CN209513504U - A kind of energy-saving type thermal shock test chamber - Google Patents

A kind of energy-saving type thermal shock test chamber Download PDF

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Publication number
CN209513504U
CN209513504U CN201920255336.0U CN201920255336U CN209513504U CN 209513504 U CN209513504 U CN 209513504U CN 201920255336 U CN201920255336 U CN 201920255336U CN 209513504 U CN209513504 U CN 209513504U
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China
Prior art keywords
thermal shock
wall
support frame
heat insulation
energy
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CN201920255336.0U
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Chinese (zh)
Inventor
张红英
李艳明
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Hebei Dianke Flight Testing Services Co Ltd
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Hebei Dianke Flight Testing Services Co Ltd
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Abstract

The utility model discloses a kind of energy-saving type thermal shock test chambers, including support base, the heat preservation outer wall being mounted in support base and heat insulation inner wall and thermal-insulating sealing door, servo telescoping cylinder is installed in cavity, it is provided with the grafting fin that the reserved sliding slot opened up on the side wall with heat insulation inner wall is adapted to connection on the side wall of regulating part, upper layer thermal shock mechanism is installed on regulating part;Support frame is provided with below the thermal shock mechanism of upper layer, the both ends of support frame are mounted in two heat insulation inner walls, and the upper surface of support frame is equipped with to thermal shock part, are equipped with thermal shock mechanism, lower layer immediately below support frame.Lift adjustment is carried out to the heating element on support hack lever by the servo telescoping cylinder in cavity in the application, according to the geomery of workpiece for measurement, so that adjustable range saves the utilization of the energy to improve radiation efficiency.On the other hand, when workpiece for measurement is installed, the loading or unloading operation for being convenient for operator with pull is slided in the horizontal concrete chute of inner wall by support frame.

Description

A kind of energy-saving type thermal shock test chamber
Technical field
The utility model relates to workpiece heatproof detection technique field more particularly to a kind of energy-saving type thermal shock test chambers.
Background technique
Temperature shock test machine is the test equipment of the materials industries such as metal, plastics, rubber, electronics indispensability, for testing Material structure or composite material, the patient degree of institute, is able under the continuous environment through very high temperature and extremely low temperature under moment In shortest time detection sample because caused by expanding with heat and contract with cold chemical change or physical injury.But it is operated with conventional In the process, due to fixed in the structure of experiment casing, when needing the larger or smaller workpiece of side view, it be easy to cause size not Properly or lead to heat transfer efficiency bottom, waste of energy, on the other hand, the inside of experiment casing are not easy to pick and place workpiece, to operation Personnel place low efficiency.
Utility model content
The purpose of the utility model is to provide a kind of energy-saving type thermal shock test chamber, heat punching in routine operation device is solved Hitting internal structure and not being adjustable causes heat transfer efficiency low and the problem of the pick-and-place inconvenience of workpiece for measurement.
In order to solve the above technical problems, the utility model adopts the following technical solution:
The utility model provides a kind of energy-saving type thermal shock test chamber, including support base, is mounted on the support Heat preservation outer wall and heat insulation inner wall and thermal-insulating sealing door on pedestal are arranged free between heat preservation outer wall and the heat insulation inner wall Chamber is equipped with servo telescoping cylinder in the cavity, regulating part, the regulating part is equipped on the telescopic end of the servo telescoping cylinder Side wall on be provided with the grafting fin that the reserved sliding slot opened up on the side wall with heat insulation inner wall is adapted to connection, on the regulating part Upper layer thermal shock mechanism is installed, the both ends of upper layer thermal shock mechanism are provided through the preformed groove opened up in heat insulation inner wall The support hack lever in road is equipped with the heating element of connection power supply on support frame as described above bar;The lower section of upper layer thermal shock mechanism It is provided with support frame, the both ends of support frame as described above are mounted in two heat insulation inner walls, and the upper surface of support frame as described above is equipped with To thermal shock part, thermal shock mechanism, lower layer is installed immediately below support frame as described above.
Further, horizontal concrete chute is installed in same level on the inner wall of the heat insulation inner wall.
Further, adaptation is equipped with support frame as described above in the horizontal concrete chute.
Further, the length of the regulating part is equal to the internal diameter of the cavity.
Further, multiple vertically arranged reserved conduits are offered in the heat insulation inner wall.
Further, multiple support frame as described above bars are each passed through multiple reserved conduits.
Further, lower layer's thermal shock mechanism includes support frame and heating element.
Compared with prior art, the advantageous effects of the utility model: flexible by the servo in cavity in the application Cylinder carries out lift adjustment to the heating element on support hack lever, according to the geomery of workpiece for measurement, thus adjustable range, to mention High-heating radiation efficiency saves the utilization of the energy.On the other hand, workpiece for measurement install when, by support frame inner wall level Sliding in sliding slot, pull are convenient for the loading or unloading operation of operator.
Detailed description of the invention
The utility model is described in further detail for explanation with reference to the accompanying drawing.
Fig. 1 is the main body schematic diagram of the utility model energy-saving type thermal shock test chamber;
Fig. 2 is the top view of Fig. 1;
Fig. 3 is the side view of Fig. 1.
Description of symbols: 1, support base;2, outer wall is kept the temperature;3, servo telescoping cylinder;4, regulating part;401, grafting is convex Rib;5, cavity;6, inner wall;601, sliding slot is reserved;602, conduit is reserved;603, horizontal concrete chute;7, upper layer thermal shock mechanism;701, Support hack lever;702, heating element;8, to thermal shock part;9, support frame;10, lower layer's thermal shock mechanism.
Specific embodiment
As shown in Figure 1-3, a kind of energy-saving type thermal shock test chamber, including support base 1, it is mounted on the support base Heat preservation outer wall 2 and heat insulation inner wall 6 and thermal-insulating sealing door on 1, cooperate between the heat preservation outer wall 2 and heat insulation inner wall 6 and are equipped with Cavity 5 is equipped with servo telescoping cylinder 3 in the cavity 5, and wherein servo telescoping cylinder is electric expansion cylinder and passes through control system Control operation is carried out, regulating part 4 is installed on the telescopic end of the servo telescoping cylinder 3, is equipped on the side wall of the regulating part 4 It is adapted to the grafting fin 401 of connection with the reserved sliding slot 601 opened up on the side wall of heat insulation inner wall 6, is equipped on the regulating part 4 Upper layer thermal shock mechanism 7, the both ends of upper layer thermal shock mechanism 7 offer the reserved conduit opened up in heat insulation inner wall 6 602 support hack lever 701 is equipped with the heating element 702 of connection power supply on support frame as described above bar 701;The upper layer thermal shock The lower section of mechanism 7 is equipped with support frame 9, and support frame as described above 9 is grid to improve heat exchange efficiency, the both ends of support frame as described above 9 It is mounted in two heat insulation inner walls 6, the upper surface of support frame as described above 9 is equipped with to thermal shock part 8, and support frame as described above 9 is just Lower section is equipped with thermal shock mechanism, lower layer 10.
In the present embodiment, horizontal concrete chute 603, the level are installed on the inner wall of the heat insulation inner wall 6 in same level Adaptation is equipped with support frame as described above 9 in sliding slot 603, thus realize that support frame 9 carries out pull sliding in the horizontal concrete chute 603, Convenient for preventing the placement to thermal shock workpiece, service efficiency is improved.Length in the horizontal direction of the regulating part 4 is equal to described The internal diameter of cavity 5 is greater than reserved conduit to guarantee that regulating part 4 is tightly attached in heat insulation inner wall 6 on 4 vertical direction of regulating part 602 length, to improve thermal insulation property;3 vertically arranged reserved conduits 602 are offered in the heat insulation inner wall 6, it is multiple Support frame as described above bar 701 is each passed through 3 reserved conduits 602, convenient for being fixedly mounted for thermal shock workpiece;The lower layer Thermal shock mechanism 10 includes support frame and heating element, and the heating element is dish type Electrothermal ring, and heating element connects Temperature control regulating system, to improve thermal shock test accuracy.
The specific operation process of the utility model is as follows:
Firstly, opening thermal-insulating sealing door, support frame 9 is pulled out along the outside of horizontal concrete chute 603, it then will be to thermal shock part 8 are placed on support frame 9, support frame 9 are drawn push-in energy-saving type thermal shock test chamber along the direction of horizontal concrete chute 603, then together When control system adjust servo telescoping cylinder 3, suitable distance of the distance to thermal shock part 8 will be fallen on upper layer thermal shock mechanism 7, Thermal-insulating sealing door is finally closed, and connects the power supply of heating element 702 and thermal shock mechanism, lower layer 10, carries out thermal shock test.
In the description of the invention, it is to be understood that term " longitudinal direction ", " transverse direction ", "upper", "lower", " preceding ", The orientation or positional relationship of the instructions such as " rear ", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outside" be based on Orientation or positional relationship shown in the drawings, be merely for convenience of description the present invention, rather than the device of indication or suggestion meaning or Element must have a particular orientation, be constructed and operated in a specific orientation, therefore be not considered as limiting the invention.
Embodiment described above is only that the preferred embodiment of the invention is described, not to the utility model Range is defined, and under the premise of not departing from the spirit of the design of the utility model, those of ordinary skill in the art are practical new to this The various changes and improvements that the technical solution of type is made should all fall into the protection scope that the utility model claims book determines It is interior.

Claims (7)

1. a kind of energy-saving type thermal shock test chamber, it is characterised in that: including support base (1), be mounted on the support base (1) heat preservation outer wall (2) and heat insulation inner wall (6) and thermal-insulating sealing door on, the heat preservation outer wall (2) and heat insulation inner wall (6) it Between be provided with cavity (5), is equipped with servo telescoping cylinder (3) in the cavity (5), on the telescopic end of the servo telescoping cylinder (3) It is equipped with regulating part (4), is provided on the side wall of the regulating part (4) and the reserved cunning that opens up on the side wall of heat insulation inner wall (6) The grafting fin (401) of slot (601) adaptation connection, is equipped with upper layer thermal shock mechanism (7) on the regulating part (4), it is described on The both ends of layer thermal shock mechanism (7) are provided through the support hack lever of the reserved conduit (602) opened up on heat insulation inner wall (6) (701), the heating element (702) of connection power supply is installed on support frame as described above bar (701);Upper layer thermal shock mechanism (7) Lower section be provided with support frame (9), the both ends of support frame as described above (9) are mounted on two heat insulation inner walls (6), the support The upper surface of frame (9) is equipped with to thermal shock part (8), is equipped with thermal shock mechanism, lower layer (10) immediately below support frame as described above (9).
2. energy-saving type thermal shock test chamber according to claim 1, it is characterised in that: the heat insulation inner wall (6) it is interior Horizontal concrete chute (603) are installed in same level on wall.
3. energy-saving type thermal shock test chamber according to claim 2, it is characterised in that: in the horizontal concrete chute (603) Adaptation is equipped with support frame as described above (9).
4. energy-saving type thermal shock test chamber according to claim 1, it is characterised in that: the length of the regulating part (4) Equal to the internal diameter of the cavity (5).
5. energy-saving type thermal shock test chamber according to claim 1, it is characterised in that: opened on the heat insulation inner wall (6) Equipped with multiple vertically arranged reserved conduits (602).
6. energy-saving type thermal shock test chamber according to claim 5, it is characterised in that: multiple support frame as described above bars (701) multiple reserved conduits (602) are each passed through.
7. energy-saving type thermal shock test chamber according to claim 1, it is characterised in that: lower layer's thermal shock mechanism It (10) include support frame and heating element.
CN201920255336.0U 2019-02-28 2019-02-28 A kind of energy-saving type thermal shock test chamber Active CN209513504U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920255336.0U CN209513504U (en) 2019-02-28 2019-02-28 A kind of energy-saving type thermal shock test chamber

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920255336.0U CN209513504U (en) 2019-02-28 2019-02-28 A kind of energy-saving type thermal shock test chamber

Publications (1)

Publication Number Publication Date
CN209513504U true CN209513504U (en) 2019-10-18

Family

ID=68204837

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201920255336.0U Active CN209513504U (en) 2019-02-28 2019-02-28 A kind of energy-saving type thermal shock test chamber

Country Status (1)

Country Link
CN (1) CN209513504U (en)

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