposite to the first side panel
  • a first notch is formed on one side of the main sheet body, the first semi-open perforation can communicate with the outside through the first notch; the first semi-open perforation is located above the first closed perforation;
  • the second side sheet is formed by the main The second side of the sheet body extends outwards, the semi-open perfor
  • the gap of the second side panel is defined as a second gap.
  • the second semi-open perforation is on the side of the second side panel opposite to the side connected to the main panel.
  • a second notch is formed on the edge, and the second semi-open perforation can communicate with the outside through the second gap;
  • the second semi-open perforation is located above the second closed perforation;
  • the first semi-open perforation and the second semi-open perforation are located corresponding to each other Position, the first notch and the second notch are located at positions corresponding to each other, and the first closed perforation and the second closed perforation are located at corresponding positions;
  • the supporting member further includes two supporting arms, which are defined as a first The support arm and a second support arm.
  • the first support arm is formed by extending one side of the first side sheet or the main sheet body, and the second support arm is formed by the second side sheet or one of the main sheet bodies.
  • the side edges extend outward; two support arms are used to cooperate with a plurality of fasteners to fix the support member to the structure; wherein, the channel is used to provide a fixed shaft of the fan body through, and the sleeve has a plurality of Fixing holes; multiple fixing holes are used to communicate with multiple shaft fixing holes of the fixed shaft, and multiple fixing holes and multiple shaft fixing holes can cooperate with multiple shaft fixing components to fix the fixed shaft
  • the sleeve has two first through holes and two second through holes, the two first through holes are arranged to face each other, and the two second through holes are arranged to face each other; first The through hole is located above the second through hole; wherein, the first locking component includes a first locking shaft and a first nut, and the first locking shaft is used for simultaneously piercing the first semi-open through hole, two A first through hole
  • the fan hanger is suitable for being fixed to a fixed beam
  • the fan hanger further includes a holding component
  • the holding component includes an auxiliary fixing member and two clamping members.
  • the auxiliary fixing member has a plurality of first auxiliary elongated holes and a plurality of second auxiliary elongated holes, the plurality of first auxiliary elongated holes are arranged adjacent to each other, and the plurality of second auxiliary elongated holes are arranged adjacent to each other;
  • Two clamping members each clamping member includes a fixed sheet, a lower clamping sheet, a connecting sheet and an upper clamping sheet, the lower clamping sheet extends outward from one side of the fixed sheet Formed, the lower clamping piece body is connected to the connecting piece body, and the connecting piece body is connected to the upper clamping piece body opposite to the side connected with the lower clamping piece body, the upper clamping piece body, the connecting piece body and the lower clip
  • the holding plates jointly form a clamping groove for clamping the fixing beam; each fixing plate has a
  • the fan hanger further includes a plurality of auxiliary fixing parts, and each lower clamping piece has a plurality of auxiliary fixing holes, and the plurality of auxiliary fixing parts are used to lock each other with the plurality of auxiliary fixing holes.
  • the fixing piece can fix the fixed beam together with each upper clamping piece.
  • the fixing sheet body, the lower clamping sheet body, the connecting sheet body and the upper clamping sheet body of each clamping member are integrally formed, and the inner side of the bending part of the clamping member protrudes to form a plurality of reinforcing structures .
  • the lowest position of the first semi-open perforation is lower than the position of the first notch; the lowest position of the second semi-open perforation is lower than the position of the second notch; the first semi-open perforation and the first closed perforation are up and down in the longitudinal direction
  • the second half-open perforation and the second closed perforation are arranged up and down in the longitudinal direction; when the sleeve is fixed to the supporting member through the first locking component and the second locking component, and the sleeve is located in the accommodating groove
  • the first side plate and the second side plate are correspondingly located on the left and right sides of the sleeve, and the central axis of the passage of the sleeve is parallel to the longitudinal direction.
  • the fan hanger and fan device of the present invention are designed with the first notch, the second notch, the first semi-open perforation, and the second semi-open perforation to facilitate the installation of the fan body by the installer.
  • Fig. 1 is a schematic diagram of a fan hanger of the present invention fixed to a fixed beam.
  • Fig. 2 is a schematic diagram of the fan hanger of the present invention fixed to the fixed beam from another perspective.
  • Figure 3 is an exploded schematic view of the fan device of the present invention.
  • Figure 3 is also an exploded schematic view of the fan hanger of the present invention.
  • FIG. 4 is an exploded schematic view of the fan device of the present invention from another perspective;
  • FIG. 4 is also an exploded schematic view of the fan hanger of the present invention from another perspective.
  • Fig. 5 is a schematic diagram of partial components of the fan hanger of the present invention.
  • FIG. 6 is a side view of the fan hanger, a partial cross-section of the first locking component, and a partial cross-section of the second locking component of the present invention.
  • Fig. 7 is a schematic diagram of the fan body of the present invention slightly rotating relative to the supporting member.
  • FIG 8 and 9 are schematic diagrams of the operation of the fan main body of the present invention installed on the fan hanger.
  • Fig. 10 is a schematic diagram of partial components of the fan hanger of the present invention.
  • FIG. 11 is a side view of the fan hanger of the present invention fixed to the fixed beam;
  • FIG. 11 is a side view of the fan device of the present invention fixed to the fixed beam.
  • FIGS. 1 to 4 show schematic diagrams of the fan device and the fan hanger fixed on the fixed beam from two different perspectives.
  • FIGS. 3 and 4 show the fan of the invention.
  • the fan device of the present invention is particularly suitable for application as an industrial ceiling fan
  • the fan hanger of the present invention is particularly suitable for fixing an industrial ceiling fan to a fixed beam (for example, the H type shown in FIGS. 1 and 2 Steel beam).
  • the fan device A of the present invention includes: a fan main body 1 and a fan hanger 2.
  • the fan main body 1 is fixed to the fixed beam H by the fan hanger 2.
  • the fan main body 1 can also be directly fixed to the ceiling by the fan hanger 2.
  • the fan body 1 includes a fixed shaft 10 and a rotating unit 11.
  • the fixed shaft 10 is connected with the rotating unit 11, and the rotating unit 11 is connected with a plurality of fan blades (not shown).
  • the fixed shaft 10 referred to here is mainly used to fix the fan body 1 and the fan hanger 2 to each other.
  • the appearance and size of the fixed shaft 10 can be changed according to requirements, and are not limited to those shown in the figure.
  • the rotating unit 11 referred to here includes electronic and mechanical components such as motors for controlling the rotation of the fan blades.
  • the fan hanger 2 includes: a supporting member 20, two locking components, a sleeve 5 and a retaining component 6.
  • the two locking components are defined as a first locking component 3 and a second locking component 4 respectively.
  • the support member 20 is mainly used to fix the ceiling or related structures; in the embodiment where the fan hanger 2 has the holding assembly 6, the support member 20 is The components 6 are connected, and the holding component 6 is used to fix the fan hanger 2 to the fixed beam H as a whole.
  • the sleeve 5 is mainly used to fix the fan body 1 to each other, and the sleeve 5 is fixed to the supporting member 20 through the first locking assembly 3 and the second locking assembly 4.
  • the fan hanger 2 has a holding assembly 6 and the fan hanger 2 is fixed to an H-shaped steel beam (fixed beam H) as an example, but the fan hanger 2 is not limited to being fixed to a fixed beam. In different applications, the fan hanger 2 may not include the holding assembly 6, and the supporting member 20 may be directly fixed to a structure such as a ceiling.
  • H H-shaped steel beam
  • the supporting member 20 includes: a main sheet body 21, two side sheets and two supporting arms 24.
  • the two side panels are defined as a first side panel 22 and a second side panel 23 respectively.
  • the main sheet body 21, the first side sheet body 22, the second side sheet body 23 and the two support arms 24 may be made of a steel plate, that is, the main sheet body 21, the first side sheet The body 22, the second side sheet body 23 and the two support arms 24 may be integrally formed.
  • the main sheet body 21, the first side sheet body 22, the second side sheet body 23, and the two support arms 24 may also be independent components and connected to each other by welding or the like.
  • Each side panel has a half-open perforation and a closed perforation, the half-open perforation and the closed perforation are arranged through the side panel, and the half-open perforation forms a gap on one side of the side panel.
  • the opposite sides of the main sheet 21 are defined as a first side 21A and a second side 21B, respectively.
  • the first side piece 22 is formed by the first side 21A of the main piece 21 extending outward.
  • the semi-open perforation and the closed perforation of the first side sheet 22 are respectively defined as a first semi-open perforation 221 and a first closed perforation 222.
  • the first half open perforation 221 and the first closed perforation 222 penetrate the first side panel 22.
  • the gap formed by the first half-opening through hole 221 opposite to the side 221A of the first side panel 22 connected to the main panel 21 is defined as a first gap 223.
  • the first half of the open through hole 221 can communicate with the outside through the first gap 223.
  • the first half open perforation 221 is located above the first closed perforation 222.
  • the second side panel 23 is formed by the second side 21B of the main panel 21 extending outward. Among them, the two opposite sides of the main sheet body 21 extend in the same direction to form a first side sheet body 22 and a second side sheet body 23, and the main sheet body 21, the first side sheet body 22 and the second side sheet body 23 respectively.
  • the side sheet bodies 23 are collectively formed into a structure similar to a U shape.
  • the semi-open perforation and the closed perforation of the second side panel 23 are respectively defined as a second semi-open perforation 231 and a second closed perforation 232.
  • the second semi-open perforation 231 and the second closed perforation 232 are formed through the second side panel 23.
  • the gap formed by the second semi-open through hole 231 on the second side panel 23 opposite to the side 231A connected with the main panel 21 is defined as a second gap 233.
  • the second semi-open through hole 231 can communicate with the outside through the second gap 233.
  • the second semi-open through hole 231 is located above the second closed through hole 232.
  • the first side piece 22 and the second side piece 23 are disposed facing each other, and the first semi-open perforation 221 and the second semi-open perforation 231 are located at corresponding positions, the first notch 223 and the second notch 233 are located at positions corresponding to each other, the first closed perforation 222 and the second closed perforation 232 are located at corresponding positions, and the main sheet body 21, the first side sheet body 22, and the second side sheet body 23 together form a housing Slot SP1.
  • the first semi-open perforation 221 and the second semi-open perforation 231 have exactly the same size and appearance
  • the first closed perforation 222 and the second closed perforation 232 have exactly the same size and appearance
  • the first notch 223 and the second The two notches 233 have exactly the same size and appearance.
  • first semi-open perforation 221 and second semi-open perforation 231 can communicate with the outside through the corresponding first notch 223 and second notch 233, and the first locking component 3 can be At the same time, slide into the first semi-open through hole 221 and the second semi-open through hole 231 through the first notch 223 and the second notch 233.
  • first closed perforation 222 and the second closed perforation 232 are not connected with any gaps, the second locking component 4 can only penetrate the first closed perforation 222 (or the second closed perforation 232) first. Then penetrate the second closed perforation 232 (or the first closed perforation 222).
  • the two supporting arms 24 are respectively defined as a first supporting arm 24A and a second supporting arm 24B.
  • the first support arm 24A can be formed by extending outward from a top side 221B of the first side panel 22; in different applications, the first support arm 24A can also be formed from the top side of the main panel 21 outward. Extension formation.
  • the second support arm 24B can be formed by a top side 231B of the second side panel 23 extending outward; in different applications, the second support arm 24B can also be formed from the top side of the main panel 21 outward. Extension formation.
  • the first supporting arm 24A has a first abutting sheet 241A, and the first abutting sheet 241A has a plurality of first fixing holes 2411A.
  • the second supporting arm 24B has a second abutting sheet 241B, and the second abutting sheet 241B has a plurality of second fixing holes 2411B.
  • the plurality of first fixing holes 2411A and the plurality of second fixing holes 2411B are used to cooperate with the plurality of locking components S1 (as shown in FIG. 10), so that the supporting member 20 can hold the component 6 (or be fixed to the ceiling).
  • the appearance of the first support arm 24A and the second support arm 24B is similar to the Z-shape as an example, but the appearance and size of the first support arm 24A and the second support arm 24B are different Is limited.
  • the support member 20 may be formed by bending a single sheet of steel plate, and the support member 20 may be formed with multiple reinforcement structures 25 at each bend, and each reinforcement structure 25 protrudes from The position of each bend.
  • each reinforcing structure 25 may be formed by punching from the outside of the bend of the steel plate to the inner side of the bend of the steel plate. Through the arrangement of multiple reinforcing structures 25, the structural strength of the support member 20 at the bend can be effectively improved.
  • the sleeve 5 can be correspondingly disposed in the accommodating groove SP1.
  • the sleeve 5 has a channel 501 inside, and the channel 501 is used to provide the fixed shaft 10 of the fan device A to pass through.
  • the sleeve 5 has a plurality of fixing holes 502.
  • the plurality of fixing holes 502 are used to communicate with the plurality of shaft fixing holes 101 of the fixed shaft 10, and the plurality of fixing holes 502 and the plurality of shaft fixing holes 101 can cooperate with the plurality of shaft fixing components S2 to make
  • the fixed shaft 10 is fixedly arranged in the channel 501.
  • the shaft fixing assembly S2 may include a screw S21 and a nut S22; during the assembly of the fan device A on the fan hanger 2, the fixed shaft 10 of the fan device A may be inserted into the sleeve 5 first.
  • the screws S21 of the shaft fixing assembly S2 are passed through the fixing holes 502 and the shaft fixing holes 101, and the nuts and screws are locked to each other, so that the fixing shaft 10 is fixed to the sleeve 5 in.
  • the sleeve 5 also has two first through holes 503 and two second through holes 504.
  • the two first through holes 503 are arranged to face each other, and the two second through holes 504 are arranged to face each other.
  • the first through hole 503 is located above the second through hole 504, and the first through hole 503 and the second through hole 504 are located above the plurality of fixing holes 502.
  • the first locking assembly 3 includes a first locking shaft 31 and a first nut 32.
  • the first locking shaft 31 is used to simultaneously pierce the first semi-open through hole 221, the two first through holes 503, and the second semi-open through hole 231, and the first locking component 3 is used to make the sleeve 5, the first The side panel 22 and the second side panel 23 are fixed to each other.
  • the second locking assembly 4 includes a second locking shaft 41 and a second nut 42.
  • the second locking shaft 41 is used to simultaneously pierce the second semi-open through hole 231, the two second through holes 504, and the second semi-open through hole 231, and the second locking component 4 is used to make the sleeve 5, the second The side panel 23 and the second side panel 23 are fixed to each other.
  • FIG. 6 is shown as a side view of the supporting member 20.
  • the first locking shaft 31 and the second locking shaft 41 shown in FIG. 6 are respectively shown in cross-section.
  • the shape and size of the second semi-open perforation 231 and its position relative to the second side panel 23 are all the same as those of the second semi-open perforation 231 and its size relative to the second side panel 23.
  • the side panels 23 are arranged in the same position. Therefore, the side panels shown in FIG. 6 show the first side panel 22 and the second side panel 23 at the same time, and the semi-open perforation also shows the first semi-open perforation 221. And the second semi-open perforation 231, the closed perforation shown in FIG. 6 shows the first closed perforation 222 and the second closed perforation 232 at the same time.
  • the diameter D1 of the first semi-open perforation 221 and the second semi-open perforation 231 in a longitudinal direction is greater than the radial width of the first locking shaft 31 D2.
  • the diameter D3 of the first closed hole 222 and the second closed hole 232 in the longitudinal direction is larger than the radial width D2 of the first locking shaft 31.
  • the diameter of the first half-opening through hole 221 and the second half-opening through hole 231 in a transverse direction is larger than the radial width D2 of the first locking shaft 31.
  • the diameter D4 of the first closed hole 222 and the second closed hole 232 in the transverse direction is larger than the radial width D5 of the second locking shaft 41.
  • the diameters of the first semi-open perforation 221, the second semi-open perforation 231, the first closed perforation 222, and the second closed perforation 232 correspond to the radial width D2 of the first locking shaft 31 and the second locking shaft
  • the first locking shaft body 31 can open the through hole 221 and the second half in the first half relative to the support member 20.
  • the supporting member 20 can greatly reduce the direct collision of the first locking shaft 31 and the second locking shaft 41, and the problem of damage to the first locking shaft 31, the second locking shaft 41, and the supporting member 20 occurs Probability.
  • the fan main body 1 of the present invention can move up and down relative to the supporting member 20 (ie, the Z axis direction of the coordinates shown in the figure).
  • the ground shakes, and the fan body 1 can also shake slightly back and forth relative to the supporting member 20 (that is, the X-axis direction of the coordinates shown in the figure).
  • FIG. 7 shows a schematic diagram of the fan body 1 rotating at an angle relative to the supporting member 20.
  • the first semi-open perforation 221 and the first closed perforation 222 are arranged up and down along the longitudinal direction (the Z-axis direction shown in FIG. 4), and the second semi-open perforation 231 and the second closed perforation 232 are along the longitudinal direction. (Z-axis direction shown in Figure 4) up and down.
  • the central axis of the channel 501 of the sleeve 5 (the Z-axis direction as shown in FIG.
  • the sleeve 5 can slightly rotate relative to the supporting member 20 with the rotation axis C2 shown in FIG. 7 as the center.
  • FIGS. 8 and 9 show schematic diagrams of the operation of the fan body 1 mounted on the supporting member 20.
  • the diameter D6 of the first notch 223 and the second notch 233 is not less than the radial width D2 of the first locking shaft 31, and the first locking shaft 31 can pass through the first notch 223 at the same time.
  • the second notch 233 enters the first semi-open perforation 221 and the second semi-open perforation 231.
  • the installation method for fixing the fan body 1 and the sleeve 5 on the supporting member 20 may be: as shown in FIG. 8, the installer may first fix the supporting member 20 on the fixed beam H; and then, install A person can first use the shaft fixing assembly S2 to fix the fixed shaft 10 of the fan main body 1 and the sleeve 5 to each other, and install the first locking assembly 3 on the sleeve 5 on the ground.
  • the installer can take the fan body 1 into the air after completing the installation of the fan body 1, the sleeve 5 and the first locking assembly 3 on the ground. Then, the installer can make the first The locking assembly 3 is slid into the first semi-open through hole 221 and the second semi-open through hole 231 from the first notch 223 and the second notch 233, thereby allowing the fan body 1 and the sleeve 5 to hang on the support member 20; At this time, since the fan main body 1 is already supported by the supporting member 20, the installer does not need to support the fan main body 1 any more. Then, the installer can then pass the second locking shaft 41 through the first closed through hole 222, the second through hole 504 (as shown in FIG.
  • the fan device A and the fan hanger 2 of the present invention through the design of the first semi-open perforation 221 and the second semi-open perforation 231, can allow the installer to reduce the weight very heavy (generally at least 10 When the fan body 1 of kilograms) moves into the air, the fan body 1 can be quickly installed on the supporting member 20 through the first locking assembly 3. The installer does not need to use manpower or related components during the subsequent installation process. The fan body 1 is mechanically supported, so that the installer can easily install the second locking assembly 4 later.
  • the installer uses the second locking assembly 4 to fix the fan body 1, the sleeve 5, and the support member 20 to each other, and the fan The main body 1 cannot be separated from the supporting member 20 under normal circumstances.
  • the fan device A and the fan hanger 2 of the present invention utilize the design of the first semi-open perforation 221 and the second semi-open perforation 231 to allow the installer to easily install the fan body 1 on the support member 20.
  • the first closed perforation 222 and the second closed perforation 232 of the fan device A and the fan hanger 2 of the present invention can be further used to restrict the fan body 1 from being separated from the supporting member 20.
  • the lowest position of the first semi-open perforation 221 is lower than the position of the first notch 223; similarly, on the second side In the side view of the sheet 23, the lowest position of the second semi-open perforation 231 is lower than the second notch 233.
  • the installer makes the first locking shaft 31 enter the first semi-opening through hole 221 and the second semi-opening through hole 231 through the first notch 223 and the second notch 233, the first locking shaft 31 will enter the The lowest position of the semi-open perforation 221 and the second semi-open perforation 231, and the first locking shaft 31 will not easily leave the first semi-open perforation 221 and the second semi-open perforation 231 through the first notch 223 and the second notch 233 .
  • FIG. 9 is a schematic diagram of the supporting member 20 of the present invention from one perspective.
  • the fan device A and the fan hanger 2 of the present invention when fixed to a fixed beam (for example, the H-shaped beam shown in FIG. 1), the fan device A and the fan hanger 2 may also include a holding component 6.
  • the holding assembly 6 may include: an auxiliary fixing member 61 and two clamping members 62.
  • Both sides of the auxiliary fixing member 61 are respectively provided with a plurality of first auxiliary elongated holes 611 and a plurality of second auxiliary elongated holes 612, the plurality of first auxiliary elongated holes 611 are arranged adjacent to each other, and the plurality of second auxiliary elongated holes The strip perforations 612 are arranged adjacent to each other.
  • Each clamping member 62 includes a fixed sheet 621, a lower clamping sheet 622, a connecting sheet 623 and an upper clamping sheet 624.
  • the lower clamping piece 622 is formed by extending one side of the fixing piece 621 outward.
  • the lower clamping piece 622 is connected to the connecting piece 623, and the connecting piece 623 is opposite to the lower clamping piece 622.
  • One side of the upper clamping piece 624 is connected to the upper clamping piece 624, the connecting piece 623 and the lower clamping piece 622 together to form a clamping groove SP2.
  • the clamping groove SP2 is used to clamp the fixed beam H. Regarding the size and appearance of the clamping groove SP2, it can be changed according to requirements, and the figure shown is only one of the exemplary methods.
  • each clamping member 62 may be made of a single piece of steel plate, which means that the fixed piece 621, the lower clamping piece 622, the connecting piece 623, and the upper clamping piece 624 may be integrally formed. ⁇ Settings.
  • the inner side of the bent portion of the clamping member 62 may be protrudingly formed with a plurality of reinforcing structures 625.
  • Each reinforcing structure 625 may be formed by punching from the outside of the bending part of the clamping member 62 to the inside direction of the bending part by using a stamping part.
  • the fan hanger 2 may also include a plurality of auxiliary fixing members S3, and each lower clamping piece 622 may also have a plurality of auxiliary fixing holes 6221.
  • the plurality of auxiliary fixing pieces S3 can be mutually locked with the plurality of auxiliary fixing holes 6221, and the part of each auxiliary fixing piece S3 can pass through the lower clamping piece 622 and be located on the upper clamping piece 624 and the lower clamping piece. Between 622.
  • the multiple auxiliary fixing pieces S3 can clamp the fixing beam H together with the upper clamping piece 624. Therefore, through the design of the plurality of auxiliary fixing members S3 and the plurality of auxiliary fixing holes 6221, the clamping member 62 can be clamped on the fixing beam H of different thickness.
  • each fixing piece 621 has a plurality of long perforations 6211, and each long perforation 6211 penetrates the fixing piece 621.
  • the first abutting sheet 241A of the first support arm 24A has a plurality of first fixing holes 2411A
  • the second abutting sheet 241B of the second support arm 24B has a plurality of second fixing holes 2411B.
  • the plurality of locking components S1 can cooperate with the plurality of first fixing holes 2411A, the plurality of elongated holes 6211, and the plurality of first auxiliary elongated holes 611, so that the first support arm 24A and the clamping member 62 And the auxiliary fixing member 61 are fixed to each other; relatively, the plurality of locking components S1 can cooperate with the plurality of second fixing holes 2411B, the plurality of elongate holes 6211 and the plurality of second auxiliary elongate holes 612, according to So that the second support arm 24B, the clamping member 62 and the auxiliary fixing member 61 are fixed to each other.
  • the radial widths of the first auxiliary elongated perforation 611, the second auxiliary elongated perforation 612, and the elongated perforation 6211 are all greater than the radial width of the screw of the locking component S1, that is, the screw of the locking component S1 is not In the case of locking, it can move laterally in the first auxiliary elongated hole 611, the second auxiliary elongated hole 612, and the elongated hole 6211.
  • the relative distance between the two clamping members 62 facing each other can be According to the width of the fixed beam H; that is to say, the installer can adjust the two clamping members by changing the position of the locking assembly S1 locked on the fixed plate 621, the auxiliary fixing member 61 and the clamping member 62 The distance 62 faces each other, whereby the two clamping members 62 clamp the fixed beams H of different widths.
  • the installer may also adjust the position of the support member 20 relative to the holding assembly 6 by changing the position where the locking assembly S1 is locked to the fixing plate 621, the auxiliary fixing member 61 and the clamping member 62.
  • the fan device and fan hanger of the present invention through the design of the first half-open perforation, the first closed perforation, and the second closed perforation, allow the installer to easily install the fan body, fan hanger and other components On the fixed beam, the main body of the fan can sway slightly in the longitudinal direction, the transverse direction and the center of the rotation axis C2 relative to the fan hanger, thereby reducing the damage to the fan device caused by the earthquake.

Abstract

一种风扇吊架及风扇装置。风扇装置包含风扇主体(1)及风扇吊架(2)。风扇吊架包含支撑构件(20)、第一锁固组件(3)、第二锁固组件(4)及套筒(5)。套筒(5)与风扇主体(1)的固定轴(10)固定。当第一锁固组件(3)固定于套筒(5)时,可以使其通过支撑构件(20)的第一缺口(223)及第二缺口(233),进入支撑构件(20)的第一半开放穿孔(221)及第二半开放穿孔(231),而后风扇主体(1)及套筒(5)即可通过第一锁固组件(1)挂设于支撑构件(20)上,此时,安装人员可以不用扶持风扇主体(1),而可方便地利用第二锁固组件(4)将支撑构件(20)及套筒(5)相互锁固。

Description

风扇吊架及风扇装置 技术领域
本发明涉及一种吊架及风扇装置,特别是涉及一种风扇吊架及适用应用为工业吊扇的风扇装置。
背景技术
常见的工业吊扇,体积大且重量重,且安装的位置较高,因此,在安装上非常麻烦。另外,为了避免工业吊扇掉落,在固定工业吊扇时,会尽可能地使工业吊扇稳固地固定于钢梁,然而在实际应用中,工业吊扇在经历地震时,将可能因为构件彼此间的固定方式过于紧密,而发生构件相互碰撞,进而可能导致构件损坏的问题。
发明内容
本发明的一个主要目的在于改善上述现有技术的至少一种缺陷,提供一种风扇吊架。
本发明的另一个主要目的在于改善上述现有技术的至少一种缺陷,提供一种风扇装置。
本发明实施例公开一种风扇吊架,其用以使一风扇主体固定于一结构体,风扇吊架包含一支撑构件、一套筒及至少两个锁固组件。支撑构件用以与多个锁固件配合而固定于结构体,支撑构件包含一主片体及两个侧片体,两个侧片体连接主片体,两个侧片体彼此相面对地设置,且主片体与两个侧片体共同形成一容置槽,各个侧片体包含有一封闭穿孔及一半开放穿孔,各个封闭穿孔于侧片体的一侧边形成有一缺口;一套筒能对应设置于容置槽中,风扇主体的一固定轴穿设于套筒的一通道,且套筒与风扇主体相互固定;至少两个锁固组件分别定义为一第一锁固组件及一第二锁固组件,第一锁固组件穿设封闭穿孔并与套筒相互锁固;第二锁固组件穿设半开放穿孔并与套筒相互锁固,且第二锁固组件能通过两个缺口进入两个半开放穿孔中;其中,各个半开放穿孔于一纵向方向或一横向方向的口径大于第一锁固组件的一第一锁固轴体的径向宽度;各个封闭穿孔于纵向方向或横向方向的口径大于第二锁固组件的一第二锁固轴体的径向宽度。
优选地,主片体彼此相反的两侧边分别定义为一第一侧边及一第二侧边;其中,两个 侧片体分别定义为一第一侧片体及一第二侧片体,第一侧片体由主片体的第一侧边向外延伸形成,第一侧片体的半开放穿孔定义为一第一半开放穿孔,第一侧片体的封闭穿孔定义为一第一封闭穿孔,第一半开放穿孔及第一封闭穿孔贯穿第一侧片体设置;第一侧片体的缺口定义为一第一缺口;第一半开放穿孔于第一侧片体相反于与主片体相连接的一侧边形成有第一缺口,第一半开放穿孔能通过第一缺口与外连通;第一半开放穿孔位于第一封闭穿孔上方;其中,第二侧片体由主片体的第二侧边向外延伸形成,第二侧片体的半开放穿孔定义为一第二半开放穿孔,第二侧片体的封闭穿孔定义为一第二封闭穿孔,第二半开放穿孔及第二封闭穿孔贯穿第二侧片体设置,第二侧片体的缺口定义为一第二缺口,第二半开放穿孔于第二侧片体相反于与主片体相连接的一侧边形成有第二缺口,第二半开放穿孔能通过第二缺口与外连通;第二半开放穿孔位于第二封闭穿孔的上方;第一半开放穿孔及第二半开放穿孔位于彼此相对应的位置,第一缺口及第二缺口位于彼此相对应的位置,第一封闭穿孔及第二封闭穿孔位于彼此相对应的位置;其中,支撑构件还包含两个支撑臂,其分别定义为一第一支撑臂及一第二支撑臂,第一支撑臂由第一侧片体或是主片体的一侧边向外延伸形成,第二支撑臂由第二侧片体或是主片体的一侧边向外延伸形成;两个支撑臂用以与多个锁固件相互配合,以使支撑构件固定于结构体;其中,通道用以提供风扇主体的一固定轴穿设,套筒具有多个固定孔;多个固定孔用以与固定轴的多个轴体固定孔相互连通,而多个固定孔、多个轴体固定孔能与多个轴体固定组件相互配合,以使固定轴固定设置于通道中;套筒具有两个第一贯穿孔及两个第二贯穿孔,两个第一贯穿孔彼此相面对地设置,两个第二贯穿孔彼此相面对地设置;第一贯穿孔位于第二贯穿孔的上方;其中,第一锁固组件包含有第一锁固轴体及一第一螺帽,第一锁固轴体用以同时穿设第一半开放穿孔、两个第一贯穿孔及第二半开放穿孔,而第一锁固组件用以使套筒、第一侧片体及第二侧片体相互固定;其中,第二锁固组件包含有第二锁固轴体及一第二螺帽,第二锁固轴体用以同时穿设第一封闭穿孔、两个第二贯穿孔及第二封闭穿孔,而第二锁固组件用以使套筒、第一侧片体及第二侧片体相互固定;其中,第一缺口的口径不小于第一锁固轴体的径向宽度,且第二缺口的口径不小于第一锁固轴体的径向宽度;当第一锁固组件锁固于套筒上,且第二锁固组件未锁固于套筒上时,第一锁固组件能通过第一缺口及第二缺口进入第一半开放穿孔及第二半开放穿孔中。
优选地,风扇吊架适用于固定在一固定梁,风扇吊架还包含有一固持组件,固持组件包含一辅助固定构件及两个夹持构件,辅助固定构件具有多个第一辅助长条穿孔及多个第 二辅助长条穿孔,多个第一辅助长条穿孔彼此相邻地设置,多个第二辅助长条穿孔彼此相邻地设置;两个夹持构件,各个夹持构件包含一固定片体、一下夹持片体、一连接片体及一上夹持片体,下夹持片体由固定片体的一侧边向外延伸形成,下夹持片体与连接片体相连接,而连接片体相反于与下夹持片体相连接的一侧连接上夹持片体,上夹持片体、连接片体及下夹持片体共同形成有一夹持槽,夹持槽用以夹持固定梁;各个固定片体具有多个长条穿孔,各个长条穿孔贯穿固定片体;其中,第一支撑臂具有一第一抵靠片体,第一抵靠片体具有多个第一固定穿孔,第二支撑臂具有一第二抵靠片体,第二抵靠片体具有多个第二固定穿孔;其中,多个第一固定穿孔、多个第二固定穿孔、各个固定片体的多个长条穿孔及多个第一辅助长条穿孔能与多个锁固件相互配合,而多个锁固件能使两个支撑臂与两个夹持构件相互固定。
优选地,风扇吊架还包含有多个辅助固定件,且各个下夹持片体具有多个辅助固定穿孔,多个辅助固定件用以与多个辅助固定穿孔相互锁固,而多个辅助固定件能与各个上夹持片体共同固持固定梁。
优选地,各个夹持构件的固定片体、下夹持片体、连接片体及上夹持片体为一体成型地设置,且夹持构件的弯曲处的内侧凸出形成有多个加强结构。
优选地,第一半开放穿孔的最低位置低于第一缺口的位置;第二半开放穿孔的最低位置低于第二缺口的位置;第一半开放穿孔与第一封闭穿孔是沿纵向方向上下排列设置,第二半开放穿孔与第二封闭穿孔是沿纵向方向上下排列设置;当套筒通过第一锁固组件及第二锁固组件与支撑构件相互固定,而套筒位于容置槽中时,第一侧片体及第二侧片体是对应位于套筒的左右两侧,且套筒的通道的中心轴是平行于纵向方向。
本发明实施例还公开一种风扇装置,其包含一风扇主体、一支撑构件、一套筒及至少两个锁固组件。风扇主体包含一固定轴及一转动单元,固定轴与转动单元相连接,转动单元与多个扇叶相连接;一支撑构件,其用以与多个锁固件配合而固定于结构体,支撑构件包含一主片体及两个侧片体,两个侧片体连接主片体,两个侧片体彼此相面对地设置,且主片体与两个侧片体共同形成一容置槽,各个侧片体包含有一封闭穿孔及一半开放穿孔,封闭穿孔于侧片体的一侧边形成有一缺口;一套筒能对应设置于容置槽中,固定轴穿设于套筒的一通道,且套筒与风扇主体相互固定;至少两个锁固组件分别定义为一第一锁固组件及一第二锁固组件,第一锁固组件锁固于套筒,第一锁固组件能通过两个所缺口进入两个半开放穿孔中;第二锁固组件穿设于封闭穿孔并与套筒相互锁固;其中,各个半开放穿 孔于一纵向方向或一横向方向的口径大于第一锁固轴体的径向宽度;各个封闭穿孔于纵向方向或横向方向的口径大于第二锁固轴体的径向宽度。
优选地,主片体彼此相反的两侧边分别定义为一第一侧边及一第二侧边;其中,两个侧片体分别定义为一第一侧片体及一第二侧片体,第一侧片体由主片体的第一侧边向外延伸形成,第一侧片体的半开放穿孔定义为一第一半开放穿孔,第一侧片体的封闭穿孔定义为一第一封闭穿孔,第一半开放穿孔及第一封闭穿孔贯穿第一侧片体设置;第一侧片体的缺口定义为一第一缺口;第一半开放穿孔于第一侧片体相反于与主片体相连接的一侧边形成有第一缺口,第一半开放穿孔能通过第一缺口与外连通;第一半开放穿孔位于第一封闭穿孔上方;其中,第二侧片体由主片体的第二侧边向外延伸形成,第二侧片体的半开放穿孔定义为一第二半开放穿孔,第二侧片体的封闭穿孔定义为一第二封闭穿孔,第二半开放穿孔及第二封闭穿孔贯穿第二侧片体设置,第二侧片体的缺口定义为一第二缺口,第二半开放穿孔于第二侧片体相反于与主片体相连接的一侧边形成有第二缺口,第二半开放穿孔能通过第二缺口与外连通;第二半开放穿孔位于第二封闭穿孔的上方;第一半开放穿孔及第二半开放穿孔位于彼此相对应的位置,第一缺口及第二缺口位于彼此相对应的位置,第一封闭穿孔及第二封闭穿孔位于彼此相对应的位置;其中,支撑构件还包含两个支撑臂,其分别定义为一第一支撑臂及一第二支撑臂,第一支撑臂由第一侧片体或是主片体的一侧边向外延伸形成,第二支撑臂由第二侧片体或是主片体的一侧边向外延伸形成;两个支撑臂用以与多个锁固件相互配合,以使支撑构件固定于结构体;其中,通道用以提供风扇主体的一固定轴穿设,套筒具有多个固定孔;多个固定孔用以与固定轴的多个轴体固定孔相互连通,而多个固定孔、多个轴体固定孔能与多个轴体固定组件相互配合,以使固定轴固定设置于通道中;套筒具有两个第一贯穿孔及两个第二贯穿孔,两个第一贯穿孔彼此相面对地设置,两个第二贯穿孔彼此相面对地设置;第一贯穿孔位于第二贯穿孔的上方;其中,第一锁固组件包含有第一锁固轴体及一第一螺帽,第一锁固轴体用以同时穿设第一半开放穿孔、两个第一贯穿孔及第二半开放穿孔,而第一锁固组件用以使套筒、第一侧片体及第二侧片体相互固定;其中,第二锁固组件包含有第二锁固轴体及一第二螺帽,第二锁固轴体用以同时穿设第一封闭穿孔、两个第二贯穿孔及第二封闭穿孔,而第二锁固组件用以使套筒、第一侧片体及第二侧片体相互固定;其中,第一缺口的口径不小于第一锁固轴体的径向宽度,且第二缺口的口径不小于第一锁固轴体的径向宽度;当第一锁固组件锁固于套筒上,且第二锁固组件未锁固于套筒上时,第一锁固组件能通过第一缺口及第二缺口进入 第一半开放穿孔及第二半开放穿孔中。
优选地,风扇吊架适用于固定在一固定梁,风扇吊架还包含有一固持组件,固持组件包含一辅助固定构件及两个夹持构件。辅助固定构件具有多个第一辅助长条穿孔及多个第二辅助长条穿孔,多个第一辅助长条穿孔彼此相邻地设置,多个第二辅助长条穿孔彼此相邻地设置;两个夹持构件,各个夹持构件包含一固定片体、一下夹持片体、一连接片体及一上夹持片体,下夹持片体由固定片体的一侧边向外延伸形成,下夹持片体与连接片体相连接,而连接片体相反于与下夹持片体相连接的一侧连接上夹持片体,上夹持片体、连接片体及下夹持片体共同形成有一夹持槽,夹持槽用以夹持固定梁;各个固定片体具有多个长条穿孔,各个长条穿孔贯穿固定片体;其中,第一支撑臂具有一第一抵靠片体,第一抵靠片体具有多个第一固定穿孔,第二支撑臂具有一第二抵靠片体,第二抵靠片体具有多个第二固定穿孔;其中,多个第一固定穿孔、多个第二固定穿孔、各个固定片体的多个长条穿孔及多个第一辅助长条穿孔能与多个锁固件相互配合,而多个锁固件能使两个支撑臂与两个夹持构件相互固定。
优选地,风扇吊架还包含有多个辅助固定件,且各个下夹持片体具有多个辅助固定穿孔,多个辅助固定件用以与多个辅助固定穿孔相互锁固,而多个辅助固定件能与各个上夹持片体共同固持固定梁。
优选地,各个夹持构件的固定片体、下夹持片体、连接片体及上夹持片体为一体成型地设置,且夹持构件的弯曲处的内侧凸出形成有多个加强结构。
优选地,第一半开放穿孔的最低位置低于第一缺口的位置;第二半开放穿孔的最低位置低于第二缺口的位置;第一半开放穿孔与第一封闭穿孔是沿纵向方向上下排列设置,第二半开放穿孔与第二封闭穿孔是沿纵向方向上下排列设置;当套筒通过第一锁固组件及第二锁固组件与支撑构件相互固定,而套筒位于容置槽中时,第一侧片体及第二侧片体是对应位于套筒的左右两侧,且套筒的通道的中心轴是平行于纵向方向。
综上所述,本发明的风扇吊架及风扇装置通过第一缺口、第二缺口、第一半开放穿孔及第二半开放穿孔的设计,将可以便于安装人员安装风扇主体。
为能更进一步了解本发明的特征及技术内容,请参阅以下有关本发明的详细说明与附图,但是此等说明与附图仅用来说明本发明,而非对本发明的保护范围作任何的限制。
附图说明
图1为本发明的风扇吊架固定于固定梁的示意图。
图2为本发明的风扇吊架固定于固定梁的另一视角的示意图。
图3为本发明的风扇装置的分解示意图;图3亦为本发明的风扇吊架的分解示意图。
图4为本发明的风扇装置的另一视角的分解示意图;图4亦为本发明的风扇吊架的另一视角的分解示意图。
图5为本发明的风扇吊架的局部构件的示意图。
图6为本发明的风扇吊架、第一锁固组件局部剖面及第二锁固组件局部剖面的的侧视图。
图7为本发明的风扇主体相对于支撑构件微幅旋转的示意图。
图8及图9为本发明的风扇主体设置于风扇吊架上的作动示意图。
图10为本发明的风扇吊架的局部构件的示意图。
图11为本发明的风扇吊架固定于固定梁的侧视图;图11为本发明的风扇装置固定于固定梁的侧视图。
具体实施方式
于以下说明中,如有指出请参阅特定附图或是如特定附图所示,其仅是用以强调于后续说明中,所述及的相关内容大部分出现于该特定附图中,但不限制该后续说明中仅可参考所述特定附图。
请一并参阅图1至图4,图1及图2显示为本发明的风扇装置、风扇吊架固定于固定梁上的两个不同视角的示意图,图3及图4显示为本发明的风扇装置、风扇吊架的两个不同视角的分解示意图。需说明的是,本发明的风扇装置特别适合应用为工业用吊扇,本发明的风扇吊架特别适合用来将工业用吊扇固定于固定梁(例如是图1及图2中所示的H型钢梁)。
本发明的风扇装置A包含:一风扇主体1及一风扇吊架2。风扇主体1是通过风扇吊架2固定于固定梁H,当然,在不同的应用中,风扇主体1也可以是通过风扇吊架2直接固定于天花板。
风扇主体1包含一固定轴10及一转动单元11。固定轴10与转动单元11相连接,转动单元11与多个扇叶(图未示)相连接。于此所指的固定轴10主要是用来使风扇主体1与风扇吊架2相互固定用的构件,关于固定轴10的外型、尺寸可以依据需求变化,不以图 中所示为限。于此所指的转动单元11即包含有马达等用来控制扇叶旋转的电子、机械零组件。
风扇吊架2包含:一支撑构件20、两个锁固组件、一套筒5及一固持组件6。两个锁固组件分别定义为一第一锁固组件3及一第二锁固组件4。在风扇吊架2没有固持组件6的实施例中,支撑构件20主要是用来固定于天花板或是相关结构体;在风扇吊架2具有固持组件6的实施例中,支撑构件20是与固持组件6相连接,而固持组件6则是用来使风扇吊架2整体固定于固定梁H。套筒5主要是用来与风扇主体1相互固定,且套筒5是通过第一锁固组件3及第二锁固组件4固定于支撑构件20上。
需说明的是,在本实施例说明及附图中,是以风扇吊架2具有固持组件6,而风扇吊架2是固定于H型钢梁(固定梁H)为例,但风扇吊架2不局限于仅可固定于固定梁,在不同的应用中,风扇吊架2也可以是不包含有固持组件6,而支撑构件20可以是直接固定于天花板等结构体。
请参阅图5,其显示为支撑构件20的示意图。如图所示,支撑构件20包含:一主片体21、两侧片体及两个支撑臂24。两个侧片体分别定义为一第一侧片体22、一第二侧片体23。在具体的应用中,主片体21、第一侧片体22、第二侧片体23及两个支撑臂24可以是通过一钢板制成,意即,主片体21、第一侧片体22、第二侧片体23及两个支撑臂24可以是一体成型地设置。当然,在不同的应用中,主片体21、第一侧片体22、第二侧片体23及两个支撑臂24也可以是各自独立的构件,并通过焊接等方式相互连接。各个侧片体具有一半开放穿孔及一封闭穿孔,半开放穿孔及封闭穿孔贯穿侧片体设置,且半开放穿孔于侧片体的一侧边形成有一缺口。
主片体21彼此相反的两侧边分别定义为一第一侧边21A及一第二侧边21B。第一侧片体22由主片体21的第一侧边21A向外延伸形成。第一侧片体22的半开放穿孔及封闭穿孔分别定义为一第一半开放穿孔221及一第一封闭穿孔222。第一半开放穿孔221及第一封闭穿孔222贯穿第一侧片体22设置。第一半开放穿孔221于第一侧片体22相反于与主片体21相连接的一侧边221A形成的缺口定义为一第一缺口223。第一半开放穿孔221能通过第一缺口223与外连通。第一半开放穿孔221位于第一封闭穿孔222上方。
第二侧片体23由主片体21的第二侧边21B向外延伸形成。其中,主片体21的两个彼此相反的侧边是向同一方向分别延伸形成第一侧片体22及第二侧片体23,而主片体21、第一侧片体22及第二侧片体23共同形成为类似于ㄇ字型的结构。
第二侧片体23的半开放穿孔及封闭穿孔分别定义为一第二半开放穿孔231及一第二封闭穿孔232。第二半开放穿孔231及第二封闭穿孔232贯穿第二侧片体23设置。第二半开放穿孔231于第二侧片体23相反于与主片体21相连接的一侧边231A形成的缺口定义为一第二缺口233。第二半开放穿孔231能通过第二缺口233与外连通。第二半开放穿孔231位于第二封闭穿孔232上方。
第一侧片体22及第二侧片体23是彼此相面对地设置,而第一半开放穿孔221及第二半开放穿孔231位于彼此相对应的位置,第一缺口223及第二缺口233位于彼此相对应的位置,第一封闭穿孔222及第二封闭穿孔232位于彼此相对应的位置,且主片体21、第一侧片体22及第二侧片体23共同形成一容置槽SP1。其中,第一半开放穿孔221及第二半开放穿孔231具有完全相同的尺寸及外型,第一封闭穿孔222及第二封闭穿孔232具有完全相同的尺寸及外型,第一缺口223及第二缺口233具有完全相同的尺寸及外型。
需特别强调的是,上述第一半开放穿孔221及第二半开放穿孔231是可以通过相对应的第一缺口223及第二缺口233而与外连通,而,第一锁固组件3则可以同时通过第一缺口223及第二缺口233滑入第一半开放穿孔221及第二半开放穿孔231中。相对地,第一封闭穿孔222及第二封闭穿孔232由于没有与任何缺口相连接,因此,第二锁固组件4仅可以先穿入第一封闭穿孔222(或是第二封闭穿孔232),再穿入第二封闭穿孔232(或是第一封闭穿孔222)。
两个支撑臂24分别定义为一第一支撑臂24A及一第二支撑臂24B。第一支撑臂24A可以是由第一侧片体22的一顶侧边221B向外延伸形成;在不同的应用中,第一支撑臂24A也可以是由主片体21的顶侧边向外延伸形成。第二支撑臂24B可以是由第二侧片体23的一顶侧边231B向外延伸形成;在不同的应用中,第二支撑臂24B也可以是由主片体21的顶侧边向外延伸形成。
第一支撑臂24A具有一第一抵靠片体241A,第一抵靠片体241A具有多个第一固定穿孔2411A。第二支撑臂24B具有一第二抵靠片体241B,第二抵靠片体241B具有多个第二固定穿孔2411B。多个第一固定穿孔2411A及多个第二固定穿孔2411B用以与多个锁固组件S1(如图10所示)相互配合,而使支撑构件20固持组件6(或是固定于天花板)。在本实施例中,是以第一支撑臂24A及第二支撑臂24B的外型类似于Z字型为例,但第一支撑臂24A及第二支撑臂24B的外型、尺寸不以此为限。
值得一提的是,在实际应用中,支撑构件20可以是由单一片钢板弯曲而成,而支撑 构件20在各个弯曲处可以是形成有多个加强结构25,各个加强结构25是凸出于各个弯曲处的位置。具体来说,各个加强结构25可以是利用冲压的方式,由钢板的弯曲处的外侧,向钢板的弯曲处的内侧方向冲压而成。通过多个加强结构25的设置,将可有效提升支撑构件20于弯曲处的结构强度。
如图3及图4所示,套筒5能对应设置于容置槽SP1中,套筒5的内部具有一通道501,通道501用以提供风扇装置A的固定轴10穿设。套筒5具有多个固定孔502。多个固定孔502用以与固定轴10的多个轴体固定孔101相互连通,而多个固定孔502、多个轴体固定孔101能与多个轴体固定组件S2相互配合,以使固定轴10固定设置于通道501中。
具体来说,轴体固定组件S2可以是包含有螺丝S21及螺帽S22;风扇装置A在组装于风扇吊架2的过程中,可以是先将风扇装置A的固定轴10插入套筒5的通道501中,而后使轴体固定组件S2的螺丝S21穿过多个固定孔502及多个轴体固定孔101,再使螺帽与螺丝相互锁固,据以使固定轴10固定于套筒5中。
套筒5还具有两个第一贯穿孔503及两个第二贯穿孔504,两个第一贯穿孔503彼此相面对地设置,两个第二贯穿孔504彼此相面对地设置。其中,第一贯穿孔503位于第二贯穿孔504的上方,且第一贯穿孔503及第二贯穿孔504是位于多个固定孔502的上方。
第一锁固组件3包含有一第一锁固轴体31及一第一螺帽32。第一锁固轴体31用以同时穿设第一半开放穿孔221、两个第一贯穿孔503及第二半开放穿孔231,而第一锁固组件3用以使套筒5、第一侧片体22及第二侧片体23相互固定。
第二锁固组件4包含有一第二锁固轴体41及一第二螺帽42。第二锁固轴体41用以同时穿设第二半开放穿孔231、两个第二贯穿孔504及第二半开放穿孔231,而第二锁固组件4用以使套筒5、第二侧片体23及第二侧片体23相互固定。
请参阅图6,其显示为支撑构件20的侧视图,为利于说明,在图6中所示的第一锁固轴体31及第二锁固轴体41是分别以剖面的形式表示。在本实施例中,第二半开放穿孔231的外型、尺寸及其相对于第二侧片体23的设置位置,皆与第二半开放穿孔231的外型、尺寸及其相对于第二侧片体23的设置位置相同,因此,在图6中所示的侧片体同时表示了第一侧片体22及第二侧片体23,半开放穿孔同时表示了第一半开放穿孔221及第二半开放穿孔231,在图6中所示的封闭穿孔则同时表示了第一封闭穿孔222及第二封闭穿孔232。
如图6所示,第一半开放穿孔221及第二半开放穿孔231于一纵向方向(即图中所示坐标的Z轴方向)的口径D1大于第一锁固轴体31的径向宽度D2。第一封闭穿孔222及第二封闭穿孔232于纵向方向的口径D3,大于第一锁固轴体31的径向宽度D2。借此,第一锁固轴体31能于第一半开放穿孔221及第二半开放穿孔231中沿纵向方向移动,第二锁固轴体41能于第一封闭穿孔222及第二封闭穿孔232中沿纵向方向移动。
第一半开放穿孔221及第二半开放穿孔231于一横向方向(即图中所示坐标的X轴方向)的口径大于第一锁固轴体31的径向宽度D2。第一封闭穿孔222及第二封闭穿孔232于横向方向的口径D4大于第二锁固轴体41的径向宽度D5。借此,第一锁固轴体31能于第一半开放穿孔221及第二半开放穿孔231中沿横向方向移动,第二锁固轴体41能于第一封闭穿孔222及第二封闭穿孔232中沿横向方向移动。
通过上述第一半开放穿孔221、第二半开放穿孔231、第一封闭穿孔222及第二封闭穿孔232的口径,对应于第一锁固轴体31的径向宽度D2及第二锁固轴体41的径向宽度D5的设计,当风扇装置A受到不预期的外力作用(例如地震),第一锁固轴体31能相对于支撑构件20,于第一半开放穿孔221及第二半开放穿孔231中移动,而第二锁固轴体41能于第一封闭穿孔222及第二封闭穿孔232中移动,借此,第一锁固轴体31及第二锁固轴体41不会直接碰撞支撑构件20,而可大幅降低第一锁固轴体31及第二锁固轴体41直接碰撞,而发生第一锁固轴体31、第二锁固轴体41及支撑构件20损坏的问题的机率。
依上所述,请复参图1,本发明的风扇主体1在受到不预期的外力作用时,风扇主体1能相对于支撑构件20上下(即图中所示坐标的Z轴方向)微幅地晃动,且风扇主体1亦能相对于支撑构件20前后(即图中所示坐标的X轴方向)微幅地晃动。
请参阅图1、图4及图7,图7显示为风扇主体1相对于支撑构件20旋转一角度的示意图。特别说明的是,第一半开放穿孔221及第一封闭穿孔222是沿纵向方向(图4所示的Z轴方向)上下设置,第二半开放穿孔231及第二封闭穿孔232是沿纵向方向(图4所示的Z轴方向)上下设置。当套筒5固定于支撑构件20时,套筒5的通道501的中心轴(如图1中所示的Z轴方向)是大致平行于纵向方向,而第一侧片体22及第二侧片体23则是对应位于套筒5的左右两侧。如图7所示,通过上述第一侧片体22、第二侧片体23及套筒5彼此间的相对位置关系,以及前述第一半开放穿孔221、第一封闭穿孔222、第二半开放穿孔231及第二封闭穿孔232的设计,套筒5能以图7中所示旋转轴C2为中心,相对于支撑构件20微幅旋转。
请一并参阅图6、图8及图9,图8及图9显示为风扇主体1安装于支撑构件20的作动示意图。如图6所示,第一缺口223及第二缺口233的口径D6是不小于第一锁固轴体31的径向宽度D2,而第一锁固轴体31是可以同时通过第一缺口223及第二缺口233进入第一半开放穿孔221及第二半开放穿孔231中。
在实际应用中,将风扇主体1及套筒5固定于支撑构件20上的安装方式可以是:如图8所示,安装人员可以是先将支撑构件20固定于固定梁H上;而后,安装人员可以在地面,先利用轴体固定组件S2将风扇主体1的固定轴10与套筒5相互固定,并且,将第一锁固组件3安装于套筒5上。
如图8及图9所示,安装人员在地面完成风扇主体1、套筒5及第一锁固组件3的安装后,则可以将风扇主体1拿至空中,接着,安装人员可以使第一锁固组件3,由第一缺口223及第二缺口233滑入第一半开放穿孔221及第二半开放穿孔231中,借此,使风扇主体1及套筒5吊挂于支撑构件20;此时,由于风扇主体1已经被支撑构件20所支撑,因此,安装人员可以不用再扶持风扇主体1。而后,安装人员可以接着使第二锁固轴体41穿过第一封闭穿孔222、第二贯穿孔504(如图3所示)及第二封闭穿孔232,并使第二螺帽42与第二锁固轴体41相互锁固,借此,完成风扇主体1与支撑构件20的安装作业。值得一提的是,安装人员在使第一锁固组件3滑入第一半开放穿孔221及第二半开放穿孔231中后,安装人员可以是先使第一锁固组件3与套筒5稍微锁固。
依上所述,本发明的风扇装置A及风扇吊架2,通过第一半开放穿孔221及第二半开放穿孔231的设计,可以让安装人员在将重量非常重(一般来说至少超过10公斤)的风扇主体1移动至空中时,可以快速地通过第一锁固组件3,将风扇主体1设置于支撑构件20,安装人员在接续的安装过程中,皆无需以再以人力或是相关机械来支撑风扇主体1,借此,安装人员可以轻松地进行后续第二锁固组件4的安装。另外,由于第一封闭穿孔222及第二封闭穿孔232并没有与外连通的缺口,因此,安装人员利用第二锁固组件4将风扇主体1、套筒5及支撑构件20相互固定后,风扇主体1在正常情况下,是无法与支撑构件20分离。
因此,本发明的风扇装置A及风扇吊架2,是利用第一半开放穿孔221及第二半开放穿孔231的设计,来让安装人员可以方便地将风扇主体1安装于支撑构件20上,而本发明的风扇装置A及风扇吊架2的第一封闭穿孔222及第二封闭穿孔232,则可以进一步用来限制风扇主体1无法与支撑构件20分离。
值得一提的是,如图6所示,于第一侧片体22的侧视图中,第一半开放穿孔221的最低位置是低于第一缺口223的位置;相同地,于第二侧片体23的侧视图中,第二半开放穿孔231的最低位置是低于第二缺口233的位置。如此,安装人员使第一锁固轴体31通过第一缺口223及第二缺口233进入第一半开放穿孔221及第二半开放穿孔231中时,第一锁固轴体31将顺势进入第一半开放穿孔221及第二半开放穿孔231的最低位置,而第一锁固轴体31将不易通过第一缺口223及第二缺口233离开第一半开放穿孔221及第二半开放穿孔231。
请一并参阅图3、图4及图9,图9显示为本发明的支撑构件20的其中一视角的示意图。如图所示,本发明的风扇装置A及风扇吊架2,用以固定于固定梁(例如图1所示的H型梁)时,风扇装置A及风扇吊架2还可以包含有固持组件6。固持组件6可以包含:一辅助固定构件61及两个夹持构件62。
辅助固定构件61的两侧分别具有多个第一辅助长条穿孔611及多个第二辅助长条穿孔612,多个第一辅助长条穿孔611彼此相邻地设置,多个第二辅助长条穿孔612彼此相邻地设置。
各个夹持构件62包含一固定片体621、一下夹持片体622、一连接片体623及一上夹持片体624。下夹持片体622由固定片体621的一侧边向外延伸形成,下夹持片体622与连接片体623相连接,而连接片体623相反于与下夹持片体622相连接的一侧连接上夹持片体624,上夹持片体624、连接片体623及下夹持片体622共同形成有一夹持槽SP2。夹持槽SP2用以夹持固定梁H。关于夹持槽SP2的尺寸及外型,可以是依据需求变化,图中所示仅为其中一示范方式。
在实际应用中,各个夹持构件62可以是由单一片钢板所制成,意即,固定片体621、下夹持片体622、连接片体623及上夹持片体624可以是一体成型地设置。在夹持构件62是一体成型地制成的实施例中,夹持构件62的弯曲处的内侧可以是凸出形成有多个加强结构625。各个加强结构625可以是利用冲压件,由夹持构件62的弯曲处的外侧向弯曲处的内侧方向冲压的形成。
如图3及图11所示,在具体实施中,风扇吊架2还可以包含有多个辅助固定件S3,各个下夹持片体622还可以是具有多个辅助固定穿孔6221。多个辅助固定件S3能与多个辅助固定穿孔6221相互锁固,且各个辅助固定件S3的部分可以穿过下夹持片体622,并 位于上夹持片体624及下夹持片体622之间。如图11所示,通过多个辅助固定件S3的设计,多个辅助固定件S3能与上夹持片体624共同夹持固定梁H。因此,通过多个辅助固定件S3及多个辅助固定穿孔6221的设计,夹持构件62将可以夹持于不同厚度的固定梁H上。
如图3、图5及图10所示,各个固定片体621具有多个长条穿孔6211,各个长条穿孔6211贯穿固定片体621。第一支撑臂24A的第一抵靠片体241A具有多个第一固定穿孔2411A,第二支撑臂24B的第二抵靠片体241B具有多个第二固定穿孔2411B。而,多个锁固组件S1能与多个第一固定穿孔2411A、多个长条穿孔6211及多个第一辅助长条穿孔611相互配合,据以使第一支撑臂24A、夹持构件62及辅助固定构件61三者彼此相互固定;相对地,多个锁固组件S1能与多个第二固定穿孔2411B、多个长条穿孔6211及多个第二辅助长条穿孔612相互配合,据以使第二支撑臂24B、夹持构件62及辅助固定构件61三者彼此相互固定。
其中,第一辅助长条穿孔611、第二辅助长条穿孔612、长条穿孔6211的径向宽度,皆是大于锁固组件S1的螺丝的径向宽度,即锁固组件S1的螺丝在未锁固的情况下,是可以于第一辅助长条穿孔611、第二辅助长条穿孔612、长条穿孔6211中横向移动。因此,通过辅助固定构件61的第一辅助长条穿孔611、第二辅助长条穿孔612及多个长条穿孔6211的相互配合,两个夹持构件62彼此相面对的相对距离,可以是依据固定梁H的宽度而变化;也就是说,安装人员可以是通过改变锁固组件S1锁固于固定片体621、辅助固定构件61及夹持构件62的位置,来调整两个夹持构件62彼此相面对的距离,借此使两个夹持构件62夹持不同宽度的固定梁H。另外,安装人员也可以是通过改变锁固组件S1锁固于固定片体621、辅助固定构件61及夹持构件62的位置,来调整支撑构件20相对于固持组件6的位置。
综上所述,本发明的风扇装置及风扇吊架,通过第一半开放穿孔、第一封闭穿孔及第二封闭穿孔等设计,可以让安装人员方便地将风扇主体、风扇吊架等构件安装于固定梁,且还可以让风扇主体能相对于风扇吊架于纵向方向、横向方向及以旋转轴C2为中心微幅地晃动,借此,可以降低地震对于风扇装置的损害。
以上所述仅为本发明的较佳可行实施例,非因此局限本发明的专利范围,故凡运用本发明说明书及附图内容所做的等效技术变化,均包含于本发明的保护范围内。

Claims (12)

  1. 一种风扇吊架,其特征在于,所述风扇吊架用以使一风扇主体固定于一结构体,所述风扇吊架包含:
    一支撑构件,其用以与多个锁固件配合而固定于所述结构体,所述支撑构件包含:
    一主片体;及
    两个侧片体,其连接所述主片体,两个所述侧片体彼此相面对地设置,且所述主片体与两个所述侧片体共同形成一容置槽,各个所述侧片体包含有一封闭穿孔及一半开放穿孔,各个所述封闭穿孔于所述侧片体的一侧边形成有一缺口;
    一套筒,其能对应设置于所述容置槽中,所述风扇主体的一固定轴穿设于所述套筒的一通道,且所述套筒与所述风扇主体相互固定;
    至少两个锁固组件,其分别定义为一第一锁固组件及一第二锁固组件,所述第一锁固组件穿设所述封闭穿孔并与所述套筒相互锁固;所述第二锁固组件穿设所述半开放穿孔并与所述套筒相互锁固,且所述第二锁固组件能通过两个所述缺口进入两个所述半开放穿孔中;
    其中,各个所述半开放穿孔于一纵向方向或一横向方向的口径大于所述第一锁固组件的一第一锁固轴体的径向宽度;各个所述封闭穿孔于所述纵向方向或所述横向方向的口径大于所述第二锁固组件的一第二锁固轴体的径向宽度。
  2. 依据权利要求1所述的风扇吊架,其特征在于,所述主片体彼此相反的两侧边分别定义为一第一侧边及一第二侧边;
    其中,两个所述侧片体分别定义为一第一侧片体及一第二侧片体,所述第一侧片体由所述主片体的所述第一侧边向外延伸形成,所述第一侧片体的所述半开放穿孔定义为一第一半开放穿孔,所述第一侧片体的所述封闭穿孔定义为一第一封闭穿孔,所述第一半开放穿孔及所述第一封闭穿孔贯穿所述第一侧片体设置;所述第一侧片体的所述缺口定义为一第一缺口;所述第一半开放穿孔于所述第一侧片体相反于与所述主片体相连接的一侧边形成有所述第一缺口,所述第一半开放穿孔能通过所述第一缺口与外连通;所述第一半开放穿孔位于所述第一封闭穿孔上方;
    其中,所述第二侧片体由所述主片体的所述第二侧边向外延伸形成,所述第二侧片体的所述半开放穿孔定义为一第二半开放穿孔,所述第二侧片体的所述封闭穿孔定义为一第二封闭穿孔,所述第二半开放穿孔及所述第二封闭穿孔贯穿所述第二侧片体设置,所述第 二侧片体的所述缺口定义为一第二缺口,所述第二半开放穿孔于所述第二侧片体相反于与所述主片体相连接的一侧边形成有所述第二缺口,所述第二半开放穿孔能通过所述第二缺口与外连通;所述第二半开放穿孔位于所述第二封闭穿孔的上方;所述第一半开放穿孔及所述第二半开放穿孔位于彼此相对应的位置,所述第一缺口及所述第二缺口位于彼此相对应的位置,所述第一封闭穿孔及所述第二封闭穿孔位于彼此相对应的位置;
    其中,所述支撑构件还包含两个支撑臂,其分别定义为一第一支撑臂及一第二支撑臂,所述第一支撑臂由所述第一侧片体或是所述主片体的一侧边向外延伸形成,所述第二支撑臂由所述第二侧片体或是所述主片体的一侧边向外延伸形成;两个所述支撑臂用以与多个锁固件相互配合,以使所述支撑构件固定于所述结构体;
    其中,所述通道用以提供所述风扇主体的一固定轴穿设,所述套筒具有多个固定孔;多个所述固定孔用以与所述固定轴的多个轴体固定孔相互连通,而多个所述固定孔、多个所述轴体固定孔能与多个轴体固定组件相互配合,以使所述固定轴固定设置于所述通道中;所述套筒具有两个第一贯穿孔及两个第二贯穿孔,两个所述第一贯穿孔彼此相面对地设置,两个所述第二贯穿孔彼此相面对地设置;所述第一贯穿孔位于所述第二贯穿孔的上方;
    其中,所述第一锁固组件包含有所述第一锁固轴体及一第一螺帽,所述第一锁固轴体用以同时穿设所述第一半开放穿孔、两个所述第一贯穿孔及所述第二半开放穿孔,而所述第一锁固组件用以使所述套筒、所述第一侧片体及所述第二侧片体相互固定;
    其中,所述第二锁固组件包含有所述第二锁固轴体及一第二螺帽,所述第二锁固轴体用以同时穿设所述第一封闭穿孔、两个所述第二贯穿孔及所述第二封闭穿孔,而所述第二锁固组件用以使所述套筒、所述第一侧片体及所述第二侧片体相互固定;
    其中,所述第一缺口的口径不小于所述第一锁固轴体的径向宽度,且所述第二缺口的口径不小于所述第一锁固轴体的径向宽度;当所述第一锁固组件锁固于所述套筒上,且所述第二锁固组件未锁固于所述套筒上时,所述第一锁固组件能通过所述第一缺口及所述第二缺口进入所述第一半开放穿孔及所述第二半开放穿孔中。
  3. 依据权利要求2所述的风扇吊架,其特征在于,所述风扇吊架适用于固定在一固定梁,所述风扇吊架还包含有一固持组件,所述固持组件包含:
    一辅助固定构件,其具有多个第一辅助长条穿孔及多个第二辅助长条穿孔,多个所述第一辅助长条穿孔彼此相邻地设置,多个所述第二辅助长条穿孔彼此相邻地设置;
    两个夹持构件,各个所述夹持构件包含一固定片体、一下夹持片体、一连接片体及一上夹持片体,所述下夹持片体由所述固定片体的一侧边向外延伸形成,所述下夹持片体与所述连接片体相连接,而所述连接片体相反于与所述下夹持片体相连接的一侧连接所述上夹持片体,所述上夹持片体、所述连接片体及所述下夹持片体共同形成有一夹持槽,所述夹持槽用以夹持所述固定梁;各个所述固定片体具有多个长条穿孔,各个所述长条穿孔贯穿所述固定片体;
    其中,所述第一支撑臂具有一第一抵靠片体,所述第一抵靠片体具有多个第一固定穿孔,所述第二支撑臂具有一第二抵靠片体,所述第二抵靠片体具有多个第二固定穿孔;
    其中,多个所述第一固定穿孔、多个所述第二固定穿孔、各个所述固定片体的多个所述长条穿孔及多个所述第一辅助长条穿孔能与多个所述锁固件相互配合,而多个所述锁固件能使两个所述支撑臂与两个所述夹持构件相互固定。
  4. 依据权利要求3所述的风扇吊架,其特征在于,所述风扇吊架还包含有多个辅助固定件,且各个所述下夹持片体具有多个辅助固定穿孔,多个所述辅助固定件用以与多个辅助固定穿孔相互锁固,而多个所述辅助固定件能与各个所述上夹持片体共同固持所述固定梁。
  5. 依据权利要求3所述的风扇吊架,其特征在于,各个所述夹持构件的所述固定片体、所述下夹持片体、所述连接片体及所述上夹持片体为一体成型地设置,且所述夹持构件的弯曲处的内侧凸出形成有多个加强结构。
  6. 依据权利要求2所述的风扇吊架,其特征在于,所述第一半开放穿孔的最低位置低于所述第一缺口的位置;所述第二半开放穿孔的最低位置低于所述第二缺口的位置;所述第一半开放穿孔与所述第一封闭穿孔是沿所述纵向方向上下排列设置,所述第二半开放穿孔与所述第二封闭穿孔是沿所述纵向方向上下排列设置;当所述套筒通过所述第一锁固组件及所述第二锁固组件与所述支撑构件相互固定,而所述套筒位于所述容置槽中时,所述第一侧片体及所述第二侧片体是对应位于所述套筒的左右两侧,且所述套筒的所述通道的中心轴是平行于所述纵向方向。
  7. 一种风扇装置,其特征在于,所述风扇装置包含:
    一风扇主体,其包含一固定轴及一转动单元,所述固定轴与所述转动单元相连接,所述转动单元与多个扇叶相连接;
    一支撑构件,其用以与多个锁固件配合而固定于所述结构体,所述支撑构件包含:
    一主片体;及
    两个侧片体,其连接所述主片体,两个所述侧片体彼此相面对地设置,且所述主片体与两个所述侧片体共同形成一容置槽,各个所述侧片体包含有一封闭穿孔及一半开放穿孔,所述封闭穿孔于所述侧片体的一侧边形成有一缺口;
    一套筒,其能对应设置于所述容置槽中,所述固定轴穿设于所述套筒的一通道,且所述套筒与所述风扇主体相互固定;
    至少两个锁固组件,其分别定义为一第一锁固组件及一第二锁固组件,所述第一锁固组件锁固于所述套筒,所述第一锁固组件能通过两个所缺口进入两个所述半开放穿孔中;所述第二锁固组件穿设于所述封闭穿孔并与所述套筒相互锁固;
    其中,各个所述半开放穿孔于一纵向方向或一横向方向的口径大于所述第一锁固轴体的径向宽度;各个所述封闭穿孔于所述纵向方向或所述横向方向的口径大于所述第二锁固轴体的径向宽度。
  8. 依据权利要求7所述的风扇装置,其特征在于,所述主片体彼此相反的两侧边分别定义为一第一侧边及一第二侧边;
    其中,两个所述侧片体分别定义为一第一侧片体及一第二侧片体,所述第一侧片体由所述主片体的所述第一侧边向外延伸形成,所述第一侧片体的所述半开放穿孔定义为一第一半开放穿孔,所述第一侧片体的所述封闭穿孔定义为一第一封闭穿孔,所述第一半开放穿孔及所述第一封闭穿孔贯穿所述第一侧片体设置;所述第一侧片体的所述缺口定义为一第一缺口;所述第一半开放穿孔于所述第一侧片体相反于与所述主片体相连接的一侧边形成有所述第一缺口,所述第一半开放穿孔能通过所述第一缺口与外连通;所述第一半开放穿孔位于所述第一封闭穿孔上方;
    其中,所述第二侧片体由所述主片体的所述第二侧边向外延伸形成,所述第二侧片体的所述半开放穿孔定义为一第二半开放穿孔,所述第二侧片体的所述封闭穿孔定义为一第二封闭穿孔,所述第二半开放穿孔及所述第二封闭穿孔贯穿所述第二侧片体设置,所述第二侧片体的所述缺口定义为一第二缺口,所述第二半开放穿孔于所述第二侧片体相反于与所述主片体相连接的一侧边形成有所述第二缺口,所述第二半开放穿孔能通过所述第二缺口与外连通;所述第二半开放穿孔位于所述第二封闭穿孔的上方;所述第一半开放穿孔及所述第二半开放穿孔位于彼此相对应的位置,所述第一缺口及所述第二缺口位于彼此相对应的位置,所述第一封闭穿孔及所述第二封闭穿孔位于彼此相对应的位置;
    其中,所述支撑构件还包含两个支撑臂,其分别定义为一第一支撑臂及一第二支撑臂,所述第一支撑臂由所述第一侧片体或是所述主片体的一侧边向外延伸形成,所述第二支撑臂由所述第二侧片体或是所述主片体的一侧边向外延伸形成;两个所述支撑臂用以与多个锁固件相互配合,以使所述支撑构件固定于所述结构体;
    其中,所述通道用以提供所述风扇主体的一固定轴穿设,所述套筒具有多个固定孔;多个所述固定孔用以与所述固定轴的多个轴体固定孔相互连通,而多个所述固定孔、多个所述轴体固定孔能与多个轴体固定组件相互配合,以使所述固定轴固定设置于所述通道中;所述套筒具有两个第一贯穿孔及两个第二贯穿孔,两个所述第一贯穿孔彼此相面对地设置,两个所述第二贯穿孔彼此相面对地设置;所述第一贯穿孔位于所述第二贯穿孔的上方;
    其中,所述第一锁固组件包含有所述第一锁固轴体及一第一螺帽,所述第一锁固轴体用以同时穿设所述第一半开放穿孔、两个所述第一贯穿孔及所述第二半开放穿孔,而所述第一锁固组件用以使所述套筒、所述第一侧片体及所述第二侧片体相互固定;
    其中,所述第二锁固组件包含有所述第二锁固轴体及一第二螺帽,所述第二锁固轴体用以同时穿设所述第一封闭穿孔、两个所述第二贯穿孔及所述第二封闭穿孔,而所述第二锁固组件用以使所述套筒、所述第一侧片体及所述第二侧片体相互固定;
    其中,所述第一缺口的口径不小于所述第一锁固轴体的径向宽度,且所述第二缺口的口径不小于所述第一锁固轴体的径向宽度;当所述第一锁固组件锁固于所述套筒上,且所述第二锁固组件未锁固于所述套筒上时,所述第一锁固组件能通过所述第一缺口及所述第二缺口进入所述第一半开放穿孔及所述第二半开放穿孔中。
  9. 依据权利要求8所述的风扇装置,其特征在于,所述风扇吊架适用于固定在一固定梁,所述风扇吊架还包含有一固持组件,所述固持组件包含:
    一辅助固定构件,其具有多个第一辅助长条穿孔及多个第二辅助长条穿孔,多个所述第一辅助长条穿孔彼此相邻地设置,多个所述第二辅助长条穿孔彼此相邻地设置;
    两个夹持构件,各个所述夹持构件包含一固定片体、一下夹持片体、一连接片体及一上夹持片体,所述下夹持片体由所述固定片体的一侧边向外延伸形成,所述下夹持片体与所述连接片体相连接,而所述连接片体相反于与所述下夹持片体相连接的一侧连接所述上夹持片体,所述上夹持片体、所述连接片体及所述下夹持片体共同形成有一夹持槽,所述夹持槽用以夹持所述固定梁;各个所述固定片体具有多个长条穿孔,各个所述长条穿孔贯 穿所述固定片体;
    其中,所述第一支撑臂具有一第一抵靠片体,所述第一抵靠片体具有多个第一固定穿孔,所述第二支撑臂具有一第二抵靠片体,所述第二抵靠片体具有多个第二固定穿孔;
    其中,多个所述第一固定穿孔、多个所述第二固定穿孔、各个所述固定片体的多个所述长条穿孔及多个所述第一辅助长条穿孔能与多个所述锁固件相互配合,而多个所述锁固件能使两个所述支撑臂与两个所述夹持构件相互固定。
  10. 依据权利要求9所述的风扇装置,其特征在于,所述风扇吊架还包含有多个辅助固定件,且各个所述下夹持片体具有多个辅助固定穿孔,多个所述辅助固定件用以与多个辅助固定穿孔相互锁固,而多个所述辅助固定件能与各个所述上夹持片体共同固持所述固定梁。
  11. 依据权利要求9所述的风扇装置,其特征在于,各个所述夹持构件的所述固定片体、所述下夹持片体、所述连接片体及所述上夹持片体为一体成型地设置,且所述夹持构件的弯曲处的内侧凸出形成有多个加强结构。
  12. 依据权利要求8所述的风扇装置,其特征在于,所述第一半开放穿孔的最低位置低于所述第一缺口的位置;所述第二半开放穿孔的最低位置低于所述第二缺口的位置;所述第一半开放穿孔与所述第一封闭穿孔是沿所述纵向方向上下排列设置,所述第二半开放穿孔与所述第二封闭穿孔是沿所述纵向方向上下排列设置;当所述套筒通过所述第一锁固组件及所述第二锁固组件与所述支撑构件相互固定,而所述套筒位于所述容置槽中时,所述第一侧片体及所述第二侧片体是对应位于所述套筒的左右两侧,且所述套筒的所述通道的中心轴是平行于所述纵向方向。
PCT/CN2019/088660 2019-05-27 2019-05-27 风扇吊架及风扇装置 WO2020237485A1 (zh)

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US6042072A (en) * 1999-06-11 2000-03-28 Chi-Nan; Wang Structure ceiling fan mount
TW526901U (en) * 2002-05-15 2003-04-01 Fanthing Electrical Corp Damping hanging ball for ceiling fan
KR20100011921U (ko) * 2009-05-29 2010-12-08 주식회사 팬직 작동이 개선된 천정용 선풍기의 선회구조
CN103410790A (zh) * 2013-08-19 2013-11-27 中山市奥美森工业有限公司 一种工业用吊扇
CN205533331U (zh) * 2016-01-19 2016-08-31 建准电机工业股份有限公司 吊扇、吊扇的吊架及其固定架
WO2017131506A1 (en) * 2016-01-29 2017-08-03 Panasonic Manufacturing Malaysia Berhad A ceiling fan
CN206409401U (zh) * 2016-12-07 2017-08-15 苏州典奇自动化科技有限公司 一种工业吊扇
CN206647287U (zh) * 2017-03-24 2017-11-17 浙江炜宇通风机电有限公司 一种防护型工业吊扇

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US6042072A (en) * 1999-06-11 2000-03-28 Chi-Nan; Wang Structure ceiling fan mount
TW526901U (en) * 2002-05-15 2003-04-01 Fanthing Electrical Corp Damping hanging ball for ceiling fan
KR20100011921U (ko) * 2009-05-29 2010-12-08 주식회사 팬직 작동이 개선된 천정용 선풍기의 선회구조
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CN205533331U (zh) * 2016-01-19 2016-08-31 建准电机工业股份有限公司 吊扇、吊扇的吊架及其固定架
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