US2020173756A1PendingUtilityA1

Implement and facility for capturing grounding missiles and penetrating missiles in a fixed point and collecting guiding rockets and aircrafts and manufacture method thereof

Assignee: JIANG LIZHONGPriority: Oct 19, 2018Filed: Oct 16, 2019Published: Jun 4, 2020
Est. expiryOct 19, 2038(~12.2 yrs left)· nominal 20-yr term from priority
Inventors:Lizhong Jiang
F41H 11/02
22
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Claims

Abstract

Disclosed are a device and a method for discharging energies of an energy carrying device when impacted in an open space. By the present invention, static energies of the earth absorbs potential energies of human science and technology products, and the eruption and destruction become a gradual leakage in the local confrontation. The mechanisms provided by the embankment mortise stack facilities, the fixed rod implements and the mortise sampan transporters provide intelligent and procedural measures for collecting missiles, penetrating missiles, rockets, spacecrafts and satellites, so that the missiles and penetrating missiles that attack the ground are collected, and the space devices such as rockets, spacecrafts and satellites are collected from space to ground, and cause no damage.

Claims

exact text as granted — not AI-modified
What is claimed is: 
     
         1 . An energy discharging implement in an open space for an energy carrying space device, the energy discharging implement comprising a fixed rod, an implement and an embankment mortise stack;
 wherein the fixed rod which is a top-down bracket supporting implement comprises a frame bracket rod with a base, a frame bracket rod, a bracket rod sleeve, a bracket top cover;   the implement comprises a loading missile frame comprising a supporting shaft, a bearing sleeve, a support shaft bearing, a fixed bearing device, a bearing fixing nut, a guide rod, a guide rod bearing, a guide rod hanging piece, a diagonal sliding hole cover, a fixed hanging body, a frame bracket fixing plate, a frame bracket bottom plate, a spring narrow steel plate, a nylon rope net for picking up and changing the trajectory of thrown loading missiles, changed missiles, accepted cruise missiles, ballistic missiles and penetrating missiles;   the embankment mortise stack comprises mixed mortises, slippery mortises and separation mortise boards; the mixed mortises are mortise stones covered on a surface of the stack with mortises with four diameters of φ12 cm, φ8 cm, φ4 cm, and wheat grain mortises which are layered orderly for 30 cm in each layer; the slippery mortises are mortise stones with φ12 cm and layered orderly in every layer of 3 m covered in the stack in the inner circle; the separation mortise board is a modular high-strength double-layer reinforced concrete slab or a high-strength fire-resistant glass steel sheets placed between different mortise layers; the stack is configured to catch missiles thrown by the loading missile frame or the missiles that are directly attacked; the set separation mortise boards in each layer have different seams and sizes, and right and left sides of each layer are asymmetric, and the set separation mortise boards in each layer which are not jointed are superimposed; the mortise sampan transporter further comprises mortise floating prying shoes, climbing claw shoes and covers;   wherein the implement and the embankment mortise stack are integrated to collect rockets; structures and mechanisms of respective energy carrying devices fit surface tensions and friction coefficients of mortises, which consume energy of the energy carrying devices, so that the energy carrying devices are collected.   
     
     
         2 . The energy discharging implement of  claim 1 , wherein the energy discharging implement is manufactured by a method comprising the following steps:
 coating a bottom of the frame with a same resin and fiber cloth to double an original diameter of the frame when manufacturing the supporting shaft, so that the frame is reinforced to increase the missile throwing radian of the frame;   hanging ropes with the same length at frame hanging rings below four corners of the frame, and fixing a resultant force object which is half of the frame in weight, so that everlasting operating is guaranteed due to floating of the frame; and   manufacturing the guide rod with the same principle, wherein the remaining position in the wrap between the bearing, the bin, the hanging piece and axle is biased to the hanging piece to ensure that the missile striking the middle of the frame synchronously accepts the oblique displacement of the outer ring of the bearing and the rotating slide of the bearing load, and the hanging piece randomly decides directions.   
     
     
         3 . The energy discharging implement of  claim 2 , wherein the method for manufacturing the energy discharging implement further comprises the following steps:
 piling the rugged boards which are cast in-site in a staggered manner to reduce collapse of the embankment mortise stack which is not covered; enlarging an interface of the board to increase aggregation of the mortises; and forming the embankment mortise mountain through interaction of gaps of modular plates;   fixing an initial mortise floating surface with the separation plates, smoothing the initial mortise floating surface, and covering a thick plastic film on the smoothed mortise floating surface;   putting concrete onto the smoothed mortise floating surface, and then adding reinforcing bars onto the concrete; adding concrete onto the reinforcing bars and flattening; and then adding reinforcing bars and concrete on surface, and flattening;   compressing with a rotary cylinder and consolidating with a plate type vibrator; curing, and cutting according to a requirement of set modules; or   separating plates with wooden strips or grass ropes; casting modularly after covering a film, wherein the concrete is cast in layers.   
     
     
         4 . The energy discharging implement of  claim 1 , wherein the frame bracket fixed rod is obtained by compacting, reinforcing and strengthening a hollow rod, which improves a loading capacity of the implement and is used again after destroyed; after the loading missile frame is installed, sands with a high sedimentation rate from rivers are added into an upper opening of the frame bracket rod, and water is injected into the rod to promote settling; or mortar concrete or reinforced concrete is added into the opening of the frame bracket rod, and are vibrated by a vibrator, so that the loading and reuse capacity are improved. 
     
     
         5 . The energy discharging implement of  claim 2 , wherein the method further comprises the following steps:
 after the embankment mortise stack is constructed, covering the slope of the stack with a thin mixed layer of 2-sized, 4-sized, 6-sized and 8-sized stones which are used for buildings on a frontal surface, so that the mixed mortises on an outer surface are prevented from being washed away;   planting ivies on the slope of the stack for a long-term curing; and   cutting roots of the ivies and burning with sulfuric acids, and after withered, removing the ivies with an unmanned aerial vehicle.   
     
     
         6 . An energy discharging facility in an open space for an energy carrying space device, comprising a hidden mortise facility; wherein the hidden mortise facility comprises a modular scrap steel plate with an anti-rust treatment, a concrete rugged board or a glass steel rugged board for filling holes; attacking missiles are directly collected when a loading missile frame and a frame bracket fixed rod are removed; the mortise sampan facility further comprises mortise floating prying shoes, climbing claw shoes and covers; the facility and the embankment mortise stack are integrated to collect rockets; structures and mechanisms of respective energy carrying devices fit surface tensions and friction coefficients of mortises, which consume energy of the energy carrying devices, so that the energy carrying devices are collected. 
     
     
         7 . The energy discharging facility of  claim 6 , wherein the energy discharging facility is manufactured by a method comprising the following steps:
 casting the separation mortise boards;   placing the waste steel plates which meet a requirement for modules on the mortise layer in a checkerboard manner after an anti-rust treatment; and   casting rugged separation mortise plates, and filling the rugged separation mortise plates into vacancies, wherein sides of the steel plates may be thickened if necessary, so that a missile loading frame is removed in the hidden embankment mortise facility.   
     
     
         8 . The energy discharging facility of  claim 7 , wherein the method further comprises the following steps:
 after the embankment mortise stack is constructed, covering the slope of the stack with a thin mixed layer of 2-sized, 4-sized, 6-sized and 8-sized stones which are used for buildings on a frontal surface, so that the mixed mortises on an outer surface are prevented from being washed away;   planting ivies on the slope of the stack for a long-term curing; and   cutting roots of the ivies and burning with sulfuric acids, and after withered, removing the ivies with an unmanned aerial vehicle.   
     
     
         9 . An energy discharging transporter in an open space for an energy carrying space device, comprising a mortise sampan transporter; wherein the mortise sampan transporter comprises a mortise sampan, an acute angle pry plow (hammer) or a straight angle pry plow (hammer), a navigation hub, a storage lanyard; the mortise sampan comprises a loading rocket frame or a rocket changing frame, a frame bracket rod, an anti-reverse ring, an energy guide rod, an energy guide connecting rod, a sampan rudder, an energy guide wheel, an umbrella rib wheel, a sampan axle, a gasket, a bearing, a nut, a pin, a hoop, a sampan, and a floating mortise board of the travelling sampan with a sampan rudder ditch and a sling hole, a sampan tip, a sampan tip net and a sampan tip net fixing bracket rod; the acute angle pry plow (hammer) comprises a combination of an acute angle pry and a hammer with different rods, a hammer with same rods, a flat plow, a sharp plow, a bald plow; the straight angle pry plow (hammer) comprises a combination of a straight angle pry and a mortise draping rake, a mortise combing rake, a mortise separating hammer, a hammer with different rods or a hammer with short rods; the embankment mortise stack removes the separation mortise board, and the mortise sampan of the stack becomes a travelling sampan; a transfer of frictional energy is provided by lifting the acute angle pry plow (hammer) and the straight angle pry plow (hammer) segment by segment through a pre-positioned storage lanyard to collect a rocket in a set area, or the embankment mortise stack directly receives misguided rockets; the mortise sampan transporter further comprises mortise floating prying shoes, climbing claw shoes and covers; the facility and the embankment mortise stack are integrated to collect rockets; structures and mechanisms of respective energy carrying devices fit surface tensions and friction coefficients of mortises, which consume energy of the energy carrying devices, so that the energy carrying devices are collected. 
     
     
         10 . The energy discharging transporter of  claim 9 , wherein the energy discharging transporter is manufactured by a method comprising the following steps:
 continuously overlaying guides, energy consumption tools and plows to form an energy consumption mechanism, so that carrying energies of space rockets are consumed and space devices are collected without damage;   manufacturing the anti-reverse ring, the energy guide rod and the energy guide wheel, wherein a total length of the energy guide rod and the energy guide wheel is slightly larger than a length between a bottom of the frame and a bottom of the sampan;   molding the umbrella rib wheel with a thin edge and a thick hub, in which ribs of the umbrella rib wheel extend radially outward, and the thin edge of the umbrella rib wheel has no corners;   manufacturing an acute angle pry and a hammer with different rods, a hammer with the same rods, a flat plow, a sharp plow, a bald plow to form the acute angle pry plow (hammer), or manufacturing a straight angle pry, and a mortise draping rake, a mortise combing rake, a mortise separating hammer, a hammer with different rods, a hammer with short rods to form the straight angle pry plow (hammer);   placing one or more of the acute angle pry plow (hammer) and the straight angle pry plow (hammer) into the embankment mortise stack, wherein the separation mortise board is removed, and the pry plows (hammers) are associated with the mortise sampan using pre-positioned storage lanyards;   mounting the energy guide rod, the energy guide wheel and the umbrella rib wheel at the mortise sampan;   transmitting the energy to the energy guide rod and the stack bottom when impact of the rockets pushes the loading rocket frame to incline downwardly, so that the energy guide rod moves forwardly, and the energy guide wheel rolls forward to deliver part of the energy to the sampan tip, and at the same time, the sampan tip inclines downwardly to drive the sampan to move downwardly along a slope of the embankment mortise stack, and then the umbrella rib wheel moves against the mortises, and when the travelling sampan is stopped, the pre-positioned storage lanyards is exhausted, and the acute angle pry plow (hammer) or the straight angle pry plow(hammer) transmits frictions to the sampan to consume energy, so that the traveling sampan or the pry plow is collected when it is on the slope or near the ground.   
     
     
         11 . The energy discharging transporter of  claim 10 , wherein the method further comprises the following steps:
 after the embankment mortise stack is constructed, covering the slope of the stack with a thin mixed layer of 2-sized, 4-sized, 6-sized and 8-sized stones which are used for buildings on a frontal surface, so that the mixed mortises on an outer surface are prevented from being washed away;   planting ivies on the slope of the stack for a long-term curing; and   cutting roots of the ivies and burning with sulfuric acids, and after withered, removing the ivies with an unmanned aerial vehicle.   
     
     
         12 . The energy discharging transporter of  claim 9 , wherein mortise floating prying shoes are a walking tool on the mortise stone layer; a ratio of a size of pries to a size of shoes is 9:1, and the shoes are installed in a middle of the pries; the shoes and the pries are tightly jointed at a toe web position, and are loosely connected at a tendon position; climbing shoe covers and shows are used as an inspection protection tool, a ratio of a climbing shoe and a pry bottom of the climbing shoe is 1:5; a rear of the toe web position is arranged with multiple rows of long spikes which have a length of about 20 cm and penetrate through the pry; and the climbing claw covers are the same as mud tile board, and a ratio of a size of a pry board to a size of the mud tile board is 4:1, and multiple rows of long spikes which have a length of about 20 cm penetrate through the pry.

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