CN214710788U - Anti-skid fire protection boot - Google Patents

Anti-skid fire protection boot Download PDF

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Publication number
CN214710788U
CN214710788U CN202120696378.5U CN202120696378U CN214710788U CN 214710788 U CN214710788 U CN 214710788U CN 202120696378 U CN202120696378 U CN 202120696378U CN 214710788 U CN214710788 U CN 214710788U
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CN
China
Prior art keywords
sole
boot
skid
slip
fire protection
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Active
Application number
CN202120696378.5U
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Chinese (zh)
Inventor
周凯
李新年
郭凯旋
张堃
林永佳
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Shanxi Hongan Science & Technology Co ltd
Shanghai Fire Research Institute of MEM
Original Assignee
Shanxi Hongan Science & Technology Co ltd
Shanghai Fire Research Institute of MEM
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Priority to CN202120696378.5U priority Critical patent/CN214710788U/en
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Publication of CN214710788U publication Critical patent/CN214710788U/en
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Abstract

The utility model relates to an antiskid fire protection boot, wherein, the antiskid fire protection boot comprises a protection boot body and a detachable sole, wherein, the protection boot body comprises a boot body and a protection boot sole; the protective boot sole is fixedly connected with the shoe body; the detachable sole is detachably arranged at the bottom of the protective boot body and detachably connected with the protective boot body; wherein, the sole of the protective boot and the detachable sole are respectively provided with a first anti-skid lug structure and an anti-skid stud structure. The anti-skidding fire protection boots with the structure can effectively meet the anti-skidding requirements of different scenes, and are good in adaptability, convenient to use and good in comfort.

Description

Anti-skid fire protection boot
Technical Field
The utility model relates to a protection apparatus technical field especially relates to fire control protection apparatus technical field, specifically indicates an antiskid fire control protection boots.
Background
The investigation finds that in northern areas of China, the average minimum temperature is-20 ℃ in severe cold in winter, and even can reach-58 ℃ in extreme climate. In the season, if the boots are snowed, ice and snow are not easy to melt, a fireman generally reflects that the existing fire-fighting protection boots cannot meet the anti-skidding requirement of walking on the ice and snow surface, and the boot bottoms have poor anti-skidding performance, so that walking is inconvenient.
SUMMERY OF THE UTILITY MODEL
The utility model provides an antiskid fire protection boots that accommodation is extensive, convenient to use, performance are good.
In order to achieve the above object, the anti-skid fire protection boot of the present invention comprises:
the anti-skidding fire protection boots are mainly characterized by comprising boot bodies and detachable soles, wherein the boot bodies comprise boot bodies and boot soles; the protective boot sole is fixedly connected with the shoe body; the detachable sole is detachably arranged at the bottom of the protective boot body and detachably connected with the protective boot body;
wherein, the sole of the protective boot and the detachable sole are respectively provided with a first anti-skid lug structure and an anti-skid stud structure.
Preferably, the detachable sole is further provided with a fixing belt component, and the detachable sole is detachably connected with the protective boot body through the fixing belt component.
Preferably, the detachable sole further comprises a covering part, the covering part comprises a covering groove, the shape and the size of the covering groove are matched with those of the protective boot sole, the covering groove is detachably sleeved on the outer side of the protective boot sole, the fixing belt assembly is arranged on the side wall of the covering groove, and the anti-skid stud structure is located on the bottom surface of the covering groove.
Furthermore, the wrapping part also comprises a three-dimensional arc-shaped protective cover, the arc-shaped protective cover is arranged at the toe part of the wrapping groove, and the shape and the size of the arc-shaped protective cover are matched with the shape and the size of the toe cap of the protective boot body.
Furthermore, a first hole groove is formed in the heel part of the side wall of the coating groove.
Further, the first slot extends from a heel portion in a sidewall of the covering slot to a heel portion of a bottom surface of the covering slot.
Furthermore, a clamping block is arranged at the heel part of the sole of the protective boot, the shape of the upper edge of the clamping block is matched with that of the upper edge of the first hole groove, and when the detachable sole is connected with the protective boot body, the upper edge of the first hole groove is sleeved on the upper edge of the clamping block.
Furthermore, a second hole groove is formed in the arch part of the bottom surface of the coating groove.
Preferably, the first anti-slip bump structure includes a plurality of first anti-slip blocks respectively distributed at the toe portion, the front sole portion, the arch portion, the rear sole portion and the heel portion of the protective boot sole.
Preferably, the plurality of first anti-slip blocks positioned at the toe part, the inner side of the front sole part, the outer side of the rear sole part and the heel part of the protective boot sole are also provided with wavy fine lines.
Preferably, the anti-skid stud structure comprises a plurality of anti-skid studs respectively distributed on the toe part, the edge of the front sole part and the edge of the rear sole part of the detachable sole.
Preferably, the detachable sole is further provided with a second anti-slip bump structure, the second anti-slip bump structure comprises a plurality of second anti-slip blocks respectively distributed in the central area of the front sole part and the central area of the rear sole part of the detachable sole, and the length of the anti-slip shoe spike is longer than that of the second anti-slip blocks.
The anti-skid fire protection boot comprises a protection boot body and a detachable sole, wherein the protection boot body comprises a boot body and a protection boot sole; the protective boot sole is fixedly connected with the shoe body; the detachable sole is detachably arranged at the bottom of the protective boot body and detachably connected with the protective boot body; wherein, the protection boots sole and can dismantle the sole on set up first anti-skidding lug structure and anti-skidding nail structure respectively, can satisfy the anti-skidding demand of walking on ordinary road surface through the sole design that is equipped with first anti-skidding lug structure, and the sole design through being equipped with the anti-skidding nail structure then can satisfy the anti-skidding demand when walking on ice and snow ground, adaptability is stronger, the antiskid demand of sole just adaptable different scenes can be dismantled in the dismouting of wearer's accessible, it is very convenient.
Drawings
Fig. 1 is a schematic structural view of an anti-skid fire protection boot according to an embodiment of the present invention.
Fig. 2 is a schematic side view of a sole of a protective boot sole according to an embodiment of the present invention.
Fig. 3 is a schematic side view of the sole with the detachable sole according to an embodiment of the present invention.
Fig. 4 is a schematic structural view of a detachable sole according to an embodiment of the present invention.
Fig. 5 is a schematic view of the heel side structure of the protective boot body according to an embodiment of the present invention.
Fig. 6 is a partial enlarged view of the heel side of the anti-skid fire protection boot according to an embodiment of the present invention.
Reference numerals
1 protective boot body
11 shoes body
12 protective boot sole
121 latch block
122 first anti-skid block
123 wave-shaped fine lines
2 Detachable sole
21 fixed band subassembly
211 front sole fixing belt assembly
212 rear sole fixing belt assembly
22 coating groove
221 cladding groove side wall
222 coat the bottom surface of the groove
23 arc-shaped shield
24 first hole groove
25 second hole groove
26 anti-skid shoe spike
27 second anti-skid block
28 fixed hole
3 reflecting strip
Detailed Description
In order to more clearly describe the technical content of the present invention, the following further description is given with reference to specific embodiments.
The embodiments described in the following exemplary embodiments do not represent all embodiments consistent with the present application. Rather, they are merely examples of apparatus and methods consistent with certain aspects of the present application, as detailed in the appended claims.
The terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the application. As used in this application and the appended claims, the singular forms "a", "an", and "the" are intended to include the plural forms as well, unless the context clearly indicates otherwise. Embodiments of the present invention are described in detail below with reference to the accompanying drawings.
As shown in fig. 1 to 6, in this embodiment, the anti-skid fire-fighting protective boot includes a protective boot body 1 and a detachable sole 2, wherein the protective boot body 1 includes a boot body 11 and a protective boot sole 12; the protective boot sole 12 is fixedly connected with the shoe body 11; the detachable sole 2 is detachably arranged at the bottom of the protective boot body 1 and detachably connected with the protective boot body 1;
fig. 2 is an embodiment of the utility model discloses a sole side schematic view of protection boots sole, and fig. 3 is an embodiment of the utility model discloses a can dismantle sole side schematic view, as shown in fig. 2 and fig. 3, wherein, protection boots sole 12 and can dismantle sole 2 on set up first skid proof block structure and stud structure respectively.
As shown in fig. 1, the detachable sole 2 can be sleeved at the bottom of the protective boot body 1 as required, and the detachable sole 2 can also be taken down from the protective boot body 1.
Because this antiskid fire control protection boots include protection boots body 1 and can dismantle sole 2, protection boots sole 12 among wherein in the protection boots body 1 and can dismantle sole 2 on set up first anti-skidding lug structure and stud structure respectively, satisfy the antiskid demand when ordinary road surface and indoor walking through first anti-skidding lug structure, and satisfy the demand of ice surface walking through the design of stud structure.
As shown in fig. 2, in this embodiment, locate first anti-skidding lug structure on the protection boots sole 12, as shown in fig. 3, the anti-skidding nail structure is located on can dismantling sole 2, through such design, in sleet weather, the user is when walking on outdoor ice and snow ground, only need to sheathe on protection boots body 1 and to dismantle sole 2, through the anti-skidding nail structure on can dismantling sole 2 bottom surface, improve the sole contact pressure of wearing person on ice and snow surface, during the walking during the anti-skidding nail structure pricks into ice and snow, in order to realize the antiskid under the ice and snow road conditions, and when the user walks to the road conditions that do not have ice and snow, only need take off and to dismantle sole 2, just satisfy the antiskid demand with first anti-skidding lug structure of accessible, this kind of structural design, it is little with ordinary ground contact surface only to effectively avoid passing through the anti-skidding nail structure, be unfavorable for the problem of balanced walking. The antiskid fire protection boot is convenient for a wearer to adjust and use according to the ground environment.
In other embodiments, the cleat feature may be provided on the protective boot sole and the first cleat feature may be provided on the removable sole.
As shown in fig. 1 and 4, in this embodiment, a fixing strap assembly 21 is further provided on the detachable sole 2, and the detachable sole 2 is detachably connected to the protective boot body 1 through the fixing strap assembly 21.
When the sole 2 will be dismantled and be fixed in on the protection boots body 1 in needs, only need will dismantle sole 2 and put in protection boots body 1 bottom, then tie up fixed band subassembly 21 on protection boots body 1, just can realize protection boots body 1 and can dismantle the fixed connection between the sole 2, also can dismantle the sole through other forms in other embodiments and be fixed in on the protection boots body, for example can set up buckle structure between protection boots body and the removable sole, when the sole need will be dismantled and be fixed in on the protection boots body, the two only need through buckle structure block connect can.
As shown in fig. 4, in this embodiment, the removable sole 2 further includes a covering portion, the covering portion includes a covering groove 22, the shape and size of the covering groove 22 match with the shape and size of the protective boot sole 12, the covering groove 22 is detachably sleeved on the outer side of the protective boot sole 12, the fixing strip assembly 21 is disposed on the sidewall 221 of the covering groove, the cleat structure is disposed on the bottom surface 222 of the covering groove, and the bottom surface 222 of the covering groove forms the bottom surface of the removable sole.
In this embodiment, the fastening strap assembly 21 includes a front sole fastening strap assembly 211 and a rear sole fastening strap assembly 212, the front sole fastening strap assembly 211 and the rear sole fastening strap assembly 212 are respectively located at the front sole portion and the rear sole portion of the detachable sole 2, and the front sole fastening strap assembly 211 and the rear sole fastening strap assembly 212 are respectively fastened to the sidewall 221 of the covering slot through two sets of fastening holes 28 symmetrically disposed at two sides of the sidewall 221 of the covering slot. In this embodiment, front sole portion fixed band subassembly 211 all includes the fixed band that corresponds with back sole portion fixed band subassembly 212, when needs are fixed, pastes the realization through the magic that sets up on each fixed band respectively and ties up fixedly. When the detachable sole 2 is fixed on the protective boot body 1, the fixing band at the front sole part is bound on the front sole surface of the boot body 11, and the fixing band at the rear sole part is bound on the ankle part of the boot body 11. Through such structural design, can satisfy firm fixed demand, still can satisfy simultaneously and wear to take off convenient demand.
As shown in fig. 3 and 4, in this embodiment, the covering portion further includes a three-dimensional arc-shaped shield 23, the arc-shaped shield 23 is disposed at the toe portion of the covering groove 22, and the shape and size of the arc-shaped shield 23 are matched with the shape and size of the toe cap of the protective boot body 1.
In this embodiment, the first hole groove 24 is formed at the heel portion of the sidewall 221 of the covering groove. Through the design of the hole groove, the detachable sole 2 can be more easily detached from the protective boot body 1.
In this embodiment, as shown in fig. 3 and 4, the first hole groove 24 extends from the heel portion of the sidewall 221 of the covering groove to the heel portion of the bottom surface 222 of the covering groove. It should be noted that the fixing band assembly is not drawn on the detachable sole of fig. 3, but in actual manufacture, the fixing band assembly may be provided in the fixing hole on the sidewall of the covering groove of fig. 3 to better connect the detachable sole with the protective boot body.
As shown in fig. 5, in this embodiment, the heel portion of the protective boot sole 12 is provided with a latch 121, and the shape of the upper edge of the latch 121 matches the shape of the upper edge of the first hole groove 24, as shown in fig. 1 and 6, when the removable sole 2 is connected to the protective boot body 1, the upper edge of the first hole groove 24 is sleeved on the upper edge of the latch 121. Through the design of fixture block 121, can make can dismantle sole 2 and be fixed in on the protection boots body 1 better, avoid dismantling sole 2 along with walking to produce the aversion.
In this embodiment, as shown in fig. 4, the second hole groove 25 is formed in the arch portion of the bottom surface 222 of the covering groove. The weight of the detachable sole 2 can be effectively reduced by the design of the second hole groove 25.
As shown in fig. 2, in this embodiment, the first anti-slip bump structure includes a plurality of first anti-slip blocks 122 respectively distributed at the toe portion, the forefoot portion, the arch portion, the rearfoot portion and the heel portion of the protective boot sole 12.
In this embodiment, the first anti-slip blocks 122 located at the toe portion, the medial side of the forefoot portion, the lateral side of the rearfoot portion and the heel portion of the protective boot sole 12 are further provided with wavy fine lines 123.
The wavy fine lines 123 are mainly arranged at the main force application point positions of the sole during walking, so that the anti-skidding effect can be further realized.
Through the design of the first anti-slip bump structure, a meshing anti-slip structure is formed on the protective boot sole 12, and anti-slip patterns are formed by the first anti-slip bumps 122 in the first anti-slip bump structure, and the anti-slip patterns have concave-convex and soft plasticity, so that the concave-convex of the ground is filled with the anti-slip patterns of the protective boot sole 12 or a space is left, namely, the protrusion of the ground is consistent with the valley or deformation of the protective boot sole 12, the valley of the protective boot sole 12 is meshed with the protrusion of the ground, or the peak of the protective boot sole 12 is meshed with the concave part of the ground, thereby playing a role of anti-slip.
In this embodiment, as shown in fig. 3, the stud structure includes a plurality of studs 26 respectively disposed on the toe portion, the forefoot portion edge and the rearfoot portion edge of the removable sole 2, wherein fifteen studs 26 are provided, but the number of studs 26 may vary in other embodiments.
In this embodiment, the detachable sole 2 is further provided with a second anti-slip bump structure, the second anti-slip bump structure includes a plurality of second anti-slip blocks 27 respectively distributed in the central area of the front sole portion and the central area of the rear sole portion of the detachable sole 2, and the length of the anti-slip shoe nail 26 is longer than the length of the second anti-slip blocks 27.
This arrangement enables the user to step on the ice surface by first stepping the studs 26 into the ice surface to counter the problem of the boot being displaced on the ice surface, and then the second anti-slip blocks 27 are brought into contact with the ground to further achieve the anti-slip effect.
In this embodiment, the second anti-slip block 27 located in the central area of the forefoot portion of the detachable sole 2 is a herringbone block gradually expanding from front to back, and the second anti-slip block 27 located in the central area of the rear foot sole portion of the detachable sole 2 is a herringbone block gradually contracting from front to back.
In this embodiment, fifteen anti-slip spikes 26 are embedded at each main force application point such as the sole and the heel of the detachable sole 2, and the fixed belt assembly 21 is formed by the flame-retardant high-temperature-resistant woven belt by combining the characteristics of high-temperature flame environment which may exist in the fire-fighting site, so that the detachable sole 2 and the protective boot body 1 are fixedly combined. Because the detachable sole 2 adopts the structure of the anti-skid shoe spike 26 and the second anti-skid convex block, the sole contact pressure of a wearer on the ice and snow surface can be improved compared with the common protective boot without the anti-skid shoe spike 26, thereby preventing slipping. However, when the design is used on non-ice and snow surfaces, the antiskid spikes 26 can only contact the ground, so that the balance of the wearer is obviously affected and the wearer is not favorable for walking. Therefore, in order to improve the practicability of the protective boots, the utility model discloses a combined design of the protective boots body 1 and the detachable soles 2 is adopted, so that the wearer can adjust and use according to the ground environment.
As shown in fig. 4 and 5, in this embodiment, the fixing band assembly of the detachable sole 2 and the shoe body 11 are further provided with a reflective strip 3. In the anti-slip fire protection boot in the embodiment shown in fig. 1, the openings may be formed in the side walls of the covering groove of the removable sole 2 so that the reflective strips on the boot body can be seen through the openings in the side walls of the covering groove, or in other embodiments, the openings may not be formed in the side walls of the covering groove of the removable sole 2.
All parts in the protection boots body and the removable sole in this antiskid fire control protection boots are made by fire-retardant high temperature resistant material to satisfy the requirement of using under high temperature environment.
The anti-skid fire protection boot comprises a protection boot body and a detachable sole, wherein the protection boot body comprises a boot body and a protection boot sole; the protective boot sole is fixedly connected with the shoe body; the detachable sole is detachably arranged at the bottom of the protective boot body and detachably connected with the protective boot body; wherein, the protection boots sole and can dismantle the sole on set up first anti-skidding lug structure and anti-skidding nail structure respectively, can satisfy the anti-skidding demand of walking on ordinary road surface through the sole design that is equipped with first anti-skidding lug structure, and the sole design through being equipped with the anti-skidding nail structure then can satisfy the anti-skidding demand when walking on ice and snow ground, adaptability is stronger, the antiskid demand of sole just adaptable different scenes can be dismantled in the dismouting of wearer's accessible, it is very convenient.
In this specification, the invention has been described with reference to specific embodiments thereof. It will, however, be evident that various modifications and changes may be made thereto without departing from the broader spirit and scope of the invention. The specification and drawings are, accordingly, to be regarded in an illustrative rather than a restrictive sense.

Claims (12)

1. An anti-skidding fire protection boot is characterized by comprising a protection boot body and a detachable sole, wherein the protection boot body comprises a boot body and a protection boot sole; the protective boot sole is fixedly connected with the shoe body; the detachable sole is detachably arranged at the bottom of the protective boot body and detachably connected with the protective boot body;
the protective boot sole and the detachable boot sole are respectively provided with a first anti-skid lug structure and an anti-skid stud structure.
2. The anti-skid fire protection boot according to claim 1, wherein a fixing strap assembly is further provided on the detachable sole, and the detachable sole is detachably connected to the protection boot body through the fixing strap assembly.
3. The anti-slip fire protection boot as claimed in claim 2, wherein the removable sole further comprises a covering portion, the covering portion comprises a covering groove, the shape and size of the covering groove match with those of the sole of the fire protection boot, the covering groove is detachably sleeved on the outer side of the sole of the fire protection boot, the fixing band assembly is arranged on the side wall of the covering groove, and the anti-slip nail structure is arranged on the bottom surface of the covering groove.
4. The anti-skid fire protection boot as recited in claim 3, wherein the covering portion further comprises a three-dimensional arc-shaped protective cover, the arc-shaped protective cover is disposed on the toe portion of the covering groove, and the shape and size of the arc-shaped protective cover are matched with the shape and size of the toe cap of the protective boot body.
5. The anti-skid fire protection boot as recited in claim 3, wherein a first hole groove is formed at a heel portion of the sidewall of the covering groove.
6. The anti-skid fire protection boot as recited in claim 5, wherein the first slot extends from a heel portion in the sidewall of the covering slot to a heel portion of the bottom surface of the covering slot.
7. The anti-skid fire-fighting protective boot as claimed in claim 5, wherein a fixture block is provided at the heel of the sole of the protective boot, the shape of the upper edge of the fixture block matches with the shape of the upper edge of the first hole groove, and when the detachable sole is connected to the protective boot body, the upper edge of the first hole groove is sleeved on the upper edge of the fixture block.
8. The anti-skid fire protection boot as recited in claim 3, wherein a second hole groove is formed in a sole center portion of a bottom surface of the covering groove.
9. The anti-skid fire protection boot as recited in claim 1, wherein the first anti-skid bump structure comprises a plurality of first anti-skid blocks respectively disposed at the toe, forefoot, arch, and heel portions of the boot sole.
10. The anti-skid fire-fighting protective boot according to claim 9, wherein a plurality of the first anti-skid blocks located at the toe portion, the medial side of the forefoot portion, the lateral side of the rearfoot portion and the heel portion of the sole of the protective boot are further provided with wavy lines.
11. The anti-slip fire protection boot as recited in claim 1, wherein the anti-slip stud structure comprises a plurality of anti-slip studs respectively disposed on the toe portion, the front sole edge and the rear sole edge of the removable sole.
12. The anti-slip fire protection boot according to claim 11, wherein a second anti-slip bump structure is further disposed on the detachable sole, the second anti-slip bump structure includes a plurality of second anti-slip blocks respectively disposed in a central region of a front sole portion and a central region of a rear sole portion of the detachable sole, and the length of the anti-slip shoe spike is longer than the length of the second anti-slip blocks.
CN202120696378.5U 2021-04-07 2021-04-07 Anti-skid fire protection boot Active CN214710788U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202120696378.5U CN214710788U (en) 2021-04-07 2021-04-07 Anti-skid fire protection boot

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202120696378.5U CN214710788U (en) 2021-04-07 2021-04-07 Anti-skid fire protection boot

Publications (1)

Publication Number Publication Date
CN214710788U true CN214710788U (en) 2021-11-16

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202120696378.5U Active CN214710788U (en) 2021-04-07 2021-04-07 Anti-skid fire protection boot

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114847591A (en) * 2022-05-17 2022-08-05 广东悍戈防护科技有限公司 Effectual protection boots sole of antiskid

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114847591A (en) * 2022-05-17 2022-08-05 广东悍戈防护科技有限公司 Effectual protection boots sole of antiskid

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