Incubator
By setting temperature acquisition and indication devices between the inner and outer boxes of the insulating box, the problems of inconvenient temperature measurement and affected insulation performance in the prior art are solved, and convenient temperature monitoring and efficient insulation effect are achieved.
Patent Information
- Application Number
- CN202110183686.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2021-02-10
- Publication Date
- 2025-05-06
- Estimated Expiration
- 2041-02-10
AI Technical Summary
The existing insulation box needs to open the cover when measuring the internal temperature, which causes inconvenience in temperature measurement and affects the insulation performance.
An insulating box including an inner box and an outer box is designed. The inner box is equipped with a temperature acquisition device and a temperature indicator device is provided on the outer box to realize real-time temperature acquisition and display through electrical connection.
This allows users to view the internal temperature without opening the lid of the insulating box, which improves the convenience of use and reduces the impact on the insulation performance.
Smart Images

Figure CN112830063B_ABST
Abstract
Description
Technical Field
[0001] The embodiments of the present invention relate to the field of heat preservation, and in particular to a heat preservation box. Background Art
[0002] In the existing incubator, if you need to know the temperature inside the incubator, you need to open the lid of the incubator and put a thermometer into the box to measure the temperature inside the box. This method is very troublesome, and the incubator needs to be opened every time the temperature is measured, which affects the temperature inside the incubator and reduces the insulation performance of the incubator. Summary of the invention
[0003] The purpose of the embodiments of the present invention is to provide an insulated box, which makes the temperature measurement very simple and practical, thereby improving the convenience of using the insulated box.
[0004] In order to solve the above technical problems, an embodiment of the present invention provides an incubator, comprising:
[0005] outer box;
[0006] an inner box, the inner box being operably disposed within the outer box;
[0007] A temperature collection device, wherein the temperature collection device is arranged in the inner box;
[0008] A temperature indicating device is arranged on the outer box and is operably electrically connected to the temperature collecting device.
[0009] Compared with the prior art, the embodiments of the present invention have an insulated box including a temperature collecting device arranged in an inner box and a temperature indicating device arranged on an outer box. The temperature in the inner box can be collected by the temperature collecting device, and the temperature collected by the temperature collecting device can be displayed by the temperature indicating device. Thus, the user can see the temperature in the insulated box at a glance, thereby improving the convenience of use of the insulated box.
[0010] In one embodiment, the incubator further comprises:
[0011] A first conductive terminal, which is disposed on the outer box and electrically connected to the temperature collection device;
[0012] a second conductive terminal, the second conductive terminal being disposed on the inner box and electrically connected to the temperature indicating device;
[0013] Wherein, the first conductive terminal is operably electrically connected to the second conductive terminal.
[0014] In one embodiment, the temperature collection device comprises a strip-shaped flexible member having a plurality of temperature detection elements distributed along the length direction thereof.
[0015] In one embodiment, each of the temperature collection devices is distributed at the end section of the strip-shaped flexible member, and the end section is a free section.
[0016] In one embodiment, the thermal insulation box further comprises a fixing member, which is disposed on the inner wall of the inner box and fixedly connected to a portion of the strip-shaped flexible member away from the free section.
[0017] In one embodiment, the fixing member has a clamping groove, the strip-shaped flexible member is partially located in the clamping groove, and the fixing member is on the inner wall of the inner box to press the strip-shaped flexible member against the inner wall of the inner box.
[0018] In one embodiment, the thermal insulation box further comprises a power module, and the power module is electrically connected to the temperature acquisition device and the temperature indicating device respectively.
[0019] In one embodiment, the thermal insulation box further comprises: a first active interface electrically connected to the temperature acquisition device, and a second active interface electrically connected to the temperature indicating device, wherein the first active interface is operably electrically connected to the second active interface.
[0020] In one embodiment, the incubator further comprises:
[0021] A first connector seat, which is disposed on the outer box and is equipped with the first conductive terminal;
[0022] A first adsorption portion, wherein the first adsorption portion is disposed on the first connector seat;
[0023] A second connector seat, the second connector seat is arranged on the inner box and is installed with the second conductive terminal;
[0024] The second adsorption portion is disposed on the second connector seat and can be operably adsorbed with the first adsorption portion.
[0025] In one embodiment, the first joint seat is movably mounted on the outer box, and / or the second joint seat is movably mounted on the inner box.
[0026] In one embodiment, the thermal insulation box further includes a first reset member, wherein the first reset member is disposed between the outer box and the first joint seat and can operably drive the first joint seat to move, and / or the thermal insulation box further includes a second reset member, and the second reset member is disposed between the inner box and the second joint seat and can operably drive the first joint seat to move.
[0027] In one embodiment, the thermal insulation box further comprises: a first connecting member, the first joint seat is provided with a first joint seat limiting portion, the outer box is provided with a first mounting portion, wherein the first joint seat limiting portion is movably mounted on the first mounting portion through the first connecting member;
[0028] The thermal insulation box further comprises: a second connecting member, the second joint seat is provided with a second joint seat limiting portion, the inner box is provided with a second mounting portion, wherein the second joint seat limiting portion is movably mounted on the second mounting portion via the second connecting member.
[0029] In one embodiment, the thermal insulation box further comprises: a first connecting member, the first joint seat is provided with a first joint seat limiting portion, the outer box is provided with a first mounting portion, wherein the first joint seat limiting portion is movably mounted on the first mounting portion through the first connecting member;
[0030] The thermal insulation box further comprises: a second connecting member, the second joint seat is provided with a second joint seat limiting portion, the inner box is provided with a second mounting portion, wherein the second joint seat limiting portion is movably mounted on the second mounting portion via the second connecting member.
[0031] In one embodiment, the first connector seat limiting portion has a first limiting hole, and the first mounting portion has a first limiting column;
[0032] Wherein, the first connecting member passes through the first limiting hole and is fixedly connected to the first limiting column, and there is a gap between the first limiting hole and the first limiting column in the radial direction;
[0033] and\or the second joint seat limiting portion has a second limiting hole, and the second mounting portion has a second limiting column;
[0034] The second connecting member passes through the second limiting hole and is fixedly connected to the second limiting column, and there is a gap in the radial direction between the second limiting hole and the second limiting column.
[0035] In one embodiment, there is a gap between the first limiting hole and the first limiting column in the axial direction;
[0036] And\or there is a gap in the axial direction between the second limiting hole and the second limiting column.
[0037] In one embodiment, the first connecting member includes: a first clamping portion and a first connecting portion, the first connecting portion passes through the first limiting hole and is fixedly connected to the first limiting column, the first clamping portion is arranged at an end of the first connecting portion away from the first limiting column and is clamped outside the first limiting hole;
[0038] And\or, the second connecting member includes: a second clamping portion and a second connecting portion, the second connecting portion passes through the second limiting hole and is fixedly connected to the second limiting column, the second clamping portion is arranged at one end of the second connecting portion away from the second limiting column and is clamped outside the second limiting hole.
[0039] In one embodiment, a first concave cavity is provided on the outer box, the first concave cavity has a first opening on the outer box, and the first opening faces the inner side of the outer box; the first conductive terminal is located in the first opening, and the first connector seat is located in the first concave cavity;
[0040] And\or, a second cavity is opened on the inner box, the second cavity has a second opening on the inner box, and the second opening faces the outside of the inner box; the second conductive terminal is located in the second opening, and the second connector seat is located in the second cavity.
[0041] In one embodiment, the incubator further comprises: the incubator further comprises a first reset member;
[0042] Wherein, the first resetting member is disposed on the side of the first connector seat facing the first opening, and is operable to drive the first connector seat to move and drive the first conductive terminal to retract into the first cavity;
[0043] And\or, the incubator further comprises: the incubator further comprises a second reset member;
[0044] The second resetting member is disposed on a side of the second connector seat facing the second opening, and can be operable to drive the second connector seat to move and drive the second conductive terminal to retract into the second cavity.
[0045] In one embodiment, the first restoring member is a first resilient member sleeved on the first limiting column or the first connecting member;
[0046] And\or, the second reset member is a second rebound member sleeved on the second limiting column or the second connecting member.
[0047] In one embodiment, the first resilient member is an annular spring, and a cross section of the annular spring gradually decreases from the first limiting hole to the outer box until the end of the annular spring away from the first limiting hole embraces the first limiting column or the first connecting member;
[0048] And\or, the second resilient member is an annular spring, and the cross-section of the annular spring gradually decreases from the second limiting hole to the inner box until the end of the annular spring away from the second limiting hole embraces the second limiting column or the second connecting member.
[0049] In one embodiment, the first connecting member, the first connector limiting portion and the first mounting portion are all plural;
[0050] And\or, the second connecting member, the second joint seat limiting portion and the second mounting portion are all multiple.
[0051] In one embodiment, at least two of the first connector seat limiting portions are arranged on two sides of the first connector seat in a direction perpendicular to the first connector seat;
[0052] And\or, at least two of the second joint seat limiting portions are arranged on both sides of the second joint seat in a direction perpendicular to the second joint seat.
[0053] In one embodiment, the first connector seat limiting portion is arranged at the periphery of the first connector seat, and / or the first connector seat limiting portion is arranged in the middle of the first connector seat.
[0054] In one embodiment, the second connector seat limiting portion is disposed on the periphery of the second connector seat;
[0055] And\or, the second joint seat limiting portion is arranged in the middle of the second joint seat.
[0056] In one embodiment, a second connecting seat is provided on the inner box, the second connecting seat defines a second accommodating cavity, and the second connector seat is disposed in the second accommodating cavity.
[0057] In one embodiment, the outer box comprises:
[0058] First base;
[0059] Two pairs of opposite first side panels connected to the first base;
[0060] A first cover, disposed opposite to the first base and covering each of the first side panels;
[0061] And\or, the inner box comprises:
[0062] Second base;
[0063] Two pairs of opposite second side panels connected to the second base;
[0064] A second cover, disposed opposite to the second base, and covering each of the second side panels;
[0065] Wherein, the temperature indicating device is arranged on any one of the first side panels and the first base.
[0066] In one embodiment, the outer box has a first cold storage component; and / or the first cover has a first cold storage component on a side facing the inner side of the outer box.
[0067] In one embodiment, the inner box has a second cold storage component; and / or the second cover has a second cold storage component on a side facing the inner box.
[0068] In one embodiment, the temperature indicating device is a display screen or a speaker. BRIEF DESCRIPTION OF THE DRAWINGS
[0069] One or more embodiments are exemplarily described by pictures in the corresponding drawings, and these exemplified descriptions do not constitute limitations on the embodiments. Elements with the same reference numerals in the drawings represent similar elements, and unless otherwise stated, the figures in the drawings do not constitute proportional limitations.
[0070] Figure 1 It is a schematic structural diagram of an incubator in an embodiment of the present invention;
[0071] Figure 2 It is a schematic structural diagram of an incubator in an embodiment of the present invention;
[0072] Figure 3 yes Figure 2 The enlarged view of point A in the middle;
[0073] Figure 4 It is a schematic structural diagram of an incubator in an embodiment of the present invention;
[0074] Figure 5 yes Figure 4 The enlarged view of point B in the middle;
[0075] Figure 6 It is a schematic diagram of the structure of the inner box in an embodiment of the present invention;
[0076] Figure 7 yes Figure 6 Enlarged view of point C in the middle;
[0077] Figure 8 It is a schematic diagram of the structure of the inner box in an embodiment of the present invention;
[0078] Fig. 9 yes Figure 8 The enlarged view of point D in the middle;
[0079] Fig.10 is a schematic structural diagram of an outer box in an embodiment of the present invention;
[0080] Fig.11 yes Fig.10 Enlarged view of point E in the middle;
[0081] Fig.12is a structural schematic diagram of a first base in an embodiment of the present invention;
[0082] Fig.13 yes Fig.12 The enlarged view of F in the middle;
[0083] Fig.14 It is a schematic diagram of the structure of the inner box in an embodiment of the present invention;
[0084] Fig.15 yes Fig.14 Enlarged view of G in the middle;
[0085] Fig.16 It is a schematic structural diagram of an incubator in an embodiment of the present invention;
[0086] Fig.17 yes Fig.16 Enlarged view of point H in the middle.
[0087] Description of reference numerals:
[0088] 1. Outer box; 11. First base; 111. First base body; 112. First concave cavity; 1121. First opening; 113. Cover plate; 12. Outer box body; 121. First side plate; 122. First cover; 2. Inner box; 21. Second base; 211. Second base body; 2111. Second connecting seat; 21111. Insert rod; 21112. Snap joint; 212. Second concave cavity; 2121. Second opening; 22. Inner box body; 221. Second side plate; 222. Second cover; 23. Fixing member; 231. Snap groove; 3. Temperature acquisition device; 31. Strip flexible member; 311. Free section; 32. Temperature detection element; 4. Temperature indicating device; 5. Power supply Module; 61, first connector seat; 611, first connector seat body; 62, first conductive terminal; 63, first adsorption portion; 64, first resilient member; 65, first circuit board; 66, first connector; 71, second connector seat; 711, second connector seat body; 72, second conductive terminal; 73, second adsorption portion; 74, second resilient member; 75, second circuit board; 76, second connector; 101, first limiting ring; 102, first limiting column; 103, first connecting member; 1031, first connecting portion; 1032, first clamping portion; 201, second limiting ring; 202, second limiting column; 203, second connecting member; 2031, second connecting portion; 2032, second clamping portion. DETAILED DESCRIPTION
[0089] In order to make the purpose, technical scheme and advantages of the embodiments of the present invention clearer, the following will be described in detail with reference to the accompanying drawings. However, it will be appreciated by those skilled in the art that in the various embodiments of the present invention, many technical details are provided in order to enable the reader to better understand the present application. However, even without these technical details and various changes and modifications based on the following embodiments, the technical scheme claimed in the present application can be implemented.
[0090] In the following description, certain specific details are set forth for the purpose of illustrating various disclosed embodiments to provide a thorough understanding of the various disclosed embodiments. However, those skilled in the relevant art will recognize that the embodiments may be practiced without one or more of these specific details. In other cases, well-known devices, structures, and techniques associated with the present application may not be shown or described in detail to avoid unnecessarily obscuring the description of the embodiments.
[0091] Unless the context requires otherwise, throughout the specification and claims, the word "comprise" and variations such as "include" and "have" should be construed in an open, inclusive sense, ie, should be interpreted as "including, but not limited to."
[0092] The following will be described in detail with reference to the accompanying drawings to provide a clearer understanding of the purpose, features and advantages of the present invention. It should be understood that the embodiments shown in the accompanying drawings are not intended to limit the scope of the present invention, but are only intended to illustrate the essential spirit of the technical solution of the present invention.
[0093] References throughout the specification to "one embodiment" or "an embodiment" indicate that a particular feature, structure, or characteristic described in connection with the embodiment is included in at least one embodiment. Thus, the appearances of "in one embodiment" or "in an embodiment" in various places throughout the specification are not necessarily all referring to the same embodiment. Furthermore, the particular features, structures, or characteristics may be combined in any manner in one or more embodiments.
[0094] As used in this specification and the appended claims, the singular forms "a," "an," and "the" include plural referents unless the context clearly dictates otherwise. It should be noted that the term "or" is generally employed in its sense including "and / or" unless the context clearly dictates otherwise.
[0095] In the following description, in order to clearly show the structure and working mode of the present invention, many directional words will be used for description, but the words "front", "back", "left", "right", "outside", "inside", "outward", "inward", "up", "down", etc. should be understood as convenient terms and should not be understood as restrictive terms.
[0096] The following describes an embodiment of the incubator of the present invention with reference to the accompanying drawings. Figure 1 and 6 As shown in 11, the thermal insulation device includes: an outer box 1, an inner box 2, a temperature collecting device 3 and a temperature indicating device 4, wherein the inner box 2 can be operably placed in the outer box 1, the inner box 2 can be taken out of the outer box 1, and can also be put into the outer box 1. Specifically, the temperature collecting device 3 is arranged in the inner box 2, and the temperature indicating device 4 is arranged on the outer box 1, and is operably electrically connected to the temperature collecting device 3.
[0097] Since the thermal insulation box includes a temperature collecting device 3 arranged in the inner box 2 and a temperature indicating device 4 arranged on the outer box 1, the temperature in the inner box 2 can be collected by the temperature collecting device 3, and the temperature collected by the temperature collecting device 3 can be displayed by the temperature indicating device 4, so that the user can see the temperature in the thermal insulation box at a glance, thereby improving the convenience of use of the thermal insulation box.
[0098] like Figure 2 and 3 As shown, the thermal insulation box also includes: a first conductive terminal 62 and a second conductive terminal 72, wherein the first conductive terminal 62 is arranged on the outer box 1 and is electrically connected to the temperature collecting device 3, and the second conductive terminal 72 is arranged on the inner box 2 and is electrically connected to the temperature indicating device 4, and the first conductive terminal 62 and the second conductive terminal 72 are operably electrically connected. When the inner box 2 is arranged in the outer box 1, the first conductive terminal 62 is plugged into the second conductive terminal 72 and they are electrically connected to each other, so that there is no need for manual plugging. When the inner box 2 is taken out of the outer box 1, the first conductive terminal 62 and the second conductive terminal 72 are automatically disconnected, and the electrical connection between the inner box 2 and the outer box 1 can be achieved through the first conductive terminal 62 and the second conductive terminal 72.
[0099] like Figure 6 and 7 As shown, the temperature collection device 3 includes a strip-shaped flexible member 31, which has a plurality of temperature detection elements 32 distributed along the length direction. An electric wire is arranged inside the strip-shaped flexible member 31, one end of the electric wire is electrically connected to the first conductive terminal 62, and the other end is electrically connected to each temperature detection element 32, and the temperature detection element 32 is a temperature sensor.
[0100] The temperature collection devices 3 are distributed at the end section of the strip flexible member 31 , which is a free section 311 , that is, the operator can place the end section with the temperature collection devices 3 at any position of the inner box 2 to measure the temperature of any area in the inner box 2 .
[0101] In order to place the strip flexible member 31, the staff pulls the strip flexible member 31 to place the end of the flexible member at any position, and pulls the wires connected to each temperature detection device off from the first conductive terminal 62, such as Figure 7As shown, the thermal insulation box further includes a fixing member 23 , which is disposed on the inner wall of the inner box 2 and fixedly connected to a portion of the strip-shaped flexible member 31 away from the free section 311 .
[0102] like Figure 8 and 9 As shown, the fixing member 23 has a snap-fit groove 231, and the strip-shaped flexible member 31 is partially located in the snap-fit groove 231. The fixing member 23 is on the inner wall of the inner box 2, and the strip-shaped flexible member 31 is pressed against the inner wall of the inner box 2. Specifically, the fixing member 23 is a fixing plate, and the side of the fixing plate is provided with a snap-fit groove 231. The fixing plate is fixed to the inner wall of the inner box 2, so that the strip-shaped flexible member 31 can be fixed.
[0103] Of course, in other embodiments, the fixing member 23 may also be other structures, such as a fixing block or a fixing bracket, as long as it does not depart from the scope of the present invention.
[0104] like Fig.10 and 11 As shown, the incubator further includes a power module 5, which is electrically connected to the temperature acquisition device 3 and the temperature indication device 4, respectively, to supply power to the temperature acquisition device 3 and the temperature indication device 4. The power module 5 can be fixed on the inner box 2 or on the outer box 1. Specifically, Fig.11 As shown, in this embodiment, the power module 5 is fixed on the wall of the outer box 1. Generally, a cavity is opened on the wall of the outer box 1, and the power module 5 is embedded in the cavity. Then, a cover plate 113 is used to cover the opening of the cavity. In addition, as shown in FIG. Fig.10 and 11 As shown, the power module 5 is electrically connected to the temperature indicating device 4, and the temperature indicating device 4 is electrically connected to the temperature collecting device 3. Because the temperature collecting device 3 requires very little electricity, electricity can be transmitted to the temperature collecting device 3 through the temperature indicating device 4, so that one less interface can be set between the first conductive terminal 62 and the second conductive terminal 72.
[0105] It should be noted that, in addition to being connected by the first conductive terminal 62 and the second conductive terminal 72, the temperature acquisition device 3 and the temperature indicating device 4 may also be connected by other means, as long as they do not depart from the scope of the present invention. For example, the insulated box further includes a first active interface electrically connected to the temperature acquisition device 3 and a second active interface electrically connected to the temperature indicating device 4, wherein the first active interface is operably electrically connected to the second active interface, the first active interface may be a male head electrically connected to the temperature acquisition device 3, the male head is connected to the temperature acquisition device 3 through an electric wire, and then a hole is opened on the box wall of the inner box 2, and the male head is exposed outside the inner box 2 through the opening, and at the same time, the second active interface is a female head electrically connected to the temperature indicating device 4, the female head is electrically connected to the temperature indicating device 4 through an electric wire, and the female head is placed in the outer box 1. When the inner box 2 is set in the outer box 1, the staff can manually plug the male head and the female head together to achieve electrical connection between the temperature acquisition device 3 and the temperature indicating device 4.
[0106] In this embodiment, the temperature indicating device 4 is a display screen having a built-in control system, which is electrically connected to the temperature collecting device 3, receives the temperature collected by the temperature collecting device 3, and then displays it on the display screen.
[0107] It should be noted that, in addition to being configured as the above-mentioned structure, the temperature acquisition device 3 and the temperature indicating device 4 may also be configured as other structures, as long as they do not depart from the scope of the present invention. For example, the temperature acquisition device 3 is a temperature sensor, which is fixed on the wall of the inner box 2. The temperature indicating device 4 may also include a control system and a plurality of indicator lights, each indicator light representing a temperature range. When the temperature is within the range of a certain indicator light, the control system controls the indicator light to light up. In addition, in other embodiments, the temperature indicating device 4 may also be a speaker with a control system, which may broadcast the temperature collected by the temperature acquisition device 3 at regular intervals through the speaker, or issue an alarm when the temperature exceeds a predetermined value.
[0108] ,like Figure 1As shown, the outer box 1 includes: a first base 11, two pairs of opposite first side panels 121 and a first cover 122, wherein the two pairs of opposite first side panels 121 are connected to the first base 11, the first cover 122 is arranged opposite to the first base 11, and covers each first side panel 121, and the inner box 2 includes: a second base 21, two pairs of opposite second side panels 221 and a second cover 222, the two pairs of opposite second side panels 221 are connected to the second base 21, the second cover 222 is arranged opposite to the second base 21, and covers each second side panel 221. Specifically, in this embodiment, the first conductive terminal 62 is arranged on the first base 11, the second conductive terminal 72 is arranged on the second base 21, and the temperature indicating device 4 is arranged on the first base 11. In order to install the temperature indicating device 4, as shown in FIG. Fig.11 As described, a concave cavity is opened on the outer surface of the first base 11, and the temperature indicating device 4 is embedded in the concave cavity. Of course, the temperature indicating device 4 can also be directly set on the outer surface of the first base 11. Of course, in other embodiments, the first conductive terminal 62 can also be set on any one of the first side plates 121, and the second conductive terminal 72 can also be set on any one of the second side plates 221. The temperature indicating device 4 is set on any one of the first side plates 121.
[0109] The outer box 1 has a first cold storage component, which is arranged on the side of the first cover 122 facing the inner part of the outer box 1. The first cover 122 has a first cover 122 body and a first cold storage component arranged on the first cover 122 body. The first cold storage component can also be arranged on the inner side of the first side plate 121 or the first base 11 of the outer box 1.
[0110] The inner box 2 has a second cold storage member, which is arranged on the side of the second cover 222 facing the inner box 2, and the second cover 222 has a second cover 222 body and a second cold storage member arranged on the second cover 222 body. The second cold storage member can also be arranged on the inner side of the second side plate 221 or the second base 21 of the outer box 1.
[0111] The first cold storage member and the second cold storage member are both cold storage plates filled with cold storage agent. The first cold storage member and the second cold storage member can be fixed on the outer box 1 or the inner box 2 by screws or gluing.
[0112] like Figure 4 and 5As shown, the thermal insulation box also includes: a first conductive terminal 62, a first connector seat 61, a first adsorption portion 63, a second conductive terminal 72, a second connector seat 71 and a second adsorption portion 73. The first connector seat 61 is installed on the first base 11 and is installed with the first conductive terminal 62. The first adsorption portion 63 is arranged on the first connector seat 61. The second conductive terminal 72 is operably electrically connected to the first conductive terminal 62. The second connector seat 71 is installed on the second base 21 and is installed with the second conductive terminal 72. The second adsorption portion 73 is arranged on the second connector seat 71 and is operably attracted and adsorbed with the first adsorption portion 63.
[0113] like Figures 12 to 17 As shown, the first connector seat 61 is also movably mounted on the first base 11, and\or the second connector seat 71 is also movably mounted on the second base 21. Since the thermal insulation box includes: a first adsorption portion 63 arranged on the first connector seat 61, a second adsorption portion 73 arranged on the second connector seat 71, and the first connector seat 61 is movably mounted on the first base 11, and\or the second connector seat 71 is movably mounted on the second base 21, the operator only needs to place the inner box 2 in the outer box 1 and keep the first connector seat 61 and the second connector seat 71 roughly aligned. In this way, the mutual attraction between the first adsorption portion 63 and the second adsorption portion 73 can be used to push the first connector seat 61 and\or the second connector seat 71 to move horizontally, so that the first conductive terminal 62 and the second conductive terminal 72 can be aligned and plugged, thereby greatly reducing the difficulty of the operator's operation.
[0114] The thermal insulation box further includes a first reset member, wherein the first reset member is arranged between the first base and the first joint seat 61 and can operably drive the first joint seat 61 to move, and / or the thermal insulation box further includes a second reset member, and the second reset member is arranged between the second base and the second joint seat 71 and can operably drive the first joint seat 61 to move.
[0115] The first joint seat can move toward or away from the second joint seat, and the second joint seat can also move toward or away from the first joint seat. In some embodiments, the first reset member can be a spring arranged below the first joint seat 61, one end of the spring is connected to the first joint seat 61, and the other end is connected to the part of the first base below the first joint seat 61. When the first adsorption portion 63 and the second adsorption portion 73 are mutually adsorbed, the spring is in a stretched state. When the first adsorption portion 63 and the second adsorption portion 73 are separated, the spring pulls the second joint seat 71 to move downward and return to the initial state. Similarly, the second reset member can also be a spring arranged above the second joint seat 71, one end of the spring is connected to the second joint seat 71, and the other end is connected to the part of the second base above the second joint seat 71. When the first adsorption portion 63 and the second adsorption portion 73 are mutually adsorbed, the spring is in a stretched state. When the first adsorption portion 63 and the second adsorption portion 73 are separated, the spring pulls the second joint seat 71 to move upward.
[0116] like Figures 12 to 17 As shown, the incubator further includes: a first connector 103, and at the same time, the first connector seat 61 is provided with a first connector seat 61 limiting portion, and the first base 11 is provided with a first mounting portion, wherein the first connector seat 61 limiting portion is movably mounted on the first mounting portion through the first connector 103, as shown in FIG. Figures 12 to 17 As shown, the incubator further includes: a second connecting member 203, the second joint seat 71 is provided with a second joint seat 71 limiting portion, the second base 21 is provided with a second mounting portion, wherein the second joint seat 71 limiting portion is movably mounted on the second mounting portion through the second connecting member 203.
[0117] like Fig.13 and 17 As shown, the limiting portion of the first joint seat 61 has a first limiting hole, and the first mounting portion has a first limiting column 102, wherein the first connecting member 103 passes through the first limiting hole and is fixedly connected to the first limiting column 102, and there is a radial gap between the first limiting hole and the first limiting column 102, and there is also an axial gap between the first limiting hole and the first limiting column 102. Of course, in some embodiments, there is only a radial gap between the first limiting hole and the first limiting column 102, and no axial gap, so that the first joint seat 61 can be translated on the first base 11.
[0118] In this embodiment, as shown in 13 and 17, the first connector seat 61 has a pair of limiting portions, and at the same time, the first mounting portion and the first connecting member 103 also have only one pair. Of course, in other embodiments, the first connector seat 61 limiting portion, the first mounting portion and the first connecting member 103 can each have only one or more, such as three or four, etc., as long as it does not depart from the scope of the present invention.
[0119] like Fig.13 and 17 As shown, in this embodiment, the first connector seat 61 includes: a first connector seat 61 body, a pair of first connector seat 61 limiting parts arranged on both sides of the first connector seat 61 body, and the pair of first connector seat 61 limiting parts are a pair of first limiting rings 101 extending outward from both sides of the first connector seat 61 body, and the axis of the first limiting ring 101 is perpendicular to the first connector seat 61 body. Of course, in some embodiments, the axis of the first limiting ring 101 can also be at a preset angle with the first connector seat 61 body, such as 85 degrees or 95 degrees, etc., as long as it does not depart from the scope of the present invention. Fig.13 and 17 As shown, the first base 11 includes: a first base 11 body, a pair of first mounting parts, each of which includes: a first limiting column 102, the first limiting column 102 extends from the first base 11 body to the first limiting ring 101, and is located in the first limiting ring 101, the first connecting member 103 passes through the first limiting hole of the first limiting ring 101 and is fixedly connected to the first limiting column 102, and the first connecting member 103 is also clamped on the end of the first limiting ring 101 away from the first limiting column 102. In the present embodiment, the first limiting column 102 is vertically located in the first limiting ring 101. Of course, in some embodiments, the first limiting column 102 can also be at an acute angle or an obtuse angle with the first limiting ring 101, for example, 85 or 95 degrees, etc., as long as it does not depart from the scope of the present invention.
[0120] like Fig.13 and 17 As shown, the inner radial dimension of the first limiting ring 101 is larger than the outer radial dimension of the first limiting column 102 and smaller than the radial dimension of the first connecting member 103, that is, the first limiting ring 101 on the first joint seat 61 can move parallel to the direction parallel to the first joint seat 61.
[0121] The first connecting member 103 includes: a first clamping portion 1032 and a first connecting portion 1031. The first connecting portion 1031 passes through the first limiting hole and is fixedly connected to the first limiting column 102. The first clamping portion 1032 is arranged at an end of the first connecting portion 1031 away from the first limiting column 102. The inner circumferential radial dimension of the first limiting ring 101 is smaller than the radial dimension of the first clamping portion 1032. The first clamping portion 1032 clamps the first limiting ring 101 to prevent the first limiting ring 101 from detaching from the first limiting column 102.
[0122] like Fig.13 and 17As shown, the first limiting ring 101 is a circular ring, the first limiting column 102 is a cylindrical rod, and the first clamping portion 1032 is a circular gasket. Of course, in some embodiments, the first limiting ring 101 can also be a square ring, the first limiting column 102 can be a square rod, and the first clamping portion 1032 can be a square piece. In general, the shapes of the first limiting ring 101, the first limiting column 102 and the first clamping portion 1032 can be adjusted according to actual needs as long as they do not depart from the scope of the present invention.
[0123] like Fig.13 and 17 As shown, the first connecting part 1031 is a first screw, which is threadedly connected to the first limiting column 102. The outer diameter of the stud of the first screw is also smaller than the inner diameter of the first limiting ring 101. The first limiting ring 101 can be mounted on the first limiting column 102 or on the stud of the first screw.
[0124] like Fig.13 and 17 As shown, in order to enable the first connector seat 61 to move up and down and make the first conductive terminal 62 actively move upward to connect with the second conductive terminal 72, the length of the first limiting column 102 is greater than the height of the first limiting ring 101. In this way, the first limiting ring 101 can move up and down on the first limiting column 102, or the sum of the length of the first limiting column 102 and the part of the stud of the first screw exposed outside the first limiting column 102 is greater than the height of the first limiting ring 101.
[0125] like Fig.13 and 17 As shown, a first cavity 112 is opened on the first base 11 body of the first base 11, and the first cavity 112 has a first opening 1121 on the first base 11, and the first opening 1121 is arranged toward the inner side of the outer box 1, and the first conductive terminal 62 is located in the first opening 1121, and the first opening 1121 is arranged relative to the first connector seat 61, and the first connector seat 61 is located in the first cavity 112. The first connector seat 61 can be hidden through the first cavity 112 to avoid interference between the first connector seat 61 and the second base 21 of the inner box 2 after the inner box 2 is placed in the outer box 1.
[0126] like Fig.13 and 17 As shown, generally speaking, in order to facilitate the opening of a concave cavity on the first base 11, a through hole is generally opened on the first base 11, and then a surface cover is used to seal the side of the through hole facing the outside of the outer box 1, thus forming a concave cavity.
[0127] The heat preservation box further includes: a first restoring member, which is disposed on the side of the first connector seat 61 facing the first opening 1121 and can operably drive the first connector seat 61 to move and drive the first conductive terminal 62 to retract into the first cavity 112 .
[0128] like Fig.13 and 17 As shown, the first limiting column 102 extends downward from the first base 11 body into the first limiting ring 101. Of course, in some embodiments, the first limiting column 102 may also extend upward from the first base 11 body into the first limiting ring 101. The first reset member is in pairs. Of course, in some embodiments, there may be only one or more first reset members. When there is one first reset member, the first reset member is sleeved on any one of the first limiting columns 102 or the first connecting member 103. Specifically, the paired first reset members are paired first resilient members 64. The paired first resilient members 64 are respectively sleeved on the two first limiting posts 102 or the two first connecting parts 1031 in the paired first mounting parts. When the first limiting posts 102 are longer, the first resilient members 64 are sleeved on the first limiting posts 102. When the first connecting parts 1031 are longer, the first resilient members 64 are sleeved on the first limiting posts 102. Alternatively, the first resilient members 64 are sleeved on both the first limiting posts 102 and the first connecting parts 1031. The first resilient members 64 are arranged above the first limiting ring 101 and respectively abut against the first base 11 and the first limiting ring 101. The first resilient members 64 are arranged so that when the first adsorption part 63 and the second adsorption part 73 are adsorbed, the first resilient members 64 are in a compressed state. When the first adsorption part 63 and the second adsorption part 73 are separated from each other, the first resilient members 64 push the first joint seat 61 to move downward and retract into the first concave cavity 112.
[0129] The first resilient member 64 is a first annular spring, and a cross section of the first annular spring gradually decreases from the first limiting hole to the first base 11 until the first annular spring embraces the first limiting column 102 or the first connecting member 103 at one end away from the first limiting hole.
[0130] like Fig.13 and 17 As shown, the first resilient member 64 is a first annular spring, which is a wire spring sleeve. The cross-section of the first annular spring gradually decreases from bottom to top until the upper section of the first annular spring embraces the first limiting column 102. Since the upper section of the first annular spring embraces the first limiting column 102, the first joint seat 61 moves, so that the first limiting column 102 and the first limiting ring 101 are not coaxially arranged, and when the first adsorption portion 63 and the second adsorption portion 73 are separated from each other, the first joint seat 61 can be reset by correcting the upper section of the first annular spring.
[0131] Of course, in other embodiments, in addition to the above structure, the first resilient member 64 may also be an elastic rubber ring, or an elastic sponge ring, or a combination of several elastic sheets, as long as it does not depart from the scope of the present invention.
[0132] It should be noted that the above-mentioned first joint seat 61 has a pair of limiting parts, and at the same time, the first mounting part and the first connecting member 103 also have only one pair, and the paired first joint 66 limiting parts are arranged on both sides of the first joint seat 61, that is, arranged on the periphery of the first joint seat 61. Of course, in other embodiments, the first joint seat 61 limiting part, the first mounting part and the first connecting member 103 can also be only one, and the first joint seat 61 limiting part is arranged in the middle position of the first joint seat 61 body, that is, a first limiting hole is opened in the middle position of the first joint seat 61 body, and the first mounting part is a first limiting column 102, and the first connecting member 103 passes through the first limiting hole and is fixedly connected to the first limiting column 102. Of course, in other embodiments, the first joint 66 limiting seats can be three or four, etc., and each first joint 66 limiting seat can be arranged around the first joint seat 61 body. It should be understood that the first joint seat 61 limiting part, the first mounting part and the first connecting member 103 can be arranged in other structures in addition to the above-mentioned structure, as long as it does not deviate from the scope of the present invention.
[0133] like Fig.15 and 17 As shown, the limiting portion of the second joint seat 71 has a second limiting hole, and the second mounting portion has a second limiting column 202, wherein the second connecting member 203 passes through the second limiting hole and is fixedly connected to the second limiting column 202, and there is a radial gap between the second limiting hole and the second limiting column 202, and there is also an axial gap between the second limiting hole and the second limiting column 202. Of course, in some embodiments, there is only a radial gap between the second limiting hole and the second limiting column 202, and no axial gap, so that the second joint seat 71 can be translated on the second base 21.
[0134] In this embodiment, the second joint seat 71 has a pair of limiting portions, and at the same time, the second mounting portion and the second connecting member 203 also have only a pair. Of course, in other embodiments, the second joint seat 71 limiting portion, the second mounting portion and the second connecting member 203 can have only one or more, such as three or four, etc., as long as it does not depart from the scope of the present invention.
[0135] like Fig.15 and 17As shown, in this embodiment, the second connector seat 71 includes: a second connector seat 71 body, a pair of second connector seat 71 limiting parts arranged on both sides of the second connector seat 71 body, and the pair of second connector seat 71 limiting parts are a pair of second limiting rings 201 extending outward from both sides of the second connector seat 71 body, and the axis of the second limiting ring 201 is perpendicular to the second connector seat 71 body. Of course, in some embodiments, the axis of the second limiting ring 201 can also be at a preset angle with the second connector seat 71 body, such as 85 degrees or 95 degrees, etc., as long as it does not depart from the scope of the present invention. Of course, in some embodiments,
[0136] like Fig.15 and 17 As shown, the second base 21 includes: a second base 21 body, a pair of second mounting parts, each second mounting part includes: a second limiting column 202, the second limiting column 202 extends from the second base 21 body to the second limiting ring 201, and is located in the second limiting ring 201, the second connecting member 203 passes through the second limiting hole of the second limiting ring 201 and is fixedly connected to the second limiting column 202, and the second connecting member 203 is also clamped on the end of the second limiting ring 201 away from the second limiting column 202. In this embodiment, the second limiting column 202 is vertically located in the second limiting ring 201. Of course, in some embodiments, the second limiting column 202 can also be at an acute angle or an obtuse angle with the second limiting ring 201, for example, 85 or 95 degrees, etc., as long as it does not depart from the scope of the present invention.
[0137] In this embodiment, if Figure 7 and 15 As shown in Figures 17, since the second base 21 of the inner box 2 is generally made of a material with lower hardness such as foam, the second base 21 of the inner box 2 has a second connecting seat 2111. The second connecting seat 2111 is made of a harder material, such as iron, stainless steel, etc., as long as it does not depart from the scope of the present invention. The second connecting seat 2111 has a second accommodating cavity, and the second connector seat 71 is arranged in the second accommodating cavity. The second mounting portion is arranged on the second connecting seat 2111 and is located at the bottom of the second accommodating cavity. The upper surface of the second connecting seat 2111 is provided with a plurality of connectors, such as Figure 7 As shown, each connector includes: an insertion rod 21111, a clamping joint 21112 at the end of the insertion rod 21111, the clamping joint 21112 is a cone and is coaxially fixedly connected to the insertion rod 21111, and each connector is inserted into the second base 21 body and clamped together with the second base 21 body.
[0138] like Fig.15 and 17As shown, the inner radial dimension of the second limiting ring 201 is larger than the outer radial dimension of the second limiting column 202 and smaller than the radial dimension of the second connecting member 203, that is, the second limiting ring 201 on the second joint seat 71 can move parallel to the direction parallel to the second joint seat 71.
[0139] The second connecting member 203 includes: a second clamping portion 2032 and a second connecting portion 2031, the second connecting portion 2031 passes through the second limiting hole and is fixedly connected to the second limiting column 202, the second clamping portion 2032 is arranged at the end of the second connecting portion 2031 away from the second limiting column 202, and the inner circumferential radial dimension of the second limiting ring 201 is smaller than the radial dimension of the second clamping portion 2032, then the second clamping portion 2032 clamps the second limiting ring 201 to prevent the second limiting ring 201 from detaching from the second limiting column 202.
[0140] like Fig.15 and 17 As shown, the second limiting ring 201 is a circular ring, the second limiting column 202 is a cylindrical rod, and the second clamping portion 2032 is a circular gasket. Of course, in some embodiments, the second limiting ring 201 can also be a square ring, the second limiting column 202 can be a square rod, and the second clamping portion 2032 can be a square piece. In general, the shapes of the second limiting ring 201, the second limiting column 202 and the second clamping portion 2032 can be adjusted according to actual needs as long as they do not depart from the scope of the present invention.
[0141] like Fig.15 and 17 As shown, the second connecting part 2031 is a second screw, which is threadedly connected to the second limiting column 202. The outer diameter of the stud of the second screw is also smaller than the inner diameter of the second limiting ring 201. The second limiting ring 201 can be mounted on the second limiting column 202 or on the stud of the second screw.
[0142] like Fig.15 and 17 As shown, in order to enable the second connector seat 71 to move up and down, so that the second conductive terminal 72 actively moves upward and docks with the second conductive terminal 72, the length of the second limiting column 202 is greater than the height of the second limiting ring 201. In this way, the second limiting ring 201 can move up and down on the second limiting column 202, or the sum of the length of the second limiting column 202 and the part of the second screw exposed outside the second limiting column 202 is greater than the height of the second limiting ring 201.
[0143] like Fig.15 and 17As shown, a second cavity 212 is provided on the second base 21 body of the second base 21, and the second cavity 212 has a second opening 2121 on the second base 21, and the second opening 2121 faces the outside of the inner box 2. When the inner box 2 is placed in the outer box 1, the second opening 2121 is arranged opposite to the first opening 1121 on the outer box 1, and the first cavity 112 is arranged on the upper surface of the first base 11, and the second cavity 212 is arranged on the lower surface of the second base 21. Since the first opening 1121 and the second opening 2121 are arranged opposite to each other, when the inner box 2 is placed in the outer box 1, the first conductive terminal 62 can be plugged into the second conductive terminal 72 by the weight of the inner box 2.
[0144] like Fig.15 and 17 As shown, the second connecting seat 2111 is inserted into the bottom of the second cavity 212, and the second conductive terminal 72 is located in the second opening 2121. The second opening 2121 is arranged relative to the second connector seat 71. The second connector seat 71 is located in the second cavity 212. The second connector seat 71 can be hidden through the second cavity 212 to avoid interference between the second connector seat 71 and the second base 21.
[0145] The heat preservation box further includes: a second restoring member, which is disposed on the side of the second connector seat 71 facing the second opening 2121 and can operably drive the second connector seat 71 to move and drive the second conductive terminal 72 to retract into the second cavity 212 .
[0146] like Fig.15 and 17As shown, the second limiting column 202 extends downward from the second connecting seat 2111 into the second limiting ring 201, and the second reset member is in pairs. Of course, in some embodiments, the second reset member can also be only one or more. When the second reset member is one, the second reset member is sleeved on any second limiting column 202 or the second connecting member 203. Specifically, the paired second reset members are paired second rebound members 74, and the paired second rebound members 74 are respectively sleeved in the paired second mounting portions. On the two second limiting posts 202 or the two second connecting parts 2031, when the second limiting posts 202 are longer, the second resilient member 74 is sleeved on the second limiting posts 202, when the second connecting part 2031 is longer, the second resilient member 74 is sleeved on the second limiting posts 202 and the second connecting part 2031, or the second resilient member 74 is sleeved on the second limiting posts 202 and the second connecting part 2031 at the same time, the second resilient member 74 is arranged below the second limiting ring 201, and respectively abuts against the second clamping part 2032 and the second limiting ring 201. The second resilient member 74 is arranged so that when the second adsorption part 73 is adsorbed on the second adsorption part 73, it is in a compressed state, and when the second adsorption part 73 is separated from the second adsorption part 73, the second resilient member 74 pushes the second joint seat 71 to move upward and retract into the second concave cavity 212.
[0147] The second resilient member 74 is a second annular spring, and the cross-section of the second annular spring gradually decreases from the second limiting hole to the second base 21 until the second annular spring embraces the second limiting column 202 or the second connecting member 203 at one end away from the second limiting hole.
[0148] like Fig.15 and 17 As shown, the second rebound member 74 is a second annular spring, which is a wire spring sleeve. The cross-section of the second annular spring gradually decreases from bottom to top until the upper section of the second annular spring embraces the second limiting column 202. Since the upper section of the second annular spring embraces the second limiting column 202, the second joint seat 71 moves, so that the second limiting column 202 and the second limiting ring 201 are not coaxially arranged, and when the second adsorption portion 73 is separated from the second adsorption portion 73, the second joint seat 71 can be reset by correcting the upper section of the second annular spring.
[0149] Of course, in other embodiments, in addition to the above structure, the second resilient member 74 may also be an elastic rubber ring, or an elastic sponge ring, or a combination of several elastic sheets, as long as it does not depart from the scope of the present invention.
[0150] It should be noted that the above-mentioned second joint seat 71 has a pair of limiting parts, and at the same time, the second mounting part and the second connecting member 203 also have only one pair, and the paired second joint 76 limiting parts are arranged on both sides of the second joint seat 71, that is, arranged on the periphery of the second joint seat 71. Of course, in other embodiments, the second joint seat 71 limiting part, the second mounting part and the second connecting member 203 can also be only one, and the second joint seat 71 limiting part is arranged in the middle position of the second joint seat 71 body, that is, a second limiting hole is opened in the middle position of the second joint seat 71 body, and the second mounting part is a second limiting column 202, and the second connecting member 203 passes through the second limiting hole and is fixedly connected to the second limiting column 202. Of course, in other embodiments, the second joint 76 limiting seats can be three or four, etc., and each second joint 76 limiting seat can be arranged around the second joint seat 71 body. It should be understood that the second joint seat 71 limiting part, the second mounting part and the second connecting member 203 can be arranged in addition to the above-mentioned structure. Other structures can also be provided, as long as they do not deviate from the scope of the present invention.
[0151] like Fig.13 , 15 As shown in 17, the thermal insulation box also includes: a first circuit board 65 arranged on the first connector seat 61, the first circuit board 65 is electrically connected to the first conductive terminal 62, and the electronic components on the first base 11 can be electrically connected to the first circuit board 65. When the first circuit board 65 is provided, the information indication device is electrically connected to the first circuit board 65.
[0152] like Fig.13 , 15 As shown in FIG. 17 , the incubator further includes: a second circuit board 75 disposed on the second connector seat 71, the second circuit board 75 being electrically connected to the second conductive terminal 72, and the electronic components on the second base 21 can be electrically connected to the second circuit board 75. When the second circuit board 75 is provided, the information collection device is electrically connected to the second circuit board 75. Since the first conductive terminal 62 is electrically connected to the second conductive terminal 72, the electrical connection between the electronic components on the first base 11 and the electronic components on the second base 21 can be achieved.
[0153] The first conductive terminal 62 and the second conductive terminal 72 may both be connection terminals, or may be male and female terminals respectively.
[0154] like Fig.13 , 15 As shown in Figure 17, any one of the first adsorption part 63 and the second adsorption part 73 is a magnet, and the other is a magnetic conductor. For example, the first adsorption part 63 is a magnet, and the second magnet part is a magnetic conductor. The magnet can be an electromagnet or a permanent magnet, and the magnetic conductor can be an iron block, a silicon steel block, stainless steel, etc. It should be understood that the magnet and the magnetic conductor can also be other materials as long as they do not depart from the scope of the present invention.
[0155] In addition, there may be a plurality of first adsorption parts 63 , and similarly, there may be a plurality of second adsorption parts 73 , and the plurality of first adsorption parts 63 and the plurality of second adsorption parts 73 attract and adsorb each other.
[0156] like Fig.13 , 15 As shown in FIG. 17 , in this embodiment, there are two first adsorption portions 63 , which are relatively arranged on both sides of the first conductive terminal 62 , and there are two second adsorption portions 73 , which are relatively arranged on both sides of the second conductive terminal 72 .
[0157] In order to fix the first adsorption portion 63 and the first conductive terminal 62 , the heat preservation box further includes: a first connector 66 disposed above the first connector seat 61 , and the first adsorption portion 63 and the first conductive terminal 62 are both fixed on the first connector 66 .
[0158] At the same time, if Fig.13 , 15 As shown in FIG. 17 , in order to fix the second adsorption portion 73 and the second conductive terminal 72 , the heat preservation box further includes: a second connector 76 disposed below the second connector seat 71 , and the second adsorption portion 73 and the second conductive terminal 72 are both fixed on the second connector 76 .
[0159] like Fig.13 , 15 As shown in FIG. 17 , the first circuit board 65 is fixed below the first connector seat 61 . To facilitate the electrical connection between the first conductive terminal 62 and the first circuit board 65 , a through hole is provided on the first connector seat 61 , and the first conductive terminal 62 is electrically connected to the first circuit board 65 through the through hole.
[0160] like Fig.13 , 15 As shown in FIG. 17 , the second circuit board 75 is fixed above the second connector seat 71 . To facilitate the electrical connection between the second conductive terminal 72 and the second circuit board 75 , a through hole is provided on the second connector seat 71 , and the second conductive terminal 72 is electrically connected to the second circuit board 75 through the through hole.
[0161] It should be noted that in addition to the above-mentioned structure, it should be understood that other structures can also be adopted for the limiting portion and the first mounting portion of the first joint seat 61. For example, the limiting portion of the first joint seat 61 is exchanged with the first mounting portion, that is, the first mounting portion is a first limiting ring 101, and the limiting portion of the first joint seat 61 is a first limiting column 102. At the same time, the thermal insulation box also includes a first connecting member 103, and the first connecting member 103 is inserted into the first limiting ring 101 and connected to the first limiting column 102, and the inner diameter of the first limiting ring 101 is larger than the outer diameter of the first limiting column 102, or the inner diameter of the first limiting ring 101 is larger than the outer diameter of the first connecting member 103 inserted into the first limiting ring 101, so that the first joint seat 61 can also move.
[0162] In addition to the above-mentioned structure, it should be understood that other structures can also be adopted for the limiting portion of the second joint seat 71 and the second mounting portion. For example, the limiting portion of the second joint seat 71 is exchanged with the second mounting portion, that is, the second mounting portion is a second limiting ring 201, and the limiting portion of the second joint seat 71 is a second limiting column 202. At the same time, the thermal insulation box also includes a second connecting member 203, and the second connecting member 203 is inserted into the second limiting ring 201 and connected to the second limiting column 202, and the inner diameter of the second limiting ring 201 is larger than the outer diameter of the second limiting column 202, or the inner diameter of the second limiting ring 201 is larger than the outer diameter of the second connecting member 203 inserted into the second limiting ring 201, so that the second joint seat 71 can also move.
[0163] Preferred embodiments of the present invention have been described above in detail, but it should be understood that aspects of the embodiments can be modified, if necessary, to employ aspects, features and concepts of the various patents, applications and publications to provide further embodiments.
[0164] These and other changes can be made to the embodiments in light of the above detailed description.In general, in the claims, the terms used should not be considered limited to the specific embodiments disclosed in the specification and the claims, but should be construed to include all possible embodiments along with the full scope of equivalents to which these claims are entitled.
[0165] Those skilled in the art will appreciate that the above-mentioned embodiments are specific examples for implementing the present invention, and in actual applications, various changes may be made thereto in form and detail without departing from the spirit and scope of the present invention.
Claims
1. An insulated box, characterized in that: The incubator comprises: outer box; an inner box, the inner box being operably disposed within the outer box; A temperature collection device, wherein the temperature collection device is arranged in the inner box; A temperature indicating device, which is disposed on the outer box and is operably electrically connected to the temperature collecting device; The incubator also includes: A first conductive terminal, which is disposed on the outer box and electrically connected to the temperature collection device; a second conductive terminal, the second conductive terminal being disposed on the inner box and electrically connected to the temperature indicating device; wherein the first conductive terminal is operably electrically connected to the second conductive terminal; The incubator also includes: A first connector seat, which is disposed on the outer box and is equipped with the first conductive terminal; A first adsorption portion, wherein the first adsorption portion is disposed on the first connector seat; A second connector seat, the second connector seat is arranged on the inner box and is installed with the second conductive terminal; The second adsorption portion is disposed on the second connector seat and can be operably adsorbed with the first adsorption portion.
2. The thermal insulation box according to claim 1, characterized in that: The temperature collection device comprises a strip-shaped flexible member, and the strip-shaped flexible member has a plurality of temperature detection elements distributed along the length direction thereof.
3. The thermal insulation box according to claim 2, characterized in that: Each of the temperature collection devices is distributed at the end section of the strip-shaped flexible member, and the end section is a free section.
4. The thermal insulation box according to claim 3, characterized in that: The thermal insulation box also includes a fixing piece, which is arranged on the inner wall of the inner box and fixedly connected to a portion of the strip-shaped flexible piece away from the free section.
5. The thermal insulation box according to claim 4, characterized in that: The fixing member is provided with a clamping groove, the strip-shaped flexible member is partially located in the clamping groove, and the fixing member is on the inner wall of the inner box to press the strip-shaped flexible member against the inner wall of the inner box.
6. The thermal insulation box according to claim 1, characterized in that: The incubator further comprises a power module, and the power module is electrically connected to the temperature acquisition device and the temperature indicating device respectively.
7. The thermal insulation box according to claim 1, characterized in that: The incubator further comprises: a first active interface electrically connected to the temperature acquisition device, and a second active interface electrically connected to the temperature indicating device, wherein the first active interface is operably electrically connected to the second active interface.
8. The thermal insulation box according to claim 1, characterized in that: The first joint seat is movably mounted on the outer box, and / or the second joint seat is movably mounted on the inner box.
9. The thermal insulation box according to claim 1, characterized in that: The thermal insulation box further includes a first reset member, wherein the first reset member is arranged between the outer box and the first joint seat and can operably drive the first joint seat to move, and / or the thermal insulation box further includes a second reset member, and the second reset member is arranged between the inner box and the second joint seat and can operably drive the first joint seat to move.
10. The thermal insulation box according to claim 9, characterized in that: The thermal insulation box further comprises: a first connecting member, the first joint seat is provided with a first joint seat limiting portion, the outer box is provided with a first mounting portion, wherein the first joint seat limiting portion is movably mounted on the first mounting portion through the first connecting member; The thermal insulation box further comprises: a second connecting member, the second joint seat is provided with a second joint seat limiting portion, the inner box is provided with a second mounting portion, wherein the second joint seat limiting portion is movably mounted on the second mounting portion via the second connecting member.
11. The thermal insulation box according to claim 8, characterized in that: The thermal insulation box further comprises: a first connecting member, the first joint seat is provided with a first joint seat limiting portion, the outer box is provided with a first mounting portion, wherein the first joint seat limiting portion is movably mounted on the first mounting portion through the first connecting member; The thermal insulation box further comprises: a second connecting member, the second joint seat is provided with a second joint seat limiting portion, the inner box is provided with a second mounting portion, wherein the second joint seat limiting portion is movably mounted on the second mounting portion via the second connecting member.
12. The thermal insulation box according to claim 11, characterized in that: The first joint seat limiting portion has a first limiting hole, and the first mounting portion has a first limiting column; Wherein, the first connecting member passes through the first limiting hole and is fixedly connected to the first limiting column, and there is a gap between the first limiting hole and the first limiting column in the radial direction; and\or the second joint seat limiting portion has a second limiting hole, and the second mounting portion has a second limiting column; The second connecting member passes through the second limiting hole and is fixedly connected to the second limiting column, and there is a gap in the radial direction between the second limiting hole and the second limiting column.
13. The thermal insulation box according to claim 12, characterized in that: There is a gap between the first limiting hole and the first limiting column in the axial direction; And\or there is a gap in the axial direction between the second limiting hole and the second limiting column.
14. The thermal insulation box according to claim 12, characterized in that: The first connecting member comprises: a first clamping portion and a first connecting portion, the first connecting portion passes through the first limiting hole and is fixedly connected to the first limiting column, the first clamping portion is arranged at an end of the first connecting portion away from the first limiting column and is clamped outside the first limiting hole; And\or, the second connecting member includes: a second clamping portion and a second connecting portion, the second connecting portion passes through the second limiting hole and is fixedly connected to the second limiting column, the second clamping portion is arranged at one end of the second connecting portion away from the second limiting column and is clamped outside the second limiting hole.
15. The thermal insulation box according to claim 12, characterized in that: A first concave cavity is formed on the outer box, and the first concave cavity has a first opening on the outer box, and the first opening faces the inner side of the outer box; the first conductive terminal is located in the first opening, and the first connector seat is located in the first concave cavity; And\or, a second cavity is opened on the inner box, the second cavity has a second opening on the inner box, and the second opening faces the outside of the inner box; the second conductive terminal is located in the second opening, and the second connector seat is located in the second cavity.
16. The thermal insulation box according to claim 15, characterized in that: The incubator further comprises: the incubator further comprises a first reset member; Wherein, the first resetting member is disposed on the side of the first connector seat facing the first opening, and is operable to drive the first connector seat to move and drive the first conductive terminal to retract into the first cavity; And\or, the incubator further comprises: the incubator further comprises a second reset member; The second resetting member is disposed on a side of the second connector seat facing the second opening, and can be operable to drive the second connector seat to move and drive the second conductive terminal to retract into the second cavity.
17. The thermal insulation box according to claim 16, characterized in that: The first restoring member is a first resilient member sleeved on the first limiting column or the first connecting member; And\or, the second reset member is a second rebound member sleeved on the second limiting column or the second connecting member.
18. The thermal insulation box according to claim 17, characterized in that: The first resilient member is an annular spring, and the cross section of the annular spring gradually decreases from the first limiting hole to the outer box until the end of the annular spring away from the first limiting hole embraces the first limiting column or the first connecting member; And\or, the second resilient member is an annular spring, and the cross-section of the annular spring gradually decreases from the second limiting hole to the inner box until the end of the annular spring away from the second limiting hole embraces the second limiting column or the second connecting member.
19. The thermal insulation box according to claim 10 or 11, characterized in that: There are multiple first connecting members, multiple first connector seat limiting parts, and multiple first mounting parts; And\or, the second connecting member, the second joint seat limiting portion and the second mounting portion are all multiple.
20. The thermal insulation box according to claim 19, characterized in that: At least two of the first connector seat limiting portions are arranged on two sides of the first connector seat in a direction perpendicular to the first connector seat; And\or, at least two of the second joint seat limiting portions are arranged on both sides of the second joint seat in a direction perpendicular to the second joint seat.
21. The thermal insulation box according to claim 10 or 11, characterized in that: The first joint seat limiting portion is arranged at the periphery of the first joint seat, and / or the first joint seat limiting portion is arranged in the middle of the first joint seat.
22. The thermal insulation box according to claim 10 or 11, characterized in that: The second joint seat limiting portion is arranged at the periphery of the second joint seat; And\or, the second joint seat limiting portion is arranged in the middle of the second joint seat.
23. The thermal insulation box according to claim 1, characterized in that: The inner box is provided with a second connecting seat, the second connecting seat defines a second accommodating cavity, and the second connector seat is arranged in the second accommodating cavity.
24. The thermal insulation box according to claim 1, characterized in that: The outer box includes: First base; Two pairs of opposite first side panels connected to the first base; A first cover, disposed opposite to the first base and covering each of the first side panels; And\or, the inner box comprises: Second base; Two pairs of opposite second side panels connected to the second base; A second cover, disposed opposite to the second base, and covering each of the second side panels; Wherein, the temperature indicating device is arranged on any one of the first side panels and the first base.
25. The thermal insulation box according to claim 24, characterized in that: The outer box has a first cold storage component; and / or the first cover has a first cold storage component on a side facing the inner side of the outer box.
26. The thermal insulation box according to claim 24, characterized in that: The inner box has a second cold storage member; and / or the second cover has a second cold storage member on a side facing the inner box.
27. The insulated box according to claim 1, characterized in that: The temperature indicating device is a display screen or a speaker.
Citation Information
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