Mounting structure, mounting housing and heating equipment

By designing a rotatable support component, the problems of inconvenient storage and easy damage in traditional skirting board heaters are solved, achieving convenient storage and reducing damage.

CN110925868BActive Publication Date: 2025-05-13GREE ELECTRIC APPLIANCE INC OF ZHUHAI
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Patent Information

Application Number
CN201911349720.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2019-12-24
Publication Date
2025-05-13
Estimated Expiration
2039-12-24

AI Technical Summary

Technical Problem

The leg of the traditional skirting board heater is inconvenient to store during transportation, occupying the space of the packaging box and being easily damaged, affecting users' use.

Method used

An installation structure is designed, including a mounting member and a support assembly, which is rotatable, supports the device when in the first working state, and is stored in a smaller space when in the second working state, reducing space occupancy and reducing the risk of damage.

Benefits of technology

It realizes convenient storage of the installation structure during use, reduces the space occupied and damage risks during transportation, and improves the user experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses a mounting structure, a mounting shell and a heating device. The mounting structure includes a mounting member and a support assembly. One end of the support assembly is rotatably arranged on the mounting member, and the other end of the support assembly is provided with a support portion. When the support assembly is in a first working state, the support portion rotates to one side of the mounting member; when the support assembly is in a second working state, the support portion rotates to the other opposite side of the mounting member. The mounting structure is convenient to store when in use. The mounting shell and the heating device include the above-mentioned mounting structure, so the mounting shell and the heating device have the advantage of being easy to transport.
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Description

Technical Field

[0001] The present invention relates to the technical field of heating equipment, and in particular to a mounting structure, a mounting shell and a heating equipment. Background Art

[0002] As a new type of heater, skirting board heater is popular in the market because it does not take up space and has good heating effect. This type of heater can be wall-mounted or placed next to the wall.

[0003] Traditional baseboard heaters often need to be supported by a stand when in use. However, during transportation, the stand is inconvenient to store, takes up space in the packaging box and is easily damaged during transportation, affecting user use. Summary of the invention

[0004] Based on this, in order to solve the problem that the tripod of traditional baseboard heaters is inconvenient to store, occupies space in the packaging box and is easily damaged during transportation, affecting the user's use, an installation structure, an installation shell and a heating device are proposed. The installation structure is easy to store when in use; the installation shell and the heating device include the above-mentioned installation structure, so the installation shell and the heating device have the advantage of easy transportation.

[0005] The specific technical solutions are as follows:

[0006] On the one hand, the present application relates to an installation structure, comprising: a mounting member; and a support assembly, one end of the support assembly is rotatably disposed on the mounting member, and the other end of the support assembly is provided with a support portion; wherein, when the support assembly is in a first working state, the support portion rotates to one side of the mounting member; when the support assembly is in a second working state, the support portion rotates to the opposite other side of the mounting member.

[0007] When the above-mentioned mounting structure is in use, when it is necessary to support the object to be supported, the support assembly can be rotated to the first working state, at which time the support part is on one side of the mounting part, and the object to be supported can be supported by the support part; when it is necessary to transport, the support assembly can be rotated to the second working state, at which time the support part is rotated to the other opposite side of the mounting part. At this time, relative to the first working state, the support assembly in the second working state is in a storage state. When the mounting structure is set on the shell of the heater, the space occupied by the support assembly when it is in the storage state is relatively smaller than when it is in the supporting state, and it is not easily damaged.

[0008] The technical solution is further described below:

[0009] In one embodiment, the support assembly includes a first support member and a second support member, one end of the first support member and one end of the second support member are arranged at one end of the support assembly and one end of the first support member and one end of the second support member can be rotatably arranged on the mounting member, the other end of the first support member and the other end of the second support member are both arranged at the other end of the support assembly, and the other end of the first support member and the other end of the second support member are both provided with the support portion.

[0010] In one embodiment, the first support member includes a first stop portion, and the second support member includes a second stop portion; when the support assembly is in a first working state, the other end of the first support member and the other end of the second support member are arranged at an angle, and the first stop portion and the second stop portion are limitedly cooperated to limit the relative rotation of the first support member and the second support member; when the support assembly is switched from the first working state to the second working state, the first stop portion and the second stop portion are separated, and the first support member and the second support member are rotated in opposite directions to the other opposite side of the mounting member.

[0011] In one embodiment, one end of the first support member is rotatably mounted on the mounting member, a first mounting hole is opened on the circumferential side wall of one end of the first support member, a first stop portion is provided on the inner wall of the first mounting hole, one end of the second support member is inserted into the first mounting hole and rotatably mounted on the mounting member, and a second stop portion is provided on the side wall of the second support member; when the support assembly is in the first working state, the other end of the first support member and the other end of the second support member are arranged at an angle, the first stop portion and the second stop portion are force-limited and cooperated, and when the support assembly switches from the first working state to the second working state, the first stop portion and the second stop portion are separated, and the first support member and the second support member are rotated in opposite directions to the other opposite side of the mounting member.

[0012] In one embodiment, a second mounting hole is formed at one end of the first support member, a third mounting hole is formed at one end of the second support member, the first support member is rotatably mounted on the mounting member through the second mounting hole, and the second support member is rotatably mounted on the mounting member through the third mounting hole.

[0013] In one embodiment, the second mounting hole is arranged on the axial side wall of the first support member, the third mounting hole is arranged on the axial side wall of the second support member, the circumferential side wall of the first support member is provided with a first mounting hole, the first mounting hole passes through the side wall of the first support member located at the second mounting hole, one end of the second support member is arranged in the first mounting hole, and the third mounting hole is connected with the second mounting hole, the mounting member is simultaneously penetrated through the second mounting hole and the third mounting hole, the first support member and the second support member can be rotated in opposite directions relative to the mounting member so that the first support member and the second support member can switch between the first working state and the second working state.

[0014] In one embodiment, the first support member includes a first connector and a first support body fixedly connected to the first connector, the first connector is arranged at one end of the first support member, the first support body is arranged at the other end of the first support member, the first connector is provided with a second mounting hole, and the first mounting hole simultaneously penetrates the side walls of the first support body and the first connector; the second support member includes a second connector and a second support body fixedly connected to the second connector, the second connector is arranged at one end of the second support member, the second support body is arranged at the other end of the second support member, and the second connector is provided with a third mounting hole.

[0015] In one embodiment, the first support member includes a first locking portion and a second locking portion, and the second support member includes a third locking portion and a fourth locking portion. When the support assembly is in a first working state, the first locking portion and the third locking portion are both locked and matched with the mounting member; when the support assembly is in a second working state, the first locking portion and the third locking portion are both separated from the mounting member, and the second locking portion and the fourth locking portion are both locked and matched with the mounting member.

[0016] In one embodiment, the mounting structure further includes a locking member, and when the supporting assembly is in a first working state, the first locking portion and the third locking portion are both locked and cooperated with the mounting member through the locking member; when the supporting assembly is in a second working state, the locking member is separated from the first locking portion and the third locking portion, and the second locking portion and the fourth locking portion are both locked and cooperated with the mounting member through the locking member.

[0017] In one embodiment, the mounting structure also includes a driving mechanism, the locking member is movably arranged on the mounting member, the locking member is limitedly cooperated with the mounting member, and the driving mechanism is used to drive the locking member to reciprocate so that the locking member can be locked and cooperated with the first locking part and the third locking part in the first working state, and can switch to be locked and cooperated with the second locking part and the fourth locking part in the second working state.

[0018] In one embodiment, the driving mechanism includes a spring, the mounting member is provided with an abutment portion, one end of the spring is connected to the abutment portion, and the other end of the spring is connected to one end of the locking member, and the spring is configured to drive the locking member to separate from the first support member and the second support member when under pressure, and to drive the locking member to move to a locking cooperation with the first locking member and the third locking member or to a locking cooperation with the second locking member and the fourth locking member under the action of a restoring force.

[0019] In one embodiment, the outer wall of the mounting member is provided with a first limiting portion, and the locking member is provided with a second limiting portion for limiting cooperation with the first limiting portion. When the spring is compressed and drives the locking member to separate from the first support member and the second support member, the first limiting portion and the second limiting portion are limitedly cooperated.

[0020] In one embodiment, the first locking portion and the second locking portion are arranged on the inner wall of the second mounting hole at intervals along the circumference of the second mounting hole, and the third locking portion and the fourth locking portion are arranged on the inner wall of the third mounting hole at intervals along the circumference of the third mounting hole.

[0021] In one embodiment, the first locking portion is a first groove, the second locking portion is a second groove, the third locking portion is a third groove, and the fourth locking portion is a fourth groove; when the support assembly is in a first working state, the first groove and the third groove are connected to form a first mounting groove, one end of the locking member is limitedly matched with the first mounting groove, and the other end is limitedly matched with the mounting member; when the support assembly is in a second working state, the second groove and the fourth groove are connected to form a second mounting groove, one end of the locking member is limitedly matched with the second mounting groove, and the other end is limitedly matched with the mounting member.

[0022] In one embodiment, the mounting member is provided with a third mounting groove, the mounting member is inserted into the second mounting hole and the third mounting hole, and the third mounting groove is partially arranged outside the second mounting hole, and the length of the third mounting groove outside the second mounting hole is greater than or equal to the length of the locking member, one end of the locking member is limitedly engaged with the third mounting groove and the locking member can move relative to the third mounting groove; when the support assembly is in the first working state, the first mounting groove and the third mounting groove are arranged opposite to each other, and the locking member moves to be limitedly engaged with the first mounting groove; when the support assembly is in the second working state, the second mounting groove and the third mounting groove are arranged opposite to each other, and the locking member moves to be limitedly engaged with the second mounting groove.

[0023] In one embodiment, a mounting portion is provided at the other end of the first support member and / or the other end of the second support member.

[0024] In one embodiment, one end of the first support member and one end of the second support member are rotatably disposed on the mounting member, and when the support assembly is in the second working state, the other end of the first support member and the other end of the second support member are relatively spaced apart.

[0025] On the other hand, the present application also relates to a mounting shell, comprising the mounting structure in any of the above embodiments, and also comprising a shell body, and the mounting member is connected to the shell body.

[0026] On the other hand, the present application also relates to a heating device, including the installation structure in any of the above embodiments; or including the installation shell in the above embodiments.

[0027] When the above-mentioned mounting shell and heating equipment are in use, when it is necessary to support the object to be supported, the support assembly can be rotated to the first working state, at which time the support part is on one side of the mounting part, and the object to be supported can be supported by the support part; when it is necessary to transport, the support assembly can be rotated to the second working state, at which time the support part is rotated to the other opposite side of the mounting part. At this time, relative to the first working state, the support assembly in the second working state is in a storage state. When the mounting structure is arranged on the shell of the heater, the space occupied by the support assembly when in the storage state is relatively smaller than when in the supporting state, and it is not easily damaged. BRIEF DESCRIPTION OF THE DRAWINGS

[0028] Figure 1 It is a structural schematic diagram of the installation component in a first working state;

[0029] Figure 2 It is a structural schematic diagram of the installation component in the second working state;

[0030] Figure 3 It is a structural schematic diagram of the installation structure in the heating device in the first working state;

[0031] Figure 4 It is a structural schematic diagram of the installation structure in the heating device in the second working state;

[0032] Figure 5 This is an exploded schematic diagram of the heating equipment;

[0033] Figure 6 is a schematic diagram of the structure of the locking member;

[0034] Figure 7 is a schematic structural diagram of a first supporting member;

[0035] Figure 8 is a schematic structural diagram of a second supporting member;

[0036] Fig. 9 is a schematic structural diagram of a locking member in another embodiment;

[0037] Fig.10 is a schematic structural diagram of a mounting member in another embodiment;

[0038] Fig.11 is an exploded schematic diagram of a heating device in another embodiment;

[0039] Fig.12 is a structural schematic diagram of an installation structure in a heating device in another embodiment in a first working state;

[0040] Fig.13 for Fig.12 A is a partial enlarged schematic diagram of the middle part.

[0041] Description of reference numerals:

[0042] 10. Heating device; 100. Mounting structure; 102. Supporting part; 110. First supporting member; 112. First connecting body; 1122. Second mounting hole; 1124. First mounting hole; 1126. First groove; 1128. Second groove; 1130. Mounting part; 114. First supporting body; 120. Second supporting member; 122. Second connecting body; 1222. Third mounting hole; 1224. Third groove; 1226. Fourth groove; 124. Second supporting body; 130. Mounting member; 132. Third mounting groove; 1322. First limiting part; 1324. Abutting part; 140. Locking member; 142. Pushing part; 144. Second limiting part; 146. Connecting part; 200. Shell body; 310. Spring. DETAILED DESCRIPTION

[0043] In order to make the purpose, technical solution and advantages of the present invention more clearly understood, the present invention is further described in detail below in conjunction with the accompanying drawings and specific implementation methods. It should be understood that the specific implementation methods described herein are only used to explain the present invention and do not limit the scope of protection of the present invention.

[0044] It should be noted that when an element is referred to as being "disposed on" another element, it may be directly on the other element or there may be a central element. When an element is referred to as being "fixed on" another element, it may be directly on the other element or there may be a central element. When an element is considered to be "connected to" another element, it may be directly connected to the other element or there may be a central element at the same time. The terms "vertical", "horizontal", "left", "right" and similar expressions used herein are for illustrative purposes only and are not intended to be the only implementation method.

[0045] It is necessary to point out that when an element is referred to as being “fixed on” another element, the two elements may be integral or detachably connected.

[0046] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as those commonly understood by those skilled in the art of the present invention. The terms used herein in the specification of the present invention are only for the purpose of describing specific embodiments and are not intended to limit the present invention. The term "and / or" used herein includes any and all combinations of one or more related listed items.

[0047] In addition, it should be understood that in this embodiment, the positional relationships indicated by the terms "lower", "upper", "front", "back", "left", "right", "inner", "outer", "top", "bottom", "one side", "the other side", "one end", "the other end", etc. are based on the positional relationships shown in the drawings; the terms "first", "second", etc. are used to distinguish different structural components. These terms are only used to facilitate the description of the present invention and simplify the description, and should not be understood as limiting the present invention.

[0048] In view of the problem that the tripod of traditional baseboard heaters is inconvenient to store when in use, occupies space in the packaging box and is easily damaged during transportation, thus affecting the user's use, the present invention proposes an installation structure, an installation shell and a heating device. The installation structure is easy to store when in use; the installation shell and the heating device include the above-mentioned installation structure, so the installation shell and the heating device have the advantage of being easy to transport.

[0049] like Figure 5 and Figure 6As shown, the installation housing in one embodiment includes a mounting structure 100 and a housing body 200, and the mounting member 130 is connected to the housing body 200. Figure 1 and Figure 2 As shown, the mounting structure 100 includes: a mounting member 130, a support assembly, one end of the support assembly is rotatably disposed on the mounting member 130, and the other end of the support assembly is provided with a support portion 102;

[0050] Among them, Figure 1 As shown, when the support assembly is in the first working state, wherein, when the support assembly is in the first working state, the support portion 102 rotates to one side of the mounting member 130;

[0051] like Figure 2 As shown, when the support assembly is in the second working state, the support portion 102 rotates to the other opposite side of the mounting member 130 .

[0052] When the above-mentioned mounting structure 100 is in use, when it is necessary to support the object to be supported, the support assembly can be rotated to the first working state, at which time the support part 102 is on one side of the mounting part 130, and the object to be supported can be supported by the support part 102; when it is necessary to transport, the support assembly can be rotated to the second working state, at which time the support part 102 is rotated to the other opposite side of the mounting part 130. At this time, relative to the first working state, the support assembly in the second working state is in a storage state. When the mounting structure is set on the shell of the heater, the space occupied by the support assembly in the storage state is relatively smaller than that in the supporting state, and it is not easily damaged.

[0053] Specifically, the number of supporting components can be set as needed. In this embodiment, the supporting component includes a first supporting member 110 and a second supporting member 120. One end of the first supporting member 110 and one end of the second supporting member 120 are arranged at one end of the supporting component and one end of the first supporting member 110 and one end of the second supporting member 120 can be rotatably arranged on the mounting member 130. The other end of the first supporting member 110 and the other end of the second supporting member 120 are both arranged at the other end of the supporting component. The other end of the first supporting member 110 and the other end of the second supporting member 120 are both provided with a supporting portion 102. At this time, supporting the object to be supported by the first supporting member 110 and the second supporting member 120 can be more stable.

[0054] Specifically, when the support assembly is in the second working state, it is sufficient as long as the first support member 110 and the second support member 120 are rotated to the other side opposite to the mounting member 130. At this time, the other end of the first support member 110 and the other end of the second support member 120 are on the other side opposite to the mounting member 130. At this time, the first support member 110 and the second support member 120 can be set at an angle or at a relative interval.

[0055] like Figure 2 As shown, in this embodiment, when the support assembly is in the second working state, the other end of the first support member 110 and the other end of the second support member 120 rotate to the other side opposite to the mounting member 130 and the other end of the first support member 110 and the other end of the second support member 120 are arranged with a relative spacing, and when the mounting member 130 is connected to the shell body 200, the space occupied by the first support member 110 and the second support member 120 is small and not easy to be damaged. Preferably, when the support assembly is in the second working state, the other end of the first support member 110 and the other end of the second support member 120 rotate to the other side opposite to the mounting member 130 and the other end of the first support member 110 and the other end of the second support member 120 are arranged in parallel or nearly parallel (the error is ±5°, which is considered to be nearly parallel), and at this time, the space occupied by the first support member 110 and the second support member 120 is further reduced.

[0056] like Figure 2 As shown, in this embodiment, the mounting structure 100 is arranged at the end of the shell body 200. When the support assembly is in the second working state, the other end of the first support member 110 and the other end of the second support member 120 are relatively spaced apart, and the projections of the other end of the first support member 110 and the other end of the second support member 120 along the rotation axis line direction are located on the side wall of the shell body 200, thereby maximizing the reduction of the space occupied by the first support member 110 and the second support member 120.

[0057] Furthermore, in order to improve the stability of the support assembly, the first support member 110 includes a first anti-rotation portion, and the second support member 120 includes a second anti-rotation portion.

[0058] Specifically, when the support assembly is in the first working state, the other end of the first support member 110 and the other end of the second support member 120 are set at an angle, and the first anti-rotation portion and the second anti-rotation portion limit cooperation are used to limit the relative rotation of the first support member 110 and the second support member 120; at this time, the other end of the first support member 110 and the other end of the second support member 120 are set at an angle, and according to the principle of triangular support stability, the support assembly has a higher support stability at this time; further, through the first anti-rotation portion and the second anti-rotation portion limit cooperation, the first support member 110 and the second support member 120 are prevented from rotating relative to each other, thereby further improving the support stability of the support assembly;

[0059] Specifically, when the support assembly is switched from the first working state to the second working state, the first stop portion and the second stop portion are separated, and the first support member 110 and the second support member 120 are rotated in opposite directions to the other opposite side of the mounting member 130. At this time, when the support assembly needs to be stored, the first support member 110 and the second support member 120 can be manually rotated to separate the first locking portion and the second locking portion, which is convenient for user operation; when the support assembly needs to be switched from the second working state to the second working state, it is also only necessary to rotate the first support member 110 and the second support member 120 until the first stop portion and the second stop portion are limit engaged.

[0060] Furthermore, in order to achieve mutual limitation between the first support member 110 and the second support member 120 during rotation, in this embodiment, one end of the first support member 110 is rotatably mounted on the mounting member 130, a first mounting hole 1124 is provided on the circumferential side wall of one end of the first support member 110, a first stop portion is provided on the inner wall of the first mounting hole 1124, one end of the second support member 120 is inserted into the first mounting hole 1124 and rotatably mounted on the mounting member 130, and a second stop portion is provided on the side wall of the second support member 120; specifically, at this time, the first stop portion may be the inner wall of the first mounting hole 1124, and the second stop portion may be the outer wall of the second support member 120.

[0061] Further, when the support assembly is in the first working state, the other end of the first support member 110 and the other end of the second support member 120 are set at an angle, and the first anti-rotation portion and the second anti-rotation portion are force-limited. At this time, since the first support member 110 and the second support member 120 are both sleeved on the mounting member 130, and the other end of the first support member 110 and the other end of the second support member 120 are set at an angle, the support portion 102 of the first support member 110 and the support portion 102 of the second support member 120 are generally supported in contact with the ground. When the mounting member 130 applies pressure to the first support member 110 and the second support member 120 through its own gravity, the first anti-rotation portion and the second anti-rotation portion are mutually limited and matched under the action of pressure to limit the rotation of the first support member 110 and the second support member 120.

[0062] Furthermore, when the support assembly switches from the first working state to the second working state, the first stop portion and the second stop portion are separated, and the first support member 110 and the second support member 120 are rotated in opposite directions to the other opposite sides of the mounting member 130. Since the first support member 110 and the second support member 120 are mutually limited, when the first support member 110 and the second support member 120 are rotated in opposite directions, the first stop portion and the second stop portion are naturally separated, thereby realizing the storage of the support assembly.

[0063] Since the shell of the baseboard heater generally has a dimension in the width direction, the first support member 110 and the second support member 120 can be rotatably mounted on the mounting member 130. When storing and supporting, only the first support member 110 and the second support member 120 need to be rotated. At this time, the first support member 110 and the second support member 120 can maximize the use of the space in the height direction of the shell body 200.

[0064] Furthermore, the other end of the first support member 110 and the other end of the second support member 120 are supported at an angle, and the first support member 110 and the second support member 120 can withstand a larger supporting force. Therefore, the cross-sectional area of ​​the first support member 110 and the second support member 120 can be designed to be relatively small.

[0065] Specifically, the angle between the other end of the first support member 110 and the other end of the second support member 120 does not include the situation where the first support member 110 and the second support member 120 are 0° or 180°.

[0066] Specifically, there are many ways in which the first support member 110 and the second support member 120 can be rotatably disposed on the mounting member 130, such as hinged connection, etc. Figure 7 and Figure 8 As shown, specifically in this embodiment, a second mounting hole 1122 is opened at one end of the first support member 110, and a third mounting hole 1222 is opened at one end of the second support member 120. The first support member 110 can be rotatably mounted on the mounting member 130 through the second mounting hole 1122, and the second support member 120 can be rotatably mounted on the mounting member 130 through the third mounting hole 1222.

[0067] like Figure 1 , Figure 2 , Figure 7 and Figure 8 As shown, in this embodiment, the second mounting hole 1122 is arranged on the axial side wall of the first support member 110, the third mounting hole 1222 is arranged on the axial side wall of the second support member 120, and the circumferential side wall of the first support member 110 is provided with a first mounting hole 1124, the first mounting hole 1124 passes through the side wall of the first support member 110 located at the second mounting hole 1122, one end of the second support member 120 is arranged in the first mounting hole 1124, and the third mounting hole 1222 is connected to the second mounting hole 1122, and the mounting member 130 is simultaneously penetrated through the second mounting hole 1122 and the third mounting hole 1222, and the first support member 110 and the second support member 120 can rotate in opposite directions relative to the mounting member 130 to switch the first support member 110 and the second support member 120 between the first working state and the second working state.

[0068] like Figure 1As shown, further, one end of the second support member 120 is disposed in the first mounting hole 1124, thereby further reducing the space occupied by the second support member 120, thereby reducing the volume of the housing body 200, and facilitating transportation. Further, the second support member 120 can rotate back and forth in the first mounting hole 1124, and the first support member 110 and the second support member 120 rotate in opposite directions to achieve switching between the storage state and the support state. The rotation order of the first support member 110 and the second support member 120 may be arbitrary, as long as the first support member 110 and the second support member 120 rotate in opposite directions.

[0069] Specifically, the axial sidewall of the first support member 110 is a sidewall corresponding to the direction of the rotation axis when the first support member 110 rotates; similarly, the axial sidewall of the second support member 120 is a sidewall corresponding to the direction of the rotation axis when the second support member 120 rotates.

[0070] like Figure 7 and Figure 8 As shown, specifically in this embodiment, the first support member 110 includes a first connecting body 112 and a first supporting body 114 fixedly connected to the first connecting body 112, the first connecting body 112 is arranged at one end of the first support member 110, the first supporting body 114 is arranged at the other end of the first support member 110, the first connecting body 112 is provided with a second mounting hole 1122, and the first mounting hole 1124 simultaneously penetrates the side walls of the first supporting body 114 and the first connecting body 112; the second support member 120 includes a second connecting body 122 and a second supporting body 124 fixedly connected to the second connecting body 122, the second connecting body 122 is arranged at one end of the second support member 120, the second supporting body 124 is arranged at the other end of the second support member 120, and the second connecting body 122 is provided with a third mounting hole 1222; in this embodiment, the first supporting body 114 and the second supporting body 124 are both in the shape of elongated strips, and the first connecting body 112 and the second connecting body 122 are in the shape of cylinders.

[0071] On the basis of any of the above embodiments, in order to ensure the stability of the support assembly in the first working state and the second working state; the first support member 110 includes a first locking portion and a second locking portion, and the second support member 120 includes a third locking portion and a fourth locking portion;

[0072] When the support assembly is in the first working state, the first locking portion and the third locking portion are both locked and matched with the mounting member 130. At this time, the first supporting member 110 and the second supporting member 120 are fixed to the mounting member 130 by the first locking portion and the third locking portion;

[0073] When the support assembly is in the second working state, the first locking portion and the third locking portion are separated from the mounting member 130, and the second locking portion and the fourth locking portion are locked and cooperated with the mounting member 130. At this time, the first support member 110 and the second support member 120 are fixed to the mounting member 130 by the second locking portion and the fourth locking portion.

[0074] Specifically, the mounting member 130 may be a metal shaft, and the first locking portion, the second locking portion, the third locking portion, and the fourth locking portion may all be permanent magnets that are magnetically matched with the metal shaft.

[0075] Of course, the first locking portion and the third locking portion can be locked and matched with the mounting member 130 through an intermediate connecting member, or they can be directly locked and matched with the mounting member 130; similarly, the second locking portion and the fourth locking portion can be locked and matched with the mounting member 130 through an intermediate connecting member, or they can be directly locked and matched with the mounting member 130.

[0076] like Figure 1 to Figure 2 As shown, specifically in this embodiment, the mounting structure 100 also includes a locking member 140. When the supporting assembly is in the first working state, the first locking portion and the third locking portion are both locked and matched with the mounting member 130 through the locking member 140; when the supporting assembly is in the second working state, the locking member 140 is separated from the first locking portion and the third locking portion, and the second locking portion and the fourth locking portion are both locked and matched with the mounting member 130 through the locking member 140.

[0077] Specifically, the first locking portion, the second locking portion, the third locking portion, and the fourth locking portion can all be mounting holes, the locking member 140 can be a locking pin or a screw, etc., and a plurality of locking holes cooperating with the locking pins or screws are opened around the mounting member 130.

[0078] like Figure 7 and Figure 8 As shown, specifically in this embodiment, the first locking portion and the second locking portion are arranged on the inner wall of the second mounting hole 1122 at circumferential intervals along the second mounting hole 1122, and the third locking portion and the fourth locking portion are arranged on the inner wall of the third mounting hole 1222 at circumferential intervals along the third mounting hole 1222. In this way, the first locking portion, the second locking portion, the third locking portion, and the fourth locking portion can be locked and matched with the mounting member 130 when rotating.

[0079] like Figure 7 and Figure 8 As shown, specifically in this embodiment, the first locking portion is the first groove 1126, the second locking portion is the second groove 1128, the third locking portion is the third groove 1224, and the fourth locking portion is the fourth groove 1226; specifically, the first groove 1126, the second groove 1128, the third groove 1224 and the fourth groove 1226 are in the shape of long strips.

[0080] Furthermore, if Figure 1 As shown, when the support assembly is in the first working state, the first groove 1126 and the third groove 1224 are connected to form a first installation groove, and one end of the locking member 140 is limitedly matched with the first installation groove, and the other end is limitedly matched with the installation member 130; in this way, the first support member 110 and the second support member 120 are fixed to the installation member 130 by limiting the locking member 140 and the first installation groove; in this embodiment, when the support assembly is in the first working state, the first groove 1126 and the third groove 1224 are in a colinear state, at this time, the locking member 140 can be simultaneously inserted into the first groove 1126 and the third groove 1224 and limitedly matched with the first groove 1126 and the third groove 1224.

[0081] Furthermore, if Figure 2 As shown, when the support assembly is in the second working state, the second groove 1128 and the fourth groove 1226 are connected to form a second installation groove, and one end of the locking member 140 is limitedly matched with the second installation groove, and the other end is limitedly matched with the installation member 130. In this way, the first support member 110 and the second support member 120 are fixed to the installation member 130 through the limited matching of the locking member 140 and the second installation groove; in this embodiment, when the support assembly is in the second working state, the second groove 1128 and the fourth groove 1226 are in a colinear state, and at this time, the locking member 140 can be inserted into the second groove 1128 and the fourth groove 1226 at the same time and limitedly matched with the second groove 1128 and the fourth groove 1226.

[0082] like Figure 1 , Figure 2 and Figure 6 As shown, further, in this embodiment, in order to achieve the limiting cooperation between the mounting member 130 and the locking member 140, the mounting member 130 is provided with a third mounting groove 132, the mounting member 130 is inserted into the second mounting hole 1122 and the third mounting hole 1222, and the third mounting groove 132 is partially arranged outside the second mounting hole 1122, and the length of the third mounting groove 132 outside the second mounting hole 1122 is greater than or equal to the length of the locking member 140, one end of the locking member 140 is limitedly cooperated with the third mounting groove 132 and the locking member 140 can move relative to the third mounting groove 132, at this time, the locking member 140 extends into the second mounting hole 1122 along the third mounting groove 132 as needed, and can also move out of the second mounting hole 1122 along the third mounting groove 132.

[0083] like Figure 1As shown, when the support assembly is in the first working state, the first mounting groove and the third mounting groove 132 are arranged relative to each other, and the locking member 140 moves to cooperate with the first mounting groove. At this time, the locking member 140 can lock the first support member 110 and the second support member 120 to the mounting member 130, thereby improving the stability of the support assembly.

[0084] like Figure 2 As shown, when the support assembly is in the second working state, the second mounting groove is arranged opposite to the third mounting groove 132, and the locking member 140 moves to the second mounting groove to cooperate with the second mounting groove. At this time, the locking member 140 can lock the first support member 110 and the second support member 120 to the mounting member 130, thereby improving the stability of the first support member 110 and the second support member 120 in the storage state. Specifically, when switching from the first working state to the second working state, the locking member 140 first moves out of the second mounting hole 1122 along the third mounting groove 132, and when the first support member 110 and the second support member 120 rotate to the second mounting groove and the third mounting groove 132, the locking member 140 moves into the second mounting hole 1122 along the third mounting groove 132 to cooperate with the second mounting groove.

[0085] like Figure 6 As shown, based on any of the above embodiments, the locking member 140 further includes a pushing portion 142 . When in use, the locking member 140 is pushed by the pushing portion 142 to move along the third installation slot 132 .

[0086] Of course, if Figures 9 to 13 As shown, in other embodiments, the locking member 140 can also be driven to move by setting a corresponding driving structure. Specifically in this embodiment, the mounting structure 100 also includes a driving mechanism, and the locking member 140 is movably arranged on the mounting member 130. The locking member 140 and the mounting member 130 are limited and matched. The driving mechanism is used to drive the locking member 140 to move back and forth so that the locking member 140 can be locked and matched with the first locking part and the third locking part in the first working state, and can be switched to be locked and matched with the second locking part and the fourth locking part in the second working state. At this time, when switching from the first working state to the second working state, it is only necessary to drive the locking member 140 to move by the driving mechanism, so that the locking member 140 is separated from the first locking part and the third locking part, and the locking member 140 is driven by the driving mechanism to move to be locked and matched with the second locking part and the fourth locking part; when switching from the second working state to the first working state, the same principle is used.

[0087] Optionally, the driving mechanism may be a linear driving structure or a telescopic driving structure.

[0088] like Figures 11 to 13As shown, specifically in this embodiment, the driving mechanism includes a spring 310, and the mounting member 130 is provided with an abutment portion 1324, one end of the spring 310 is connected to the abutment portion 1324, and the other end of the spring 310 is connected to one end of the locking member 140. The spring 310 is configured to drive the locking member 140 to separate from the first support member 110 and the second support member 120 when under pressure, and to drive the locking member 140 to move to lock and cooperate with the first locking portion and the third locking portion or with the second locking portion and the fourth locking portion under the action of the restoring force. At this time, when it is necessary to drive the locking member 140 to separate from the first support member 110 and the second support member 120, it is only necessary to compress the spring 310. When it is necessary to drive the locking member 140 to lock and cooperate with the first support member 110 and the second support member 120, it is only necessary to loosen the spring 310 so that the spring 310 moves to lock and cooperate with the first support member 110 and the second support member 120 under the action of its own restoring force.

[0089] like Fig.10 As shown, specifically, in this embodiment, the locking member 140 is disposed in the third mounting groove 132, the abutting portion 1324 is disposed on the inner wall of the third mounting groove 132, one end of the spring 310 is connected to the locking member 140, and the other end is connected to the inner wall of the third mounting groove 132. In this embodiment, a connecting portion 146 is provided at the end of the locking member 140, and is connected to the spring 310 through the connecting portion 146.

[0090] Furthermore, in order to realize that when the locking member 140 is separated from the first support member 110 and the second support member 120, the locking member 140 can be locked on the mounting member 130, such as Fig. 9 and Fig.10 As shown, in this embodiment, the outer wall of the mounting member 130 is provided with a first limiting portion 1322, and the locking member 140 is provided with a second limiting portion 144 for limiting cooperation with the first limiting portion 1322. When the spring 310 is compressed, it drives the locking member 140 to separate from the first support member 110 and the second support member 120, and the first limiting portion 1322 and the second limiting portion 144 are limited and cooperated. At this time, through the limiting cooperation of the first limiting portion 1322 and the second limiting portion 144, the locking member 140 can be locked on the mounting member 130.

[0091] like Fig. 9 and Fig.10 As shown, specifically, the first limiting portion 1322 can be a limiting groove, and the second limiting portion 144 can be a limiting protrusion; in this embodiment, the first limiting portion 1322 is a limiting groove arranged on the inner wall of the third installation groove 132, and the second limiting portion 144 is a limiting protrusion arranged on the outer wall of the locking member 140.

[0092] like Figure 7As shown, based on any of the above embodiments, a mounting portion 1130 is provided at the other end of the first support member 110 and / or the other end of the second support member 120. At this time, when the support assembly is in the second working state, the shell body 200 can be mounted on the wall through the mounting portion 1130. In this embodiment, the mounting portion 1130 is a hanging hole or a hanging groove.

[0093] like Figures 3 to 5 As shown, a heating device 10 in one embodiment includes the mounting structure 100 in any of the above embodiments; or includes the mounting shell in the above embodiments.

[0094] When the above-mentioned heating device 10 is in use, when it is necessary to support the object to be supported, the support assembly can be rotated to the first working state, at which time the support part 102 is on one side of the mounting part 130, and the object to be supported can be supported by the support part 102; when it is necessary to transport, the support assembly can be rotated to the second working state, at which time the support part 102 is rotated to the other opposite side of the mounting part 130. At this time, relative to the first working state, the support assembly in the second working state is in a storage state. When the mounting structure is arranged on the shell of the heater, the space occupied by the support assembly when in the storage state is relatively smaller than when in the supporting state, and it is not easily damaged.

[0095] like Figures 3 to 5 As shown, the mounting structure 100 is disposed at the end of the housing body 200. When the support assembly is in the first working state, the other end of the first support member 110 and the other end of the second support member 120 are disposed at an angle, and the first support member 110 abuts against the inner wall of the first mounting hole 1124.

[0096] like Figures 3 to 5 As shown, when the first working state is switched to the second working state (the first support member 110 and the second support member 120 are pressed Figure 5 The second support member 120 and the first support member 110 rotate in opposite directions to the other side opposite to the mounting member 130. In this embodiment, when the support assembly is in the second working state, the other end of the second support member 120 is spaced apart from the other end of the first support member 110. At this time, the first support member 110 and the second support member 120 are housed at the end of the shell body 200.

[0097] like Figures 3 to 5 As shown, when the second working state is switched to the first working state (the first support member 110 and the second support member 120 are pressed Figure 6 The other end of the first support member 110 and the other end of the second support member 120 are arranged at an angle, and the first support member 110 abuts against the inner wall of the first mounting hole 1124 to achieve positioning.

[0098] The technical features of the above embodiments may be combined arbitrarily. To make the description concise, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.

[0099] The above embodiments only express several implementation methods of the present invention, and the descriptions thereof are relatively specific and detailed, but they cannot be understood as limiting the scope of the invention patent. It should be pointed out that, for those of ordinary skill in the art, several variations and improvements can be made without departing from the concept of the present invention, and these all belong to the protection scope of the present invention. Therefore, the protection scope of the patent of the present invention shall be subject to the attached claims.

Claims

1. A mounting structure, characterized in that: include: Mounting parts; and A support assembly, the support assembly comprising a first support member and a second support member, one end of the first support member and one end of the second support member are arranged at one end of the support assembly, and one end of the first support member is rotatably sleeved on the mounting member, a first mounting hole is opened on a circumferential side wall of one end of the first support member, a first anti-rotation portion is arranged on an inner wall of the first mounting hole, one end of the second support member is inserted into the first mounting hole and rotatably sleeved on the mounting member, a second anti-rotation portion is arranged on a side wall of the second support member, the other end of the first support member and the other end of the second support member are both arranged at the other end of the support assembly, and a support portion is arranged on the other end of the first support member and the other end of the second support member; Among them, when the support assembly is in a first working state, the support part rotates to one side of the mounting member, the other end of the first support member and the other end of the second support member are set at an angle, and the first stop part and the second stop part are force-limited to cooperate to limit the relative rotation of the first support member and the second support member; when the support assembly is in a second working state, the first stop part and the second stop part are separated, and the first support member and the second support member rotate in opposite directions to the other opposite side of the mounting member.

2. The mounting structure according to claim 1, characterized in that: A second mounting hole is formed at one end of the first support member, a third mounting hole is formed at one end of the second support member, the first support member is rotatably mounted on the mounting member through the second mounting hole, and the second support member is rotatably mounted on the mounting member through the third mounting hole.

3. The mounting structure according to claim 2, characterized in that: The second mounting hole is arranged on the axial side wall of the first support member, the third mounting hole is arranged on the axial side wall of the second support member, the circumferential side wall of the first support member is provided with a first mounting hole, the first mounting hole passes through the side wall of the first support member located at the second mounting hole, one end of the second support member is arranged in the first mounting hole, and the third mounting hole is connected with the second mounting hole, the mounting member is simultaneously penetrated through the second mounting hole and the third mounting hole, the first support member and the second support member can be rotated in opposite directions relative to the mounting member so that the first support member and the second support member can switch between the first working state and the second working state.

4. The mounting structure according to claim 3, characterized in that: The first support member includes a first connector and a first support body fixedly connected to the first connector, the first connector is arranged at one end of the first support member, the first support body is arranged at the other end of the first support member, the first connector is provided with a second mounting hole, and the first mounting hole simultaneously penetrates the side walls of the first support body and the first connector; the second support member includes a second connector and a second support body fixedly connected to the second connector, the second connector is arranged at one end of the second support member, the second support body is arranged at the other end of the second support member, and the second connector is provided with a third mounting hole.

5. The mounting structure according to claim 2, characterized in that: The first support member includes a first locking portion and a second locking portion, and the second support member includes a third locking portion and a fourth locking portion. When the support assembly is in a first working state, the first locking portion and the third locking portion are both locked and matched with the mounting member; when the support assembly is in a second working state, the first locking portion and the third locking portion are both separated from the mounting member, and the second locking portion and the fourth locking portion are both locked and matched with the mounting member.

6. The mounting structure according to claim 5, characterized in that: It also includes a locking member. When the support assembly is in a first working state, the first locking portion and the third locking portion are both locked and matched with the mounting member through the locking member; when the support assembly is in a second working state, the locking member is separated from the first locking portion and the third locking portion, and the second locking portion and the fourth locking portion are both locked and matched with the mounting member through the locking member.

7. The mounting structure according to claim 6, characterized in that: It also includes a driving mechanism, wherein the locking member is movably arranged on the mounting member, and the locking member is limitedly matched with the mounting member. The driving mechanism is used to drive the locking member to reciprocate so that the locking member can be locked and matched with the first locking part and the third locking part in the first working state, and can be switched to be locked and matched with the second locking part and the fourth locking part in the second working state.

8. The mounting structure according to claim 7, characterized in that: The driving mechanism includes a spring, the mounting member is provided with an abutment portion, one end of the spring is connected to the abutment portion, and the other end of the spring is connected to one end of the locking member, and the spring is configured to drive the locking member to separate from the first support member and the second support member when under pressure, and to drive the locking member to move to a locking cooperation with the first locking member and the third locking member or to a locking cooperation with the second locking member and the fourth locking member under the action of a restoring force.

9. The mounting structure according to claim 8, characterized in that: The outer wall of the mounting member is provided with a first limiting portion, and the locking member is provided with a second limiting portion for limiting cooperation with the first limiting portion. When the spring is compressed and drives the locking member to separate from the first support member and the second support member, the first limiting portion and the second limiting portion are limitedly cooperated.

10. The mounting structure according to claim 6, characterized in that: The first locking portion and the second locking portion are arranged at intervals on the inner wall of the second mounting hole along the circumferential direction of the second mounting hole, and the third locking portion and the fourth locking portion are arranged at intervals on the inner wall of the third mounting hole along the circumferential direction of the third mounting hole.

11. The mounting structure according to claim 10, characterized in that: The first locking portion is a first groove, the second locking portion is a second groove, the third locking portion is a third groove, and the fourth locking portion is a fourth groove; When the support assembly is in the first working state, the first groove and the third groove are connected to form a first installation groove, one end of the locking member is limitedly matched with the first installation groove, and the other end is limitedly matched with the installation member; When the support assembly is in the second working state, the second groove and the fourth groove are connected to form a second installation groove, one end of the locking member is limitedly matched with the second installation groove, and the other end is limitedly matched with the installation member.

12. The mounting structure according to claim 11, characterized in that: The mounting member is provided with a third mounting groove, the mounting member is inserted into the second mounting hole and the third mounting hole, and the third mounting groove is partially arranged outside the second mounting hole, and the length of the third mounting groove outside the second mounting hole is greater than or equal to the length of the locking member, one end of the locking member is limitedly matched with the third mounting groove, and the locking member can move relative to the third mounting groove; When the support assembly is in the first working state, the first mounting slot is arranged opposite to the third mounting slot, and the locking member moves to be limitedly engaged with the first mounting slot; When the support assembly is in the second working state, the second mounting slot is arranged opposite to the third mounting slot, and the locking member moves to be limitedly engaged with the second mounting slot.

13. The mounting structure according to any one of claims 1 to 12, characterized in that: The other end of the first support member and / or the other end of the second support member is provided with a mounting portion.

14. The mounting structure according to any one of claims 1 to 12, characterized in that: One end of the first support member and one end of the second support member are both rotatably arranged on the mounting member. When the support assembly is in the second working state, the other end of the first support member and the other end of the second support member are relatively spaced apart.

15. A mounting housing, characterized in that: The mounting structure comprises the mounting structure according to any one of claims 1 to 14, and further comprises a shell body, wherein the mounting member is connected to the shell body.

16. A heating device, characterized in that: The mounting structure comprises any one of claims 1 to 14; Or including the mounting housing as claimed in claim 15.

Citation Information

Patent Citations

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