Novel explosion-proof box and gas storage device

By adopting a combination design of partitions and stabilization units in the gas cylinder explosion-proof box, the problem of chain reactions easily caused by centralized storage of gas cylinders is solved, the safety and stability of the gas cylinders are improved, and the convenience of movement is increased.

CN223460259UActive Publication Date: 2025-10-21SHANGHAI TOMOE GASES CO LTD
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Patent Information

Application Number
CN202423126439.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-17
Publication Date
2025-10-21
Estimated Expiration
2034-12-17

AI Technical Summary

Technical Problem

When the existing gas cylinder explosion-proof box is used, the centralized storage of gas cylinders is prone to triggering a chain reaction, leading to serious explosion consequences, which is difficult to be effectively solved by existing technology.

Method used

A combination design of a separation unit and a stabilizing unit is adopted. The gas cylinder is separated by the coordinated use of the first separation unit and the second separation unit. The stability of the gas cylinder is improved by the coordination of the base unit and the stabilizing unit, and the convenience of the gas cylinder is improved by the moving elements.

Benefits of technology

It effectively avoids the chain reaction caused by gas cylinder leakage, improves the safety and stability of gas cylinders, and enhances the convenience of moving gas cylinders.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a novel explosion-proof box and a gas storage device. The novel explosion-proof box comprises a main body unit, a plurality of first separation units, a plurality of base units, a plurality of stabilizing units and a second separation unit. Wherein the main body unit is arranged on a horizontal plane; the first separation units are detachably arranged on the inner side of the main body unit and used for separating the inner side space of the main body unit. The gas cylinder fixing device has the advantages that all gas cylinders can be separated through cooperative use of the first separation unit and the second separation unit, the phenomenon that one gas cylinder leaks to cause a chain reaction is avoided, the safety of the gas cylinders is guaranteed, all the gas cylinders can be stabilized through cooperative use of the base unit and the stabilizing unit, and the stability of the gas cylinders is improved. The stability of the gas cylinder after being placed is improved, the gas cylinder can be conveniently moved through the moving element arranged on the base unit, and the convenience of moving the gas cylinder is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the related technical field of gas cabinet especially, a kind of novel explosion-proof box and gas storage device. BACKGROUND

[0002] Gas cylinder explosion-proof box is a special equipment for storing and protecting gas cylinder, the main purpose is to prevent gas cylinder from explosion and other dangerous conditions to cause harm to the surrounding environment and personnel.It can withstand the explosion impact that gas cylinder may occur to some extent by special structure design and material selection, and limit the spread of debris and energy produced by explosion.

[0003] The existing gas cylinder explosion-proof box is generally used when gas cylinders are stored in one explosion-proof box, once one of the gas cylinders leaks, burns or explodes, it may trigger a chain reaction.For example, a gas cylinder containing flammable gas leaks and catches fire, the flame may spread to other gas cylinders, causing other gas cylinders to rupture, and further triggering a larger scale explosion.The consequences of such chain reaction are much more serious than single gas cylinder accident, even if explosion-proof box has certain explosion-proof ability, it may be difficult to withstand such huge energy release.

[0004] At present, for the problem that centralized placement of gas cylinders is easy to trigger chain reaction in the related art, no effective solution has been proposed. UTILITY MODEL CONTENT

[0005] The utility model aims at the deficiency in the prior art, provide a kind of novel explosion-proof box and gas storage device, to solve the problem that centralized placement of gas cylinders is easy to trigger chain reaction in the related art.

[0006] To achieve the above-mentioned purpose, the technical scheme adopted by the utility model is:

[0007] Firstly, a novel explosion-proof box is provided, comprising:

[0008] A main unit is arranged on a horizontal plane.

[0009] A plurality of first partition units are detachably arranged on the inner side of the main unit to divide the inner space of the main unit.

[0010] A plurality of base units are arranged at the end of the corresponding first partition unit and connected with the corresponding first partition unit to place gas cylinders.

[0011] A plurality of stabilizing units are arranged at the top end of the corresponding base unit and abut with the gas cylinders to stabilize the gas cylinders.

[0012] A second partition unit is detachably arranged inside the main unit and in contact with the first partition units, for limiting the position of the first partition units and partitioning the inside space of the main unit together with the first partition units.

[0013] In some embodiments, the main unit comprises:

[0014] A main element is arranged on a horizontal plane, and the inside of the main element is provided with the first partition units, the base units, the stabilizing units, the second partition units, and gas cylinders.

[0015] A plurality of first guide elements are arranged inside the main element and detachably connected with the corresponding first partition units.

[0016] A plurality of groove elements are arranged at the bottom end of the inside of the main element, for allowing the base units to enter the inside of the main element.

[0017] A plurality of second guide elements are arranged inside the main element, and the second guide elements are in communication with the corresponding first guide elements, arranged perpendicularly to the first guide elements, and detachably connected with the second partition units.

[0018] In some embodiments, the main unit further comprises:

[0019] A closing element is movably arranged outside the main element, for rotating in the horizontal direction to open and close the main element.

[0020] In some embodiments, the first partition unit comprises:

[0021] A first partition element is detachably arranged inside the main unit, for partitioning the inside space of the main unit.

[0022] A plurality of third guide elements are arranged through the first partition element, for allowing the second partition units to pass through the first partition element.

[0023] In some embodiments, the base unit comprises:

[0024] A base element is arranged at the end of the corresponding first partition unit and connected with the first partition unit.

[0025] A placing element is arranged at the top end of the base element for placing the gas cylinder.

[0026] In some embodiments, the base unit further comprises:

[0027] At least one first moving element is arranged at the bottom end of the base element for moving the base element.

[0028] In some embodiments, the stabilizing unit comprises:

[0029] A support element is arranged at the top end of the corresponding base unit and connected with the corresponding base unit;

[0030] A first rotating element is arranged through the support element;

[0031] A second rotating element is rotatably connected with the first rotating element;

[0032] A stabilizing element is movably arranged at the first end of the second rotating element and abuts against the corresponding gas cylinder, for reciprocally moving along the horizontal direction under the action of the second rotating element to stabilize or loosen the gas cylinder.

[0033] In some embodiments, the stabilizing unit further comprises:

[0034] A control element is arranged at the second end of the second rotating element and connected with the second rotating element, for driving the second rotating element to rotate along the vertical direction.

[0035] In some embodiments, the second partition unit comprises:

[0036] A mounting element is detachably arranged outside the main body unit;

[0037] A plurality of second partition elements are respectively arranged at the end portions of the mounting element and respectively located inside the main body unit, and respectively in contact with the plurality of first partition units, for limiting the positions of the first partition units and cooperating with the first partition units to partition the inside space of the main body unit.

[0038] In a second aspect, a gas storage device is provided, comprising:

[0039] The novel explosion-proof box as claimed in the first aspect;

[0040] A gas storage unit is arranged at the top end of the base unit of the novel explosion-proof box and abuts against the stabilizing unit, and is used for storing gas.

[0041] Compared with the prior art, the novel explosion-proof box has the following technical effects:

[0042] The novel explosion-proof box and the gas storage device have the following advantages. BRIEF DESCRIPTION OF DRAWINGS

[0043] Figure 1 is a perspective structural schematic view of the novel explosion-proof box according to the embodiment of the utility model;

[0044] Figure 2 is an explosion view of the novel explosion-proof box according to the embodiment of the utility model;

[0045] Figure 3 is a perspective structural schematic view of the main body unit according to the embodiment of the utility model;

[0046] Figure 4 is a perspective structural schematic view of the first separation unit according to the embodiment of the utility model;

[0047] Figure 5 is a perspective structural schematic view of the base unit according to the embodiment of the utility model;

[0048] Figure 6 is a perspective structural schematic view of the stabilizing unit according to the embodiment of the utility model;

[0049] Figure 7 is a perspective structural schematic view of the second separation unit according to the embodiment of the utility model;

[0050] Figure 8 is a structural schematic view of the gas storage device according to the embodiment of the utility model.

[0051] The reference signs in the drawings are as follows: 100, novel explosion-proof box;

[0052] 110, main body unit; 111, main body element; 112, first guide element; 113, groove element; 114, second guide element; 115, closing element;

[0053] 120, first separating unit; 121, first separating element; 122, third guiding element;

[0054] 130, base unit; 131, base element; 132, placing element; 133, moving element;

[0055] 140, stabilizing unit; 141, support element; 142, first rotating element; 143, second rotating element; 144, stabilizing element; 145, control element;

[0056] 150, second separating unit; 151, mounting element; 152, second separating element;

[0057] 200, gas storage unit. DETAILED DESCRIPTION

[0058] The technical solutions in the embodiments of the present application will be described clearly and completely below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all the other embodiments obtained by those skilled in the art without creative work fall within the scope of protection of the present application.

[0059] It should be noted that the embodiments in the present application and the features in the embodiments can be combined with each other without conflict.

[0060] The present application will be further described below with reference to the drawings and specific embodiments, but the present application is not limited by the following description.

[0061] Embodiment 1

[0062] The present embodiment relates to the novel explosion-proof box of the present application.

[0063] As Figure 1 , Figure 2As shown, a new explosion-proof box 100 includes a main unit 110, a plurality of first partition units 120, a plurality of base units 130, a plurality of stabilizing units 140, and a second partition unit 150. The main unit 110 is arranged on a horizontal plane. The plurality of first partition units 120 are detachably arranged on the inner side of the main unit 110, and are used to partition the inner space of the main unit 110. The plurality of base units 130 are respectively arranged at the end of the corresponding first partition units 120, and are respectively connected with the corresponding first partition units 120, and are used to place gas cylinders. The plurality of stabilizing units 140 are respectively arranged at the top end of the corresponding base units 130, and are respectively in abutment with the plurality of gas cylinders, and are used to stabilize the gas cylinders. The second partition unit 150 is detachably arranged on the inner side of the main unit 110, and is respectively in contact with the plurality of first partition units 120, and is used to limit the position of the first partition units 120 and cooperate with the first partition units 120 to partition the inner space of the main unit 110.

[0064] In some embodiments, the plurality of first partition units 120 are arranged at equal intervals along the length direction of the main unit 110.

[0065] The number of base units 130 matches the number of first partition units 120. Generally, the number of base units 130 is an integer multiple of the number of first partition units 120. That is, at least one base unit 130 is arranged for each first partition unit 120.

[0066] In some embodiments, when a plurality of base units 130 are arranged for each first partition unit 120, the plurality of base units 130 are arranged at equal intervals along the length direction of the first partition unit 120.

[0067] The number of stabilizing units 140 matches the number of base units 130. Generally, the number of stabilizing units 140 is equal to the number of base units 130. That is, one stabilizing unit 140 is arranged for each base unit 130.

[0068] As Figure 3As shown, the main unit 110 comprises a main element 111, a plurality of first guiding elements 112, a plurality of groove elements 113 and a plurality of second guiding elements 114. Among them, the main element 111 is arranged on the horizontal plane, and the inner side of the main element 111 is provided with a first partition unit 120, a base unit 130, a stabilizing unit 140, a second partition unit 150 and a gas cylinder; the plurality of first guiding elements 112 are respectively arranged on the inner side of the main element 111 and are respectively detachably connected with the corresponding first partition unit 120; the plurality of groove elements 113 are arranged at the bottom end of the inner side of the main element 111 and are used for the base unit 130 to enter the inner side of the main element 111; the plurality of second guiding elements 114 are respectively arranged on the inner side of the main element 111, the plurality of second guiding elements 114 are respectively connected with the corresponding first guiding elements 112, and the plurality of second guiding elements 114 are arranged perpendicularly with the corresponding first guiding elements 112 and are respectively detachably connected with the second partition unit 150.

[0069] The main element 111 is of a structure with an open front end and a closed rear end.

[0070] In some embodiments, the main element 111 is made of a steel structure.

[0071] In some embodiments, the main element 111 is an explosion-proof box.

[0072] The cross section of the first guiding element 112 is rectangular.

[0073] The size of the first guiding element 112 matches the size of the main element 111. Generally, the length of the first guiding element 112 is equal to the inner side width of the main element 111, the width of the first guiding element 112 is less than the inner side length of the main element 111, the height of the first guiding element 112 is greater than the inner side height of the main element 111, and the height of the first guiding element 112 is less than the outer side height of the main element 111.

[0074] The number of the first guiding elements 112 matches the number of the first partition units 120. Generally, the number of the first guiding elements 112 is equal to the number of the first partition units 120.

[0075] In some embodiments, the plurality of first guiding elements 112 are arranged at equal intervals along the length direction of the main element 111.

[0076] In some embodiments, the first guiding element 112 is a first guiding groove.

[0077] The cross section of the groove element 113 is rectangular.

[0078] The size of the groove element 113 matches the size of the body element 111. Generally, the length of the groove element 113 is equal to the inner side width of the body element 111, the width of the groove element 113 is less than the inner side length of the body element 111, and the height of the groove element 113 is less than the low wall thickness of the body element 111.

[0079] The size of the groove element 113 matches the size of the first guide element 112. Generally, the length of the groove element 113 is equal to the length of the first guide element 112, the width of the groove element 113 is greater than the width of the first guide element 112, and the height of the groove element 113 is less than the height of the first guide element 112.

[0080] The number of the groove elements 113 matches the number of the first guide elements 112. Generally, the number of the groove elements 113 is equal to the number of the first guide elements 112.

[0081] In some embodiments, the groove elements 113 are arranged at equal intervals along the length direction of the body element 111.

[0082] In some embodiments, the groove element 113 is a groove.

[0083] The cross section of the second guide element 114 is rectangular.

[0084] The size of the second guide element 114 matches the size of the body element 111. Generally, the length of the second guide element 114 is greater than the inner side length of the body element 111, the length of the second guide element 114 is less than the outer side length of the body element 111, the width of the second guide element 114 is less than the inner side width of the body element 111, the height of the second guide element 114 is greater than the inner side height of the body element 111, and the height of the second guide element 114 is less than the outer side height of the body element 111.

[0085] The size of the second guide element 114 matches the size of the first guide element 112. Generally, the length of the second guide element 114 is greater than the width of the first guide element 112, the width of the second guide element 114 is less than the length of the first guide element 112, the width of the second guide element 114 is equal to the width of the first guide element 112, and the height of the second guide element 114 is less than the height of the first guide element 112.

[0086] In some embodiments, the second guide elements 114 are arranged at equal intervals along the width direction of the body element 111.

[0087] In some embodiments, the second guide element 114 is a second guide groove.

[0088] Furthermore, the main body unit 110 further includes a closing element 115. The closing element 115 is movably disposed on the outside of the main body element 111 and is configured to rotate in a horizontal direction to open and close the main body element 111.

[0089] The cross section of the closing element 115 is rectangular.

[0090] The size of the closure member 115 matches the size of the main body member 111. Generally, the length of the closure member 115 is equal to the outer length of the main body member 111, the width of the closure member 115 is less than the outer width of the main body member 111, and the height of the closure member 115 is equal to the outer height of the main body member 111.

[0091] In some embodiments, the closure element 115 is integrally connected to the main body element 111 in a rotationally connected manner. For example, the closure element 115 is connected to the main body element 111 via a hinge.

[0092] In some embodiments, the closure element 115 is made of steel.

[0093] In some embodiments, the closure element 115 is a closure door.

[0094] like Figure 4 As shown, the first partition unit 120 includes a first partition element 121 and a plurality of third guide elements 122. The first partition element 121 is detachably mounted on the inner side of the main unit 110 to partition the inner space of the main unit 110; the plurality of third guide elements 122 are respectively disposed through the first partition element 121 to allow the second partition unit 150 to pass through the first partition element 121.

[0095] Specifically, the first partition element 121 is detachably disposed on the corresponding first guide element 112 ; the third guide element 122 corresponds to the corresponding second guide element 114 .

[0096] The first partition element 121 has a rectangular cross section.

[0097] The size of the first partition element 121 matches the size of the first guide element 112. Generally, the length of the first partition element 121 is equal to the length of the first guide element 112, the width of the first partition element 121 is equal to the width of the first guide element 112, and the height of the first partition element 121 is equal to the height of the first guide element 112.

[0098] In some embodiments, the first partition element 121 is made of steel.

[0099] In some embodiments, the first partition element 121 is a first partition plate.

[0100] The third guide element 122 has a rectangular cross section.

[0101] The dimensions of the third guide element 122 match those of the first partition element 121. Generally, the length of the third guide element 122 is less than the length of the first partition element 121, the width of the third guide element 122 is equal to the width of the first partition element 121, and the height of the third guide element 122 is less than the height of the first partition element 121.

[0102] The dimensions of the third guide element 122 match those of the second guide element 114. Generally, the length of the third guide element 122 is equal to the width of the second guide element 114, the width of the third guide element 122 is less than the length of the second guide element 114, and the height of the third guide element 122 is equal to the height of the second guide element 114.

[0103] The number of the third guide elements 122 matches the number of the second guide elements 114. Generally, the number of the third guide elements 122 of a first partition unit 120 is equal to the number of the second guide elements 114.

[0104] In some embodiments, a plurality of third guide elements 122 are arranged at equal intervals along the length direction of the first partition element 121 .

[0105] In some embodiments, the third guide element 122 is a third guide groove.

[0106] like Figure 5 As shown, the base unit 130 includes a base element 131 and a placement element 132. The base element 131 is disposed at the end of the corresponding first partition unit 120 and connected to the corresponding first partition unit 120; the placement element 132 is disposed at the top of the base element 131 for placing the gas cylinder.

[0107] Specifically, the base element 131 is disposed at an end portion of the corresponding first partition element 121 and is connected to the first partition element 121 .

[0108] The base element 131 has a rectangular cross section.

[0109] The size of the base element 131 matches the size of the first partition element 121. Generally, the length of the base element 131 is greater than the width of the first partition element 121, the width of the base element 131 is less than the length of the first partition element 121, and the height of the base element 131 is less than the height of the first partition element 121.

[0110] The size of the base member 131 matches the size of the groove member 113. Generally, the length of the base member 131 is greater than the width of the groove member 113, and the width of the base member 131 is less than the length of the groove member 113.

[0111] In some embodiments, the base element 131 is fixedly connected to the first partition element 121, including but not limited to bolt connection.

[0112] In some embodiments, the base element 131 is made of steel structure.

[0113] In some embodiments, the base element 131 is a base plate.

[0114] The cross section of the placing element 132 is circular.

[0115] The size of the placing element 132 matches the size of the base element 131. Generally, the radial dimension of the placing element 132 is smaller than the length and width of the base element 131, and the axial dimension of the placing element 132 is smaller than the height of the base element 131.

[0116] In some embodiments, the placing element 132 is a placing groove.

[0117] Further, the base unit 130 further comprises at least one first moving element 133. The first moving element 133 is arranged at the bottom end of the base element 131, and is used to move the base element 131.

[0118] In some embodiments, there are several first moving elements 133. The several first moving elements 133 are arranged along the length direction of the base element 131.

[0119] In some embodiments, one first moving element 133 is arranged at one side of the base element 131, and one first moving element 133 is arranged at the other side of the base element 131.

[0120] In some embodiments, the first moving element 133 is fixedly connected to the base element 131, including but not limited to bolt connection.

[0121] In some embodiments, the first moving element 133 is a universal wheel.

[0122] As shown in FIG. 1, the stabilizing unit 140 comprises a support element 141, a first rotating element 142, a second rotating element 143 and a stabilizing element 144. The support element 141 is arranged at the top end of the corresponding base unit 130 and is connected to the corresponding base unit 130. The first rotating element 142 is arranged through the support element 141. The second rotating element 143 is rotationally connected to the first rotating element 142. The stabilizing element 144 is movably arranged at the first end of the second rotating element 143 and abuts against the corresponding gas cylinder, and is used to reciprocally move along the horizontal direction under the action of the second rotating element 143 to stabilize or loosen the gas cylinder. Figure 6 As shown in FIG. 1, the stabilizing unit 140 comprises a support element 141, a first rotating element 142, a second rotating element 143 and a stabilizing element 144. The support element 141 is arranged at the top end of the corresponding base unit 130 and is connected to the corresponding base unit 130. The first rotating element 142 is arranged through the support element 141. The second rotating element 143 is rotationally connected to the first rotating element 142. The stabilizing element 144 is movably arranged at the first end of the second rotating element 143 and abuts against the corresponding gas cylinder, and is used to reciprocally move along the horizontal direction under the action of the second rotating element 143 to stabilize or loosen the gas cylinder.

[0123] In particular, the bracket element 141 is arranged at the top end of the corresponding base element 131 and is connected to the base element 131.

[0124] The bracket element 141 has a circular cross section.

[0125] The bracket element 141 has a size matching that of the base element 131. Generally, the length of the bracket element 141 is less than the width of the base element 131, the width of the bracket element 141 is less than the length of the base element 131, and the height of the bracket element 141 is greater than the height of the base element 131.

[0126] In some embodiments, the bracket element 141 is fixedly connected to the base element 131, including but not limited to bolt connection.

[0127] In some embodiments, the bracket element 141 is made of steel structure.

[0128] In some embodiments, the bracket element 141 is a support frame.

[0129] The first rotating element 142 has a circular cross section.

[0130] The first rotating element 142 has a size matching that of the bracket element 141. Generally, the radial dimension of the first rotating element 142 is less than the length and height of the bracket element 141, and the axial dimension of the first rotating element 142 is equal to the width of the bracket element 141.

[0131] In some embodiments, the first rotating element 142 is a threaded hole.

[0132] The second rotating element 143 has a circular cross section.

[0133] The second rotating element 143 has a size matching that of the first rotating element 142. Generally, the radial dimension of the second rotating element 143 is equal to the radial dimension of the first rotating element 142, and the axial dimension of the second rotating element 143 is greater than the axial dimension of the first rotating element 142.

[0134] In some embodiments, the second rotating element 143 is made of steel structure.

[0135] In some embodiments, the second rotating element 143 is a threaded rod.

[0136] The stabilizing element 144 has a structure with one side being a circular arc and the other side being a rectangle.

[0137] The size of the stabilizing element 144 matches the size of the second rotating element 143. Generally, the length and height of the stabilizing element 144 are greater than the radial dimension of the second rotating element 143, and the width of the stabilizing element 144 is less than the axial dimension of the second rotating element 143.

[0138] In some embodiments, the stabilizing element 144 and the second rotating element 143 are connected in a non-detachable rotating manner. For example, the stabilizing element 144 and the second rotating element 143 are connected through a bearing seat.

[0139] In some embodiments, the stabilizing element 144 is made of steel structure.

[0140] In some embodiments, the stabilizing element 144 is a stabilizing block.

[0141] Further, the stabilizing unit 140 further comprises a control element 145. The control element 145 is arranged at the second end of the second rotating element 143 and connected with the second rotating element 143, for driving the second rotating element 143 to rotate in the vertical direction.

[0142] In some embodiments, the control element 145 is fixedly connected with the stabilizing element 144, including but not limited to welding.

[0143] In some embodiments, the control element 145 is made of steel structure.

[0144] In some embodiments, the control element 145 is a control rotating disc.

[0145] As shown in Figure 7 The second separating unit 150 comprises a mounting element 151 and a plurality of second separating elements 152. The mounting element 151 is detachably arranged outside the main body unit 110; the plurality of second separating elements 152 are respectively arranged at the end of the mounting element 151 and respectively located inside the main body unit 110, and respectively in contact with the plurality of first separating units 120, for limiting the position of the first separating units 120 and cooperating with the first separating units 120 to separate the inside space of the main body unit 110.

[0146] Specifically, the mounting element 151 is detachably arranged outside the main body element 111; the second separating elements 152 respectively abut against the corresponding second guide elements 114 and third guide elements 122.

[0147] The cross section of the mounting element 151 is rectangular.

[0148] The size of the mounting element 151 matches the size of the main body element 111. Generally, the length of the mounting element 151 is less than the outer width of the main body element 111, the width of the mounting element 151 is less than the outer length of the main body element 111, and the height of the mounting element 151 is less than the outer height of the main body element 111.

[0149] In some embodiments, the manipulating element 145 is detachably connected to the main body element 111, including but not limited to bolt connection.

[0150] In some embodiments, the mounting element 151 is made of steel structure.

[0151] In some embodiments, the mounting element 151 is a mounting plate.

[0152] The second partition element 152 is rectangular in cross section.

[0153] The size of the second partition element 152 matches the size of the mounting element 151. Generally, the length of the second partition element 152 is greater than the width of the mounting element 151, the width of the second partition element 152 is less than the length of the mounting element 151, and the height of the second partition element 152 is equal to the height of the mounting element 151.

[0154] The size of the second partition element 152 matches the size of the second guide element 114. Generally, the length of the second partition element 152 is equal to the length of the second guide element 114, the width of the second partition element 152 is equal to the width of the second guide element 114, and the height of the second partition element 152 is equal to the height of the second guide element 114.

[0155] The size of the second partition element 152 matches the size of the third guide element 122. Generally, the length of the second partition element 152 is greater than the width of the third guide element 122, the width of the second partition element 152 is equal to the length of the third guide element 122, and the height of the second partition element 152 is equal to the height of the third guide element 122.

[0156] The number of the second partition element 152 matches the number of the second guide element 114. Generally, the number of the second partition element 152 is equal to the number of the second guide element 114.

[0157] The number of the second partition element 152 matches the number of the third guide element 122. Generally, the number of the second partition element 152 is equal to the number of the third guide element 122 of the first partition unit 120.

[0158] In some embodiments, the second partition elements 152 are arranged at equal intervals along the length direction of the mounting element 151.

[0159] In some embodiments, the second partition element 152 is fixedly connected with the mounting element 151, including but not limited to bolt connection.

[0160] In some embodiments, the second partition element 152 is made of steel structure.

[0161] In some embodiments, the second partition element 152 is a second partition plate.

[0162] The use method of the utility model is as follows:

[0163] (I) placing gas cylinder

[0164] Place the gas cylinder in the placing element 132;

[0165] Twist the control element 145 to drive the second rotating element 143 to rotate along the circumference of the first rotating element 142 while moving along the axial direction of the first rotating element 142 to approach the gas cylinder, and drive the stabilizing element 144 to move correspondingly through the second rotating element 143, until the stabilizing element 144 is firmly attached to the gas cylinder.

[0166] (II) installation operation

[0167] Install the base element 131 with the gas cylinder through the moving element 133 to the inside of the main body element 111;

[0168] During the process, the base element 131 moves along the first guide element 112 through the first partition element 121;

[0169] Install the second partition element 152 along the second guide element 114 and the third guide element 122 to the inside of the main body element 111 through the mounting element 151, so as to separate each gas cylinder installed in the main body element 111.

[0170] The utility model has the advantages that the cooperation between the first partition unit and the second partition unit can separate each gas cylinder, avoid the phenomenon of chain reaction caused by leakage of a gas cylinder, and ensure the safety of the gas cylinder. The cooperation between the base unit and the stabilizing unit can stabilize each gas cylinder, improve the stability of the placed gas cylinder, and the moving element provided by the base unit can facilitate the movement of the gas cylinder, thereby improving the convenience of moving the gas cylinder.

[0171] Embodiment 2

[0172] This embodiment relates to the gas storage device of the utility model.

[0173] As Figure 8As shown, a gas storage device includes the new explosion-proof box 100 and a gas storage unit 200 as described in Embodiment 1. The gas storage unit 200 is arranged at the top end of the base unit 130 of the new explosion-proof box 100 and abuts against the stabilizing unit 140, and is used for storing gas.

[0174] Specifically, the gas storage unit 200 is arranged at the inner side of the corresponding placing element 132 and abuts against the corresponding stabilizing element 144.

[0175] The size of the gas storage unit 200 matches the size of the placing element 132. Generally, the outer diameter of the gas storage unit 200 is not greater than the radial dimension of the placing element 132, and the outer axial dimension of the gas storage unit 200 is greater than the axial dimension of the placing element 132.

[0176] The size of the gas storage unit 200 matches the size of the main body element 111. Generally, the outer axial dimension of the gas storage unit 200 is less than the inner side height of the main body element 111.

[0177] In some embodiments, the gas storage unit 200 is made of steel.

[0178] In some embodiments, the gas storage unit 200 is a gas cylinder.

[0179] The above description is only the preferred embodiments of the present application, and is not intended to limit the implementation and protection scope of the present application. It should be realized by those skilled in the art that any equivalent replacement and obvious changes made according to the content of the present application should be included in the protection scope of the present application.

Claims

1. A new type of explosion-proof box, characterized in that, The utility model relates to a gas cylinder storage device, which comprises: a main unit (110) arranged on a horizontal plane; a plurality of first partition units (120) detachably arranged on the inner side of the main unit (110) for partitioning the inner space of the main unit (110); a plurality of base units (130) respectively arranged at the ends of the corresponding first partition units (120) and connected with the corresponding first partition units (120) for placing gas cylinders; a plurality of stabilizing units (140) respectively arranged at the top ends of the corresponding base units (130) and abutting against the gas cylinders for stabilizing the gas cylinders; a second partition unit (150) detachably arranged on the inner side of the main unit (110) and in contact with the first partition units (120) for limiting the positions of the first partition units (120) and cooperating with the first partition units (120) to partition the inner space of the main unit (110).

2. The new explosion-proof box according to claim 1, characterized in that, The main unit (110) comprises: a main element (111) arranged on a horizontal plane, the inner side of the main element (111) being provided with the first partition units (120), the base units (130), the stabilizing units (140), the second partition unit (150), and gas cylinders; a plurality of first guide elements (112) respectively arranged on the inner side of the main element (111) and detachably connected with the corresponding first partition units (120); a plurality of groove elements (113) arranged at the bottom end of the inner side of the main element (111) for allowing the base units (130) to enter the inner side of the main element (111); a plurality of second guide elements (114) respectively arranged on the inner side of the main element (111), the second guide elements (114) being respectively in communication with the corresponding first guide elements (112), arranged perpendicularly to the corresponding first guide elements (112), and detachably connected with the second partition unit (150).

3. The new explosion-proof box according to claim 2, characterized in that, The main unit (110) further comprises: a closing element (115) movably arranged on the outer side of the main element (111) for rotating in the horizontal direction to open and close the main element (111).

4. The new explosion-proof box according to claim 1, characterized in that, The first partition unit (120) comprises: a first partition element (121) detachably arranged on the inner side of the main unit (110) for partitioning the inner space of the main unit (110); A plurality of third guiding elements (122) are arranged through the first partition elements (121) respectively, for the second partition units (150) to pass through the first partition elements (121).

5. The new explosion-proof box according to claim 1, characterized in that, The base unit (130) comprises: A base element (131) is arranged at the end of the corresponding first partition unit (120) and connected with the corresponding first partition unit (120); A placing element (132) is arranged at the top end of the base element (131) for placing gas cylinders.

6. The new explosion-proof box according to claim 5, characterized in that, The base unit (130) further comprises: At least one first moving element (133) is arranged at the bottom end of the base element (131) for moving the base element (131).

7. The new explosion-proof box according to claim 1, characterized in that, The stabilizing unit (140) comprises: A support element (141) is arranged at the top end of the corresponding base unit (130) and connected with the corresponding base unit (130); A first rotating element (142) is arranged through the support element (141); A second rotating element (143) is rotatably connected with the first rotating element (142); A stabilizing element (144) is movably arranged at the first end of the second rotating element (143) and abuts against the corresponding gas cylinder, for reciprocating horizontally under the action of the second rotating element (143) to stabilize or loosen the gas cylinder.

8. The new explosion-proof box according to claim 7, characterized in that, The stabilizing unit (140) further comprises: A control element (145) is arranged at the second end of the second rotating element (143) and connected with the second rotating element (143), for driving the second rotating element (143) to rotate vertically.

9. The new explosion-proof box according to claim 1, characterized in that, The second partition unit (150) comprises: A mounting element (151) is detachably arranged outside the main body unit (110); A plurality of second partition elements (152) are arranged at the end of the mounting element (151) respectively and located inside the main body unit (110), and are in contact with the plurality of first partition units (120) respectively, for limiting the position of the first partition units (120) and cooperating with the first partition units (120) to partition the inside space of the main body unit (110).

10. A gas storage device, characterized by, It comprises: The novel explosion-proof box (100) according to any one of claims 1-9; A gas storage unit (200) is arranged at the top end of the base unit (130) of the novel explosion-proof box (100) and abuts against the stabilizing unit (140), for storing gas.