Transport case is used in window glass transportation
Technical Field
The utility model relates to a window technical field, more specifically relates to a transport case is used in window glass transportation.
Background
Along with rapid development and the more and more places that need extensively to utilize the transport case, and more need the packing carrier of high-end, there are factors such as mobility poor, loading and unloading inconvenience, not environmental protection in traditional packing products such as wooden case and iron box, can't satisfy the requirement of current high-end product to packing carrier.
For example, when transporting glass blocks for windows, the glass blocks are generally processed and perfected in factories, so that professional packaging needs to be carried out on the glass blocks when transporting the glass blocks, the glass blocks are not easy to place due to friction force when the glass blocks are placed in the transportation process and the carrying process of the existing transport case, sufficient protection can not be effectively ensured on articles such as the glass inside the transport case in the transportation process, and accidents such as breakage and the like caused by collision in the bumping process are easy to happen.
SUMMERY OF THE UTILITY MODEL
The utility model aims at solving the problem that effective shock absorption and insufficient comprehensive protection cannot be carried out in the background, thereby providing a transport case for transporting window glass.
In order to achieve the above object, the utility model provides a following technical scheme: a transport case for transporting window glass comprises a top plate, wherein a limiting plate is fixedly connected below the top plate, a transport case is fixedly installed on one side of the limiting plate, a placing frame is fixedly installed inside the transport case, a second spring is elastically connected to one side of the placing frame, a placing groove is fixedly installed inside the placing frame, a screw adjusting handle is connected to one side of the placing groove in a threaded mode, a pulley is installed inside the placing groove, the pulley is elastically connected with a first spring below the inside of the placing groove, a cover plate is rotatably connected to the upper side of the placing groove, and a lock catch is movably connected to one side of the cover plate;
the transport case below is rotated and is connected with the shock attenuation pole, the supporting slide rail that is provided with in shock attenuation pole below, slide rail one side fixedly connected with stopper, stopper top elastic connection has the damping spring, limiting plate below fixedly connected with fixing base, fixing base below fixedly connected with base, base below fixedly connected with hollow draw-in groove, fixed mounting has the gyro wheel around the base below.
Preferably, the pulleys are located inside the placing groove, the number of the pulleys is uniformly distributed, and a first spring is arranged below each pulley.
Preferably, the placing grooves are evenly arrayed, a gap is reserved between every two placing grooves, and the number of the placing grooves is several.
Preferably, the number of the screw adjusting handles is a plurality, and every two handles are symmetrically distributed on two sides of the placing groove.
Preferably, the second springs are located between the placing rack and the transport case, and the number of the second springs is a plurality of uniform distribution.
Preferably, the other side of the damping rod is rotatably connected with a sliding block, and the sliding block is matched with the sliding rail through a spring.
The utility model provides a transport case is used in window glass transportation has following beneficial effect:
1. this kind of window glass transportation is provided with the pulley, the pulley is located inside the standing groove, and quantity is a plurality of evenly distributed, and every pulley below all is provided with first spring, produce great frictional force between glass and other objects easily and make and be difficult for putting into when placing glass, consequently make glass can easily put into when putting into through a plurality of pulley, and the inside of putting into every pulley in back is provided with the first spring of a plurality of and makes jolting that takes place when transporting glass in-process can prevent to transport lead to glass broken.
2. This kind of transport case is used in window glass transportation is provided with a plurality of spring, and shock attenuation spring quantity is two, and is the symmetry form and distributes in the standing groove below, when receiving decurrent power, the shock attenuation pole slides towards the slide rail that has the spring of both sides below and carries out the shock attenuation through the spring to shock attenuation spring through the bilateral symmetry form simultaneously makes the shock attenuation effect better.
3. This kind of window glass transport case is provided with the standing groove, the even array of standing groove, and leaves the clearance between every standing groove, and standing groove quantity is a plurality of, and the standing groove of even array can make the quantity of the inside shipment of every transport case enough and through leaving the space in order to prevent to bump, and can adjust the handle through the screw rod and withstand the glass and stabilize in order to further protect glass emergence accident scheduling problem in the transportation.
Drawings
Fig. 1 is a schematic view of the overall structure of the present invention.
Fig. 2 is a schematic view of the structure of the transportation box of the present invention.
Fig. 3 is a schematic view of the structure of the placement groove of the present invention.
Fig. 4 is an enlarged schematic structural diagram of a point a in fig. 3 according to the present invention.
In FIGS. 1-4: 1. a top plate; 101. a hollow clamping groove; 2. a fixed seat; 201. a limiting plate; 202. a transport case; 203. a placement groove; 2031. a pulley; 2032. a first spring; 205. a second spring; 206. placing a rack; 207. a slide rail; 208. a damping spring; 209. a shock-absorbing lever; 210. a limiting block; 3. a base; 301. a roller; 4. a cover plate; 5. locking; 6. the handle is adjusted by the screw rod.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Referring to fig. 1 to 4, in the embodiment of the present invention, a transportation box for transporting window glass includes a top plate 1, a limiting plate 201 is fixedly connected below the top plate 1, a transportation box 202 is fixedly installed on one side of the limiting plate 201, a placing rack 206 is fixedly installed inside the transportation box 202, a second spring 205 is elastically connected on one side of the placing rack 206, a placing groove 203 is fixedly installed inside the placing rack 206, a screw adjusting handle 6 is connected to one side of the placing groove 203 through a thread, a pulley 2031 is installed inside the placing groove 203, the pulley 2031 and the lower portion inside the placing groove 203 are elastically connected with a first spring 2032, a cover plate 4 is rotatably connected above the placing groove 203, and a lock catch 5 is movably connected on one side of the cover plate 4;
transport case 202 below is rotated and is connected with shock attenuation pole 209, and the supporting slide rail 207 that is provided with in shock attenuation pole 209 below, slide rail 207 one side fixedly connected with stopper 210, stopper 210 top elastic connection have shock attenuation spring 208, limiting plate 201 below fixedly connected with fixing base 2, 2 below fixedly connected with bases 3 of fixing base, 3 below fixedly connected with hollow clamping groove 101 of base, 3 below fixed mounting all around of base has gyro wheel 301.
Referring to fig. 2 and 3, further, the pulleys 2031 are located inside the placing groove 203, the number of the pulleys is uniformly distributed, the first springs 2032 are arranged below each pulley 2031, and a large friction force is easily generated between the glass and other objects, so that the glass is not easily placed in the placing groove, therefore, the glass can be easily placed in the placing groove through the pulleys 2031, and after the glass is placed in the placing groove, the first springs 2032 are arranged inside each pulley 2031, so that the glass is prevented from being broken due to bumping in the transportation process.
Referring to fig. 1 and 2, further, the placement slots 203 are uniformly arrayed, and a gap is left between each placement slot 203, and the number of the placement slots 203 is several, the uniformly arrayed placement slots 203 can make the number of the inner shipments of each transport case 202 sufficient and prevent the occurrence of collision by leaving a gap.
Referring to fig. 1 and 2, further, the number of the screw adjusting handles 6 is several, and every two screw adjusting handles are symmetrically distributed on two sides of the placing groove 203, after the glass is placed in the placing groove 203, the screw adjusting handles 6 are screwed to enable the other end of the screw adjusting handles to support the glass so as to achieve the purpose of stabilizing the glass and preventing the glass from shaking and colliding, and meanwhile, the placing groove 203 is covered by the cover plate 4 above the glass so as to further protect the glass from accidents.
Referring to fig. 2, further, the second springs 205 are disposed between the placing frame 206 and the transportation box 202, and the number of the second springs 205 is a plurality of the second springs being uniformly distributed, so that the glass inside the transportation box 202 can further absorb the left-right shaking amplitude.
Referring to fig. 2, further, the other side of the damping rod 209 is rotatably connected with a slider, the slider is engaged with the sliding rail 207 through a spring, the number of the damping springs 208 is two, and the two damping springs are symmetrically distributed below the placing slot 203, when a downward force is applied, the damping rod 209 slides towards the sliding rail 207 with the spring at the lower sides, the damping is performed through the spring, and the damping is performed through the two symmetrical damping springs 208, so that the damping effect is better.
When the transportation box for transporting window glass is used, firstly, glass is put into the placing grooves 203 inside the transportation box 202, the placing grooves 203 are evenly arrayed, gaps are left among the placing grooves 203, the number of the placing grooves 203 is several, the placing grooves 203 of the even array can enable the number of the shipments inside each transportation box 202 to be enough and prevent collision by leaving gaps, the pulleys 2031 are positioned inside the placing grooves 203 and evenly distributed, the first springs 2032 are arranged below each pulley 2031, larger friction force can be easily generated between the glass and other objects, the glass is not easy to put in when being placed, therefore, the glass can be easily put in by a plurality of pulleys 2031, and the first springs 2032 are arranged inside each pulley 2031 after the glass is put in, so that the glass can be prevented from being broken due to jolt during transportation, the number of the screw adjusting handles 6 is a plurality of, every two handles are symmetrically distributed on two sides of the placing groove 203, after the glass is placed in the placing groove 203, the other end of the glass is pressed against the glass by screwing the screw adjusting handles 6 to achieve the purpose of stabilizing the glass and preventing the glass from shaking and colliding, meanwhile, the placing groove 203 of the cover plate 4 above is covered by the cover plate 4 to further protect the glass from accidents, the second springs 205 are positioned between the placing frame 206 and the transport box 202 and are uniformly distributed, the second springs 205 arranged between the placing frame 206 and the transport box 202 enable the glass in the whole transport box 202 to further absorb the left-right shaking amplitude, the number of the damping springs 208 is two, the damping springs are symmetrically distributed below the placing groove 203, when downward force is applied, the damping rods 209 slide the slide rails 207 with springs on the two sides below and absorb the shock through the springs, and simultaneously the damping springs 208 in the symmetrical shape on two sides are used for damping, make the shock attenuation effect better, and the outside still nestification is provided with rack 206 and carries out further protection, rack 206 is located transport case 202 outside, make it provide better anticollision and shock attenuation effect, and the nestification is installed and is taken place to damage accident such as breakage with the inside glass of further protection transport case 202 outside in order to prevent jolting in the transportation, transport case 202 that will place glass at last is placed in proper order on fixing base 2 for the loading, and transport through gyro wheel 301, or utilize hollow draw-in groove 101 to carry out fork truck through fork truck and transport.
The above is only the preferred embodiment of the present invention, and it should be noted that, for those skilled in the art, without departing from the concept of the present invention, several modifications and improvements can be made, which should also be regarded as the protection scope of the present invention, and these will not affect the effect of the implementation of the present invention and the practicability of the patent.