SAFE COCKING HANDLE
An open-bolt firearm may include a bolt slide guided in a receiver frame between a forward position against a barrel, or a barrel extension, and a rearward reloading and awaiting-firing standby position. A cocking handle is also slidably guided in the receiver frame on which the bolt slide rests. A firing pin is arranged in the bolt slide, or attached thereto, and a handle safety is arranged on the cocking handle or on the bolt slide and can occupy (a) a safety position in which a distance-piece of the handle safety is interposed between the bolt slide and the barrel, the barrel extension, or the receiver frame so as to prevent contact between the firing pin and a round chambered in the barrel, or (b) a firing position in which the distance-piece is not interposed between the bolt slide and the barrel.
The present disclosure relates to the making-safe of an open-bolt firearm using a cocking handle.
INTRODUCTIONA machine gun operates with an open bolt, to avoid the risk of cook-off (self-ignition). This means that before a shot is fired, while awaiting firing, the moving parts (usually comprising a slide, a breech bolt and a firing pin, the whole being sometimes referred to collectively as the bolt slide) are in the rear position in the weapon and the cartridge is in a leader waiting to be fired. The cartridge is therefore not chambered while awaiting firing.
The command to fire causes the moving parts to be released from the rear position. The energy to move the moving parts is stored in a spring, called a recoil spring. Once these moving parts have been released, after they have completed their forward movement, the shot is fired as a result of the primer being struck by a firing pin which may or may not be attached to the moving parts.
The percussive firing energy is obtained during the rearward recoil of the moving parts, either by manual rearming by the shooter or automatically by recovering the energy supplied by the round. The percussive firing energy can therefore be stored in a recoil spring or in another spring (example: in a hammer spring where firing is performed by a hammer).
During a misfire with an unfired cartridge present in the chamber, the shooter performs the instinctive problem-solving operation known as “immediate action”, which involves taking hold of the cocking handle and moving the moving parts back until they are latched by the sear, awaiting an action on the trigger to resume firing.
During this re-cocking action, if the shooter does not fully retract the moving parts as far as the sear, and an unfired round remains chamberable, and this shooter deliberately or unintentionally releases the moving parts, and the moving parts return completely forward, there is potentially enough percussive firing energy so that there is a risk of a shot being let off unintentionally; all without any action on the trigger!
In order to address this problem, the complete forward movement of the moving parts must therefore be prevented.
In the case of the Uzi submachine gun or NEGEV machine gun, the forward movement is prevented by the handle being blocked by the receiver frame.
Another option is described in patent application US2003/192222A1. This also prevents forward movement of the moving parts by the blocking of the handle by the receiver frame, but a deliberate movement on the part of the user is required to rotate the handle and lock it. This system therefore does not work in the case of unintentional release.
SUMMARYThe present disclosure relates to an open-bolt firearm comprising a bolt slide slidably guided in a receiver frame between a forward position against a barrel, a barrel extension or the receiver frame, and a rearward reloading and awaiting-firing standby position, a cocking handle which is also slidably guided in the receiver frame on which the bolt slide rests, a firing pin arranged in the bolt slide, or attached thereto, and a handle safety arranged on the cocking handle or on the bolt slide and which can occupy a safety position in which a distance-piece of the handle safety is interposed between the bolt slide and the barrel, the barrel extension or the receiver frame so as to prevent contact between the firing pin and a round chambered in the barrel, or a firing position in which the distance-piece is not interposed between the bolt slide and the barrel.
In the present disclosure, moving parts are understood to mean all the parts set in motion by the weapon reloading cycle (bolt slide, slide, breech bolt, etc., depending on the type of weapon).
In preferred embodiments, the device of the present disclosure includes a suitable combination of at least one of the following features:
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- the handle safety is disposed on the cocking handle;
- the weapon includes a handle catch pivotable from a first position in which said handle catch locks the handle safety in the firing position, to a second position in which the handle safety is able to move into its safety position;
- the handle catch is arranged to swing into its second position when the cocking handle is pushed forward to a stop;
- the handle safety is disposed on a pivot pin fixed to the re-cocking handle and comprises a bearing surface which can bear against a corresponding surface on the handle catch to lock the handle safety in the firing position;
- the receiver frame includes a deflector on which, in use, a surface of the handle safety bears during the rearward movement thereof, causing said handle safety to swing into the firing position when the cocking handle reaches the rear reloading and awaiting-firing standby position, or when the bolt slide has reached an intermediate (anti-runaway) retaining notch;
- the handle catch is arranged to swing into its first position when the handle safety is in the firing position and the bolt slide is in the rear reloading and awaiting-firing standby position;
- the cocking handle comprises a handle handgrip which can be locked in the forward position by controllable locking means.
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- 1. Barrel extension
- 2. Primer
- 3. Round
- 4. Cocking lever front stop
- 5. Handle handgrip
- 6. Handle catch
- 7. Handle safety
- 8. Handle body
- 9. Slide
- 10. Firing pin
- 11. Breech bolt
- 12. Handle safety distance-piece
- 13. Handle safety bearing surface that bears against the handle catch
- 14. Handle catch release feature
- 15. Handle catch bearing surface that bears against the handle safety
- 16. Receiver frame
- 17. Handle safety pivot pin
- 18. Handle catch pivot pin
- 19. Handle safety spring
- 20. Handle safety deflector
- 21. Leaf spring
- 22. Leaf spring lug
- 23. Handle clip-in groove
- 24. Handle body sliding surface
- 25. Machine gun
- 26. Handle catch spring
Modern lightweight machine guns are, at present, often formed from a lightweight material (aluminum rather than the steel traditionally used for machine guns), with the exception of the barrel. It is therefore important to avoid passing significant forces through the receiver frame and the cocking handle when preventing firing in the event of incomplete rearming, and therefore to prevent these parts from breaking (or to prevent oversizing them and thus increasing their mass in order to prevent them from breaking).
In order to prevent firing, the moving parts, according to the present disclosure, will not be able to move completely forward because of a part 7 (which will be referred to hereinafter as the handle safety) which adds a thickness between the moving parts and the usual forward stop of the weapon, the barrel or the barrel extension 1 into which the breech bolt 11 is locked in the case of a bolt-action breech. In this case, there is therefore no force applied directly to the receiver frame and the part that absorbs the forward impact is the one that is rated for this during intentional firing with the weapon.
Alternatively, the distance piece can be interposed between the bolt slide and a projection provided for this purpose on the receiver frame.
This handle catch 7 has a thickness just sufficient to prevent the firing pin 10 from protruding, so it is therefore not possible for the primer 2 to be struck. Moreover, advantageously, the moving parts 9, 10, 11 are dimensioned (particularly the breech bolt 11 and the locking slot controlling the movement of the breech bolt in the slide 9) in such a way that when the moving parts (bolt slide) are in abutment against the handle catch 7, the bolt slide is far enough forward for the weapon to be locked, so the shooter is also safe from cook-off of the chambered cartridge: even if a shot is fired as a result of cook-off, the system will not explode (the pressure is contained by the locked weapon).
One objective of the present disclosure is therefore to prevent a shot from being let off unintentionally as the result of percussion:
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- if an unfired cartridge is in the chamber;
- and in the event of action on the cocking handle followed by incomplete recoil of the moving parts.
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- the handle safety 7 has been released from under the barrel extension 1 and now bears against the control lug of the re-cocking handle 8. In this position, if the re-cocking handle 8 is released unintentionally, the situation of
FIG. 2 will be returned to and firing is prevented.
- the handle safety 7 has been released from under the barrel extension 1 and now bears against the control lug of the re-cocking handle 8. In this position, if the re-cocking handle 8 is released unintentionally, the situation of
When the user pushes the re-cocking handle forward to the stop, a cavity in this stop allows the forward end of the handle catch to be raised, causing the rear end to swing in the opposite direction, releasing the handle safety 7 and thus returning to the position of the re-cocking handle 8 that is illustrated in
Advantageously, the re-cocking handle 8 comprises means reducing the risk of uncontrolled movement of the latter which could result in unintentional release of the handle safety 7. They may, for example, be simple male/female reliefs perpendicular to the movement that are overcome “by force”, or may be more complex mechanisms such as, for example, a handgrip base comprising a lug or a hole cooperating with a corresponding hole or lug in the receiver frame, the handgrip being disengaged from this hole or this lug by a lateral movement of the handgrip prior to the re-cocking movement proper.
As a preference, as shown in
Claims
1. An open-bolt firearm comprising:
- a bolt slide slidably guided in a receiver frame between a forward position against a barrel, a barrel extension, or the receiver frame, and a rearward reloading and awaiting-firing standby position;
- a cocking handle slidably guided in the receiver frame on which the bolt slide rests;
- a firing pin arranged in the bolt slide, or attached thereto; and
- a handle safety arranged on the cocking handle or on the bolt slide, wherein the handle safety is configured to transition between: (a) a safety position in which a distance-piece of the handle safety is interposed between the bolt slide and the barrel, the barrel extension, or the receiver frame so as to prevent contact between the firing pin and a round chambered in the barrel,
- and (b) a firing position in which the distance-piece is not interposed between the bolt slide and the barrel.
2. The firearm as claimed in claim 1 wherein the handle safety is disposed on the cocking handle.
3. The firearm as claimed in claim 2 including a handle catch configured to pivot from a first position in which the handle catch locks the handle safety in the firing position, to a second position in which the handle safety is able to move into its safety position.
4. The firearm as claimed in claim 3 wherein the handle catch is arranged to swing into the second position when the cocking handle is pushed forward to a stop.
5. The firearm as claimed in claim 3 wherein the handle safety is disposed on a pivot pin fixed to the cocking handle and comprises a bearing surface configured to bear against a corresponding surface on the handle catch to lock the handle safety in the firing position.
6. The firearm as claimed in claim 3 wherein the receiver frame includes a deflector on which, in use, a surface of the handle safety bears during rearward movement thereof, causing the handle safety to swing into the firing position when the cocking handle reaches the rearward reloading and awaiting-firing standby position.
7. The firearm as claimed in claim 6 wherein the handle catch is arranged to swing into its first position when the handle safety is in the firing position and the bolt slide is in the rear reloading and awaiting-firing standby position.
8. The firearm as claimed in claim 1 wherein the cocking handle comprises a handle handgrip configured to be locked in the forward position by controllable locking means.
9. The firearm as claimed in claim 1 wherein the bolt slide includes a breech bolt and a thickness of the distance-piece is determined so as to prevent percussion but permit locking.
Type: Application
Filed: Nov 27, 2023
Publication Date: Jul 23, 2026
Inventors: Pascal FRANSSEN (Saint-Remy), Sylvie LOOSVELDT (Vielsalm), David BERENGUIER (Schaerbeek)
Application Number: 19/133,474