Mosquito cover for outdoor hammocks

The mosquito net for hammocks addresses penetration and instability issues by encasing the net on the hammock with support elements and fasteners, providing comprehensive protection and stability.

DE202025105546U1Active Publication Date: 2026-01-08JINYUN SENTU OUTDOORS EQUIPMENT CO LTD
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Patent Information

Application Number
DE202025105546
Authority / Receiving Office
DE · DE
Patent Type
Utility models
Current Assignee / Owner
Filing Date
2025-09-17
Publication Date
2026-01-08
Estimated Expiration
2035-09-30

AI Technical Summary

Technical Problem

Existing mosquito nets for hammocks are ineffective due to contact with the hammock surface, allowing mosquito penetration, restricted interior space, and instability leading to tipping over.

Method used

A mosquito net design encased on the hammock body with support elements and connecting fasteners creating a gap and rigid connection, ensuring stability and comprehensive protection.

Benefits of technology

Prevents mosquito bites and ground pests, maintains interior space, and stabilizes the hammock against tipping, enhancing user comfort and safety.

✦ Generated by Eureka AI based on patent content.

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Abstract

A mosquito net for outdoor hammocks, characterized in that it comprises a mosquito net (1) wherein the mosquito net (1) is encased on the outer perimeter of the hammock body (2); at least one support element (3) is fixedly connected to the mosquito net (1); several connecting and fastening elements (4) which are fixedly connected to the mosquito net (1) on one side and detachably connected to the hammock body (2) on the other; wherein at least one support element (3) is configured such that, when the mosquito net (1) is encased on the hammock body (2), it creates a gap between the mosquito net (1) and the hammock body (2) to prevent the mosquito net (1) from resting against the support surface of the hammock body (2);wherein the multiple connecting and fastening parts (4) detachably connect the mosquito cover (1) to the hammock body (2) via discrete connection points, and the connection points are distributed around the edge of the hammock body (2) to inhibit the lateral movement of the hammock body (2) relative to the mosquito cover (1) during connection.
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Description

Technical field

[0001] The present utility model relates to the technical field of outdoor equipment, in particular to a mosquito net for outdoor hammocks. State of the art

[0002] In scenarios like outdoor camping, hammocks are widely used due to their portability and comfort. This led to the development of mosquito nets for hammocks. The original design goal is to repel mosquitoes with the mesh-like cover, providing users with a restful environment free from mosquito disturbance.However, existing mosquito nets for hammocks are problematic in several aspects due to their design, impairing their effectiveness and safety: Firstly, existing mosquito nets are usually positioned above the hammock, meaning the bottom of the net is in contact with the hammock's surface over a large area, and the user's upper body comes into close contact with the net when lying on it. This allows mosquitoes to penetrate through the gaps and, due to insufficient mesh density or deformation of the net under pressure, to bite the user through the net, significantly reducing its essential mosquito protection function. Secondly, most existing mosquito nets maintain their shape solely through flexible suspension of the net, resulting in a low and narrow interior structure, similar to a "mosquito net bag".During normal movements like turning or sitting up, the cover is frequently touched, leading not only to a strong feeling of restriction but also to a complete loss of the relaxation experience one would expect from a hammock. At the same time, existing mosquito net covers and hammocks are usually simply attached or pulled over the hammock as a single unit, which can cause the hammock's center of gravity to shift as the user moves. In this case, the mosquito net cover cannot even help stabilize the hammock; instead, localized pulling forces could further shift the center of gravity, increasing the risk of the hammock tipping over and thus compromising the user's safety. Content of the present utility model

[0003] This utility model provides a mosquito net for outdoor hammocks to solve the aforementioned problems of background technology. To achieve the stated objective of this utility model, it employs the following technical solutions: A mosquito net for an outdoor hammock, characterized in that it comprises a mosquito net, wherein the mosquito net is encased on the outer circumference of the hammock body; at least one support element, and the support element is firmly connected to the mosquito net; several connecting and fastening elements, the connecting and fastening elements being firmly connected to the mosquito net and allowing a detachable connection to the hammock body; wherein at least one support element is configured such that, when the mosquito net is encased on the hammock body, it creates a gap between the mosquito net and the hammock body to prevent the mosquito net from resting against the contact surface of the hammock body;wherein the multiple connecting and fastening elements detachably connect the mosquito cover to the hammock body via discreet connection points, and the connection points are distributed around the edge of the hammock body to inhibit the lateral movement of the hammock body relative to the mosquito cover during connection.

[0004] Preferably, the number of support elements is two, arranged at a distance along the longitudinal direction of the hammock body.

[0005] Preferably, the two support parts divide the space into an expanded space corresponding to the central area of ​​the hammock body and two narrowed spaces corresponding to the end areas of the hammock body.

[0006] Preferably, the connecting and fastening part is a fastening clamp, one end of which is fixed to the support part and the other end of which can be clamped to or removed from the hammock body via a clamping head.

[0007] Preferably, the mosquito net comprises an upper mesh panel and a lower mesh panel, and a zipper mechanism for opening and closing is arranged between the upper and lower mesh panels. Preferably, the upper mesh panel is made of a waterproof, opaque, or transparent material.

[0008] Preferably, the lower power supply unit is made of an abrasion- and scratch-resistant mesh fabric.

[0009] Preferably, there are four connecting and fastening parts, each detachably connected to the four corners of the hammock body. Preferably, one end where the connecting and fastening part clamps the hammock body is a clamping head with a non-slip pattern. Preferably, at least one support part is configured as a rigid ring-shaped support frame or a rigid semicircular support frame.

[0010] The advantages of the present utility model compared to the prior art are as follows: The removable inner and outer sleeve structure of the mosquito net and hammock body, combined with the support provided by the stand, creates a consistent gap between the two, preventing them from pressing together due to their own weight or user pressure. This provides comprehensive protection against mosquitoes in the air as well as snakes, insects, and mice on the ground. The connecting and fastening elements (lightweight rigid clamps) located at the four corners of the hammock body create a rigid connection between the hammock body and the stand, limiting lateral movement and preventing the hammock from tipping over, thus increasing stability during use.The separate design of the upper and lower mesh panels, along with the selection of multiple materials (waterproof, lightproof, transparent, and abrasion-resistant fabric), combined with the mosquito net's 180° rotation around the hammock's axis, allows for adaptation to various weather conditions, such as rain protection on rainy days, sun protection on sunny days, and an unobstructed view. The semicircular mounting channel, designed for the semicircular support legs, allows these legs to be pulled out and removed. Once removed, the mosquito net can be folded completely flat, significantly reducing its packed size and improving portability.At the same time, the expanded space created by the support element corresponds to the main usable area of ​​the hammock, and ensures sufficient freedom of movement for the user to tip over and stand up, thus eliminating the feeling of confinement and improving comfort during use. Brief description of the drawings

[0011] The figures in the description, which form part of this application, are used to facilitate a better understanding of the present utility model. The illustrative embodiments of the present utility model and their descriptions are used to explain the utility model and do not constitute an unreasonable restriction of the present utility model. In the attached figures: Fig. is a three-dimensional schematic representation of the embodiment of the present utility model; Fig. shows an alternative three-dimensional schematic representation of the embodiment in Fig. ; Fig. shows a schematic representation of the folded state of the mosquito net for hammocks, which is in Fig. depicted embodiment; Fig. shows a schematic representation of the connection of the connecting fastening element of the in Fig. depicted embodiment; Fig. shows a three-dimensional schematic representation of a further embodiment of the present utility model; Fig. shows another three-dimensional schematic representation of the in Fig. depicted embodiment; Fig. shows a schematic structure diagram of the in Fig. depicted embodiment; Fig. shows a three-dimensional schematic representation of the support part of the in Fig. depicted embodiment; Fig. shows a three-dimensional schematic representation of a further embodiment of the present utility model;

[0012] Reference symbols: Mosquito cover for outdoor hammocks (10); Mosquito cover (1); Hammock body (2); Support part (3); Connecting and fastening part (4); Support frame (5); Upper mesh (11); Lower mesh (12); Mounting channel (31); Extended space (100); Restricted space (200); Shelter (300). Detailed description

[0013] The technical solution of this utility model is clearly and completely described below in conjunction with the drawings of the embodiments of this utility model. Obviously, the described embodiments are only some of the embodiments of this utility model and not all of them. The following description of at least one exemplary embodiment is purely illustrative and in no way intended to limit the utility model or its application or use. Based on the embodiments in this utility model application, all other embodiments derived by persons skilled in the art in this field without inventive step fall within the scope of protection of this utility model application.

[0014] It should be noted that the terms used herein serve only to describe specific embodiments and are not intended to limit the exemplary embodiments specified in this application. Unless otherwise defined in the context, the singular is also considered inclusive of the plural; furthermore, it should be understood that when the terms "comprises" and / or "including" are used in this description, this indicates the presence of features, steps, methods, devices, components, and / or combinations thereof. Unless otherwise specified, the relative arrangements, numerical expressions, and values ​​of the parts and steps described in these exemplary embodiments do not limit the scope of this utility model.At the same time, it should be noted that the dimensions of the individual parts shown in the drawings are not drawn according to actual proportions, in order to facilitate description. Technologies, methods, and equipment known to those skilled in related fields cannot be discussed in detail here, but where appropriate, they are to be considered part of the disclosure. In all the examples shown and discussed here, specific values ​​should be interpreted as illustrative only and not as limiting. Therefore, other exemplary embodiments may have different values. It should be noted that similar designations and letters in the following drawings represent similar elements, so that once an element is defined in one drawing, it need not be discussed further in subsequent drawings.

[0015] In light of the technical shortcomings of existing mosquito nets for hammocks—namely, that the floor rests lightly against the hammock's surface, thus negating its mosquito protection function; that it relies on a flexible suspension, which restricts the interior space and creates a feeling of confinement; and that the hammock is prone to tipping—this utility model provides a mosquito net for outdoor hammocks. This mosquito net achieves the integral functions of comprehensive protection, increased interior space, and tipping prevention through the combined structure of the net, hammock body, support elements, and connecting and fastening elements, as well as the separate construction of the upper and lower sections. The specific embodiment of the mosquito net for outdoor hammocks in this utility model is described in detail below, in conjunction with the accompanying illustrations.

[0016] As in the Fig. As shown, the present utility model comprises a mosquito cover 1, a hammock body 2, a support part 3, and a connecting and fastening part 4. The mosquito cover 1 is made of a high-mesh mosquito net fabric and is attached in a removable manner as an inner and outer cover to the outer circumference of the hammock body 2, and the length and width of the mosquito cover 1 correspond to the unfolded dimensions of the hammock body 2 to ensure that the hammock body 2 is completely enclosed by the mosquito cover 1 in the state of use and that no gaps in protection occur;The support element 3 is preferably a circular steel ring support frame with a predetermined stiffness, configured such that two groups are spaced apart along the longitudinal direction of the hammock body 2, and by bracing at the key support points on the inner or outer perimeter side of the mosquito cover 1, a uniformly distributed gap is formed between the mosquito cover 1 and the hammock body 2 - this gap can prevent the mosquito cover 1 and the hammock body 2 from pressing against each other due to their own weights or the pressure exerted by the user lying down, while at the same time providing the user with some leeway;The connecting and fastening parts 4, as core components for preventing tipping, are arranged in several groups and distributed accordingly at the force-balancing points of the hammock body 2 (preferably at the four corners of the hammock body 2), with one end being rigidly connected to the support part 3 and the other end being detachably connected to the hammock body 2. By establishing a rigid relationship between the hammock body 2 and the support part 3, the horizontal displacement of the hammock body 2 (the lateral direction of the hammock body 2 refers to the horizontal direction perpendicular to the longitudinal direction of the hammock body 2) is limited, thus keeping the hammock body 2 and the mosquito net 1 in a relatively stable state, which effectively reduces the risk of the hammock tipping over due to movements such as turning over or sitting down by the user.

[0017] In other embodiments (not shown), the support element 3 can be replaced by a support assembly consisting of several inflatable air beams. The inflated air beam is made of a wear-resistant elastic material and is equipped with a quick-inflate / deflate valve. In use, the air beam is inflated to a predetermined pressure using a hand pump or a small electric pump, so that the air beam exerts the necessary supporting force on the inner or outer circumferential side of the mosquito net 1 to create an expanded space 100 and a constricted space 200, similar to the circular steel rings described above. After the air is released, the air beam can quickly soften and fold flat, significantly reducing storage volume and facilitating transport.In addition, the inflated air beam has a certain buffering and deformation capability, so that when the user gets into bed or turns over, it can absorb some of the impact energy and slow down the impact transmission to improve the comfort of use and reduce the risk of injury from rigid metal parts for the user.

[0018] In the technical solution of the present utility model, see Fig. 2. After the hammock body 2 is assembled and suspended by the suspension ropes at both ends, the support element 3 acts on the mosquito net 1 in such a way that it provides support from the inner side of the mosquito net 1 outwards. This support arrangement allows the supporting force of the support element 3 to be distributed evenly around the perimeter of the mosquito net 1. Apart from the connection points at both ends of the mosquito net 1, which are arranged to relieve the hammock ropes, the top surface, the side surfaces, and the bottom surface of the mosquito net 1 remain at an effective distance from the hammock body 2, and this distance completely covers the area directly below the hammock body 2 (i.e., the space under the load-bearing surface of the hammock body 2).This spacing design prevents the mosquito cover 1 and the hammock body 2 from sagging due to their own weight or from making local contact due to the user's lying pressure, thus eliminating the risk of mosquitoes entering through the contact gap. Furthermore, by covering the hammock body 2 directly underneath, a closed protective zone is created that encompasses both the user's body area and the space beneath the hammock. This not only protects users from aerial mosquito bites but also prevents ground-based snakes, insects, mice, and ants from entering the protective zone along the underside of the hammock body 2, thus ensuring comprehensive protection for the user.

[0019] In the preferred embodiment of the present utility model, see Fig. 1. The mosquito net 1 is completely separated from the hammock body 2 by the support of the support part 3 (without any area of ​​local contact); To specifically solve the problem of the hammock body 2 tipping over, the connecting and fastening part 4 (see Fig. 4) Specifically, it is designed as four pieces, each positioned in accordance with the force application points at the four corners of the hammock body 2 (the corner points being the key support points for the lateral balance of the hammock body 2). The connecting and fastening part 4 adopts a clamp structure made of a lightweight and rigid material, one end of which forms a stable connection with the support part 3, while the other end forms a removable clamp connection with the hammock body 2 via a clamp with non-slip grooves. When clamped, the lateral displacement of the hammock body 2 can be limited by the frictional force between the clamp and the hammock body 2, as well as by the rigid boundary. To disassemble, the elastic element of the clamp head must be actuated, allowing for easy separation and storage of the mosquito net 1 and the hammock body 2.The synergistic effect of the four-corner fixing clamps creates a rigid equilibrium bond between the hammock body 2 and the support part 3, which effectively maintains the relatively stable state between the hammock body 2 and the mosquito net 1, and significantly reduces the risk of the hammock body 2 tipping over due to user movements and resulting in a shift in the center of gravity.

[0020] In other embodiments (not shown), the connecting and fastening part 4 can, in addition to the aforementioned retaining clips, also use flexible connecting parts to create a removable connection and lateral boundary between the mosquito net 1 and the hammock body 2. In particular, flexible ropes (such as nylon ropes, polyester ropes), flexible webbing (such as canvas webbing, synthetic fiber webbing), or flexible fabric webbing (such as highly abrasion-resistant cotton and linen webbing, compound synthetic fiber webbing) can be selected.One end of these flexible connecting and fastening elements is attached to designated connection points on the support section using double stitching, such as the hook rings around the outer circumference of the support section or the reinforced eyelets on the edge of the mosquito net. The other end is connected to the hammock body via a suitable detachable structure. For example, the flexible rope section is attached using a slip knot (double loops, butterfly knot), and the flexible strip or fabric band can be attached and detached using hook-and-loop fasteners, buttons, or adjustable eyelets. Regardless of the type of connecting and fastening elements used, a lateral bond can be created between the hammock body 2 and the mosquito net 1, effectively limiting horizontal movement of the hammock body 2 and ensuring its stability against falls.

[0021] In other embodiments (not shown in the drawing), a buffer damping device can also be incorporated into the connecting and fastening parts 4 to further reduce the instantaneous shocks caused by actions such as getting into bed, turning over, or sitting up by the user, and to reduce the probability of tipping over. In particular, a rubber disc, an elastic bushing, or a spring buffer structure can be arranged at the gripping end of each connecting and fastening part 4. This damping device causes energy absorption and delay in the clamping and force transmission path, thus inhibiting the lateral displacement velocity and the instantaneous acceleration of the hammock body 2 to achieve better protection against tipping over.

[0022] As in Fig. As shown, the distance between the mosquito net 1 and the hammock body 2 is the mosquito protection space. In particular, the support part 3 comprises two groups arranged in the longitudinal direction of the hammock body 2 at both ends of the hammock body 2, thereby dividing the mosquito protection space into an expanded space 100 in the middle and two narrowed spaces 200 on the two sides. The expanded space 100 corresponds to the main area of ​​use of the hammock body 2, i.e., the core area of ​​the user's activities. The mosquito net 1 around this area remains parallel to the hammock body 2 under uniform support by the support part 3, ensuring that the height and width of the expanded space 100 are evenly distributed along the length of the hammock and provide the user with a stable range of motion.The constricted spaces 200 correspond to the non-core usage areas at both ends of the hammock body 2. The mosquito net 1 in its vicinity tilts under the tensile force of the two groups of support parts 3 and its own tension and contracts towards the center of the hammock body 2, the angle of contraction being adapted to the support circle of the support part 3, thus forming the mosquito net space as a whole an integrated closed structure with 'a cylindrical expanded space 100 in the middle and two conical constricted spaces 200 on the two sides'.

[0023] As in Fig. As shown, the mosquito net 1 also includes an upper mesh 11 and a lower mesh 12, which are divided in the direction of height, and the opening and closing between the two is realized by a zipper structure (single-sided or double-sided zipper).The material of the upper cover 11 and the lower cover 12 can be selected independently depending on the application: For the upper cover 11, waterproof nylon fabric (suitable for rainy days to protect the hammock body 2 from rain), Oxford light-blocking fabric (suitable for bright environments to reduce light intensity inside the mosquito net 1 and increase relaxation comfort), or PVC transparent film (suitable for viewing purposes, allowing users to observe the outside environment) can be chosen; For the lower cover 12, highly abrasion-resistant, scratch-resistant mesh fabric (suitable for ground contact scenarios to extend its lifespan) is preferred. If the upper cover 11 and the lower cover 12 are made of different materials, the mosquito net 1 can be rotated 180° around the longitudinal axis of the hammock body 2.By adjusting the vertical position of the upper power supply 11 and the lower power supply 12, the material of the top can be adapted to the current weather (e.g., in sunshine the light-blocking material is turned upwards, in rain the waterproof material is turned upwards) to achieve a functional adaptation.

[0024] As in Fig. As shown, in the storage design for the circular steel ring support part 3, two groups of support parts 3 are each firmly connected to the reinforced fabric sheets at both ends of the mosquito net 1 to form a structural shape of "rigid support at both ends + flexible connection in the middle"; when the hammock needs to be folded, no disassembly of the support elements 3 is required, only the suspension lines at both ends of the hammock need to be removed, the two groups of steel ring support parts 3 serve as a reference point to fold the mosquito net 1 and the hammock body 2 lengthwise in the middle - the rigidity of the support parts 3 ensures that the folded shape remains stable, thus preventing the mosquito net 1 from becoming entangled with the hammock body 2.This not only makes tidying up and storage easier, but also ensures that the entire setup is free of tangles or knots when unfolded next time, thus improving usability.

[0025] Please see also Fig. 5, Fig. 6, Fig. 7 and Fig. 8. In other embodiments of the present utility model, the support element 3 can be a semicircular steel ring support frame to meet the requirements for lightweight outdoor storage. Accordingly, semicircular mounting channels 31 are arranged at both ends of the mosquito net 1 in its longitudinal direction, the mounting channels 31 being arranged in a circle around the outside of the mosquito net 1, and the support element 3 is guided through the mounting channel 31 and firmly connected to the mosquito net 1 to ensure that the mosquito net 1 is stably supported and forms the expanded space 100 and the constricted space 200.In this embodiment, the mosquito net also comprises an upper mesh panel 11 and a lower mesh panel 12, wherein the fabric of the upper mesh panel 11 and the lower mesh panel 12 may be the same or different. The upper mesh panel 11 and the hammock body 2 form an expanded space 100 and a narrowed space 200 to ensure that the user has sufficient freedom of movement during use and is not restricted by the mosquito net. The lower mesh panel 12, due to the weight of the net and the hammock body 2, forms a protective space 300 to prevent mosquito bites from the lower part of the hammock body 2 or from the ground. The storage method for the semicircular support part 3 is as follows: When it needs to be stored, the semicircular steel ring support part 3 can be pulled out of the mounting channel 31 and removed.After disassembly, the mosquito cover 1 can be completely folded, significantly reducing the storage volume and making it easier to carry and store.

[0026] In other embodiments (not shown in the drawing), several grooves or circumferential limit grooves are arranged on the outer circumference or in the cross-section of the semicircular steel ring support part 3 at both ends; accordingly, an engaging metal ring, plastic ring, or reinforcing strip is provided on the inner mounting channel of the mosquito net 1 or on the edge that comes into contact with the support part. During the installation process, the metal ring or reinforcing strip is inserted into the groove of the support part and advanced axially to the stop position to achieve a snap-fit ​​connection and positioning, preventing the support part from sliding or rotating relatively during use. This snap-fit ​​connection and positioning mechanism allows for tool-free assembly by simply snapping it into place.

[0027] In other embodiments (not shown in the image), the support element 3 can be constructed as a ring-shaped support frame made up of several parts. Each part is an independent curved component, and a removable connecting mechanism (e.g., latches, pins, or threaded connecting links) is provided between the adjacent parts. When in use, the individual sections are assembled and locked sequentially to form a complete round or semicircular support ring to achieve the supporting effect; when stored, the connecting mechanism simply needs to be unlocked to disassemble the ring body into several short sections, which significantly reduces the length of each section and facilitates insertion into standard-sized storage bags or backpacks.This multi-part construction makes it possible to adjust the support diameter as needed (by exchanging parts of different lengths) to accommodate different models or sizes of hammocks, thus improving the product's general applicability and modular maintenance advantages.

[0028] In other embodiments, such as in Fig.As shown, in scenarios where greater stability is required or installation at a great height is impractical (e.g., on a terrace or lawn with limited mounting points), a unified support frame 5 can be arranged as a common support structure for the hammock body 2 and the mosquito net 1. The support frame 5 is an independent frame made of metal or composite material, configured as an open support structure consisting of uprights at both ends and a crossbeam. The two ends of the hammock body 2 and the mosquito net 1 are attached to the crossbeam of the support frame 5 by suspension ropes to achieve unified, rigid support.The use of an independent support frame can avoid dependence on surrounding trees or existing suspension points; the support frame 5 can be designed to be foldable or demountable to facilitate transport and storage; for applications such as tent camping or platforms, the support frame 5 can also be designed to connect to ground pegs or weight modules for fixing, in order to improve wind resistance and lateral stability.

[0029] In summary, the present utility model solution achieves the following technical effects: The removable inner and outer shell structure of the mosquito net 1 and the hammock body 2, along with the support provided by the support elements 3, creates a uniform gap between the mosquito net 1 and the hammock body 2, directly beneath the hammock. This prevents the two from pressing against each other due to their own weight or user pressure, thus keeping out mosquito bites and preventing the entry of snakes, pests, and ants from the ground, providing comprehensive protection. The connecting fasteners 4 (lightweight, rigid clamps) located at the four corners of the hammock body 2 create a rigid connection between the hammock body 2 and the support element 3, limiting lateral movement of the hammock. This prevents the hammock from tipping over and improves stability during use.The separate design of the upper power supply 11 and the lower power supply 12, as well as the selection of different materials (waterproof / shading / transparent / wear-resistant materials), combined with the 180° rotation function of the mosquito cover 1 around the axis of the hammock, allows for adaptation to different weather conditions such as rain and sun protection as well as a view experience; the semicircular mounting channel 31, which is adapted to the semicircular support part 3, allows the semicircular support part to be removed and disassembled, enabling the mosquito cover 1 to be completely folded, which significantly reduces the storage volume and improves practical portability outdoors;At the same time, the extended space created by the support element 3 corresponds to 100 of the main usable area of ​​the hammock and ensures sufficient room for the user to turn around or stand up, thus eliminating the feeling of spatial confinement and increasing user comfort.

[0030] It should be understood that in the description of the present utility model, orientation terms such as "front, back, top, bottom, left, right", "horizontal, vertical, perpendicular, horizontal" and "top, bottom" simply serve to facilitate the description of the utility model and, in the absence of any statement to the contrary, do not indicate or imply that the device or element referred to must have a particular orientation or be designed and operated in a particular orientation, so that this cannot be understood as a limitation of the scope of protection of the present utility model; the terms "inside, outside" refer to the inside and outside of the outline of the respective parts.

[0031] For the sake of clarity, relative spatial terms such as "above...", "above...", "superficial to...", etc., can be used to describe the spatial relationship between a device or feature depicted in the image and other devices or features. It should be understood that these relative spatial terms also serve to exclude various orientations in use or operation that differ from the position depicted in the image. For example, if the device depicted in the drawings is turned upside down, an element described as "above another device or structure" or "over another device or structure" will then be positioned as "below or under another structure" or "under another device or structure." Therefore, the exemplary term "above..." can encompass both "above..." and "under..." as two positions.The device can also be positioned in other different ways (e.g. rotated by 90 degrees or in other positions), and the relative description of the space used here will be explained accordingly.

[0032] Furthermore, it should be noted that the use of terms such as "first," "second," etc., to delimit components serves solely to distinguish the respective components. Unless otherwise stated, these terms have no special meaning and should not be interpreted as limiting the scope of protection of this utility model.

[0033] The above description is only the preferred embodiment of the present utility model and is not used to limit the scope of the present utility model. To those skilled in the art, the present utility model may exhibit various changes and modifications. All changes, equivalent replacements, improvements, etc., made in the spirit and principle of the utility model are to be included in the scope of protection of the utility model.

Claims

[1] A mosquito net for outdoor hammocks, characterized bythat it comprises a mosquito net (1) wherein the mosquito net (1) is encased on the outer perimeter of the hammock body (2); at least one support element (3) is fixedly connected to the mosquito net (1); several connecting and fastening elements (4) which are fixedly connected to the mosquito net (1) on one side and detachably connected to the hammock body (2) on the other; wherein at least one support element (3) is configured such that, when the mosquito net (1) is encased on the hammock body (2), it creates a gap between the mosquito net (1) and the hammock body (2) to prevent the mosquito net (1) from resting against the support surface of the hammock body (2);wherein the multiple connecting and fastening parts (4) detachably connect the mosquito cover (1) to the hammock body (2) via discrete connection points, and the connection points are distributed around the edge of the hammock body (2) to inhibit the lateral movement of the hammock body (2) relative to the mosquito cover (1) during connection. [2] A mosquito net for outdoor hammocks according to claim 1, characterized by , that the number of support parts (3) is two, which are arranged at a distance along the longitudinal direction of the hammock body (2). [3] A mosquito net for outdoor hammocks according to claim 2, characterized by , that the two support parts (3) divide the space into an expanded space (100), which corresponds to the central area of ​​the hammock body (2), and two narrowed spaces (200), which correspond to the end areas of the hammock body (2). [4] A mosquito net for outdoor hammocks according to claim 1, characterized by , that the connecting and fastening part (4) is a fastening clamp, one end of which is fixed to the support part (3) and the other end of which can be clamped to or removed from the hammock body (2) via a clamping head. [5] A mosquito net for outdoor hammocks according to claim 1, characterized by , that the mosquito net (1) comprises an upper net (11) and a lower net (12), and that a zipper structure for opening and closing is arranged between the upper net (11) and the lower net (12). [6] A mosquito net for outdoor hammocks according to claim 5, characterized by , that the upper power supply (11) is made of one of the waterproof, opaque or transparent materials. [7] A mosquito net for outdoor hammocks according to claim 5, characterized by , that the lower power supply (12) is made of an abrasion- and scratch-resistant mesh fabric. [8] A mosquito net for outdoor hammocks according to claim 4, characterized by , that the number of connecting and fastening parts (4) is four, each of which is detachably connected to the four corners of the hammock body (2). [9] A mosquito net for outdoor hammocks according to claim 4, characterized by , that one end, at which the connecting and fastening part (4) clamps the hammock body (2), is a clamping head with a non-slip pattern. [10] A mosquito net for outdoor hammocks according to claim 1, characterized by , that at least one support element (3) is configured as a rigid annular support frame or rigid semicircular support frame.