CN210419913U - Medical treatment is with biological gene composition analysis appearance - Google Patents

Medical treatment is with biological gene composition analysis appearance Download PDF

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Publication number
CN210419913U
CN210419913U CN201920921480.3U CN201920921480U CN210419913U CN 210419913 U CN210419913 U CN 210419913U CN 201920921480 U CN201920921480 U CN 201920921480U CN 210419913 U CN210419913 U CN 210419913U
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groove
plate
fixedly connected
telescopic
movable
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CN201920921480.3U
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Chinese (zh)
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何赏
丁娉
刘涛
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Diacarta Inc
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Diacarta Inc
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Abstract

The utility model relates to an analysis appearance technical field just discloses a biological genetic component analysis appearance for medical treatment, including the instrument shelter, install in the instrument shelter and remove wheel telescopic machanism, remove wheel telescopic machanism and include flexible groove, expansion plate, two spinal branch vaulting poles, two removal wheels, two draw-in grooves, two clearing holes, two kellies, two spacing grooves, two limiting plates, two springs, shifting chute, two-sided rack, two gears, U type rack, removal hole and shifting beam, the bottom of the case at the instrument shelter is seted up to the flexible groove, and the expansion plate is established at the position that flexible groove is close to the tank bottom. The utility model discloses can conveniently carry out the shift position, increase the area of contact of biological genetic component analysis appearance for the medical treatment and desktop again when not needing to remove, make it more stable, firm, be difficult for falling from the desktop.

Description

Medical treatment is with biological gene composition analysis appearance
Technical Field
The utility model relates to an analysis appearance technical field especially relates to a biological gene composition analysis appearance for medical treatment.
Background
The gene detection is a technology for detecting DNA, can diagnose diseases and can also be used for predicting disease risk, the disease diagnosis is to detect mutant genes causing hereditary diseases by using a gene detection technology, the currently most widely applied gene detection is the detection of hereditary diseases of newborns, the diagnosis of hereditary diseases and the auxiliary diagnosis of certain common diseases, more than 1000 hereditary diseases can be diagnosed by using the gene detection technology, but the existing biological gene component analyzer for medical use has no moving mechanism, is inconvenient to move, has poor stability when being placed at ordinary times, is easy to fall off from a table when being stressed, and causes equipment damage.
SUMMERY OF THE UTILITY MODEL
The utility model aims at solving the problems of inconvenient moving position, poor stability, easy falling from the table and equipment damage in the prior art, and providing a biological genetic component analyzer for medical treatment.
In order to achieve the above purpose, the utility model adopts the following technical scheme:
a medical biological gene component analyzer comprises an instrument box, wherein a movable wheel telescopic mechanism is arranged in the instrument box;
the movable wheel telescopic mechanism comprises a telescopic groove, a telescopic plate, two support rods, two movable wheels, two clamping grooves, two through holes, two clamping rods, two limiting grooves, two limiting plates, two springs, a movable groove, a double-sided rack, two gears, a U-shaped rack, a movable hole and a movable rod, wherein the telescopic groove is formed in the bottom of the instrument box, the telescopic plate is arranged at a position close to the bottom of the telescopic groove, the two support rods are symmetrically and fixedly connected to a plate wall of the telescopic groove, far away from the bottom of the telescopic groove, the two movable wheels are respectively arranged at the other ends of the corresponding support rods, the two clamping grooves are formed in the opposite ends of the two support rods, the two through holes are formed in the groove walls of the telescopic groove, the through holes are formed below the clamping grooves, the two clamping rods are respectively arranged in the corresponding through holes, one ends of the clamping rods extend outwards to be abutted against the corresponding support rod walls, the other ends of the two clamping rods penetrate through orifices of the corresponding through holes and extend outwards, the two limiting grooves are respectively arranged on the hole walls of the corresponding through holes, the two limiting plates are respectively fixedly connected on the rod walls of the corresponding clamping rods and are positioned in the limiting grooves, the two springs are respectively fixedly connected on the plate walls of the corresponding limiting plates far away from the telescopic grooves, the other ends of the two springs are fixedly connected on the groove walls corresponding to the limiting grooves, the movable grooves are arranged at the center of the bottoms of the telescopic grooves, the double-sided rack is fixedly connected at the center of one side plate wall of the telescopic plate close to the bottoms of the telescopic grooves, the two gears are fixedly connected on the two side groove walls of the movable grooves, the two gears are meshed with the double-sided rack, the opposite tooth surfaces of the U-shaped rack are respectively meshed with the corresponding gears, and the movable holes are arranged at the centers of the bottoms of the movable grooves, the movable rod is arranged in the movable hole, one end of the movable rod penetrates through the hole opening of the movable hole and extends into the movable groove to be fixedly connected to one end, far away from the telescopic groove, of the U-shaped rack, and the other end of the movable rod penetrates through the hole opening of the movable hole and extends outwards.
Preferably, the opposite ends of the U-shaped rack are fixedly connected with first T-shaped sliding blocks, first T-shaped sliding grooves are formed in positions, corresponding to the first T-shaped sliding blocks, of groove walls of the moving groove, and the two first T-shaped sliding blocks are slidably connected in the corresponding first T-shaped sliding grooves respectively.
Preferably, both ends of the telescopic plate are fixedly connected with movable sliding blocks, movable sliding grooves are formed in the positions, corresponding to the movable sliding blocks, of the groove walls of the telescopic grooves, and the two movable sliding blocks are connected in the corresponding movable sliding grooves in a sliding mode.
Preferably, two the equal fixedly connected with second T type slider of one end that the gag lever post was kept away from to the limiting plate, two second T type spout has all been seted up to the corresponding position of second T type slider of tank bottom of spacing groove, two second T type slider is sliding connection respectively in the second T type spout that corresponds.
Preferably, one end of the moving rod, which is far away from the U-shaped rack, is fixedly connected with a pulling plate, and anti-skid grains are arranged on the surface of the pulling plate.
Preferably, two the equal fixedly connected with fixed plate of one end that the bracing piece was kept away from to the kelly, the surface of fixed plate all is equipped with anti-skidding line.
Preferably, the four corners of the bottom of the instrument box are provided with rubber anti-slip pads.
Preferably, one end of the double-sided rack, which is far away from the expansion plate, is fixedly connected with an anti-falling plate.
Preferably, the top end of the instrument box is fixedly connected with a handle.
Preferably, a rubber cushion is mounted on the handle.
Compared with the prior art, the utility model provides a biological gene composition analysis appearance is used in medical treatment possesses following beneficial effect:
this biological genetic component analysis appearance is used in medical treatment, through setting up flexible groove, the expansion plate, two spinal branch vaulting poles, two removal wheels, two draw-in grooves, two clearing holes, two kelly, two spacing grooves, two limiting plates, two springs, the shifting chute, two-sided rack, two gears, U type rack, remove a removal wheel telescopic machanism of hole and carriage release lever constitution, can conveniently carry out the shift position, increase the area of contact of biological genetic component analysis appearance for medical treatment and desktop again when not needing to remove, make it more stable, firm, be difficult for falling from the desktop.
The part that does not relate to in the device all is the same with prior art or can adopt prior art to realize, the utility model discloses biological genetic component analysis appearance for medical treatment can conveniently remove when the device removes, and it is more stable, firm not unmovable to make it, is difficult for falling from the desktop.
Drawings
FIG. 1 is a schematic structural view of a biological genetic component analyzer for medical use according to the present invention;
fig. 2 is an enlarged view of a portion a in fig. 1.
In the figure: 1 instrument box, 2 moving wheel telescoping mechanism, 201 telescopic slot, 202 telescopic plate, 203 support rod, 204 moving wheel, 205 clamping slot, 206 through hole, 207 clamping rod, 208 spacing slot, 209 limiting plate, 210 spring, 211 moving slot, 212 double-sided rack, 213 gear, 214U-shaped rack, 215 moving hole, 216 moving rod, 3 first T-shaped slide block, 4 first T-shaped slide block, 5 moving slide block, 6 moving slide block, 7 second T-shaped slide block, 8 second T-shaped slide block, 9 pulling plate, 10 fixing plate, 11 rubber non-slip pad, 12 anti-slip plate, 13 handle, 14 rubber buffer pad.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments.
Referring to fig. 1-2, a medical biogenic composition analyzer comprises an instrument box 1, wherein a movable wheel telescopic mechanism 2 is arranged in the instrument box 1;
the movable wheel telescoping mechanism 2 comprises a telescoping groove 201, a telescoping plate 202, two supporting rods 203, two movable wheels 204, two clamping grooves 205, two through holes 206, two clamping rods 207, two limiting grooves 208, two limiting plates 209, two springs 210, a movable groove 211, a double-sided rack 212, two gears 213, a U-shaped rack 214, a movable hole 215 and a movable rod 216, wherein the telescoping groove 201 is arranged at the bottom of the instrument box 1, the telescoping plate 202 is arranged at the position of the telescoping groove 201 close to the bottom of the groove, the two supporting rods 203 are symmetrically and fixedly connected to the plate wall of the telescoping plate 202 far away from the bottom of the telescoping groove 201, the two movable wheels 204 are respectively arranged at the other ends of the corresponding supporting rods 203, the two clamping grooves 205 are arranged at the opposite ends of the two supporting rods 203, the two through holes 206 are arranged on the wall of the telescoping groove 201, the 206 is arranged below the clamping grooves 205, the two clamping rods 207 are respectively arranged in the, one end of each clamping rod 207 penetrates through the hole opening of the corresponding through hole 206 and extends outwards to abut against the rod wall of the corresponding support rod 203, the other ends of the two clamping rods 207 penetrate through the hole openings of the corresponding through holes 206 and extend outwards, two limiting grooves 208 are respectively formed in the hole walls of the corresponding through holes 206, two limiting plates 209 are respectively and fixedly connected to the rod walls of the corresponding clamping rods 207, the limiting plates 209 are positioned in the limiting grooves 208, two springs 210 are respectively and fixedly connected to the plate walls of the corresponding limiting plates 209 far away from the telescopic grooves 201, the other ends of the two springs 210 are fixedly connected to the corresponding groove walls of the limiting grooves 208, the movable groove 211 is formed in the center of the bottom of the telescopic groove 201, the double-sided rack 212 is fixedly connected to the center of one side plate wall of the telescopic plate 202 close to the bottom of the telescopic groove 201, the two gears 213 are respectively and fixedly connected to the two side groove walls of the movable groove 211, opposite tooth surfaces of the U-shaped rack 214 are respectively meshed with the corresponding gears 213, the moving hole 215 is formed in the center of the bottom of the moving groove 211, the moving rod 216 is arranged in the moving hole 215, one end of the moving rod 216 penetrates through an opening of the moving hole 215 and extends into the moving groove 211 and is fixedly connected to one end, far away from the telescopic groove 201, of the U-shaped rack 214, the other end of the moving rod penetrates through an opening of the moving hole 215 and extends outwards, when the medical biogenic composition analyzer needs to move, the pull plate 9 is pulled upwards, the pull plate 9 drives the moving rod 216 to move upwards, the moving rod 216 drives the U-shaped rack 214 to move upwards, the two gears 213 meshed with the U-shaped rack 214 rotate, the two gears 213 rotate to drive the jointly meshed double-sided rack 212 to move downwards to drive the telescopic plate 202 to move downwards, the telescopic plate 202 drives the two support rods 203 to move downwards, and when the clamping groove 205 reaches the position of, the compressed spring 210 recovers elasticity, the clamping rod 207 is pushed into the clamping groove 205, the moving wheel 204 extends out of the telescopic groove 201, the supporting rod 203 is fixed and immovable, when the movement is not needed, the biological gene component analyzer is placed on a table top, the two fixing plates 10 are pulled outwards, the two fixing plates 10 drive the clamping rod 207 to move outwards of the telescopic groove 201, the clamping rod 207 is separated from the clamping groove 205, the supporting rod 203 moves upwards under the action of gravity of the biological gene component analyzer, the supporting rod 203 pushes the telescopic plate 202 to move upwards, the telescopic plate 202 drives the double-sided rack 212 to move upwards, the double-sided rack 212 drives the two gears 213 meshed with the double-sided rack 212 to rotate, the two gears 213 drive the U-shaped rack 214 to move downwards, the moving wheel 204 moves into the telescopic groove, the rubber anti-skid pad 11 is in contact with the ground, the moving position can be conveniently carried out, the contact area between the medical biological gene component analyzer and the, so that the desk is more stable and firm and is not easy to fall off from the desk top.
The first T-shaped sliding grooves 4 are formed in the positions, corresponding to the first T-shaped sliding blocks 3, of the groove walls of the moving grooves 211, the two first T-shaped sliding blocks 3 are connected in the corresponding first T-shaped sliding grooves 4 in a sliding mode respectively, the U-shaped rack 214 moves smoothly, and the U-shaped rack 214 is stable.
The equal fixedly connected with in both ends of expansion plate 202 removes slider 5, and removal spout 6 has all been seted up to the corresponding position that removes slider 5 of the cell wall in expansion groove 201, and two remove slider 5 sliding connection respectively make expansion plate 202 remove more smoothly, more firm in the removal spout 6 that corresponds.
Two equal fixedly connected with second T type sliders 7 of one end that the kelly 207 was kept away from to limiting plate 209, second T type spout 8 has all been seted up to the position that the tank bottom of two spacing grooves 208 corresponds second T type slider 7, and two second T type sliders 7 are sliding connection respectively in the second T type spout 8 that corresponds, make kelly 207 remove more laborsavingly, and are more firm, are difficult for blocking.
One end of the moving rod 216, which is far away from the U-shaped rack 214, is fixedly connected with a pulling plate 9, and anti-slip lines are arranged on the surface of the pulling plate 9, so that the moving rod 216 is pulled more labor-saving and is not easy to slip.
The two clamping rods 207 are fixedly connected with the fixing plate 10 at the ends far away from the supporting rod 203, and anti-slip lines are arranged on the surface of the fixing plate 10, so that the fixing plate 10 can be pulled more easily.
Rubber slipmat 11 is all installed to the bottom four corners department of instrument case 1, and the frictional force of increase equipment and desktop, the atress is even, and difficult slipping is difficult for falling from the desk to equipment, avoids causing equipment damage.
The end of the double-sided rack 212 far away from the retractable plate 202 is fixedly connected with an anti-slip plate 12 to prevent the double-sided rack 212 from disengaging from the gear 213 and causing damage to the movable wheel retracting mechanism 2.
The top end of the instrument box 1 is fixedly connected with a handle 13, and the handle is pushed when moving, so that the movement is more labor-saving and convenient.
The handle 13 is provided with a rubber cushion 14 for buffering the force applied to the fingers when the handle is moved for a long time, thereby preventing the fingers from ache.
In the utility model, when the biological gene component analyzer for medical use needs to move, the pulling plate 9 is pulled upwards, the pulling plate 9 drives the moving rod 216 to move upwards, the moving rod 216 drives the U-shaped rack 214 to move upwards, the two gears 213 meshed with the U-shaped rack 214 rotate, the two gears 213 rotate to drive the double-sided rack 212 meshed together to move downwards, the telescopic plate 202 is driven to move downwards, the telescopic plate 202 drives the two support rods 203 to move downwards, when the clamping groove 205 reaches the position of the clamping rod 207, the compressed spring 210 recovers elasticity, the clamping rod 207 is pushed into the clamping groove 205, the moving wheel 204 extends out of the telescopic groove 201, the support rods 203 are fixed and immovable, when the biological gene component analyzer does not need to move, the biological gene component analyzer is placed on a desktop, the two fixing plates 10 are pulled outwards, the two fixing plates 10 drive the clamping rod 207 to move outwards of the telescopic groove 201, the clamping rod 207 is separated from the clamping groove 205, bracing piece 203 is the rebound under biological gene composition analysis appearance gravity's effect, bracing piece 203 promotes expansion plate 202 rebound, expansion plate 202 drives two-sided rack 212 rebound, two-sided rack 212 drives and rotates rather than two gears 213 of meshing, two gears 213 drive U type rack 214 rebound, it moves flexible inslot to remove wheel 204, rubber slipmat 11 and ground contact, can conveniently carry out the shift position, increase the area of contact of medical treatment biological gene composition analysis appearance and desktop again when not needing to remove, make it more stable, firm, be difficult for falling from the desktop.
The above, only be the concrete implementation of the preferred embodiment of the present invention, but the protection scope of the present invention is not limited thereto, and any person skilled in the art is in the technical scope of the present invention, according to the technical solution of the present invention and the utility model, the concept of which is equivalent to replace or change, should be covered within the protection scope of the present invention.

Claims (10)

1. A medical biological gene component analyzer comprises an instrument box (1), and is characterized in that a movable wheel telescopic mechanism (2) is installed in the instrument box (1);
the movable wheel telescopic mechanism (2) comprises a telescopic groove (201), a telescopic plate (202), two supporting rods (203), two movable wheels (204), two clamping grooves (205), two through holes (206), two clamping rods (207), two limiting grooves (208), two limiting plates (209), two springs (210), a movable groove (211), a double-sided rack (212), two gears (213), a U-shaped rack (214), a movable hole (215) and a movable rod (216), wherein the telescopic groove (201) is formed in the bottom of the instrument box (1), the telescopic plate (202) is arranged at a position, close to the bottom of the telescopic groove (201), the two supporting rods (203) are symmetrically and fixedly connected to a plate wall, far away from the bottom of the telescopic groove (201), the two movable wheels (204) are respectively arranged at the other ends, corresponding to the supporting rods (203), of the two clamping grooves (205) are formed in the back ends of the two supporting rods (203), two all set up on the cell wall of flexible groove (201) through hole (206), just the below that is located draw-in groove (205) through hole (206) sets up, two kelly (207) are established respectively in corresponding through hole (206), just the one end of kelly (207) is passed the drill way of through hole (206) and outwards extends to and offsets with bracing piece (203) pole wall that corresponds, two the other end of kelly (207) is passed the drill way and outwards extends of corresponding through hole (206), two spacing groove (208) are seted up respectively on the pore wall that corresponds through hole (206), two limiting plate (209) fixed connection respectively is on the pole wall that corresponds kelly (207), just limiting plate (209) are located and set up in spacing groove (208), two spring (210) fixed connection respectively is on the board wall that flexible groove (201) was kept away from to corresponding limiting plate (209), the other end of each spring (210) is fixedly connected to the corresponding groove wall of the corresponding limit groove (208), the moving groove (211) is formed in the center of the groove bottom of the telescopic groove (201), the double-sided rack (212) is fixedly connected to the center of one side plate wall of the telescopic plate (202) close to the groove bottom of the telescopic groove (201), the two gears (213) are fixedly connected to the groove walls on the two sides of the moving groove (211), the two gears (213) are meshed with the double-sided rack (212) together, opposite tooth surfaces of the U-shaped rack (214) are meshed with the corresponding gears (213) respectively, the moving hole (215) is formed in the center of the groove bottom of the moving groove (211), the moving rod (216) is arranged in the moving hole (215), one end of the moving rod (216) penetrates through an orifice of the moving hole (215) and extends into the moving groove (211) to be fixedly connected to one end, far away from the telescopic groove (201), of the U-shaped rack (214), the other end of the moving rod passes through the opening of the moving hole (215) and extends outward.
2. The biological genetic component analyzer for medical treatment according to claim 1, wherein the opposite ends of the U-shaped rack (214) are fixedly connected with first T-shaped sliding blocks (3), the positions of the groove wall of the moving groove (211) corresponding to the first T-shaped sliding blocks (3) are respectively provided with a first T-shaped sliding groove (4), and the two first T-shaped sliding blocks (3) are respectively connected in the corresponding first T-shaped sliding grooves (4) in a sliding manner.
3. The biological genetic component analyzer for medical treatment according to claim 1, wherein both ends of the expansion plate (202) are fixedly connected with a movable sliding block (5), the groove wall of the expansion groove (201) is provided with a movable sliding groove (6) at a position corresponding to the movable sliding block (5), and the two movable sliding blocks (5) are respectively connected in the corresponding movable sliding grooves (6) in a sliding manner.
4. The medical biogenic composition analyzer according to claim 1, wherein one ends of the two limiting plates (209) far away from the clamping rod (207) are fixedly connected with second T-shaped sliding blocks (7), the groove bottoms of the two limiting grooves (208) are provided with second T-shaped sliding grooves (8) at positions corresponding to the second T-shaped sliding blocks (7), and the two second T-shaped sliding blocks (7) are respectively connected in the corresponding second T-shaped sliding grooves (8) in a sliding manner.
5. The biogenic composition analyzer for medical treatment according to claim 1, wherein a pulling plate (9) is fixedly connected to one end of the moving rod (216) far away from the U-shaped rack (214), and the surface of the pulling plate (9) is provided with anti-skid grains.
6. The medical biogenic composition analyzer according to claim 1, wherein a fixing plate (10) is fixedly connected to one end of each of the two clamping rods (207) far away from the supporting rod (203), and anti-skid lines are arranged on the surface of each fixing plate (10).
7. The biogenic composition analyzer for medical treatment according to claim 1, wherein rubber non-slip pads (11) are installed at four corners of the bottom of the instrument box (1).
8. The biogenic composition analyzer for medical treatment according to claim 1, wherein an anti-drop plate (12) is fixedly connected to one end of the double-sided rack (212) far away from the expansion plate (202).
9. The biogenic composition analyzer for medical treatment according to claim 1, wherein a handle (13) is fixedly connected to the top end of the instrument case (1).
10. The biogenic analyzer for medical treatment according to claim 9, wherein a rubber cushion (14) is mounted on the handle (13).
CN201920921480.3U 2019-06-19 2019-06-19 Medical treatment is with biological gene composition analysis appearance Active CN210419913U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920921480.3U CN210419913U (en) 2019-06-19 2019-06-19 Medical treatment is with biological gene composition analysis appearance

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920921480.3U CN210419913U (en) 2019-06-19 2019-06-19 Medical treatment is with biological gene composition analysis appearance

Publications (1)

Publication Number Publication Date
CN210419913U true CN210419913U (en) 2020-04-28

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CN201920921480.3U Active CN210419913U (en) 2019-06-19 2019-06-19 Medical treatment is with biological gene composition analysis appearance

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113679428A (en) * 2021-09-30 2021-11-23 江苏医药职业学院 Multifunctional pathological specimen box

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113679428A (en) * 2021-09-30 2021-11-23 江苏医药职业学院 Multifunctional pathological specimen box

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