WO2004005839A1 - Nouveau type de pistolet - Google Patents

Nouveau type de pistolet Download PDF

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Publication number
WO2004005839A1
WO2004005839A1 PCT/CN2003/000374 CN0300374W WO2004005839A1 WO 2004005839 A1 WO2004005839 A1 WO 2004005839A1 CN 0300374 W CN0300374 W CN 0300374W WO 2004005839 A1 WO2004005839 A1 WO 2004005839A1
Authority
WO
WIPO (PCT)
Prior art keywords
hammer
pistol
bullet
seat
trigger
Prior art date
Application number
PCT/CN2003/000374
Other languages
English (en)
French (fr)
Inventor
Weiping Liu
Original Assignee
Weiping Liu
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by Weiping Liu filed Critical Weiping Liu
Priority to US10/517,160 priority Critical patent/US20050223612A1/en
Priority to AU2003242133A priority patent/AU2003242133A1/en
Publication of WO2004005839A1 publication Critical patent/WO2004005839A1/zh

Links

Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F41WEAPONS
    • F41AFUNCTIONAL FEATURES OR DETAILS COMMON TO BOTH SMALLARMS AND ORDNANCE, e.g. CANNONS; MOUNTINGS FOR SMALLARMS OR ORDNANCE
    • F41A21/00Barrels; Gun tubes; Muzzle attachments; Barrel mounting means
    • F41A21/12Cartridge chambers; Chamber liners
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F41WEAPONS
    • F41AFUNCTIONAL FEATURES OR DETAILS COMMON TO BOTH SMALLARMS AND ORDNANCE, e.g. CANNONS; MOUNTINGS FOR SMALLARMS OR ORDNANCE
    • F41A19/00Firing or trigger mechanisms; Cocking mechanisms
    • F41A19/06Mechanical firing mechanisms, e.g. counterrecoil firing, recoil actuated firing mechanisms
    • F41A19/14Hammers, i.e. pivotably-mounted striker elements; Hammer mountings
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F41WEAPONS
    • F41AFUNCTIONAL FEATURES OR DETAILS COMMON TO BOTH SMALLARMS AND ORDNANCE, e.g. CANNONS; MOUNTINGS FOR SMALLARMS OR ORDNANCE
    • F41A19/00Firing or trigger mechanisms; Cocking mechanisms
    • F41A19/06Mechanical firing mechanisms, e.g. counterrecoil firing, recoil actuated firing mechanisms
    • F41A19/42Mechanical firing mechanisms, e.g. counterrecoil firing, recoil actuated firing mechanisms having at least one hammer
    • F41A19/43Mechanical firing mechanisms, e.g. counterrecoil firing, recoil actuated firing mechanisms having at least one hammer in bolt-action guns
    • F41A19/44Sear arrangements therefor
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F41WEAPONS
    • F41AFUNCTIONAL FEATURES OR DETAILS COMMON TO BOTH SMALLARMS AND ORDNANCE, e.g. CANNONS; MOUNTINGS FOR SMALLARMS OR ORDNANCE
    • F41A3/00Breech mechanisms, e.g. locks
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F41WEAPONS
    • F41AFUNCTIONAL FEATURES OR DETAILS COMMON TO BOTH SMALLARMS AND ORDNANCE, e.g. CANNONS; MOUNTINGS FOR SMALLARMS OR ORDNANCE
    • F41A9/00Feeding or loading of ammunition; Magazines; Guiding means for the extracting of cartridges
    • F41A9/01Feeding of unbelted ammunition
    • F41A9/24Feeding of unbelted ammunition using a movable magazine or clip as feeding element
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F42AMMUNITION; BLASTING
    • F42BEXPLOSIVE CHARGES, e.g. FOR BLASTING, FIREWORKS, AMMUNITION
    • F42B5/00Cartridge ammunition, e.g. separately-loaded propellant charges
    • F42B5/02Cartridges, i.e. cases with charge and missile

Definitions

  • the invention belongs to the category of pistols. Background technique
  • the existing revolver is a revolver with multiple cartridges.
  • the revolver usually has six cartridges that double as magazines. Rotating the revolver's revolver allows the shells to fire on the barrel and firing mechanism.
  • the current revolver pistols are double-acting, that is, the pull trigger can cooperate with itself to complete the two-step action of turning the reel to fire and fire.
  • the disadvantage is that the diameter of the revolver is too large, causing the pistol to be too thick and not portable. And it can't throw shells automatically. Summary of the Invention
  • the object of the present invention is to provide a new type of pistol with reasonable structure, no turning wheel, and the trigger trigger can complete the three actions of throwing the shell, waiting to be fired and firing.
  • the new pistol includes a gun base 16, a hammer 43, and a trigger 29, which are characterized in that the front end of the re-entry base 35 catches above the tail end of the bullet 32 so that the bullet cannot be ejected upward.
  • the trigger triggers the hammer 43 to rotate backwards, and the hammer drives the re-entry seat 35 to move back.
  • the re-seating seat gradually separates from the hammer during the backward movement, and moves forward under the action of elastic force.
  • the first bullet was thrown out of the gun seat under the action of the elastic force, the second bullet was lifted to the front of the re-entry seat to stop the upward movement, and the hammer was released from the trigger control during the continuous rotation, and the elasticity Hit the bullet forward.
  • the implementation method of the present invention is as follows:
  • the new pistol includes a gun base 16, a hammer 43, and a trigger 29, which are characterized in that a positioning rib 84 is positioned above the front end of the gun base, and the inner wall of the positioning rib is made with a chamfer 5.
  • the trigger triggers the hammer to rotate backwards.
  • the hammer drives the receding seat to move backward.
  • the receding seat gradually separates from the hammer when it moves backward, and moves forward under the action of elastic force.
  • the first bullet 32 was thrown upwards along the chamfer of the positioning shim under the action of the elastic force, and when the second bullet went up to the chamfer of the positioning shim and re-entered the top of the bullet, the second The firing of the bullet stops, the hammer is released from the trigger control during the continuous rotation, and the bottom hood of the bullet is rotated forward under the action of the elastic force to complete the firing of the bullet.
  • Knocking 43 drives the re-entry seat 35 back.
  • the hammer 43 drives the re-entry seat 35 to move backward through a rocker 38, and the rocker 38 has a hook-shaped tail.
  • the blocking iron 41 is pushed upward by the connecting rod 33.
  • the rear end of the blocking iron 41 is movably connected to the gun base 16, and a horizontal plate 71 is arranged inside the front end.
  • the elbows 82 protruding from the lower end of the elastic plate 45 to both sides are caught under the bottom edge of the gun base 16.
  • the tail of the bullet 32 is made with a notch 89 or a chamfered shape.
  • FIG. 1 is a schematic view of a gun body of a first embodiment of a new type of pistol.
  • Figures 2 and 3 are schematic diagrams of the left and right shields of the grip of the first embodiment of the new pistol.
  • FIG. 4 is a schematic structural diagram of a first embodiment of a new type of pistol.
  • Fig. 5 is a schematic diagram of the left and right blocking irons, hammers, and connecting rods of the first embodiment of the new pistol.
  • FIG. 6 is a schematic diagram of the hammer and the left blocking iron when the first embodiment of the new pistol is in the insurance state.
  • FIG. 7 is a schematic diagram of a trigger and a connecting rod of the first embodiment of the new type pistol.
  • FIG. 8 is a structural diagram of a re-entry device of a first embodiment of a new-type handgun.
  • FIG. 9 is a schematic structural view of a second embodiment of a new-type pistol.
  • FIG. 10 is a schematic side view of a barrel of a first embodiment of a new type of pistol.
  • Figure 11 is a schematic diagram of a new type of pistol infrared practice bomb.
  • FIG. 12 is a schematic view of another embodiment of the re-entry seat and the rocker of the second embodiment of the new-type pistol
  • FIG. 13 is a schematic side view of the frame and the holding plate of the first embodiment of the new-type pistol.
  • FIG. 14 is a schematic view of a gun base and a right guard of a second embodiment of a new type of pistol.
  • FIG. 15 is a schematic view of a re-entry seat of a second embodiment of a new-type pistol.
  • FIG. 16 is a schematic diagram of a clutch lever of a second embodiment of the novel pistol.
  • FIG. 17 is a schematic diagram of a re-entry seat and a clutch lever of a third embodiment of a new pistol.
  • FIG. 18 is a schematic structural view of a third embodiment of the novel pistol. detailed description
  • the first embodiment is a novel pistol shown in FIG. 4.
  • barrel 1 gun base 16
  • upper baffle 9 lower baffle 18, front baffle 22, welded together, and shields on both sides of the gun base.
  • the gun barrel 1 is provided with right-angle grooves 77 on both sides, and a protruding positioning rib 84 is provided above the rear end.
  • the inner wall of the positioning rib is chamfered 5, and the right-angle groove is stuck on the gun base 16, and the inner sides of the gun base are provided with Chute 8, chute 7 at the front of the chute, holes 11, 12, 14, 15, 19, 20, 21 and weight reduction holes 10 on the gun base, and a connecting rod groove 4 and a long hole 13 on the right side of the gun base and Round hole, two positioning ribs 17 are welded on the inside of the left plate of the gun base, the front partition and the trigger guard 2 are made into one Body, there is a shell opening 6 above the gun base, and a notch below.
  • the guard plate has two pieces: a left guard plate 23 and a right guard plate 25. There are two ribs 26 on the left guard plate, and two right-angle grooves 27 on the right guard plate. When the guard plate is fixed to the gun base with screws, the ribs and the right-angle groove engage with each other, and the platform is connected.
  • the re-entry spring 37 -ends against the spring seat 39, and one end faces the re-seated seat. ⁇ ⁇ ⁇ 24 ⁇ 24 raised.
  • the re-entry spring is composed of two, which are connected at the front end and rest on the steel block 36, and the middle part of the joint is caught in the gap in the upper part of the rocker.
  • the striker 43 has a striker 61 at the front end, a step 64 at the top, a protrusion 63 in the middle, a force pin 70 on the side, a hammer spring 42, and a knockout connected to the gun holder through a pin 69 hole 15.
  • the two ends of the hammer spring are respectively It is fixed in the hole 14 and the middle section is topped behind the hammer.
  • Left and right locking irons 66 and 41 are cylindrical pins 72 on the outside of the rear end.
  • the cylindrical pins are inserted into the gun seat hole 12.
  • the front end is curved and there is a gap 59 above. It has a sloping shape 67, with a hole 62, a flat plate 60 inside the front end of the left blocking iron, a horizontal plate 71 inside the right blocking iron, and two U-shaped springs with one end inserted into the hole 62 and one end inserted into the hole 11.
  • the trigger 29 is integrated with the connecting rod 33.
  • the trigger plate has a strip-shaped bent hole 30, and is connected to the gun base by the pin 31 hole 20 through the hole.
  • the connecting rod is inserted into the connecting rod groove 4 and the tail end is inserted into the long hole.
  • the trigger spring 56 is fixed on the trigger post 58 and the other end is on the front bulkhead 22, and the flat bottom 54 is pressed on the attachment pin 55.
  • the upper part of the frame 44 has four flanges 81, and the lower part has a column 48.
  • the middle part has a total of four card holes 51.
  • the upper side of the hole is made into an inclined surface.
  • the holding spring 47 is inserted into the hole 53.
  • the holding spring 45 has four flanges 57. The protruding parts of the side plates on both sides are inserted into the four holes 46 and riveted together.
  • the front end of the bullet 32 is chamfered 85 and the bullet is inside the shell.
  • the angle of chamfer 5 is preferably 30 degrees-60 degrees, and preferably 40 degrees-50 degrees.
  • the inner wall of the positioning flange 74 may be formed in a regular angular shape.
  • the rocker 38 can also be made with a small head protruding forward under the front, and a hole at the front end connected to the steel block 36 through a pin 75, a hook-shaped tail below the rear end, and a gap at the top.
  • the block 36 extends out and presses on the notch.
  • the small head protruding forward is behind the re-entry seat 35 to maintain balance with the elastic force.
  • the hammer 43 is rotated backward to push the rocker to translate. As the hammer rotates, it Gradually separate from the joystick.
  • the hammer spring 42 can also be made into a type like a hammer of German P5.
  • the second embodiment is a new type of pistol shown in FIG. 9, which has a barrel 1, a gun holder 16, a base 78, and a spring seat 39 connected together, and has left and right guard plates 23 and 25.
  • Both sides of the barrel 1 are provided with right-angled grooves to be clamped on the gun seat, and the inside of the gun seat 16 is provided with chute grooves 8, the rear end of the chute is connected with a notch 90, and the upper end has a dovetail groove.
  • holes 14, 15, 20 There are holes 14, 15, 20, a round hole at the front end of the left plate of the gun base, and two positioning ribs 17 welded on the inside, which are flush with the bottom edge of the gun base, and a front positioning rib is integrated with the front partition 22 and Welded with the left and right plates, there are holes 11, 12 on the right plate of the gun base, a small slot, a round hole 83 on the top is connected with the gap, and a connecting rod slot 4 on the front end is connected with the long hole 13; there is a bomb on the base 78
  • the hole 34 is chamfered below, and there is a shell throw 6 above the gun base.
  • the guard plate has a platform 28 and a groove behind the trigger; the guard plate has a left guard plate 23 and a right guard plate 25, and the left guard plate has ribs 26, and a square protrusion corresponding to the notch 90 is provided above the guard plate.
  • the right and left guards are fastened by three screws through screw holes 80. The ribs and right-angle grooves are engaged with each other and the platforms are connected.
  • Each of the left and right guards has a protruding rib stuck to the bullet gap 89, and each of the left and right guards has one.
  • the ribs catch the front end of the bullet 32, and the elbows 82 that are bent outward on both sides of the elastic plate 45 slide up and down in the space surrounded by the front and rear ribs and the bottom of the gun base.
  • the clutch lever 76 is placed in a circular hole connected to the notch 90.
  • a small bag is located on the inner side of the front end, a disc is located on the inner side of the rear end, and a tapered platform is provided on the inner side of the round twist.
  • the re-entry seat 35 is clamped in the chute 8, and its front end is chamfered.
  • the steel block has a rocker pin 75 connected to the rocker 38.
  • the rocker has a hook-shaped tail and a groove on it.
  • the front end of the rocker has a small head that is tilted upward.
  • Two springs are made at the front end. Integrate and bend upward to form a circular arc and press in the groove of the rocker. There is a gap above the spring seat.
  • the striker 43 has a striker 61 at the front end, a step 64 at the top, a protrusion 63 in the middle, and a groove below the protrusion.
  • the hammer is connected to the gun base through the pin 69 and the hole 15 and the two ends of the hammer spring 42 are respectively inserted in Inside the hole 14, the middle section abuts behind the hammer.
  • the rear end of the blocking iron 41 is a cylindrical pin 72, which is inserted into the hole 12 of the gun base, and a horizontal plate 71 is located on the inner side of the front end.
  • the lower part of the horizontal plate has an arc-shaped sharp angle. Into the groove above the blocking iron.
  • the trigger 29 is integrated with the connecting rod 33.
  • the trigger has a hole 30, and is connected to the gun base 16 by pins 31 ⁇ L20 through the hole.
  • the connecting rod is in the connecting rod groove 4, and the tail end is inserted into the long hole 13.
  • a trigger spring 56 is fixed to the pin 31 with one end thereof facing the trigger and the other end thereof facing the barrel.
  • the rear end of the bullet 32 is formed with a notch 89, and the bullet head is inside the bullet case.
  • the re-entry seat 35 and the rocker 38 can also be made as shown in Figure 12, that is, the front end of the rocker has a cylinder protruding to both sides, a small head that rises upwards at the top, and a hook-shaped tail at the rear end. And slot.
  • the front end of the re-entry seat is chamfered.
  • the two steel blocks in the middle are notched and the inside of the notch is arc-shaped.
  • the top of the re-entry seat is grooved from the middle to the rear to connect with the groove of the steel block.
  • Each side has a round bag that fixes the compound spring 37.
  • the rear end of the bullet 32 can also be made into a chamfer.
  • the bullet can also be made into an infrared training bullet as shown in FIG. 11.
  • the piezoelectric ceramic 87 discharges and passes through the two connections of the infrared light-emitting tube 86.
  • the foot and the bullet 32 form a loop, and the bullet emits infrared rays.
  • the bullet was chamfered 85 and the bullet gap was 89.
  • the third embodiment is a new type of pistol shown in FIG. 18, which has a gun base 16, a front bulkhead 22—a positioning rib 17 that is welded into one body, and has left and right guard plates 23 and 25.
  • the gun base 16 and the barrel 1 are made into one body. There are slide grooves 8 on both sides of the inside of the gun base, and the rear end is a stepped notch.
  • the clutch lever 76 is placed in a circular hole above the gun base 16 and has a tapered platform inside.
  • the reentry seat 35 is clamped in the chute 8.
  • the inner wall of the positioning flange 74 at the front end is chamfered, and the bottom is chamfered.
  • the right side has a notch, the rear end has a steel block 36, and the steel block has a notch.
  • the rear end of the blocking iron 41 is a cylindrical pin 72, and there is a horizontal plate 71 inside the front end.
  • the cylindrical pin 72 is inserted into the hole 12 of the gun base; the U-shaped spring 40 is inserted into the hole 11 at one end and inserted into the hole 62 of the blocking iron.
  • the trigger 29 is made integral with the connecting rod 33.
  • the connecting rod is in the connecting rod groove 4 and its tail end is inserted into the long hole 13 and the round hole.
  • the left guard 23 has ribs 26, the platform 28, and screw holes 80, and there are protrusions on the top. The protrusions have screw holes and round packages.
  • the trigger 29 has a groove.
  • the right guard 25 has a right-angle groove 27, the platform 28, There are positioning ribs 17 inside the right angle groove of the screw hole 80, and there are grooves at the trigger; the left and right guard plates are engaged with each other by 3 screw fastening ribs, and the platforms are connected. Each of the left and right guard plates is sandwiched by a rib.
  • the left plate 60 of the blocking iron 66 slides down from the hammer's projection 63 On the horizontal plate 71 of the right blocking iron 41, loosen the hammer 43 and the hammer advances under the action of the hammer spring 42.
  • the projection 63 of the hammer stops against the flat plate 60 of the left blocking iron and stops moving At this time, the striking head 61 cannot contact the bullet 32 at all, and the pistol is in a safe state.
  • the rear end of the connecting rod 33 passes over the force pin 70 and slides down to the bottom of the long hole 13 at the rear end of the connecting rod groove 4.
  • the two blocking irons move toward the lower side of the connecting rod. Down rotation, during the rotation, the left blocking iron 66 is pressed on the projection 63 in the middle of the shot 43, and the right blocking iron 41 is pressed on the connecting rod 33.
  • the angle 85 will slide out of the shell 6 along the chamfer 5 of the positioning rib 84, and the elastic plate 45 will support the second bullet upward, and stop after reaching the chamfer 5 of the positioning rib and the positioning flange 74, left
  • the blocking iron 66 slides down from the projection 63, and the inner flat plate 60 is pressed on the horizontal plate 71 inside the right blocking iron 41. The hammer continues to rotate when the extension line at the bottom of the link exceeds the force pin 70.
  • the magazine designed by the invention can hold 5 rounds of bullets. After loading 6 rounds of bullets, the frame must be pushed upwards after the first throw of the shell, so that the bamboo shoots snap into the bamboo shoot holes at the lower end of the frame, otherwise the 6th round cannot Enter the waiting state. When removing the bullet 32, push the frame upwards and then press the card shoot forward, then pull out the frame and press the bullet.
  • the hammer spring 42 pushes the hammer forward, the groove of its projection tops to the sharp corner of the inner side of the blocking iron 41 and stops moving forward, at this time the hammer cannot be used at all
  • the bracket plate 45 is under the action of the bracket spring 47, and the elbows 82 protruding from both sides of the bracket plate 45 are caught under the bottom of the gun base 16.
  • Three bullets are pushed into the magazine from the shell opening 6, Push down the clutch lever to make the small bag on the inner side of the head snap into the small groove of the gun base 16, and the re-entry base 35 advances to the base 78 under the action of the re-entry spring. Release the hand that presses the bullet, the bullet Ascend to the front of the re-entry seat and stop.
  • the shell is thrown, the trigger is pulled, the connecting rod push-up projection 63 rotates the hammer backward, the hammer step 64 pushes the rocker 38, the hook tail moves backward, and the rocker drives the re-entry seat 35 through the rocker pin 75 — Move the head upwards to the top of the rocker to push it back into the reclining seat so that its tail cannot move down.
  • the hammer is continuously rotated and gradually separated from the rocker.
  • the recoil seat is pushed by the recoil spring and hits the base 78, which is locked.
  • the obstruction iron 41 slides down from the projection 63 under the action of the U-shaped spring 40; when the re-entry seat moves backward and forward, the shell of the first bullet is pushed by the support spring 47 to push the re-entry seat down. Angle from the shell Throw the second bullet up to the front of the re-entry seat and stop; the link continues to push the hammer to rotate, the link 33 gradually slides onto the projection 63, the hammer spring 42 pushes the hammer forward to rotate, the projection Gradually push the connecting rod upward, the connecting rod pushes the blocking iron 41 upward, and finally the front end of the hammer strikes the bottom flame of the bullet.
  • the striker 61 moves back under the action of the U-shaped spring 92 after leaving the hammer. Therefore, the head cannot contact with the bullet, and the pistol is automatically insured.
  • the hammer moves forward under the action of the hammer spring 42. Its projection 63 stops at the horizontal plate 71 on the inside of the front end of the blocking iron. The hand that releases the bullet, the bullet Under the action of the support spring 47, 32 is pushed up to the positioning flange 74 on the front end of the re-entry seat and stopped. .
  • the ejection shell 47 is ejected from the ejection port 6, and the second bullet 32 ascends to the positioning flange 74 on the front end of the re-entry seat to stop the upward movement; the U-shaped spring 40 pushes the blocking iron 41 from the projection 63 and rests.
  • the connecting rod On the connecting rod, the hammer continues to rotate and the force pin gradually descends. Finally, the connecting rod 33 resting on the bottom edge of the long hole 13 slides onto the force pin, and the hammer 43 rotates forward under the action of the hammer spring.
  • the force pin 70 gradually pushes the connecting rod and the blocking resistance
  • the iron moves upward, and the blocking iron 41 tops behind the lower end of the re-entry seat 35; the tab 91 gradually sinks after hitting the hook-shaped tail of the steel block 36.
  • the hammer hits the striking head 61, and the striking head overcomes the elasticity of the U-shaped spring to hit the bullet.
  • the clutch lever 76 When unloading the bullet 32, the clutch lever 76 is pulled up, the supporting spring 47 upwardly throws the bullet from the shell opening 6 through the supporting plate 45, and the four elbows 82 of the supporting plate hit the bottom edge of the gun base 16 and stop. .
  • the novel pistol of the present invention has a reasonable structure, a thin and short gun body, and is easy to carry. There is no difference between left and right-handed use.
  • the trigger trigger can automatically complete the shell throwing, waiting, insurance, release insurance and firing, and the loading and unloading are convenient and rapid. You can also add bullets at any time, the cartridge case can be used multiple times, and the pistol can be in a waiting state for a long time; the invention is particularly suitable for use in emergency situations.

Description

新式手枪
技术领域
本发明属于手枪类。 背景技术
现有的转轮手枪, 是一种带有多个弹膛的转轮手枪。 转轮上通常有 6 个兼做弹 仓的弹膛, 旋转手枪的转轮, 可使枪弹逐发对正枪管和击发机构实施射击。 现在的 转轮手枪均为双动式, 就是扣引扳机可自行联动完成转动转轮待击和击发两步动作, 其不足之处是转轮的直径太大, 造成手枪太厚, 不便携带使用, 而且其不能自动抛 壳。 发明内容
本发明的目的是提供一种结构合理、 没有转轮, 扣引扳机可自行联动完成抛壳、 待击、 击发三个动作的新式手枪。
本发明目的实现的方式为; 新式手枪包括枪座 16、 击锤 43、 扳机 29, 其特征是 复进座 35的前端卡住子弹 32尾端的上方, 使子弹不能向上弹出。扣引扳机使击锤 43 向后旋转, 击锤带动复进座 35后移, 复进座在后移过程中逐渐与击锤分离, 并在弹 力的作用下前行, 在复进座后移和前行过程中, 第一发子弹在弹力的作用下抛出枪 座, 第二发子弹上行顶到复进座的前端停止上行, 击锤在继续旋转过程中脱离扳机 的控制, 并且在弹力的作用下向前击打子弹。
本发明的实现的方式为: 新式手枪包括枪座 16, 击锤 43、 扳机 29, 其特征是枪 座前端上方有定位包筋 84、 定位包筋的内壁制成倒角 5, 枪座内有复进座 35。 扣引 扳机使击锤向后旋转, 击锤带动复进座后移, 复进座在后移时逐渐与击锤分离, 并 且在弹力的作用下前行, 在复进座后移和前行过程中, 第一发子弹 32在弹力的作用 下顺着定位包筋的倒角向上抛出, 第二发子弹上行顶到定位包筋的倒角和复进座顶 到子弹尾部时, 第二发子弹停止上行, 击锤在继续旋转过程中脱离扳机的控制并且 在弹力的作用下向前旋转打击子弹的底火帽, 完成击发子弹。
击綞 43带动复进座 35后移。 击锤 43通过摇杆 38带动复进座 35后移, 摇杆 38 有钩状尾巴。 击锤 43的中部有突台 63。 闭锁阻铁 41由连杆 33推顶上行。 闭锁阻铁 41后端与枪座 16活动连接, 前端内侧有横板 71。 离合杆 76后端内侧有突出的台阶 推顶复进座 35。 托弹板 45下端向两侧伸出的弯头 82卡在枪座 16的底边下。 子弹 32 的尾部制成缺口 89或者制成倒角形状。 附图说明
为进一步说明本发明的技术内容, 下面将参照附图详述本发明, 其中: 图 1是新式手枪第一实施例的枪体示意图。
图 2、 3是新式手枪第一实施例握把的左、 右护板的示意图。
图 4是新式手枪第一实施例的结构示意图。
图 5是新式手枪第一实施例的左、 右闭锁阻铁、 击锤、 连杆部分示意图。
图 6是新式手枪第一实施例处于保险时, 击锤及左闭锁阻铁示意图。
图 7是新式手枪第一实施例的扳机及连杆示意图。
图 8是新式手枪第一实施例的复进装置结构示意图。
图 9是新式手枪第二实施例的结构示意图。
图 10是新式手枪第一实施例枪管的侧视示意图。
图 11是新式手枪红外线练习弹的示意图。
图 12是新式手枪第二实施例的复进座和摇杆的另一种实施例的示意图, 图 13是新式手枪第一实施例的框架和托弹板的侧视示意图。
图 14是新式手枪第二实施例的枪座和右护板的示意图。
图 15是新式手枪第二实施例的复进座的示意图。
图 16是新式手枪第二实施例的离合杆的示意图。
图 17是新式手枪第三实施例的复进座和离合杆的示意图。
图 18是新式手枪第三实施例的结构示意图。 具体实施方式
第一实施例如附图 4所示的新式手枪。 有枪管 1、 枪座 16、 上隔板 9、 下隔板 18 前隔板 22焊接在一起, 枪座两边有护板。
枪管 1两侧开有直角槽 77, 后端上方有突出的定位包筋 84, 定位包筋的内壁制 成倒角 5, 直角槽槽沿卡在枪座 16上, 枪座内侧两边开有滑槽 8, 滑槽前端有槽埂 7, 枪座上有孔 11、 12、 14、 15、 19、 20、 21和减重孔 10, 枪座右板开有连杆槽 4和长 孔 13及圆孔, 枪座左板的内侧焊接有两条定位凸筋 17, 前隔板和扳机护圈 2制成一 体, 枪座上方有抛壳口 6, 下方有缺口。
护板上有凸台 24, 平台 28, 紧固用的螺孔 3对, 护板有左护板 23和右护板 25 两块。 左护板上有两条筋 26,, 右护板上有两条直角槽 27, 护板用螺丝固定在枪座 上时筋与直角槽相互咬合, 平台相连。
复进座 35前端有两块定位凸缘 74, 侧板上有孔 73, 下端有击弹孔 34, 后端有 连体钢块 36, 钢块内有摇杆销 75与摇杆 38连接, 摇杆有钩状尾巴, 摇杆上部有缺 口, 复进簧 37—端顶着弹簧座 39, 一端顶着复是座, 复进座卡在滑槽 8里, 弹黉座 在滑槽里顶着凸台 24。 复进簧由两根组成, 其在前端连成一体并搁在钢块 36上, 连 体的中段卡在摇杆上部的缺口内。
击锤 43前端有击头 61, 顶部有台阶 64, 中部有突台 63, 侧面有受力销 70, 击 锤簧 42, 击棰通过销 69孔 15连接在枪座内, 击锤簧两头分别固定在孔 14内, 中段 顶在击锤的后面。
左、 右闭锁阻铁 66、 41后端外侧为圆柱销 72, 圆柱销插入枪座孔 12 内, 圆柱 销内有孔 65与槽 68连接, 前端为弧形, 并且上方有缺口 59, 下方制成坡形 67, 开 有孔 62, 左闭锁阻铁前端内侧有平板 60 , 右闭锁阻铁内侧有横板 71, U形簧有两根 分别将一端插入孔 62, 一端插入孔 11中。
扳机 29与连杆 33制成一体, 扳板上有条形弯孔 30, 并通过该孔由销 31孔 20 连接在枪座上, 连杆放入连杆槽 4 内其尾端插入长孔 13 内, 扳机簧 56固定在扳机 柱 58上另一端在前隔板 22上, 平底 54压在附销 55上。
卡笋 52两边有隔套 50通过销子和孔 19固定在枪座内, 并由 U形簧 49卡住。 框架 44上部有四个凸缘 81, 下部有立柱 48 , 中部共有四个卡笋孔 51孔的上边 制成斜面, 托弹簧 47插入孔 53中, 托弹板 45有四个凸缘 57, 其两侧的边板突出部 分插入四个孔 46中铆接起来。
子弹 32前端外圆制成倒角 85, 弹头在弹壳内。
倒角 5的角度为 30度- 60度比较好, 最好是 40度- 50度。 定位凸缘 74的内壁 也可制成例角形状。 摇杆 38还可制成前面下方有向前突出的小头部, 前端还有孔通 过销 75连在钢块 36上, 后端下方有钩状尾巴, 上方有缺口, 复进簧 37从钢块 36 上延伸出来压在缺口上, 向前突出的小头部顶在复进座 35的后面, 与弹力保持平衡, 击锤 43 向后旋转推顶摇杆平移, 随着击锤的旋转其逐渐与摇杆分离。 击锤簧 42 也 可制成像德国 P5的击锤顶杆的类型。 第二实施例如附图 9所示的新式手枪, 有枪管 1、 枪座 16、 底座 78、 弹簧座 39 悍接在一起, 有左、 右护板 23、 25。
枪管 1 两侧开有直角槽槽沿卡在枪座上, 枪座 16内侧两边有滑槽 8, 滑槽后端 连接缺口 90, 上端有燕尾槽, 槽内有插板 79, 枪座上有孔 14、 15、 20, 枪座左板前 端有一圆孔其内侧焊接有两条定位凸筋 17 其与枪座底边平齐, 前面的一条定位凸筋 与前隔板 22制成一体并且与左、 右板焊在一起, 枪座右板上有孔 11、 12, 一个小槽, 上方一个圆孔 83与缺口连接, 前端有连杆槽 4与长孔 13连接; 底座 78上有击弹孔 34, 下方制成倒角, 枪座上方有抛壳口 6。
护板上有平台 28, 在扳机后方有凹槽; 护板有左护板 23和右护板 25两块, 左 护板上有筋 26, 其上方有与缺口 90对应的方形突台, 其前方有与枪座圆孔对应的圆 台, 托弹簧 47插入其孔 53中; 右护板上有直角槽 27, 其上方有与缺口 90对应的方 形突台, 突台前方有弧形缺口; 左、 右护板由 3个螺钉通过螺孔 80紧固, 筋与直角 槽相互咬合, 平台相连, 左、 右护板各有一条凸筋卡在子弹缺口 89 上, 左、 右护板 各有一条凸筋卡住子弹 32的前端, 托弹板 45两侧向外弯曲的弯头 82在前后凸筋和 枪座底边围成的空间内上下滑动。
离合杆 76放入与缺口 90连接的圆孔中, 其前端内侧有一小包, 后端内侧有一 圆盘, 圆扭内侧有一个锥形平台。
复进座 35卡在滑槽 8内, 其前端制成倒角, 中部有两钢块, 钢块内有摇杆销 75 与摇杆 38 连接, 摇杆有钩状尾巴, 其上有槽, 摇杆前端有向上翘起的小头部, 复进 簧 37有两根, 一端顶在弹簧座 39冲压成的小包上, 一端顶在复进座后面的圆包上, 两根弹簧在前端制成一体并向上弯成圆弧压在摇杆的槽内, 弹簧座上方有缺口。
击锤 43前端有击头 61, 顶部有台阶 64, 中部有突台 63, 突台下方有凹槽, 击 锤通过销 69、 孔 15连接在枪座内, 击锤簧 42的两头分别插在孔 14内, 中段顶在击 锤的后面。
闭锁阻铁 41后端是圆柱销 72, 其插入枪座的孔 12内, 前端内侧有横板 71 , 横 板的下方有弧形尖角, U形簧 40—端插入孔 11中, 一端放入闭锁阻铁上方的槽中。
扳机 29与连杆 33制成一体, 扳机上有孔 30, 并通过该孔由销 31孑 L20连接在 枪座 16内, 连杆在连杆槽 4内, 其尾端插入长孔 13内, 扳机簧 56固定在销 31上, 其一头顶着扳机, 另一头顶着枪管。
子弹 32后端制成缺口 89, 弹头在弹壳内。 复进座 35和摇杆 38也可制成如附图 12所示的形状, 即摇杆前端有向两侧伸出 的圆柱, 上方有向上翘起的小头部, 后端有钩状尾巴和槽。 复进座前端制成倒角, 中部的两块钢块开有缺口并且缺口里面制成弧形, 复进座上方从中部向后开有槽与 钢块的槽相连, 复进座后面槽的两面边各有一个固定复进簧 37 的圆包。 子弹 32 的 后端也可制成倒角, 子弹也可制成如图 11所示的红外线训练子弹, 击头打击钢帽 88 时, 压电陶瓷 87放电并通过红外线发光管 86的两个接脚和子弹 32形成回路, 子弹 发出红外线。 其中子弹倒角 85, 子弹缺口 89。
第三实施例如附图 18所示的新式手枪, 有枪座 16、 前隔板 22—条定位凸筋 17 焊接成一体, 有左、 右护板 23、 25。
枪座 16和枪管 1制成一体, 枪座内侧两边有滑槽 8, 后端为阶梯形缺口。
离合杆 76放入枪座 16上方的圆孔中, 其内侧有一个锥形平台。
复进座 35卡在滑槽 8 内, 其前端的定位凸缘 74的内壁制成倒角, 下方制成倒 角, 其右侧有缺口, 其后端有钢块 36, 钢块下方有缺口, 钢块前方有孔, 后方向上 有槽, 孔和槽相连其内有击头 61, 击头后端有小孔, 钢块前端有浅孔, 后端有条形 孔, U形簧 92插入浅孔和通过条形孔插入击头 61的小孔内; 一根复进簧 37的一头 顶在左护板的圆包上, 另一头顶在复进座的后面。
击锤 43 下方有突台 63, 中部有孔, 孔内有卡舌 91, 击锤后面有槽与孔相通, 槽内有 U形簧, U形簧的一头顶着击锤另一头插入卡舌的孔中, 击锤的右侧有受力销 70, 击锤通过销 69、 孔 15连接在枪座内, 击锤簧 42的两头分别插入孔 14内, 中段 顶在击锤的后面。
闭锁阻铁 41后端是圆柱销 72, 前端内侧有横板 71, 圆柱销 72插入枪座的孔 12 内; U形簧 40—头插入孔 11中, 一头插入闭锁阻铁的孔 62内。
扳机 29与连杆 33制成一体, 连杆在连杆槽 4内, 其尾端插入长孔 13及圆孔中。 左护板 23有筋 26、 平台 28、 螺孔 80, 其上方有突台, 突台上有螺孔和圆包, 扳机 29处有凹槽, 右护板 25有直角槽 27、 平台 28、 螺孔 80直角槽内侧有定位凸 筋 17, 扳机处有凹槽; 左、 右护板由 3个螺钉紧固筋与角相互咬合, 平台相连, 左、 右护板各有一条凸筋夹着子弹 32的弹头; 托弹板 45两面侧的弯头 82在前后凸筋和 枪座 16底边围成的空间上下滑动; 托弹簧 47的两头分别插入托弹板和前隔板 22的 孔 53内。
本发明的使用方法 1、 如附图 1, 2、 3, 4、 5、 6、 7、 8、 10、 13所示, 其具体动作如下; 待击, 将击锤 43尾端下压, 击锤带动摇杆 38和复进座 35—起后移, 击锤的台 阶 64不断下移, 摇杆上端顶到钢块 36不能下移, 摇杆的上方碰到上隔板 9而使摇 杆尾端上翘加速与击锤的台阶脱钩, 复进座在复进簧 37的作用下沿着滑槽 8前行, 碰到槽埂 7停止; 左闭锁阻铁 66的平板 60从击锤的突台 63下滑压在右闭锁阻铁 41 的横板 71上, 松开击锤 43, 击锤在击锤簧 42的作用下前行, 击锤的突台 63抵住左 闭锁阻铁的平板 60后停止前行, 此时击头 61完全不能与子弹 32相接触, 手枪处于 保险状态。
将 3发子弹从枪座下方沿两条定位凸筋 17的内侧放入, 最前面子弹遇到枪管后 端定位包筋 84的倒角 5和复进痤前端的定位凸缘 74而停止。 将内有托弹板 45和托 弹簧 47的框架 44从枪座 16下方沿着两条定位凸筋的外侧推入, 卡笋 52卡入框架 后方的卡笋孔 51 内, 缓慢放松框架, 其在托弹簧的作用下下滑, 当框架上卡笋孔上 方的斜面压到卡笋后, 框架停止下滑, 此时卡笋后面碰到下隔板 18而不能向后旋转。
击发, 扣扳机 29, 连杆 33平移推动击锤的受力销 70, 使击锤沿击锤销 69向后 旋转, 在连杆底边的延长线超过受力销的圆心将要上翘时, 扳机的孔 30 向上翘起的 底边碰到销 31, 而使扳机下沉, 连杆以连杆槽 4 向下倾角的起点为支点前沉后翘, 连杆后端上翘将两个闭锁阻铁托顶上行, 使其上的缺口 59抵住复进座 35 的下端, 两个闭锁阻铁停止上行, 手枪的保险解除。 击锤 43 在连杆上翘时脱离连杆 33 的推 顶, 并在击锤簧 42 的作用下向前旋转击打子弹 32 的底火帽, 弹头脱离弹壳从弹道 飞出。 弹壳后冲带动复进座后移, 弹壳抵住两个闭锁阻铁前端, 复进座 35 的下端则 抵住闭锁阻铁的上缺口 59, 摇杆 38在击锤前行时先上翘后在复进簧 37的作用下下 滑, 并在碰到钢块 36 后停止。 松开扳机, 连杆前移并下滑, 连杆 33 后端越过受力 销 70后下滑搁到连杆槽 4后端的长孔 13 的底边上, 两个闭锁阻铁随连杆下滑而向 下旋转, 旋转过程中左闭锁阻铁 66压在击綞 43 中部的突台 63上, 右闭锁阻铁 41 压在连杆 33上。
抛壳, 向后扣引扳机 29, 连杆 33推顶受力销 70, 使击锤向后旋转, 旋转中, 其上的台阶 64推顶住摇杆 38钩状尾巴, 并推动摇杆后移, 摇杆又通过摇杆销 75带 动复进座 35—起后移; 摇杆上端碰到上隔板 9, 使摇杆的尾巴上翘加速了摇杆和击 锤的分离, 复进簧 37推动复进座 35在滑槽 8内前行, 顶到槽埂 7后停止, 摇杆下 沉后停止; 在复进座后移和前行过程中, 弹壳在托弹簧 47 的作用下, 其外径上的倒 角 85将沿着定位包筋 84的倒角 5滑出抛壳口 6, 托弹板 45托顶第二发子弹上行, 顶到定位包筋的倒角 5和定位凸缘 74后停止, 左闭锁阻铁 66从突台 63上滑下来, 其内侧的平板 60压在右闭锁阻铁 41内侧的横板 71上; 击锤继续旋转, 当连杆底边 的延长线超过受力销 70的圆心将要向上翘时, 孔 30向上翘起的底边碰到销 31后, 扳机下沉, 连杆 33 前沉后翘托顶两个闭锁阻铁上行, 两个闭锁阻铁碰到复进座 35 下端后停止上行, 枪内自动保险随着左闭锁阻铁 66 的上行而自动解除。 击锤在连杆 上翘后, 在击锤簧 42的作用下向前击打子弹的底火帽, 弹头从弹壳飞出。
本发明设计弹仓可容子弹 5 发, 当装弹 6 发后, 必须在第一次抛壳后向上推压 框架, 使卡笋卡入框架下端的卡笋孔内, 否则第 6 发子弹不能进入待击状态。 卸子 弹 32时, 向上推压框架而后向前按压卡笋, 再抽出框架, 按压子弹即可。
2、 如附图 9、 14、 15、 16所示, 必要时参考其它附图, 其具体动作如下: 待击, 向上拉起离合杆 76, 其内侧凸起的锥形平台推顶复进座 35顺着滑槽 8后 移, 扣引扳机 29, 连杆 33推顶突台 63, 使击锤 43向后旋转, 闭锁阻铁 41在 U形 簧 40 弹力的作用下从突台上滑下来, 停止扣引扳机, 并缓慢松开扳机, 击锤簧 42 推动击锤前行, 其突台的凹槽顶到闭锁阻铁 41 内侧横板尖角时停止前行, 此时击锤 完全不能与子弹 32接触, 托弹板 45在托弹簧 47 的作用下, 其两侧伸出的弯头 82 卡在枪座 16的底边下; 将三发子弹从抛壳口 6压入弹仓, 向下推压离合杆, 使其头 部内侧的小包卡入枪座 16的小槽中, 复进座 35在复进簧的作用下前行顶到底座 78, 松开压子弹的手, 子弹上行顶到复进座前端而停止。
击发, 扣引扳机, 使连杆推项击锤向后旋转, 连杆 33逐渐滑移到击锤的突台 63 上, 击锤 43 在击锤簧 42 的作用下向前旋转, 突台逐渐推顶连杆上行, 连杆推顶闭 锁阻铁上行, 击锤的击头通过摇杆 38钩状尾巴后, 击锤逐渐顶起摇杆, 最终击打子 弹的底火帽, 子弹从弹壳飞出, 复进簧 37 带动摇杆 38 向下旋转, 直到摇杆前端向 上翘起的小头部顶到复进座时停止。 松开扳机 29, 扳机簧 56推动扳机前行, 连杆 33 尾端越过突台 63后下滑搁在长孔 13的底边上, 闭锁阻铁 41的横板搁在突台上。
抛壳, 扣引扳机, 连杆推顶突台 63使击锤向后旋转, 击锤的台阶 64推顶摇杆 38 钩状尾巴后移, 摇杆通过摇杆销 75 带动复进座 35 —起后移; 摇杆向上翘起的头部 顶到复进座, 使其尾巴不能下移, 击锤不断旋转逐渐与摇杆分离, 复进座被复进簧 推顶碰到底座 78, 闭锁阻铁 41在 U形簧 40的作用下从突台 63上滑下来; 在复进座 后移和前行时, 第一发子弹的弹壳在托弹簧 47 的作用下推挤复进座的倒角从抛壳口 抛出, 第二发子弹上行顶到复进座前端而停止; 连杆继续推顶击锤旋转, 连杆 33逐 渐滑到突台 63 上, 击锤簧 42 推动击锤向前旋转, 突台逐渐推顶连杆上行, 连杆推 顶闭锁阻铁 41上行, 最终击锤前端的击头打击子弹的底火帽。
卸子弹 32时, 扣引扳机到中途时停止, 并缓慢松开扳机, 使击锤顶到闭锁阻铁, 再向上拉起离合杆, 子弹在弹力的作用下从抛壳口弹出, 托弹板 45 的两个弯头 82 撞到枪座 16的底边后停止上行。
3、 如附图 17、 18所示, 必要时也可参考其它附图, 其具体动作如下: 待击, 向上拉起离合杆 76, 其内侧凸起的锥形平台推项复进座 35顺着滑槽 8后 移, 复进座后端的钢块 36推顶击缍 43向后旋转, 闭锁阻铁 41在 U形簧 40的作用 下搁在连杆 33 上, 将三发子弹从抛壳口 6 压入弹仓, 向下推压离合杆, 复进簧 37 推动复进座前顶到子弹 32而停止, 击头 61在离开击锤后在 U形簧 92的作用下后移, 击头因此不能和子弹接触, 手枪自动保险; 击锤在击锤簧 42 的作用下前行, 其突台 63顶到闭锁阻铁前端内侧的横板 71而停止; 松开压子弹的手, 子弹 32在托弹簧 47 的作用下上行顶到复进座前端的定位凸缘 74 而停止, 复进座在复进簧的作用下推顶 子弹前行, 使弹头插入弹道弹壳顶到枪管而停止。
击发, 扣引扳机 29, 连杆 33推动受力锁 70, 使击锤 43向后旋转, 连杆逐渐滑 移到受力销 70 上方, 击锤在击锤簧 42 的作用下向前旋转, 受力销逐渐推顶连杆上 行, 连杆托顶闭锁阻铁 41上行顶在复进座 35的后面, 保险自动解除, 击锤前行时, 卡舌 91碰到钢块 36而下沉, 击锤最终击打击头 61, 使击头前冲撞击子弹的底火帽, 弹头飞出枪管; 弹壳后冲带动复进座后移碰到闭锁阻铁 41而停止。 卡舌在 U形簧的 作用下上行, 直到 U形簧顶到击缍内壁停止; 松开扳机, 扳机簧 56推动扳机前移, 连杆前移越过受力销 70后下沉搁在连杆槽 4后端的长孔 13的底边上, 闭锁阻铁 41 随连杆 33下沉搁在击锤的突台 63上。
抛壳, 向后扣引扳机, 连杆推顶受力销, 使击锤向后旋转卡舌 91 推顶复进座后 端钢块 36钩状尾巴后移, 击锤 43旋转使卡舌逐渐与复进座 35分离, 最终复进簧 37 推动复进座前行顶到子弹 32使弹壳紧贴枪管, 弹头插入弹道而停止前行; 在复进座 后移和前行时, 托弹簧 47推顶弹壳从抛壳口 6抛出, 第二发子弹 32上行顶到复进 座前端的定位凸缘 74停止上行; U形簧 40推动闭锁阻铁 41从突台 63上滑下来搁在 连杆上; 击锤继续旋转受力销逐渐下行, 最后搁在长孔 13底边上的连杆 33 滑移到 受力销上, 击锤 43 在击锤簧的作用下向前旋转, 受力销 70逐渐推顶连杆和闭锁阻 铁上行, 闭锁阻铁 41顶在复进座 35下端的后面; 卡舌 91碰到钢块 36钩状尾巴后 逐渐下沉, 击锤击打击头 61, 击头克服 U形簧的弹力撞击子弹的底火帽, 弹头飞出 枪管。
卸子弹 32时, 向上拉起离合杆 76, 托弹簧 47通过托弹板 45上行将子弹从抛壳 口 6抛出, 托弹板的 4个弯头 82撞到枪座 16的底边后停止。
本发明的新式手枪结构合理、 枪体薄而短矮, 便于携带, 左右手使用时无区别, 扣引扳机可自动完成抛壳、 待击、 保险、 解除保险和击发, 装弹、 卸弹方便迅速, 还可随时加装子弹, 弹壳可多次使用, 手枪可长期处于待击状态; 本发明特别适合 突发情况下使用。

Claims

权利要求书
1、 一种新式手枪, 包括枪座(16)、 击锤 (43)、 扳机 (29), 其特征在于, 复进座 (35)的前端卡住子弹 (32)尾端的上方, 使子弹不能向上弹出。
2、 一种新式手枪, 包括枪座(16)、 击锤 (43)、 扳机 (29), 其特征在于, 枪座前 端上方有定位包筋 (84), 定位包筋的内壁制成倒角(5), 枪座内有复进座 (35)。
3、根据权利要求 1或 2所述的新式手枪, 其特征在于,击锤 (43)带动复进座 (35) 后移。
4、根据权利要求 1、 2或 3所述的新式手枪,其特征在于,击锤 (43)通过摇杆 (38) 带动复进座 (35)后移, 摇杆 (38)有钩状尾巴。
5、 根据权利要求 1、 2、 3或 4所述的新式手枪, 其特征在于, 击锤 (43)的中部 有突台(63)。
6、 根据权利要求 1、 2、 3、 4或 5所述的新式手枪, 其特征在于, 闭锁阻铁 (41) 由连杆(33)推顶上行。
7、 根据权利要求 1、 2、 3、 4或 6所述的新式手枪, 其特征在于, 闭锁阻铁 (41) 后端与枪座(16)活动连接, 前端内侧有横板 71。
8、 根据权利要求 1、 2、 3、 4 或 5 所述的新式手枪, 其特征在于, 离合杆 (76) 后端内侧有突出的台阶推顶复进座 (35)。
9、 根据权利要求 1、 2、 或 3所述的新式手枪, 其特征在于, 托弹板 (45)下端向 两侧伸出的弯头(82)卡在枪座(16)的底边下。
10、 根据权利要求 1、 2或 3所述的新式手枪, 其特征在于, 子弹 (32)的尾部制 成缺口(89)或者制成倒角形状。
PCT/CN2003/000374 2002-06-25 2003-05-21 Nouveau type de pistolet WO2004005839A1 (fr)

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US5741996A (en) * 1996-02-12 1998-04-21 Sturm, Ruger & Company, Inc. Firearm frame including a firearm barrel and trigger mount control mechanism
CN1054683C (zh) * 1992-11-06 2000-07-19 施图尔姆鲁格有限公司 自动手枪

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US4155187A (en) * 1976-06-23 1979-05-22 Lichtman Phillip R Manually cycled pistol
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US5678340A (en) * 1995-09-29 1997-10-21 Moon; Kook-Jin Cartridge extractor
US5741996A (en) * 1996-02-12 1998-04-21 Sturm, Ruger & Company, Inc. Firearm frame including a firearm barrel and trigger mount control mechanism

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