Secure handgun holster

The holster design automatically secures handguns upon insertion and releases with a thumb-operated mechanism, addressing the need for user-activated safety and compatibility with accessories, enhancing security and usability.

FR3162837B1Active Publication Date: 2026-05-01GK PRODUCTION SA
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Patent Information

Authority / Receiving Office
FR · FR
Patent Type
Patents
Current Assignee / Owner
GK PRODUCTION SA
Filing Date
2024-05-28
Publication Date
2026-05-01

AI Technical Summary

Technical Problem

Existing handgun holsters require specific user handling to activate safety devices and are poorly suited for weapons with removable accessories, such as flashlights.

Method used

A holster design with a locking mechanism activated by simply inserting the weapon, featuring a movable actuating element, cam systems, and helical springs that automatically secure the weapon upon insertion and can be released with a thumb-operated pusher.

Benefits of technology

Provides secure and user-friendly activation of the safety mechanism, hidden from view to prevent unauthorized access, and accommodates weapons with accessories without additional user interaction.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

Secure Handgun Holster The invention relates to a handgun holster (10) comprising: - a housing shell (24); - a cap (26), movable relative to the shell, between a safe position and a weapon release position; and - a locking device (28) adapted to lock the cap in the safe position. The locking device comprises: - an actuating element (54), movable in translation relative to the shell and comprising a front stop (62); the cap being movable in rotation relative to the actuating element, between the safe position and the release position; - a cam system, connecting the shell to the cap; - a pusher (58), adapted to pivot relative to the shell; and - a helical spring, one end of which is connected to the pusher. Figure for the abstract: Figure 1
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Description

Title of the invention: Secure holster for handgun

[0001] The present invention relates to a holster for a handgun, said weapon comprising a barrel extending between a first and a second end, the holster being of the type comprising: a housing shell, extending in a longitudinal direction between a front end and a rear end, intended to receive respectively the first and second ends of the barrel; a cap, movable relative to the rear end of the shell, between a safety position and a weapon release position; the cap in the safety position being able to come against the second end of the barrel in the longitudinal direction; and a locking device, such that in an engaged configuration of the locking device, the cap is locked in the safety position.

[0002] The invention is particularly applicable to pistol or revolver holsters. Such a holster is notably described in patent FR2895495 in the name of the Applicant.

[0003] It is known to secure handgun cases to prevent an outside person from seizing the weapon unintentionally.

[0004] To be activated, known safety devices generally require specific handling by the user. Furthermore, known devices are poorly suited to weapons to which a removable accessory, such as a flashlight, has been added.

[0005] The present invention aims to provide a case comprising a safety device activated by simply inserting the weapon into the bottom of said case.

[0006] To this end, the invention relates to a case of the aforementioned type, in which the locking device comprises: an actuating element, movable in translation relative to the housing shell along the longitudinal direction, the actuating element comprising a front stop adapted to come into contact with the first end of the barrel of the weapon; the cap being movable in rotation relative to the actuating element, along a first axis perpendicular to the longitudinal direction, between the safety position and the release position; a first cam system, connecting the rear end of the shell to the cap; a pusher, adapted to pivot relative to the rear end of the shell around a second axis parallel to the first axis; and a first helical spring, the first end of which is connected to the pusher.

[0007] According to other advantageous aspects of the invention, the case comprises one or more of the following features, taken individually or in all technically possible combinations:

[0008] - the first cam system comprises: an oblong hole, carried by the cap; and a pin, carried by the housing shell and forming a projection perpendicular to the longitudinal direction, said pin being able to slide in said oblong hole between the safety position and the release position of the cap;

[0009] - a second end of the first helical spring is connected to the shell housing; the actuating element includes a rear stop; in the engaged configuration of the locking device, the pusher cooperates with said rear stop, so as to block the actuating element in translation relative to the housing shell; and the first helical spring tends to move the pusher in said engaged configuration of the device;

[0010] - the rear stop of the actuating element is formed by a rear notch; the pusher is articulated at the rear end of the shell along the second axis and includes an arm connected to the first end of the first helical spring, said arm including a lug; and in the engaged configuration of the locking device, said lug is inserted into the rear notch of the actuating element to block the actuating element in translation relative to the housing shell;

[0011] - the actuating element comprises a rod adapted to slide along a rail fitted into the housing shell, a front end of the rod carrying the front stop;

[0012] - the locking device further comprising a second helical spring, Interposed between the rod and the housing shell, the second spring tends to move the front stop towards the rear end of the shell;

[0013] - the first helical spring extends along a third axis perpendicular to the first and second axes; a second end of said first spring is connected to the cap; the pusher is movable in translation relative to the cap along the third axis; and the locking device further comprises a second cam system connecting the pusher to the actuating element, said second cam system comprising: a rotation portion, extending around the second axis between a first and a second end, corresponding respectively to the release position and the safety position of the cap; and a locking portion, adjacent to said second end; the first spring tending to bring the pusher from the second end of the rotation portion towards the locking portion, so as to lock the cap in rotation relative to the actuating element;

[0014] - the actuating element includes a hood such that, in the engaged configuration of the locking device, the hood extends substantially between the front end and the rear end of the shell, said shell and said hood defining an interior space receiving the barrel of the weapon;

[0015] - the actuation element includes a rider having a U-shaped cross-section perpendicular to the longitudinal direction, a first side of said rider being integral with the hood, a second side bearing a slot of the second cam system;

[0016] - the pusher includes a grip button, substantially aligned with the shell housing along the longitudinal direction.

[0017] The invention will be better understood upon reading the following description, given solely by way of non-limiting example and made with reference to the drawings in which:

[0018] [Fig-1] [Fig. 1] is an exploded perspective view of a case according to a first embodiment of the invention;

[0019] [Fig.2] [Fig.2] is a cross-sectional view of the case of [Fig.1], in a first configuration;

[0020] [Fig.3] [Fig.3] is a partial side view of an assembly comprising the case of figures 1 and 2, in a second configuration;

[0021] [Fig.4] [Fig.4] is an exploded perspective view of a case according to a second embodiment of the invention;

[0022] [Fig. 5] [Fig. 5] is a partial side view of an assembly comprising the case of [Fig. 4], in a third configuration; and

[0023] [Fig.6] [Fig.6] is a side view of the assembly of figures 4 and 5, in a fourth configuration.

[0024] Figures 1 to 3 show a holster 10 for a handgun 12, according to a first embodiment of the invention. Figures 4 to 6 show a holster 110 for the handgun 12, according to a second embodiment of the invention.

[0025] More specifically, figures 3, 5 and 6 represent an assembly 14, 114 comprising the case 10, 110 and the weapon 12 in an assembled configuration.

[0026] The weapon 12 is of the pistol or revolver type and includes in particular a barrel 16 and a stock 18. The barrel 16 extends substantially longitudinally, between a first end 20, called the front end, and a second end 22, called the rear end.

[0027] The butt 18 extends from the rear end 22 of the barrel 16. Preferably, the butt 18 extends in a direction substantially perpendicular to said barrel 16. By "substantially perpendicular", it is understood that a principal direction of the butt is inclined at an angle between 0° and 30° with the perpendicular to a principal direction of the barrel 16.

[0028] Cases 10 and 110 will be described simultaneously below, the common elements being designated by the same reference numbers.

[0029] The case 10, 110 comprises: a housing shell 24, 124; a cap 26, 126; and a locking device 28, 128.

[0030] The hull 24, 124 extends in a longitudinal direction, between a front end 30 and a rear end 32.

[0031] In the following description, we consider an orthonormal basis (X, Y, Z) associated with the shell 24, 124. The direction X corresponds to the longitudinal direction of the shell.

[0032] The hull 24, 124 defines an internal space 34, 134, intended to receive the barrel 16 of the weapon 12 in the assembled configuration of the set 14, 114. The hull 24, 124 comprises: an internal wall 36, 136, oriented towards the internal space 34, 134; and an external wall 38, 138, oriented towards the outside of the case 10, 110.

[0033] In the assembled configuration, visible in figures 3, 5 and 6, the front ends 20 and rear ends 22 of said barrel 16 are arranged respectively at the front ends 30 and rear ends 32 of the hull 24, 124; and the butt 18 is arranged outside the inner space 34, 134, so as to be able to be grasped by a user equipped with the case 10, 110.

[0034] Preferably, in the assembled configuration, the interior space 34, 134, includes an enlarged area 40 ([Fig.3]), near the front end 30 of the hull. This enlarged area 40 allows, in particular, for the reception of an accessory attached to the front of the barrel 16 of the weapon 12, such an accessory being, for example, a lamp.

[0035] The outer wall 38, 138 of the shell 24, 124 is intended to be attached to a part of the body or to a piece of clothing of the user, such as for example to a belt.

[0036] In the embodiments shown, the holsters 10, 110 are configured so that the weapon 12 can be gripped with the user's right hand. According to embodiments not shown, the holsters are adapted for a left-hand grip.

[0037] In the first embodiment of Figures 1 to 3, the shell 24 comprises a first and a second part, referred to as left part 42 and right part 44. The left part 42 and right part 44 are substantially arranged on either side of a plane (X, Z) forming a median plane of the case 10. The left part 42 and right part 44 are fixed to each other, in particular by means of fasteners 45. In an alternative not shown, the left and right parts are formed from a single piece.

[0038] At the rear end 32 of the hull 24, the left part 42 of said hull has a rear edge 46, extending substantially in a plane (X, Z) and arranged obliquely with respect to X.

[0039] The left part 42 of the shell 24 is intended to be attached to a piece of the user's clothing, such as a belt, so that the weapon 12 can be grasped with the right hand.

[0040] In the second embodiment of Figures 4 to 6, the shell 124 comprises only the equivalent of the left-hand portion 42 described above. More precisely, the The case 124 is substantially arranged on one side of a plane (X, Z) forming a median plane of the case 110. The said case 110 will be described more precisely below.

[0041] The liner 26, 126 is movable relative to the rear end 32 of the shell 24, 124, between a safety position and a release position. The safety position of the liner 26, 126 is particularly visible in Figures 3, 4 and 5. The release position of the liner 26, 126 is particularly visible in Figures 1, 2 and 6.

[0042] In the safety position, the cap 26, 126 is able to come to a stop along X against the second end 22 of the barrel 16, so as to maintain the assembly 14, 114 in the assembled configuration. In the release position, the cap 26, 126 allows the weapon 12 to slide along X relative to the housing 24, 124, as described in more detail below.

[0043] In the embodiments shown, the headdress 26, 126 comprises a body 47 and an ear 48.

[0044] The body 47 has the shape of a U-shaped curved band, between a left end 50 and a right end 52. Said left ends 50 and right ends 52 of the body 47 are substantially opposite each other with respect to the median plane (X, Z) of the case 10, 110.

[0045] The ear 48 extends substantially in a plane (X, Z) from the left extremity 50 of the body 47. The headpiece 26, 126 will be described in more detail below.

[0046] The locking device 28, 128 is configured so that, in an engaged configuration of said locking device 28, 128, the cap 26, 126 is locked in the safety position.

[0047] The locking device comprises: an actuation element 54, 154; a first cam system 56, 156; a pusher 58, 158; and a first helical spring 59, 159.

[0048] The actuating element 54, 154 is movable in translation along X relative to the shell 24, 124. More precisely, the shell 24, 124 has a rail 60, 160 in which the actuating element 54, 154 is able to slide, as described below.

[0049] The actuation element 54, 154 includes a front stop 62, 162, suitable for coming into contact with the first end 20 of the barrel 16 of the weapon 12, as detailed below.

[0050] The actuation element 54, 154 is able to slide along X, along the rail 60, 160, between a first and a second axial position. In the first axial position, the front stop 62, 162 is further from the rear end 32 of the shell 24, 124 than in the second axial position.

[0051] The cap 26, 126 is rotationally movable relative to the actuating element 54, 154, along a first axis 64, 164, between the safety position and the release position. The first axis 64, 164 is parallel to Y.

[0052] The first cam system 56, 156 connects the cap 26, 126 to the rear end 32 of the shell 24, 124.

[0053] In the embodiments shown, the first cam system 56, 156 comprises: an oblong hole 66, carried by the ear 48 of the cap and extending between a first and a second end; and a pin 68, carried by the shell 24, 124 and forming a projection along Y with respect to the rear end 32 of said shell.

[0054] The pin 68 is able to slide in the oblong hole 66 between the first and second ends, corresponding respectively to the safety position and the release position of the cap 26, 126.

[0055] The pusher 58, 158 is able to pivot relative to the rear end 32 of the shell 24, 124, about a second axis 70, 170 parallel to Y. A first end 72 of the first helical spring 59, 159 is connected to the pusher. The pusher 58, 158 and the first spring 59, 159 will be described in more detail below.

[0056] In the engaged configuration of the locking device 28, 128, the case 10, 110 and the weapon 12 are in the assembled configuration to form the assembly 14, 114; the first end 20 of the barrel 16 of the weapon is abutted against the front stop 62, 162 of the actuating element 54, 154; and said actuating element is in the first axial position relative to the shell 24, 124.

[0057] Furthermore, in said engaged configuration, the carriage 26, 126 is in the safe position and the body 47 of said carriage forms a rear stop along X, blocking in translation the barrel 16 of the weapon in the internal space 34, 134 of the hull.

[0058] Furthermore, in said engaged configuration, the pin 68 of the first cam system 56 is disposed at a first end of the oblong hole 66, closest to the body 47 of the cap 26, 126.

[0059] In a free configuration of the locking device 28, 128, the actuation element 54, 154 is in the second axial position relative to the shell 24, 124.

[0060] Furthermore, in said free configuration of device 28, 128, the cap 26, 126 is in release position and does not form a rear stop for barrel 16.

[0061] Furthermore, in said free configuration, the pin 68 of the first cam system 56, 156 is disposed at a second end of the oblong hole 66, the furthest from the body 47 of the cap 26, 126.

[0062] The first embodiment of figures 1 to 3 will now be described in more detail.

[0063] In the first embodiment, the locking device 28 for the case 10 further includes a second helical spring 74, which will be described later.

[0064] Furthermore, in the first embodiment, the rail 60 of the shell 24 is provided in the internal space 34; and the actuating element 54 of the locking device 28 comprises a rod 78 and a rear stop 80. In the embodiment shown, the actuating element 54 further comprises a median projection 81.

[0065] The rod 78 extends along X in a straight line, between a front end, fixed to the front stop 62, and a rear end, fixed to the rear stop 80. Each of the front stops 62 and rear stops 80 is oriented towards the rear of the shell 24.

[0066] The rod 78 is able to slide along X, along the rail 60, between the first and second axial positions of the actuating element 54.

[0067] In the embodiment shown, the actuation element 54 has a left leg 82 and a right leg 83, arranged on either side of the rod 78 to materialize the first axis 64 of rotation of the cap 26. The rear stop of the actuation element 54 is formed by a rear notch 80 provided in the left leg 82.

[0068] Furthermore, the left leg 82 has a front edge 84, extending substantially in a plane (X, Z) and oriented obliquely with respect to X. The front edge 84 is adjacent along X to the rear notch 80.

[0069] The front stop 62 and the left 82 and right 83 legs extend substantially on the same side of a plane (X, Y) passing through the rod 78.

[0070] The median projection 81 extends along Z from the rod 78, opposite the front stop 62 and the left 82 and right 83 legs with respect to said plane (X, Y). Along X, said median projection 81 is disposed between the front stop on one side and the left 82 and right 83 legs on the other.

[0071] The push button 58 is rotatable about the second axis 70 relative to the rear end 32 of the shell 24. The push button 58 comprises a front arm 86, a rear button 88 and a lug 90. The front arm 86 and the rear button 88 are fixed to each other and arranged on either side of the second axis 70. The lug 90 forms a projection along Y relative to the front arm 86.

[0072] The first end 72 of the first spring 59 is fixed to the front arm 86 of the pusher. A second end 92 of said first spring 59 is fixed to the left part 42 of the shell 24.

[0073] In the embodiment shown in Figures 1 to 3, the first spring 59 is a tension spring. In a state of minimum stress of said first spring 59, visible in Figures 1 to 3, the front arm 86 and the rear button 88 of the push button are substantially aligned along X.

[0074] In a state of maximum stress (not shown) of the first spring 59, the rear button 88 is positioned higher along Z than in the state of minimum stress. In other words, in the state of maximum stress, the rear button 88 is further from the stock 18 of the weapon 12 than in the state of minimum stress. Preferably, in the state of maximum stress, the rear button 88 abuts against the rear edge 46 of the left part 42 of the shell 24.

[0075] Conversely, in the state of maximum stress, the front arm 86 is positioned lower along Z than in the state of minimum stress.

[0076] The second helical spring 74 is a compression spring and extends along X between a front end, resting on the shell 24, and a rear end, resting on the median projection 81 of the actuation element 54.

[0077] In the embodiment shown, the second helical spring 74 is received in an internal cavity 94 formed in the shell 24. Said internal cavity 94 is delimited along X between a front wall 95 and a rear wall 96. The front end of the second helical spring 74 bears against the front wall 95 of said internal cavity 94. The median projection 81 is able to slide along X in the internal cavity 94.

[0078] In the engaged configuration of the locking device 28, visible in [Fig.3], the rod 78 is in the first axial position relative to the rail 60 of the shell 24.

[0079] Furthermore, in said engaged configuration, the lug 90 of the pusher 58 is engaged in the rear notch 80 of the left leg 82 of the actuation element 54.

[0080] Finally, in said engaged configuration, the second helical spring 74 is compressed in a first state of compression, between the median projection 81 of the actuation element 54 and the front wall 95 of the internal cavity 94.

[0081] In the free configuration of the locking device 28, visible in [Fig.2], the rod 78 is in the second axial position relative to the rail 60 of the shell 24.

[0082] Furthermore, in said free configuration of device 28, the cap 26 is in release position and the body 47 of said cap substantially fits the inner wall 36 of the shell 24 at the rear end 32.

[0083] Furthermore, in said free configuration, the rear notch 80 of the left leg 82 of the actuation element 54 is moved away along X from the lug 90 of the pusher 58.

[0084] Finally, in said free configuration, the second helical spring 74 is in a second state of compression, corresponding to a lower compression than the first state of compression; and the median projection 81 of the actuation element 54 is in contact with the rear wall 96 of the internal cavity 94.

[0085] The second embodiment of figures 4 to 6 will now be described in more detail.

[0086] In the second embodiment, the shell 124 has a first sliding surface 200, adjacent along Z to the interior space 134. The rail 160 of the shell 124 extends along X over said first surface 200.

[0087] Furthermore, in the second embodiment, the actuation element 154 comprises a cover 202 and a jumper 204.

[0088] The cover 202 corresponds substantially to the right-hand portion 44 of the shell 24 of the case 10 in Figures 1 to 3. More precisely, the shell 124 and the cover 202 are substantially arranged on either side of the median plane (X, Z) of the case 110; and in the engaged configuration of the locking device 128, the hood 202 extends substantially between the front end 30 and the rear end 32 of the hull 124, said hull and said hood together defining the interior space 134 receiving the barrel 16 of the weapon 12, as described below.

[0089] The hood 202 has a second sliding surface 206 and a slide 208.

[0090] The second sliding surface 206 is capable of sliding along X against the first sliding surface 200 of the shell 124. The skate 208 forms a projection along Y relative to said second surface 206 and is able to cooperate with the rail 160 to guide the sliding along X of the actuation element 154 relative to the shell 124.

[0091] Furthermore, a front end of the hood 202 is integral with the front stop 162.

[0092] The rider 204 has a U-shaped section with a first 214 and a second 216 flanks. Each of said first 214 and second 216 flanks extends substantially in a plane (X, Z) and said first 214 and second 216 flanks are arranged on either side of the median plane (X, Z) of the case 110.

[0093] The first side 214 of the rider 204 is integral with the hood 202, said rider being arranged at the rear of said hood according to X.

[0094] The cap 126 is received between the first 214 and second 216 flanks of the rider 204, said first and second flanks materializing the first axis 164 of rotation of said cap 126 with respect to the actuation element 154.

[0095] Furthermore, in the second embodiment, the cap 126 comprises a bar 218 substantially arranged in a plane (X, Z). One end of said bar 218 is fixed to the left end 50 of the body 47 of said cap 126, and a second end of said bar is free. The bar 218 forms a third axis 220.

[0096] Furthermore, in the second embodiment, the pusher 158 comprises a sliding tube 222 and a gripping button 224, which are fixed together; and the bar 218, the first helical spring 159 and the sliding tube 222 are arranged coaxially, the first spring 159 being located radially between said bar and said tube.

[0097] The tube 222 of the pusher is able to slide along the bar 218 along the third axis 220. The first spring 159 is a compression spring which tends to move the pusher 158 away from the first end of the bar 218.

[0098] Furthermore, in the second embodiment, the locking device 128 further comprises a second cam system 226. Said second cam system 226 comprises a pin 228 and a slot 230, said pin being able to move within said slot.

[0099] The pin 228 is integral with the button 224 of the push button 158 and forms a projection along Y relative to said button.

[0100] The slot 230 is provided in the second side 216 of the rider 204 and comprises a rotation portion 232 and a locking portion 234, adjacent to each other.

[0101] The rotation portion 232 extends in the form of an arc around the first axis 164, between a first closed end and a second end opening onto the locking portion. More precisely, in the second embodiment, the first rotation axis 164 of the cap 126 relative to the actuating element 154 coincides with the second axis 170, allowing the pusher 158 to pivot relative to the rear end 32 of the shell 124.

[0102] The locking portion 234 is substantially straight and extends between the rotation portion 232 and a closed end. The locking portion 234 extends substantially radially with respect to the first axis 164, opposite said first axis.

[0103] Fig. 5 shows the assembly 114 with the case locking device 128 110 in the engaged configuration, the jumper 204 not being shown.

[0104] In the engaged configuration of the locking device 128, the front stop 162 of the actuation element 154 is substantially opposite the front end 30 of the shell 124.

[0105] Furthermore, in said engaged configuration, the pin 228 of the second cam system 226 is disposed at the closed end of the blocking portion 234 of slot 230.

[0106] Said pin 228 is held in contact with said closed end by the first spring 159. The cap 126 is thus blocked in rotation relative to the actuating element 154, in the safety position.

[0107] In the free configuration of the locking device 128, visible in [Fig.6], the pin 228 is positioned at the first closed end of the rotation portion 232 of the slot 230. In said free configuration, the first spring 159 is more compressed than in the engaged configuration.

[0108] A method for operating the case 10, 110 will now be described.

[0109] Consider an initial state of the holster 10, 110, in which the weapon 12 is not assembled to said holster and the locking device 28, 128 is in the free configuration described above. For example, the outer wall 38, 138 of the shell 24, 124 is attached to a user's belt.

[0110] A first step of the operating process is considered, designated as the assembly step of the assembly 14, 114.

[0111] At the beginning of the assembly step, the user inserts the barrel 16 of the weapon 12 into the internal space 34, 134 of the hull, through the rear end 32. The front end 20 of the barrel 16 comes to rest against the front stop 62, 162. The user continues its movement tending to move along X the barrel 16 of the weapon 12 and the 54, 154 actuating element is thus moved from the second axial position to the first axial position.

[0112] The actuating element 54, 154 thus moves in translation along X towards the front of the shell 24, 124, driving the cap 26, 126. The pin 68 of the first cam system 56, 156 thus moves from the second to the first end of the oblong hole 66. The continued translation of the actuating element 54, 154 thus causes the cap 26, 126 to pivot around the first axis 64, 164, from the release position to the safety position.

[0113] The assembly step of set 14 according to the first embodiment will be described in more detail.

[0114] During the translation along X of the actuation element 54, the front edge 84 of the left leg 82 of said actuation element comes into contact with the lug 90 of the pusher 58. Under the action of said front edge 84, arranged obliquely in a plane (X, Z), the lug 90 is displaced along Z and thus causes the pusher 58 to rotate about the second axis 70. Said rotation of the pusher stretches the first spring 59 from its state of minimum stress to its state of maximum stress.

[0115] The translation along X of the actuation element 54 continues until the rear notch 80 reaches the lug 90. The first spring 59 then relaxes towards its minimum stress state, which leads the lug 90 to insert into said rear notch 80.

[0116] The actuating element 54 is thus blocked in translation along X relative to the shell 24 in the first axial position. The locking device 28 is in the engaged configuration, the cap 26 being locked in the safety position.

[0117] The assembly step of the set 114 according to the second embodiment will be described in more detail.

[0118] During the translation along X of the actuating element 154, the pin 228 of the second cam system moves from the first to the second end of the rotation portion 232 of the slot 230. Said movement of the pin 228 accompanies the pivoting of the cap 126 from the release position to the safety position.

[0119] When said cap 126 reaches the safety position, the pin 228 reaches the second end of the rotation portion 232. The first spring 159 relaxes, pushing the pin 228 towards the closed end of the locking portion 234.

[0120] The cap 126 is thus locked in rotation relative to the actuating element 154, in the safety position. The locking device 128 is in the engaged configuration.

[0121] A second step in the process of operating the case 10, 110 is considered, designated as the step of dissociating the assembly 14, 114.

[0122] The dissociation step of assembly 14 according to the first embodiment will now be described.

[0123] When the user wants to remove the weapon 12 from the case 10, he first grasps the stock 18 with his right hand. Then, with his right thumb, he presses the rear button 88 of the push button 58, so as to bring said rear button 88 closer to the rear edge 46 of the left part 42 of the shell 24.

[0124] The pusher 58 thus pivots around the second axis 70, which moves the lug 90 away from the rear notch 80 of the actuation element 54, by stretching the first spring 59.

[0125] The rear notch 80 no longer being held against the lug 90, the second spring 74 relaxes, pushing the rod 78 and the first stop 62 towards the rear of the shell 24. The barrel 16 of the weapon 12 is thus ejected towards the rear by the front stop 62, which facilitates its unsheatheling by the user.

[0126] The dissociation step of assembly 114 according to the second embodiment will now be described.

[0127] When the user wants to remove the weapon 12 from the holster 110, he first grasps the grip 18 with his right hand. Then, with his right thumb, he presses the button 224 of the pusher 158, so as to bring said button 224 closer to the first axis 164. The button 224 thus moves in translation along the third axis 220, compressing the first spring 159.

[0128] The translation of the button 224 moves the pin 228 in the blocking portion 234 of the slot 230, to the second end of the rotation portion 232.

[0129] The user's thumb movement then accompanies the movement of the pin 228 towards the first end of the rotation portion 232. This movement causes the cap 126 to rotate from the safety position to the release position.

[0130] Under the action of the first cam system 156, the rotation of the cap 126 leads to the translation along X of the actuating element 154 relative to the shell 124, from the first to the second axial position. The barrel 16 of the weapon 12 is thus pushed rearward by the front stop 162, which facilitates its ejection by the user.

[0131] The case 10, 110 according to the invention therefore allows the locking device 28, 128 to be put into the engaged configuration by the simple introduction of the weapon 12 into the housing shell 24, 124.

[0132] Moreover, the weapon is easily released by a movement of the user's thumb.

[0133] The locking mechanism of the device 28, 128 is not visible from the outside of the right side of the case 10, 110. When said case is attached to the right side of a user, a third party is therefore unable to detect its operation said locking device 28, 128, which improves the security conferred by the case 10, 110.

Claims

Demands

1. Holster (10, 110) for a handgun (12), said handgun comprising a barrel (16) extending between a first (20) and a second (22) end, the holster comprising: - a housing shell (24, 124), extending in a longitudinal direction (X) between a front end (30) and a rear end (32), intended to receive respectively the first and second ends of the barrel; - a cap (26, 126), movable relative to the rear end (32) of the shell, between a safety position and a weapon release position; the cap in the safety position being capable of abutting against the second end (22) of the barrel in the longitudinal direction; and - a locking device (28, 128), such that in an engaged configuration of the locking device, the cap (26, 126) is locked in the safety position;the case being characterized in that the locking device comprises: - an actuating element (54, 154), movable in translation relative to the housing shell along the longitudinal direction (X), the actuating element comprising a front stop (62, 162), adapted to come into contact with the first end (20) of the weapon's barrel; the cap (26, 126) being movable in rotation relative to the actuating element, along a first axis (64, 164) perpendicular to the longitudinal direction, between the safety position and the release position; - a first cam system (56, 156), connecting the rear end of the shell to the cap; - a pusher (58, 158), adapted to pivot relative to the rear end of the shell around a second axis (70, 170) parallel to the first axis; and - a first helical spring (59, 159), one end of which is connected to the pusher.;

2. Case (10, 110) according to claim 1, wherein the first cam system (56, 156) comprises: an oblong hole (66), carried by the cap (26, 126); and a pin (68) carried by the shell (24, 124) housing and forming a projection perpendicular to the longitudinal direction, said pin being able to slide in said oblong hole between the safety position and the release position of the cap.

3. A case (10) according to claim 1 or 2, wherein: a second end (92) of the first helical spring (59) is connected to the housing shell; the actuating element (54) includes a rear stop (80); in the engaged configuration of the locking device, the pusher (58) cooperates with said rear stop, so as to block the actuating element (54) in translation relative to the housing shell (24); and the first helical spring (59) tends to move the pusher in said engaged configuration of the device.

4. Housing (10) according to claim 3, wherein: the rear stop of the actuating element is formed by a rear notch (80); the pusher (58) is articulated to the rear end of the shell along the second axis (70) and comprises an arm (86) connected to the first end (72) of the first helical spring (59), said arm comprising a lug (90); and in the engaged configuration of the locking device, said lug is inserted into the rear notch (80) of the actuating element to block the actuating element in translation relative to the housing shell.

5. Case (10) according to claim 3 or 4, wherein the actuating element comprises a rod (78) adapted to slide along a rail (60) formed in the housing shell, a front end of the rod carrying the front stop (62).

6. Case (10) according to claim 5, wherein the locking device further comprises a second helical spring (74), interposed between the rod and the housing shell, the second spring tending to move the front stop (62) towards the rear end (32) of the shell (24).

7. A case (110) according to claim 1 or 2, wherein: the first helical spring (160) extends along a third axis (220) perpendicular to the first and second axes; a second end of said first spring is connected to the cap (126); the pusher is movable in translation relative to the cap along the third axis; and the locking device (128) further comprises a second cam system (226) connecting the pusher (158) to the actuating element (154), said second cam system comprising: a rotation portion (232), extending around the second axis (170) between a first and a second end, corresponding respectively to the release position and the safety position of the cap; and a locking portion (234), adjacent to said second end; the first spring (160) tending to bring the pusher of the second end of the rotation portion towards the locking portion, so as to lock the cap (126) in rotation relative to the actuating element (154).

8. Case (110) according to claim 7, wherein the actuation element (154) comprises a hood (202) such that, in the engaged configuration of the locking device (128), the hood extends substantially between the front end (30) and the rear end (32) of the shell (124), said shell and said hood defining an internal space (134) receiving the barrel (16) of the weapon.

9. Case (110) according to claim 8, in which: the actuation element (154) comprises a rider (204) having a U-shaped section perpendicular to the longitudinal direction, a first flank (214) of said rider being integral with the cover (202), a second flank (216) carrying a slot (230) of the second cam system (226).

10. Case (10, 110) according to any one of the preceding claims, in which the pusher includes a gripping button (88, 224), substantially aligned with the housing shell (24, 124) in the longitudinal direction.