Biosurfactant storage device

The main shaft rod, cross bracket and gear transmission system drive the reagent tube to rotate automatically, and combined with the infusion tube and nozzle design, the problem of the disinfectant not being able to be evenly covered is solved, and the reagent tube is fully disinfected and dryed.

CN223238330UActive Publication Date: 2025-08-19SHAANXI DEGUAN BIOTECHNOLOGY CO LTD
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Patent Information

Application Number
CN202422177548.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-05
Publication Date
2025-08-19
Estimated Expiration
2034-09-05

AI Technical Summary

Technical Problem

In the existing biological agent storage device, the disinfectant spray head is placed at the bottom, so that the upper test tube cannot be fully covered, affecting the disinfection effect.

Method used

By designing the spindle rod, cross bracket and gear transmission system, the reagent tube rotates automatically during the revolution, and in combination with the design of the infusion tube and spray head, the disinfectant can be sprayed evenly.

Benefits of technology

The disinfectant is uniformly sprayed on each reagent tube, which improves the disinfection effect and assists drying with a heater to ensure complete coverage and drying of the disinfectant on the surface of the reagent tube.

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Abstract

The utility model discloses a biosurfactant storage device, and relates to the technical field of biological agent storage, in particular to a biosurfactant storage device, which comprises a storage mechanism and is used for storing a biosurfactant, and the storage mechanism comprises a main body assembly, a storage mechanism and a storage mechanism, the top cover is fixed at the upper end of the shell; the auxiliary assembly is arranged on the main body assembly and is used for spraying disinfectant; the execution assembly comprises a main shaft rod rotationally mounted in the center of the interior of the shell, three cross-shaped brackets which are fixed on the outer wall of the main shaft rod and are longitudinally and equally distributed, ring frames fixed at the four ends of the cross-shaped brackets, test tube discs rotationally mounted in the ring frames, auxiliary shaft rods fixed among the test tube discs on the same axial lead, and gears fixed at the upper ends of the auxiliary shaft rods; each reagent tube can rotate when passing through the auxiliary assembly in the revolution process, so that the disinfectant can be uniformly sprayed on each reagent tube.
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Description

Technical Field

[0001] The utility model relates to the technical field of biological preparation storage, in particular to a biological surfactant storage device. Background Art

[0002] Biosurfactants are natural surface-active compounds produced by microorganisms such as bacteria, yeast, and fungi through metabolic processes under specific culture conditions. These compounds not only possess the common properties of surfactants, such as solubilization, emulsification, wetting, foaming, dispersion, and surface tension reduction, but also possess significant advantages such as being non-toxic, biodegradable, ecologically safe, and having high surface activity.

[0003] Upon checking the publication number: CN213443649U, a biological agent storage device is disclosed. This technology discloses "a biological agent storage device, relating to the field of biological agent storage technology. The utility model includes a box body, a fixed column is fixed in the middle of the box body, a plurality of rotating circles are assembled on the outer side of the fixed column, the fixed column is rotatably connected to the rotating circle, a plurality of connecting rods are evenly welded on the outer side of the rotating circle, a supporting column is fixed to the top end of one end of the connecting rod, a hanging plate is rotatably connected to the top end of the supporting column, and a plurality of fixing holes are opened on the outer side of the upper surface of the hanging plate. The utility model has the technical effects such as "through the arrangement of the rotating circle and the hanging plate, the biological agent stored inside the device can be rotated to the box door by rotation, which is more convenient for storing and taking out the biological agent. Through the arrangement of the disinfectant tank, the water pump and the nozzle, the disinfectant in the disinfectant tank can be sprayed from the nozzle when the biological agent is not stored inside the device to clean and disinfect the inside of the device";

[0004] In the above solution, when storing biological agents, the disinfectant in the disinfectant tank is sprayed out from the nozzle to clean and disinfect the interior of the device; however, since the nozzle is set at the bottom, the preparation test tubes located above will be blocked, resulting in the disinfectant being unable to fully cover the surface of all test tubes, thereby affecting the disinfection effect. Utility Model Content

[0005] In response to the deficiencies of the prior art, the present invention provides a biosurfactant storage device, which has the characteristic that each time a reagent tube passes through an auxiliary component during its revolution, it can rotate again, so that the disinfectant can be evenly sprayed on each reagent tube.

[0006] To achieve the above objectives, the present invention is implemented through the following technical solutions: A biosurfactant storage device includes a storage mechanism and is used to store biosurfactant preparations, the storage mechanism including:

[0007] The main assembly includes a shell fixed to the upper end of the base, a top cover fixed to the upper end of the shell, and an auxiliary assembly provided on the main assembly and used for spraying disinfectant;

[0008] The execution assembly includes a main shaft rod rotatably installed in the center of the shell, three cross brackets fixed on the outer wall of the main shaft rod and distributed equally in the longitudinal direction, a ring bracket with four ends of the cross bracket fixed, a test tube disk rotatably installed inside the ring bracket, a secondary shaft rod fixed between the test tube disks on the same axis, a gear fixed on the upper end of the secondary shaft rod, a gear ring fixed on the bottom of the upper end of the shell, a first rack and a second rack fixed at both ends of the inner wall of the gear ring, and a motor installed inside the top cover for driving the main shaft rod to rotate.

[0009] Preferably, the auxiliary component includes a round seat rotatably mounted on one side of the bottom upper end of the shell, an infusion tube fixed at the bottom of the round seat, and the lower end of the infusion tube passes through the base and extends to the outside, and a plurality of nozzles installed on the infusion tube.

[0010] Preferably, the auxiliary component also includes a driven pulley rotatably mounted on one side of the top of the shell, a rotating rod fixed at the lower end of the driven pulley, a sliding rod pivotally connected to the other end of the rotating rod, and the sliding rod is slidably installed through the inside of the round seat, a driving pulley fixed on the outer wall of the upper end of the main shaft rod, and a belt installed between the driving pulley and the driven pulley.

[0011] Preferably, the main body component further includes a heater installed on one side of the interior of the base, a fan installed on the heater, and an air duct installed at the lower end of the fan, and the lower end of the air duct passes through the base and extends to the outside.

[0012] Preferably, the main body component further includes a drainage trough fixed inside the base, a filter screen fixed at the upper end of the drainage trough, and a rubber plug inserted and installed at the lower end of the drainage trough.

[0013] Preferably, the storage mechanism further comprises a cover door mounted on the front end of the shell via a hinge, and fixed feet at the four corners of the bottom of the base.

[0014] Beneficial effects

[0015] The present invention provides a biosurfactant storage device. Compared with the prior art, it has the following advantages:

[0016] (1) The main shaft is driven by the output end of the motor to cooperate with the cross bracket to drive the ring frame to rotate, and the ring frame then drives the reagent tubes placed on the test tube tray to revolve; when the gear revolves along the inside of the gear ring and passes through the first rack, the gear is engaged with the first rack to drive the gear through the secondary shaft to drive the reagent tubes placed on the test tube tray to rotate; each time the reagent tube passes through the auxiliary component during the revolution, it can rotate again, so that the disinfectant can be evenly sprayed on each reagent tube.

[0017] (2) When the main shaft rotates, the driven pulley is also driven to rotate through the active pulley and the belt. The driven pulley slides back and forth along the inside of the round seat through the rotating rod and the slide bar, so that the slide bar drives the round seat to swing back and forth at the same time, so that the round seat drives the nozzle on the infusion tube to expand the spraying range. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 It is a schematic diagram of the three-dimensional structure of the utility model;

[0019] Figure 2 This is a schematic diagram of the internal structure of the utility model;

[0020] Figure 3 This is a schematic diagram of the structure of the execution component in the present utility model;

[0021] Figure 4 This is a schematic structural diagram of the main shaft rod in the utility model;

[0022] Figure 5 It is a structural schematic diagram of the secondary shaft in the utility model.

[0023] In the figure: 1. storage mechanism; 11. main assembly; 111. base; 112. shell; 113. top cover; 114. heater; 115. fan; 116. air duct; 117. drain trough; 118. filter; 119. rubber plug; 12. actuator; 121. main shaft; 122. cross bracket; 123. ring frame; 124. test tube tray; 125. secondary shaft; 126. gear; 127. gear ring; 128. first rack; 129. second rack; 1210. motor; 13. auxiliary assembly; 131. round seat; 132. infusion tube; 133. nozzle; 134. rotating rod; 135. sliding rod; 136. driving pulley; 137. driven pulley; 138. belt; 14. cover door; 15. support leg. DETAILED DESCRIPTION

[0024] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0025] See also Figure 1-5 The present invention provides a technical solution for a biosurfactant storage device: a biosurfactant storage device, comprising a storage mechanism 1 and used for storing biosurfactant preparations, wherein the storage mechanism 1 comprises:

[0026] The main assembly 11 includes a housing 112 fixed to the upper end of the base 111, a top cover 113 fixed to the upper end of the housing 112, and an auxiliary assembly 13 provided on the main assembly 11 and used for spraying disinfectant;

[0027] The actuator 12 includes a main shaft 121 rotatably mounted in the center of the housing 112, three cross brackets 122 fixed to the outer wall of the main shaft 121 and distributed evenly in the longitudinal direction, a ring bracket 123 with four ends of the cross bracket 122 fixed, a test tube tray 124 rotatably mounted inside the ring bracket 123, a secondary shaft 125 fixed between the test tube trays 124 on the same axis, a gear 126 fixed to the upper end of the secondary shaft 125, a gear ring 127 fixed to the bottom of the upper end of the housing 112, a first rack 128 and a second rack 129 respectively fixed to the inner ends of the gear ring 127, and a motor 1210 installed inside the top cover 113 for driving the main shaft 121 to rotate.

[0028] In this embodiment, the main shaft 121 is driven by the output end of the motor 1210 to cooperate with the cross bracket 122 to drive the ring frame 123 to rotate, and the ring frame 123 then drives the reagent tubes placed on the test tube tray 124 to revolve; when the gear 126 revolves along the inside of the gear ring 127 and passes through the first rack 128, the gear 126 is engaged with the first rack 128 to drive the gear 126 to drive the reagent tubes placed on the test tube tray 124 to rotate through the secondary shaft 125; each time the reagent tube passes through the auxiliary component 13 during the revolution, it can rotate again, so that the disinfectant can be evenly sprayed on each reagent tube.

[0029] Specifically, the auxiliary component 13 includes a round seat 131 rotatably mounted on one side of the bottom upper end of the shell 112, an infusion tube 132 fixed at the bottom of the round seat 131, and the lower end of the infusion tube 132 passes through the base 111 and extends to the outside, and a plurality of nozzles 133 are installed on the infusion tube 132.

[0030] In this embodiment, the disinfectant can be delivered from the lower end of the infusion tube 132 and sprayed onto the surface of the reagent tubes placed on the front test tube tray 124 through the nozzle 133 to sterilize and disinfect them.

[0031] Specifically, the auxiliary component 13 also includes a driven pulley 137 rotatably mounted on one side of the top of the shell 112, a rotating rod 134 fixed at the lower end of the driven pulley 137, a sliding rod 135 pivotally connected to the other end of the rotating rod 134, and the sliding rod 135 is slidably installed inside the round seat 131, a driving pulley 136 fixed on the outer wall of the upper end of the main shaft rod 121, and a belt 138 installed between the driving pulley 136 and the driven pulley 137.

[0032] In this embodiment, when the main shaft 121 rotates, the driven pulley 137 is also driven to rotate through the active pulley 136 in cooperation with the belt 138. The driven pulley 137 slides back and forth along the inside of the round seat 131 through the rotating rod 134 in cooperation with the slide rod 135, so that the slide rod 135 simultaneously drives the round seat 131 to swing back and forth, so that the round seat 131 drives the nozzle 133 on the infusion tube 132 to expand the spraying range.

[0033] Specifically, the main body component 11 also includes a heater 114 installed on one side of the base 111, a fan 115 installed on the heater 114, and an air duct 116 installed at the lower end of the fan 115, and the lower end of the air duct 116 passes through the base 111 and extends to the outside.

[0034] In this embodiment, when the gear 126 passes through the second rack 129, it can drive the corresponding test tube tray 124 to rotate, so that the reagent tubes placed on the test tube tray 124 can be evenly exposed to the heater 114, which helps to quickly dry the disinfectant on the surface of the reagent tubes.

[0035] Specifically, the main body component 11 further includes a drainage groove 117 fixed inside the base 111 , a filter screen 118 fixed at the upper end of the drainage groove 117 , and a rubber plug 119 inserted and installed at the lower end of the drainage groove 117 .

[0036] In this embodiment, the residual disinfectant can pass through the filter 118 and fall into the drain trough 117. The residual disinfectant can be discharged after the rubber plug 119 is removed.

[0037] Specifically, the storage mechanism 1 further includes a cover door 14 mounted on the front end of the housing 112 via a hinge, and supporting legs 15 fixed at the four corners of the bottom of the base 111 .

[0038] The working principle and use process of the present invention are as follows: first, the reagent tubes containing biosurfactants are placed in the test tube tray 124, and then the main shaft 121 is driven by the output end of the motor 1210 to cooperate with the cross bracket 122 to drive the ring frame 123 to rotate, and the ring frame 123 then drives the reagent tubes placed on the test tube tray 124 to revolve; when the gear 126 revolves along the inside of the gear ring 127 and passes through the first rack 128, the gear 126 is meshed with the first rack 128 to drive the gear 126 to drive the reagent tubes placed on the test tube tray 124 to rotate; at the same time, the disinfectant is transported from the lower end of the infusion tube 132 and sprayed onto the surface of the reagent tubes placed on the front test tube tray 124 through the nozzle 133 to sterilize and disinfect them, and each time the reagent tube passes through the auxiliary component 13 during the revolution, it can rotate again, so that the disinfectant can be evenly sprayed on each reagent tube;

[0039] Moreover, when the main shaft 121 rotates, the driven pulley 137 is driven to rotate through the active pulley 136 in cooperation with the belt 138. The driven pulley 137 slides back and forth along the inside of the round seat 131 through the rotating rod 134 in cooperation with the slide rod 135, so that the slide rod 135 simultaneously drives the round seat 131 to swing back and forth, so that the round seat 131 drives the nozzle 133 on the infusion tube 132 to expand the spraying range.

[0040] It should be noted that, in this document, relational terms such as first and second, etc., are used only to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the terms "comprises," "includes," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that includes a list of elements includes not only those elements but also other elements not explicitly listed, or elements inherent to such process, method, article, or apparatus.

[0041] Although the embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and variations may be made to these embodiments without departing from the principles and spirit of the present invention, and the scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A biosurfactant storage device, characterized in that: The invention comprises a storage mechanism (1) and is used for storing a biosurfactant preparation, wherein the storage mechanism (1) comprises: A main assembly (11) includes a shell (112) fixed to the upper end of the base (111), a top cover (113) fixed to the upper end of the shell (112), and an auxiliary assembly (13) disposed on the main assembly (11) and used for spraying disinfectant; The actuator assembly (12) comprises a main shaft (121) rotatably mounted in the center of the housing (112), three cross brackets (122) fixed to the outer wall of the main shaft (121) and distributed in equal longitudinal directions, a ring bracket (123) fixed at four ends of the cross bracket (122), a test tube disk (124) rotatably mounted inside the ring bracket (123), a secondary shaft (125) fixed between the test tube disks (124) on the same axis, a gear (126) fixed at the upper end of the secondary shaft (125), a gear ring (127) fixed at the bottom of the upper end of the housing (112), a first rack (128) and a second rack (129) respectively fixed at the two ends of the inner wall of the gear ring (127), and a motor (1210) installed inside the top cover (113) and used for driving the main shaft (121) to rotate.

2. A biosurfactant storage device according to claim 1, characterized in that: The auxiliary component (13) includes a round seat (131) rotatably mounted on one side of the bottom of the upper end of the shell (112), an infusion tube (132) fixed at the bottom of the round seat (131), and the lower end of the infusion tube (132) passes through the base (111) and extends to the outside, and a plurality of nozzles (133) are mounted on the infusion tube (132).

3. A biosurfactant storage device according to claim 2, characterized in that: The auxiliary component (13) further includes a driven pulley (137) rotatably mounted on one side of the top of the housing (112), a rotating rod (134) fixed at the lower end of the driven pulley (137), a sliding rod (135) pivotally connected to the other end of the rotating rod (134), and the sliding rod (135) is slidably mounted inside the round seat (131), a driving pulley (136) fixed to the outer wall of the upper end of the main shaft rod (121), and a belt (138) installed between the driving pulley (136) and the driven pulley (137).

4. The biosurfactant storage device according to claim 1, characterized in that: The main body component (11) further includes a heater (114) mounted on one side of the interior of the base (111), a fan (115) mounted on the heater (114), and an air duct (116) mounted at the lower end of the fan (115), wherein the lower end of the air duct (116) passes through the base (111) and extends to the outside.

5. The biosurfactant storage device according to claim 1, characterized in that: The main body assembly (11) further includes a drainage groove (117) fixed inside the base (111), a filter screen (118) fixed at the upper end of the drainage groove (117), and a rubber plug (119) inserted and installed at the lower end of the drainage groove (117).

6. The biosurfactant storage device according to claim 1, characterized in that: The storage mechanism (1) further comprises a cover door (14) mounted on the front end of the housing (112) via a hinge, and supporting feet (15) fixed at the four corners of the bottom of the base (111).

Citation Information

Patent Citations

  • Biological agent storage device

    CN213443649U