WO2015145789A1 - Mosquito attracting and capturing device - Google Patents

Mosquito attracting and capturing device Download PDF

Info

Publication number
WO2015145789A1
WO2015145789A1 PCT/JP2014/064413 JP2014064413W WO2015145789A1 WO 2015145789 A1 WO2015145789 A1 WO 2015145789A1 JP 2014064413 W JP2014064413 W JP 2014064413W WO 2015145789 A1 WO2015145789 A1 WO 2015145789A1
Authority
WO
WIPO (PCT)
Prior art keywords
case
outside air
mosquito
capturing device
mosquitoes
Prior art date
Application number
PCT/JP2014/064413
Other languages
French (fr)
Japanese (ja)
Inventor
澄朋 栗橋
Original Assignee
株式会社ホンダアクセス
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
Priority claimed from JP2014062017A external-priority patent/JP6339392B2/en
Priority claimed from JP2014062045A external-priority patent/JP2015181430A/en
Priority claimed from JP2014061957A external-priority patent/JP6223885B2/en
Application filed by 株式会社ホンダアクセス filed Critical 株式会社ホンダアクセス
Publication of WO2015145789A1 publication Critical patent/WO2015145789A1/en

Links

Images

Classifications

    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01MCATCHING, TRAPPING OR SCARING OF ANIMALS; APPARATUS FOR THE DESTRUCTION OF NOXIOUS ANIMALS OR NOXIOUS PLANTS
    • A01M1/00Stationary means for catching or killing insects
    • A01M1/02Stationary means for catching or killing insects with devices or substances, e.g. food, pheronones attracting the insects
    • A01M1/023Attracting insects by the simulation of a living being, i.e. emission of carbon dioxide, heat, sound waves or vibrations
    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01MCATCHING, TRAPPING OR SCARING OF ANIMALS; APPARATUS FOR THE DESTRUCTION OF NOXIOUS ANIMALS OR NOXIOUS PLANTS
    • A01M1/00Stationary means for catching or killing insects
    • A01M1/06Catching insects by using a suction effect

Definitions

  • the present invention relates to a mosquito attracting and capturing device that sucks and captures mosquitoes attracted in the vicinity of the case.
  • a mosquito trapping device As a mosquito trapping device, there is known a mosquito attracting trapping device that attracts mosquitoes in the vicinity of the case and sucks and captures them in the case. There is a technique disclosed in Patent Document 1 as a conventional technique.
  • a mosquito attracting and capturing device includes titanium dioxide as a photocatalyst, an ultraviolet irradiation unit capable of irradiating the titanium dioxide with ultraviolet rays, a fan for sucking outside air from one end of the case, and a case A collection net that faces the other end of the mosquito and can collect mosquitoes sucked into the case by a fan.
  • the mosquito attracting and capturing device is used by irradiating titanium dioxide with ultraviolet rays and operating a fan.
  • active oxygen is generated. Due to this active oxygen, volatile organic compounds unavoidably present indoors and in the vehicle are oxidatively decomposed into carbon dioxide and water.
  • Mosquitoes have a habit of approaching carbon dioxide and water. That is, mosquitoes are attracted to the case by carbon dioxide and water. Mosquitoes attracted to the vicinity of the case are sucked into the case by a fan and collected by a collection net.
  • mosquitoes have the habit of moving away from the case when UV light is detected. For example, if ultraviolet rays leak outside the case, it is difficult to capture mosquitoes due to the ultraviolet rays. An attraction capture device that can capture more mosquitoes is desired.
  • An object of the present invention is to provide an attracting and capturing device that can capture more mosquitoes.
  • the case an ultraviolet irradiation unit capable of irradiating the photocatalyst accommodated in the case with ultraviolet rays, a suction unit for sucking outside air from one end of the case, and the other end of the case are exposed.
  • a mosquito attracting and capturing device configured with a collection unit capable of collecting mosquitoes sucked together with the outside air by the suction unit,
  • the case is provided with a mosquito attracting and capturing device, wherein the case is provided with a light shielding means for suppressing leakage of the ultraviolet rays from the case.
  • the light shielding means extends from one end of the case to the vicinity of the ultraviolet irradiation unit, and suppresses leakage of the ultraviolet light from one end of the case while allowing the outside air to flow into the case. It is comprised by the light-shielding plate.
  • At least a part of the light shielding plate that allows the outside air to flow in is formed by a tapered portion that is formed in a downward slope toward the inside of the case.
  • an opening for discharging the outside air sucked by the suction portion to the outside of the case is formed on a side surface portion of the case.
  • the light shielding means is constituted by a lattice-like louver attached to the opening and extending toward the inside of the case.
  • the collection unit is slidably attached to the case.
  • the case is provided with light shielding means for suppressing leakage of ultraviolet rays from the case.
  • the light shielding means suppresses the leakage of ultraviolet rays to the outside of the case.
  • Some types of mosquitoes have the habit of moving away from the case when ultraviolet rays are detected. By suppressing the leakage of ultraviolet rays to the outside of the case, mosquitoes having such behavior can also be attracted. Thereby, more mosquitoes can be captured.
  • the light shielding means is constituted by a light shielding plate extending from one end of the case to the vicinity of the ultraviolet irradiation section.
  • the leakage of ultraviolet rays can be suppressed with a simple configuration. Since the configuration is simple, an increase in component costs can be suppressed.
  • At least a part of the light shielding plate that allows inflow of outside air is formed by a tapered portion that is formed in a downward slope toward the inside of the case.
  • the light shielding means is constituted by a lattice-like louver extending toward the inside of the case.
  • the outside air can be easily discharged to the outside of the case while suppressing leakage of ultraviolet rays.
  • the collection unit capable of collecting mosquitoes is slidably attached to the case.
  • the collection unit is slid after a predetermined time has elapsed since the start of using the mosquito attracting and capturing apparatus. Thereby, the mosquitoes collected by the collection unit can be discarded. It is desirable that the collection unit can be kept clean.
  • FIG. 3 is an exploded view of the mosquito attracting and capturing device shown in FIG. 2. It is the figure which expanded 4 parts of FIG. It is a figure explaining the louver shown by FIG. It is a figure explaining the effect
  • FIG. 1 shows a mosquito attracting and capturing apparatus 10 (hereinafter simply referred to as “capturing apparatus 10”) according to the present invention.
  • the capture device 10 is mounted on a vehicle, for example, and is used to capture mosquitoes in the passenger compartment 11.
  • the capturing device 10 is operated by a battery stored in the battery box 20.
  • the capturing device 10 is a device that attracts mosquitoes in the vicinity of the case 50, sucks the attracted mosquitoes into the case 50 from the upper part of the case 50, and collects the sucked mosquitoes by the collecting unit 40.
  • the battery box 20 has a cigar socket 21.
  • the cigar socket 21 can be inserted into a cigar socket insertion port 12 provided in the passenger compartment.
  • the battery stored in the battery box 20 is charged by inserting the cigar socket 21 (male side) into the cigar socket insertion port 12 (female side).
  • the power cord 22 can be removed from the battery box 20.
  • the capture device 10 can be carried and used anywhere by removing the power cord 22 from the battery box 20. By changing the code 22, charging can be performed using the outlet in the house.
  • a converter can be built in the battery box 20 according to the usage state of the capture device 10.
  • a linear vibration generator that converts energy generated by vibration into electric energy may be incorporated in the battery box 20. In this case, charging can be performed by vibration during traveling of the vehicle 10.
  • the kinetic energy at the time of deceleration may be converted into electric energy and recovered, and this electric energy may be charged. In this case, it is desirable that the battery can be charged by the deceleration that inevitably occurs while the vehicle is running. 2 and 3, the capturing device 10 will be described in detail.
  • the capturing device 10 includes a battery box 20 in which a battery is stored, a base 30 fixed above the battery box 20, and a lower part of the base 30.
  • a collection unit 40 that is slidable and can collect mosquitoes
  • a cylindrical case 50 fixed to the upper part of the base 30, and a sirocco fan 70 (suction unit 70) supported by the case 50.
  • An ultraviolet irradiation unit 80 disposed above the wings 74a of the sirocco fan 70 and capable of irradiating ultraviolet rays inside the case 50, and a ring-shaped upper lid 90 that closes the upper end 50d (one end 50d) of the case 50.
  • a light shielding plate 100 (light shielding means 1) that extends from the inner periphery of the upper lid 90 to above the wings 74a of the sirocco fan 70 and suppresses leakage of ultraviolet rays toward the upper end 50d. 0), consisting of a louver 120 (light shielding means 120) which is fixed to an opening 50b formed in the side surface portion 50a of the case 50.
  • the base 30 is raised from the upper surface 20a of the battery box 20 and formed in a substantially U shape in plan view, and the upper surface 20a of the battery box 20 formed integrally with the upper portion of the leg portion 31.
  • the base lid portion 32 extends parallel to the base portion 32, and the projecting portion 33 extends upward from the upper end of the leg portion 31 and projects upward from the base lid portion 32.
  • the base lid portion 32 is provided with a communication hole 32 a that allows the inside of the base 30 to communicate with the inside of the case 50.
  • the case 50 is positioned by contacting the protruding portion 33.
  • the collection unit 40 is disposed on a tray-like main body 41 that opens upward, a handle 42 that is integrally formed with the main body 41 and can be gripped by an operator, and a bottom surface 41 a of the main body 41. It consists of the adhesive sheet 43 which has adhesiveness.
  • the position where the collection part 40 is arranged is substantially coincided with the communication hole 32a of the base 30 in the vertical direction.
  • the wall portion 41 b on the side where the handle 42 of the main body portion 41 is formed protrudes upward from the base lid portion 32.
  • the collection unit 40 can slide on the upper surface 20 a of the battery box 20.
  • the wall portion 41 b is in contact with the case 50 and the base lid portion 32 in the closed state of the collection unit 40. That is, the wall portion 41b protrudes upward from the base lid portion 32, so that the displacement of the collection portion 40 in the closing direction is restricted.
  • the base lid part 32 serves as a stopper for the collection part 40.
  • the pressure-sensitive adhesive sheet 43 is sticky to the extent that the collected mosquitoes are not blown, and a plurality of thin sheets are stacked.
  • the case 50 has a cylindrical shape.
  • the case 50 can be manufactured by casting or injection molding.
  • a plurality of bosses 51, 52, 53 are integrally formed in the case 50.
  • an opening 50b for discharging outside air sucked by the sirocco fan 70 to the outside is formed in the side surface 50a of the case 50.
  • the bosses 51, 52, 53 are formed so as to bulge from the side surface portion 50a of the case 50 toward the axis CL1 of the case 50.
  • Bolts 61, 62, and 63 are screwed to the bosses 51, 52, and 53, respectively.
  • bosses 51, 52, 53 are formed in the vicinity of the lower end portion 50 c (the other end portion 50 c) of the case 50 and are formed on the lower boss 51 for fixing the sirocco fan 70 and the upper end portion 50 d of the case 50.
  • the upper boss 52 for fixing 90 and the middle boss 53 formed inside the case 50 for fixing the ultraviolet irradiation unit 80 are included.
  • the sirocco fan 70 includes a support portion 71 fixed to the lower boss 51 by a bolt 61, a motor 72 fixed to the support portion 71, a bearing 73 attached to a motor shaft 72a of the motor 72, The fan main body 74 is supported by the motor 72 via the bearing 73, and the cap 75 is fixed to the upper portion of the fan main body 74 and faces the outside.
  • the support portion 71 has a hat shape protruding upward.
  • a bolt hole 71b through which the bolt 61 is inserted, and a mosquito dropping hole 71c for dropping the recovered mosquito formed below the fan main body 74 are formed in the collar portion 71a of the support portion 71. Yes.
  • a motor shaft hole 71e for inserting the motor shaft 72a is formed in the top portion 71d of the support portion 71.
  • the fan main body 74 is fixed to the upper part of the bearing 73 with bolts 64.
  • the fan main body 74 is rotatably provided by the motor 72.
  • a plurality of wings 74 a for sucking outside air into the case 50 and discharging the sucked outside air to the outside of the case 50 are fixed to the periphery of the fan main body 74.
  • the motor shaft 72a, the bearing 73, the fan main body 74, the bolt 64, and the cap 75 rotate integrally.
  • the support part 71 and the motor 72 do not rotate.
  • the upper part of the cap 75 has a substantially hemispherical shape.
  • the cap 75 is a rectifying member for smoothly flowing outside air into the case 50.
  • the ultraviolet irradiation unit 80 is a ring-shaped substrate 81 fixed to the middle boss 53, a light source 82 fixed to the lower surface 81a of the substrate 81 and capable of irradiating ultraviolet rays, and continuously covering these light sources 82.
  • the cover 83 is formed in a ring shape.
  • An LED is used as the light source 82 that generates ultraviolet rays.
  • an arbitrary light source such as a fluorescent lamp or a bulb can be adopted for the ultraviolet irradiation unit 80.
  • one ultraviolet irradiation part can also be comprised by two or more types of light sources.
  • the upper lid 90 has a ring shape and is fixed to the upper end portion 50d of the case 50 by bolts 62.
  • the upper lid 90 is disposed so as to be substantially perpendicular to the axis CL ⁇ b> 1 of the case 50.
  • the edge 90a on the inner peripheral side of the upper lid 90 is formed in a stepped shape with the lower part protruding to the inner peripheral side.
  • the light shielding plate 100 includes a horizontal portion 101 that continuously extends from the upper lid 90, a tapered portion 102 that is formed with a downward slope from the inner peripheral end of the horizontal portion 101 toward the axis CL1 of the case 50, and The vertical wall portion 103 is continuously suspended from the lower end of the tapered portion 102.
  • the horizontal portion 101 extends substantially perpendicular to the axis CL1 of the case 50.
  • An edge 101a on the outer peripheral side of the horizontal portion 101 is formed in a stepped shape with the upper part protruding to the outer peripheral side.
  • An outer peripheral edge 101 a of the horizontal portion 101 is placed on an upper portion of the inner peripheral edge 90 a of the upper lid 90.
  • the taper portion 102 overlaps the light source 82 in the direction along the axis line CL1 with the axis line CL1 of the case 50 as a reference. That is, the tapered portion 102 is formed above the light source 82.
  • the vertical wall portion 103 passes through the inner periphery of the substrate 81 of the ultraviolet irradiation unit 80 and extends to above the wings 74 a of the sirocco fan 70. The vertical wall portion 103 extends from above the light source 82 to below the light source 82.
  • titanium dioxide 111 (TiO 2 , photocatalyst 111) is applied to the outer peripheral surface 103 a of the vertical wall portion 103.
  • the titanium dioxide 111 is applied to the inner peripheral surface of the case 50 and each part of the sirocco fan 70 in addition to the outer peripheral surface 103 a of the vertical wall portion 103. That is, the titanium dioxide 111 is applied to the portion irradiated with the ultraviolet rays inside the case 50.
  • FIG. 5 shows an example of the configuration of the louver 120.
  • FIG. 5A shows a perspective view of the louver 120 in an exploded state.
  • FIG. 5B shows a perspective view of the louver 120.
  • the louver 120 is composed of a plurality of substantially rectangular vertical plates 121 and a plurality of substantially rectangular horizontal plates 122.
  • a plurality of slits 121 a and 122 a are formed in each of the vertical plate 121 and the horizontal plate 122.
  • the number of vertical slits 121 a formed in the vertical plate 121 is the same as the number of horizontal plates 122.
  • the number of horizontal slits 122 a formed in the horizontal plate 122 is the same as the number of vertical plates 121.
  • the depths of the slits 121a and 122a are substantially half of the plates 121 and 122, respectively. After these slits 121a and 122a are fitted together, they are pushed into each other. Thereby, as shown in FIG. 5B, a three-dimensional lattice-shaped louver 120 is formed.
  • the louver 120 can employ a cast product, an injection molded product, or the like in addition to such a configuration. That is, the louver 120 may be formed in a three-dimensional lattice shape, and is not limited to these configurations.
  • the axes of the support part 71, the motor 72, the bearing 73, the fan main body part 74, the bolt 64, the cap 75, the ultraviolet irradiation part 80, the upper lid 90, and the light shielding plate 100 coincide with the axis line CL ⁇ b> 1 of the case 50.
  • the axis CL1 of the case 50 can also be referred to as the respective axes of the support portion 71, the motor 72, the bearing 73, the fan main body portion 74, the bolt 64, the cap 75, the ultraviolet irradiation portion 80, the upper lid 90, and the light shielding plate 100.
  • the capture device 10 can attract mosquitoes by two methods. That is, it has two mosquito attracting parts.
  • the first attracting part Ph1 (attracting part Ph1) is composed of an ultraviolet irradiation unit 80 and titanium dioxide (reference numeral 111 in FIG. 4) irradiated with ultraviolet rays by the ultraviolet irradiation unit 80.
  • the second attracting part Ph2 (attracting part Ph2) includes an ultraviolet irradiation unit 80, an aluminum heat transfer member 112 fixed to the upper surface of the substrate 81 of the ultraviolet irradiation unit 80, and an upper end of the heat transfer member 112. And an upper lid 90 in contact with the upper lid 90.
  • the ultraviolet irradiation unit 80 is a member constituting each of the first and second attracting parts Ph1 and Ph2. The operation of these attracting parts Ph1 and Ph2 will be described in detail with reference to FIG.
  • FIG. 6 shows the capture device 10 in a working state.
  • the capture device 10 When the capture device 10 is operated, first, as indicated by an arrow (1), the motor shaft 72a of the motor 72 rotates and the light source 82 of the ultraviolet irradiation unit 80 is turned on.
  • the fan main body 74 When the motor shaft 72a rotates, the fan main body 74 also rotates. As indicated by the arrow (2), outside air is sucked into the case 50 from above the light shielding plate 100. The sucked outside air is discharged from the louver 120 to the outside of the case 50 as indicated by an arrow (3).
  • Titanium dioxide (reference numeral 111 in FIG. 4) is applied to the portion of the case 50 that is irradiated with ultraviolet rays. By turning on the light source 82, these portions are irradiated with ultraviolet rays.
  • active oxygen is generated. Due to this active oxygen, volatile organic compounds inevitably present in the vehicle are oxidatively decomposed into carbon dioxide and water. Carbon dioxide and water are discharged to the outside of the case 50 together with the sucked outside air.
  • Mosquitoes have a habit of approaching carbon dioxide and water. Mosquitoes are attracted to the vicinity of the case 50 by carbon dioxide and water existing in the vicinity of the case 50. This can be called attraction by the first attraction unit Ph1.
  • the light source 82 when the light source 82 is turned on, the light source 82 slightly generates heat. This heat is transmitted through the substrate 81 and the heat transfer member 112 and is transmitted to the upper lid 90. Heat is released from the upper lid 90 into the atmosphere. Mosquitoes have a habit of approaching heat. That is, the mosquito is attracted to the vicinity of the case 50 by the heat of the upper lid 90. For this reason, it is preferable that the ultraviolet irradiation unit 80 is appropriately combined with a bulb as a light source that emits a higher temperature. This can be called attraction by the second attraction part Ph2.
  • Mosquito attracted to the vicinity of the case 50 is sucked into the case 50 together with the outside air.
  • the mosquito sucked into the case 50 is cut by the rotating wings 74a and falls downward.
  • the fallen mosquito falls to the collection unit 40 from the mosquito drop hole 71c as indicated by the arrow (4).
  • the dropped mosquito is collected by the collection unit 40. According to such a capture device 10, the following effects can be obtained.
  • the case 50 is provided with a light shielding plate 100 that extends from the upper end 50d of the case 50 to the vicinity of the ultraviolet irradiation unit 80 and suppresses leakage of ultraviolet rays from the upper end 50d of the case 50.
  • the light shielding plate 100 suppresses leakage of ultraviolet rays to the outside of the case 50.
  • a lattice-shaped louver 120 extending toward the inside of the case 50 is attached to the opening 50b. With the louver 120 extending toward the inside of the case 50, leakage of ultraviolet rays to the outside of the case 50 can be suppressed while allowing the sucked outside air to pass therethrough.
  • Some types of mosquitoes have the habit of moving away from the case 50 when UV light is detected. By suppressing leakage of ultraviolet rays to the outside of the case 50, mosquitoes having such behavior can be attracted. Thereby, more mosquitoes can be captured.
  • leakage of some ultraviolet rays is suppressed by the light shielding plate 100.
  • the leakage of ultraviolet rays can be suppressed with a simple configuration. Since the configuration is simple, an increase in component costs can be suppressed.
  • louver 120 Furthermore, some of the leakage of ultraviolet rays is suppressed by the louver 120. Outside air can be easily discharged outside the case 50 while suppressing leakage of ultraviolet rays.
  • At least a part of the light shielding plate 100 that allows the inflow of outside air is configured by a tapered portion 102 that is formed in a downward slope toward the inside of the case 50.
  • the taper portion 102 overlaps the light source 82, and the vertical wall portion 103 extends from above the light source 82 to below the light source 82.
  • the collection unit 40 capable of collecting the mosquito M is slidably attached to the case 50. After a predetermined time has elapsed from the start of use of the mosquito trap 10, the collection unit 40 is slid. Thereby, the mosquito M collected by the collection unit 40 can be discarded. The collection unit 40 can be kept clean, which is desirable.
  • the recovery unit 40 has an adhesive sheet 43 disposed on the bottom surface 41 a of the main body 41. For this reason, the mosquito M collect
  • FIG. 8 shows a cross section of the main part of the capturing device according to the second embodiment.
  • the capturing device 10A according to the second embodiment is different from the capturing device according to the first embodiment (FIG. 2, reference numeral 10) in the direction in which the louver 120A (light shielding unit 120A) is directed.
  • FIG. 2 shows a cross section of the main part of the capturing device according to the second embodiment.
  • the capturing device 10A according to the second embodiment is different from the capturing device according to the first embodiment (FIG. 2, reference numeral 10) in the direction in which the louver 120A (light shielding unit 120A) is directed.
  • the louver 120A light shielding unit 120A
  • the louver 120A is disposed with its tip inclined toward the upper end portion (FIG. 2, reference numeral 50d) of the case 50 with reference to the axis CL2 perpendicular to the axis CL1 of the case 50. .
  • the louver 120A is arranged with its tip toward the vicinity of the site where the outside air and the mosquito suction port are formed. Even when such a louver 120A is used, a predetermined effect of the present invention can be obtained.
  • the carbon dioxide and water generated inside the case 50 can be blown out toward the upper end. Thereby, many mosquitoes can be attracted in the vicinity of the upper end. Since outside air and mosquitoes are sucked from the upper end side, more mosquitoes can be captured by attracting many mosquitoes near the suction port.
  • the louver 120A is disposed below the ultraviolet irradiation unit 80, and the tip thereof is disposed to be inclined toward the upper end side of the case 50 with respect to the axis CL2 perpendicular to the axis CL1 of the case 50. Yes. Leakage of ultraviolet rays to the outside of the case 50 is further suppressed by the louver 120A.
  • the capture device according to the present invention has been described as an example when mounted on a vehicle, it can be used in any place such as a house or outdoors.
  • the tip of the cord can be changed as appropriate, for example, to match a household outlet.
  • the capture device according to the present invention has been described based on an example in which a sirocco fan is used for the suction part.
  • an arbitrary blower such as a fan other than a sirocco fan or a blower can be used for the suction portion.
  • the capture device according to the present invention is suitable for capturing mosquitoes in the passenger compartment.

Abstract

A mosquito attracting and capturing device (10; 10A) is constituted of a case (50), an ultraviolet ray irradiation unit (80) that can irradiate ultraviolet rays on a photocatalyst (111) accommodated in this case (50), a suction unit (70) that sucks in outside air from one end part (50d) of the case (50), and a recovery unit (40) that faces the other end part (50c) of the case (50) and is capable of recovering mosquitoes ( ) sucked in with the outside air by the suction unit (70). The case (50) is provided with shielding means (100, 120; 120A) for suppressing leakage of ultraviolet rays from the case (50). The recovery unit (40) is attached slidably to the case (50).

Description

蚊の誘引捕獲装置Mosquito attracting device
 本発明は、ケース近傍に誘引した蚊を、ケース内に吸引して捕獲する蚊の誘引捕獲装置に関する。 The present invention relates to a mosquito attracting and capturing device that sucks and captures mosquitoes attracted in the vicinity of the case.
 蚊の捕獲装置として、ケース近傍に蚊を誘引し、ケース内に吸引して捕獲する、蚊の誘引捕獲装置が知られている。従来技術として特許文献1に開示される技術がある。 As a mosquito trapping device, there is known a mosquito attracting trapping device that attracts mosquitoes in the vicinity of the case and sucks and captures them in the case. There is a technique disclosed in Patent Document 1 as a conventional technique.
 特許文献1に示されるような、蚊の誘引捕獲装置は、光触媒としての二酸化チタンと、この二酸化チタンに紫外線を照射可能な紫外線照射部と、ケースの一端部から外気を吸引するファンと、ケースの他端部に臨みファンによってケース内に吸引された蚊を回収可能な回収ネットと、を有している。 As shown in Patent Document 1, a mosquito attracting and capturing device includes titanium dioxide as a photocatalyst, an ultraviolet irradiation unit capable of irradiating the titanium dioxide with ultraviolet rays, a fan for sucking outside air from one end of the case, and a case A collection net that faces the other end of the mosquito and can collect mosquitoes sucked into the case by a fan.
 蚊の誘引捕獲装置は、二酸化チタンに紫外線を照射すると共に、ファンを作動させることにより使用する。紫外線を二酸化チタンに照射すると、活性酸素が発生する。この活性酸素によって、室内や車内に不可避的に存在する揮発性有機化合物は、二酸化炭素や水に酸化分解される。蚊は、二酸化炭素や水に寄ってくる習性を有する。即ち、二酸化炭素や水によって蚊はケース近傍に誘引される。ケース近傍に誘引された蚊は、ファンによってケース内に吸引され、回収ネットによって回収される。 The mosquito attracting and capturing device is used by irradiating titanium dioxide with ultraviolet rays and operating a fan. When the titanium dioxide is irradiated with ultraviolet rays, active oxygen is generated. Due to this active oxygen, volatile organic compounds unavoidably present indoors and in the vehicle are oxidatively decomposed into carbon dioxide and water. Mosquitoes have a habit of approaching carbon dioxide and water. That is, mosquitoes are attracted to the case by carbon dioxide and water. Mosquitoes attracted to the vicinity of the case are sucked into the case by a fan and collected by a collection net.
 しかし、蚊の種類によっては、紫外線を感知するとケースから遠ざかる習性を有するものも存在する。例えば、ケース外に紫外線が漏れていると、この紫外線によって蚊の捕獲が困難になる。より多くの蚊を捕獲することができる誘引捕獲装置が望まれる。 However, some types of mosquitoes have the habit of moving away from the case when UV light is detected. For example, if ultraviolet rays leak outside the case, it is difficult to capture mosquitoes due to the ultraviolet rays. An attraction capture device that can capture more mosquitoes is desired.
特開2009-95257号公報JP 2009-95257 A
 本発明は、より多くの蚊を捕獲することができる誘引捕獲装置の提供を課題とする。 [0015] An object of the present invention is to provide an attracting and capturing device that can capture more mosquitoes.
 本発明によれば、ケースと、このケース内に収納された光触媒に紫外線を照射可能な紫外線照射部と、前記ケースの一端部から外気を吸引する吸引部と、前記ケースの他端部に臨み前記吸引部によって前記外気と共に吸引された蚊を回収可能な回収部と、により構成される蚊の誘引捕獲装置であって、
 前記ケースには、前記ケースからの前記紫外線の漏れを抑制する遮光手段が設けられていることを特徴とする蚊の誘引捕獲装置が提供される。
According to the present invention, the case, an ultraviolet irradiation unit capable of irradiating the photocatalyst accommodated in the case with ultraviolet rays, a suction unit for sucking outside air from one end of the case, and the other end of the case are exposed. A mosquito attracting and capturing device configured with a collection unit capable of collecting mosquitoes sucked together with the outside air by the suction unit,
The case is provided with a mosquito attracting and capturing device, wherein the case is provided with a light shielding means for suppressing leakage of the ultraviolet rays from the case.
 好ましくは、前記遮光手段は、前記ケースの一端部から前記紫外線照射部の近傍まで延び、前記ケース内への前記外気の流入を許容しつつ、前記ケースの一端部からの前記紫外線の漏れを抑制する遮光板によって構成される。 Preferably, the light shielding means extends from one end of the case to the vicinity of the ultraviolet irradiation unit, and suppresses leakage of the ultraviolet light from one end of the case while allowing the outside air to flow into the case. It is comprised by the light-shielding plate.
 好ましくは、前記遮光板のなかの、前記外気の流入を許容している部位は、少なくとも一部が、前記ケース内に向かって下がり勾配に形成されるテーパ部によって構成される。 Preferably, at least a part of the light shielding plate that allows the outside air to flow in is formed by a tapered portion that is formed in a downward slope toward the inside of the case.
 好ましくは、前記ケースの側面部には、前記吸引部によって吸引された前記外気が前記ケースの外方に排出される開口部が形成されており、
 前記遮光手段は、前記開口部に取り付けられ、前記ケースの内部に向かって延びる格子状のルーバーによって構成される。
Preferably, an opening for discharging the outside air sucked by the suction portion to the outside of the case is formed on a side surface portion of the case.
The light shielding means is constituted by a lattice-like louver attached to the opening and extending toward the inside of the case.
 好ましくは、前記回収部は、前記ケースに対して、スライド可能に取り付けられている。 Preferably, the collection unit is slidably attached to the case.
 本発明では、ケースには、ケースからの紫外線の漏れを抑制する遮光手段が設けられている。遮光手段によって、ケース外部への紫外線の漏れが抑制される。蚊の種類によっては、紫外線を感知するとケースから遠ざかる習性を有するものが存在する。ケース外部への紫外線の漏れを抑制することにより、このような習性を有する蚊も誘引することができる。これにより、より多くの蚊を捕獲することができる。 In the present invention, the case is provided with light shielding means for suppressing leakage of ultraviolet rays from the case. The light shielding means suppresses the leakage of ultraviolet rays to the outside of the case. Some types of mosquitoes have the habit of moving away from the case when ultraviolet rays are detected. By suppressing the leakage of ultraviolet rays to the outside of the case, mosquitoes having such behavior can also be attracted. Thereby, more mosquitoes can be captured.
 さらに、本発明では、遮光手段は、ケースの一端部から紫外線照射部の近傍まで延びる遮光板によって構成される。簡便な構成によって紫外線の漏れを抑制することができる。構成が簡便であるため、部品コストの上昇を抑制することができる。 Further, in the present invention, the light shielding means is constituted by a light shielding plate extending from one end of the case to the vicinity of the ultraviolet irradiation section. The leakage of ultraviolet rays can be suppressed with a simple configuration. Since the configuration is simple, an increase in component costs can be suppressed.
 さらに、本発明では、遮光板のなかの、外気の流入を許容している部位は、少なくとも一部が、ケース内に向かって下がり勾配に形成されるテーパ部によって構成される。遮光板の一部を下がり勾配とすることにより、蚊の誘引捕獲装置を大型化することなく、蚊を吸引可能な部位を広くすることができる。これにより、より多くの蚊を捕獲することができる。 Furthermore, in the present invention, at least a part of the light shielding plate that allows inflow of outside air is formed by a tapered portion that is formed in a downward slope toward the inside of the case. By making a part of the light-shielding plate have a downward slope, the mosquito attracting and capturing apparatus can be enlarged without increasing the size of the mosquito attracting and capturing device. Thereby, more mosquitoes can be captured.
 さらに、本発明では、遮光手段は、ケースの内部に向かって延びる格子状のルーバーによって構成される。紫外線の漏れを抑制しつつ、外気をケースの外部へ容易に排出することができる。 Furthermore, in the present invention, the light shielding means is constituted by a lattice-like louver extending toward the inside of the case. The outside air can be easily discharged to the outside of the case while suppressing leakage of ultraviolet rays.
 さらに、本発明では、蚊を回収可能な回収部は、ケースに対して、スライド可能に取り付けられている。蚊の誘引捕獲装置の使用開始から所定時間経過後に、回収部をスライドさせる。これにより、回収部に回収された蚊を廃棄することができる。回収部を清潔に保つことができ、望ましい。 Furthermore, in the present invention, the collection unit capable of collecting mosquitoes is slidably attached to the case. The collection unit is slid after a predetermined time has elapsed since the start of using the mosquito attracting and capturing apparatus. Thereby, the mosquitoes collected by the collection unit can be discarded. It is desirable that the collection unit can be kept clean.
本発明の実施例1による蚊の誘引捕獲装置の斜視図である。It is a perspective view of the mosquito attracting and capturing apparatus according to the first embodiment of the present invention. 図1に示された蚊の誘引捕獲装置を側方から見た状態の断面図である。It is sectional drawing of the state which looked at the mosquito attracting and capturing apparatus shown by FIG. 1 from the side. 図2に示された蚊の誘引捕獲装置の分解図である。FIG. 3 is an exploded view of the mosquito attracting and capturing device shown in FIG. 2. 図2の4部を拡大した図である。It is the figure which expanded 4 parts of FIG. 図2に示されたルーバーについて説明する図である。It is a figure explaining the louver shown by FIG. 図2に示された蚊の誘引捕獲装置の作用について説明する図である。It is a figure explaining the effect | action of the mosquito attracting and capturing apparatus shown by FIG. 図2に示された回収部について説明する図である。It is a figure explaining the collection | recovery part shown by FIG. 本発明の実施例2による蚊の誘引捕獲装置の要部が示された断面図である。It is sectional drawing by which the principal part of the mosquito attracting and capturing apparatus by Example 2 of this invention was shown.
 本発明の実施の形態を添付図に基づいて以下に説明する。
<実施例1>
Embodiments of the present invention will be described below with reference to the accompanying drawings.
<Example 1>
 図1には、本発明による蚊の誘引捕獲装置10(以下、単に「捕獲装置10」とする。)が示されている。捕獲装置10は、例えば、車両に搭載され、車室11内の蚊を捕獲するのに用いられる。 FIG. 1 shows a mosquito attracting and capturing apparatus 10 (hereinafter simply referred to as “capturing apparatus 10”) according to the present invention. The capture device 10 is mounted on a vehicle, for example, and is used to capture mosquitoes in the passenger compartment 11.
 捕獲装置10は、バッテリボックス20に収納されているバッテリによって作動される。捕獲装置10は、ケース50の近傍に蚊を誘引し、誘引された蚊をケース50の上部からケース50内に吸引し、吸引された蚊を回収部40によって回収する装置である。 The capturing device 10 is operated by a battery stored in the battery box 20. The capturing device 10 is a device that attracts mosquitoes in the vicinity of the case 50, sucks the attracted mosquitoes into the case 50 from the upper part of the case 50, and collects the sucked mosquitoes by the collecting unit 40.
 バッテリボックス20は、シガーソケット21を有している。このシガーソケット21は、車室に設けられたシガーソケット差込口12に差込可能である。バッテリボックス20に収納されているバッテリは、シガーソケット差込口12(雌側)に、シガーソケット21(雄側)を差し込むことにより充電される。 The battery box 20 has a cigar socket 21. The cigar socket 21 can be inserted into a cigar socket insertion port 12 provided in the passenger compartment. The battery stored in the battery box 20 is charged by inserting the cigar socket 21 (male side) into the cigar socket insertion port 12 (female side).
 なお、電源コード22は、バッテリボックス20から取り外すことが可能である。捕獲装置10は、電源コード22をバッテリボックス20から外すことにより、任意の場所に運び、使用することができる。コード22を変更することにより、家屋内の差込口を用いて充電を行うこともできる。また、捕獲装置10の使用状況に応じて、バッテリボックス20内にコンバータを内蔵することもできる。さらには、振動により発生するエネルギを電気エネルギに変換するリニア振動発電機を、バッテリボックス20内に内蔵してもよい。この場合には、車両10の走行中の振動によって、充電を行うことができる。さらに、減速時における運動エネルギを電気エネルギに変換して回収し、この電気エネルギを充電してもよい。この場合には、車両の走行中に不可避的に発生する減速によって、バッテリを充電することができ、望ましい。図2及び図3において、捕獲装置10を詳細に説明する。 The power cord 22 can be removed from the battery box 20. The capture device 10 can be carried and used anywhere by removing the power cord 22 from the battery box 20. By changing the code 22, charging can be performed using the outlet in the house. In addition, a converter can be built in the battery box 20 according to the usage state of the capture device 10. Furthermore, a linear vibration generator that converts energy generated by vibration into electric energy may be incorporated in the battery box 20. In this case, charging can be performed by vibration during traveling of the vehicle 10. Furthermore, the kinetic energy at the time of deceleration may be converted into electric energy and recovered, and this electric energy may be charged. In this case, it is desirable that the battery can be charged by the deceleration that inevitably occurs while the vehicle is running. 2 and 3, the capturing device 10 will be described in detail.
 図2及び図3に示されるように、捕獲装置10は、バッテリが収納されているバッテリボックス20と、このバッテリボックス20の上方に固定されている基台30と、この基台30の下部に対してスライド可能に設けられ蚊を回収可能な回収部40と、基台30の上部に固定されている円筒状のケース50と、このケース50によって支持されているシロッコファン70(吸引部70)と、このシロッコファン70の羽74aの上方に配置されケース50の内部において紫外線を照射可能な紫外線照射部80と、ケース50の上端部50d(一端部50d)を閉じているリング状の上蓋90と、この上蓋90の内周からシロッコファン70の羽74aの上方まで延び上端部50d側への紫外線の漏れを抑制する遮光板100(遮光手段100)と、ケース50の側面部50aに形成された開口部50bに固定されているルーバー120(遮光手段120)とからなる。 As shown in FIGS. 2 and 3, the capturing device 10 includes a battery box 20 in which a battery is stored, a base 30 fixed above the battery box 20, and a lower part of the base 30. On the other hand, a collection unit 40 that is slidable and can collect mosquitoes, a cylindrical case 50 fixed to the upper part of the base 30, and a sirocco fan 70 (suction unit 70) supported by the case 50. An ultraviolet irradiation unit 80 disposed above the wings 74a of the sirocco fan 70 and capable of irradiating ultraviolet rays inside the case 50, and a ring-shaped upper lid 90 that closes the upper end 50d (one end 50d) of the case 50. And a light shielding plate 100 (light shielding means 1) that extends from the inner periphery of the upper lid 90 to above the wings 74a of the sirocco fan 70 and suppresses leakage of ultraviolet rays toward the upper end 50d. 0), consisting of a louver 120 (light shielding means 120) which is fixed to an opening 50b formed in the side surface portion 50a of the case 50.
 基台30は、バッテリボックス20の上面20aから立ち上げられ平面視において略U字状に形成されている脚部31と、この脚部31の上部に一体的に形成されバッテリボックス20の上面20aに平行に延びる基台蓋部32と、脚部31の上端から一体的に上方に延び基台蓋部32よりも上方に突出している突出部33と、からなる。 The base 30 is raised from the upper surface 20a of the battery box 20 and formed in a substantially U shape in plan view, and the upper surface 20a of the battery box 20 formed integrally with the upper portion of the leg portion 31. The base lid portion 32 extends parallel to the base portion 32, and the projecting portion 33 extends upward from the upper end of the leg portion 31 and projects upward from the base lid portion 32.
 基台蓋部32には、基台30の内部をケース50の内部に連通させる連通孔32aが開けられている。ケース50は、突出部33に当接することにより、位置決めされている。 The base lid portion 32 is provided with a communication hole 32 a that allows the inside of the base 30 to communicate with the inside of the case 50. The case 50 is positioned by contacting the protruding portion 33.
 回収部40は、上方に向かって開口するトレー状の本体部41と、この本体部41に一体的に形成され操作者が掴むことのできる把手42と、本体部41の底面41a上に配置され粘着性を有する粘着シート43とからなる。 The collection unit 40 is disposed on a tray-like main body 41 that opens upward, a handle 42 that is integrally formed with the main body 41 and can be gripped by an operator, and a bottom surface 41 a of the main body 41. It consists of the adhesive sheet 43 which has adhesiveness.
 回収部40が配置される位置は、基台30の連通孔32aに対して、上下方向に略一致している。本体部41の把手42が形成されている側の壁部41bは、基台蓋部32よりも上方まで突出している。回収部40は、バッテリボックス20の上面20a上をスライド可能である。壁部41bは、回収部40の閉じ状態において、ケース50及び基台蓋部32に当接している。即ち、壁部41bが基台蓋部32よりも上方まで突出していることにより、回収部40の閉じ方向への変位が規制されている。さらに言い替えれば、基台蓋部32は、回収部40のストッパの役割を果たす。 The position where the collection part 40 is arranged is substantially coincided with the communication hole 32a of the base 30 in the vertical direction. The wall portion 41 b on the side where the handle 42 of the main body portion 41 is formed protrudes upward from the base lid portion 32. The collection unit 40 can slide on the upper surface 20 a of the battery box 20. The wall portion 41 b is in contact with the case 50 and the base lid portion 32 in the closed state of the collection unit 40. That is, the wall portion 41b protrudes upward from the base lid portion 32, so that the displacement of the collection portion 40 in the closing direction is restricted. In other words, the base lid part 32 serves as a stopper for the collection part 40.
 粘着シート43は、回収した蚊が飛ばされない程度に粘着性を有し、複数枚の薄いシートが重ねられてなる。 The pressure-sensitive adhesive sheet 43 is sticky to the extent that the collected mosquitoes are not blown, and a plurality of thin sheets are stacked.
 ケース50は、筒状を呈している。ケース50は、鋳造や射出成形によって製造することができる。ケース50には、複数のボス51,52,53が一体的に形成されている。加えて、ケース50の側面部50aには、シロッコファン70によって吸引された外気を外部に排出するための開口部50bが形成されている。 The case 50 has a cylindrical shape. The case 50 can be manufactured by casting or injection molding. A plurality of bosses 51, 52, 53 are integrally formed in the case 50. In addition, an opening 50b for discharging outside air sucked by the sirocco fan 70 to the outside is formed in the side surface 50a of the case 50.
 ボス51,52,53は、ケース50の側面部50aから、ケース50の軸線CL1に向かって膨出するようにして形成されている。ボス51,52,53には、それぞれボルト61,62,63が螺合されている。 The bosses 51, 52, 53 are formed so as to bulge from the side surface portion 50a of the case 50 toward the axis CL1 of the case 50. Bolts 61, 62, and 63 are screwed to the bosses 51, 52, and 53, respectively.
 これらのボス51,52,53は、ケース50の下端部50c(他端部50c)の近傍に形成されシロッコファン70を固定するための下部ボス51と、ケース50の上端部50dに形成され上蓋90を固定するための上部ボス52と、ケース50の内部に形成され紫外線照射部80を固定するための中部ボス53と、からなる。 These bosses 51, 52, 53 are formed in the vicinity of the lower end portion 50 c (the other end portion 50 c) of the case 50 and are formed on the lower boss 51 for fixing the sirocco fan 70 and the upper end portion 50 d of the case 50. The upper boss 52 for fixing 90 and the middle boss 53 formed inside the case 50 for fixing the ultraviolet irradiation unit 80 are included.
 シロッコファン70は、ボルト61によって下部ボス51に固定されている支持部71と、この支持部71に固定されているモータ72と、このモータ72のモータ軸72aに取り付けられている軸受73と、この軸受73を介してモータ72に支持されているファン本体部74と、このファン本体部74の上部に固定され外部に臨むキャップ75とからなる。 The sirocco fan 70 includes a support portion 71 fixed to the lower boss 51 by a bolt 61, a motor 72 fixed to the support portion 71, a bearing 73 attached to a motor shaft 72a of the motor 72, The fan main body 74 is supported by the motor 72 via the bearing 73, and the cap 75 is fixed to the upper portion of the fan main body 74 and faces the outside.
 支持部71は、上方に突出するハット形状を呈する。支持部71の鍔部71aには、ボルト61が挿通されるボルト孔71bと、ファン本体部74の下方に形成され回収された蚊を下方に落下させるための蚊落下孔71cとが形成されている。支持部71の頂部71dには、モータ軸72aを挿通するためのモータ軸孔71eが形成されている。 The support portion 71 has a hat shape protruding upward. A bolt hole 71b through which the bolt 61 is inserted, and a mosquito dropping hole 71c for dropping the recovered mosquito formed below the fan main body 74 are formed in the collar portion 71a of the support portion 71. Yes. A motor shaft hole 71e for inserting the motor shaft 72a is formed in the top portion 71d of the support portion 71.
 ファン本体部74は、軸受73の上部にボルト64によって固定されている。ファン本体部74は、モータ72によって回転可能に設けられている。ファン本体部74の周縁には、外気をケース50内部に吸引すると共に、吸引された外気をケース50外部に排出するための、複数の羽74aが固定されている。ファン本体部74が回転すると、遮光板100の上方から外気を取り込む。取り込まれた外気は、ルーバー120から外部に向かって排出される。 The fan main body 74 is fixed to the upper part of the bearing 73 with bolts 64. The fan main body 74 is rotatably provided by the motor 72. A plurality of wings 74 a for sucking outside air into the case 50 and discharging the sucked outside air to the outside of the case 50 are fixed to the periphery of the fan main body 74. When the fan main body 74 rotates, outside air is taken in from above the light shielding plate 100. The taken-in outside air is discharged from the louver 120 toward the outside.
 シロッコファン70の作動時には、モータ軸72a、軸受73、ファン本体部74、ボルト64、及びキャップ75が一体的に回転する。一方、支持部71及びモータ72は、回転しない。キャップ75の上部は、略半球形状を呈する。キャップ75は、外気をケース50内に円滑に流入させるための整流部材である。 During operation of the sirocco fan 70, the motor shaft 72a, the bearing 73, the fan main body 74, the bolt 64, and the cap 75 rotate integrally. On the other hand, the support part 71 and the motor 72 do not rotate. The upper part of the cap 75 has a substantially hemispherical shape. The cap 75 is a rectifying member for smoothly flowing outside air into the case 50.
 紫外線照射部80は、リング状を呈し中部ボス53に固定されている基板81と、この基板81の下面部81aに固定され紫外線を照射可能な光源82と、これらの光源82を連続的に覆いリング状に形成されているカバー83とからなる。紫外線を発生する光源82には、LEDが用いられている。 The ultraviolet irradiation unit 80 is a ring-shaped substrate 81 fixed to the middle boss 53, a light source 82 fixed to the lower surface 81a of the substrate 81 and capable of irradiating ultraviolet rays, and continuously covering these light sources 82. The cover 83 is formed in a ring shape. An LED is used as the light source 82 that generates ultraviolet rays.
 なお、紫外線照射部80には、LEDの他にも、蛍光灯やバルブ等任意の光源を採用することができる。また、1つの紫外線照射部を2種類以上の光源によって構成することもできる。 In addition to the LED, an arbitrary light source such as a fluorescent lamp or a bulb can be adopted for the ultraviolet irradiation unit 80. Moreover, one ultraviolet irradiation part can also be comprised by two or more types of light sources.
 上蓋90は、リング状を呈し、ケース50の上端部50dにボルト62によって固定されている。上蓋90は、ケース50の軸線CL1に対して略垂直に向けて配置されている。上蓋90の内周側の縁部90aは、下部が内周側に突出する階段状に形成されている。 The upper lid 90 has a ring shape and is fixed to the upper end portion 50d of the case 50 by bolts 62. The upper lid 90 is disposed so as to be substantially perpendicular to the axis CL <b> 1 of the case 50. The edge 90a on the inner peripheral side of the upper lid 90 is formed in a stepped shape with the lower part protruding to the inner peripheral side.
 遮光板100は、上蓋90から連続的に延びる水平部101と、この水平部101の内周側の端部からケース50の軸線CL1に向かって下がり勾配に形成されているテーパ部102と、このテーパ部102の下端から連続して垂下される縦壁部103とからなる。 The light shielding plate 100 includes a horizontal portion 101 that continuously extends from the upper lid 90, a tapered portion 102 that is formed with a downward slope from the inner peripheral end of the horizontal portion 101 toward the axis CL1 of the case 50, and The vertical wall portion 103 is continuously suspended from the lower end of the tapered portion 102.
 水平部101は、ケース50の軸線CL1に対して略垂直に延びる。水平部101の外周側の縁部101aは、上部が外周側に突出する階段状に形成されている。水平部101の外周側の縁部101aは、上蓋90の内周側の縁部90aの上部に載せられている。 The horizontal portion 101 extends substantially perpendicular to the axis CL1 of the case 50. An edge 101a on the outer peripheral side of the horizontal portion 101 is formed in a stepped shape with the upper part protruding to the outer peripheral side. An outer peripheral edge 101 a of the horizontal portion 101 is placed on an upper portion of the inner peripheral edge 90 a of the upper lid 90.
 テーパ部102は、ケース50の軸線CL1を基準として、軸線CL1に沿う方向において、光源82に重なっている。即ち、光源82の上方にテーパ部102が形成されている。縦壁部103は、紫外線照射部80の基板81の内周を通過し、シロッコファン70の羽74aの上方まで延びている。縦壁部103は、光源82よりも上方から光源82よりも下方まで延びている。 The taper portion 102 overlaps the light source 82 in the direction along the axis line CL1 with the axis line CL1 of the case 50 as a reference. That is, the tapered portion 102 is formed above the light source 82. The vertical wall portion 103 passes through the inner periphery of the substrate 81 of the ultraviolet irradiation unit 80 and extends to above the wings 74 a of the sirocco fan 70. The vertical wall portion 103 extends from above the light source 82 to below the light source 82.
 図4に示されるように、縦壁部103の外周面103aには、二酸化チタン111(TiO2、光触媒111)が塗布されている。図2も合わせて参照し、二酸化チタン111は、縦壁部103の外周面103aの他にも、ケース50の内周面やシロッコファン70の各部位にも塗布されている。即ち、ケース50内部の紫外線が照射される部位には、二酸化チタン111が塗布されている。 As shown in FIG. 4, titanium dioxide 111 (TiO 2 , photocatalyst 111) is applied to the outer peripheral surface 103 a of the vertical wall portion 103. Referring also to FIG. 2, the titanium dioxide 111 is applied to the inner peripheral surface of the case 50 and each part of the sirocco fan 70 in addition to the outer peripheral surface 103 a of the vertical wall portion 103. That is, the titanium dioxide 111 is applied to the portion irradiated with the ultraviolet rays inside the case 50.
 図5には、ルーバー120の構成の一例が示されている。図5(a)には、ルーバー120が分解された状態の斜視図によって示されている。図5(b)には、ルーバー120の斜視図が示されている。 FIG. 5 shows an example of the configuration of the louver 120. FIG. 5A shows a perspective view of the louver 120 in an exploded state. FIG. 5B shows a perspective view of the louver 120.
 図5(a)に示されるように、ルーバー120は、複数の略矩形の縦板121と、複数の略矩形の横板122とからなる。縦板121及び横板122のそれぞれには、複数のスリット121a,122aが形成されている。縦板121に形成されている縦スリット121aの数は、横板122の数と同じである。横板122に形成されている横スリット122aの数は、縦板121の数と同じである。スリット121a,122aの深さは、それぞれの板121,122の略半分とされている。これらのスリット121a,122a同士を嵌め合わせた上で、互いを押し込む。これにより、図5(b)に示されるように、立体格子状のルーバー120が形成される。 As shown in FIG. 5A, the louver 120 is composed of a plurality of substantially rectangular vertical plates 121 and a plurality of substantially rectangular horizontal plates 122. A plurality of slits 121 a and 122 a are formed in each of the vertical plate 121 and the horizontal plate 122. The number of vertical slits 121 a formed in the vertical plate 121 is the same as the number of horizontal plates 122. The number of horizontal slits 122 a formed in the horizontal plate 122 is the same as the number of vertical plates 121. The depths of the slits 121a and 122a are substantially half of the plates 121 and 122, respectively. After these slits 121a and 122a are fitted together, they are pushed into each other. Thereby, as shown in FIG. 5B, a three-dimensional lattice-shaped louver 120 is formed.
 なお、ルーバー120は、このような構成の他に、鋳造品や射出成形品などを採用することもできる。即ち、ルーバー120は、立体格子状に形成されていればよく、これらの構成に限られない。 In addition, the louver 120 can employ a cast product, an injection molded product, or the like in addition to such a configuration. That is, the louver 120 may be formed in a three-dimensional lattice shape, and is not limited to these configurations.
 図2に戻り、支持部71、モータ72、軸受73、ファン本体部74、ボルト64、キャップ75、紫外線照射部80、上蓋90、及び遮光板100の軸線は、ケース50の軸線CL1に一致している。即ち、ケース50の軸線CL1は、支持部71、モータ72、軸受73、ファン本体部74、ボルト64、キャップ75、紫外線照射部80、上蓋90、及び遮光板100のそれぞれの軸線ということもできる。 Returning to FIG. 2, the axes of the support part 71, the motor 72, the bearing 73, the fan main body part 74, the bolt 64, the cap 75, the ultraviolet irradiation part 80, the upper lid 90, and the light shielding plate 100 coincide with the axis line CL <b> 1 of the case 50. ing. That is, the axis CL1 of the case 50 can also be referred to as the respective axes of the support portion 71, the motor 72, the bearing 73, the fan main body portion 74, the bolt 64, the cap 75, the ultraviolet irradiation portion 80, the upper lid 90, and the light shielding plate 100. .
 捕獲装置10は、2つの方法により、蚊を誘引することができる。即ち、蚊の誘引部を2つ有する。第1の誘引部Ph1(誘引部Ph1)は、紫外線照射部80と、この紫外線照射部80により紫外線が照射される二酸化チタン(図4、符号111)とによって構成される。第2の誘引部Ph2(誘引部Ph2)は、紫外線照射部80と、この紫外線照射部80の基板81の上面に固定されているアルミニウム製の伝熱部材112と、この伝熱部材112の上端に接触している上蓋90とによって構成される。 The capture device 10 can attract mosquitoes by two methods. That is, it has two mosquito attracting parts. The first attracting part Ph1 (attracting part Ph1) is composed of an ultraviolet irradiation unit 80 and titanium dioxide (reference numeral 111 in FIG. 4) irradiated with ultraviolet rays by the ultraviolet irradiation unit 80. The second attracting part Ph2 (attracting part Ph2) includes an ultraviolet irradiation unit 80, an aluminum heat transfer member 112 fixed to the upper surface of the substrate 81 of the ultraviolet irradiation unit 80, and an upper end of the heat transfer member 112. And an upper lid 90 in contact with the upper lid 90.
 紫外線照射部80は、第1及び第2の誘引部Ph1,Ph2のそれぞれを構成する部材である。これらの誘引部Ph1,Ph2の作用については、図6において詳細に説明する。 The ultraviolet irradiation unit 80 is a member constituting each of the first and second attracting parts Ph1 and Ph2. The operation of these attracting parts Ph1 and Ph2 will be described in detail with reference to FIG.
 図6には、作動している状態の捕獲装置10が示されている。捕獲装置10を作動させると、まず、矢印(1)によって示されるように、モータ72のモータ軸72aが回転すると共に、紫外線照射部80の光源82が点灯する。 FIG. 6 shows the capture device 10 in a working state. When the capture device 10 is operated, first, as indicated by an arrow (1), the motor shaft 72a of the motor 72 rotates and the light source 82 of the ultraviolet irradiation unit 80 is turned on.
 モータ軸72aが回転すると、ファン本体部74も回転する。矢印(2)によって示されるように、遮光板100の上方から外気がケース50内に吸引される。吸引された外気は、矢印(3)によって示されるように、ルーバー120からケース50の外部へ排出される。 When the motor shaft 72a rotates, the fan main body 74 also rotates. As indicated by the arrow (2), outside air is sucked into the case 50 from above the light shielding plate 100. The sucked outside air is discharged from the louver 120 to the outside of the case 50 as indicated by an arrow (3).
 ケース50内部のなかの紫外線が照射される部位には、二酸化チタン(図4、符号111)が塗布されている。光源82が点灯されることにより、これらの部位には、紫外線が照射される。紫外線を二酸化チタンに照射すると、活性酸素が発生する。この活性酸素によって、車内に不可避的に存在する揮発性有機化合物は、二酸化炭素や水に酸化分解される。吸引された外気と共に、二酸化炭素や水は、ケース50の外部に排出される。蚊は、二酸化炭素や水に寄ってくる習性を有する。ケース50の近傍に存在する二酸化炭素や水によって、蚊は、ケース50近傍に誘引される。これは、第1の誘引部Ph1による誘引ということができる。 Titanium dioxide (reference numeral 111 in FIG. 4) is applied to the portion of the case 50 that is irradiated with ultraviolet rays. By turning on the light source 82, these portions are irradiated with ultraviolet rays. When the titanium dioxide is irradiated with ultraviolet rays, active oxygen is generated. Due to this active oxygen, volatile organic compounds inevitably present in the vehicle are oxidatively decomposed into carbon dioxide and water. Carbon dioxide and water are discharged to the outside of the case 50 together with the sucked outside air. Mosquitoes have a habit of approaching carbon dioxide and water. Mosquitoes are attracted to the vicinity of the case 50 by carbon dioxide and water existing in the vicinity of the case 50. This can be called attraction by the first attraction unit Ph1.
 さらに、光源82が点灯されることにより、光源82は、僅かに熱を発する。この熱は、基板81、伝熱部材112を伝わり、上蓋90に伝達される。熱は、上蓋90から大気中に放出される。蚊は、熱にも寄ってくる習性を有する。即ち、上蓋90の有する熱によって、蚊は、ケース50近傍に誘引される。このため、紫外線照射部80には、より高温を発する光源としてバルブを適宜組み合わせることが好ましい。これは、第2の誘引部Ph2による誘引ということができる。 Furthermore, when the light source 82 is turned on, the light source 82 slightly generates heat. This heat is transmitted through the substrate 81 and the heat transfer member 112 and is transmitted to the upper lid 90. Heat is released from the upper lid 90 into the atmosphere. Mosquitoes have a habit of approaching heat. That is, the mosquito is attracted to the vicinity of the case 50 by the heat of the upper lid 90. For this reason, it is preferable that the ultraviolet irradiation unit 80 is appropriately combined with a bulb as a light source that emits a higher temperature. This can be called attraction by the second attraction part Ph2.
 ケース50近傍に誘引された蚊は、外気と共にケース50内に吸引される。ケース50内に吸引された蚊は、回転している羽74aによって切断され、下方に落下する。落下した蚊は、矢印(4)によって示されるように、蚊落下孔71cから回収部40に落下する。落下した蚊は、回収部40によって回収される。このような捕獲装置10によれば、以下の効果を得ることができる。 Mosquito attracted to the vicinity of the case 50 is sucked into the case 50 together with the outside air. The mosquito sucked into the case 50 is cut by the rotating wings 74a and falls downward. The fallen mosquito falls to the collection unit 40 from the mosquito drop hole 71c as indicated by the arrow (4). The dropped mosquito is collected by the collection unit 40. According to such a capture device 10, the following effects can be obtained.
 ケース50には、ケース50の上端部50dから紫外線照射部80の近傍まで延び、ケース50の上端部50dからの紫外線の漏れを抑制する遮光板100が取り付けられている。遮光板100によって、ケース50外部への紫外線の漏れが抑制される。 The case 50 is provided with a light shielding plate 100 that extends from the upper end 50d of the case 50 to the vicinity of the ultraviolet irradiation unit 80 and suppresses leakage of ultraviolet rays from the upper end 50d of the case 50. The light shielding plate 100 suppresses leakage of ultraviolet rays to the outside of the case 50.
 さらに、開口部50bには、ケース50の内部に向かって延びる格子状のルーバー120が取り付けられている。ケース50の内部に向かって延びるルーバー120によって、吸引された外気の通過を許容しつつ、ケース50外部への紫外線の漏れを抑制することができる。 Furthermore, a lattice-shaped louver 120 extending toward the inside of the case 50 is attached to the opening 50b. With the louver 120 extending toward the inside of the case 50, leakage of ultraviolet rays to the outside of the case 50 can be suppressed while allowing the sucked outside air to pass therethrough.
 蚊の種類によっては、紫外線を感知するとケース50から遠ざかる習性を有するものが存在する。ケース50外部への紫外線の漏れを抑制することにより、このような習性を有する蚊も誘引することができる。これにより、より多くの蚊を捕獲することができる。 Some types of mosquitoes have the habit of moving away from the case 50 when UV light is detected. By suppressing leakage of ultraviolet rays to the outside of the case 50, mosquitoes having such behavior can be attracted. Thereby, more mosquitoes can be captured.
 このとき、一部の紫外線の漏れは、遮光板100によって抑制されている。簡便な構成によって紫外線の漏れを抑制することができる。構成が簡便であるため、部品コストの上昇を抑制することができる。 At this time, leakage of some ultraviolet rays is suppressed by the light shielding plate 100. The leakage of ultraviolet rays can be suppressed with a simple configuration. Since the configuration is simple, an increase in component costs can be suppressed.
 さらに、一部の紫外線の漏れは、ルーバー120によって抑制されている。紫外線の漏れを抑制しつつ、外気をケース50の外部へ容易に排出することができる。 Furthermore, some of the leakage of ultraviolet rays is suppressed by the louver 120. Outside air can be easily discharged outside the case 50 while suppressing leakage of ultraviolet rays.
 遮光板100のなかの、外気の流入を許容している部位は、少なくとも一部が、ケース50内に向かって下がり勾配に形成されるテーパ部102によって構成される。遮光板100の一部を下がり勾配とすることにより、捕獲装置10を大型化することなく、蚊を吸引可能な部位を広くすることができる。これにより、より多くの蚊を捕獲することができる。 At least a part of the light shielding plate 100 that allows the inflow of outside air is configured by a tapered portion 102 that is formed in a downward slope toward the inside of the case 50. By making a part of the light-shielding plate 100 into a downward slope, the part capable of sucking mosquitoes can be widened without increasing the size of the capture device 10. Thereby, more mosquitoes can be captured.
 特に、テーパ部102は、光源82に重なっており、且つ、縦壁部103は、光源82よりも上方から光源82よりも下方まで延びている。これにより、蚊を吸引可能な部位を特に広く確保することができると共に、より確実にケース50外部への紫外線の漏れを防止することができる。 Particularly, the taper portion 102 overlaps the light source 82, and the vertical wall portion 103 extends from above the light source 82 to below the light source 82. As a result, it is possible to secure a particularly wide site where mosquitoes can be sucked, and more reliably prevent leakage of ultraviolet rays to the outside of the case 50.
 図7に示されるように、蚊Mを回収可能な回収部40は、ケース50に対して、スライド可能に取り付けられている。蚊の捕獲装置10の使用開始から所定時間経過後に、回収部40をスライドさせる。これにより、回収部40に回収された蚊Mを廃棄することができる。回収部40を清潔に保つことができ、望ましい。 As shown in FIG. 7, the collection unit 40 capable of collecting the mosquito M is slidably attached to the case 50. After a predetermined time has elapsed from the start of use of the mosquito trap 10, the collection unit 40 is slid. Thereby, the mosquito M collected by the collection unit 40 can be discarded. The collection unit 40 can be kept clean, which is desirable.
 さらに、回収部40は、本体部41の底面41a上に粘着シート43が配置されている。このため、粘着シート43を剥がすのみで回収した蚊Mを廃棄することができる。さらには、粘着シート43は、複数枚の薄いシートが重ねられてなる。このため、粘着シート43を一度配置することにより、粘着シート43の張り替えを行うことなく、複数回の蚊Mの廃棄作業を行うことができる。
<実施例2>
Further, the recovery unit 40 has an adhesive sheet 43 disposed on the bottom surface 41 a of the main body 41. For this reason, the mosquito M collect | recovered only by peeling off the adhesive sheet 43 can be discarded. Furthermore, the adhesive sheet 43 is formed by stacking a plurality of thin sheets. For this reason, by disposing the adhesive sheet 43 once, the mosquito M can be discarded a plurality of times without replacing the adhesive sheet 43.
<Example 2>
 次に、本発明の実施例2を図面に基づいて説明する。図8には、実施例2による捕獲装置の要部が断面によって示されている。実施例2による捕獲装置10Aは、実施例1による捕獲装置(図2、符号10)に対して、ルーバー120A(遮光手段120A)の向けられている方向が異なる。その他については、実施例1による捕獲装置と同様であり、詳細な説明は省略する。さらに、実施例1と同様の構成要素については、符号を流用する。 Next, Example 2 of the present invention will be described with reference to the drawings. FIG. 8 shows a cross section of the main part of the capturing device according to the second embodiment. The capturing device 10A according to the second embodiment is different from the capturing device according to the first embodiment (FIG. 2, reference numeral 10) in the direction in which the louver 120A (light shielding unit 120A) is directed. About others, it is the same as that of the capture apparatus by Example 1, and detailed description is abbreviate | omitted. Furthermore, the code | symbol is diverted about the component similar to Example 1. FIG.
 図8に示されるように、ケース50の軸線CL1に対する垂直な軸CL2を基準として、ルーバー120Aは、先端がケース50の上端部(図2、符号50d)側に向けて傾けて配置されている。即ち、ルーバー120Aは、先端が外気及び蚊の吸い込み口が形成される部位の近傍に向けて配置されている。このようなルーバー120Aを用いた場合にも、本発明所定の効果を得ることができる。 As shown in FIG. 8, the louver 120A is disposed with its tip inclined toward the upper end portion (FIG. 2, reference numeral 50d) of the case 50 with reference to the axis CL2 perpendicular to the axis CL1 of the case 50. . In other words, the louver 120A is arranged with its tip toward the vicinity of the site where the outside air and the mosquito suction port are formed. Even when such a louver 120A is used, a predetermined effect of the present invention can be obtained.
 ケース50内部において発生させた二酸化炭素及び水を、上端部に向けて吹き出すことができる。これにより、上端部の近傍に多くの蚊を誘引することができる。上端部側から外気及び蚊が吸い込まれるため、吸い込み口の近傍に多くの蚊を誘引することにより、より多くの蚊を捕獲することができる。 The carbon dioxide and water generated inside the case 50 can be blown out toward the upper end. Thereby, many mosquitoes can be attracted in the vicinity of the upper end. Since outside air and mosquitoes are sucked from the upper end side, more mosquitoes can be captured by attracting many mosquitoes near the suction port.
 さらに、ルーバー120Aは、紫外線照射部80よりも下方に配置されていると共に、ケース50の軸線CL1に対する垂直な軸CL2を基準として、先端がケース50の上端部側に向けて傾けて配置されている。ケース50の外部へ紫外線が漏れることが、ルーバー120Aによってさらに抑制される。 Furthermore, the louver 120A is disposed below the ultraviolet irradiation unit 80, and the tip thereof is disposed to be inclined toward the upper end side of the case 50 with respect to the axis CL2 perpendicular to the axis CL1 of the case 50. Yes. Leakage of ultraviolet rays to the outside of the case 50 is further suppressed by the louver 120A.
 尚、本発明による捕獲装置は、車両に搭載された場合を例に説明したが、家屋や屋外など、任意の場所において使用することができる。この場合において、コードの先端部は、家庭用コンセントに合わせる等、適宜変更を行うことができる。 Although the capture device according to the present invention has been described as an example when mounted on a vehicle, it can be used in any place such as a house or outdoors. In this case, the tip of the cord can be changed as appropriate, for example, to match a household outlet.
 さらに、本発明による捕獲装置は、吸引部にシロッコファンを採用した例を元に説明を行った。しかし、吸引部には、シロッコファン以外のファンや、ブロア等、任意の送風機を採用することができる。 Furthermore, the capture device according to the present invention has been described based on an example in which a sirocco fan is used for the suction part. However, an arbitrary blower such as a fan other than a sirocco fan or a blower can be used for the suction portion.
 本発明による捕獲装置は、車室内の蚊を捕獲するのに好適である。 The capture device according to the present invention is suitable for capturing mosquitoes in the passenger compartment.
 10,10A…蚊の誘引捕獲装置
 40…回収部
 50…ケース
 50a…側面部
 50b…開口部
 50c…下端部(他端部)
 50d…上端部(一端部)
 70…シロッコファン(吸引部)
 80…紫外線照射部
 100…遮光板(遮光手段)
 102…テーパ部
 111…二酸化チタン(光触媒)
 120,120A…ルーバー(遮光手段)
 M…蚊
DESCRIPTION OF SYMBOLS 10,10A ... Attraction capture device of mosquito 40 ... Collection | recovery part 50 ... Case 50a ... Side part 50b ... Opening part 50c ... Lower end part (other end part)
50d ... Upper end (one end)
70 ... Sirocco fan (suction part)
80 ... UV irradiation unit 100 ... Shading plate (shading means)
102 ... Tapered portion 111 ... Titanium dioxide (photocatalyst)
120, 120A ... Louver (light shielding means)
M ... Mosquito

Claims (5)

  1.  ケースと、このケース内に収納された光触媒に紫外線を照射可能な紫外線照射部と、前記ケースの一端部から外気を吸引する吸引部と、前記ケースの他端部に臨み前記吸引部によって前記外気と共に吸引された蚊を回収可能な回収部と、により構成される蚊の誘引捕獲装置であって、
     前記ケースには、前記ケースからの前記紫外線の漏れを抑制する遮光手段が設けられていることを特徴とする蚊の誘引捕獲装置。
    A case, an ultraviolet irradiation unit capable of irradiating the photocatalyst accommodated in the case with ultraviolet rays, a suction unit for sucking outside air from one end of the case, and the outside air facing the other end of the case by the suction unit. A mosquito attracting and capturing device comprising a collection unit capable of collecting the mosquitoes sucked together,
    The mosquito attracting and capturing device, wherein the case is provided with a light shielding means for suppressing leakage of the ultraviolet rays from the case.
  2.  前記遮光手段は、前記ケースの一端部から前記紫外線照射部の近傍まで延び、前記ケース内への前記外気の流入を許容しつつ、前記ケースの一端部からの前記紫外線の漏れを抑制する遮光板によって構成される、請求項1記載の蚊の誘引捕獲装置。 The light shielding means extends from one end of the case to the vicinity of the ultraviolet irradiation unit, and allows the outside air to flow into the case while suppressing leakage of the ultraviolet light from the one end of the case. The mosquito attracting and capturing device according to claim 1, comprising:
  3.  前記遮光板のなかの、前記外気の流入を許容している部位は、少なくとも一部が、前記ケース内に向かって下がり勾配に形成されるテーパ部によって構成される請求項2記載の蚊の誘引捕獲装置。 3. The mosquito attraction according to claim 2, wherein at least a part of the light-shielding plate that allows inflow of outside air is configured by a tapered portion that is formed in a downward slope toward the inside of the case. Capture device.
  4.  前記ケースの側面部には、前記吸引部によって吸引された前記外気が前記ケースの外方に排出される開口部が形成されており、
     前記遮光手段は、前記開口部に取り付けられ、前記ケースの内部に向かって延びる格子状のルーバーによって構成される、請求項1記載の蚊の誘引捕獲装置。
    The side surface of the case is formed with an opening through which the outside air sucked by the suction portion is discharged to the outside of the case,
    The mosquito attracting and capturing device according to claim 1, wherein the light shielding means is configured by a lattice-like louver attached to the opening and extending toward the inside of the case.
  5.  前記回収部は、前記ケースに対して、スライド可能に取り付けられている、請求項1~請求項4のいずれか1項記載の蚊の誘引捕獲装置。 The mosquito attracting and capturing device according to any one of claims 1 to 4, wherein the recovery unit is slidably attached to the case.
PCT/JP2014/064413 2014-03-25 2014-05-30 Mosquito attracting and capturing device WO2015145789A1 (en)

Applications Claiming Priority (6)

Application Number Priority Date Filing Date Title
JP2014062017A JP6339392B2 (en) 2014-03-25 2014-03-25 Mosquito attracting device
JP2014-062017 2014-03-25
JP2014-062045 2014-03-25
JP2014062045A JP2015181430A (en) 2014-03-25 2014-03-25 Mosquito inducing and trapping device
JP2014-061957 2014-03-25
JP2014061957A JP6223885B2 (en) 2014-03-25 2014-03-25 Mosquito attracting device

Publications (1)

Publication Number Publication Date
WO2015145789A1 true WO2015145789A1 (en) 2015-10-01

Family

ID=54194370

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/JP2014/064413 WO2015145789A1 (en) 2014-03-25 2014-05-30 Mosquito attracting and capturing device

Country Status (2)

Country Link
TW (1) TWI594694B (en)
WO (1) WO2015145789A1 (en)

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US10021871B1 (en) * 2015-06-05 2018-07-17 Thomas Paul Cogley Mobile insect killing system
US10021869B1 (en) * 2015-06-05 2018-07-17 Thomas Paul Cogley Mosquito destructor system
US10091981B1 (en) * 2015-06-05 2018-10-09 Thomas Paul Cogley Flea destructor system
US10091980B1 (en) * 2015-06-05 2018-10-09 Thomas Paul Cogley Bed bug detector system
US10736309B1 (en) * 2018-11-27 2020-08-11 Thomas Paul Cogley Bed bug detector system
US11771073B2 (en) * 2018-02-16 2023-10-03 Maxtech Mosquito Control Inc. Mosquito control devices and systems

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2018230007A1 (en) * 2017-06-16 2018-12-20 シャープ株式会社 Blowing device

Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2006087371A (en) * 2004-09-24 2006-04-06 Asahi Sangyo Kk Method for trapping hematophagous mosquito and insect-trapping device used for the same method
JP2013039080A (en) * 2011-08-17 2013-02-28 Taiwan Sanhoken Kofun Yugenkoshi Multifunctional mosquito catcher

Family Cites Families (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
TWM403211U (en) * 2010-11-19 2011-05-11 Long City Co Ltd Mosquito trap
TWM424009U (en) * 2011-07-13 2012-03-11 Shivn Feng Entpr Co Ltd Insect trap for mosquito, fly and cockroach killing

Patent Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2006087371A (en) * 2004-09-24 2006-04-06 Asahi Sangyo Kk Method for trapping hematophagous mosquito and insect-trapping device used for the same method
JP2013039080A (en) * 2011-08-17 2013-02-28 Taiwan Sanhoken Kofun Yugenkoshi Multifunctional mosquito catcher

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US10021871B1 (en) * 2015-06-05 2018-07-17 Thomas Paul Cogley Mobile insect killing system
US10021869B1 (en) * 2015-06-05 2018-07-17 Thomas Paul Cogley Mosquito destructor system
US10091981B1 (en) * 2015-06-05 2018-10-09 Thomas Paul Cogley Flea destructor system
US10091980B1 (en) * 2015-06-05 2018-10-09 Thomas Paul Cogley Bed bug detector system
US11771073B2 (en) * 2018-02-16 2023-10-03 Maxtech Mosquito Control Inc. Mosquito control devices and systems
US10736309B1 (en) * 2018-11-27 2020-08-11 Thomas Paul Cogley Bed bug detector system

Also Published As

Publication number Publication date
TWI594694B (en) 2017-08-11
TW201536176A (en) 2015-10-01

Similar Documents

Publication Publication Date Title
WO2015145789A1 (en) Mosquito attracting and capturing device
JP6395891B2 (en) Blower
KR101649123B1 (en) Apparatus for expelling harmful insect using uv-led lamp
KR101349733B1 (en) Harmful insect grasping equipment
US8595894B1 (en) Hand-held pest vacuum
JP2015181430A (en) Mosquito inducing and trapping device
US7036269B1 (en) Multipurpose mosquito trap lamp
US9883666B1 (en) Flying insect trap
JP2007074908A (en) Insect-attracting apparatus and insect-capturing device
JPWO2019221014A1 (en) Attracting and capturing device for flying pests
JP6223885B2 (en) Mosquito attracting device
CA2688976A1 (en) Flying insect trap and method
KR20130115963A (en) Apparatus for trapping flying incert and interception
WO2022078507A1 (en) Mosquito killing device
JP6339392B2 (en) Mosquito attracting device
KR101393105B1 (en) Bug capturing device of air drop type
CN202566068U (en) Suction type insect capturing device
KR102052147B1 (en) Insect trap having air cleaning function
JPWO2011004782A1 (en) Insect lighting
KR20120108355A (en) Portable air filtering device
KR20030095513A (en) Mosquito repelling apparatus
CN210076389U (en) Multifunctional mosquito killing lamp
KR200426538Y1 (en) Mosquito extermination apparatus
KR20180016766A (en) Trapping device for separating manned by mosquitoes and flies
CN220476694U (en) Double-wind type deinsectization device and landscape lamp

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 14886995

Country of ref document: EP

Kind code of ref document: A1

NENP Non-entry into the national phase

Ref country code: DE

122 Ep: pct application non-entry in european phase

Ref document number: 14886995

Country of ref document: EP

Kind code of ref document: A1