BELT AMMUNITION FEEDING DEVICE FOR DUAL-FEED AUTOMATIC WEAPON
20190310039 ยท 2019-10-10
Assignee
Inventors
Cpc classification
F41A9/37
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F41A9/56
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F41A9/56
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F41A9/37
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A belt ammunition feeding device for a dual-feed automatic weapon includes, for each feeding channel, at least a first rigid chute leading an ammunition belt from a magazine to the weapon, and a second rigid guide chute arranged at each tilting arm, the second chute including an upper mouth arranged opposite the outlet opening of the first rigid chute, the mouth also including a flared part forming a guide funnel and making it possible to cap the outlet opening of the first rigid chute when the tilting arm is in its engaged position with a stationary positioning star.
Claims
1. A belt ammunition feeding device for a dual-feed automatic weapon, the device comprising two ammunition feeding channels that are arranged on either side of a firing axis of the weapon, each channel being provided with an arm tilting around an axis parallel to a firing axis of the weapon so as to be able to position a feeding star secured to said tilting arm between a position engaged with a stationary positioning star and a position free from the stationary positioning star, wherein the device comprises, for each feeding channel, at least a first rigid chute leading an ammunition belt from a magazine to a vicinity of the weapon, and at each tilting arm, a second rigid guide chute including an upper mouth connected to a straight part in which the ammunition is guided and progresses with an axis thereof substantially parallel to the firing axis of the weapon and along a substantially vertical direction, the mouth being oriented along a direction substantially perpendicular to the straight part and being arranged opposite an outlet opening of the first rigid chute, the mouth also including a flared part that forms a guide funnel and is configured to cap the outlet opening of the first rigid chute when the tilting arm is in its position engaged with the stationary positioning star.
2. The device according to claim 1, wherein the flared part of the mouth is configured to cap the outlet opening of the first rigid chute also when the tilting arm is in its position free from the stationary positioning star.
3. The device according to claim 1, wherein the mouth includes a recess at an upper face of the mouth.
4. The device according to claim 1, wherein the first rigid chute includes a part forming a flat bend of 90 so as to lead the ammunition from an initial orientation in which the ammunition has its axis perpendicular to a vertical plane passing through the firing axis of the weapon to a final orientation, at the outlet opening of the first rigid chute, in which final orientation the axis of the ammunition is parallel to the firing axis of the weapon.
5. The device according to claim 1, wherein each tilting arm comprises a lower part secured to the weapon and to which the second rigid chute is fastened by a deformable parallelogram.
Description
[0014] The invention will be better understood upon reading the following description of one particular embodiment, the description being done in reference to the appended drawings and in which:
[0015]
[0016]
[0017]
[0018]
[0019]
[0020] In reference to
[0021] As shown more particularly in
[0022] As shown in the Figures, the feeding device comprises, at least channel 7a or 7b, a first rigid chute 8a or 8b that leads a belt of ammunition 4 from the magazine 6a or 6b to the vicinity of the weapon 1.
[0023]
[0024] For the simplicity of the Figures, the stars have not been drawn with all of the cells. This device is described by patent EP 129,457, to which reference will be made for the construction details.
[0025] The right tilting arm 9a here is shown freed from the stationary star 12. The left tilting arm 9b is shown engaged with the stationary star 12. This position corresponds to feeding of the arm 1 with the ammunition coming from the left arm 9b.
[0026] According to this embodiment of the invention, each feeding channel 7a and 7b therefore comprises a first rigid chute 8a, 8b that includes a part forming a flat bend 13a, 13b of 90 (
[0027] The ammunition 4 is in the initial orientation of its axis 14i at the magazines 6a, 6b and in the straight part of the first rigid chute 8a, 8b. The ammunition 4 is in the final orientation of its axis 14f at an outlet opening 15a or 15b of the first rigid chute 8a, 8b.
[0028] To improve the guiding of the belts of ammunition 4 during this pivoting by 90 in the first rigid chutes 8a, 8b, the bottoms of the first rigid chutes 8a, 8b bear one or several rigid bars 21 that have a circular profile and that cooperate with the links of the belts to ensure guiding of the belts.
[0029] The device according to the invention also comprises, at each tilting arm 9a, 9b, a second rigid guide chute 16a, 16b that includes an upper mouth 17a, 17b that is connected to a straight part 18a, 18b in which the ammunition 4 is guided and progresses with its axis substantially parallel to the firing axis 3 and along a substantially vertical direction V (
[0030] The mouth 17a or 17b is oriented along a direction substantially perpendicular to the straight part 18a or 18b and is arranged opposite the outlet opening 15a or 15b of the first rigid chute 8a or 8b.
[0031] As shown in
[0032] One can see in
[0033] As shown in
[0034] Thus, the guiding of the ammunition is fully ensured by the rigid chutes both at the first rigid chute 8a, 8b and the second rigid chute 16a, 16b. The guiding is also ensured between the second rigid chute 16a, 16b and the lower part 22a, 22b of the arms. There is no risk of seeing the ammunition belt deform or twist near the weapon, despite the compactness of the feeding device and the 90 pivoting of the ammunition that is ensured in the immediate vicinity of the weapon.
[0035] It will be noted that the rigid chutes 8a, 8b, 16a and 16b are connected to the oscillating support of the weapon 1 by means that are not shown and they therefore pivot with this support during elevation aiming.
[0036]
[0037] As shown more particularly in
[0038] The recess 20a or 20b also makes it possible to access the ammunition belt to be able to push it manually during the initial loading.
[0039] Various alternatives are possible without going beyond the scope of the invention. It is thus possible to make the deformable parallelogram connecting the lower part of the tilting arm to the second rigid chute in the form of connecting rods connected to the two parts of the arm by ball joint links.