Projectile for a remote-acting electroshock weapon and method for the use thereof
Abstract
The invention relates to projectiles for remote-acting electroshock weapons and is used in electroshock devices that act from a distance. The technical result is an increase in the reliability of the projectile for a remote-acting electroshock weapon and a corresponding reduction in the cost thereof. This result is achieved in that the projectile comprises a ballasting head with a target gripping device, and a compressed current-conducting wire, one end of which is for attaching to the electroshock weapon and the other end is for attaching to the aforesaid ballasting head with a target gripping device, wherein the compressed current-conducting wire and the ballasting head are covered with a flexible, deformable coating. The above technical result is also achieved in that the method for manufacturing a projectile for a remote-acting electroshock weapon comprises steps in which: a current-conducting wire is wound on a mount in the form of a rod; the windings are pressed together along the axis of the rod; one end of the current-conducting wire is attached to a ballasting head with a target gripping device; and the compressed current-conducting wire and the ballasting head are covered with a flexible, deformable coating.

Term
No projected expiry on record.
- Priority
- Filed
- Published
- Today
11 claims: 3 independent, 8 dependent
- 1Формула изобретения 1. Снаряд дистанционного электрошокового оружия, содержащий утяжеляющую головку с устройством закрепления на цели, спрессованный токопровод, один конец которого предназначен для закрепления на электрошоковом оружие, а другим - на упомянутой утяжеляющей головке с устройством закрепления на цели, отличающийся тем, что упомянутые спрессованный токопровод и утяжеляющая головка покрыты гибким деформируемым покрытием.
- 2Снаряд по п. 1 , в котором упомянутое гибкое деформируемое покрытие выполнено в виде термоусаживаемого материала, металлической фольги, бумаги или клейкой ленты.
- 3Снаряд по п. 2, в котором упомянутые термоусаживаемый материал, металлическая фольга и бумага выполнены с клейкой поверхностью, обращенной к покрываемым материалам.
- 4Снаряд по п. п. 2 или 3, в котором дополнительно содержит токопроводящий элемент, расположенный вдоль оси снаряда.
- 5Способ изготовления снаряда дистанционного электрошокового оружия, содержащий шаги, на которых:- навивают токопровод на оправу в виде стержня;- спрессовывают упомянутую навивку продольно оси стержня;- закрепляют один из концов токопровода на утяжеляющей головке с устройством закрепления на цели;и - покрывают гибким деформируемым покрытием спрессованный токопровод и утяжеляющую головку.
- 6Способ по п. 5, в котором после упомянутого этапа навивки токопровода упомянутый стержень заменяют на стержень меньшего диаметра.
- 7Способ по п. 5 или п. 6, в котором упомянутые этапы спрессовывания и закрепления осуществляют следующим образом:закрепляют утяжеляющую головку с устройством закрепления на цели на одной стороне упомянутого стержня, и механически воздействуют на навитый токопровод с другой стороны стержня.
- 8Способ по п. 5 или п. 6, в котором упомянутые этапы спрессовывания и закрепления осуществляют следующим образом:механически воздействуют на навитый токопровод с двух сторон упомянутого стержня с последующим закреплением утяжеляющей головки с устройством закрепления на цели на одной из сторон упомянутого стержня.
- 9Способ по п. 7, в котором удаляют упомянутый стержень.
- 10Способ по п. 8, в котором удаляют упомянутый стержень.
- 111 1. Способ по п. 5, в котором до этапа закрепления один из концов токопровода на утяжеляющей головке с устройством закрепления на цели дополнительно покрывают спрессованный токопровод клеящим веществом.
Independent claims11
40 paragraphs, as filed
PROJECTILE REMOTE electroshock weapon and method of manufacturing the invention relate to electron shells remote troshokovogo weapons (DESHO) and used electroshock devices Remote actions.
Known shell DESHO patent US j 3803463 (US JN ° 4253132) comprising a hollow shell with a head, which is fixed fastening device made of a conductive material for the purposes of multineedle element such as "burr". Inside the shell is fixed with a cone guide rod over which, turn to turn conductive wire is wound in a single layer coil, which coils are not in contact with the inner surface of the shell and has between itself and the inner mantle surface of the clearance.
When fired from a remote stun guns (DESHO) hollow shell with current lead is emitted from Teh SHO. In this case the end of the current lead, embodied in elektrosho- kovom device, pull out the conductive hollow obechay- ki, reeling from its cone-shaped part of the guide rod. In the process of shell coiling flight occurs before the projectile hitting the target and fixing it on purpose.
This shell is ineffective due to the low coefficient of efficiency of filling the cavity of a hollow shell, Therefore Since the conductor, laid on a tapered portion of the guide rod present, is designed as a single-layer winding, which limits the length of the current lead. The efficiency of the filling of the hollow shell of the projectile of such a device is only 0,05-0,22.
It does not allow for the minimum size of the projectile, which is important for DESHO size and especially the size of multiply DESHO or limits nai- Bola range of defeats the purpose because of the short length tokopro- water. This same patent describes a method of projectile DESHO equipment, including pre-beaming current lead in the form of a single-layer frameless coil turn to turn on the mandrel, removing it from the mandrel and the space inside the hollow obe- gulls. Such a method is also inefficient. It is also associated with a low duty cycle hollow shell.
Chosen as the prototype shell DESHO RF patent N ° 2275576, comprising a hollow shell with integrally connected thereto and made of a conductive material la head on which is placed on target fixing device (eg, a needle with a goad), inside the shell is laid current- wire helical coils which are stacked with an external diameter equal to the inner diameter of the shell, and it soprika- sayutsya. When fired from a remote stun guns (DESHO) hollow shell with upressovannym inside it departs from current lead DESHO. At the end of this tokopro- water embodied in electro-shock devices, draws conductive at a pressed from the state. In the process of pulling the projectile flight occurs before the projectile hitting the target and fixing it on purpose.
This shell has a high coefficient of filling the cavity of a hollow shell reaches 0.8, but the projectile constructive tion consists of at least two time-consuming parts, obe- gulls and head, which must be performed with high accuracy and with high-tech assembly mikroopera- Nations as the head is integrally or zapresso--extracting (exact fit) in the shell, either welded or soldered to it or glued high-strength adhesive to prevent the inertia of the head displacement during the acceleration of the projectile Britain and prevent its leakage inside the shell when hitting the front end goal fixing device for the purposes appropriately loose projectile on the target, and the lack of corresponding-governmental defeats the purpose. In connection with the necessary precision manufacturing and high-tech operations using expensive equipment and highly skilled professionals ultimate shell price is unreasonably high, which consequently reduces the number of consumers DESHO, yav- lyayuschihsya highly lethal and least The funds tion against crime.
Also it should be noted that in any case, throwing a projectile shell is running as a power element that exists or the action of the gas pressure force directed along the axis of the projectile and is transmitted through the intermediate strength member, for example, a pallet or a wad, or directly to the pressure of gases on the inner wall of the shell, or the action of a spring force or the force of the action of electromagnetic forces.
In any event, throwing, shell is a power transmitting element of the acceleration force transmitted from the source of energy throwing nick and give directional movement go- projectile deftly with fastening device on the target.
The same patent discloses a method and equipment shell DESHO including pre beaming current lead in the form of an elongated single-layer coil turn to turn on the mandrel, the removal of frameless coils from the mandrel, the hollow space inside the shell, securing one of its ends on the inner end of the hollow head shell with electrical contact with it, and the implementation of frameless laying the coil inside the shell. Laying frameless coils inside obe- gulls carried upressovkoy frameless reel in its internal cavity to form a shaped current-laid wires in the form of three-dimensional shape of a series of outstanding relative to the longitudinal axis of the hollow shell spiral turns, the plane of which is perpendicular to this axis.
However, when describing the process equipment is not described in the patent that the gear is not directly carried in the projectile shell with a head, but only by using a special packaging mandrel which fits obe- gull. The mandrel is needed due to the fact that the length ukladyvae- in my shell frameless coils 3-4 times the length of the shell cavity.
The figures given in this patent, it is shown that the notoriously short frameless coil current lead after man- ressovki takes only <sup>X</sup>A projectile length of the image (obe- gulls) which includes a pusher. Where does the rest of the frameless coil current lead, which shell is to be filled completely, to get the coefficient of efficiency of filling the shell to 0.8, the figures are not shown.
In actual stacking technology obechay- ki between the end through which the filling of the shell and spool upressovkoy frameless internal track under the mandrel shell having an inner diameter of the shell cavity, as actuation of the packaging device parts and accuracy of the overall compliance of the projectile with a head length dimension is formed clearance (0,12-0, 15 mm), which is comparable with the diameter of the wire coil beskarkas- tion. When upressovke frameless coil windings of the coil shell fall into the gap and cut off at the end of obe- gulls pusher. That is simply the conductor is cut, which completely eliminates the damaging report current to the target. This coil is completely upressovana in shell and no external examination to determine the damage to the bus system is no longer possible, exactly as it is impossible to check each packed Vanny projectile, such as a tester rang, as it is not possible to strip both ends of the thin wire for continuity, even apart from the fact that in reality for DESHO shells equipment due to the need to have a wire from special materials produced by the industry but without insulation (wire after the drawing board without insulation) is used purely bare wire, that is, even without the wire insulation lacquer.
In connection with this process in the production of shells Detva DESHO RF patent N ° 2275576 perereza- tion with a certain percentage (reaching up to 2-5%) of the total number of shells packed DESHO using projectile dy by the method described in the package wire shell projectile, can not be considered to meet the basic criterion of weapons and parts "reliability".
In addition, even if the specified percentage of marriage when packing is, the requirements for precision manufacturing of shells (shells full length of the head, and therefore the length of the head and shell), special Superpurity trimming shells and requires special manufacturing precision. Besides being able to cut the current lead pusher on the end of the shell there is a possibility of wire chafing on the inner surface roughness of obe- gulls. The metal tube, used for the production of shells on that patent shall comply with the requirements of GOST 10498-82 high (tolerance ± 0,05 mm) and ultrahigh-kai (tolerance ± 0,03 mm) for precision manufacturing outer diameter shell. And as gostiru etsya only the outer diameter of the tube, it is necessary to design special order to guarantee the accuracy and reach to the inside diameter and which there are limiting. Said the need to observe the inner surface of the purity of shells even more increases by the value of the shell from above.
Problem to be Solved alleged invention zaklyucha- etsya DESHO projectile in establishing the method of its manufacture, prototype lacking these drawbacks.
The technical result is to increase the reliability of shell DESHO while reducing its cost of.
The technical result is achieved in that the shell remote stun weapon according to the present invention. The projectile contains a weighting head with fixing device for the purposes compacted conductor, one end of which is intended for mounting on electric shock weapons, and the other - on said weighting of the head with a device fixed on the goal, said compressed conductor and weighting head covered with a flexible deformable coating.
In particular, said flexible deformable coating is in the form of shrink-on material, paper, metallic foil or adhesive tape, with the possible shrinkable material to said paper and provided with an adhesive surface facing the coating material.
Also, the technical result is achieved by using a method of manufacturing a projectile remote stun weapon of the present invention. The method comprises the steps of: conductor wound on a frame in the form of a rod; said longitudinally compressed coiling axis of the rod; fasten one end of the current lead on utyazhelyayu- pickup with a device fixed on the goal; and cover flexible deformable conductive coated compressed and weighting head.
In particular, after said step of winding said yes tokoprovo- rod was replaced with a smaller rod diameter.
In particular, said steps and of fixing the compressing is performed as follows: fixed utyazhe- lyayuschuyu head with fixing device for the purposes on one side of said web, and mechanical impact on the Wound conductor on the other side of the rod.
In particular, said steps and of fixing the compressing is performed as follows: mechanical impact on Wound conductive exist on both sides of said core followed by fixing the weighting of the head with a device to secure the goals on either side of the rod upomyanu-.
In particular, after the step of compressing and fixing said rod is removed.
In particular, prior to the step of fixing one ends of current-weighting the head wires on the device for securing purposes is further coated compressed conductive adhesive. FIG. 1 is a remote shell electron troshokovogo weapons according to the present invention.
FIG. 2, 3 and 4 are the stages of manufacture of the projectile remote stun guns
FIG. 1 shows a first shell remote elektroshokovo- arms (DESHO) according to the present invention which comprises a metal head 1 with weighting vom fastening device on the target, for example, in the form of two needles with goad. Compact body 3 (compressed conductor) current lead 4 is attached to the head 1 by means of a shell 5 (flexible de- formed coating) compact body 3 current lead 4, tightly embracing a compact body of 3 bus system, and the head 1.
Sheath compact body 5 may be made in the form of shrink-on material, metal foil, or wizards will tape. It is possible to perform thermo-shrinkable material, metal foil and paper with the adhesive surface facing the coating material (weighting head 1 with fastening device 2 and the current lead-consistent spres- 3).
Connecting the compressed current conductor 3 with the shell 5 in all cases is due to the forces of friction and elasticity of the shell 5 and a compact body of 3 bus system 4, and when using a sticky membrane 5 - due to adhesion forces.
Also DESHO shell may further comprise currents koprovodyaschy element 7, which is positioned along the axis of the projectile but on the surface of said flexible deformable coating 5 (see. Fig. 5). The conductive element is necessary for the initiation of the charge in the cartridges or cartridges DESHO with high-voltage (spark) ignition. Depending on the vapor razitnyh bit intervals and quantities conductive surface discharge runs of different lengths.
Unit 2 to secure the objective is performed predominantly in the form of needles with a goad, but it can be done and many-needle type "burr", or have a glue to the target surface.
The shell of the present invention DESHO work- is as follows. The projectile flies out of a stun device (not shown) through the use of pyrotechnic ing means compressed or liquefied gas, a spring mechanism, electromagnetic means, and others. The compact body of 3 current-wire 4 departure of the projectile at the time of his throwing remains a part of the shell departing from DESHO stun device. At the same time as the conductive projectile 4 are pulled out from the interior of the shell 5 covering a compact body of 3 bus system 4 to the projectile hitting the target and pro- mount it using the fixing device 2 on the target.
The projectile is described DESHO diameter (OD compact body 4 wireways 3) equal to the head diameter of 5 mm. The inner diameter of the compact body of 3 tokopro- water 4 is 0.19 mm, current lead length is 5500 mm. The efficiency of the described filling volume of 5 mm diameter is 0.66.
FIG. 2 - 4 show the manufacturing steps of projectile stun guns remotely according to the present invention.
FIG. 2 shows a phase winding current lead 4 in a winding mandrel rod 8. As a result of this operation, a long single-layer winding coil 8 to the coil. Then cut the conductor 4, wherein the water tokopro- Wound 4 possessing elasticity (depending on the material used or the wire insulation) automatically unwinds on the rod 8 for a number of turns increasing the diameter of the turns relative to the diameter formed when eg grafting, but without losing density from turn to turn.
FIG. 3 (a, b and c) shows the step spessovyvaniya upomyanu- of the winding and fastening it to the weighting head 2 according to the present invention. After the above mentioned spin auto- matic rod 8 changed to a smaller diameter rod 9 (Fig. Over), which is inserted either in the mandrel 10 or the weighting head 1 (not shown). In the case of use of weighting head 1 upomyanu- one end of the winding is fixed on it, otherwise binding on the weighting head 1 is carried out after the step of compacted vyvaniya shown in FIG. 36.
Then on the other side of the rod affect the other mandrel along the axis of said rod 9 The above-spressovyvaya coiling-mentioned (Fig. 36). The result of said step shown in FIG. Sv, where a compact body of 3 bus system 4 has the form, the need for further manufacturing steps. Next, remove the rod 9.
FIG. 4 shows the step of coating a flexible deformable cover 5 pressed conductive 4 and weighting of the head 1. The flexible deformable cover 5 as mentioned above, may be a shrinkable material (not shown), a metal foil, paper or adhesive tape. Metallic foil, paper or adhesive tape typically represent a strip, which is pierced by said device stvom 2 attachment to the objectives and wrapped mentioned a compact body of 3 bus system 4. In the case of thermal shrinkable material, usually circular section, compacted - ing conductor 4 and weighting head 1 is inserted in the cited shrinkable material and further to him vozdeyst- exist for fixing thermally compacted current lead 4 and the weighting of the head 1 to body-resistant, shrink material.
It is also possible to cover additional spressovan- tion current conductor adhesive to secure the stage of one of the ends of the current conductor 4 to burden the head 1 with fastening devices 2 on the target.
The resulting shell DESHO made according to the present invention has the ability to stretch from the shell cavity 5 at high speed (more than 80 100 m / s) without tangles, overlaps and gaps. Offered DESHO shell and its manufacturing method have a maximum efficiency in comparison with the known devices and methods, expressed in a sharp decrease in the value of the projectile and achieving almost a shell of absolute reliability of action. The projectile vypolnen- nym in accordance with the present invention, this is achieved by reducing the manufacturing cost of the projectile parts. An elevated safety equipment projectile current lead of the proposed method, implemented in accordance with the invention, is achieved at the expense of the fundamental impossibility perereza- of a single-layer wire coil during its upressovki current lead in a compact body, and thus the ability to easily control the integrity of the wire as the visual, and the other by the methods of control.
3 sheets
Sheet 1 Sheet 2 Sheet 3
Every citation, both ways
| Document | Relation | Office | Cited during |
|---|---|---|---|
| US11566874B2 | Cited by | United States of America | Search report |
| TWI729729B | Cited by | Taiwan Province of China | Examiner |
| US11022409B2 | Cited by | United States of America | Applicant |
| US11668548B2 | Cited by | United States of America | Applicant |
| US12061068B2 | Cited by | United States of America | Applicant |
| CN113251871A | Cited by | China | Search report |
| EP0983480B1 | Cites | European Patent Office (EPO) | International search |
| RU2275576C1 | Cites | Russian Federation | International search |
| US4253132A | Cites | United States of America | International search |
3 members in 2 offices
Priority claims4
| Document | Office | Kind | Date |
|---|---|---|---|
| 2010150899 | Russian Federation | A | |
| 2010150899 | Russian Federation | A | |
| 2010150899 | – | – | – |
| RU20100150899 | – | – | – |
Members3
| Document | Office | Kind | |
|---|---|---|---|
| WO2012082012A2This record | World Intellectual Property Organization (WIPO) | A2 | |
| WO2012082012A3 | World Intellectual Property Organization (WIPO) | A3 | |
| RU2486451C2 | Russian Federation | C2 |
3 legal events, as 2 offices reported them to INPADOC
Over the term
Point at a mark for the eventEvents
| Event | Code | Office | |
|---|---|---|---|
| Ep: pct application non-entry in european phase122 | 122 | WO | |
| Non-entry into the national phaseNENP | NENP | DE | |
| Ep: the epo has been informed by wipo that ep was designated in this application121 | 121 | WO |
Numbers
- Publication
- 2012/082012
- Publication, DOCDB
- 2012082012
- Publication, EPODOC
- WO2012082012
- Application
- 882
- Application, DOCDB
- 2011000882
- Application, EPODOC
- WO2011RU00882
Titles2
- English
- PROJECTILE FOR A REMOTE-ACTING ELECTROSHOCK WEAPON AND METHOD FOR THE USE THEREOF
- French
- PROJECTILE POUR ARME À ÉLECTROCHOCS À DISTANCE ET SON PROCÉDÉ D'UTILISATION
Classification
- IPC, 1
- F41B15 04
Designated states4
- Regional, 4
- Zimbabwe
- Turkmenistan
- Türkiye
- Togo