CN105823619A - Integrated test box - Google Patents
Integrated test box Download PDFInfo
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- CN105823619A CN105823619A CN201610147775.0A CN201610147775A CN105823619A CN 105823619 A CN105823619 A CN 105823619A CN 201610147775 A CN201610147775 A CN 201610147775A CN 105823619 A CN105823619 A CN 105823619A
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- chamber
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- G—PHYSICS
- G01—MEASURING; TESTING
- G01M—TESTING STATIC OR DYNAMIC BALANCE OF MACHINES OR STRUCTURES; TESTING OF STRUCTURES OR APPARATUS, NOT OTHERWISE PROVIDED FOR
- G01M11/00—Testing of optical apparatus; Testing structures by optical methods not otherwise provided for
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- G—PHYSICS
- G01—MEASURING; TESTING
- G01M—TESTING STATIC OR DYNAMIC BALANCE OF MACHINES OR STRUCTURES; TESTING OF STRUCTURES OR APPARATUS, NOT OTHERWISE PROVIDED FOR
- G01M17/00—Testing of vehicles
- G01M17/007—Wheeled or endless-tracked vehicles
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- Chemical & Material Sciences (AREA)
- Analytical Chemistry (AREA)
- Testing Resistance To Weather, Investigating Materials By Mechanical Methods (AREA)
Abstract
The invention provides an integrated test box, and relates to the technical field of equipment detection. The integrated test box comprises a box body and a separator plate, the box body is provided with a first cavity and a second cavity, the separator plate is arranged in the box body detachably, the first cavity is communicated with or separated from the second cavity via the separator plate, the first cavity is provided with a first test assembly, the second cavity is provided with a second test assembly, the first test assembly is one selected from an illumination test assembly, a spraying test assembly, a heatproof test assembly and a fog dissipation test assembly, and the second test assembly is also one selected from the illumination test assembly, the spraying test assembly, the heatproof test assembly and the fog dissipation test assembly but is different from the first test assembly. Via the integrated test box provided by the invention, split parts can be tested independently while an assembly can be tested as a whole, and the testing efficiency is high.
Description
Technical field
The present invention relates to testing techniques of equipment field, in particular to a kind of combined test chamber.
Background technology
At present, China Automobile Industry is rapid, and the prescription of auto parts and components is all being gradually stepped up, wherein by each manufacturer, it is desirable to automobile headlamp assembly and taillight assembly are required to obtain the checking of reliability test.At present, it is supplied to automobile accessories manufacturer on the market do the equipment of reliability test and include: exposure experiments to light case, rain test chamber, high-and-low temperature humid heat test box etc..But, when utilizing existing testing equipment to test, need to split automobile component assembly every time, assembled again after having tested, cumbersome, and also bulk testing is the longest, and test efficiency is relatively low.
Summary of the invention
It is an object of the invention to provide a kind of combined test chamber, utilize this combined test chamber to test, the shortest, test efficiency is high.
The present invention solves it and technical problem is that and realize by the following technical solutions:
A kind of combined test chamber, including casing and dividing plate, casing is provided with the first chamber and the second chamber, dividing plate is selective in being detachably arranged in casing to be connected or separates the first chamber and the second chamber, first chamber is provided with the first test assembly, second chamber is provided with two groups that the second test assembly, the first test assembly and the second test assembly are the most different in exposure experiments to light assembly, spray test assembly, heatproof test assembly, fog dissipation test assembly.
Relative to prior art, the present invention includes following beneficial effect: the present invention passes through dividing plate, is separated by the inner chamber of casing, it is achieved the first chamber, the independence of the second chamber.First chamber and the second chamber are provided with different test assemblies, when the parts after splitting structural member assembly carry out routine tests, just utilize dividing plate to cut off two chambers, place the mean in and carry out in corresponding chamber testing;And when structural member assembly is carried out comprehensive investigation, when being simultaneously subjected to different tests, just dividing plate is pulled down, two chambers realize connection, and structural member assembly is placed on centre position, open two simultaneously and test.Parts are in use, it is all to be connected as assembly, use as entirety, and this combined test chamber can either realize the routine tests of the parts after splitting, disclosure satisfy that again the bulk test of structural member assembly, it can investigate the combination property of structural member assembly from overall angle, improves the reliability of the comprehensive of test and data.
Additionally, when carrying out routine tests, it is also possible in two chambers, place two parts respectively, two parts are carried out respectively different tests, so, it becomes possible to effectively shorten the test period to whole structural member assembly, improving the test efficiency to structural member assembly, practicality is high.
Accompanying drawing explanation
For the clearer explanation embodiment of the present invention or technical scheme of the prior art, the accompanying drawing used required in embodiment or description of the prior art will be briefly described below, apparently, accompanying drawing in describing below is only some embodiments of the present invention, for those of ordinary skill in the art, on the premise of not paying creative work, it is also possible to obtain other accompanying drawing according to these accompanying drawings.
Fig. 1 is the partial schematic diagram of the combined test chamber that the embodiment of the present invention one provides;
Fig. 2 is the enlarged diagram in A portion in Fig. 1;
Fig. 3 is the schematic front view of the combined test chamber that the embodiment of the present invention one provides;
Fig. 4 is the schematic front view of the combined test chamber that the embodiment of the present invention two provides;
Fig. 5 is the partial schematic diagram of the glove mechanism of the combined test chamber that the embodiment of the present invention two provides;
Fig. 6 is the schematic front view of the combined test chamber that the embodiment of the present invention three provides;
Fig. 7 is the enlarged diagram in B portion in Fig. 6;
Fig. 8 is that perspective diagram behind the door installed by the combined test chamber that the embodiment of the present invention four provides;
Fig. 9 is the perspective diagram of the combined test chamber that the embodiment of the present invention four provides.
Wherein, reference is summarized as follows:
Combined test chamber 100,200,300,400;
Casing 101;Dividing plate 102;First chamber 103;Second chamber 104;First test assembly 105;Second test assembly 106;Test cavity 107;Equipment cavity 108;Heat-exchange system 109;Breather 110;Lamp bracket 111;Lamp group 112;Travelling carriage 113;Arc chute frame 114;Retaining piece 115;Dividing plate frame 116;Link 117;Groove frame 118;Side member 119;
Screw thread column 201;Lower box 202;Glove mechanism 203;Turntable 204;Swingle 205;Motor 206;First fixed disk 207;Epimere bar 208;Stage casing bar 209;Hypomere bar 210;Second fixed disk 211;
3rd test assembly 301;4th test assembly 302;Humidification system 303;Heat exchanger 304;Water tank 305;Shower nozzle 306;
Turbogrid plates 401;Fixed frame 402;First sets up groove 403;Second sets up groove 404;Tank 405;Side door 406.
Detailed description of the invention
For making the purpose of the embodiment of the present invention, technical scheme and advantage clearer, below in conjunction with the accompanying drawing in the embodiment of the present invention, technical scheme in the embodiment of the present invention is clearly and completely described, obviously, described embodiment is a part of embodiment of the present invention rather than whole embodiments.Generally can with various different configurations arrange and design with the assembly of the embodiment of the present invention that illustrate described in accompanying drawing herein.
Therefore, the detailed description to the embodiments of the invention provided in the accompanying drawings is not intended to limit the scope of claimed invention below, but is merely representative of the selected embodiment of the present invention.Based on the embodiment in the present invention, the every other embodiment that those of ordinary skill in the art are obtained under not making creative work premise, broadly fall into the scope of protection of the invention.
It should also be noted that similar label and letter represent similar terms in following accompanying drawing, therefore, the most a certain Xiang Yi accompanying drawing is defined, then need not it be defined further and explains in accompanying drawing subsequently.
In describing the invention, it should be noted that, orientation or the position relationship of the instruction such as term " in ", " on ", D score, " interior ", " outward " are based on orientation shown in the drawings or position relationship, or this invention product orientation usually put or position relationship when using, it is for only for ease of the description present invention and simplifies description, rather than instruction or hint indication device or element must have specific orientation, with specific azimuth configuration and operation, be therefore not considered as limiting the invention.Describe additionally, term " first ", " second " etc. are only used for distinguishing, and it is not intended that indicate or hint relative importance.
In describing the invention, in addition it is also necessary to explanation, unless otherwise clearly defined and limited, term " is arranged ", " connection " should be interpreted broadly, and connects for example, it may be fixing, it is also possible to be to removably connect, or be integrally connected;Can be to be mechanically connected, it is also possible to be electrical connection;Can be to be joined directly together, it is also possible to be indirectly connected to by intermediary, can be the connection of two element internals.For the ordinary skill in the art, above-mentioned term concrete meaning in the present invention can be understood with concrete condition.
Embodiment one
Fig. 1 and Fig. 3 shows the combined test chamber 100 that the embodiment of the present invention one provides, including casing 101 and dividing plate 102, casing 101 is provided with the first chamber 103 and the second chamber 104, and dividing plate 102 is selective connection or separation the first chamber 103 and the second chamber 104 in being detachably arranged in casing 101.First chamber 103 is provided with the first test assembly 105, second chamber 104 is provided with two groups that the second test assembly 106, the first test assembly 105 and the second test assembly 106 are the most different in exposure experiments to light assembly, spray test assembly, heatproof test assembly, fog dissipation test assembly.
In the present embodiment, middle part within casing 101 is provided with dividing plate frame 116, dividing plate 102 is just removably connected to this, when dividing plate 102 install be separated time, it can be appreciated that dividing plate 102 embeds in dividing plate frame 116, the both sides of dividing plate frame 116 are respectively provided with two retaining pieces 115, and each retaining piece 115 is rotationally connected with dividing plate frame 116.When dividing plate 102 pulled down by needs, it is achieved when first chamber the 103, second chamber 104 connects, just rotate retaining piece 115, make retaining piece 115 dividing plate 102 be not fixed, then take off dividing plate 102;When dividing plate 102 installed by needs, it is achieved when first chamber the 103, second chamber 104 separates, just dividing plate 102 is embedded in dividing plate frame 116, then lifts the retaining piece 115 of dividing plate frame 116 both sides, fix dividing plate 102.Referred to herein to dividing plate 102 do not limit shape, can be circular, can be foursquare, in the present embodiment, it is rectangular.
Additionally, the connection of aforementioned barriers 102 arranges and is not intended as limiting, can also be carried out other arrange, realize its dismountable purpose, as arranged fixed frame in the side of dividing plate 102, opposite side at dividing plate 102 is fixed by retaining piece 115 or is taken off dividing plate 102, or chute is set in casing 101, casing 101 arranges the gap traversed into or out for dividing plate 102, utilize dividing plate 102 to slide in chute, pass (penetrating) gap, realize the dismounting (installation) of dividing plate.
In the present embodiment, casing 101 is provided with two sect (not shown) of corresponding first chamber the 103, second chamber 104 respectively, and the first chamber 103 includes test cavity 107 and equipment cavity 108, from the point of view of just to the direction of the door being closed, test cavity 107 is front, and equipment cavity 108 is rear.First test assembly 105 is heatproof test assembly, heatproof test assembly includes heat-exchange system 109 and breather 110, heat-exchange system 109 and breather 110 may be contained within equipment cavity 108, and heat-exchange system 109 connects with breather 110, and the two ends of breather 110 all connect with test cavity 107.Heat-exchange system 109 includes compressor, condenser, throttling arrangement and the vaporizer being sequentially connected with, and the operation principle of heatproof test assembly is identical with the operation principle of air-conditioning.It is internal that the cold air of test cavity 107 enters breather 110 from one end of breather 110, and under the effect of heat-exchange system 109, cold air becomes heating installation, then is discharged to test cavity 107 from the other end of breather 110, thus provides hot environment, tests for test specimen.
And the second test assembly 106 is exposure experiments to light assembly, exposure experiments to light assembly includes lamp bracket 111 and lamp group 112, lamp bracket 111 include again travelling carriage 113 and for change travelling carriage 113 towards arc chute frame 114, lamp group 112 is fixing with travelling carriage 113 to be connected, travelling carriage 113 is slidably connected with arc chute frame 114, arc chute frame 114 is connected with the inwall of casing 101, sees Fig. 2.Arranged by the planform of the connected mode between travelling carriage 113 and arc chute frame 114 and arc chute frame 114, be capable of travelling carriage 113 towards transformation, thus the lamp group 112 that can be realized as being fixed on travelling carriage 113 towards transformation, the most just change the radiation direction of lamp group 112 so that the irradiating angle of lamp group 112 is changed.It practice, the inwall of arc chute frame 114 and casing 101 is for being indirectly connected with, being provided with link 117 in casing 101, link 117 is fixed on the inwall of casing 101, and arc chute frame 114 is fixed on link 117, is positioned at the upper left position within casing 101.Travelling carriage 113 includes the groove frame 118 of two groove shapes and two side members 119, two side members 119 are separately positioned on the both sides of two groove framves 118, for two groove framves 118 are linked together, arc chute frame 114 includes two slide rails, two side members 119 are slideably positioned in two slide rails the most respectively, and lamp group 112 is fixed on the groove location of groove frame 118.
Certainly, the setting of above-mentioned exposure experiments to light assembly is not intended as limiting, it is also possible to carries out other and arranges, as arranged chute at the top of the casing 101 of the second chamber 104, then arranges the lamp group that can slide to change light position.
Regular in order to make equipment arrange, the second chamber 104 can also arrange the second chamber test cavity and the second chamber hardware chamber, and also with as the arranging of the first chamber 103, the second chamber test cavity is front, and the second chamber hardware chamber is rear.
The present embodiment passes through dividing plate 102, is separated by the inner chamber of casing 101, it is achieved the independence of first chamber the 103, second chamber 104.First chamber 103 and the second chamber 104 are provided with different test assemblies, when the parts after splitting structural member assembly carry out heatproof test or exposure experiments to light, just utilize dividing plate 102 to cut off two chambers, place the mean in and carry out in corresponding chamber testing;And when structural member assembly is carried out comprehensive investigation, when being simultaneously subjected to heatproof test and exposure experiments to light, just dividing plate 102 is pulled down, two chambers realize connection, and structural member assembly is placed on centre position, open two simultaneously and test.Parts are in use, it is all to be connected as assembly, use as entirety, and this combined test chamber 100 can either realize the routine tests of the parts after splitting, disclosure satisfy that again the bulk test of structural member assembly, it can investigate the combination property of structural member assembly from overall angle, improves the reliability of the comprehensive of test and data.
Additionally, when carrying out routine tests, it is also possible in two chambers, place two parts respectively, two parts are carried out respectively different tests, so, it becomes possible to effectively shorten the test period to whole structural member assembly, improve the test efficiency to structural member assembly.This combined test chamber 100 can meet Multitest requirement simultaneously, and practicality is high.
It addition, the combined test chamber 100 that the present embodiment provides also includes air channel, air channel is arranged at the top outside casing 101, and test cavity the 107, second chamber 104 is in communication with the outside by air channel.When the test assembly of the first chamber 103 and the second chamber 104 is opened simultaneously, the air pressure of two chambers may be different, the setting of air channel, it becomes possible to balance cavity and extraneous air pressure, thus avoid the damage of equipment or the generation of danger.
Embodiment two
On the basis of embodiment one, Fig. 4 shows the combined test chamber 200 that the embodiment of the present invention two provides, and this combined test chamber 200 also includes that lower box 202, lower box 202 are arranged at the lower section of casing 101, and casing 101 is as upper box.Dividing plate the 102, first chamber 103 and the second chamber 104 may be contained within upper box.Casing 101 is additionally provided with glove mechanism 203, its partial schematic diagram sees Fig. 5, glove mechanism 203 includes turntable 204, swingle 205 and motor 206, turntable 204 and swingle 205 are arranged at the test cavity 107 of the first chamber 103, motor 206 is arranged in lower box 202, one end of swingle 205 is connected with turntable 204, and the other end stretches in lower box 202, motor 206 drive rotation.This kind is arranged, it is possible to making the parts of test in process of the test, rotate, while test, each position is sufficiently detected.
Wherein, swingle 205 includes again epimere bar 208, stage casing bar 209 and hypomere bar 210, stage casing bar 209 includes two fixed disks and four screw thread columns 201, one end of epimere bar 208 is connected with turntable 204, the other end and a fixed disk (the first fixed disk 207) connect, one end of screw thread column 201 is connected with the first fixed disk 207, the other end is connected with another fixed disk (the second fixed disk 211), second fixed disk 211 is connected with one end of hypomere bar 210, the other end of hypomere bar 210 is driven rotation by motor 206, transmission is realized by gear between motor 206 and hypomere bar 210.Utilize screw thread column 201 and two fixed disks to realize the connection of upper-lower section, so, when need adjust turntable 204 height time, it is possible to turn screw thread column 201, thus change the height of turntable 204 so that it is reach target call.And connect epimere bar 208 and hypomere bar 210 by four screw thread columns 201, and the non-immediate height regulating whole turntable 204 that is threaded on swingle 205, also there is reason: be threaded in one end of the close turntable 204 of swingle 205, the regulation of height to turntable 204 can be realized, but connective stability is poor, when the other end of swingle 205 rotates under motor 206 acts on, turntable 204 instantaneous be still to maintain static, so the upper and lower side of swingle 205 is asynchronous, in the case of threaded, arise that turn, turntable 204 and swingle 205 are it is possible to cause due to screw thread turn connecting shakiness, even depart from;And carry out the setting of the present embodiment, screw thread column 201 upper and lower side is by nut check, the upper and lower side of screw thread column 201 in rotation process, still can fixation, so this kind of setting can be prevented effectively from the disengaging in swingle 205 rotation process with turntable 204.
Certainly, the setting of glove mechanism 203 is not set to limit with above-mentioned, it is also possible to make the platform of storing parts move or rotate by magnetic force induction, it is achieved to test purpose comprehensive, uniform.And the induced way of the setting of swingle 205 and motor 206 is not set to limit with above-mentioned.
Embodiment three
On the basis of embodiment two, Fig. 6 shows the combined test chamber 300 that the embodiment of the present invention three provides, first chamber 103 of this combined test chamber 300 is additionally provided with the 3rd test assembly 301, second chamber 104 is additionally provided with the 4th test assembly 302, and the 3rd test assembly 301 and the 4th test assembly 302 are respectively selected from a group in fog dissipation test assembly, spray test assembly.
In the present embodiment, 3rd test assembly 301 is fog dissipation test assembly, fog dissipation test assembly includes humidification system 303 and for steam is converted to the heat exchanger 304 of liquid, heat exchanger 304 is arranged at test cavity 107, humidification system 303 is arranged at lower box 202, one end of humidification system 303 connects with outside steam (vapor) outlet, and the other end connects with test cavity 107.When actually used, outside steam boiler can be connected with one end of humidification system 303, then the other end of humidification system 303 is connected with test cavity 107.Due to when carrying out fog dissipation test, need to supplement humidity according to practical situation, or need to set different humidity according to the use region of test parts, the fog different to produce degree, so, in the case, the setting of humidification system 303, just can supplement or control the humidity of the steam being passed through from steam boiler, thus reach the fog requirement of test.And after the test cavity 107 of the first chamber 103 produces fog, being fog dissipation test due to do, so being provided with heat exchanger 304 in test cavity 107, heat exchanger 304 can reduce ambient temperature, steam is made to be changed into liquid condition and fall, with this fog that dissipates.In the present embodiment, the bottom of test cavity 107 be additionally provided be communicated to the external world duct, when steam be changed into liquid condition fall time, test cavity 107 will be discharged along duct, thus, when carrying out fog dissipation test, temperature, humidity within test cavity 107 all can change.
In the present embodiment, the 4th test assembly 302 is spray test assembly, and spray test assembly includes that water tank 305 and shower nozzle 306, water tank 305 are arranged at lower box 202, and shower nozzle 306 is arranged at the second chamber 104, and shower nozzle 306 is connected with water tank 305 by water pipe.In second chamber 104, the enlarged diagram of shower nozzle 306 position sees Fig. 7, and in the present embodiment, shower nozzle 306 is six, is connected by universal drive shaft between six shower nozzles 306 and water pipe.The setting of universal drive shaft is capable of the multi-angle rotation of shower nozzle 306, so that spray angles is adjusted.
Embodiment four
On the basis of embodiment three, Fig. 8 and Fig. 9 shows the combined test chamber 400 that the embodiment of the present invention four provides, and in this combined test chamber 400, the setting of dividing plate 102 is different from embodiment three, and other arranges all identical with embodiment three.In the present embodiment, the centre position of casing 101 inner chamber is provided with dividing plate 102, fixed frame 402 is also included in casing 101, fixed frame 402 is disposed adjacent with dividing plate 102, the internal diameter of fixed frame 402 is less than the external diameter of dividing plate 102, for propping up dividing plate 102, dividing plate frame 116 it is additionally provided with in casing 101, it is arranged close to fixed frame 402, dividing plate 102 can be understood as embedding dividing plate frame 116, the side away from fixed frame 402 of dividing plate frame 116 is provided with four retaining pieces 115, and for the stationary barrier 102 when dividing plate 102 embeds, retaining piece 115 is rotationally connected with dividing plate frame 116.When needs take off dividing plate 102, just rotate retaining piece 115, take off dividing plate 102.
First chamber 103 of this combined test chamber 400 is additionally provided with Turbogrid plates 401, the side of the dividing plate dorsad 102 of fixed frame 402 is provided with multiple first and sets up groove 403, the medial wall towards dividing plate 102 of the first chamber 103 internal box 101 is provided with the most multiple second and sets up groove 404, and the two ends of Turbogrid plates 401 are erected on first respectively and set up groove 403 and second and set up groove 404.When the parts of test more or bigger time, it becomes possible to parts are positioned on Turbogrid plates 401, it is achieved to more or larger part more fully, completely, test uniformly.And, set up groove 403 and second set up groove 404 owing to being provided with multiple first, so, Turbogrid plates 401 can adjust height, so that the parts on Turbogrid plates 401 are positioned at tests better position, particularly when the component specification of test is less, this kind arranges highly effective, parts can be made fully to test, obtain more reliable test data.
In the present embodiment, first sets up groove 403 and second sets up groove 404 and is ten, and certainly, this kind of setting is not intended as limiting, it is also possible to be set to other number, such as eight, 20.
Further, since spray experiment, fog dissipation experiment etc. have current and produce, so the outside of casing 101 is additionally provided with the tank 405 for the water receiving first chamber the 103, second chamber 104 to flow out.Tank 405 is connected to the outer rim of the close door of the bottom of test cavity 107 and the second chamber 104.In the present embodiment, with from the point of view of the direction of the door closed, the left and right sides of casing 101 further respectively has two side doors 406, two the most corresponding test cavities 107 of side door 406 and the second chamber 104, the lower section of two side door 406 closed modes also is provided with tank 405, is connected to the outer rim of the close side door 406 of the bottom of test cavity 107 and the second chamber 104.
The foregoing is only the preferred embodiments of the present invention, be not limited to the present invention, for a person skilled in the art, the present invention can have various modifications and variations.All within the spirit and principles in the present invention, any modification, equivalent substitution and improvement etc. made, should be included within the scope of the present invention.
Claims (10)
1. a combined test chamber, it is characterized in that, including casing and dividing plate, described casing is provided with the first chamber and the second chamber, described dividing plate optionally connects or separates described first chamber and described second chamber in being detachably arranged in described casing, described first chamber is provided with the first test assembly, described second chamber is provided with two groups that the second test assembly, described first test assembly and described second test assembly are the most different in exposure experiments to light assembly, spray test assembly, heatproof test assembly, fog dissipation test assembly.
Combined test chamber the most according to claim 1, it is characterized in that: described first chamber includes test cavity and equipment cavity, described first test assembly is described heatproof test assembly, described heatproof test assembly includes heat-exchange system and the breather connected with described heat-exchange system, described heat-exchange system and described breather may be contained within described equipment cavity, and described breather connects with described test cavity;Described second test assembly is described exposure experiments to light assembly, and described exposure experiments to light assembly includes lamp bracket and lamp group, and described lamp bracket is connected with the inwall of described casing, and described lamp group is arranged at described lamp bracket.
Combined test chamber the most according to claim 2, it is characterized in that: described lamp bracket include travelling carriage and for change described travelling carriage towards arc chute frame, described lamp group is fixing with described travelling carriage to be connected, described travelling carriage is slidably connected with described arc chute frame, and described arc chute frame is connected with the inwall of described casing.
Combined test chamber the most according to claim 2, it is characterized in that: described comprehensive experiment box also includes lower box, described lower box is arranged at the lower section of described casing, and described casing is as upper box, and described dividing plate, described first chamber and described second chamber may be contained within described upper box.
Combined test chamber the most according to claim 4, it is characterized in that: described combined test chamber also includes glove mechanism, described glove mechanism includes turntable, swingle and motor, described turntable and described swingle are arranged at described test cavity, described motor is arranged in described lower box, one end of described swingle is connected with described turntable, and the other end stretches in described lower box and is connected with described motor.
Combined test chamber the most according to claim 4, it is characterized in that: described first chamber is additionally provided with the 3rd test assembly, described second chamber is additionally provided with the 4th test assembly, and described 3rd test assembly and described 4th test assembly are respectively selected from a group in fog dissipation test assembly, spray test assembly.
Combined test chamber the most according to claim 6, it is characterized in that: described 3rd test assembly is described fog dissipation test assembly, described fog dissipation test assembly includes humidification system and for steam is converted to the heat exchanger of liquid, described heat exchanger is arranged at described test cavity, described humidification system is arranged at described lower box, one end of described humidification system connects with outside steam (vapor) outlet, and the other end connects with described test cavity;Described 4th test assembly is spray test assembly, and described spray test assembly includes that water tank and shower nozzle, described water tank are arranged at described lower box, and described shower nozzle is arranged at described second chamber, and described shower nozzle is connected with described water tank by water pipe.
Combined test chamber the most according to claim 7, it is characterised in that: it is connected by universal drive shaft between described shower nozzle with described water pipe.
Combined test chamber the most according to claim 1, it is characterized in that: described first chamber is additionally provided with Turbogrid plates and the fixed frame being disposed adjacent with described dividing plate, the side of the most described dividing plate of described fixed frame is provided with multiple first and sets up groove, in described first chamber, the medial wall towards described dividing plate of described casing is provided with the most multiple second and sets up groove, and the two ends of described Turbogrid plates are erected on described first respectively and set up groove and described second and set up groove.
Combined test chamber the most according to claim 1, it is characterised in that: described combined test chamber also includes that tank, described tank are arranged at described first chamber and the lower section of described second chamber.
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