CN107868753A - Detection means for Cosmetics microorganism - Google Patents

Detection means for Cosmetics microorganism Download PDF

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Publication number
CN107868753A
CN107868753A CN201711433244.9A CN201711433244A CN107868753A CN 107868753 A CN107868753 A CN 107868753A CN 201711433244 A CN201711433244 A CN 201711433244A CN 107868753 A CN107868753 A CN 107868753A
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crystal oscillator
detection means
cosmetics
microorganism
supporting table
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CN201711433244.9A
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CN107868753B (en
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刘文秋
陈益思
董宁
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Centre Testing International Group Co ltd
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Centre Testing International Group Co ltd
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    • CCHEMISTRY; METALLURGY
    • C12BIOCHEMISTRY; BEER; SPIRITS; WINE; VINEGAR; MICROBIOLOGY; ENZYMOLOGY; MUTATION OR GENETIC ENGINEERING
    • C12MAPPARATUS FOR ENZYMOLOGY OR MICROBIOLOGY; APPARATUS FOR CULTURING MICROORGANISMS FOR PRODUCING BIOMASS, FOR GROWING CELLS OR FOR OBTAINING FERMENTATION OR METABOLIC PRODUCTS, i.e. BIOREACTORS OR FERMENTERS
    • C12M31/00Means for providing, directing, scattering or concentrating light
    • C12M31/08Means for providing, directing, scattering or concentrating light by conducting or reflecting elements located inside the reactor or in its structure
    • CCHEMISTRY; METALLURGY
    • C12BIOCHEMISTRY; BEER; SPIRITS; WINE; VINEGAR; MICROBIOLOGY; ENZYMOLOGY; MUTATION OR GENETIC ENGINEERING
    • C12MAPPARATUS FOR ENZYMOLOGY OR MICROBIOLOGY; APPARATUS FOR CULTURING MICROORGANISMS FOR PRODUCING BIOMASS, FOR GROWING CELLS OR FOR OBTAINING FERMENTATION OR METABOLIC PRODUCTS, i.e. BIOREACTORS OR FERMENTERS
    • C12M31/00Means for providing, directing, scattering or concentrating light
    • C12M31/10Means for providing, directing, scattering or concentrating light by light emitting elements located inside the reactor, e.g. LED or OLED
    • CCHEMISTRY; METALLURGY
    • C12BIOCHEMISTRY; BEER; SPIRITS; WINE; VINEGAR; MICROBIOLOGY; ENZYMOLOGY; MUTATION OR GENETIC ENGINEERING
    • C12MAPPARATUS FOR ENZYMOLOGY OR MICROBIOLOGY; APPARATUS FOR CULTURING MICROORGANISMS FOR PRODUCING BIOMASS, FOR GROWING CELLS OR FOR OBTAINING FERMENTATION OR METABOLIC PRODUCTS, i.e. BIOREACTORS OR FERMENTERS
    • C12M41/00Means for regulation, monitoring, measurement or control, e.g. flow regulation
    • C12M41/06Means for regulation, monitoring, measurement or control, e.g. flow regulation of illumination
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02ATECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
    • Y02A50/00TECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE in human health protection, e.g. against extreme weather
    • Y02A50/30Against vector-borne diseases, e.g. mosquito-borne, fly-borne, tick-borne or waterborne diseases whose impact is exacerbated by climate change

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  • Chemical & Material Sciences (AREA)
  • Organic Chemistry (AREA)
  • Health & Medical Sciences (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Bioinformatics & Cheminformatics (AREA)
  • Zoology (AREA)
  • Wood Science & Technology (AREA)
  • Microbiology (AREA)
  • Sustainable Development (AREA)
  • Biotechnology (AREA)
  • Biomedical Technology (AREA)
  • Biochemistry (AREA)
  • General Engineering & Computer Science (AREA)
  • General Health & Medical Sciences (AREA)
  • Genetics & Genomics (AREA)
  • Analytical Chemistry (AREA)
  • Apparatus Associated With Microorganisms And Enzymes (AREA)

Abstract

The invention discloses a kind of detection means for Cosmetics microorganism, including:Housing, housing include base and upper lid, and base and upper lid are collectively forming a receiving space, and upper lid is sealably covered on base;Supporting table, for supporting table in receiving space, supporting table upper surface is provided with an arc reflection structure;Crystal oscillator device, crystal oscillator device includes crystal oscillator support and the crystal oscillator being installed on crystal oscillator support, and crystal oscillator device is additionally provided with engraved structure in supporting table between crystal oscillator support and crystal oscillator, and the lower surface of crystal oscillator is located at the focal point of arc reflection structure, and the lower surface of crystal oscillator is provided with culture medium;Sunlight simulator, sunlight simulator are located at the top of crystal oscillator device, and the light that sunlight simulator is sent is irradiated in arc reflection structure through engraved structure, and are focused on by arc reflection structure on the culture medium of the lower surface of crystal oscillator.The present invention is that one kind can shorten incubation time, improves the detection means of the microorganism of detection accuracy.

Description

Detection means for Cosmetics microorganism
Technical field
The present invention relates to technical field of microbial detection, more particularly to one kind can shorten incubation time, and it is accurate to improve detection The detection means for Cosmetics microorganism of true property.
Background technology
With expanding economy, people's living standards continue to improve, the pursuit more and more higher for material and cultural life, Cosmetics are the indispensable daily living articles of the vast crowd that likes to be beautiful, but the quality accident of cosmetics occurs repeatedly.
In fact, in cosmetics microorganism due to microorganism being widely present in nature because the raw material of cosmetics, adding Add and contain substantial amounts of such as grease, colloid, protein, polyalcohol and other nutriments in agent and there is large quantity of moisture, these are all It is the nutriment such as carbon source, nitrogen source and water necessary to microbial growth, it is micro- under the conditions of suitable temperature, humidity etc. Biology in cosmetics will raised growth breeding, when microbial reproduction to it is a great deal of after, one side microorganism absorb and divide Solved the active ingredient in cosmetics, some new materials generated additionally, due to excretion, and make the compositions of cosmetics by Destroy, and then mouldy, corrupt, make cosmetics discoloration (mildew for producing the color such as red, black, green) and the unhappy stink of generation, have Microorganism also produce toxin, consumer can be made by bacterium infection and causing many serious harm such as allergy.Cosmetics Microorganism pollution can be divided into two kinds of situations, and the microorganism pollution being subject in Cosmetics Production typically is referred to as into one-level pollution; And the pollution being subject to during consumer's use is referred to as secondary pollution.1st, the microorganism one-level of cosmetics pollutes a level microbe Pollution refers to the pollution in Cosmetics Production, including equipment, raw material, production and the pollution for packing four kinds of approach.Production is set Standby such as various delivery pumps, grinder, mixing and blending machine, mulser, bottle placer equipment are microorganism accumulation parts.Therefore need into The processing such as row sterilization, sterilization.Cosmetic material is the pollution sources of Cosmetics microorganism.Before manufacturing such as heating, mixing, Ke Nengyi It is contaminated.Therefore, to be mainly animal-plant material Pollution protection to raw material before manufacture, especially as protein, starch are this kind of Raw material.Need to spot-check raw material before manufacture, carry out microculture counting.The situation of microorganism is directly connected in raw material Product, the microbe quantity of raw material or product should be controlled all to be less than 100/gram, while there can not be pathogen.Except to raw material Carry out disinfection, sterilize outer, the another microorganism pollution that should be noted that water.Deionized water used in production can not store.In summer Deionized water microorganism up to 1,000,000/gram, often pollution has bacterium in running water, therefore water will also be handled, generally more Carried out disinfection using the methods of heating and ultraviolet irradiation.When the manufacturing process of cosmetics is as manufactured emulsion, generally adopt With stassanization, heat water to 90 DEG C and maintain sterilize for 20 minutes, then the oil phase with similar temperature is emulsified.Cosmetics The last flow packaging of production, and easily cause the link of microorganism pollution.Packer's bay require purification of air, air it is clean It is contained in the every litres of air of cleanliness ammonium>The average of 0.5 μm of grit represents rank.Classification of the China to air purity in recent years is Through starting to use Unite States Standard, method for expressing is as follows:Air purity rank>The average 100 grades (I) of 0.5 μm of grit<3.5 Grain/liter 1000 grades (II)<35 10000 grades of/liter (III)<350 100000 grades of/liter (IV)<3500/liter Cosmetic Manufacture bags Reload request air purity is 10000 grade (III) -100000 grades (IV).III grade is sterile workshop, and (IV) level is half sterile car Between.Can with the method for Bacteria Culture come test package room whether be purification desinfection chamber.In the packaging process of cosmetics, operation The human body and clothing of worker can also cause the serious pollution of microorganism, as human body scalp on microorganism may be up to 1,400,000/ Cm2, therefore, it is necessary to operating personnel are required with the personal hygiene of high standard, to wearing the clothes, the processing that also to carry out disinfection such as cap, footwear. In addition, the packing container bottle of cosmetics, tank, pipe etc. can also be polluted by microorganism pollution, general glass wares than plastic ware Seriously, therefore, must carry out disinfection processing to packaging material.2nd, this microorganism pollution of microorganism secondary pollution of cosmetics refers to disappear The person of expense is when using cosmetics, and when such as smearing cosmetics with finger, the microorganism on finger will pollute cosmetics, cosmetics production The lid of product is often opened, and also also can quickly be bred in cosmetics by microorganism pollution, such microorganism, be caused to make up Product are mouldy, corrupt iso-metamorphism.Therefore, when producing cosmetics, it is necessary to add effective preservative in cosmetics.Suppress micro- life The breeding of thing.
Cosmetics microorganism detection method is that cosmetics quality manages essential important component, can be effectively Ensure that user's is safe to use.Cosmetics microorganism detection is one of important indicator for weighing cosmetics quality, and is judged One of scientific basis whether tested cosmetics are used safely.In addition, detected by Cosmetics microorganism, it can be determined that cosmetics The cleanliness factor situation of processing environment, correct evaluation can be made to the degree that cosmetics are contaminated by bacterial, be every sanitary pipe Science and engineering makees offer scientific basis.
The content of the invention
It is an object of the invention to provide one kind can shorten incubation time, improve the microculture dress of detection accuracy Put.
To achieve these goals, technical scheme provided by the invention is:A kind of inspection for Cosmetics microorganism is provided Device is surveyed, including:
Housing, the housing include base and upper lid, and the base and upper lid are collectively forming a receiving space, the upper lid Sealably it is covered on the base;
Supporting table, for the supporting table in the receiving space, the supporting table upper surface is provided with an arc reflection knot Structure;
Crystal oscillator device, the crystal oscillator device include crystal oscillator support and the crystal oscillator being installed on the crystal oscillator support, the crystalline substance Vibrating device is additionally provided with engraved structure, and the following table of the crystal oscillator in the supporting table between the crystal oscillator support and crystal oscillator Face is located at the focal point of the arc reflection structure, and the lower surface of the crystal oscillator is provided with culture medium;
Sunlight simulator, the sunlight simulator are located at the top of the crystal oscillator device, the simulated solar The light that electro-optical device is sent is irradiated in the arc reflection structure through the engraved structure, and passes through the arc reflection knot Structure is focused on the culture medium of the lower surface of the crystal oscillator.
The crystal oscillator upper surface and lower surface are laid with foil-like exciting electrode, the paper tinsel positioned at the crystal oscillator upper surface Shape exciting electrode draws the left side for being connected to the crystal oscillator rack upper surface along the crystal oscillator upper surface, positioned at the crystal oscillator following table The foil-like exciting electrode in face is drawn along the crystal oscillator lower surface and is connected to the right side of the crystal oscillator rack upper surface, described The left side and right side of crystal oscillator rack upper surface are respectively provided with the first hard contact being connected with external circuitry.
Also including at least two crystal oscillator device compacting parts, the crystal oscillator device compacting part includes fixed part and compressed part, The fixed part is fixed on above the supporting table, and the compressed part is bent to form downwards by the fixed part, to the crystal oscillator Device is fixed.
The compressed part includes electric wire, and the electric wire includes the wire inside the compressed part and is located at Second hard contact for compressing end surface, the first hard contact described in the second hard contact face.
Also include optical filter, the optical filter is below the sunlight simulator.
Also include motor driven systems, the output shaft of the motor driven systems sealingly extends through the upper lid and the mould Intend the connection of sun electro-optical device, the motor driven systems drive the sunlight simulator to rotate so that the culture medium obtains Uniform reflected light is obtained to shine.
The base and upper lid are circular configuration, in addition to inlet channel and outlet passageway, the bottom of the base and The tangential direction on top sets the inlet channel and outlet passageway respectively, and the inlet channel and the outlet passageway are in phase Opposite direction is set, and the upward air-flow of spiral is formed from the gas that the inlet channel is come in the receiving space, finally from institute State outlet passageway discharge.
The crystal oscillator support includes inner circle ring structure, connecting pole and cylindrical ring structure, and the connecting pole is equably laid in The inner circle ring structure is with cylindrical ring structure, forming the engraved structure, the interior annular between connecting pole described in each two Structure madial wall is caved inward to form a circumferential groove, and the crystal oscillator is embedded in the circumferential groove.
The connecting pole is transparent configuration.
The compressed part is silicon rubber suction cup structure, and second hard contact is located at the center of the silicon rubber suction cup structure Place, when the fixed part is fixed on above the supporting table, the silicon rubber suction cup structure compresses the first hard contact week Side, and allow second hard contact and the first hard contact good contact.
Compared with prior art, due to be used for Cosmetics microorganism in the present invention detection means in, including crystal oscillator device And sunlight simulator, engraved structure is provided between the crystal oscillator support and crystal oscillator, and the lower surface of the crystal oscillator is located at institute State the focal point of arc reflection structure, and the lower surface of the crystal oscillator is provided with culture medium, thus only need to will on culture medium immersion or Painting is covered with sample solution, is subsequently placed in the microorganism that can be carried out in the present invention under the conditions of aerobic, anaerobic, simulated solar light irradiation Detection.
It will be become more fully apparent by following description and with reference to accompanying drawing, the present invention, these accompanying drawings are used to explain the present invention Embodiment.
Brief description of the drawings
Fig. 1 is the schematic diagram of the one embodiment for the detection means that the present invention is used for Cosmetics microorganism.
Fig. 2 is the view of another angle of the detection means for Cosmetics microorganism as shown in Figure 1.
Fig. 3 show the schematic diagram of the crystal oscillator device of the detection means for Cosmetics microorganism as shown in Figure 1.
Fig. 4 is the section of the inner circle ring structure of the crystal oscillator support of the detection means as depicted for Cosmetics microorganism Diagram.
Embodiment
Embodiments of the invention are described with reference now to accompanying drawing, similar element numbers represent similar element in accompanying drawing.Such as It is upper described, as shown in Figure 1, 2, 3, the detection means 100 provided in an embodiment of the present invention for Cosmetics microorganism, including:
Housing 1, the housing 1 include base 11 and upper lid 12, and the base 11 and upper lid 12 are collectively forming receiving sky Between 13, the upper lid 12 is sealably covered on the base 11, and the receiving space 13 can be made to form an air-tightness Space;
Supporting table 2, for the supporting table 2 in the receiving space 13, it is anti-that the upper surface of supporting table 2 is provided with an arc Penetrate structure 21;
Crystal oscillator device 3, the crystal oscillator device 3 include crystal oscillator support 31 and the crystal oscillator being installed on the crystal oscillator support 31 32, the crystal oscillator device 3 is additionally provided with engraved structure 33 in the supporting table 2 between the crystal oscillator support 31 and crystal oscillator 32, And the lower surface of the crystal oscillator 32 is located at the focal point of the arc reflection structure 21, and the lower surface of the crystal oscillator 32 is provided with training Support base;
Sunlight simulator 4, the sunlight simulator 4 are located at the top of the crystal oscillator device 3, and the simulation is too The light that sunlight device 4 is sent is irradiated in the arc reflection structure 21 through the engraved structure 33, and passes through the arc Shape catoptric arrangement 21 is focused on the culture medium of the lower surface of the crystal oscillator 32.The sunlight simulator 4, at least Two effects, are by controlling the simulated solar irradiation first, carrying out illumination temperature control to the temperature in the receiving space 13 The luminous power of device 4, and then the effect of the temperature of the receiving space 13 is controlled, and can be kept away according to actual conditions Exempt from illumination to reflex on the culture medium;Second, under conditions of the microorganism of the medium culture is illumination condition culture, By controlling the luminous power and coloured light species of the sunlight simulator 4, reach test requirements document.
The upper surface of crystal oscillator 32 and lower surface are laid with foil-like exciting electrode 322, positioned at the upper surface of crystal oscillator 32 The foil-like exciting electrode 322 drawn along the upper surface of crystal oscillator 32 and be connected to a left side for the upper surface of crystal oscillator support 31 Side, the foil-like exciting electrode 322 positioned at the lower surface of crystal oscillator 32 are drawn along the lower surface of crystal oscillator 32 and are connected to institute The right side of the upper surface of crystal oscillator support 31 is stated, the left side and right side of the upper surface of crystal oscillator support 31 are respectively provided with and external world's electricity First hard contact 34 of road connection.
In embodiment as shown in Figure 1, in addition at least two crystal oscillator device compacting parts 5, the crystal oscillator device compressed part Part 5 includes fixed part 51 and compressed part 52, and the fixed part 51 is fixed on the top of supporting table 2, and the compressed part 52 is by institute State fixed part 51 to be bent to form downwards, the crystal oscillator device 3 is fixed.
As in above-mentioned embodiment, the compressed part 52 includes electric wire (not showing on figure), and the electric wire includes setting Wire inside the compressed part 52 and the second hard contact 53 located at the end face of compressed part 52, second metal touch First hard contact 34 described in 53 faces of point, the good contact of 53 and first hard contact of the second hard contact 34.
In one embodiment, as shown in figure 1, also including optical filter 6, the optical filter 6 fills located at the simulated solar irradiation 4 lower sections are put, the illumination of some specific wavelengths can be filtered out by the optical filter 6.
In one embodiment, as shown in figure 1, also including motor driven systems 7, the motor driven systems 7 drive described Sunlight simulator 4 rotates so that the culture medium obtains uniform reflected light and shone, and the motor driven systems are located at described The upper top of lid 12, and its output shaft sealingly extends through the upper lid and is connected with the sunlight simulator 4.
In one embodiment, as shown in Fig. 2 the base 11 and upper lid 12 are circular configuration, in addition to inlet channel 14 and outlet passageway 15, the bottom of the base 11 and the tangential direction on top set the inlet channel 14 and outlet to lead to respectively Road 15, and the inlet channel 14 and the outlet passageway 15 are set in opposite direction, the gas come in from the inlet channel 14 Body forms the upward air-flow of spiral in the receiving space 13, is finally discharged from the outlet passageway 15.Led to by the air inlet Road 14 and outlet passageway 15 can be controlled to the temperature of the receiving space 13, humidity, gas componant, air pressure.
As in above-mentioned embodiment, the inwall of the base 11 can also set spiral air-conducting groove, the spiral air-conducting groove Lower end connects the inlet channel 14, and upper end connects the outlet passageway 15, and in the presence of the spiral air-conducting groove, air-flow will The upward state of spiral is more easily formed, gas original in the receiving space 13 is discharged.
In embodiment as shown in Figure 3,4, the crystal oscillator support 31 includes inner circle ring structure 310, connecting pole 311 and cylindrical Ring structure 312, the connecting pole 311 are equably laid in the inner circle ring structure 310 and cylindrical ring structure 312, each two The engraved structure 33 is formed between the connecting pole 311, the madial wall of inner circle ring structure 310 caves inward to form a circumference Connected in star 3101, the crystal oscillator 32 are embedded in the circumferential groove 3101.
In one embodiment, as shown in figure 3, the connecting pole 311 is transparent configuration, the connecting pole of transparent configuration 311 more easily allow light by improving the utilization rate of light.
In one embodiment, the compressed part 52 is silicon rubber suction cup structure, and second hard contact 53 is located at the silicon The centre of glue sucker structure, when the fixed part 51 is fixed on 2 top of supporting table, the silicon rubber suction cup structure compresses The periphery of first hard contact 34, and allow second hard contact 53 and the good contact of the first hard contact 34.
Compared with prior art, with reference to Fig. 1-4, due to be used for Cosmetics microorganism in the present invention detection means 100 in, Including crystal oscillator device 3 and sunlight simulator 4, engraved structure 33, and institute are provided between the crystal oscillator support 31 and crystal oscillator 32 The lower surface for stating crystal oscillator 32 is located at the focal point of the arc reflection structure 21, and the lower surface of the crystal oscillator 32 is provided with culture Base, thus only need to will on culture medium soak or apply be covered with sample solution, be subsequently placed in the present invention can carry out aerobic, anaerobic, Microorganism detection under the conditions of simulated solar light irradiation.
The above disclosed right for being only the preferred embodiments of the present invention, the present invention can not being limited with this certainly Scope, therefore the equivalent variations made according to scope of the present invention patent, still belong to the scope that the present invention is covered.

Claims (10)

  1. A kind of 1. detection means for Cosmetics microorganism, it is characterised in that including:
    Housing, the housing include base and upper lid, and the base and upper lid are collectively forming a receiving space, the upper Gai Kemi Feud is covered on the base;
    Supporting table, for the supporting table in the receiving space, the supporting table upper surface is provided with an arc reflection structure;
    Crystal oscillator device, the crystal oscillator device include crystal oscillator support and the crystal oscillator being installed on the crystal oscillator support, the crystal oscillator dress It is arranged in the supporting table, engraved structure, and the lower surface position of the crystal oscillator is additionally provided between the crystal oscillator support and crystal oscillator In the focal point of the arc reflection structure, and the lower surface of the crystal oscillator is provided with culture medium;
    Sunlight simulator, the sunlight simulator are located at the top of the crystal oscillator device, the simulated solar irradiation dress Put sent light to be irradiated in the arc reflection structure through the engraved structure, and gathered by the arc reflection structure It is burnt on the culture medium of the lower surface of the crystal oscillator.
  2. 2. as claimed in claim 1 be used for Cosmetics microorganism detection means, it is characterised in that the crystal oscillator upper surface and Lower surface is laid with foil-like exciting electrode, and the foil-like exciting electrode positioned at the crystal oscillator upper surface is along the crystal oscillator upper table Face, which is drawn, is connected to the left side of the crystal oscillator rack upper surface, and the foil-like exciting electrode positioned at the crystal oscillator lower surface is along institute State the right side that crystal oscillator lower surface is drawn and is connected to the crystal oscillator rack upper surface, the left side and the right side of the crystal oscillator rack upper surface Side is respectively provided with the first hard contact being connected with external circuitry.
  3. 3. it is used for the detection means of Cosmetics microorganism as claimed in claim 2, it is characterised in that also include at least two crystal oscillators Device compacting part, the crystal oscillator device compacting part include fixed part and compressed part, and the fixed part is fixed on the support Above platform, the compressed part is bent to form downwards by the fixed part, the crystal oscillator device is fixed.
  4. 4. it is used for the detection means of Cosmetics microorganism as claimed in claim 3, it is characterised in that the compressed part includes leading Electric wire material, the electric wire include the wire inside the compressed part and the second metal located at the compression end surface Contact, the first hard contact described in the second hard contact face.
  5. 5. it is used for the detection means of Cosmetics microorganism as claimed in claim 1, it is characterised in that also including optical filter, institute Optical filter is stated below the sunlight simulator.
  6. 6. it is used for the detection means of Cosmetics microorganism as claimed in claim 1, it is characterised in that also including motor drivetrain System, the output shaft of the motor driven systems sealingly extend through the upper lid and are connected with the sunlight simulator, the electricity Machine drive system drives the sunlight simulator to rotate so that the culture medium obtains uniform reflected light and shone.
  7. 7. it is used for the detection means of Cosmetics microorganism as claimed in claim 1, it is characterised in that the base and upper lid are equal For circular configuration, in addition to inlet channel and outlet passageway, the bottom of the base and the tangential direction on top set institute respectively Inlet channel and outlet passageway are stated, and the inlet channel and the outlet passageway are set in opposite direction, are led to from the air inlet The gas that road is come in forms the upward air-flow of spiral in the receiving space, is finally discharged from the outlet passageway.
  8. 8. it is used for the detection means of Cosmetics microorganism as claimed in claim 1, it is characterised in that the crystal oscillator support includes Inner circle ring structure, connecting pole and cylindrical ring structure, the connecting pole are equably laid in the inner circle ring structure and outer toroid knot The engraved structure is formed in structure, between connecting pole described in each two, the inner circle ring structure madial wall caves inward to form one Circumferential groove, the crystal oscillator are embedded in the circumferential groove.
  9. 9. it is used for the detection means of Cosmetics microorganism as claimed in claim 8, it is characterised in that the connecting pole is transparent Structure.
  10. 10. it is used for the detection means of Cosmetics microorganism as claimed in claim 4, it is characterised in that the compressed part is silicon Glue sucker structure, second hard contact is located at the centre of the silicon rubber suction cup structure, when the fixed part is fixed on institute When stating above supporting table, the silicon rubber suction cup structure compresses the first hard contact periphery, and allows second hard contact With the first hard contact good contact.
CN201711433244.9A 2017-12-26 2017-12-26 Detection device for cosmetic microorganism Active CN107868753B (en)

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CN108865877A (en) * 2018-07-27 2018-11-23 王俊利 Detection device for Cosmetics microorganism
CN109061079A (en) * 2018-06-12 2018-12-21 合肥丰洁生物科技有限公司 A kind of cosmetics experiment detection device

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Publication number Priority date Publication date Assignee Title
CN109061079A (en) * 2018-06-12 2018-12-21 合肥丰洁生物科技有限公司 A kind of cosmetics experiment detection device
CN108865877A (en) * 2018-07-27 2018-11-23 王俊利 Detection device for Cosmetics microorganism

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