JP2020183853A - Temperature adjustable box - Google Patents

Temperature adjustable box Download PDF

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JP2020183853A
JP2020183853A JP2019096431A JP2019096431A JP2020183853A JP 2020183853 A JP2020183853 A JP 2020183853A JP 2019096431 A JP2019096431 A JP 2019096431A JP 2019096431 A JP2019096431 A JP 2019096431A JP 2020183853 A JP2020183853 A JP 2020183853A
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rod
slide
groove
chamber
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JP6656537B1 (en
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銭▲こく▼臣
Guochen Qian
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Guangzhou Chengcheng Intelligent Technology Co Ltd
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    • GPHYSICS
    • G05CONTROLLING; REGULATING
    • G05DSYSTEMS FOR CONTROLLING OR REGULATING NON-ELECTRIC VARIABLES
    • G05D23/00Control of temperature
    • G05D23/19Control of temperature characterised by the use of electric means
    • G05D23/30Automatic controllers with an auxiliary heating device affecting the sensing element, e.g. for anticipating change of temperature

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  • General Physics & Mathematics (AREA)
  • Engineering & Computer Science (AREA)
  • Automation & Control Theory (AREA)
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  • Control Of Temperature (AREA)
  • Devices For Warming Or Keeping Food Or Tableware Hot (AREA)
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Abstract

To provide a temperature adjustable box.SOLUTION: A temperature adjustable box comprises a box body. The box body is provided with a heat insulation chamber opened ahead, and the part of the opening of the heat insulation chamber can be perfectly closed by hand. The inside of the box body is provided with a selection chamber located at the lower edge of the heat insulation chamber and opened ahead, and the inner wall of the selection chamber is provided with six heating apparatuses symmetric to the center. By controlling the quantity of heating apparatuses in a storage space, the purpose of temperature control is attained, and, by placing an object, a facility is automatically started and operated, thereby providing convenience in operation.SELECTED DRAWING: Figure 1

Description

本発明は生活用品技術分野を取り上げて、具体的には温度調節可能の箱である。 The present invention takes up the technical field of daily necessities, and specifically is a temperature-adjustable box.

現在ほとんどの市販の温度を調節できる貯蔵箱は、実験室の専用設備であり、一般人にとって販売価格が高く、実用性が高くない。従って、便利に操作でき、且つ精確に温度を調節できる箱が発展と伴ってますます必要とされる。 Currently, most commercially available temperature-regulated storage boxes are dedicated laboratory equipment, which are expensive and not practical for the general public. Therefore, with the development, a box that can be operated conveniently and can control the temperature accurately is required more and more.

中国特許出願公開第103610586号明細書Chinese Patent Application Publication No. 103610586

本発明の目的は温度調節可能の箱を提供し、それは上記の現在の技術中の問題を解決できる。 An object of the present invention provides a temperature controllable box, which can solve the problems in the current art described above.

本発明の温度調節可能の箱は、箱本体を含み、前記箱本体の中には前方に開口した保温チャンバが設けられ、前記保温チャンバの開口のところが手動で完全に閉鎖でき、前記箱本体の中には前記保温チャンバの下端に位置しており、且つ前方に開口した選択チャンバが設けられ、前記選択チャンバの内壁には中心に対称的な六つの加熱装置が設けられ、前記選択チャンバの頂端内壁には環状排列のスライド穴が連通しており、前記スライド穴の中には前記加熱装置と当接しているゴム膜が設けられ、前記選択チャンバの中には中心に対称的な六つのスライド溝が設けられ、前記スライド溝の中には支持ロッドがスライドできるように連結され、前記支持ロッドのうち反時計回りの片側と前記スライド溝の内壁との間には抵抗バネが連結され、前記支持ロッドのうち対称中心に隣接する一端には前記加熱装置をコントロールする昇降装置が設けられ、前記支持ロッドのうち時計回り方向の片側には前記昇降装置をコントロールする貼合装置が設けられ、前記保温チャンバの底端内壁には上方に開口した隠れ溝が設けられ、前記隠れ溝の底端内壁には前記昇降装置をコントロールする選択装置がスライドできるように連結されており、
温度の要求により、前記選択装置を変え、物を前記保温チャンバの中に置き、重力によって前記選択装置を下に押し動かし、前記昇降装置の反転が前記貼合装置にコントロールされ、前記昇降装置と前記加熱装置とを噛合し連結し、これにより前記加熱装置を保温チャンバの中まで対応する数量で上に移動させ、加熱し保温する。
The temperature-adjustable box of the present invention includes a box body, and a heat-retaining chamber that opens forward is provided in the box body, and the opening of the heat-retaining chamber can be completely closed manually. A selection chamber located at the lower end of the heat insulation chamber and open to the front is provided inside, and six heating devices symmetrical to the center are provided on the inner wall of the selection chamber, and the top end of the selection chamber is provided. An annular arrangement of slide holes communicates with the inner wall, a rubber film in contact with the heating device is provided in the slide holes, and six slides symmetrical to the center are provided in the selection chamber. A groove is provided, and a support rod is connected so as to be slidable in the slide groove, and a resistance spring is connected between one side of the support rod counterclockwise and the inner wall of the slide groove. An elevating device for controlling the heating device is provided at one end of the support rod adjacent to the center of symmetry, and a laminating device for controlling the elevating device is provided on one side of the support rod in the clockwise direction. A hidden groove opened upward is provided on the inner wall of the bottom end of the heat insulating chamber, and a selection device for controlling the elevating device is connected to the inner wall of the bottom end of the hidden groove so as to slide.
Depending on the temperature requirement, the selection device is changed, an object is placed in the heat insulation chamber, the selection device is pushed down by gravity, and the reversal of the lifting device is controlled by the bonding device, and the lifting device and the lifting device are controlled. The heating device is meshed and connected, whereby the heating device is moved up into the heat retaining chamber in a corresponding quantity to heat and keep warm.

優選の技術プランとして、前記加熱装置は前記選択チャンバの内壁に設けられた横梁を含み、前記横梁には斜鋸歯状付き柱がスライドできるように連結され、前記斜鋸歯状付き柱の上端には前記スライド穴とスライドできるように連結された加熱棒が設けられ、前記加熱棒の下側と前記横梁の上側との間には引張バネが連結されており、
前記加熱棒が前記ゴム膜を通し、且つ前記保温チャンバの中に伸びて加熱し、前記加熱棒が前記保温チャンバの中に伸びる数量の違いによって温度をコントロールする。
As a preferred technical plan, the heating device includes a cross beam provided on the inner wall of the selection chamber, the cross beam is connected so that a slanted serrated column can slide, and the upper end of the slanted serrated column is connected. A heating rod connected to the slide hole so as to be slidable is provided, and a tension spring is connected between the lower side of the heating rod and the upper side of the cross beam.
The heating rod passes through the rubber film and extends into the heat retaining chamber to heat, and the temperature is controlled by the difference in the number of the heating rod extending into the heat retaining chamber.

優選の技術プランとして、前記昇降装置は前記支持ロッドに設けられて対称中心に近接する六角盤を含み、前記六角盤の中には中心に対称的な六つのスライドレールが設けられ、前記スライドレールの中にはスライドロッドがスライドできるように連結され、前記スライドロッドのうち対称中心から離れている側と前記スライドレールの内壁との間には圧縮バネが連結され、前記スライドロッドの上端には前記六角盤の上端に位置している副押しブロックが設けられ、前記スライドロッドの下端には連結ブロックが設けられ、前記連結ブロックの中には下方に開口した貫通溝が設けられ、前記貫通溝の中には固定軸が回転できるように連結され、前記固定軸には前記斜鋸歯状付き柱と噛合し連結された反転ロッドが設けられており、
前記選択装置によってまず前記反転ロッドを円の四分の一に回転させ、そして前記スライドロッドが互い離れている片側の方向にスライドすることにより、前記反転ロッドを移動させ、噛合伝動により前記加熱装置を上に移動させる。
As a preferential technical plan, the elevating device includes a hexagonal disc provided on the support rod and close to the center of symmetry, and six slide rails symmetrical in the center are provided in the hexagonal disc, and the slide rails are provided. A slide rod is connected so as to be slidable inside, and a compression spring is connected between the side of the slide rod distant from the center of symmetry and the inner wall of the slide rail, and the upper end of the slide rod is connected. An auxiliary push block located at the upper end of the hexagonal board is provided, a connecting block is provided at the lower end of the slide rod, and a through groove opened downward is provided in the connecting block. Inside, the fixed shaft is connected so as to be rotatable, and the fixed shaft is provided with an inversion rod that is meshed with and connected to the oblique sawtooth column.
The reversing rod is first rotated by the selection device in a quarter of a circle, and then the reversing rod is moved by sliding the slide rods in the direction of one side away from each other, and the heating device is subjected to mesh transmission. Move up.

優選の技術プランとして、前記貼合装置は前記支持ロッドの時計回り側に設けられた開口溝を含み、前記開口溝の中には上下に伸びている回転軸が回転できるように連結され、前記回転軸には回転ロッドが設けられ、前記回転ロッドと前記開口溝との間にはねじりバネが連結され、前記回転ロッドには前記反転ロッドと当接している対称的な押しロッドが設けられ、その中、対称中心に近接する側の前記押しロッドの長さが対称中心から離れている側の前記押しロッドの長さより短く、
前記押しロッドの回転により、前記反転ロッドと前記斜鋸歯状付き柱とを噛合し連結する。
As a preferred technical plan, the laminating device includes an opening groove provided on the clockwise side of the support rod, and a rotating shaft extending vertically is connected in the opening groove so as to be rotatable. A rotary rod is provided on the rotary shaft, a torsion spring is connected between the rotary rod and the opening groove, and the rotary rod is provided with a symmetrical push rod in contact with the reversing rod. Among them, the length of the push rod on the side close to the center of symmetry is shorter than the length of the push rod on the side away from the center of symmetry.
The rotation of the push rod meshes and connects the reversing rod and the oblique serrated column.

優選の技術プランとして、前記選択装置は前記隠れ溝の底端内壁にスライドできるように連結された伝動ロッドを含み、前記伝動ロッドにはスイッチ板が設けられ、前記スイッチ板の下端と前記隠れ溝の底端内壁との間には抑えバネが連結され、前記伝動ロッドには前記副押しブロックと当接している主押しブロックが設けられ、前記主押しブロックには中心に対称的な六つの昇降ロッドがスライドできるように連結され、前記昇降ロッドの下端には前記反転ロッドと当接している駆動ブロックが設けられ、前記伝動ロッドには前記主押しブロックの上端に位置している二つの引掛り溝が設けられ、前記引掛り溝には前記引掛り溝と当接している引掛りロッドが設けられ、前記引掛りロッドの下端には前記昇降ロッドとスライドできるように連結されたロック解除溝が設けられ、前記昇降ロッドのうち対称中心に近接する側と前記ロック解除溝の内壁との間には復帰バネが連結されており、
温度に対する要求により、手動で対応する数量の前記引掛りロッドを前記引掛り溝の外にスライド出させ、また、前記伝動ロッドが下に移動することにより、前記昇降装置の状態を変える。
As a preferred technical plan, the selection device includes a transmission rod that is slidably connected to the bottom end inner wall of the hidden groove, the transmission rod is provided with a switch plate, and the lower end of the switch plate and the hidden groove. A restraining spring is connected to the inner wall of the bottom end of the rod, the transmission rod is provided with a main push block in contact with the sub push block, and the main push block has six elevating and lowering symmetrically with the center. The rods are connected so that they can slide, a drive block that is in contact with the reversing rod is provided at the lower end of the elevating rod, and the transmission rod has two hooks located at the upper end of the main push block. A groove is provided, the hooking groove is provided with a hooking rod in contact with the hooking groove, and an unlocking groove connected to the lifting rod so as to slide is provided at the lower end of the hooking rod. A return spring is provided between the lifting rod on the side close to the center of symmetry and the inner wall of the unlocking groove.
Depending on the temperature requirement, the corresponding quantity of the hook rods are manually slid out of the hook groove and the transmission rods are moved downward to change the state of the lifting device.

本発明は貯蔵空間内の加熱装置の数量を制御することで、温度コントロールの目的を達成し、全体の構造が貯蔵空間の下方に位置しており、物を置くことで自動的に設備を起動し作動させ、資源を浪費しないことを保証する。 The present invention achieves the purpose of temperature control by controlling the number of heating devices in the storage space, the whole structure is located below the storage space, and the equipment is automatically started by placing an object. And operate it to ensure that resources are not wasted.

下記に図1〜4をあわせて本発明について詳しく説明し、便利に説明するために、下記の方向を以下のように規定する:図1は本発明装置の正面図であり、以下に述べる上下左右前後の方向と図1の自身投影関係の上下左右前後の方向とが一致である。 In order to explain the present invention in detail with reference to FIGS. 1 to 4 below and to explain the present invention in a convenient manner, the following directions are defined as follows: FIG. The left-right front-back direction and the up-down, left-right front-back direction of the self-projection relationship in FIG. 1 are the same.

図1は本発明の温度調節可能の箱の全体構成略図FIG. 1 is a schematic diagram of the overall configuration of the temperature-adjustable box of the present invention. 図2は図1のA―Aの構成略図FIG. 2 is a schematic configuration diagram of AA of FIG. 図3は図1のB―Bの構成略図FIG. 3 is a schematic configuration diagram of BB of FIG. 図4は図1のCの拡大構成略図FIG. 4 is an enlarged schematic diagram of C in FIG.

本発明の温度調節可能の箱は、箱本体11を含み、前記箱本体11の中には前方に開口した保温チャンバ12が設けられ、前記保温チャンバ12の開口のところが手動で完全に閉鎖でき、前記箱本体11の中には前記保温チャンバ12の下端に位置しており、且つ前方に開口した選択チャンバ19が設けられ、前記選択チャンバ19の内壁には中心に対称的な六つの加熱装置901が設けられ、前記選択チャンバ19の頂端内壁には環状排列のスライド穴13が連通しており、前記スライド穴13の中には前記加熱装置901と当接しているゴム膜14が設けられ、前記選択チャンバ19の中には中心に対称的な六つのスライド溝32が設けられ、前記スライド溝32の中には支持ロッド31がスライドできるように連結され、前記支持ロッド31のうち反時計回りの片側と前記スライド溝32の内壁との間には抵抗バネ30が連結され、前記支持ロッド31のうち対称中心に隣接する一端には前記加熱装置901をコントロールする昇降装置902が設けられ、前記支持ロッド31のうち時計回り方向の片側には前記昇降装置902をコントロールする貼合装置903が設けられ、前記保温チャンバ12の底端内壁には上方に開口した隠れ溝47が設けられ、前記隠れ溝47の底端内壁には前記昇降装置902をコントロールする選択装置904がスライドできるように連結されており、
温度の要求により、前記選択装置904を変え、物を前記保温チャンバ12の中に置き、重力によって前記選択装置904を下に押し動かし、前記昇降装置902の反転が前記貼合装置903にコントロールされ、前記昇降装置902と前記加熱装置901とを噛合し連結し、これにより前記加熱装置901を保温チャンバ12の中まで対応する数量で上に移動させ、加熱し保温する。
The temperature-adjustable box of the present invention includes a box body 11, and a heat-retaining chamber 12 opened forward is provided in the box body 11, and the opening of the heat-retaining chamber 12 can be completely closed manually. A selection chamber 19 located at the lower end of the heat retention chamber 12 and open forward is provided in the box body 11, and six heating devices 901 symmetrical to the center are provided on the inner wall of the selection chamber 19. Is provided, and a slide hole 13 in an annular arrangement is communicated with the inner wall of the top end of the selection chamber 19, and a rubber film 14 in contact with the heating device 901 is provided in the slide hole 13. Six slide grooves 32 symmetrical to the center are provided in the selection chamber 19, and the support rods 31 are connected so as to be slidable in the slide grooves 32, and the support rods 31 are counterclockwise. A resistance spring 30 is connected between one side and the inner wall of the slide groove 32, and an elevating device 902 for controlling the heating device 901 is provided at one end of the support rod 31 adjacent to the center of symmetry. A laminating device 903 for controlling the elevating device 902 is provided on one side of the rod 31 in the clockwise direction, and a hidden groove 47 opened upward is provided on the inner wall of the bottom end of the heat retaining chamber 12, and the hidden groove is provided. A selection device 904 that controls the elevating device 902 is connected to the inner wall of the bottom end of the 47 so as to slide.
Depending on the temperature requirement, the selection device 904 is changed, an object is placed in the heat retention chamber 12, the selection device 904 is pushed down by gravity, and the reversal of the lifting device 902 is controlled by the bonding device 903. , The elevating device 902 and the heating device 901 are meshed and connected, whereby the heating device 901 is moved upward in a corresponding quantity into the heat retaining chamber 12 to be heated and kept warm.

有益的には、前記加熱装置901は前記選択チャンバ19の内壁に設けられた横梁27を含み、前記横梁27には斜鋸歯状付き柱25がスライドできるように連結され、前記斜鋸歯状付き柱25の上端には前記スライド穴13とスライドできるように連結された加熱棒29が設けられ、前記加熱棒29の下側と前記横梁27の上側との間には引張バネ28が連結されており、
前記加熱棒29が前記ゴム膜14を通し、且つ前記保温チャンバ12の中に伸びて加熱し、前記加熱棒29が前記保温チャンバ12の中に伸びる数量の違いによって温度をコントロールする。
Advantageously, the heating device 901 includes a cross beam 27 provided on the inner wall of the selection chamber 19, to which the slanted serrated column 25 is slidably connected to the slanted serrated column. A heating rod 29 connected to the slide hole 13 so as to be slidable is provided at the upper end of the 25, and a tension spring 28 is connected between the lower side of the heating rod 29 and the upper side of the cross beam 27. ,
The heating rod 29 passes through the rubber film 14 and extends into the heat retaining chamber 12 to heat the heating rod 29, and the temperature is controlled by the difference in the number of the heating rod 29 extending into the heat retaining chamber 12.

有益的には、前記昇降装置902は前記支持ロッド31に設けられて対称中心に近接する六角盤34を含み、前記六角盤34の中には中心に対称的な六つのスライドレール33が設けられ、前記スライドレール33の中にはスライドロッド17がスライドできるように連結され、前記スライドロッド17のうち対称中心から離れている側と前記スライドレール33の内壁との間には圧縮バネ18が連結され、前記スライドロッド17の上端には前記六角盤34の上端に位置している副押しブロック16が設けられ、前記スライドロッド17の下端には連結ブロック20が設けられ、前記連結ブロック20の中には下方に開口した貫通溝24が設けられ、前記貫通溝24の中には固定軸21が回転できるように連結され、前記固定軸21には前記斜鋸歯状付き柱25と噛合し連結された反転ロッド23が設けられており、
前記選択装置904によってまず前記反転ロッド23を円の四分の一に回転させ、そして前記スライドロッド17が互い離れている片側の方向にスライドすることにより、前記反転ロッド23を移動させ、噛合伝動により前記加熱装置901を上に移動させる。
Advantageously, the elevating device 902 includes a hexagonal plate 34 provided on the support rod 31 and close to the center of symmetry, and six slide rails 33 symmetrical to the center are provided in the hexagonal plate 34. The slide rod 17 is connected to the slide rail 33 so that it can slide, and a compression spring 18 is connected between the side of the slide rod 17 that is distant from the center of symmetry and the inner wall of the slide rail 33. A secondary push block 16 located at the upper end of the hexagonal plate 34 is provided at the upper end of the slide rod 17, and a connecting block 20 is provided at the lower end of the slide rod 17. Is provided with a through groove 24 that opens downward, and the fixed shaft 21 is connected to the fixed shaft 21 so as to be rotatable in the through groove 24, and is engaged with and connected to the oblique saw-toothed column 25. The reversing rod 23 is provided.
The reversing rod 23 is first rotated by the selection device 904 in a quarter of a circle, and then the slide rods 17 slide in one direction away from each other to move the reversing rod 23 and engage transmission. Moves the heating device 901 upward.

有益的には、前記貼合装置903は前記支持ロッド31の時計回り側に設けられた開口溝39を含み、前記開口溝39の中には上下に伸びている回転軸35が回転できるように連結され、前記回転軸35には回転ロッド37が設けられ、前記回転ロッド37と前記開口溝39との間にはねじりバネ36が連結され、前記回転ロッド37には前記反転ロッド23と当接している対称的な押しロッド38が設けられ、その中、対称中心に近接する側の前記押しロッド38の長さが対称中心から離れている側の前記押しロッド38の長さより短く、
前記押しロッド38の回転により、前記反転ロッド23と前記斜鋸歯状付き柱25とを噛合し連結する。
Advantageously, the bonding device 903 includes an opening groove 39 provided on the clockwise side of the support rod 31, so that a rotating shaft 35 extending vertically can rotate in the opening groove 39. A rotating rod 37 is provided on the rotating shaft 35, a torsion spring 36 is connected between the rotating rod 37 and the opening groove 39, and the rotating rod 37 abuts on the reversing rod 23. A symmetrical push rod 38 is provided, in which the length of the push rod 38 on the side close to the center of symmetry is shorter than the length of the push rod 38 on the side away from the center of symmetry.
By the rotation of the push rod 38, the reversing rod 23 and the oblique serrated column 25 are engaged and connected.

有益的には、前記選択装置904は前記隠れ溝47の底端内壁にスライドできるように連結された伝動ロッド45を含み、前記伝動ロッド45にはスイッチ板26が設けられ、前記スイッチ板26の下端と前記隠れ溝47の底端内壁との間には抑えバネ46が連結され、前記伝動ロッド45には前記副押しブロック16と当接している主押しブロック15が設けられ、前記主押しブロック15には中心に対称的な六つの昇降ロッド42がスライドできるように連結され、前記昇降ロッド42の下端には前記反転ロッド23と当接している駆動ブロック22が設けられ、前記伝動ロッド45には前記主押しブロック15の上端に位置している二つの引掛り溝44が設けられ、前記引掛り溝44には前記引掛り溝44と当接している引掛りロッド43が設けられ、前記引掛りロッド43の下端には前記昇降ロッド42とスライドできるように連結されたロック解除溝40が設けられ、前記昇降ロッド42のうち対称中心に近接する側と前記ロック解除溝40の内壁との間には復帰バネ41が連結されており、
温度に対する要求により、手動で対応する数量の前記引掛りロッド43を前記引掛り溝44の外にスライド出させ、また、前記伝動ロッド45が下に移動することにより、前記昇降装置902の状態を変える。
Advantageously, the selection device 904 includes a transmission rod 45 that is slidably connected to the inner wall of the bottom end of the hidden groove 47, and the transmission rod 45 is provided with a switch plate 26 so that the switch plate 26 may be provided. A holding spring 46 is connected between the lower end and the inner wall of the bottom end of the hidden groove 47, and the transmission rod 45 is provided with a main pushing block 15 in contact with the sub-pushing block 16, and the main pushing block 15 is provided. Six elevating rods 42 symmetrical to the center are connected to the 15 so as to slide, and a drive block 22 in contact with the reversing rod 23 is provided at the lower end of the elevating rod 42, and the transmission rod 45 is provided with a drive block 22. Is provided with two hook grooves 44 located at the upper end of the main push block 15, and the hook groove 44 is provided with a hook rod 43 in contact with the hook groove 44, and the hook is provided. An unlock groove 40 connected to the elevating rod 42 so as to be slidable is provided at the lower end of the lifting rod 43, and between the side of the elevating rod 42 close to the center of symmetry and the inner wall of the unlocking groove 40. A return spring 41 is connected to the
Due to the temperature requirement, the corresponding quantity of the hook rods 43 are manually slid out of the hook groove 44, and the transmission rod 45 is moved downward to bring the state of the lifting device 902 up. Change.

初期状態では、反転ロッド23が自由に下に振って斜鋸歯状付き柱25との噛合連結状態から離脱し、全部の加熱棒29がいずれもゴム膜14の下端に位置しており、全部の引掛りロッド43と上端の引掛り溝44とが当接しており、対称中心に近接する押しロッド38が開口溝39の外側に伸び出し、対称中心から離れている側の押しロッド38が開口溝39の中に収められる。 In the initial state, the reversing rod 23 freely swings downward to disengage from the meshing connection state with the diagonally sawtooth column 25, and all the heating rods 29 are located at the lower ends of the rubber film 14, and all of them. The hook rod 43 and the hook groove 44 at the upper end are in contact with each other, the push rod 38 close to the center of symmetry extends to the outside of the opening groove 39, and the push rod 38 on the side away from the center of symmetry is the opening groove. It fits in 39.

装置が作動する時、温度に対する要求により、対応する数量の引掛りロッド43をスライドさせて上端の引掛り溝との当接状態から離れさせ、また、引掛りロッド43を下端の引掛り溝44に当接するまで下に移動させ、温度コントロールの目的を達成し、物を保温チャンバ12に置いた後、保温チャンバ12を閉鎖し、重力によってスイッチ板26を下に押すことによって抑えバネ46が動力位置エネルギーを貯め、且つ伝動ロッド45が下に移動し、まず駆動ブロック22と反転ロッド23の当接により、反転ロッド23を円の四分の一に回転させ、その時に反転ロッド23と対称中心側に近接する押しロッド38とが当接し、回転ロッド37を回転させ、対称中心から離れている片側の押しロッド38が六角盤34の全体を押し回転させ、反転ロッド23と斜鋸歯状付き柱25との間が噛合し伝動するようになると、伝動ロッド45が続けて下に移動し、主押しブロック15と副押しブロック16とを当接させ、且つ副押しブロック16を押し動かして対称中心側から離れるように移動させ、順にスライドロッド17と、連結ブロック20とによって反転ロッド23を外に移動させ、ネジ山の噛合伝動により斜鋸歯状付き柱25を上に移動させ、斜鋸歯状付き柱25が上に移動し、且つ加熱棒29を押してゴム膜14に貫通させて保温チャンバ12の中まで入らせ、加熱し保温する。 When the device is activated, the corresponding quantity of hook rods 43 is slid away from contact with the hook groove at the upper end and the hook rod 43 is moved away from the hook groove 44 at the lower end according to the demand for temperature. The restraining spring 46 is powered by moving the rod down until it comes into contact with the rod, achieving the purpose of temperature control, placing an object in the heat insulating chamber 12, closing the heat insulating chamber 12, and pushing the switch plate 26 downward by gravity. Positional energy is stored, and the transmission rod 45 moves downward. First, the reversing rod 23 is rotated into a quarter of a circle by the contact between the drive block 22 and the reversing rod 23, and at that time, the center of symmetry with the reversing rod 23. The push rod 38 adjacent to the side comes into contact with the rotating rod 37, and the push rod 38 on one side away from the center of symmetry pushes and rotates the entire hexagonal plate 34, and the reversing rod 23 and the diagonally sawtooth column. When the transmission rod 45 is engaged with the 25 and is transmitted, the transmission rod 45 continuously moves downward to bring the main push block 15 and the sub push block 16 into contact with each other, and push the sub push block 16 to move the center of symmetry. The reversing rod 23 is moved outward by the slide rod 17 and the connecting block 20 in order, and the slanted serrated pillar 25 is moved upward by the meshing transmission of the threads. The pillar 25 moves upward, and the heating rod 29 is pushed through the rubber film 14 to enter the heat retaining chamber 12 to heat and keep warm.

作動が終わって貯蔵物を取り出した後、設備の中のバネの弾性が回復することにより、各部品を初期状態に戻らせ、手動で引掛りロッド43を引き動かして上に移動させ、全部の引掛りロッド43を改めて上端の引掛り溝44と当接させ、次回の使用に便利である。 After the operation is completed and the storage is taken out, the elasticity of the spring in the equipment is restored, so that each part is returned to the initial state, and the hook rod 43 is manually pulled to move it upward, and all of them are moved up. The hook rod 43 is brought into contact with the hook groove 44 at the upper end again, which is convenient for the next use.

本発明の有益効果は:本発明は貯蔵空間内の加熱装置の数量を制御することで、温度コントロールの目的を達成し、全体の構造が貯蔵空間の下方に位置しており、物を置くことで自動的に設備を起動し作動させ、資源を浪費しないことを保証する。 The beneficial effect of the present invention is: The present invention achieves the purpose of temperature control by controlling the number of heating devices in the storage space, the whole structure is located below the storage space, and the object is placed. Will automatically start and operate the equipment to ensure that resources are not wasted.

上記の方式により、本分野の技術員が作動モードにより本発明の範囲内に異なる変更をすることができる。 According to the above method, a technician in this field can make different changes within the scope of the present invention depending on the operation mode.

本発明は生活用品技術分野を取り上げて、具体的には温度調節可能の箱である。 The present invention takes up the technical field of daily necessities, and specifically is a temperature-adjustable box.

現在ほとんどの市販の温度を調節できる貯蔵箱は、実験室の専用設備であり、一般人にとって販売価格が高く、実用性が高くない。従って、便利に操作でき、且つ精確に温度を調節できる箱が発展と伴ってますます必要とされる。 Currently, most commercially available temperature-regulated storage boxes are dedicated laboratory equipment, which are expensive and not practical for the general public. Therefore, with the development, a box that can be operated conveniently and can control the temperature accurately is required more and more.

中国特許出願公開第103610586号明細書Chinese Patent Application Publication No. 103610586

本発明の目的は温度調節可能の箱を提供し、それは上記の現在の技術中の問題を解決できる。 An object of the present invention provides a temperature controllable box, which can solve the problems in the current art described above.

本発明の温度調節可能の箱は、箱本体を含み、前記箱本体の中には前方に開口した保温チャンバが設けられ、前記保温チャンバの開口のところが手動で完全に閉鎖でき、前記箱本体の中には前記保温チャンバの下端に位置しており、且つ前方に開口した選択チャンバが設けられ、前記選択チャンバの内壁には中心に対称的な六つの加熱装置が設けられ、前記選択チャンバの頂端内壁には環状排列のスライド穴が連通しており、前記スライド穴の中には前記加熱装置と当接しているゴム膜が設けられ、前記選択チャンバの中には中心に対称的な六つのスライド溝が設けられ、前記スライド溝の中には支持ロッドがスライドできるように連結され、前記支持ロッドのうち反時計回りの片側と前記スライド溝の内壁との間には抵抗バネが連結され、前記支持ロッドのうち対称中心に隣接する一端には前記加熱装置をコントロールする昇降装置が設けられ、前記支持ロッドのうち時計回り方向の片側には前記昇降装置をコントロールする貼合装置が設けられ、前記保温チャンバの底端内壁には上方に開口した隠れ溝が設けられ、前記隠れ溝の底端内壁には前記昇降装置をコントロールする選択装置がスライドできるように連結されており、
温度の要求により、前記選択装置を変え、物を前記保温チャンバの中に置き、重力によって前記選択装置を下に押し動かし、前記昇降装置の反転が前記貼合装置にコントロールされ、前記昇降装置と前記加熱装置とを噛合し連結し、これにより前記加熱装置を保温チャンバの中まで対応する数量で上に移動させ、加熱し保温する。
The temperature-adjustable box of the present invention includes a box body, and a heat-retaining chamber that opens forward is provided in the box body, and the opening of the heat-retaining chamber can be completely closed manually. A selection chamber located at the lower end of the heat insulation chamber and open to the front is provided inside, and six heating devices symmetrical to the center are provided on the inner wall of the selection chamber, and the top end of the selection chamber is provided. An annular arrangement of slide holes communicates with the inner wall, a rubber film in contact with the heating device is provided in the slide holes, and six slides symmetrical to the center are provided in the selection chamber. A groove is provided, and a support rod is connected so as to be slidable in the slide groove, and a resistance spring is connected between one side of the support rod counterclockwise and the inner wall of the slide groove. An elevating device for controlling the heating device is provided at one end of the support rod adjacent to the center of symmetry, and a laminating device for controlling the elevating device is provided on one side of the support rod in the clockwise direction. A hidden groove opened upward is provided on the inner wall of the bottom end of the heat insulating chamber, and a selection device for controlling the elevating device is connected to the inner wall of the bottom end of the hidden groove so as to slide.
Depending on the temperature requirement, the selection device is changed, an object is placed in the heat insulation chamber, the selection device is pushed down by gravity, and the reversal of the lifting device is controlled by the bonding device, and the lifting device and the lifting device are controlled. The heating device is meshed and connected, whereby the heating device is moved up into the heat retaining chamber in a corresponding quantity to heat and keep warm.

優選の技術プランとして、前記加熱装置は前記選択チャンバの内壁に設けられた横梁を含み、前記横梁には斜鋸歯状付き柱がスライドできるように連結され、前記斜鋸歯状付き柱の上端には前記スライド穴とスライドできるように連結された加熱棒が設けられ、前記加熱棒の下側と前記横梁の上側との間には引張バネが連結されており、
前記加熱棒が前記ゴム膜を通し、且つ前記保温チャンバの中に伸びて加熱し、前記加熱棒が前記保温チャンバの中に伸びる数量の違いによって温度をコントロールする。
As a preferred technical plan, the heating device includes a cross beam provided on the inner wall of the selection chamber, the cross beam is connected so that a slanted serrated column can slide, and the upper end of the slanted serrated column is connected. A heating rod connected to the slide hole so as to be slidable is provided, and a tension spring is connected between the lower side of the heating rod and the upper side of the cross beam.
The heating rod passes through the rubber film and extends into the heat retaining chamber to heat, and the temperature is controlled by the difference in the number of the heating rod extending into the heat retaining chamber.

優選の技術プランとして、前記昇降装置は前記支持ロッドに設けられて対称中心に近接する六角盤を含み、前記六角盤の中には中心に対称的な六つのスライドレールが設けられ、前記スライドレールの中にはスライドロッドがスライドできるように連結され、前記スライドロッドのうち対称中心から離れている側と前記スライドレールの内壁との間には圧縮バネが連結され、前記スライドロッドの上端には前記六角盤の上端に位置している副押しブロックが設けられ、前記スライドロッドの下端には連結ブロックが設けられ、前記連結ブロックの中には下方に開口した貫通溝が設けられ、前記貫通溝の中には固定軸が回転できるように連結され、前記固定軸には前記斜鋸歯状付き柱と噛合し連結された反転ロッドが設けられており、
前記選択装置によってまず前記反転ロッドを円の四分の一に回転させ、そして前記スライドロッドが互い離れている片側の方向にスライドすることにより、前記反転ロッドを移動させ、噛合伝動により前記加熱装置を上に移動させる。
As a preferential technical plan, the elevating device includes a hexagonal disc provided on the support rod and close to the center of symmetry, and six slide rails symmetrical in the center are provided in the hexagonal disc, and the slide rails are provided. A slide rod is connected so as to be slidable inside, and a compression spring is connected between the side of the slide rod distant from the center of symmetry and the inner wall of the slide rail, and the upper end of the slide rod is connected. An auxiliary push block located at the upper end of the hexagonal board is provided, a connecting block is provided at the lower end of the slide rod, and a through groove opened downward is provided in the connecting block. Inside, the fixed shaft is connected so as to be rotatable, and the fixed shaft is provided with an inversion rod that is meshed with and connected to the oblique sawtooth column.
The reversing rod is first rotated by the selection device in a quarter of a circle, and then the reversing rod is moved by sliding the slide rods in the direction of one side away from each other, and the heating device is subjected to mesh transmission. Move up.

優選の技術プランとして、前記貼合装置は前記支持ロッドの時計回り側に設けられた開口溝を含み、前記開口溝の中には上下に伸びている回転軸が回転できるように連結され、前記回転軸には回転ロッドが設けられ、前記回転ロッドと前記開口溝との間にはねじりバネが連結され、前記回転ロッドには前記反転ロッドと当接している対称的な押しロッドが設けられ、その中、対称中心に近接する側の前記押しロッドの長さが対称中心から離れている側の前記押しロッドの長さより短く、
前記押しロッドの回転により、前記反転ロッドと前記斜鋸歯状付き柱とを噛合し連結する。
As a preferred technical plan, the laminating device includes an opening groove provided on the clockwise side of the support rod, and a rotating shaft extending vertically is connected in the opening groove so as to be rotatable. A rotary rod is provided on the rotary shaft, a torsion spring is connected between the rotary rod and the opening groove, and the rotary rod is provided with a symmetrical push rod in contact with the reversing rod. Among them, the length of the push rod on the side close to the center of symmetry is shorter than the length of the push rod on the side away from the center of symmetry.
The rotation of the push rod meshes and connects the reversing rod and the oblique serrated column.

優選の技術プランとして、前記選択装置は前記隠れ溝の底端内壁にスライドできるように連結された伝動ロッドを含み、前記伝動ロッドにはスイッチ板が設けられ、前記スイッチ板の下端と前記隠れ溝の底端内壁との間には抑えバネが連結され、前記伝動ロッドには前記副押しブロックと当接している主押しブロックが設けられ、前記主押しブロックには中心に対称的な六つの昇降ロッドがスライドできるように連結され、前記昇降ロッドの下端には前記反転ロッドと当接している駆動ブロックが設けられ、前記伝動ロッドには前記主押しブロックの上端に位置している二つの引掛り溝が設けられ、前記引掛り溝には前記引掛り溝と当接している引掛りロッドが設けられ、前記引掛りロッドの下端には前記昇降ロッドとスライドできるように連結されたロック解除溝が設けられ、前記昇降ロッドのうち対称中心に近接する側と前記ロック解除溝の内壁との間には復帰バネが連結されており、
温度に対する要求により、手動で対応する数量の前記引掛りロッドを前記引掛り溝の外にスライド出させ、また、前記伝動ロッドが下に移動することにより、前記昇降装置の状態を変える。
As a preferred technical plan, the selection device includes a transmission rod that is slidably connected to the bottom end inner wall of the hidden groove, the transmission rod is provided with a switch plate, and the lower end of the switch plate and the hidden groove. A restraining spring is connected to the inner wall of the bottom end of the rod, the transmission rod is provided with a main push block in contact with the sub push block, and the main push block has six elevating and lowering symmetrically with the center. The rods are connected so that they can slide, a drive block that is in contact with the reversing rod is provided at the lower end of the elevating rod, and the transmission rod has two hooks located at the upper end of the main push block. A groove is provided, the hooking groove is provided with a hooking rod in contact with the hooking groove, and an unlocking groove connected to the lifting rod so as to slide is provided at the lower end of the hooking rod. A return spring is provided between the lifting rod on the side close to the center of symmetry and the inner wall of the unlocking groove.
Depending on the temperature requirement, the corresponding quantity of the hook rods are manually slid out of the hook groove and the transmission rods are moved downward to change the state of the lifting device.

本発明は貯蔵空間内の加熱装置の数量を制御することで、温度コントロールの目的を達成し、全体の構造が貯蔵空間の下方に位置しており、物を置くことで自動的に設備を起動し作動させ、資源を浪費しないことを保証する。 The present invention achieves the purpose of temperature control by controlling the number of heating devices in the storage space, the whole structure is located below the storage space, and the equipment is automatically started by placing an object. And operate it to ensure that resources are not wasted.

下記に図1〜4をあわせて本発明について詳しく説明し、便利に説明するために、下記の方向を以下のように規定する:図1は本発明装置の正面図であり、以下に述べる上下左右前後の方向と図1の自身投影関係の上下左右前後の方向とが一致である。 In order to explain the present invention in detail with reference to FIGS. 1 to 4 below and to explain the present invention in a convenient manner, the following directions are defined as follows: FIG. The left-right front-back direction and the up-down, left-right front-back direction of the self-projection relationship in FIG. 1 are the same.

図1は本発明の温度調節可能の箱の全体構成略図FIG. 1 is a schematic diagram of the overall configuration of the temperature-adjustable box of the present invention. 図2は図1のA―Aの構成略図FIG. 2 is a schematic configuration diagram of AA of FIG. 図3は図1のB―Bの構成略図FIG. 3 is a schematic configuration diagram of BB of FIG. 図4は図1のCの拡大構成略図FIG. 4 is an enlarged schematic diagram of C in FIG.

本発明の温度調節可能の箱は、箱本体11を含み、前記箱本体11の中には前方に開口した保温チャンバ12が設けられ、前記保温チャンバ12の開口のところが手動で完全に閉鎖でき、前記箱本体11の中には前記保温チャンバ12の下端に位置しており、且つ前方に開口した選択チャンバ19が設けられ、前記選択チャンバ19の内壁には中心に対称的な六つの加熱装置901が設けられ、前記選択チャンバ19の頂端内壁には環状排列のスライド穴13が連通しており、前記スライド穴13の中には前記加熱装置901と当接しているゴム膜14が設けられ、前記選択チャンバ19の中には中心に対称的な六つのスライド溝32が設けられ、前記スライド溝32の中には支持ロッド31がスライドできるように連結され、前記支持ロッド31のうち反時計回りの片側と前記スライド溝32の内壁との間には抵抗バネ30が連結され、前記支持ロッド31のうち対称中心に隣接する一端には前記加熱装置901をコントロールする昇降装置902が設けられ、前記支持ロッド31のうち時計回り方向の片側には前記昇降装置902をコントロールする貼合装置903が設けられ、前記保温チャンバ12の底端内壁には上方に開口した隠れ溝47が設けられ、前記隠れ溝47の底端内壁には前記昇降装置902をコントロールする選択装置904がスライドできるように連結されており、
温度の要求により、前記選択装置904を変え、物を前記保温チャンバ12の中に置き、重力によって前記選択装置904を下に押し動かし、前記昇降装置902の反転が前記貼合装置903にコントロールされ、前記昇降装置902と前記加熱装置901とを噛合し連結し、これにより前記加熱装置901を保温チャンバ12の中まで対応する数量で上に移動させ、加熱し保温する。
The temperature-adjustable box of the present invention includes a box body 11, and a heat-retaining chamber 12 opened forward is provided in the box body 11, and the opening of the heat-retaining chamber 12 can be completely closed manually. A selection chamber 19 located at the lower end of the heat retention chamber 12 and open forward is provided in the box body 11, and six heating devices 901 symmetrical to the center are provided on the inner wall of the selection chamber 19. Is provided, and a slide hole 13 in an annular arrangement is communicated with the inner wall of the top end of the selection chamber 19, and a rubber film 14 in contact with the heating device 901 is provided in the slide hole 13. Six slide grooves 32 symmetrical to the center are provided in the selection chamber 19, and the support rods 31 are connected so as to be slidable in the slide grooves 32, and the support rods 31 are counterclockwise. A resistance spring 30 is connected between one side and the inner wall of the slide groove 32, and an elevating device 902 for controlling the heating device 901 is provided at one end of the support rod 31 adjacent to the center of symmetry. A laminating device 903 for controlling the elevating device 902 is provided on one side of the rod 31 in the clockwise direction, and a hidden groove 47 opened upward is provided on the inner wall of the bottom end of the heat retaining chamber 12, and the hidden groove is provided. A selection device 904 that controls the elevating device 902 is connected to the inner wall of the bottom end of the 47 so as to slide.
Depending on the temperature requirement, the selection device 904 is changed, an object is placed in the heat retention chamber 12, the selection device 904 is pushed down by gravity, and the reversal of the lifting device 902 is controlled by the bonding device 903. , The elevating device 902 and the heating device 901 are meshed and connected, whereby the heating device 901 is moved upward in a corresponding quantity into the heat retaining chamber 12 to be heated and kept warm.

有益的には、前記加熱装置901は前記選択チャンバ19の内壁に設けられた横梁27を含み、前記横梁27には斜鋸歯状付き柱25がスライドできるように連結され、前記斜鋸歯状付き柱25の上端には前記スライド穴13とスライドできるように連結された加熱棒29が設けられ、前記加熱棒29の下側と前記横梁27の上側との間には引張バネ28が連結されており、
前記加熱棒29が前記ゴム膜14を通し、且つ前記保温チャンバ12の中に伸びて加熱し、前記加熱棒29が前記保温チャンバ12の中に伸びる数量の違いによって温度をコントロールする。
Advantageously, the heating device 901 includes a cross beam 27 provided on the inner wall of the selection chamber 19, to which the slanted serrated column 25 is slidably connected to the slanted serrated column. A heating rod 29 connected to the slide hole 13 so as to be slidable is provided at the upper end of the 25, and a tension spring 28 is connected between the lower side of the heating rod 29 and the upper side of the cross beam 27. ,
The heating rod 29 passes through the rubber film 14 and extends into the heat retaining chamber 12 to heat, and the temperature is controlled by the difference in the number of the heating rod 29 extending into the heat retaining chamber 12.

有益的には、前記昇降装置902は前記支持ロッド31に設けられて対称中心に近接する六角盤34を含み、前記六角盤34の中には中心に対称的な六つのスライドレール33が設けられ、前記スライドレール33の中にはスライドロッド17がスライドできるように連結され、前記スライドロッド17のうち対称中心から離れている側と前記スライドレール33の内壁との間には圧縮バネ18が連結され、前記スライドロッド17の上端には前記六角盤34の上端に位置している副押しブロック16が設けられ、前記スライドロッド17の下端には連結ブロック20が設けられ、前記連結ブロック20の中には下方に開口した貫通溝24が設けられ、前記貫通溝24の中には固定軸21が回転できるように連結され、前記固定軸21には前記斜鋸歯状付き柱25と噛合し連結された反転ロッド23が設けられており、
前記選択装置904によってまず前記反転ロッド23を円の四分の一に回転させ、そして前記スライドロッド17が互い離れている片側の方向にスライドすることにより、前記反転ロッド23を移動させ、噛合伝動により前記加熱装置901を上に移動させる。
Advantageously, the elevating device 902 includes a hexagonal plate 34 provided on the support rod 31 and close to the center of symmetry, and six slide rails 33 symmetrical to the center are provided in the hexagonal plate 34. The slide rod 17 is connected to the slide rail 33 so that it can slide, and a compression spring 18 is connected between the side of the slide rod 17 that is distant from the center of symmetry and the inner wall of the slide rail 33. A secondary push block 16 located at the upper end of the hexagonal plate 34 is provided at the upper end of the slide rod 17, and a connecting block 20 is provided at the lower end of the slide rod 17. Is provided with a through groove 24 that opens downward, and the fixed shaft 21 is connected to the fixed shaft 21 so as to be rotatable in the through groove 24, and is engaged with and connected to the oblique saw-toothed column 25. The reversing rod 23 is provided.
The reversing rod 23 is first rotated by the selection device 904 in a quarter of a circle, and then the slide rods 17 slide in one direction away from each other to move the reversing rod 23 and engage transmission. Moves the heating device 901 upward.

有益的には、前記貼合装置903は前記支持ロッド31の時計回り側に設けられた開口溝39を含み、前記開口溝39の中には上下に伸びている回転軸35が回転できるように連結され、前記回転軸35には回転ロッド37が設けられ、前記回転ロッド37と前記開口溝39との間にはねじりバネ36が連結され、前記回転ロッド37には前記反転ロッド23と当接している対称的な押しロッド38が設けられ、その中、対称中心に近接する側の前記押しロッド38の長さが対称中心から離れている側の前記押しロッド38の長さより短く、
前記押しロッド38の回転により、前記反転ロッド23と前記斜鋸歯状付き柱25とを噛合し連結する。
Advantageously, the bonding device 903 includes an opening groove 39 provided on the clockwise side of the support rod 31, so that a rotating shaft 35 extending vertically can rotate in the opening groove 39. A rotating rod 37 is provided on the rotating shaft 35, a torsion spring 36 is connected between the rotating rod 37 and the opening groove 39, and the rotating rod 37 abuts on the reversing rod 23. A symmetrical push rod 38 is provided, in which the length of the push rod 38 on the side close to the center of symmetry is shorter than the length of the push rod 38 on the side away from the center of symmetry.
By the rotation of the push rod 38, the reversing rod 23 and the oblique serrated column 25 are engaged and connected.

有益的には、前記選択装置904は前記隠れ溝47の底端内壁にスライドできるように連結された伝動ロッド45を含み、前記伝動ロッド45にはスイッチ板26が設けられ、前記スイッチ板26の下端と前記隠れ溝47の底端内壁との間には抑えバネ46が連結され、前記伝動ロッド45には前記副押しブロック16と当接している主押しブロック15が設けられ、前記主押しブロック15には中心に対称的な六つの昇降ロッド42がスライドできるように連結され、前記昇降ロッド42の下端には前記反転ロッド23と当接している駆動ブロック22が設けられ、前記伝動ロッド45には前記主押しブロック15の上端に位置している二つの引掛り溝44が設けられ、前記引掛り溝44には前記引掛り溝44と当接している引掛りロッド43が設けられ、前記引掛りロッド43の下端には前記昇降ロッド42とスライドできるように連結されたロック解除溝40が設けられ、前記昇降ロッド42のうち対称中心に近接する側と前記ロック解除溝40の内壁との間には復帰バネ41が連結されており、
温度に対する要求により、手動で対応する数量の前記引掛りロッド43を前記引掛り溝44の外にスライド出させ、また、前記伝動ロッド45が下に移動することにより、前記昇降装置902の状態を変える。
Advantageously, the selection device 904 includes a transmission rod 45 that is slidably connected to the inner wall of the bottom end of the hidden groove 47, and the transmission rod 45 is provided with a switch plate 26 so that the switch plate 26 may be provided. A holding spring 46 is connected between the lower end and the inner wall of the bottom end of the hidden groove 47, and the transmission rod 45 is provided with a main pushing block 15 in contact with the sub-pushing block 16, and the main pushing block 15 is provided. Six elevating rods 42 symmetrical to the center are connected to the 15 so as to slide, and a drive block 22 in contact with the reversing rod 23 is provided at the lower end of the elevating rod 42, and the transmission rod 45 is provided with a drive block 22. Is provided with two hook grooves 44 located at the upper end of the main push block 15, and the hook groove 44 is provided with a hook rod 43 in contact with the hook groove 44, and the hook is provided. An unlock groove 40 connected to the elevating rod 42 so as to be slidable is provided at the lower end of the lifting rod 43, and between the side of the elevating rod 42 close to the center of symmetry and the inner wall of the unlocking groove 40. A return spring 41 is connected to the
Due to the temperature requirement, the corresponding quantity of the hook rods 43 are manually slid out of the hook groove 44, and the transmission rod 45 is moved downward to bring the state of the lifting device 902 up. Change.

初期状態では、反転ロッド23が自由に下に振って斜鋸歯状付き柱25との噛合連結状態から離脱し、全部の加熱棒29がいずれもゴム膜14の下端に位置しており、全部の引掛りロッド43と上端の引掛り溝44とが当接しており、対称中心に近接する押しロッド38が開口溝39の外側に伸び出し、対称中心から離れている側の押しロッド38が開口溝39の中に収められる。 In the initial state, the reversing rod 23 freely swings downward to disengage from the meshing connection state with the diagonally sawtooth column 25, and all the heating rods 29 are located at the lower ends of the rubber film 14, and all of them. The hook rod 43 and the hook groove 44 at the upper end are in contact with each other, the push rod 38 close to the center of symmetry extends to the outside of the opening groove 39, and the push rod 38 on the side away from the center of symmetry is the opening groove. It fits in 39.

保温チャンバ12の中の温度を調整しようとするとき、引掛りロッド43を手動で上端の引掛り溝44から引き出し、且つ復帰バネ41を圧迫させ、引掛りロッド43を押して下方へ下端の引掛り溝44の位置に移動させ、そして引掛りロッド43を放し、このとき、引掛りロッド43は復帰バネ41の弾力回復で下方へ下端の引掛り溝44の中に滑り入り、これにより、保温チャンバ12の中の温度を調整できる。When trying to adjust the temperature in the heat retaining chamber 12, the hook rod 43 is manually pulled out from the hook groove 44 at the upper end, the return spring 41 is pressed, and the hook rod 43 is pushed downward to catch the lower end. The hook rod 43 is moved to the position of the groove 44, and the hook rod 43 is released. At this time, the hook rod 43 slides downward into the hook groove 44 at the lower end by the elasticity recovery of the return spring 41, whereby the heat retaining chamber is kept. The temperature inside 12 can be adjusted.

ものを保温するとき、手動でものを保温チャンバ12に置き、そして保温チャンバ12を閉じ、重力によってスイッチ板26を下方へ押し、抑えバネ46に動力位置エネルギーを貯めさせ、且つ伝動ロッド45が下方へ移動し、まず、駆動ブロック22と反転ロッド23の当接により、反転ロッド23を円の四分の一に回転させ、このとき、反転ロッド23と対称中心側に近接する押しロッド38とが当接し、回転ロッド37を回転させ、対称中心から離れている片側の押しロッド38が六角盤34の全体を押し回転させ、反転ロッド23と斜鋸歯状付き柱25との間が噛合し伝動するようになると、伝動ロッド45が続けて下に移動し、主押しブロック15と副押しブロック16とを当接させ、且つ副押しブロック16を押し動かして対称中心側から離れるように移動させ、順にスライドロッド17と、連結ブロック20とによって反転ロッド23を外に移動させ、ネジ山の噛合伝動により斜鋸歯状付き柱25を上に移動させ、斜鋸歯状付き柱25が上に移動し、且つ加熱棒29を押してゴム膜14を貫通させて保温チャンバ12の中に入らせ、そして加熱棒29で保温チャンバ12の中に継続的に加熱を行い、ものに対する保温を可能にする。When keeping things warm, manually place the thing in the heat retention chamber 12, close the heat retention chamber 12, push the switch plate 26 downward by gravity, let the restraining spring 46 store power position energy, and the transmission rod 45 moves downward. First, the reversing rod 23 is rotated into a quarter of a circle by the contact between the drive block 22 and the reversing rod 23, and at this time, the reversing rod 23 and the push rod 38 close to the center of symmetry are brought into contact with each other. The rotating rod 37 is in contact with the rotating rod 37, and the pushing rod 38 on one side away from the center of symmetry pushes and rotates the entire hexagonal plate 34, and the reversing rod 23 and the oblique sawtooth column 25 are engaged and transmitted. Then, the transmission rod 45 continuously moves downward to bring the main push block 15 and the sub push block 16 into contact with each other, and pushes the sub push block 16 to move it away from the center of symmetry, in order. The reversing rod 23 is moved outward by the slide rod 17 and the connecting block 20, the oblique sawtooth column 25 is moved upward by the meshing transmission of the threads, and the oblique sawtooth column 25 is moved upward. The heating rod 29 is pushed through the rubber film 14 to enter the heat insulating chamber 12, and the heating rod 29 continuously heats the heat insulating chamber 12 to enable heat retention.

保温されたものを取り出した後に、設備の中のバネが弾力によって回復することで、各部品は初期状態に戻り、ここで再び手動で下端の引掛り溝44の中にある引掛りロッド43を引き動かして外へ移動させ、引掛りロッド43に上方へ上端の引掛り溝44の中に移動させ、このとき、すべての引掛りロッド43は再び上端の引掛り溝44と当接し、次回の使用に便利を与える。After taking out the heat-retaining material, the spring in the equipment recovers by elasticity, so that each part returns to the initial state, and here again manually pulls the hook rod 43 in the hook groove 44 at the lower end. It is pulled and moved outward, and moved upward to the hooking rod 43 into the hooking groove 44 at the upper end. At this time, all the hooking rods 43 come into contact with the hooking groove 44 at the upper end again, and the next time. Gives convenience to use.

本発明の有益効果は:本発明は貯蔵空間内の加熱装置の数量を制御することで、温度コントロールの目的を達成し、全体の構造が貯蔵空間の下方に位置しており、物を置くことで自動的に設備を起動し作動させ、資源を浪費しないことを保証する。 The beneficial effect of the present invention is: The present invention achieves the purpose of temperature control by controlling the number of heating devices in the storage space, the whole structure is located below the storage space, and the object is placed. Will automatically start and operate the equipment to ensure that resources are not wasted.

上記の方式により、本分野の技術員が作動モードにより本発明の範囲内に異なる変更をすることができる。 According to the above method, a technician in this field can make different changes within the scope of the present invention depending on the operation mode.

Claims (5)

正面視で、箱本体を含み、前記箱本体の中には前方に開口した保温チャンバが設けられ、前記保温チャンバの開口のところが手動で完全に閉鎖でき、前記箱本体の中には前記保温チャンバの下端に位置しており、且つ前方に開口した選択チャンバが設けられ、前記選択チャンバの内壁には中心に対称的な六つの加熱装置が設けられ、前記選択チャンバの頂端内壁には環状排列のスライド穴が連通しており、前記スライド穴の中には前記加熱装置と当接しているゴム膜が設けられ、前記選択チャンバの中には中心に対称的な六つのスライド溝が設けられ、前記スライド溝の中には支持ロッドがスライドできるように連結され、前記支持ロッドのうち反時計回りの片側と前記スライド溝の内壁との間には抵抗バネが連結され、前記支持ロッドのうち対称中心に隣接する一端には前記加熱装置をコントロールする昇降装置が設けられ、前記支持ロッドのうち時計回り方向の片側には前記昇降装置をコントロールする貼合装置が設けられ、前記保温チャンバの底端内壁には上方に開口した隠れ溝が設けられ、前記隠れ溝の底端内壁には前記昇降装置をコントロールする選択装置がスライドできるように連結されており、
温度の要求により、前記選択装置を変え、物を前記保温チャンバの中に置き、重力によって前記選択装置を下に押し動かし、前記昇降装置の反転が前記貼合装置にコントロールされ、前記昇降装置と前記加熱装置とを噛合し連結し、これにより前記加熱装置を保温チャンバの中まで対応する数量で上に移動させ、加熱し保温することを特徴とする温度調節可能の箱。
When viewed from the front, the heat insulation chamber including the box body is provided in the box body, and the opening of the heat insulation chamber can be completely closed manually, and the heat insulation chamber is inside the box body. A selection chamber located at the lower end of the selection chamber and open forward is provided, six heating devices symmetrical to the center are provided on the inner wall of the selection chamber, and an annular arrangement is provided on the inner wall of the top end of the selection chamber. The slide holes are communicated with each other, a rubber film in contact with the heating device is provided in the slide holes, and six symmetrical slide grooves are provided in the center of the selection chamber. A support rod is connected in the slide groove so that it can slide, and a resistance spring is connected between one side of the support rod counterclockwise and the inner wall of the slide groove, and the center of symmetry of the support rod. An elevating device for controlling the heating device is provided at one end adjacent to the above, and a laminating device for controlling the elevating device is provided on one side of the support rod in the clockwise direction, and the inner wall at the bottom end of the heat insulating chamber is provided. Is provided with a hidden groove that opens upward, and a selection device that controls the elevating device is connected to the inner wall at the bottom end of the hidden groove so that it can slide.
Depending on the temperature requirement, the selection device is changed, an object is placed in the heat insulation chamber, the selection device is pushed down by gravity, and the reversal of the lifting device is controlled by the bonding device, and the lifting device and the lifting device are controlled. A temperature-adjustable box characterized in that the heating device is engaged and connected, whereby the heating device is moved upward in a corresponding quantity into the heat retaining chamber to be heated and kept warm.
前記加熱装置は前記選択チャンバの内壁に設けられた横梁を含み、前記横梁には斜鋸歯状付き柱がスライドできるように連結され、前記斜鋸歯状付き柱の上端には前記スライド穴とスライドできるように連結された加熱棒が設けられ、前記加熱棒の下側と前記横梁の上側との間には引張バネが連結されており、
前記加熱棒が前記ゴム膜を通し、且つ前記保温チャンバの中に伸びて加熱し、前記加熱棒が前記保温チャンバの中に伸びる数量の違いによって温度をコントロールすることを特徴とする請求項1に記載の温度調節可能の箱。
The heating device includes a cross beam provided on the inner wall of the selection chamber, the cross beam is connected so that a slanted serrated column can slide, and the upper end of the slanted sawtooth column can slide with the slide hole. A heating rod connected as described above is provided, and a tension spring is connected between the lower side of the heating rod and the upper side of the cross beam.
The first aspect of the present invention is characterized in that the heating rod passes through the rubber film and extends into the heat insulating chamber to heat, and the temperature is controlled by a difference in the number of the heating rod extending into the heat insulating chamber. Described temperature controllable box.
前記昇降装置は前記支持ロッドに設けられて対称中心に近接する六角盤を含み、前記六角盤の中には中心に対称的な六つのスライドレールが設けられ、前記スライドレールの中にはスライドロッドがスライドできるように連結され、前記スライドロッドのうち対称中心から離れている側と前記スライドレールの内壁との間には圧縮バネが連結され、前記スライドロッドの上端には前記六角盤の上端に位置している副押しブロックが設けられ、前記スライドロッドの下端には連結ブロックが設けられ、前記連結ブロックの中には下方に開口した貫通溝が設けられ、前記貫通溝の中には固定軸が回転できるように連結され、前記固定軸には前記斜鋸歯状付き柱と噛合し連結された反転ロッドが設けられており、
前記選択装置によってまず前記反転ロッドを円の四分の一に回転させ、そして前記スライドロッドが互い離れている片側の方向にスライドすることにより、前記反転ロッドを移動させ、噛合伝動により前記加熱装置を上に移動させることを特徴とする請求項1または請求項2に記載の温度調節可能の箱。
The elevating device includes a hexagonal plate provided on the support rod and close to the center of symmetry, six slide rails symmetrical to the center are provided in the hexagonal plate, and the slide rod is contained in the slide rail. Are connected so that they can slide, a compression spring is connected between the side of the slide rod that is distant from the center of symmetry and the inner wall of the slide rail, and the upper end of the slide rod is connected to the upper end of the hexagonal board. A secondary push block located is provided, a connecting block is provided at the lower end of the slide rod, a through groove opened downward is provided in the connecting block, and a fixed shaft is provided in the through groove. Is connected so that it can rotate, and the fixed shaft is provided with an inversion rod that meshes with and is connected to the oblique sawtooth column.
The reversing rod is first rotated by the selection device in a quarter of a circle, and then the reversing rod is moved by sliding the slide rods in the direction of one side away from each other, and the heating device is subjected to mesh transmission. The temperature controllable box according to claim 1 or 2, characterized in that the rod is moved upward.
前記貼合装置は前記支持ロッドの時計回り側に設けられた開口溝を含み、前記開口溝の中には上下に伸びている回転軸が回転できるように連結され、前記回転軸には回転ロッドが設けられ、前記回転ロッドと前記開口溝との間にはねじりバネが連結され、前記回転ロッドには前記反転ロッドと当接している対称的な押しロッドが設けられ、その中、対称中心に近接する側の前記押しロッドの長さが対称中心から離れている側の前記押しロッドの長さより短く、
前記押しロッドの回転により、前記反転ロッドと前記斜鋸歯状付き柱とを噛合し連結することを特徴とする請求項1または請求項2または請求項3に記載の温度調節可能の箱。
The bonding device includes an opening groove provided on the clockwise side of the support rod, and a rotating shaft extending vertically is connected to the opening groove so as to be rotatable, and the rotating rod is connected to the rotating shaft. Is provided, a torsion spring is connected between the rotary rod and the opening groove, and the rotary rod is provided with a symmetrical push rod in contact with the reversing rod, in which a symmetrical push rod is provided at the center of symmetry. The length of the push rod on the adjacent side is shorter than the length of the push rod on the side away from the center of symmetry.
The temperature-adjustable box according to claim 1 or 2, wherein the reversing rod and the oblique serrated column are engaged and connected by rotation of the push rod.
前記選択装置は前記隠れ溝の底端内壁にスライドできるように連結された伝動ロッドを含み、前記伝動ロッドにはスイッチ板が設けられ、前記スイッチ板の下端と前記隠れ溝の底端内壁との間には抑えバネが連結され、前記伝動ロッドには前記副押しブロックと当接している主押しブロックが設けられ、前記主押しブロックには中心に対称的な六つの昇降ロッドがスライドできるように連結され、前記昇降ロッドの下端には前記反転ロッドと当接している駆動ブロックが設けられ、前記伝動ロッドには前記主押しブロックの上端に位置している二つの引掛り溝が設けられ、前記引掛り溝には前記引掛り溝と当接している引掛りロッドが設けられ、前記引掛りロッドの下端には前記昇降ロッドとスライドできるように連結されたロック解除溝が設けられ、前記昇降ロッドのうち対称中心に近接する側と前記ロック解除溝の内壁との間には復帰バネが連結されており、
温度に対する要求により、手動で対応する数量の前記引掛りロッドを前記引掛り溝の外にスライド出させ、また、前記伝動ロッドが下に移動することにより、前記昇降装置の状態を変えることを特徴とする請求項1または請求項3に記載の温度調節可能の箱。
The selection device includes a transmission rod connected so as to be slidable to the bottom end inner wall of the hidden groove, and the transmission rod is provided with a switch plate, and the lower end of the switch plate and the bottom end inner wall of the hidden groove are connected to each other. A holding spring is connected between them, and the transmission rod is provided with a main push block that is in contact with the sub push block so that six elevating rods symmetrical to the center can slide in the main push block. A drive block that is connected and is in contact with the reversing rod is provided at the lower end of the elevating rod, and the transmission rod is provided with two hook grooves located at the upper end of the main push block. The hooking groove is provided with a hooking rod in contact with the hooking groove, and the lower end of the hooking rod is provided with an unlocking groove connected so as to slide with the lifting rod. A return spring is connected between the side close to the center of symmetry and the inner wall of the unlock groove.
It is characterized in that the state of the elevating device is changed by manually sliding the corresponding number of the hooking rods out of the hooking groove and moving the transmission rods downward according to the temperature requirement. The temperature-adjustable box according to claim 1 or 3.
JP2019096431A 2019-04-28 2019-05-22 Temperature adjustable box Expired - Fee Related JP6656537B1 (en)

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