EP0200856A1 - Corps de grenade, notamment pour grenade à main - Google Patents
Corps de grenade, notamment pour grenade à main Download PDFInfo
- Publication number
- EP0200856A1 EP0200856A1 EP86101974A EP86101974A EP0200856A1 EP 0200856 A1 EP0200856 A1 EP 0200856A1 EP 86101974 A EP86101974 A EP 86101974A EP 86101974 A EP86101974 A EP 86101974A EP 0200856 A1 EP0200856 A1 EP 0200856A1
- Authority
- EP
- European Patent Office
- Prior art keywords
- splinter
- cover
- metal particles
- plastic
- grenade
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Granted
Links
- 206010041662 Splinter Diseases 0.000 claims abstract description 81
- 239000002923 metal particle Substances 0.000 claims abstract description 61
- 239000004033 plastic Substances 0.000 claims abstract description 28
- 229920003023 plastic Polymers 0.000 claims abstract description 28
- 239000002245 particle Substances 0.000 claims abstract description 18
- 239000002360 explosive Substances 0.000 claims description 19
- 230000002093 peripheral effect Effects 0.000 claims description 14
- 238000012856 packing Methods 0.000 claims description 6
- 239000012634 fragment Substances 0.000 description 6
- 229910000831 Steel Inorganic materials 0.000 description 3
- 239000010959 steel Substances 0.000 description 3
- 210000002105 tongue Anatomy 0.000 description 3
- 239000004698 Polyethylene Substances 0.000 description 2
- 239000004793 Polystyrene Substances 0.000 description 2
- 230000015572 biosynthetic process Effects 0.000 description 2
- 238000001746 injection moulding Methods 0.000 description 2
- 239000007788 liquid Substances 0.000 description 2
- -1 polyethylene Polymers 0.000 description 2
- 229920000573 polyethylene Polymers 0.000 description 2
- 229920002223 polystyrene Polymers 0.000 description 2
- XTFIVUDBNACUBN-UHFFFAOYSA-N 1,3,5-trinitro-1,3,5-triazinane Chemical compound [O-][N+](=O)N1CN([N+]([O-])=O)CN([N+]([O-])=O)C1 XTFIVUDBNACUBN-UHFFFAOYSA-N 0.000 description 1
- 241000288673 Chiroptera Species 0.000 description 1
- TZRXHJWUDPFEEY-UHFFFAOYSA-N Pentaerythritol Tetranitrate Chemical compound [O-][N+](=O)OCC(CO[N+]([O-])=O)(CO[N+]([O-])=O)CO[N+]([O-])=O TZRXHJWUDPFEEY-UHFFFAOYSA-N 0.000 description 1
- 238000004026 adhesive bonding Methods 0.000 description 1
- 239000002131 composite material Substances 0.000 description 1
- 238000010276 construction Methods 0.000 description 1
- 238000005474 detonation Methods 0.000 description 1
- 230000000694 effects Effects 0.000 description 1
- 238000003780 insertion Methods 0.000 description 1
- 230000037431 insertion Effects 0.000 description 1
- 238000004519 manufacturing process Methods 0.000 description 1
- 239000000203 mixture Substances 0.000 description 1
- 239000000843 powder Substances 0.000 description 1
- 239000007787 solid Substances 0.000 description 1
Images
Classifications
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F42—AMMUNITION; BLASTING
- F42B—EXPLOSIVE CHARGES, e.g. FOR BLASTING, FIREWORKS, AMMUNITION
- F42B27/00—Hand grenades
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F42—AMMUNITION; BLASTING
- F42B—EXPLOSIVE CHARGES, e.g. FOR BLASTING, FIREWORKS, AMMUNITION
- F42B12/00—Projectiles, missiles or mines characterised by the warhead, the intended effect, or the material
- F42B12/02—Projectiles, missiles or mines characterised by the warhead, the intended effect, or the material characterised by the warhead or the intended effect
- F42B12/20—Projectiles, missiles or mines characterised by the warhead, the intended effect, or the material characterised by the warhead or the intended effect of high-explosive type
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F42—AMMUNITION; BLASTING
- F42B—EXPLOSIVE CHARGES, e.g. FOR BLASTING, FIREWORKS, AMMUNITION
- F42B12/00—Projectiles, missiles or mines characterised by the warhead, the intended effect, or the material
- F42B12/02—Projectiles, missiles or mines characterised by the warhead, the intended effect, or the material characterised by the warhead or the intended effect
- F42B12/20—Projectiles, missiles or mines characterised by the warhead, the intended effect, or the material characterised by the warhead or the intended effect of high-explosive type
- F42B12/22—Projectiles, missiles or mines characterised by the warhead, the intended effect, or the material characterised by the warhead or the intended effect of high-explosive type with fragmentation-hull construction
- F42B12/32—Projectiles, missiles or mines characterised by the warhead, the intended effect, or the material characterised by the warhead or the intended effect of high-explosive type with fragmentation-hull construction the hull or case comprising a plurality of discrete bodies, e.g. steel balls, embedded therein or disposed around the explosive charge
Definitions
- the invention relates to a grenade body, in particular for hand grenades, with a multi-part, at least overall hollow body splinter body made of plastic particles embedded in plastic and preferably with an outer casing shell at least partially enveloping the plastic body, the parts of the splinter body interlocking at the connecting surfaces .
- the splinter body In order to achieve the most uniform possible splinter distribution in a grenade, in particular a hand grenade, it is necessary for the splinter body to encase the interior of the grenade or hand grenade filled with explosives as completely as possible. This requirement is opposed to the fact that the splinter body must have an opening at least at one point, which is used on the one hand for filling or introducing the explosive. On the other hand, parts of the detonator also protrude through this opening - with hand grenades e.g. the igniter tube - from the igniter head into the interior of the splinter body.
- the object of the invention is to achieve, in the case of a multi-part splinter body, forming a hollow body overall, a splitter distribution that is as uniform as possible all around, or to improve the uniformity of the scattering of the metal particles arranged in the splitter body.
- the preferably approximately spherical metal particles when the splinter body is joined, have a distance across the connecting surface that is smaller than the particle diameter, preferably equal to or smaller than half the particle diameter, and that at least in the area of the connecting surfaces there is at least one inner particle layer opposite at least one outer particle layer is offset by about half a particle diameter.
- metal particles are also arranged in the areas of the connecting surfaces, in a manner which guarantees the most uniform possible splinter distribution when the explosive charge detonates.
- the connecting surfaces between the individual parts of the splinter body can e.g. be stepped or tongue and groove. It is advantageous if the imaginary continuation of the connecting surface areas lying transversely to the splinter body surface represents a geometric surface that cuts several, preferably in a row, metal particles arranged in one of the two parts of the splinter body to be connected.
- At least approximately spherical metal particles of approximately the same size are used, which are arranged in an almost tight packing in the parts of the splinter body.
- the basic idea of the invention can best be implemented in such a way that the connecting surfaces running transversely to the surface of the splinter body have at least two partial regions which are offset from one another by a distance which approximately corresponds to the radius of the metal particles or an odd multiple of the radius .
- the metal particles which, as stated, are preferably spherical, are usually made of steel.
- the metal particles are embedded in plastic, for example in polystyrene, in the splinter body parts.
- the splinter body parts can be produced in an injection molding tool, in the tool cavity of which the metal particles are filled, whereupon the plastic is injected in liquid form and under pressure.
- the individual splinter body parts can best be united by gluing.
- a common shell made of plastic preferably of tough-elastic plastic, e.g. made of polyethylene. This can again be done most favorably in an injection molding tool, in the cavity of which the joined parts of the splinter body are inserted as the core.
- the side wall of the lid has at least one step from the outside to the interior of the splinter body, and that the peripheral side wall of the inner step of the inner ring gap between the lid and the hollow body Cover following and beyond this imaginary geometric surface in the outer region of the cover cuts several, preferably an annular row of metal particles.
- this measure can be used to prevent the lid of the splinter body from being flung away like a plug, rather the metal particles in the lid of the splinter body are detached from their composite during detonation of the explosive and ejected individually.
- a plug formation can occur especially when circumferentially closed areas form in the splinter body, the peripheral boundary of which is formed by spaces between metal particles and this extends from the inner wall to the outer wall of the Splinter body continues throughout.
- such plugs normally do not occur at all because the metal particles are distributed irregularly in the mold cavity during manufacture and the metal particles are offset from the inside to the outside in two or more layers.
- the splinter body is composed of the hollow body and the lid, then a splinter-free zone is formed along the inner annular gap between the lid and the hollow body. If this splinter-free ring zone were to continue "rectilinearly" to the outer wall, then the prerequisites for the harmful plug formation mentioned would be present.
- the measure according to the invention counteracts this effect practically by deliberately displacing the outer metal particles from the inner metal particles in the lid.
- the measure according to the invention it will usually be self-evident that the starting from the outer annular gap between the cover and the hollow body, the peripheral side wall of the outer step of the cover and continued on this inwardly imaginary geometric area in the inner region of the Cover surrounding wall of the hollow body intersects several, preferably an annular row of metal particles. Otherwise, care should preferably be taken to ensure that this condition is also met.
- the inventive concept can be realized in such a way that the lateral distance between the peripheral side surfaces of the steps of Cover corresponds approximately to the radius of the metal particles or an odd multiple of the radius.
- the hollow body mainly forming the splinter body merely has an opening through which both the explosive is filled and the through-hole occurs from detonator parts.
- only one lid is required, which, however, does not necessarily have to be in one piece, but is expediently designed as a one-piece annular lid with a small central opening.
- the explosives are filled in with the lid open.
- a detonator part for example an ignition tube, protrudes into the inside of the hand grenade body.
- the opening in the lid should be as small as possible and preferably have a cross-sectional area that corresponds merely to the cross-sectional area of the igniter part or ignition tube to be used.
- the fragment body part 1 shown in FIGS. 1 and 2 is half-shell-shaped and, as can be seen from FIG. 4, is combined with a correspondingly shaped half-shell fragment body part 2 (FIG. 3) to form an approximately egg-shaped hollow body, the two half-shell fragment body parts 1 and 2 can also be supplemented by an annular part 3 in the area of the passage opening for the ignition tube.
- An outer plastic casing shell 4 is molded onto the splinter body or onto the two connected half-shell-shaped splinter body parts 1 and 2, the housing shell 4 also having a threaded neck 5 onto which the detonator of the hand grenade is screwed.
- the two splinter body parts 1 and 2 have corresponding stepped connecting surfaces 6. How the metal particles 7 - in the present case spherical - are arranged in the area of these connecting surfaces 6 can be seen in particular from the enlarged cross-sectional view according to FIG. 5. Accordingly, when the splinter body is joined, the metal particles 7 have only a small distance (surface distance) across the connecting surface 6 and the inner layer of the metal particles 7 is offset by approximately half a diameter of the spherical metal particles from the outer layer.
- the imaginary continuation F of the connecting surface regions V lying transversely to the splinter body surface S represents a geometric surface which is in one of the two Splinter body parts cuts metal particles 7, which are arranged in a row along the connecting surfaces 6. It also applies to this arrangement of the spherical metal particles that the distance D of the connecting surface regions V running transversely to the splinter body surfaces is approximately equal to the radius r of the spherical metal particles 7.
- this distance D is equal to 3 r.
- the relationship applies to the distance D in the case of a stepped design of the connecting surfaces 6 and when using spherical metal particles of approximately the same size
- the distance (surface distance) of the spherical metal particles 7 is smaller than the ball diameter, even smaller than the ball radius and because the individual layers of the spherical metal particles are mutually offset by about half a ball diameter.
- connection between the additional annular splinter body part 3 and the combined half-shell-shaped splinter body parts 1 and 2 is also realized according to the principles of the invention, which will be explained in more detail with reference to FIGS. 12 to 15.
- the splinter body is in the form of two half-shells along its longitudinal axis Splinter body parts divided 1.2.
- the invention can also be used for a different division of the splinter body, for example for a transverse division of the splinter body into an upper and a lower shell-shaped part.
- the hand grenade according to FIGS. 12 and 13 also has a hand grenade body 1 ', which consists of an inner fragment body 2', 3 and an outer housing shell 4.
- the outer casing 4 is made of tough elastic plastic, e.g. Polyethylene, manufactured and has a neck-shaped extension 5 with an external thread.
- the splinter body consists of two parts, a hollow body 2 'and a cover 3. Both the wall of the hollow body 2' and the cover 3 consist of metal particles 7 embedded in plastic in the form of steel balls. The metal particles 7 are arranged in a tight packing.
- the plastic connecting the metal particles can consist, for example, of polystyrene.
- a detonator head 8 is screwed onto the grenade body and bears the usual functional elements, such as bats 8 ', securing bracket 9 and detonator tube 10.
- the detonator tube 10 projects through the central opening of the cover 3 into the interior of the hand grenade body, specifically into a recess in the explosive device 11. (Incidentally, this also applies to the exemplary embodiment according to FIGS. 1 to 4).
- the lid 3 of the splinter body is ring-shaped with a small central opening, the cross-sectional area of which corresponds to the cross-sectional area of the ignition tube 10.
- the peripheral side wall of the cover 3 is stepped, the outer circumference of the cover 3 being larger than its inner circumference.
- the metal particles 7 are arranged in the lid 3 and in the region of the hollow body 2 surrounding the lid 3 such that the inner annular gap 12 between the lid 3 and the hollow Body 2 'starting from the peripheral side wall of the inner step of the cover 3 and continuing through this outwardly imaginary geometric surface Fi (in the present case a cylindrical surface) in the outer region of the cover 3 intersects several metal particles which are arranged in a ring arrangement around the axis of the lid (and the hand grenade).
- Fi in the present case a cylindrical surface
- the imaginary geometrical surface area F A (also a cylindrical surface), which extends from the outer annular gap 13 between the lid 3 and the hollow body 2 ', follows the peripheral side wall of the outer step of the lid 3 and continues inwards in the inner region of the wall 3 surrounding the lid 3 Hollow body 2 'several metal particles, which in turn are arranged in an annular row, based on the axis of the hand grenade.
- the lateral distance D between the peripheral side surfaces of the steps of the cover 3 is approximately equal to the radius r of the metal particles 7.
- grenade body Filling the grenade body with explosives, e.g. An explosive in powder form, liquid or plastic (for example hexogen, composition B, nitropenta) takes place with the lid 3 open. After filling with explosive, the lid is closed and preferably glued to the hollow body 2 '. Finally, the ignition tube 10 is inserted through the small opening in the lid 3 and the detonator head is screwed to the hand grenade body.
- explosives e.g. An explosive in powder form, liquid or plastic (for example hexogen, composition B, nitropenta) takes place with the lid 3 open. After filling with explosive, the lid is closed and preferably glued to the hollow body 2 '. Finally, the ignition tube 10 is inserted through the small opening in the lid 3 and the detonator head is screwed to the hand grenade body.
- the embodiment variant according to FIG. 14 differs from that according to FIGS. 12 and 13 in that the lateral distance between the peripheral side surfaces of the steps of the cover 3 is greater, namely three times the radius r of the metal particles 7.
- the use of spherical metal particles of approximately the same size in close packing also applies that the lateral distance D between the peripheral ones Side surfaces of the steps of the lid corresponds to an odd multiple of the radius r of the metal particles. Expressed in form, this means:
- the geometric surfaces FIJ, F Av which follow the lateral step surfaces of the cover 3 and each cut a plurality of metal particles 7 in the cover 3 or in the hollow body 2 ' are not cylindrical surfaces but conical surfaces.
- splinter body 2 ', 3 is shown, but not also an outer housing jacket made of plastic, which, however, is usually, but not necessarily, provided.
- FIG. 15 again shows a hand grenade with a splinter body consisting of a hollow body 2 'and a cover 3, metal particles, preferably steel balls, embedded in plastic being arranged in a tight packing both in the wall of the hollow body and in the cover 3.
- the lid 3 has a central opening for the passage of the ignition tube 10.
- the hollow body 2 ' has a cylindrical cavity and is therefore suitable, when the lid 3 is open, for receiving a preformed compact of a solid explosive 11.
- the lid put on after the introduction of the explosive 11 is held down by parts of the screwed-on detonator head 8, but can also be additionally glued to the wall of the hollow body 2 '.
- the conditions according to the invention also apply to the arrangement of the metal particles in the lid 3 and in the regions of the hollow body 2 'surrounding the lid, with respect to FIG peripheral side surfaces of the two steps of the cover 3, after which the imaginary extension of the inner annular gap 12 between the cover 3 and the hollow body 2 'to the outside in the outer region of the cover 3 meets metal particles 7 and not exclusively gaps between metal particles.
- the imaginary extension of the outer annular gap 13 between the cover 3 and the hollow body 2 ′ inwards in the inner region of the wall of the hollow body 2 surrounding the cover 3 meets metal particles 7 and not exclusively the spaces between metal particles.
- the side surfaces of the cover 3 are designed in two stages; in the context of the invention, three or more stages of the cover 3 are also possible.
- the splinter body can also be equipped with a second cover, specifically on the bottom of the splinter body opposite the detonator head, if the explosive is to be filled in from there.
- this second cover has no central hole.
Landscapes
- Engineering & Computer Science (AREA)
- General Engineering & Computer Science (AREA)
- Chemical & Material Sciences (AREA)
- Combustion & Propulsion (AREA)
- Catching Or Destruction (AREA)
- Aiming, Guidance, Guns With A Light Source, Armor, Camouflage, And Targets (AREA)
- Toys (AREA)
Applications Claiming Priority (4)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
AT0063085A AT381792B (de) | 1985-03-04 | 1985-03-04 | Splitterkoerper, insbesondere fuer handgranaten |
AT630/85 | 1985-03-04 | ||
AT1814/85 | 1985-06-19 | ||
AT181485A AT384105B (de) | 1985-06-19 | 1985-06-19 | Granatenkoerper |
Publications (2)
Publication Number | Publication Date |
---|---|
EP0200856A1 true EP0200856A1 (fr) | 1986-11-12 |
EP0200856B1 EP0200856B1 (fr) | 1988-09-21 |
Family
ID=25593408
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
EP86101974A Expired EP0200856B1 (fr) | 1985-03-04 | 1986-02-17 | Corps de grenade, notamment pour grenade à main |
Country Status (8)
Country | Link |
---|---|
US (1) | US4781118A (fr) |
EP (1) | EP0200856B1 (fr) |
CN (1) | CN86101279A (fr) |
DE (1) | DE3660785D1 (fr) |
EG (1) | EG17734A (fr) |
ES (1) | ES292668Y (fr) |
GR (1) | GR860594B (fr) |
MY (1) | MY101327A (fr) |
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
EP2682708A3 (fr) * | 2012-07-06 | 2017-11-29 | Diehl Defence GmbH & Co. KG | Corps à éclats, notamment corps de grenade à main |
Families Citing this family (12)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US6082267A (en) * | 1997-10-03 | 2000-07-04 | Bulova Technologies, L.L.C. | Electronic, out-of-line safety fuze for munitions such as hand grenades |
FR2867849B1 (fr) * | 2004-03-16 | 2006-07-21 | Catherine Tanguy | Grenage fragmentable |
US20070209500A1 (en) * | 2006-03-13 | 2007-09-13 | System Planning Corporation | Method and apparatus for disarming an explosive device |
US8365670B2 (en) * | 2010-01-25 | 2013-02-05 | Igor Abramov | Dual mode grenade |
US9702677B2 (en) | 2015-04-27 | 2017-07-11 | Basic Electronics, Inc. | Ammunition for providing a multilayer flowering upon impact |
US11614311B1 (en) | 2016-03-22 | 2023-03-28 | Northrop Grumman Systems Corporation | Prefragmented warheads with enhanced performance |
US12072171B1 (en) | 2016-03-22 | 2024-08-27 | Northrop Grumman Systems Corporation | Prefragmented warheads with enhanced performance |
US10634472B1 (en) | 2016-03-22 | 2020-04-28 | Northrop Grumman Innovation Systems, Inc. | Prefragmented warheads with enhanced performance |
US10066915B1 (en) * | 2016-09-21 | 2018-09-04 | The United States Of America As Represented By The Secretary Of The Army | Multi-purpose state changing munition |
KR102151483B1 (ko) * | 2019-01-03 | 2020-09-03 | 주식회사 한화 | 파편형 탄체 제조용 금형 및 이를 이용한 파편형 탄체의 제조 방법과 이 제조 방법에 의해 제조된 파편형 탄체 |
CN111497147B (zh) * | 2020-05-25 | 2020-12-01 | 广东明华机械有限公司 | 一种手雷内衬套注塑模具结构 |
SE2000234A1 (en) * | 2020-12-14 | 2022-06-15 | Saab Ab | A fragmentation warhead a method of manufacturing of a fragmentation warhead |
Citations (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
AT240218B (de) * | 1961-12-22 | 1965-05-25 | Ulbricht Hein Wwe Gmbh | Sprenggranate |
AT348898B (de) * | 1977-07-29 | 1979-03-12 | Oregon Ets Patentverwertung | Wurfgranate |
AT368280B (de) * | 1980-07-07 | 1982-09-27 | Oregon Ets Patentverwertung | Handgranate |
Family Cites Families (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US1154437A (en) * | 1914-07-18 | 1915-09-21 | Cie Forges Et Acieries Marine | Artillery-projectile. |
NL278102A (fr) * | 1961-05-05 |
-
1986
- 1986-02-17 EP EP86101974A patent/EP0200856B1/fr not_active Expired
- 1986-02-17 DE DE8686101974T patent/DE3660785D1/de not_active Expired
- 1986-02-24 EG EG90/86A patent/EG17734A/xx active
- 1986-02-27 US US06/834,000 patent/US4781118A/en not_active Expired - Fee Related
- 1986-03-03 ES ES1986292668U patent/ES292668Y/es not_active Expired
- 1986-03-03 CN CN198686101279A patent/CN86101279A/zh active Pending
- 1986-03-03 GR GR860594A patent/GR860594B/el unknown
-
1987
- 1987-08-10 MY MYPI87001258A patent/MY101327A/en unknown
Patent Citations (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
AT240218B (de) * | 1961-12-22 | 1965-05-25 | Ulbricht Hein Wwe Gmbh | Sprenggranate |
AT348898B (de) * | 1977-07-29 | 1979-03-12 | Oregon Ets Patentverwertung | Wurfgranate |
AT368280B (de) * | 1980-07-07 | 1982-09-27 | Oregon Ets Patentverwertung | Handgranate |
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
EP2682708A3 (fr) * | 2012-07-06 | 2017-11-29 | Diehl Defence GmbH & Co. KG | Corps à éclats, notamment corps de grenade à main |
Also Published As
Publication number | Publication date |
---|---|
CN86101279A (zh) | 1986-09-10 |
DE3660785D1 (en) | 1988-10-27 |
ES292668U (es) | 1988-05-16 |
ES292668Y (es) | 1989-02-01 |
US4781118A (en) | 1988-11-01 |
EG17734A (en) | 1990-08-30 |
GR860594B (en) | 1986-06-26 |
MY101327A (en) | 1991-09-05 |
EP0200856B1 (fr) | 1988-09-21 |
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