CN210357239U - Conical flask placing plate - Google Patents

Conical flask placing plate Download PDF

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Publication number
CN210357239U
CN210357239U CN201920917889.8U CN201920917889U CN210357239U CN 210357239 U CN210357239 U CN 210357239U CN 201920917889 U CN201920917889 U CN 201920917889U CN 210357239 U CN210357239 U CN 210357239U
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CN
China
Prior art keywords
guide rail
fixed
erlenmeyer flask
base
lead screw
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Application number
CN201920917889.8U
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Chinese (zh)
Inventor
牛选民
段天奎
刘占通
乔海娇
王朋飞
段文涛
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Jiyuan Yangguang Rabbit Industry Technology Co ltd
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Jiyuan Yangguang Rabbit Industry Technology Co ltd
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Priority to CN201920917889.8U priority Critical patent/CN210357239U/en
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Abstract

The utility model relates to a dish is placed to erlenmeyer flask, including the base, the lower terminal surface of base is fixed with the slipmat that the symmetry set up, and the up end of base is fixed with the baffle of vertical setting all around, is provided with the sponge that takes precautions against earthquakes on the up end of base. The connecting part of the two baffles is provided with a plate rib, a first guide rail is fixed on the plate rib, scales are arranged on the outer side wall of the first guide rail, a first sliding block is connected onto the first guide rail in a sliding mode, a first threaded hole is formed in the first sliding block, a first lead screw is connected into the first threaded hole in a threaded mode, a second guide rail is fixedly connected between the two adjacent first sliding blocks, a second sliding block is connected onto the second guide rail in a sliding mode, a second threaded hole is formed in the second sliding block, and a second lead screw is connected into the second threaded hole in a threaded mode. A stop lever is fixed between the two corresponding second sliding blocks. The utility model discloses simple structure, production is convenient, low cost, and easy operation is swift, can adapt to placing of multiple specification size erlenmeyer flask.

Description

Conical flask placing plate
Technical Field
The utility model belongs to the technical field of equipment is placed to plant's erlenmeyer flask, in particular to dish is placed to erlenmeyer flask.
Background
When the erlenmeyer flask was placed, because of the convenient taking in the erlenmeyer flask of tray, the tray was used widely. At present, when the erlenmeyer flask was taken, generally adopted the concave tray of a plastics or iron, on the desktop was placed to smooth difficult placing of this kind of tray bottom, the tray up end was also level and smooth moreover, when taking, and a plurality of erlenmeyer flasks were placed in the tray, can collide each other between each erlenmeyer flask, and is breakable, more probably can fall to the ground and break down. When needs are carried the erlenmeyer flask from a laboratory to another laboratory, when the transport of longer distance, current erlenmeyer flask place the fixed erlenmeyer flask that the dish can not be fine, be unfavorable for placing and carrying of erlenmeyer flask to cause the damage of erlenmeyer flask, reduced staff's work efficiency, increased manufacturing cost.
SUMMERY OF THE UTILITY MODEL
The utility model provides a prior art's weak point, provide a dish is placed to erlenmeyer flask, make things convenient for the staff fixed and remote transportation erlenmeyer flask.
The utility model adopts the technical proposal that the utility model provides a conical flask placing disc, which comprises a base, wherein a non-slip mat is fixed on the lower end surface of the base, a baffle plate which is vertically arranged is fixed on the periphery of the upper end surface of the base, a shockproof sponge is arranged on the upper end surface of the base, a plate rib is arranged at the joint of two adjacent baffle plates, a first guide rail which is vertically arranged is fixed at the top end of the plate rib, a first slide block is slidably connected on the first guide rail, a first threaded hole is arranged on the first slide block, a first lead screw is connected in the first threaded hole by screw thread, a first adjusting hand wheel is fixed at the outer end of the first lead screw, a second guide rail is fixed between two adjacent first slide blocks, a plurality of second slide blocks are slidably connected on the second guide rail, the second slide blocks on the opposite second guide rails are symmetrically arranged, a second threaded hole is arranged on the second slide block, a second lead screw is connected in the second threaded hole, a second adjusting hand wheel is fixed at the outer end of the second lead screw, and a stop lever is fixed between two symmetrical second sliding blocks. The even symmetry of slipmat sets up, and quantity is 4 at least, is equipped with the handle of symmetry on the lateral wall of baffle, the lateral wall of first screw hole perpendicular to first guide rail, the lateral wall of second screw hole perpendicular to second guide rail is provided with the scale on the lateral wall of first guide rail, is provided with the sponge sleeve pipe on the shelves pole.
The utility model has the advantages as follows:
the utility model discloses a handle on the baffle lateral wall, the staff's of being convenient for remove, the slipmat that sets up under the base on the terminal surface can increase the erlenmeyer flask and place the frictional force between dish and the workstation for the erlenmeyer flask is placed the dish and can be steady place on the workstation. The shockproof sponge on the upper end of the base can reduce the collision force between the conical flask and the base, and the scale value arranged on the first guide rail is convenient for workers to adjust the height of the placing disc. The utility model discloses a vertical shelves pole and the horizontal shelves pole that sets up, the conical flask of being convenient for is fixed, can avoid the mutual collision between the conical flask when long distance transportation, and the sponge sleeve pipe that sets up on the shelves pole can increase the frictional force between conical flask and the shelves pole for the conical flask is fixed more firm, has also avoided the direct collision of conical flask and shelves pole simultaneously, destroys the conical flask.
To sum up, the utility model is suitable for a various specifications, the depositing of multiple shape erlenmeyer flask, simple structure, production preparation low cost, operation convenient to use has improved staff's work efficiency, has avoided the erlenmeyer flask to collide each other and has broken away, the economic loss who brings, but wide application in placing of plant's erlenmeyer flask.
Drawings
Fig. 1 is a schematic structural diagram (1) of the present invention;
fig. 2 is a schematic structural diagram (2) of the present invention;
FIG. 3 is a schematic view of a partial cross-section of the case of the present invention;
FIG. 4 is a schematic view of a rail mechanism;
FIG. 5 is a partially enlarged schematic view of the present invention;
fig. 6 is a schematic view of a first guide rail.
Detailed Description
As shown in figures 1-6, a conical flask placing tray is designed on the basis of the prior art and is used for a farm. Including base 11, be fixed with non-slip mat 12 on the lower terminal surface of base 11, non-slip mat 12 symmetry sets up, and the quantity of non-slip mat 12 is 4 at least. Baffle 13 of vertical setting is fixed with all around to the up end of base 11, and the junction of two adjacent baffles 13 is fixed with lath 14, has placed shockproof sponge 15 on the up end of base 11, and shockproof sponge 15 covers whole base 11, is equipped with the handle 16 of symmetry on the lateral wall of baffle 13. The top of lath 14 is fixed with the first guide rail 21 of vertical setting, is provided with scale interval 26 on the lateral wall of first guide rail 21, and sliding connection has first slider 22 on first guide rail 21, has seted up first screw hole 23 on the first slider 22, and first screw hole 23 is perpendicular to the lateral wall of first guide rail 21. The first threaded hole 23 is connected with a first lead screw 24 in a threaded manner, the outer end of the first lead screw 24 is fixed with a first hand wheel 25, a second guide rail 31 is fixed between two adjacent first sliding blocks 22, the second guide rail 31 is connected with a plurality of second sliding blocks 32 in a sliding manner, the second sliding blocks 32 on the opposite second guide rails 31 are arranged symmetrically, second threaded holes 33 are formed in the second sliding blocks 32, and the second threaded holes 33 are perpendicular to the outer side wall of the second guide rails 31. A second screw rod 34 is connected in the second threaded hole 33 in a threaded manner, a second adjusting hand wheel 35 is fixed at the top end of the second screw rod 34, a stop lever 36 is fixed between the two symmetrical second sliding blocks 22, the stop lever 36 comprises a longitudinal guide rod 361 and a transverse guide rod 362, a gap exists between the longitudinal guide rod 361 and the transverse guide rod 362, the longitudinal guide rod 361 and the transverse guide rod 362 can freely move, and a sponge sleeve is arranged on the stop lever 36. During the use, the staff passes through handle 16, place the dish with the erlenmeyer flask and place on the workstation, observe the specification and the height of used erlenmeyer flask, then manual anticlockwise rotation first hand wheel 25 respectively, first hand wheel 25 drives first lead screw 24 anticlockwise rotation, thereby make first lead screw 24 break away from with the contact of first guide rail 21, first slider 22 can freely slide on first guide rail 21, thereby can adjust the height of second guide rail 31 from top to bottom, scale 26 on through first guide rail 21, adjust the position that the erlenmeyer flask is fit for placing with first slider 22, first hand wheel 25 of clockwise rotation, first hand wheel 25 drives first lead screw 24 and rotates, first lead screw 24 extrudees with the lateral wall contact of first guide rail 21, thereby fixed first slider 22, make first slider 22 can not freely slide on first guide rail 21. Then, the second adjusting handwheel 35 is manually rotated counterclockwise, and the second adjusting handwheel 35 drives the second lead screw 34 to rotate, so that the second lead screw 34 is separated from contact with the outer side wall of the second guide rail 31, and the second slider 32 can freely slide on the second guide rail 31, that is, the longitudinal stop lever 361 can freely move in the transverse direction, and the transverse stop lever 362 can move in the longitudinal direction. Firstly, a longitudinal stop lever 361 close to the edge and a transverse stop lever 362 close to the edge are sequentially moved to the edge of a placing disc, a second adjusting hand wheel 35 is manually rotated clockwise, the second adjusting hand wheel 35 drives a second lead screw 34 to rotate, so that the second lead screw 34 can be contacted with and extruded by a second guide rail 31, a second sliding block 32 is fixed, namely, the longitudinal stop lever 361 close to the edge and the transverse stop lever 362 close to the edge are fixed, so that the second sliding block 32 cannot freely slide on the second guide rail 31, when the erlenmeyer flask is placed, the flat bottom of the erlenmeyer flask is placed on a damping sponge 15, a flask body is placed close to the longitudinal stop lever 361 and the transverse stop lever 362, after the erlenmeyer flask is placed, the movable longitudinal stop lever 361 and the transverse stop lever 362 close to the erlenmeyer flask are pushed to the flask body, and the second adjusting hand wheel 35 is rotated clockwise, so that the second sliding block 32 is fixed. After the conical flask is placed, the longitudinal blocking rod 361 and the transverse blocking rod 362 block the periphery of the body of the conical flask, so that the body can only shake to a small extent. When multiple erlenmeyer flasks are placed, the placing tray operates in the same manner as one erlenmeyer flask is placed.
The above-mentioned embodiment is right the description of the utility model discloses, it is not right the utility model discloses a limited, any right the scheme behind the simple transform of the utility model belongs to the protection scope of the utility model.

Claims (8)

1. The utility model provides a dish is placed to erlenmeyer flask, includes the base, is fixed with the slipmat on the lower terminal surface of base, and the up end of base is fixed with the baffle of vertical setting all around, is provided with the sponge that takes precautions against earthquakes on the up end of base, and two adjacent baffle junctions are provided with board muscle, its characterized in that: the top of lath is fixed with the first guide rail of vertical setting, sliding connection has first slider on the first guide rail, first screw hole has been seted up on the first slider, threaded connection has first lead screw in the first screw hole, the outer end of first lead screw is fixed with first adjusting hand wheel, be fixed with the second guide rail between two adjacent first sliders, sliding connection has a plurality of second slider on the second guide rail, the mutual symmetry setting of second slider on the relative second guide rail, set up the second screw hole on the second slider, threaded connection has the second lead screw in the second screw hole, the outer end of second lead screw is fixed with second adjusting hand wheel, be fixed with the shelves pole between two symmetrical second sliders.
2. The erlenmeyer flask receiving tray of claim 1 wherein: the non-slip mat is evenly and symmetrically arranged, and the number of the non-slip mat is at least 4.
3. The erlenmeyer flask receiving tray of claim 2 wherein: the outer side wall of the baffle is provided with symmetrical handles.
4. The erlenmeyer flask receiving tray of claim 3 wherein: the first threaded hole is perpendicular to the first guide rail.
5. The erlenmeyer flask receiving tray of claim 4 wherein: the second threaded hole is perpendicular to the second guide rail.
6. The erlenmeyer flask receiving tray of claim 5 wherein: the outer side wall of the first guide rail is provided with scales.
7. The erlenmeyer flask receiving tray of claim 6 wherein: the stop rods comprise longitudinal stop rods and transverse stop rods, the longitudinal stop rods are longitudinally arranged, the transverse stop rods are transversely arranged, and gaps exist between the longitudinal stop rods and the transverse stop rods.
8. The erlenmeyer flask receiving tray of any one of claims 1 to 7 wherein: the gear rod is provided with a sponge sleeve.
CN201920917889.8U 2019-06-18 2019-06-18 Conical flask placing plate Active CN210357239U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920917889.8U CN210357239U (en) 2019-06-18 2019-06-18 Conical flask placing plate

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920917889.8U CN210357239U (en) 2019-06-18 2019-06-18 Conical flask placing plate

Publications (1)

Publication Number Publication Date
CN210357239U true CN210357239U (en) 2020-04-21

Family

ID=70265697

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201920917889.8U Active CN210357239U (en) 2019-06-18 2019-06-18 Conical flask placing plate

Country Status (1)

Country Link
CN (1) CN210357239U (en)

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