序号 专利名 申请号 申请日 公开(公告)号 公开(公告)日 发明人
21 MULTI-COMPONENT BULLET WITH CORE RETENTION FEATURE AND METHOD OF MANUFACTURING THE BULLET EP14705232.8 2014-01-24 EP2948728A1 2015-12-02 BURCZYNSKI, Thomas, J.; IMHOFF, Jason
A three component bullet (160) with an improved core retention feature (165) and a method of manufacturing the bullet (160) includes a cylindrical jacket (100) having an open end (105) and a closed end containing a malleable metal core (110) which is forced into a forming die having a bottleneck shaped interior, wherein the outside diameter of the open-ended forward portion of the jacket (100) is smaller than the outside diameter of its closed rearward portion. The open end (105) of the pre-form (114) may be dropped through or forced through a malleable non-rigid locking band (130). A relatively tight-fitting punch (120) enters the open end (105) of the pre-form (114), to radially swell the core (110) and subsequently portions of the jacket (100) fore and aft of the non-rigid locking band (130), thereby securing the non-rigid locking band (130) in place. An inwardly-extending annular band of jacket material (100) embeds itself into the core material (110) to lock the core (110) inside the jacket (100).
22 LINER EP07765104.0 2007-07-06 EP2044385A1 2009-04-08 SCHWENZER, Michael; DAU, Ole
In order to prevent slipping of the liner (3) on an explosive charge (4) in a missile (1), the invention provides that at least one flaring or cam (5, 6) is fixed in the liner (3) which, when deformed inwards, can hook itself on the explosive charge (4).
23 METHOD FOR PRODUCING PROPELLANT CHARGES FROM A GRANULATED PROPELLANT, PREFERABLY GRANULATED POWDER, AND PROPELLANT CHARGES PRODUCED IN ACCORDANCE WITH THE AFOREMENTIONED METHOD EP06799734.6 2006-10-06 EP1934550A1 2008-06-25 GUSTAVSSON, Lennart; BJÖRN, Lars-Erik
The present invention proposes a novel method for producing powder charges with a high charge density consisting of a granulated powder lying loosely in the charge. In accordance with the invention, the powder is vacuum-packed in airtight pouches made of a combustible and preferably flexible packaging material .
24 Geschoss mit einer splitterbildenden äusseren Hülle und Verfahren zu seiner Herstellung EP03005875.4 2003-03-15 EP1376047A3 2004-03-24 Altenau,Ernst-Wilhelm

Die Erfindung betrifft ein Geschoß (1) mit einer splitterbildenden äußeren Hülle (2) und einer innenseitig sich an die äußere Hülle (2) anschließenden Kunststoff-Folie, in welcher eine Sprengladung angeordnet ist, wobei die Kunststoff-Folie (3) einen mit dachförmigen Einbuchtungen (4) versehenen strukturierten Bereich (5) und mindestens einen seitlichen, sich an den strukturierten Bereich (5) anschließenden und an der Innenwand (6) der äußeren Hülle (2) formschlüssig anliegenden glatten Bereich (7, 8) aufweist. Die Erfindung bezieht sich ferner auf Verfahren zur Herstellung eines derartigen Geschosses.

Um zu erreichen, daß es bei Verwendung von kunststoffgebundenem Sprengstoff zu keiner Rißbildung des Sprengstoffes während der Beschleunigungsphase des Geschosses (1) kommt, schlägt die Erfindung vor, als Kunststoff-Folie (3) eine Folie zu verwenden, welche mindestens aus zwei Bereichen (5, 7, 8) unterschiedlicher Festigkeitseigenschaften besteht. In dem strukturierten Bereich (5) besteht die Kunststoff-Folie (3) aus einem verformungssteifen Material, welches ein Eindrücken der dachförmigen Einbuchtungen (4) während der Beschleunigungsphase des Geschosses (1) verhindert. In dem glatten Bereich (7, 8) besteht die Kunststoff-Folie (3) hingegen aus einem elastischen Kunststoffmaterial, so daß die Folie in diesem Bereich elastisch und formschlüssig gegen die Innenwand (6) der äußeren Hülle (2) gedrückt wird.

25 Verfahren und Vorrichtung zur Durchführung des Verfahrens für das Auffüllen von Geschosskörpern mit Subprojektilen EP95118419.1 1995-11-23 EP0736745A1 1996-10-09 Ettmüller, Peter

Mit dieser Vorrichtung können in kürzester Zeit Subprojektile in einer bestimmten geometrischen Anordnung in einen Geschosskörper gefüllt werden, ohne dass durch Umlagerungen Fehler entstehen können. Zu diesem Zweck werden die Subprojektile (20) vor dem Auffüllen zu Schichten (40) zusammengefasst, die so dick wie die Länge der Subprojektile (20) sind und die in Ebenen quer zur Längsachse (43) des Geschosskörpers verlaufen. Die Subprojektile (20) nehmen in der Schicht (40) eine Lage ein, die ihrer geometrischen Anordnung in einem Hohlraum (42) des Geschosskörpers entspricht. Der Umfang der Schichten (40) wird bei der Zusammenfassung derart geformt, dass die Subprojektile (20) nach dem Einschieben einer Schicht (40) in den Hohlraum (42) in diesem unter Einhaltung der vorher gebildeten geometrischen Anordnung verdrehsicher gehalten werden. Gemäss einer bevorzugten Ausführung weist der Umfang der Schicht (40) die Form eines regelmässigen Sechseckes auf, wobei die aus Zylindern bestehenden Subprojektile (20) mit ihren Achsen parallel zur Längsachse (43) des Geschosskörpers verlaufen.

26 Method for supplying a water-in-oil emulsion explosive into a cartridge machine and an apparatus used therefor EP85304199.4 1985-06-12 EP0168958B1 1989-01-18 Kakino, Shigeru; Moriyama, Hideo; Sugimoto, Kazutoshi; Motohira, Tsukasa
27 Method for supplying a water-in-oil emulsion explosive into a cartridge machine and an apparatus used therefor EP85304199.4 1985-06-12 EP0168958A1 1986-01-22 Kakino, Shigeru; Moriyama, Hideo; Sugimoto, Kazutoshi; Motohira, Tsukasa

A feeder comprising a hopper (2) and a pusher (4), the isher comprising a pusher sleeve (6), which is provided at its ottom with a perforated plate (3) and a cylinder (5) actuating e pusher sleeve (6) along the wall surface of the hopper, can pply directly a W/O emulsion explosive into a cartridge achine without accompanying with air and without breakage hollow microspheres.

28 GESCHOSS EP17001130.8 2017-07-03 EP3267143A1 2018-01-10 Himmert, Rainer; Koch, Wolfgang

Geschoss (1) umfassend eine eine Ladung (2) umgebende Geschosshülle (3), wobei die Geschosshülle(3) zwei jeweils einen Verbindungsbereich (6, 7) aufweisende Abschnitte (4, 5) aufweist, mittels welchen Verbindungsbereichen (6, 7) die beiden Abschnitte (4, 5) miteinander verbindbar oder verbunden sind, wobei die Ladung (2) wenigstens zwei axial hintereinander angeordnete Teilladungen (8, 9) umfasst und in jedem Abschnitt wenigstens eine Teilladung (8, 9) aufgenommen ist, wobei zwischen den wenigstens zwei Teilladungen (8, 9) wenigstens ein Ausgleichselement (10, 13, 14, 16 bis 19, 20 bis 26) zum Erzeugen einer Vorspannkraft im montierten Zustand auf die beiden Teilladungen (8, 9) angeordnet ist, sodass diese zumindest abschnittsweise in Kontakt mit der Geschosshülle (3) stehen.

29 FEED AND COUNT STATION FOR BUCKSHOT FOR HUNTING CARTRIDGES LOADED WITH LEAD SHOTS EP15185606.9 2015-09-17 EP2998908A1 2016-03-23 GATTI, GIORGIO

The invention concerns the field of production lines and loading of lead shot cartridges, in particular those used for hunting, in shotguns.

More specifically, the invention relates to a feed and count station (1) for buckshot (2) for lead shot hunting cartridges comprising:

- a support frame (3);

- feed means (4) for a plurality of buckshot (2);

- at least one slide (5) having a main line of longitudinal extension suitable for the regular canalization of said buckshot (2);

- at least one movable needle (6) adapted to cooperate with said at least one slide (5), reversibly engaging a through hole in a wall of said slide (5), to select a precise quantity of said buckshot (2);

- download and convey means (7) of said precise quantity of said buckshot (2) towards said cartridges.

Said at least one slide (5) comprises a duct divided into two portions (15, 25) along a plane (Π) passing through said line of longitudinal extension and comprises regulating means (8, 9) adapted to regulate the mutual distance between said two portions (15, 25).

30 Cartridge loading machine with quick caliber change system EP14177140.2 2014-07-15 EP2827092A1 2015-01-21 Gatti, Giorgio

The invention concerns the field of cartridge production and loading lines, and relates to a loading machine (1) for cartridges (2) with quick caliber change system, where said machine (1) comprises: a frame structure (3); feed means (4) for a plurality of empty cartridges (2); an operating beam (5); feed and conveying means (100) of said cartridges (2); ejection means for the loaded cartridges; motor means (6) for activation of kinematic mechanisms; a control unit (7).

Said and conveying means (100) comprise:

- a race (8) adapted to support and allow feed of said cartridges (2) in a given direction;

- a conveyor guide (9), arranged parallel to said race (8), adapted to convey said cartridges (2) along said race (8);

- an abutment bar (10), arranged parallel to said race (8), symmetrical with respect to said conveyor guide (9), adapted to act as vertical support and stop surface for said cartridges (2) in production;

- shifting means (11) of said abutment bar (10) in transverse direction with respect to the direction of feed of said cartridges;

- interchangeable regulating means (12), adapted to cooperate resting against said abutment bar (10) to selectively define an appropriate distance between said bar (10) and said race (8) as a function of the caliber (c, c1, c2) of said cartridges (2).

31 REDUCED COLLATERAL DAMAGE BOMB (RCDB) AND SYSTEM AND METHOD OF MAKING SAME EP07873513 2007-08-24 EP2054695A4 2013-01-23 THOMAS BLAKE K; RUHLMAN JAMES D
32 REDUCED COLLATERAL DAMAGE BOMB (RCDB) AND SYSTEM AND METHOD OF MAKING SAME EP07873513.1 2007-08-24 EP2054695A2 2009-05-06 Thomas, Blake K.; Ruhlman, James D.
A reduced collateral damage bomb (RCDB) bomb casing is described and disclosed along with the system and method for making it. The RCDB bomb casing may be formed from conventional or penetrating warhead bomb casings. The RCDB bomb casing has a filler material/materials disposed on the interior walls that will assist in controlling the collateral damage caused by the finished bomb but not prevent the appropriate destructive power being delivered to a selected target.
33 Geschoss mit einer splitterbildenden äusseren Hülle und Verfahren zu seiner Herstellung EP03005875.4 2003-03-15 EP1376047B1 2004-12-08 Altenau,Ernst-Wilhelm
34 Anordnung zum Dosieren schüttfähiger Substanzen EP99118798.0 1999-09-23 EP0989383A3 2001-11-28 Hoermann, Karl, Dipl.-Ing. (FH)

Anordnung (100) zum Dosieren von Granulat, Treibmittel, Explosivstoff, Schießpulver, und anderen schüttfähigen Substanzen (102), mit einen Behälter (200) mit Verschluß (500, 550) und einer Dosiereinheit (300) mit einer Messkammer (301) die zum Dosierens mit dem Behälter (200) definiert verbindbar ist, wobei der Verschluß (500, 550) in Geschlossenstellung (130) gehalten ist und zum Öffnen mit einem Betätigungsmittel (502, 554) in eine Offenstellung (132) überführbar ist. Es ist ein den Verschluß (500,550) in der Geschlossenstellung (130) sicherndes Sperrmittel (532) vorgesehen ist, um unbeabsichtigtes Freisetzen der Substanz zu verhindern, wobei das Sperrmittel (532) beim Verbinden, von der Dosiereinheit (300), spätesten bei Erreichen der Befüllungslage (131) freigebbar ist, um eine zwanghafte Steuerung zu bewirken, und/oder ein die Dosiereinheit (300) in in der Befüllungslage (131) haltendes Haltemittel (539) vorgesehen ist, um die Zuordnung von Dosiereinheit (300) und Behälter (200) in der Befüllungslage (131) zu arretieren. Die Dosiereinheit (200) weist einen Messhalter (340) und mit diesem verbindbare Messkörper (311, 312, 313, 314, 410, 420, 430, 440, 450) auf. Der Behälter weist ein im Inneren drosselnd wirkendes dynamisches Querkraft auf, wobei ein den Behälter aufnehmender Klemmhalter (600) mit einer selbstspannenden Vierpunktanlage, der aufnehmbar ist in einem Haltegerät (700) mit Druckausgleichsmittel (771) zur semistationären Befestigung. Für aus mehreren Teilen bestehende Behälter (200) ist eine Klebeverbindung (202) offenbart. Schließlich sind bevorzugte Verwendungen angegeben;vgl. Fig. 1 und 71.

35 Verfahren und Vorrichtung zur Durchführung des Verfahrens für das Auffüllen von Geschosskörpern mit Subprojektilen EP95118419.1 1995-11-23 EP0736745B1 2001-08-22 Ettmüller, Peter
36 화약의 충전 및 냉각 방법 KR1020160088863 2016-07-13 KR1020180007606A 2018-01-23 서상훈; 이영훈
본발명은화약의충전및 냉각을위한장치와그 방법에관한발명으로, 더욱상세하게는 155mm사거리연장탄고폭탄두에화약을충전한후 냉각시키는장치및 그방법에관한발명이다.
37 EQUIPMENT FOR RECHARGE OF CARTRIDGES, RECHARGE METHOD AND RECHARGED CARTRIDGES PCT/BR2007000050 2007-02-23 WO2007095714A3 2008-04-24 ALMEIDA CELESTINO GONCALVES MI
The present invention refers to an equipment for the recharge of cartridges of firearms, composed of four modules that can operate jointly or separately. More specifically, the equipment comprised: - a calibrating press, with tools ports(5) with calibrating tool (4) that calibrates and removes the fuse already deflagrated of the case through the movement of the piston tool ports (17), - a washing turbine (113), comprised by a rotative nucleus (107), that moves in angles that vary from 90 to -90° degrees to facilitate the loading process, wash and discharge of the cases, that is activated by two pistons (111) of pneumatic activation, and said turbine, in its turn, moves horizontally through a unique activation piston (112); - a fuse press for fuse assembly in the case, with automatic rejection of the defective cases through pneumatic auxiliary cylinders of high sensibility, and said press comprised by a system feeder of cases (201), a rotative disk (208) and by a reservoir feeder of fuses (202); - a dosage press for the assembly and packing of the cartridges, with movements synchronized vertically, circular and lineal, with main cylinder (311) and commanded through the panel (305) provided with commands for control of the gunpowder dosage, of the interruption of the option of automatic packing, and said press formed by two bases, an inferior (309) and superior one (310), linked amongst themselves by steel columns (311), and these are supported on the movable table (312), in a cylindrical and linked way to the main cylinder fixed to the inferior structure (301).
38 REDUCED COLLATERAL DAMAGE BOMB (RCDB) AND SYSTEM AND METHOD OF MAKING SAME PCT/US2007076757 2007-08-24 WO2008118185A3 2008-12-11 RUHLMAN JAMES D; THOMAS BLAKE K
A reduced collateral damage bomb (RCDB) bomb casing is described and disclosed along with the system and method for making it. The RCDB bomb casing may be formed from conventional or penetrating warhead bomb casings. The RCDB bomb casing has a filler material/materials disposed on the interior walls that will assist in controlling the collateral damage caused by the finished bomb but not prevent the appropriate destructive power being delivered to a selected target.
39 AMMONIUM NITRATE FUEL OIL EXPLOSIVE FILLING CASE AND METHOD FOR ROCK BLASTING USING SAME PCT/KR2011005365 2011-07-21 WO2012015193A3 2012-05-03 LEE JIN SUNG; HWANG BYUNG KI
The present invention relates to an ammonium nitrate fuel oil explosive filling case and to a method for rock blasting using same for standardizing the amount of explosive to be filled and blasting a base rock and reducing vibration and noise when blasting. To this end, the ammonium nitrate fuel oil explosive filling case of the present invention comprises: an accommodation space (S1) inside the filling case so that the ammonium nitrate fuel oil explosive (1) can be filled therein; and a pocket housing (110) formed in a tube shape with an open upper portion, having a smaller diameter than a blasting hole (2) and inserted into the blasting hole (2), wherein the ammonium nitrate fuel oil explosive (1) particles used for blasting rocks are standardized. The method for rock blasting using the ammonium nitrate fuel oil filling case comprises the following steps: establishing a plan for shattering a rock; drilling a plurality of the blasting holes (2) on the rock to be blasted; filling a tubular case (100) with a predetermined amount of the ammonium nitrate fuel oil explosive (1) required for shattering the rock, and inserting the case (100) into the blasting hole (2); inserting a priming explosive (300) having a detonator (310) connected thereto into the inserted case (100); tamping the remaining space in the blast hole (2) with stemming material (320); and igniting the detonator (310) to shatter the rock to be blasted.
40 플레이트식 탄환 결합장치 KR1020130133355 2013-11-05 KR101482449B1 2015-01-13 이동희; 이채기
본 발명은 탄피에 추진제를 충전한 후 탄자를 결합시켜 탄환으로 만들기 위하여 복수의 탄피가 결합된 플레이트를 이송하면서 각각의 탄피에 추진제를 동시에 충전하고 탄자를 동시에 결합시키도록 함으로써 생산성을 대폭 향상시킬 수 있는 플레이트식 탄환 결합장치에 관한 것으로서,
탄피삽입용 플레이트(250)를 이송하는 메인 컨베이어(200)와; 메인 컨베이어(200)와 병렬로 배치되는 보조 컨베이어(300)와; 탄피삽입용 플레이트(250)에 탄피(510)를 공급하는 탄피공급부(10)와; 탄피지지용 하부 플레이트(260)를 공급하는 하부 플레이트 공급부(20)와, 각각의 탄피(510)에 추진제를 투입하는 추진제 정량 공급부(50)와; 탄자가이드 플레이트(270)를 공급하는 탄자가이드 공급부(70)와; 각 탄피(510)의 입구부에 탄자(520)가 삽입되도록 하는 탄자 공급부(80)와; 탄피(510)와 탄자(520)를 결합시켜 탄환(500)으로 만드는 탄환 결합부(90)와; 탄자가이드 플레이트(270)를 분리/배출하는 탄자가이드 제거부(100)와; 탄피(510)의 입구부를 가압하여 탄자(520)가 탄피(510)에 견고하게 결합되도록 하는 탄환 크림핑부(110)와; 탄피지지용 하부 플레이트(260)를 분리/배출하는 하부 플레이트 제거부(140)와; 뇌관의 이상 유무를 검사하는 뇌관 검사부(150);를 포함하는 것을 특징으로 한다..
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