CN212142380U - Clamp type reciprocating water bath oscillator - Google Patents

Clamp type reciprocating water bath oscillator Download PDF

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Publication number
CN212142380U
CN212142380U CN202020336281.9U CN202020336281U CN212142380U CN 212142380 U CN212142380 U CN 212142380U CN 202020336281 U CN202020336281 U CN 202020336281U CN 212142380 U CN212142380 U CN 212142380U
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spring
support
water bath
plate
frame
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CN202020336281.9U
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Chinese (zh)
Inventor
李相阳
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Hebei Kangteng Biotechnology Co ltd
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Hebei Kangteng Biotechnology Co ltd
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Abstract

The utility model relates to a have a reciprocal water bath oscillator of anchor clamps formula belongs to the technical field of experimental facilities, including fixing the spring test bottle frame in the box, the spring test bottle frame includes backup pad and second spring board, second spring board and backup pad relative slip are provided with annular elasticity on the second spring board and support the tight circle, hang the support section of thick bamboo of cover at the erlenmeyer flask lateral wall on the mounting. The utility model discloses have and be convenient for press from both sides tight erlenmeyer flask, stable oscillation improves the effect of convenience in use.

Description

Clamp type reciprocating water bath oscillator
Technical Field
The utility model belongs to the technical field of the technique of experimental facilities and specifically relates to a reciprocal water bath oscillator of anchor clamps formula is related to.
Background
The water bath oscillator is mainly suitable for various scientific research departments such as universities and colleges, oil chemical engineering, epidemic prevention, environmental monitoring and the like to perform oscillation culture of various liquid and solid compounds such as organisms, biochemistry, cells, strains and the like.
The utility model discloses a have at present to authorize and announce chinese utility model patent that is CN209597051U discloses a constant temperature water bath oscillator, including box and the control box of setting in box one side, set up two flutings respectively in the both sides of box, the bottom half is provided with vibration mechanism, and vibration mechanism connects first support and links to each other with the fluting, is provided with spring test bottle rack in the box, and spring test bottle rack includes the spring board, and there is the backup pad spring board below, and the second support is fixed with backup pad and spring board. The second support is fixed with the first support, the first support and the second support are fixed together through a locking buckle which is locked in a spiral mode, and a heating pipe, a water inlet and a water outlet are arranged in the box body. The box is added to the right amount of water and then is heated, the test tube is placed on the spring test bottle rack, the test tube is heated in the constant-temperature water bath, and the oscillating mechanism drives the spring test bottle rack and the test tube to vibrate together.
The above prior art solutions have the following drawbacks: when the substance to be shake-cultured is placed in the conical flask, the conical flask is placed in the spring test bottle rack to vibrate, which may be unstable, and the shaking effect may be affected.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing a reciprocal water bath oscillator of anchor clamps formula has and is convenient for press from both sides tight erlenmeyer flask, and stable oscillation improves the effect of convenience of use.
The above utility model discloses an above-mentioned utility model purpose can realize through following technical scheme: the utility model provides a reciprocal water bath oscillator of anchor clamps formula, is including fixing the spring test bottle frame in the box, and the spring test bottle frame includes backup pad and second spring board, second spring board and backup pad relative slip are provided with annular elasticity on the second spring board and support the tight circle, and it has the support section of thick bamboo of cover at the erlenmeyer flask lateral wall to hang on the mounting.
By adopting the scheme, when the conical flask is used for shake culture, the second spring plate is far away from the supporting plate, the conical flask is placed on the supporting plate from a gap between the second spring plate and the supporting plate, then the bottle mouth of the conical flask penetrates through the abutting ring, the supporting cylinder is covered on the outer side wall of the conical flask, and the position of the second spring plate is locked, so that the conical flask is limited on the spring test bottle rack 8; when taking out the erlenmeyer flask after the vibration culture from the spring test bottle rack, mention the second spring board, take out the erlenmeyer flask can, operation convenient to use to at the in-process of vibration, the erlenmeyer flask is stable.
The present invention may be further configured in a preferred embodiment as: erect a plurality of slip stands in the backup pad, the second spring board includes the frame, supports tight circle and fixes on the frame through elastic connecting strip, has the slip hole with slip stand sliding connection on the frame.
Through adopting above-mentioned scheme, frame and slip stand sliding connection, therefore the second spring board is vertical in the backup pad top and slides, when the position of second spring board needs to be changed, the frame slides to can fix the frame in arbitrary position, make the spacing erlenmeyer flask of the support section of thick bamboo on the second spring board, the second spring board is stable to slide.
The present invention may be further configured in a preferred embodiment as: the supporting cylinder is a cylinder with a small radius of a cylinder opening at the lower end of the top end, a hook is fixed at the top end of the supporting cylinder, and the hook is hooked with a propping ring on the second spring plate.
By adopting the scheme, the shape of the supporting cylinder is matched with that of the conical flask, so that the conical flask is better limited; and the support cylinder is connected with the second spring plate through the hook, the support cylinder can be detached, and the support cylinder is detached according to different use requirements.
The present invention may be further configured in a preferred embodiment as: and a support ring is fixed on the support plate below the support cylinder.
Through adopting above-mentioned scheme, when placing the erlenmeyer flask in the backup pad, the support ring fills up on the bottom surface of erlenmeyer flask, makes the erlenmeyer flask more stable, increases and the mutual friction between the backup pad.
The present invention may be further configured in a preferred embodiment as: the sliding upright post is connected with a first spring plate in a sliding mode, the first spring plate comprises a frame and a propping ring, and the propping ring on the first spring plate corresponds to the propping ring on the second spring plate.
By adopting the above scheme, the bottom of the fixed erlenmeyer flask of second spring board, then the tight circle of supporting on the first spring board presss from both sides tight bottleneck of erlenmeyer flask, further stabilizes the erlenmeyer flask, avoids when its vibration, takes place to empty. And the tight circle position of supporting on first spring board and the second spring board corresponds, when using the test tube to carry out the vibration cultivation, runs through two tight circles of supporting with the test tube, and is more stable.
The present invention may be further configured in a preferred embodiment as: the sliding upright posts are provided with fixing pieces with large friction force, and the fixing pieces are abutted to two sides of the frame.
By adopting the scheme, after the conical flask is stably placed on the supporting plate, the fixing pieces are arranged on the upper side and the lower side of the frame, so that the frame is clamped on the sliding upright post, and the positions of the first spring plate and the second spring plate are fixed, so that the conical flask is more stable.
The present invention may be further configured in a preferred embodiment as: the inner wall of the fixing piece is tightly attached to the outer side wall of the sliding upright post, the fixing piece is elastic, and a vertical opening is formed in one side of the fixing piece.
By adopting the scheme, once the first spring plate or the second spring plate slides, the fixing piece needs to be pulled out of the sliding upright post, and the fixing piece is separated from the sliding upright post from the opening of the fixing piece; when the first spring plate or the second spring plate is fixed, the opening is opposite to the sliding upright post, and then the fixing piece is sleeved on the sliding upright post by pushing and pressing.
The present invention may be further configured in a preferred embodiment as: and the abutting rings and the supporting cylinders on the first spring plate and the second spring plate are provided with arrays.
Through adopting above-mentioned scheme, can fix the several erlenmeyer flask simultaneously, the erlenmeyer flask of a plurality of experiments is cultivateed in the disposable simultaneous oscillation, strengthens the convenience of use.
To sum up, the utility model discloses a following at least one useful technological effect:
1. when the conical flask is used for shake culture, the second spring plate is slid, the supporting cylinder is covered on the outer side wall of the conical flask, and the position of the second spring plate is locked, so that the conical flask is limited on the spring test flask rack, the operation and the use are convenient, and the conical flask is stable in the shaking process;
2. the bottleneck of erlenmeyer flask is further stabilized to the second spring board, is more stable when making the erlenmeyer flask vibration.
Drawings
Fig. 1 is a schematic view of the overall structure of the present invention;
FIG. 2 is a schematic structural view of the interior of the box body of the present invention;
FIG. 3 is a schematic structural view of the middle spring bottle testing stand of the present invention;
FIG. 4 is an enlarged partial schematic view of portion A of FIG. 3;
fig. 5 is a schematic structural view of the fixing member of the present invention;
fig. 6 is a schematic structural view of the present invention, wherein the conical flask is placed on the spring flask rack.
In the figure, 1, a box body; 2. a cover body; 3. a control box; 4. a baffle plate; 5. a first bracket; 6. grooving; 7. a second bracket; 8. a spring bottle testing rack; 81. a support plate; 82. a first spring plate; 83. a second spring plate; 84. sliding the upright post; 841. a fixing member; 85. a frame; 86. a tightening ring; 87. a connecting strip; 88. a support cylinder; 89. hooking; 80. a support ring; 9. a locking hole; 10. and (4) locking the buckle.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings.
Referring to fig. 1 and 2, for the utility model discloses a reciprocal water bath oscillator of clamp formula, including box 1 and the lid 2 of fixing in box 1 top, be fixed with control box 3 in box 1 one side, be provided with water inlet and delivery port in the box 1, and the water in the box 1 can be heated into the uniform temperature according to setting for of control box 3. The two sides of the box body 1 are provided with baffle plates 4 with through holes, and water at the water inlet and the water outlet flows into or out of the box body 1 from the baffle plates 4. The bottom of the box body 1 is provided with an oscillating mechanism, the oscillating mechanism is connected with four first supports 5 and enables the first supports 5 to vibrate, the first supports 5 extend out of the bottoms of two side walls of the side of the box body 1, and the bottom of the box body 1 is provided with a groove 6 for providing a space for the first supports 5 to vibrate.
Referring to fig. 2, a spring bottle holder 8 is provided in the case 1, the spring bottle holder 8 includes a support plate 81, and both ends of the support plate 81 face the baffle 4. And second brackets 7 are fixed on the outer walls of two sides of the supporting plate 81, and the second brackets 7 extend out of the box body 1 and are fixed with the first brackets 5.
Referring to fig. 2, the first bracket 5 and the second bracket 7 extend above the edge of the case 1 and are in a horizontal state. Locking holes 9 with the same size are formed in the first support 5 and the second support 7, and a locking buckle 10 penetrates between the locking holes 9 of the first support 5 and the second support 7. The spring test bottle rack 8 is fixed on the first support 5 to vibrate simultaneously, and the side wall of the cover body 2 is provided with a notch 6 corresponding to the positions where the first support 5 and the second support 7 are fixed, so that a movable space is provided for the vibration of the first support 5 and the second support 7.
Referring to fig. 3 and 4, the spring vial rack 8 further includes a first spring plate 82 and a second spring plate 83 secured above the support plate 81. Sliding upright posts 84 are erected on four corners of the supporting plate 81, the first spring plate 82 and the second spring plate 83 both comprise frames 85, sliding holes are formed in four corners of the frames 85, and the sliding upright posts 84 penetrate through the sliding holes, so that the first spring plate 82 and the second spring plate 83 can slide above the supporting plate 81.
The frame 85 of the first spring plate 82 is provided with a circular abutting ring 86, a plurality of abutting rings 86 are uniformly distributed on the frame 85, the abutting rings 86 are connected through a connecting strip 87 formed by springs, and the abutting rings 86 and the frame 85 are fixed through the connecting strip 87.
The frame 85 of the second spring plate 83 is also provided with a abutting ring 86, a cylindrical support cylinder 88 is fixed on the abutting ring 86, one end of the support cylinder 88 has a larger radius and faces the support plate 81, the other end of the support cylinder 88 has the same radius as the abutting ring 86, the support cylinder 88 is arranged below the second spring plate 83, the top surface of the support cylinder 88 is fixed with a hook 89, and the hook 89 is hung on the abutting ring 86 above the support cylinder 88.
An annular support ring 80 is fixed to the support plate 81, and the support ring 80 is positioned directly below the support cylinder 88. When placing the erlenmeyer flask on the spring test bottle rack 8, the first spring plate 82 and the second spring plate 83 are slid up from the sliding column 84, and the erlenmeyer flask can be placed on the supporting plate 81 from the gap between the second spring plate 83 and the supporting plate 81. Referring to fig. 5, the bottom of the cone is placed on the support ring 80, and the mouth of the test bottle is passed through the support cylinder 88 and thence through the abutment rings 86 on the first spring plate 82 and the second spring plate 83, the abutment rings 86 being allowed to flex to abut against the neck of the cone, which is clamped to the spring test bottle holder 8.
Referring to fig. 3 and 5, a fixing member 841 is sleeved on the sliding pillar 84, the fixing member 841 is cylindrical, and an opening is formed in a side wall of the fixing member 841 along a generatrix length thereof, and the fixing member 841 has elasticity, after the positions of the first spring plate 82 and the second spring plate 83 are fixed, the opening of the fixing member 841 is corresponding to the sliding pillar 84, the fixing member 841 is pushed to allow the fixing member 841 to be sleeved on the sliding pillar 84, and the fixing member 841 is abutted against the upper and lower sides of the frame 85, so that the positions of the first spring plate 82 and the second spring plate 83 are fixed.
Referring to FIG. 6, when the test tube is cultured by shaking, the test tube can be sequentially passed through the fixing rings on the first spring plate 82 and the second spring plate 83, and then the bottom end of the test tube is abutted against the surface of the supporting plate 81, so that the test tube is fixed on the spring test bottle rack 8.
The utility model discloses an implement the principle and do: when the contents of the flask are cultured by shaking, the cap 2 is opened and the flask is placed on the spring test flask holder 8. The fixing member 841 is removed from the sliding post 84, the first spring plate 82 and the second spring plate 83 are lifted from the sliding post 84, and the erlenmeyer flask is placed on the supporting plate 81 from between the second spring plate 83 and the supporting plate 81, and the bottom surface of the erlenmeyer flask is placed in or above the abutting ring 86.
The first and second spring plates 82, 83 are slid vertically downward so that the support sleeve 88 fits over the side wall of the erlenmeyer flask whose neck in turn passes through the abutment rings 86 on the first and second spring plates 82, 83, and the securing members 841 are fastened to the sliding uprights 84 and abut against the upper and lower sides of the frame 85. The oscillator is started, and the spring bottle testing frame 8 drives the conical flask to vibrate in a reciprocating manner.
After the shake culture is completed, the fixing member 841 is pulled out, the first spring plate 82 and the second spring plate 83 are lifted from the slide column 84, and the erlenmeyer flask is taken out from the support plate 81.
When the test tube is cultivated in the vibration, pass the test tube from top to bottom in proper order and support tight circle 86 on first spring board 82 and the second spring board 83, make the bottom surface of test tube contradict in backup pad 81 can.
The embodiment of this specific implementation mode is the preferred embodiment of the present invention, not limit according to this the utility model discloses a protection scope, so: all equivalent changes made according to the structure, shape and principle of the utility model are covered within the protection scope of the utility model.

Claims (8)

1. The utility model provides a reciprocal water bath oscillator of anchor clamps formula, is including fixing spring test bottle frame (8) in box (1), and spring test bottle frame (8) are including backup pad (81) and second spring board (83), its characterized in that: the second spring plate (83) and the support plate (81) slide relatively and are locked, an annular elastic abutting ring (86) is arranged on the second spring plate (83), and a support cylinder (88) covering the outer side wall of the conical flask is hung on the fixing piece (841).
2. The clamp-type reciprocating water bath oscillator according to claim 1, wherein: a plurality of sliding upright posts (84) are erected on the supporting plate (81), the second spring plate (83) comprises a frame (85), the abutting ring (86) is fixed on the frame (85) through an elastic connecting strip (87), and the frame (85) is provided with sliding holes in sliding connection with the sliding upright posts (84).
3. The clamp-type reciprocating water bath oscillator according to claim 1, wherein: the supporting cylinder (88) is a cylinder with a smaller top end and a smaller cylinder opening radius than the lower end, a hook (89) is fixed at the top end of the supporting cylinder (88), and the hook (89) is hooked with a butting ring (86) on the second spring plate (83).
4. The clamp-type reciprocating water bath oscillator according to claim 3, wherein: a support ring (80) is fixed on a support plate (81) positioned below the support cylinder (88).
5. The clamp-type reciprocating water bath oscillator according to claim 2, wherein: sliding connection has first spring board (82) on slip stand (84), and first spring board (82) include frame (85) and support tight circle (86), and support tight circle (86) position on first spring board (82) and the second spring board (83) corresponds.
6. The clamp-type reciprocating water bath oscillator according to claim 2 or 5, wherein: the sliding upright post (84) is provided with a fixing piece (841) with larger friction force, and the fixing piece (841) is abutted against two sides of the frame (85).
7. The clamp-type reciprocating water bath oscillator according to claim 6, wherein: the inner wall of the fixing piece (841) is clung to the outer side wall of the sliding upright post (84), the fixing piece (841) has elasticity, and one side of the fixing piece is provided with a vertical opening.
8. The clamp-type reciprocating water bath oscillator according to claim 5, wherein: the abutment rings (86) and the support cylinders (88) on the first spring plate (82) and the second spring plate (83) are arranged in an array.
CN202020336281.9U 2020-03-17 2020-03-17 Clamp type reciprocating water bath oscillator Active CN212142380U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020336281.9U CN212142380U (en) 2020-03-17 2020-03-17 Clamp type reciprocating water bath oscillator

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020336281.9U CN212142380U (en) 2020-03-17 2020-03-17 Clamp type reciprocating water bath oscillator

Publications (1)

Publication Number Publication Date
CN212142380U true CN212142380U (en) 2020-12-15

Family

ID=73714902

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202020336281.9U Active CN212142380U (en) 2020-03-17 2020-03-17 Clamp type reciprocating water bath oscillator

Country Status (1)

Country Link
CN (1) CN212142380U (en)

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