Wild Animal Entry Prevention Fence

KR102999009B1Active Publication Date: 2026-08-03주식회사유한산업
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Patent Information

Application Number
KR1020240139584
Authority / Receiving Office
KR · KR
Patent Type
Patents
Current Assignee / Owner
Filing Date
2024-10-14
Publication Date
2026-08-03
Estimated Expiration
2044-10-14

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Abstract

The present invention relates to a fence for preventing wild animals from entering, and is a technology that prevents wild animals, such as snakes, from climbing the fence upward and entering the interior of the fence, while also enabling the wild animals to move away from the fence without remaining on it. Specifically, the main components include: a fence body (100) comprising an upper body (110) and a lower body (120) formed at the lower part of the upper body (110) and in contact with the ground; and a movement blocking part (200) forming a movement blocking space (230) by including a movement blocking upper surface (210) extending horizontally from the upper side of the lower body (120) and a movement blocking side surface (220) extending downward from the extended end of the movement blocking upper surface (210).
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Description

Technology Field

[0001] The present invention relates to a fence for preventing wild animals from entering, and is a technology that prevents wild animals, such as snakes, from climbing the fence upward and entering the interior of the fence, while also enabling the wild animals to move away from the fence without remaining on it. Background Technology

[0002] Patent Document 1 describes a first support plate having its upper portions hinge-connected so as to unfold or fold at a certain angle, wherein a second support plate is connected to one end in the longitudinal direction of the first support plate in the same shape as the first support plate, and the surfaces of the first and second support plates at one end are hinge-connected so as to be horizontally folded to one side, and the surfaces of the other end are connected by a connecting member so as to be separable, and the cross-sections of the first and second support plates corresponding to each other are hinge-connected so that the center of the surface can be folded inward; and an axial fixing plate part having one end rotatably axially connected to the surface of the first and second support plates at the upper surfaces of the ends of the first and second support plates corresponding to the support plate, and the other end being folded in two stages to fit and connect to a hook formed on the first and second support plates to provide a horizontal surface, and an axial hole formed to penetrate vertically through the horizontal surface. The present invention provides a technology comprising a pole that is vertically fixed at a certain height, with its lower end screw-coupled to the shaft hole of the shaft fixing plate portion provided in the first support plate and the second support plate, respectively, at mutually corresponding ends; and a pole coupling portion formed on the inner side of each zipper, wherein mutually corresponding zippers are connected to both ends, and the pole is vertically accommodated.

[0003] Patent Document 2 presents a technology in which a wire mesh is fixed by a fixing member between posts erected at regular intervals to form a fence, wherein an auxiliary wire mesh is attached to the bottom of the wire mesh, and a fixing member is fastened to the top and bottom sides of the auxiliary wire mesh to fix the auxiliary wire mesh to the wire mesh, and the fixing member fastened to the top side of the auxiliary wire mesh consists of a pair of cross-sectional semicircular rods with bolt holes drilled at regular intervals and a bolt fastened to the bolt holes.

[0004] Patent Document 3 presents a technology comprising: a switchboard equipped with a wildlife habitat prevention function that is provided in the switchboard housing to prevent wild animals, such as rats, moles, and snakes, inhabiting the area around the place where the switchboard is installed from intruding into the switchboard housing or approaching a predetermined area around the switchboard housing; an upper ultrasonic generating unit provided on one side of the upper part of the switchboard housing and receiving an ultrasonic signal of a predetermined frequency from the outside and generating it to the upper outer side of the switchboard housing; a lower rear ultrasonic generating unit provided on one side of the lower rear of the switchboard housing and receiving an ultrasonic signal of a predetermined frequency from the outside and generating ultrasonics to the lower rear outer side of the switchboard housing; and a lower front ultrasonic generating unit provided on one side of the lower front of the switchboard housing and receiving an ultrasonic signal of a predetermined frequency from the outside and generating it to the lower front outer side of the switchboard housing.

[0005] Patent Document 4 describes a blade having a long tubular sleeve formed to surround a branch wire at the center and fitted onto the outer circumference of the branch wire, with first and second vanes protruding along both sides along the length of the sleeve to cause vines or snakes to slide down when attempting to wrap up and to rotate by wind force around the branch wire; a track formed protruding with a constant width along both sides along the length of the sleeve, with a longitudinal groove formed on each outer side; at least one pole formed at regular intervals on the inner surface of each longitudinal groove, which spreads outward due to the elastic action of the track; and a ratchet formed protruding at regular intervals on the inner ends of the first and second vanes, which determines the position within the longitudinal groove of the track by the gripping action of the pole to adjust the installation width of the first and second vanes. The present invention provides a technology comprising: a holder that is fixed by being fitted onto the outer circumference of the branch line, has a support shaft formed at the upper center that is fitted into the lower hole of the sleeve, and has a contact surface formed at the lower circumference of the support shaft that contacts the sleeve to support the blade so that the blade can rotate. Prior art literature

[0006] (Patent Document 0001) KR 10-1353098 B1 (Registration Date January 13, 2014)(Patent Document 0002) KR 20-0404504 Y1 (Registration Date December 19, 2005)(Patent Document 0003) KR 10-2019-0098469 A (Publication Date August 22, 2019)(Patent Document 0004) KR 10-2688349 B1 (Registration Date July 22, 2024) The problem to be solved

[0007] The present invention relates to a fence for preventing wild animals from entering, and is a technology that prevents wild animals, such as snakes, from climbing the fence upward and entering the interior of the fence, while also enabling the wild animals to move away from the fence without remaining on it. means of solving the problem

[0008] The present invention relates to a fence for preventing wild animals from entering, comprising: a fence body (100) including an upper body (110) and a lower body (120) formed at the lower part of the upper body (110) and in contact with the ground; and a movement blocking part (200) forming a movement blocking space (230) by including a movement blocking upper surface (210) extending horizontally from the upper side of the lower body (120) and a movement blocking side surface (220) extending downward from the extended end of the movement blocking upper surface (210).

[0009] The present invention relates to a fence for preventing wild animals from entering, comprising a detection unit (300) that detects a wild animal entering the movement-blocking space (230) and obtains entry information, and a deterrent unit (400) that operates to move the wild animal downward from the movement-blocking space (230) using the entry information obtained from the detection unit (300).

[0010] The present invention relates to a fence for preventing wild animals from entering, wherein the detection unit (300) includes a sensor detection unit (310) formed as a motion sensor that detects the movement of a wild animal entering the movement-blocking space (230).

[0011] The present invention relates to a fence for preventing wild animals from entering, wherein the detection unit (300) comprises a contact detection unit (320) including a contact portion (321) formed such that both ends are fixed in the longitudinal direction within the movement blocking space (230), and a contact detection means (322) for detecting contact when a wild animal comes into contact with the contact portion (321).

[0012] The present invention relates to a fence for preventing wild animals from entering, wherein the repellent operation unit (400) includes an ultrasonic repellent operation unit (410) that generates ultrasonic waves into the movement blocking space (230).

[0013] The present invention relates to a fence for preventing wild animals from entering, wherein the repellent action unit (400) includes a vibration repellent action unit (420) that supplies force to the contact unit (321) to generate vibrations caused by the shaking of the contact unit (321). Effects of the invention

[0014] The present invention has the effect of easily preventing wild animals, such as snakes, from climbing the fence and moving upward to enter the fence. The present invention has the effect of easily inducing wild animals to move downward when they enter the fence. The present invention has the effect of easily obtaining entry information when wild animals enter the fence. The present invention has the effect of preventing wild animals from staying in the fence by using the entry information to move the wild animals away from the fence using one or more selected from sound, ultrasound, and vibration. The present invention has the effect of enabling efficient use of electrical energy by performing selective operations using the entry information. Brief explanation of the drawing

[0015] FIG. 1 is a perspective view of the wildlife entry prevention fence of the present invention. FIG. 2 is a front view of the wildlife entry prevention fence of the present invention. FIG. 3 is a cross-sectional view of the movement blocking part of the present invention. FIG. 4 is a conceptual diagram of the sensor detection unit and the ultrasonic repellent operation unit of the present invention. FIG. 5 is a conceptual diagram of the contact detection unit and the ultrasonic repellent operation unit of the present invention. FIG. 6 is another conceptual diagram of the contact detection unit and the ultrasonic repellent operation unit of the present invention. FIG. 7 is a conceptual diagram of the contact part of the present invention. FIG. 8 is a conceptual diagram of the contact detection unit and vibration suppression operation unit of the present invention. FIG. 9 is another conceptual diagram of the contact detection unit and vibration suppression operation unit of the present invention. FIG. 10 is another conceptual diagram of the contact detection unit and vibration suppression operation unit of the present invention. Specific details for implementing the invention

[0016] Hereinafter, the most preferred embodiment of the present invention is described in detail to enable a person skilled in the art to easily practice the present invention. The reference numbers of the embodiments are not limited to designated numbers, and all numbers may be accepted. The configurations presented in the embodiments may be extended to objects that produce the same purpose and effect. Sub-concepts of the configurations presented in the embodiments may be deemed implied even if they are not explicitly stated.

[0017] (Example 1-1) The present invention relates to a fence for preventing wild animals from entering, comprising: a fence body (100) including an upper body (110) and a lower body (120) formed at the lower part of the upper body (110) and in contact with the ground; and a movement blocking part (200) forming a movement blocking space (230) including a movement blocking upper surface (210) extending horizontally from the upper side of the lower body (120) and a movement blocking side surface (220) extending downward from the extended end of the movement blocking upper surface (210).

[0018] (Example 1-2) The present invention relates to a fence for preventing wild animals from entering. In Example 1-1, the fence body (100) is formed to have a certain length in the height direction and is fixed to the ground, and includes a fence body support member (130) that is coupled to the side of the upper body (110) and the lower body (120).

[0019] (Examples 1-3) The present invention relates to a fence for preventing wild animals from entering. In Example 1-1, the upper body (110) and the lower body (120) are formed in one or more selected from a closed shape, a mesh shape, and a shape including a through hole of a certain area.

[0020] (Examples 1-4) The present invention relates to a fence for preventing wild animals from entering. In Example 1-1, the upper movement blocking surface (210) and the side movement blocking surface (220) are formed in one or more shapes selected from a straight shape, a shape bent at a certain angle, and a shape curved at a certain curvature.

[0021] (Examples 1-5) The present invention relates to a fence to prevent wild animals from entering, wherein in Example 1-1, the upper body (110) and the lower body (120) are formed separately.

[0022] (Examples 1-6) The present invention relates to a fence for preventing wild animals from entering. In Example 1-1, the fence body (100) and the movement blocking part (200) are formed from one or more materials selected from plastic resin, glass fiber, steel, and wood.

[0023] Referring to FIGS. 1 to 3, the present invention relates to a fence for preventing wild animals from entering, and in particular, to a fence for preventing wild animals, including reptiles such as snakes and amphibians such as frogs, from entering by climbing over the fence.

[0024] The present invention includes a fence body (100) and a movement blocking part (200) formed on the fence body (100) to prevent wild animals from entering in an upward direction and to induce them to move in a downward direction.

[0025] The fence body (100) includes an upper body (110) and a lower body (120) formed at the bottom of the upper body (110) and in contact with the ground.

[0026] In addition, the fence body (100) is formed to have a certain length in the height direction and is fixed to the ground, and includes a fence body support part (130) that is combined with the side of the upper body (110) and the lower body (120).

[0027] The fence body support member (130) is fixed to the ground and combined with the side of the upper body (110) and the lower body (120), thereby supporting the upper body (110) and the lower body (120). Through this, even if the length of the upper body (110) and the lower body (120) increases to a certain length, the upper body (110) and the lower body (120) can be supported, allowing for the installation of a sturdy fence.

[0028] The upper body (110) and the lower body (120) may be formed in one or more shapes selected from a closed shape or a mesh shape including a through hole of a certain area. Of course, the through hole may be formed with a size that takes into account the size of wild animals to prevent entry.

[0029] The movement blocking part (200) includes a movement blocking upper surface (210) extending horizontally from the upper side of the lower body (120) and a movement blocking side surface (220) extending downward from the extended end of the movement blocking upper surface (210) to form a movement blocking space (230).

[0030] When a snake moves upward along the lower body (120) and enters the movement blocking space (230), the movement in the upward direction is blocked by the movement blocking upper surface (210), and the snake is guided to move downward along the movement blocking side (220), thereby preventing it from moving along the upper body (110) and entering the inside of the fence.

[0031] Accordingly, when the upper body (110) and the lower body (120) are formed in a mesh shape including a through hole, the entry of wild animals such as snakes can be prevented by the movement blocking part (200). Since the through hole of the upper body (110) can be formed larger than the through hole of the lower body (120), even if a fence is installed, the obstruction of the user's view can be reduced and a pleasant environment can be provided.

[0032] At this time, the upper movement blocking surface (210) and the side movement blocking surface (220) may be formed in one or more of the following shapes: a straight line shape, a shape bent at a certain angle, or a shape curved with a certain curvature. That is, the upper movement blocking surface (210) and the side movement blocking surface (220) are formed in various shapes so that when wild animals such as snakes enter the movement blocking space (230), they can be guided to move easily downwards.

[0033] In addition, since the upper body (110) and lower body (120) of the fence body (100) are formed separately, repair and replacement operations can be easily performed when repairing or replacing any one of the upper body (110), lower body (120), and movement blocking part (200).

[0034] In addition, the fence body (100) and the movement blocking part (200) may be formed from one or more materials selected from plastic resin, glass fiber, steel, and wood. It is preferable to form them from plastic resin or glass fiber, considering corrosion resistance and having a certain level of strength. Of course, they are not limited to these materials, and can be formed from various materials, such as wood or steel, or by including a coating agent such as paint.

[0035] (Example 2-1) The present invention relates to a fence for preventing wild animals from entering, and in Example 1-1, it includes a detection unit (300) that detects a wild animal entering the movement-blocking space (230) and obtains entry information, and a deterrent unit (400) that operates to move the wild animal downward from the movement-blocking space (230) using the entry information obtained from the detection unit (300).

[0036] (Example 2-2) The present invention relates to a fence for preventing wild animals from entering, wherein in Example 2-1, the repellent operation unit (400) is formed as a means for performing one or more operations selected from the generation of sound, the generation of ultrasonic waves, and the generation of vibrations.

[0037] (Example 2-3) The present invention relates to a fence for preventing wild animals from entering, and in Example 2-1, includes a control unit (500) that receives entry information from the detection unit (300) and controls the operation of the repellent operation unit (400).

[0038] (Example 2-4) The present invention relates to a fence for preventing wild animals from entering, and in Example 2-3, includes an electric energy supply unit (600) that supplies electric energy to one or more selected from the detection unit (300), the deterrent operation unit (400), and the control unit (500).

[0039] (Examples 2-5) The present invention relates to a fence for preventing wild animals from entering, and in Example 2-4, the electric energy supply unit (600) is formed to supply electric energy from an outdoor power line.

[0040] (Example 2-6) The present invention relates to a fence for preventing wild animals from entering, and in Example 2-4, the electric energy supply unit (600) is formed of one or more selected from a primary battery and a secondary battery.

[0041] Referring to FIGS. 4 to 6, the present invention includes a detection unit (300) that detects a wild animal entering a movement-blocking space (230) and obtains entry information, and a deterrent operation unit (400) that operates to prevent the wild animal from staying inside the movement-blocking space (230) and to move downward using the entry information obtained from the detection unit (300).

[0042] At this time, the repellent action unit (400) is formed to perform one or more selected actions among sound generation, ultrasonic generation, and vibration generation, thereby enabling wild animals to be repelled from the movement blocking space (230) by one or more selected actions among sound, ultrasonic, and vibration.

[0043] That is, the present invention can prevent wild animals such as snakes from moving upward by blocking the movement blocking part (200) so that they do not cross the fence body (100) and enter the fence, and by using the detection part (300) and the repellent operation part (400) to cause wild animals to move downward from the movement blocking space (230) during the summer when it is hot or the winter when it is cold, it can prevent wild animals from staying within the movement blocking space (230) and cause wild animals to move away from the fence body (100).

[0044] In addition, since the extermination operation unit (400) operates using entry information obtained by the detection unit (300), efficient use of electrical energy is possible through selective operation rather than continuous operation.

[0045] At this time, the present invention includes a control unit (500) that receives entry information from a detection unit (300) and controls the operation of a repellent operation unit (400).

[0046] In addition, the present invention includes an electric energy supply unit (600) formed to supply electric energy to one or more selected from the detection unit (300), the extermination operation unit (400), and the control unit (500) when electric energy is required for operation among the detection unit (300), the extermination operation unit (400), and the control unit (500).

[0047] The electric energy supply unit (600) may be formed to supply electric energy from an outdoor power line, and in preparation for the case where a fence is formed in a location where it is difficult to receive electric energy from an outdoor power line, the electric energy supply unit (600) may be formed with one or more selected from a primary battery and a secondary battery, thereby compensating for the constraints on the location where the fence of the present invention is installed.

[0048] (Example 3-1) The present invention relates to a fence for preventing wild animals from entering, and in Example 2-1, the detection unit (300) includes a sensor detection unit (310) formed as a motion sensor that detects the movement of a wild animal entering the movement-blocking space (230).

[0049] (Example 3-2) The present invention relates to a fence for preventing wild animals from entering, and in Example 3-1, the sensor detection unit (310) is formed as an infrared motion sensor.

[0050] (Example 3-3) The present invention relates to a fence for preventing wild animals from entering, and in Example 3-1, the sensor detection unit (310) is formed as an ultrasonic motion sensor.

[0051] (Example 3-4) The present invention relates to a fence to prevent wild animals from entering, and in Example 3-1, the sensor detection unit (310) is formed as a microwave motion sensor.

[0052] (Example 3-5) The present invention relates to a fence to prevent wild animals from entering, and in Example 3-1, the sensor detection unit (310) is formed as a tomographic motion sensor.

[0053] (Example 3-6) The present invention relates to a fence to prevent wild animals from entering, and in Example 3-1, the sensor detection unit (310) is formed as a vibration motion sensor.

[0054] Referring to FIG. 4, the detection unit (300) of the present invention may include a sensor detection unit (310) formed as a motion sensor that detects the movement of a wild animal entering the movement blocking space (230).

[0055] At this time, the sensor detection unit (310) may be formed of one or more selected from: an infrared motion sensor that detects fluctuations in infrared energy naturally emitted as heat; an ultrasonic motion sensor that detects by emitting sound waves and using sound waves reflected from an object; a microwave motion sensor (radar sensor) that detects by emitting microwave signals and using microwave signals reflected from an object; a tomographic motion sensor that detects by using disturbances between nodes including nodes formed in a distributed manner; and a vibration motion sensor that detects by using minute vibrations caused by movement.

[0056] (Example 4-1) The present invention relates to a fence for preventing wild animals from entering. In Example 2-1, the sensing unit (300) includes a contact sensing unit (320) comprising a contact portion (321) formed such that both ends are fixed in the longitudinal direction inside the movement blocking space (230), and a contact sensing means (322) for detecting when a wild animal comes into contact with the contact portion (321).

[0057] (Example 4-2) The present invention relates to a fence to prevent wild animals from entering, wherein in Example 4-1, the contact portion (321) is formed by at least one wire having a certain length and elasticity.

[0058] (Example 4-3) The present invention relates to a fence for preventing wild animals from entering, wherein in Example 4-1, the contact detection means (322) is formed at a certain distance from a selected position in the longitudinal direction of the contact portion (321) and includes a first contact detection means (322-1) for detecting contact resulting from the movement of the contact portion (321).

[0059] (Example 4-4) The present invention relates to a fence for preventing wild animals from entering, and in Example 4-3, the first contact detection means (322-1) is formed as a pair in the vertical direction based on the contact portion (321).

[0060] (Examples 4-5) The present invention relates to a fence for preventing wild animals from entering, and in Example 4-3, the first contact sensing means (322-1) is formed to surround the contact portion (321) in a circumferential direction.

[0061] (Example 4-6) The present invention relates to a fence for preventing wild animals from entering, wherein in Example 4-1, the contact detection means (322) is connected vertically to a position selected in the longitudinal direction of the contact portion (321) and includes a second contact detection means (322-2) that detects a change in length due to the movement of the contact portion (321).

[0062] (Example 4-7) The present invention relates to a fence for preventing wild animals from entering, wherein in Example 4-1, the contact detection part (320) includes a contact tension relaxation control part (323) formed at one end of the contact part (321) to control the tension relaxation of the contact part (321).

[0063] (Examples 4-8) The present invention relates to a fence for preventing wild animals from entering, and in Example 4-7, the contact tension relaxation control unit (323) is formed to control the selected end in the longitudinal direction of the contact unit (321) through winding and unwinding operations in the selected direction.

[0064] (Examples 4-9) The present invention relates to a fence for preventing wild animals from entering, wherein in Example 4-8, the contact tension relaxation control unit (323) includes one or more selected from an operation manually controlled by a user and an operation by a motor.

[0065] (Examples 4-10) The present invention relates to a fence for preventing wild animals from entering, and in Example 4-7, the contact tension relaxation control unit (323) is formed to include an elastic material coupled to a selected end in the longitudinal direction of the contact unit (321) and to be controlled by controlling the elastic value of the elastic material.

[0066] (Example 4-11) The present invention relates to a fence to prevent wild animals from entering, wherein in Example 4-10, the elastic material is formed as a spring.

[0067] Referring to FIGS. 5 and 6, the sensing unit (300) of the present invention is formed to have a certain length in the longitudinal direction inside the movement blocking space (230) and includes a contact part (321) formed so that both ends in the longitudinal direction are fixed, and a contact sensing unit (320) including a contact sensing means (322) that detects when a wild animal that has entered the movement blocking space (230) comes into contact with the contact part (321).

[0068] Unlike the sensor detection unit (310) described above, the contact detection unit (320) does not use a motion sensor that requires electrical energy, but detects only when a wild animal comes into contact with the contact unit (321) using the contact detection means (322), so it is possible to use electrical energy relatively efficiently compared to the sensor detection unit (310).

[0069] At this time, the contact portion (321) is preferably formed by at least one wire having a certain length and a certain elasticity, and by having a certain elasticity, when a wild animal comes into contact with the contact portion (321), the position of the contact portion (321) changes according to the force of the contact, thereby making it easier to perform the sensing operation of the tactile index means (322).

[0070] The contact detection means (322) is formed at a certain distance from a selected position along the longitudinal direction of the contact portion (321) and includes a first contact detection means (322-1) that detects contact resulting from the movement of the contact portion (321). That is, the first contact detection means (322-1) is formed at a certain distance from the contact portion (321), and when the contact portion (321) is moved and contacted by a wild animal, the entry of the wild animal can be detected through this.

[0071] As an example of the shape of the first contact detection means (322-1), it is formed as a pair in the vertical direction based on the contact portion (321), so that it can detect contact resulting from the vertical movement of the contact portion (321).

[0072] In another example of the shape of the first contact sensing means (322-1), it is formed to surround the contact portion (321) in a circumferential direction, so that it can detect contact resulting from movement in the left and right directions as well as the up and down directions of the contact portion (321).

[0073] In addition, the contact detection means (322) is connected vertically to a selected longitudinal position of the contact portion (321) and includes a second contact detection means (322-2) that detects vertical length changes resulting from the movement of the contact portion (321). That is, the second contact detection means (322-2) is formed by being connected vertically to the contact portion (321), and when the contact portion (321) is moved by a wild animal, the entry of the wild animal can be detected through the length change resulting therefrom.

[0074] To this end, the second contact sensing means (322-2) may be formed as a spring having a certain elasticity and capable of detecting a change in length accordingly. Of course, in addition to the spring, it is possible to form it as various means if it can easily detect a change in length caused by the movement of the contact part (321).

[0075] Additionally, referring to FIG. 7, the contact detection unit (320) includes a contact tension relaxation control unit (323) formed at one end of the contact unit (321) to control the tension relaxation of the contact unit (321).

[0076] As an example of a contact tension relaxation control unit (323), the contact tension relaxation control unit (323) is formed to control the tension relaxation of the contact unit (321) through a winding operation and an unwinding operation in the direction selected at the longitudinal end of the contact unit (321).

[0077] The contact tension release control unit (323) of the above-described configuration can be controlled to one or more of the following operations: a manually controlled operation in which the user rotates the handle in a selected direction to perform winding and unwinding operations, or a motor-driven operation in which the user rotates the handle in a selected direction to perform winding and unwinding operations.

[0078] As another example of a contact tension relaxation control unit (323), it may be formed to include an elastic material coupled to a longitudinally selected end of the contact unit (321) and controlled by controlling the elastic value of the elastic material.

[0079] The contact tension relaxation control unit (323) of the above-described configuration can control the tension relaxation of the contact unit (321) according to the change in length by attaching an elastic material formed as a spring capable of controlling the elastic value to a selected end in the longitudinal direction of the contact unit (321) and controlling the elastic value of the spring.

[0080] (Example 5-1) The present invention relates to a fence for preventing wild animals from entering, and in Example 2-1, the repellent operation unit (400) includes an ultrasonic repellent operation unit (410) that generates ultrasonic waves into the movement blocking space (230).

[0081] (Example 5-2) The present invention relates to a fence for preventing wild animals from entering, wherein in Example 5-1, the ultrasonic deterrent operating unit (410) is formed spaced apart from at least two others in the longitudinal direction of the movement blocking space (230).

[0082] Referring to FIGS. 4 to 6, the extermination operation unit (400) of the present invention includes an ultrasonic extermination operation unit (410) that generates ultrasonic waves into the movement blocking space (230).

[0083] The ultrasonic deterrent operation unit (410) detects when a wild animal enters the movement blocking space (230) through the detection unit (300), and performs the operation of generating ultrasonic waves to cause the wild animal to move from inside the movement blocking space (230) to outside through the control operation of the control unit (500) using the detected entry information.

[0084] The ultrasonic repellent operation unit (410) is formed with a single ultrasonic generating means that generates ultrasonic waves, and can generate ultrasonic waves into the movement blocking space (230). It can also be formed with at least two or more units spaced apart along the length of the movement blocking space (230), taking into account the size and length of the movement blocking space (230). By doing so, ultrasonic waves are generated evenly within the movement blocking space (230), so that wild animals can easily move out of the movement blocking space (230), regardless of where the wild animals are located.

[0085] (Example 6-1) The present invention relates to a fence for preventing wild animals from entering, and in Example 4-1, the repellent action part (400) includes a vibration repellent action part (420) that supplies force to the contact part (321) to generate vibrations according to the shaking of the contact part (321).

[0086] (Example 6-2) The present invention relates to a fence for preventing wild animals from entering, and in Example 6-1, the vibration deterrent operating part (420) includes a stroke vibration deterrent operating part (421) comprising a rod (421-1) coupled to the contact part (321) and a rod operating means (421-2) formed to move the rod (421-1) in an up-and-down stroke direction.

[0087] (Example 6-3) The present invention relates to a fence for preventing wild animals from entering, and in Example 6-1, the vibration deterrent operating part (420) comprises a first rotational vibration deterrent operating part (422) including a first rotational rotating part (422-1) formed to be axially rotatable and a first rotational interlocking part (422-2) formed to be engaged with the contact part (321) on the circumferential surface of the first rotational part (422-1).

[0088] (Example 6-4) The present invention relates to a fence for preventing wild animals from entering. In Example 6-1, the vibration deterrent operating part (420) comprises a second axis rotation part (423-1) formed to be axially rotatable, an axis rotation extension part (423-2) rotatably coupled from the second axis rotation part (423-1) and moved up and down in the direction of the contact part (321), and a second rotational vibration deterrent operating part (423) comprising a contact irregular part (423-3) formed to have a certain length and engage with the contact part (321) at a selected position in the longitudinal direction of the axis rotation extension part (423-2).

[0089] (Example 6-5) The present invention relates to a fence for preventing wild animals from entering, wherein in Example 6-4, the contact uneven portion (422-3) includes at least two uneven surfaces spaced apart in the longitudinal direction.

[0090] (Example 6-6) The present invention relates to a fence to prevent wild animals from entering, wherein in Example 6-4, the contact uneven portion (422-3) is formed to interlock in both directions with the contact portion (321).

[0091] Referring to FIGS. 8 to 10, the repellent operation unit (400) of the present invention includes a vibration repellent operation unit (420) that supplies force to the contact unit (321) to generate vibration caused by the shaking of the contact unit (321) so as to move wild animals out of the movement blocking space (230).

[0092] At this time, the vibration-repelling operation part (420) is coupled to the contact part (321) and includes a stroke vibration-repelling operation part (421) comprising a rod (421-1) formed to have a certain length in the vertical direction and a rod operation means (421-2) formed to move the rod (421-1) in a vertical stroke.

[0093] The stroke vibration suppression operation unit (421) supplies force to the contact unit (321) connected thereto by the repetitive stroke movement of the rod (421-1) in the up and down direction, and accordingly can generate vibration caused by the shaking of the contact unit (321) formed by a wire having a certain elasticity.

[0094] Additionally, the vibration-repelling operation unit (420) includes a first rotational vibration-repelling operation unit (422) comprising a first shaft rotation unit (422-1) formed to be axially rotatable and a shaft rotation engagement unit (422-2) formed to engage with a contact unit (321) on the circumferential surface of the first shaft rotation unit (422-1).

[0095] When the first rotational vibration counteracting operation part (422) rotates, the first shaft rotation part (422-1) can generate vibration caused by the shaking of the contact part (321), which is formed of a wire having a certain elasticity, by applying force through the shaft rotation interlocking part (422-2), which is formed on the circumferential surface of the first shaft rotation part (422-1) and formed as a tooth to interlock with the contact part (321).

[0096] At this time, the shaft rotation interlocking part (422-2) can be formed in a diagonal shape at a certain angle to allow for smooth rotation in the rotational direction.

[0097] In addition, the vibration-repelling operation unit (420) includes a second axis rotation unit (423-1) formed to be axially rotatable, an axis rotation extension unit (423-2) rotatably coupled from the second axis rotation unit (423-1) and moved up and down in the direction of the contact unit (321), and a second rotational vibration-repelling operation unit (423) comprising a contact irregularity unit (423-3) formed to have a certain length and engage with the contact unit (321) at a selected position in the longitudinal direction of the axis rotation extension unit (423-2).

[0098] When the second axis rotation part (423) rotates, the axis rotation extension part (423-2), which is rotatably coupled to the second axis rotation part (423-1), moves diagonally upward and downward, and by applying force through the contact irregular part (423-3), which is formed to engage with the contact part (321) with a certain length at a selected position in the longitudinal direction of the axis rotation extension part (423-2), vibration caused by the shaking of the contact part (321), which is formed with a wire having a certain elasticity, can be generated.

[0099] The contact uneven portion (423-3) includes at least two uneven surfaces spaced apart in the longitudinal direction, and supplies force to the contact portion (321) by means of the uneven surfaces to cause it to vibrate.

[0100] In addition, the contact uneven portion (423-3) is formed to interlock with the contact portion (321) in both directions. This prevents the contact portion (321) from detaching from the contact uneven portion (423-3).

[0101] As described above, the second rotational vibration suppression operation unit (423) can transmit force through the shaft rotation extension unit (423-2), thereby preventing the position of the second shaft rotation unit (423-1) from being restricted, and in particular, vibration can be generated even without forming the second shaft rotation unit (423-1) inside the movement blocking space (230), thus reducing the area occupied within the movement blocking space (230). Explanation of the symbols

[0102] 100 : Fence body 110 : Upper body 120 : Lower body 130 : Fence body support 200 : Movable blocking section 210 : Upper surface of movable blocking section 220 : Movement blocking side 230 : Movement blocking space 300 : Detector 310 : Sensor detection unit 320 : Contact detection unit 321 : Contact part 322 : Contact sensing means 322-1 : First contact detection means 322-2 : Second contact detection means 323 : Contact tension relaxation control unit 400 : Extermination Operation Unit 410 : Ultrasonic repellent operating unit 420 : Vibration suppression operating unit 421 : Stroke vibration damping operation unit 421-1 : Load 421-2 : Load operating means 422 : 1st rotational vibration damping operation unit 422-1 : First shaft rotation part 422-2 : Shaft rotation meshing part 423: Second rotational vibration suppression operating part' 423-1: Second axis rotation part 423-2 : Shaft rotation extension part 423-3 : Contact irregular part

Claims

Claim 1 A fence body (100) comprising an upper body (110) and a lower body (120) formed at the lower part of the upper body (110) and in contact with the ground; a movement blocking part (200) forming a movement blocking space (230) by including a movement blocking upper surface (210) extending horizontally from the upper side of the lower body (120) and a movement blocking side surface (220) extending downward from the extended end of the movement blocking upper surface (210); and a detection part (300) for detecting wild animals entering the movement blocking space (230) and obtaining entry information.The apparatus includes a deterrent operation unit (400) that operates to move wild animals downward from the movement blocking space (230) using entry information obtained from the detection unit (300), wherein the detection unit (300) includes a contact detection unit (320) comprising a contact part (321) formed so that both ends are fixed in the longitudinal direction inside the movement blocking space (230) and a contact detection means (322) that detects when a wild animal comes into contact with the contact part (321), and the deterrent operation unit (400) includes a vibration deterrent operation unit (420) that supplies force to the contact part (321) to generate vibrations according to the shaking of the contact part (321), and the contact detection means (322) is connected in the vertical direction to a selected position in the longitudinal direction of the contact part (321) and detects changes in length according to the movement of the contact part (321). It includes a second contact sensing means (322-2), and the contact sensing unit (320) includes a contact tension relaxation control unit (323) formed at one end of the contact unit (321) to control the tension relaxation of the contact unit (321), and the contact tension relaxation control unit (323) is formed to control the selected end of the contact unit (321) in the longitudinal direction through winding and unwinding operations in the selected direction, and the vibration damping operation unit (420) includes a second shaft rotation unit (423-1) formed to be rotatable, a shaft rotation extension unit (423-2) rotatably coupled from the second shaft rotation unit (423-1) and moving up and down in the direction of the contact unit (321), and is formed to engage with the contact unit (321) with a certain length at a selected position in the longitudinal direction of the shaft rotation extension unit (423-2). A wildlife entry prevention fence comprising a second rotational vibration deterrent operation part (423) including a contact uneven part (423-3), wherein the contact uneven part (423-3) includes at least two uneven surfaces spaced apart in the longitudinal direction, and wherein the contact uneven part (423-3) is formed to interlock in both directions with the contact part (321). Claim 2 delete Claim 3 delete Claim 4 delete Claim 5 delete Claim 6 delete