Protective sleeve for plant branch

A detachable, breathable, and anti-ultraviolet protective sleeve for vine branches addresses the inefficiencies of existing frost protection methods by preventing rapid thawing and condensation, ensuring effective protection against frost, hail, and wind without energy use.

FR3159878A1Pending Publication Date: 2025-09-12PAHAUT VINCENT
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Patent Information

Application Number
FR2024002282
Authority / Receiving Office
FR · FR
Patent Type
Applications
Current Assignee / Owner
Filing Date
2024-03-07
Publication Date
2025-09-12

AI Technical Summary

Technical Problem

Existing frost protection methods for vines are complex, energy-intensive, costly, polluting, or ineffective in preventing bud damage from frost, rain, hail, and condensation, with potential for bud rot and excessive heating.

Method used

A detachable, breathable, and anti-ultraviolet protective sleeve for vine branches that uses air permeability to prevent rapid thawing and condensation, while blocking UV rays and providing physical protection against weather elements.

Benefits of technology

The sleeve effectively protects vine branches from frost, hail, and wind without energy consumption, reduces bud rot risk, and prevents excessive thawing, ensuring stable bud development for harvests.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to a detachable protective sleeve (1) for a plant branch (2), in particular for a vine branch, said sleeve (1) comprising a body (10) configured to be placed around said branch (2) and complementary fixing members (11) mounted on said body (10) and making it possible to fix the body (10) around said branch (2) in a detachable manner, said body (10) being permeable to air and comprising an anti-ultraviolet material. Figure for the abstract: Figure 2
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Description

Title of the invention: Protective sleeve for plant branch Technical field

[0001] The present invention relates to the field of agriculture and more particularly concerns a means of protecting plants, in particular vines. Prior art

[0002] It is important in the field of viticulture to protect vines from different types of risks that would threaten harvests and wine production.

[0003] Among these risks, that of frost is particularly important, especially in winter. Indeed, at this time of year, the buds begin to develop on the branches extending from the vines, called "astes", and in the event of low temperatures during the night, they can freeze. Frost, by damaging the cells of the plant, damages the buds to the point of eventually stopping their development. Without the normal development of the buds, the fruit harvest is reduced.

[0004] Many solutions to this problem have already been proposed.

[0005] For example, it is known to conventionally use candles placed in the rows of vines to warm the air and prevent frost. However, such a solution requires a long installation time, particularly because the candles have to be lit. In addition, the candle flames can go out, especially in strong winds, which can lead to freezing of the surrounding branches and buds.

[0006] In order to overcome these problems, other heating devices have been proposed. For example, document US4662105 proposes a device planted in the ground near the roots of a plant making it possible to use the energy of the ground irradiated by the heat near said plant. However, such a device does not make it possible to effectively protect the buds of vines from frost when the ground is too cold.

[0007] There are also gas heating devices, which provide hot air and prevent frost from forming, and solutions using electric heating cables, as described for example in documents FR2754672A1 or FR2687896A1. However, these devices are complex and time-consuming to install and consume a lot of energy to operate, which makes them particularly expensive. Gas solutions can also be significantly polluting.

[0008] The use of a helicopter or the use of anti-frost fan towers are also known and make it possible to sweep the air over the vines to warm them by a few degrees and thus avoid damage caused by frost. These solutions prove to be significantly complex and expensive to implement, due to the the cost of the helicopter flight or the electrical energy supplying the fans of the anti-freeze towers, and particularly polluting in the case of the helicopter due to the kerosene used.

[0009] Furthermore, passive protection solutions have been developed, based on sails, tarpaulins or panels to cover the vines. Given that these solutions have no active consumption (of electricity, fuel, etc.), they resolve some of the disadvantages of the aforementioned solutions.

[0010] For example, document US2022 / 0124988A1 describes a system of panels for protecting vines from rain, hail and wind while allowing sunlight to enter. However, this system does not prevent frost.

[0011] Document US2020 / 0045895A1 describes a growth chamber for a vine. This chamber consists of a tubular container flared in its upper part, arranged vertically, which protects the vine from the cold while concentrating solar energy. This device can, however, be time-consuming to install and expensive to manufacture. In addition, it does not protect the buds from rainwater or hail, which can damage them when falling or cause moisture to accumulate in the container, which can lead to bud rot. Finally, the concentration of solar rays can cause excessive heating of the vine, which can damage it.

[0012] Another solution described in document CH 180600 consists of using a veil positioned around a vertical stake and on the vine. This veil is made of transparent, flexible and waterproof material and is placed over the part of the plant to be protected in the manner of a dress. Thus, the plant is heated by sunlight, the veil does not damage the buds and the plant is substantially protected from rainwater, hail and frost.

[0013] However, with this solution, the plant does not breathe and condensation can form inside the veil, which can lead to rotting of the plant and in particular of the buds. In addition, freezing of the buds at night, followed by exposure of the transparent veil to the sun in the morning can lead to warming and therefore too rapid thawing of the buds, which can damage them significantly.

[0014] There is therefore a need for a simple and effective solution to at least partially remedy these drawbacks. Statement of the invention

[0015] To this end, the invention relates to a detachable protective sleeve for a plant branch, in particular for a vine branch, said sleeve comprising a body configured to be placed around said branch, said body being breathable and anti-ultraviolet.

[0016] By the terms "the body being permeable to air", it is meant that air can pass through the thickness of said body.

[0017] By the terms "the body being... anti-ultraviolet" is meant that the body blocks ultraviolet rays, for example by comprising or being made of an anti-ultraviolet material or by comprising an anti-ultraviolet coating.

[0018] The sleeve according to the invention makes it possible to physically protect the branch from bad weather such as hail and wind and reduces the risk of frost in cold weather without requiring the consumption of electricity or fuel. When frost does form on the buds of the branch, for example during the night, the anti-ultraviolet property of the material prevents the following day, the sun's rays from heating the branch too quickly. This dampening of the temperature rise in the sleeve allows a slow thawing of the buds which preserves them. The air permeability makes it possible to avoid rotting of the buds caused by air stagnation or accumulation of condensation in the sleeve.

[0019] Preferably, the body comprises one or more layers of material.

[0020] Preferably, the body is made of a material that is both breathable and anti- ultraviolet.

[0021] In one embodiment, the body is made of a layer of air-permeable material and an anti-ultraviolet coating, preferably applied to its external surface, also permeable to air.

[0022] Preferably, the body comprises complementary fixing members mounted on said body and making it possible to fix the body around said branch in a detachable manner. These fixing members make it possible to ensure that the sleeve is held around the branch and to prevent it from falling under the effect of wind or gravity.

[0023] Advantageously, the complementary fixing members are arranged along two long sides of the body. The sleeve is thus easier to close, and having the fixing members on the long sides is more practical since the branches, particularly in the case of vine branches, can extend in length over a distance greater than that necessary to surround the branch.

[0024] Advantageously, there are two or three fixing members, which allows both a solid fixing of the sleeve in order to prevent it from detaching from the branch while allowing rapid fixing and removal of the sleeve.

[0025] In one embodiment, the complementary fastening members comprise at least one magnetic button-clasp system, which is a fastening that is simple to use, quick to put in place and undo, and solid.

[0026] Alternatively or additionally, the complementary fixing members comprise at least two complementary strips of self-gripping material, quickly attachable and detachable and strong.

[0027] As a further variant, the fastening members may be snap fasteners, hooks, zippers, slot and tab devices, particularly in the shape of an arrow, etc.

[0028] Advantageously, the body of the sleeve is impermeable to water and other liquids. Thus, less water penetrates inside the sleeve, whether rainwater or condensation water, and which could freeze on the buds. The body can be made impermeable either by using a material having this property or by applying a hydrophobic treatment to the outer surface of said body.

[0029] In a preferred embodiment, the body is made of a flexible or semi-rigid material. The installation and removal of the sleeve is thus simplified, which also reduces the risk of damaging the buds in the event of contact with the body of the sleeve during installation or if an operator or tractor comes into contact with the body.

[0030] Preferably, the body is composed of several layers of polypropylene superimposed on each other.

[0031] In one embodiment, the body includes a layer of an anti-ultraviolet material or wherein the outer surface of the body is coated with an anti-ultraviolet coating to effectively slow thawing.

[0032] In an advantageous embodiment, the body of the protective sleeve comprises a flexible shape-memory material, said material having in memory the shape of the sleeve wrapped around said branch. In this way, the installation and removal of the sleeve is done simply and quickly for the user. This advantage is particularly relevant when the number of sleeves to be installed is very large, for example in the case of wine-growing operations.

[0033] In another embodiment, the body comprises a plurality of rigid or semi-rigid shells connected by at least one articulation. These rigid shells, preferably two in number, make it possible to form a rigid cylinder, increasing the protection of the buds against rain, hail and shocks.

[0034] Advantageously, the shells comprise plastic or metal frames on which one or more layers of material are fixed which provide the desired properties of the sleeve. For example, these layers can be made of polypropylene.

[0035] Preferably, the at least one articulation comprises at least one hinge for easy articulation.

[0036] Advantageously, the body is made from a rectangular geometric pattern, which is easy to manufacture and shape. In addition, once folded, the body forms a cylinder open at both ends, which allows air to circulate inside and therefore prevents condensation from stagnating there.

[0037] Advantageously, the rectangular geometric pattern can more easily be composed of several layers, each of which provides a property of the sleeve, in particular physical protection against shocks, impermeability to liquids and permeability to water vapor.

[0038] The invention also relates to a method of using a sleeve as presented, said method comprising a step of placing the body of the sleeve around the branch to be protected and attaching the fixing members to fix the sleeve around the branch.

[0039] The method further comprises a step of detaching the fixing members and a step of removing the sleeve from the branch to re-expose the branch to the open air when the season permits. Brief description of the drawings

[0040] Other characteristics and advantages of the invention will become apparent from reading the description which follows. This is purely illustrative and must be read in conjunction with the appended drawings in which:

[0041] [Fig-1] [Fig.l] schematically illustrates a plant branch fixed on a wire metallic and without sleeve according to the invention.

[0042] [Fig.2] [Fig.2] schematically illustrates a first embodiment of the sleeve according to the invention, protecting a plant branch fixed on a metal wire.

[0043] [Fig.3] [Fig.3] schematically illustrates the sleeve of [Fig.2] rolled out flat.

[0044] [Fig.4] [Fig.4] schematically illustrates a second embodiment of the sleeve according to the invention, comprising two open shells.

[0045] [Fig.5] [Fig.5] schematically illustrates a third embodiment of the sleeve according to the invention, the body of which comprises a flexible shape memory material.

[0046] [Fig.6] [Fig.6] schematically illustrates the installation of a sleeve according to the invention covering a plurality of vine branches.

[0047] [Fig.7] [Fig.7] schematically illustrates schematically the installation of sleeves, each covering a single branch of the vine.

[0048] [Fig.8] [Fig.8] schematically illustrates the method of fixing and removing the sleeve according to the invention. Description of the embodiments

[0049] The protective sleeve 1 is configured to ensure the protection of a branch 2 of a plant, in particular a vine (called a “vine”) shown as an example without the sleeve 1 in [Fig. 1].

[0050] Sleeve 1

[0051] The sleeve 1 is configured to be placed around the branch 2, as illustrated for example in Figures 2, 6 and 7.

[0052] With reference to Figures 2 to 4, the sleeve 1 comprises a body 10 and a plurality of fixing members IL

[0053] The sleeve 1 may vary in length. As shown in [Fig.6], a sleeve 1 may cover several branches 2 which extend in the same direction.

[0054] In [Fig.7], a plurality of short sleeves 1 are shown, each covering a single branch 2 of the vine stocks.

[0055] Body 10

[0056] In the embodiment illustrated in [Fig. 3], the unrolled body 10 is rectangular in shape, defining two opposite long sides 101 and two opposite short sides 102.

[0057] In this embodiment, the body 10 is formed from a plurality of layers of polypropylene. The resulting anti-ultraviolet properties make it possible to reduce thawing due to solar rays and the strength of the material makes it possible to protect the branch 2 from the elements. A layer of polypropylene has waterproof properties obtained by the use of a treatment which makes it possible to reduce the volume of water which could reach the branch 2 and freeze on the buds.

[0058] Alternatively, the waterproof properties can be obtained by the use of a hydrophobic surface treatment on the surface of the body 10 intended to be on the outside.

[0059] The body 10 can also be made by braiding material, which reinforces the air permeability to avoid stagnation inside the sleeve 1.

[0060] In this embodiment, the body 10 is configured to be placed around the branch 2 so that the two long sides 101 are placed opposite each other as shown in [Fig.2].

[0061] In the embodiment illustrated in [Fig.4], the body 10 comprises two rigid shells 103 facing each other connected by a joint 104. The joint 104 is made for example of plastic or metal.

[0062] Each shell 103 has a long side 101 opposite the articulation 104.

[0063] The fixing members 11 make it possible to close the sleeve 1 by fixing the two long sides 101 placed opposite each other around the branch 2 in the first embodiment or to fix the two shells 103 in the second embodiment.

[0064] The two shells 103 comprise a plastic frame and an exterior made by stacking a plurality of layers of polypropylene as shown.

[0065] In another embodiment shown in [Fig.5], the body 10 comprises a flexible and / or elastic shape memory material, which is preformed to remember the shape of the wound sleeve 1.

[0066] In this embodiment, the sleeve 1 does not comprise a fixing member 11.

[0067] Fixing member 11

[0068] In the embodiments illustrated in Figures 2 to 4, the fixing members 11 are fixed along the long sides 101 of the body 10. Preferably the fixing members 11 are in two complementary parts 11A, 11B, with a part 11A on one of the long sides 101 and the corresponding complementary part 11B which is on the other long side 101.

[0069] In Figures 2 to 3, the fastening members 11 are three in number and consist of magnetic clasp buttons. Part 11A is the magnetic north pole of the magnetic clasp button 11 and part 11B is the magnetic south pole of the magnetic clasp button 11. The magnetic clasp buttons 11 are made of a magnetic material and may comprise a casing made for example of plastic or metal.

[0070] In [Fig. 4], the fixing members 11 are three in number and consist of self-gripping strips (also called “velcro”). Part 11A is a strip comprising a set of textile hooks and part 11B is a strip comprising a set of textile loops which allow the two complementary parts 11A, 11B to be quickly and securely attached and detached.

[0071] Alternatively, there could be a single fixing member 11 whose two complementary parts 1 1A, 1 1B extend over part of the length of each long side 101.

[0072] In the embodiments shown in Figures 2 to 4, the two parts 11A, 11B of each fixing member 11 are located on the same face of the body 10.

[0073] Alternatively, the two complementary parts 11 A, 1 IB could be located on different faces of the body 10.

[0074] Branch 2

[0075] Branch 2 is a plant branch that grows from a trunk or from a foot in the case of a vine branch (in this case, it is also called “aste” in the field of viticulture).

[0076] In certain cases, as for a vine branch, the branch 2 is attached to a metal wire 3 which guides its growth as shown in figures 1, 6 and 7.

[0077] The sleeve 1 is wrapped around the branch 2 in order to protect the shoots and buds present on said branch 2 from frost, bad weather and shocks during their growth in order to ensure harvesting once the fruits have reached maturity.

[0078] As shown in Figures 6, the sleeve 1 can cover a plurality of branches 2, as in the case on vines where several branches can extend on the same metal wire 3.

[0079] Example of implementation

[0080] The method of using a sleeve 1 is shown in [Fig.8].

[0081] Initially, as shown in Figures 6 and 7, the sleeve 1 is open, that is to say that the fixing members 11 are not fixed together.

[0082] The body 10 is then placed in a step E1 on the branch 2 to be protected. In the case where the branch 2 is fixed to a wire 3, the sleeve 1 is also configured to surround the wire 3 in addition to the branch 2 as shown in [Fig.2].

[0083] In the embodiment shown in Figures 2 and 3, a user wraps during step E1 the flexible body 10 of the sleeve 1 so as to form a cylinder around the branch 2 to be protected. In doing so, the two long sides 101 are brought together and the complementary parts 11A, 11B of the fixing members 11 are placed opposite each other.

[0084] In the embodiment shown in [Fig. 4], the user closes during step E1 the two shells 103 of the sleeve 1 so as to form a cylinder around the branch 2 to be protected. In doing so, the two long sides 101 are brought together and the complementary parts 11A, 11B of the fixing members 11 are placed opposite each other.

[0085] The user closes in step E2 the fastening members 11 depending on the type of fastening member 11, such as bringing into contact the parts 1 1A north and 1 1B south of the magnetic fastener buttons 11, as in the example shown in Figures 2 and 3, or by hooking the self-gripping strips 11 A, 11B, as in the example shown in [Fig.4].

[0086] As shown in Figures 6 and 7, the sleeve 1 then protects a branch 2 or a plurality of branches 2 depending on its size and the arrangement of the branches 2.

[0087] The cylindrical shape of the sleeve 1 produced in one of these embodiments allows good circulation of air inside the sleeve 1, since the cylinder is open at its ends. The body 10 being impermeable and filtering ultraviolet rays, the sleeve 1 also ensures its role of physical protection against external elements and offers increased protection against frost during cold periods of the year.

[0088] During the day or when the temperatures are milder, the user removes in a step E3 the complementary parts 11 A, 11B of the organs of fixing 11 to be able to remove the sleeve 1 in step E4 and let the branch 2 grow in the open air.

[0089] In the case where the body 10 comprises a shape memory material, there is no need for fixing members 11. The flexible property of the body 10 then allows a user to deform the sleeve 1 to place it around the branch 2, and the shape memory material reforms the sleeve 1 around the branch 2 without any additional operation on the part of the user.

[0090] Step E1 then consists of moving the body 10 away from the sleeve 1 and positioning it around the branch 2, and step E2 consists only of letting the sleeve 1 resume its shape.

[0091] The removal of the sleeve 1 is done in reverse without requiring the opening of the fixing members 11. There is no step E3, just a step E4 consisting of the deformation of the sleeve 1 to open it and remove it from the branch 2.

Claims

Claims

1. Detachable protective sleeve (1) for a plant branch (2), in particular for a vine branch, said sleeve (1) comprising a body (10) configured to be placed around said branch (2), said body (10) being permeable to air and anti-ultraviolet.

2. Protective sleeve (1) according to claim 1, wherein the body (10) comprises complementary fixing members (11) mounted on said body (10) and allowing the body (10) to be fixed around said branch (2) in a detachable manner.

3. Sleeve (1) according to the preceding claim, in which the complementary fixing members (11) are arranged along two long sides (101) of the body (10).

4. Sleeve (1) according to any one of claims 2 or 3, in which the complementary fixing members (11) comprise at least one magnetic button-clasp system (1 IA, 1 IB) and / or strips of self-gripping material.

5. A protective sleeve (1) according to any preceding claim, wherein the body (10) is waterproof.

6. A sleeve (1) according to any preceding claim, wherein the body (10) is made of a flexible or semi-rigid material.

7. Sleeve (1) according to the preceding claim, wherein the body (10) comprises a layer made of an anti-ultraviolet material or wherein the external surface of the body (10) is covered with an anti-ultraviolet coating.

8. Protective sleeve (1) according to any one of the preceding claims, wherein the body (10) comprises a flexible shape memory material, said material having in memory the shape of the sleeve (1) wrapped around said branch (2).

9. Sleeve (1) according to any one of claims 1 to 7, wherein the body (10) comprises a plurality of rigid or semi-rigid shells (103) connected by at least one articulation (104).

10. A method of using a sleeve (1) according to any one of the preceding claims, said method comprising a step (El) of placing the body (10) of the sleeve (1) around the branch (2) to be protected and a step (E2) of attaching the fixing members (11) to fix the sleeve (1) around the branch (2).

Citation Information

Patent Citations

  • Means of protecting plants against late frost

    FR2687896A1

  • Protection arrangement for vines against spring frost

    FR2754672A1

  • Methods and devices for stimulating growth of grape vines, grape vine replants or agricultural crops

    US20200045895A1

  • Trellis panels for sunlight delivery, shoot positioning, and canopy division

    US20220124988A1

  • Thermal reed design for controlling the temperature of plants

    US4662105A