Safety shoes with higher zigzag life
Technical Field
The utility model relates to a safety shoes technical field specifically is a higher safety shoes of zigzag life.
Background
Safety shoes are a general term for safety-type shoes and protective-type shoes, and generally refer to shoes worn at different work occasions to protect the feet, legs and human body from foreseeable injuries.
Under the environment that the ground is easy to slip and hurt by grease, accumulated water, wax and the like, workers need to wear the anti-slip safety shoes to avoid slipping and hurting. The anti-skid coefficient of the anti-skid safety shoe depends on factors such as the thickness of the sole, the height of the anti-skid blocks, the distance from the edge of the sole and the like.
The shoes are bent in a zigzag mode in the wearing process, particularly at the front sole, and the service life of the shoes is influenced by frequent bending, such as cracking and breaking of the shoes. For some shoes with thick soles, the cracking and breaking conditions are more likely to happen, and the breaking conditions are more serious. When a heavy object hits the shoes, the feet are injured, the feet cannot be protected, and good skid resistance cannot be provided in rainy days and places with glass.
SUMMERY OF THE UTILITY MODEL
The to-be-solved technical problem of the utility model is to overcome current defect, provide a higher safety shoes of zigzag life, prolonged the zigzag life-span of shoes, protective properties is good, and non-skid property is good, can effectively solve the problem in the background art.
In order to achieve the above object, the utility model provides a following technical scheme: a safety shoe with a longer zigzag life comprises a vamp, a sole and a bottom anti-cracking unit;
shoe upper: the anti-crack shoe comprises a vamp and is characterized in that the front side surface and the rear side surface of the vamp are fixedly connected with roller edges, shoelace holes are formed in the roller edges in an array mode, a toe cap anti-crack unit is installed on the right side of the top opening of the vamp, the upper surface of the left side of the fixedly connected vamp is damaged by pulling, a shoe pad is placed at the bottom of an inner cavity of the vamp, a protection cavity is formed in the bottom of the shoe pad, iron sheets are placed in the protection cavity side by side, every two adjacent iron sheets are movably connected through a hinge, fixing grooves are formed in two sides of the bottom of the vamp, and a semicircular.
Sole: the fixed block in sole top, and fixed block and fixed slot joint, two films about the sole is left and right respectively install the anti unit that splits in bottom between two films, the bottom both sides fixed connection friction nail of sole, fixed friction sawtooth in the middle of the bottom of sole, the outside surface of sole is equipped with the waterproof layer.
Can protect the foot through the iron sheet that sets up, in the place that meets there is the nail, the nail can not pass shoes and prick the foot, and the waterproof layer of sole can let safety shoes pass and prevent on the road surface that has ponding that water from getting into, and the friction nail can completely cut off glass piece and prick the sole in, and the friction sawtooth is in order to increase the friction on sole and road surface.
Further, still include the protection unit, the protection unit includes roof, guard plate, protection box, the flexible post of spring and roof down, it fixes the upper surface at the shoe-pad to go up the roof, the lower surface at the vamp inner chamber is fixed to the roof down, the top of guard plate and the bottom fixed connection of last roof, the bottom of guard plate cup joints with the top of protection box, roof under the bottom fixed connection of the flexible post of spring, the bottom surface of protection box is passed and the bottom of connecting the guard plate on the top of the flexible post of spring, and when having the heavy object to fall on shoes, the protection foot can not be injured.
Further, the anti unit of splitting of tip includes rectangular channel, T-shaped piece, T-shaped groove, fastening post and ring, the T-shaped groove has been seted up at the open-top right side middle part of vamp, and the T-shaped piece is installed to the T-shaped inslot, the rectangular channel has still been seted up on the open-top right side of vamp, and the rectangular channel internal fixation has the fastening post, and the fastening post cup joints with the one end of ring, and through the anti unit of splitting of tip, the anti performance of splitting of improvement vamp lets safety shoes can not harm the tip surface when tortuous, and life is higher.
Furthermore, still include the tongue, the left surface of the right-hand member fixed connection T-shaped piece of tongue, the other end of ring and the right-hand member fixed connection of tongue can protect the instep through the tongue.
Further, the bottom anti-cracking unit comprises a semicircular groove, a semi-arch-shaped plate and an anti-cracking cylinder, the anti-cracking cylinder is connected to the right end of the left film, the semi-arch-shaped plate is connected to the left end of the right film, the semi-arch-shaped plate is rotatably connected with the anti-cracking cylinder, and the semi-arch-shaped plate is installed in the semicircular groove in a matched mode. The crack resistance of the sole is improved through the bottom crack resistance unit, the bending resistance of the sole can be improved, and the service life is longer.
Compared with the prior art, the beneficial effects of the utility model are that: this safety shoe with a longer zigzag life has the following advantages:
1. when the safety shoe with longer bending life is used, the anti-cracking strength of the toe cap is improved through the toe cap anti-cracking unit, cracks can not occur when the front foot is bent, the bottom anti-cracking unit can enable the shoe to be bent better, the bending performance is improved, and the service life of the shoe is prolonged.
2. When the safety shoe is used, the heavy object can be protected from falling on the upper surface of the shoe through the protection unit, an upward supporting force is provided, the foot is protected from being injured, and the protection performance of the safety shoe is good.
3. The friction nails and the friction saw teeth which are fixedly connected with the sole can increase the friction force between the safety shoe and the road surface, protect the safety of a user and simultaneously have better anti-skid performance.
Drawings
FIG. 1 is a schematic structural view of the present invention;
fig. 2 is a schematic diagram of the local enlarged structure at a position of the present invention.
In the figure: 1 vamp, 2 sole, 3 friction nail, 4 friction sawtooth, 5 fixed block, 6 fixed slot, 7 iron sheet, 8 hinge, 9 protection unit, 91 upper top plate, 92 protection plate, 93 protection box, 94 spring telescopic column, 95 lower top plate, 10 tongue, 11 rolling edge, 12 pull ring, 13 toe cap anti-cracking unit, 131 rectangular groove, 132T-shaped block, 133T-shaped groove, 134 fastening column, 135 circular ring, 14 bottom anti-cracking unit, 141 semi-circular groove, 142 semi-arch plate, 143 anti-cracking cylinder, 15 insole.
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. 1-2, the present invention provides a technical solution: a safety shoe with a longer zigzag life comprises a vamp 1, a sole 2 and a bottom anti-cracking unit 14;
the shoe upper 1: the front side surface and the rear side surface of the vamp 1 are fixedly connected with a rolling strip edge 11, lace holes are arranged on the rolling strip edge 11 in an array mode, when a lace penetrates through the lace holes, the lace is tensioned to drive the rolling strip edge 11 to surround the instep, so that the instep is protected from being damaged, a toe cap anti-cracking unit 13 is installed on the right side of a top opening of the vamp 1, the toe cap anti-cracking unit 13 comprises a rectangular groove 131, a T-shaped block 132, a T-shaped groove 133, a fastening column 134 and a circular ring 135, the middle part of the right side of the top opening of the vamp 1 is provided with the T-shaped block 133, the T-shaped block 132 is installed in the T-shaped groove 133, the right side of the top opening of the vamp 1 is further provided with the rectangular groove 131, the fastening column 134 is fixed in the rectangular groove 131, the fastening column 134 is sleeved with one end of the circular ring 135, when the, the bent service life of the vamp 1 is prolonged, when the vamp 1 can be bent, the vamp 1 is protected by the fastening columns 134 and the circular rings 135, the tongue 10 is further included, the right end of the tongue 10 is fixedly connected with the left side face of the T-shaped block 132, the other end of the circular rings 135 is fixedly connected with the right end of the tongue 10, the tongue 10 can be protected from being damaged in places where the welt 11 cannot be protected, the protection cannot be achieved, the upper surface of the left side of the vamp 1 is fixedly connected by pulling the welt 12, the insole 15 is placed at the bottom of the inner cavity of the vamp 1, the protection cavity is formed in the bottom of the insole 15, the iron sheets 7 are placed in the protection cavity side by side, each two adjacent iron sheets 7 are movably connected through the hinges 8, the fixing grooves 6 are formed in the two sides of the bottom of the vamp 1, the snap rings 12 can enable a user to better enable the foot to enter the inside of, the middle of the bottom of the upper 1 is provided with a semicircular groove 141 of the bottom anti-cracking unit 14, the bottom anti-cracking unit 14 comprises the semicircular groove 141, a semi-arch plate 142 and an anti-cracking cylinder 143, the right end of the left sole is connected with the anti-cracking cylinder 143, the left end of the right sole is connected with the semi-arch plate 142, the semi-arch plate 142 is rotatably connected with the anti-cracking cylinder 143, the semi-arch plate 142 is installed in the semicircular groove 141 in a matched mode, when the sole 2 bends, the semi-arch plate 142 and the sole 2 interact on the anti-cracking cylinder 143, the bending strength of the sole 2 is improved, the bending service life of the safety shoe is prolonged, the safety shoe further comprises a protection unit 9, the protection unit 9 comprises an upper top plate 91, a protection plate 92, a protection box 93, a spring telescopic column 94 and a lower top plate 95, the upper top plate 91 is fixed on the upper surface of the insole 15, the lower, the bottom of guard plate 92 cup joints with the top of protection box 93, and roof 95 under the bottom fixed connection of the flexible post 94 of spring, the bottom surface of protection box 93 is passed and the bottom of connecting guard plate 92 on the top of the flexible post 94 of spring, and when the heavy object dropped on vamp 1, the flexible post 94 compression of spring lets have a buffer power between roof 91 and the roof 95 down to the protection foot can not receive the injury.
Sole 2: fixed block 5 in 2 tops of sole, and fixed block 5 and 6 joints of fixed slot, two films about sole 2 is respectively, install the anti unit 14 that splits in bottom between two films, the bottom both sides fixed connection friction nail 3 of sole 2, fixed friction sawtooth 4 in the middle of the bottom of sole 2, the outside surface of sole 2 is equipped with the waterproof layer, friction nail 3 except can providing the friction, can also meet the way that has the glass piece, can not let glass prick into in the friction sawtooth 4, friction sawtooth 4 increases the friction with the road surface.
When in use: when the safety shoe is worn, the foot can be protected through the arranged iron sheet 7, the nail can not penetrate through the shoe to prick the foot when meeting the place with the nail, the waterproof layer of the sole can enable the safety shoe to pass through the pavement with accumulated water to prevent water from entering, the friction nail 3 can isolate glass fragments from pricking into the sole, the friction sawtooth 4 is used for increasing the friction between the sole and the pavement, when the shoelace penetrates through the shoelace hole, the rolling edge 11 is driven to surround the instep by tensioning the shoelace to protect the instep from being injured, when the force acts on the T-shaped block 132, the T-shaped block slides in the T-shaped groove to protect the middle part of the right side of the top of the vamp 1 from being fractured due to bending, the bending service life of the vamp 1 is prolonged, the fastening column 134 and the ring 135 can ensure the vamp 1 to be bent, the vamp 1 can be protected when the vamp 1 can be bent, the place which can not be protected by the rolling, better let the foot enter into safety shoes's inside, the isolated foot of shoe-pad 15 and the contact of iron sheet 7, iron sheet 7 can protect the sole can not be stabbed, when sole 2 is tortuous, half arch-shaped board 142 and sole 2 interact are on anti cylinder 143 that splits, improve the tortuous intensity of sole 2, thereby the tortuous life-span of safety shoes has been promoted, when the heavy object drops on vamp 1, there is a buffer power between the compression of spring expansion column 94 lets last roof 91 and lower roof 95, thereby the protection foot can not receive the injury.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.