Instrument placing frame
By designing an instrument placing rack with liftable and retractable needle body and needle cabin structure, the problem of single use in the existing technology is solved, and the placement of instruments of different types and specifications is realized, which improves utilization and recycling.
Patent Information
- Application Number
- CN202510180351.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-18
- Publication Date
- 2025-05-13
AI Technical Summary
The existing instrument placing rack has a single purpose, which is not conducive to the recycling of instrument placing racks.
An instrument placing frame including a box and a plurality of needle compartments is designed. The needle body is connected to the needle compartment in a lift and lowered manner. When the instrument is placed on a part of the needle compartment, the corresponding part of the needle compartment is lowered, and other needle compartments are arranged around the instrument to fix the instrument.
It realizes the placement of instruments of different types and specifications, improves the utilization rate of instrument placement racks, and facilitates its recycling.
Smart Images

Figure CN119972219A_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of instrument display racks, and in particular to an instrument display rack. Background Art
[0002] The instrument display rack is used to place instruments to support and fix the instruments, making it convenient for operators to take the instruments and avoid damage to the instruments.
[0003] In the related art, an instrument rack can only be used to place instruments of the same type. For example, a test tube rack can only be used to place test tubes. This results in the single purpose of the instrument rack, which is not conducive to the recycling of the instrument rack. Summary of the invention
[0004] The present application discloses an instrument display rack, so as to solve or at least partially solve the problem in the prior art that the instrument display rack has a single purpose and is not conducive to the recycling of the instrument display rack.
[0005] In order to solve the above technical problems, this application is implemented as follows:
[0006] The present application discloses an instrument display rack, which includes a box body, in which a plurality of needle chambers are arranged in an array; a plurality of needle bodies, each of which is inserted into one of the needle chambers and at least partially exposed from the needle chamber, and each of the needle bodies is liftably connected to the corresponding needle chamber; wherein the needle bodies are used to place instruments, and when the instruments are placed on some of the needle bodies, the corresponding parts of the needle bodies descend so that the other parts of the needle bodies are arranged around the instruments to fix the instruments.
[0007] Optionally, a first magnetic plate is provided at the bottom of the box, and a second magnetic piece is provided at the end of the needle body close to the bottom of the box. The first magnetic plate and the second magnetic piece have the same magnetic properties to generate a repulsive force, which is greater than the gravity of the needle body and is used to drive the needle body to rise.
[0008] Optionally, a plurality of grids are provided in the box body, and the plurality of grids are arranged in an array; each of the needle cabins is fixedly connected to one of the grids.
[0009] Optionally, a first protrusion is provided on the top of the needle cabin, and the first protrusion protrudes from the inner wall of the needle cabin; a second protrusion is provided at the end of the needle body close to the bottom of the box body, and the second protrusion protrudes from the outer wall of the needle body, and the first protrusion is used to limit the second protrusion.
[0010] Optionally, along the circumference of the needle chamber, the first protrusion surrounds the inner wall of the needle chamber; along the circumference of the needle body, the second protrusion surrounds the outer wall of the needle body.
[0011] Optionally, the end of the needle body away from the bottom of the box body is an arc-shaped structure.
[0012] Optionally, the box body includes a plurality of boxes, which are arranged in sequence; among the side walls of two adjacent boxes that are close to each other, the side wall of one box body is provided with a third magnetic component, and the side wall of the other box body is provided with a fourth magnetic component, and the fourth magnetic component is magnetically connected to the third magnetic component.
[0013] Optionally, the box body is a rectangular parallelepiped structure, and each side wall of the box body is provided with a clamping groove; the third magnetic component or the fourth magnetic component is embedded in the clamping groove.
[0014] Optionally, the box body has a first side wall and a second side wall that are arranged opposite to each other, the first side wall is provided with a first recessed portion, the second side wall is provided with a second recessed portion, and the first recessed portion and the second recessed portion are used for carrying the box body.
[0015] Optionally, along the height direction of the box body, the height of the grid is smaller than the height of the needle cabin.
[0016] The present application discloses an instrument display rack, which includes a box body, in which a plurality of needle chambers are arranged in an array; a plurality of needle bodies, each of which is inserted into one of the needle chambers and at least partially exposed from the needle chamber, and each of the needle bodies is liftably connected to the corresponding needle chamber; wherein the needle bodies are used to place instruments, and when the instruments are placed on some of the needle bodies, the corresponding parts of the needle bodies descend so that the other parts of the needle bodies are arranged around the instruments to fix the instruments.
[0017] The instrument display rack disclosed in the present application includes a box body, in which a plurality of needle chambers are arranged in an array, and each needle body is inserted into a needle chamber and at least partially exposed outside the needle chamber. The needle body is connected to the corresponding needle chamber in a liftable manner. When an instrument is placed on a part of the needle body, the corresponding part of the needle body will drop under the action of the gravity of the instrument, and the other needle bodies without the instrument placed on them will remain in an ascending state. The other needle bodies without the instrument placed on them will be arranged around the instrument to fix the instrument. In other words, the instrument display rack can display instruments of different types and specifications, thereby helping to improve the utilization rate of the instrument display rack and facilitating the recycling of the instrument display rack. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 A schematic diagram showing the structure of the instrument display rack described in the embodiment of the present application;
[0019] Figure 2 A schematic diagram showing the internal structure of the instrument display rack described in the embodiment of the present application;
[0020] Figure 3 A schematic diagram showing the structure of the needle cabin and the needle body in the embodiment of the present application;
[0021] Figure 4 A schematic diagram showing the internal structure of the needle chamber and the needle body in the embodiment of the present application;
[0022] Figure 5 A schematic diagram showing the structure of the box body described in the embodiment of the present application.
[0023] Reference numerals:
[0024] 10: box body; 11: first magnetic plate; 12: grid;
[0025] 20: needle compartment; 21: first protrusion;
[0026] 30: needle body; 31: second magnetic member; 32: second protrusion; 33: arc-shaped structure. DETAILED DESCRIPTION
[0027] 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 described embodiments are 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 creative work are within the fixed scope of the present invention.
[0028] It should be understood that the references to "one embodiment" or "an embodiment" throughout the specification mean that the specific features, structures, or characteristics associated with the embodiment are included in at least one embodiment of the present invention. Therefore, the references to "in one embodiment" or "in an embodiment" appearing throughout the specification do not necessarily refer to the same embodiment. In addition, these specific features, structures, or characteristics may be combined in any suitable manner in one or more embodiments.
[0029] Reference Figure 1 , showing a schematic diagram of the structure of the instrument display rack described in the embodiment of the present application; referring to Figure 2 , showing a schematic diagram of the internal structure of the instrument display rack described in the embodiment of the present application; referring to Figure 3 , showing a schematic diagram of the structure of the needle cabin and the needle body in the embodiment of the present application; referring to Figure 4 , showing a schematic diagram of the internal structure of the needle cabin and the needle body in the embodiment of the present application; referring to Figure 5 , showing a schematic structural diagram of the box body described in an embodiment of the present application.
[0030] like Figures 1 to 5As shown, an embodiment of the present application discloses an instrument display rack, which includes a box body 10, in which a plurality of needle chambers 20 are arranged in an array; a plurality of needle bodies 30, each needle body 30 is inserted into a needle chamber 20 and at least partially exposed from the needle chamber 20, and each needle body 30 is connected to the corresponding needle chamber 20 in a liftable manner; wherein the needle bodies 30 are used to place instruments, and when an instrument is placed on a part of the needle bodies 30, the corresponding part of the needle bodies 30 descends so that the other part of the needle bodies 30 are arranged around the instrument to fix the instrument.
[0031] The embodiment of the present application discloses an instrument display rack, which is used to display instruments. The instruments are displayed on the instrument display rack, providing an orderly storage space for the instruments, so as to facilitate the storage, access and management of the instruments.
[0032] It should be noted that the instrument rack disclosed in the embodiment of the present application can be used to place instruments of various types and specifications. In other words, the instrument rack is not limited to the types and specifications of instruments, and can be used to place instruments of any type and any specification, thereby helping to improve the utilization rate of the instrument rack and facilitating the recycling of the instrument rack.
[0033] like Figures 1 to 5 As shown, the instrument display rack disclosed in the embodiment of the present application includes a box 10, and the box 10 serves as a support member to fix the instrument display rack. Among them, the box 10 can be a rectangular parallelepiped structure, a cube structure, or a cylindrical structure. Of course, the box 10 can also be any other special-shaped structure. In the embodiment of the present application, there are no excessive restrictions on the specific structure of the box 10. In actual applications, technicians can set the specific structure of the box 10 as needed.
[0034] The box body 10 is a rectangular parallelepiped structure and is used as an example to explain the embodiments of the present application.
[0035] like Figure 1 and Figure 2 As shown, a plurality of needle capsules 20 are arranged in an array in the box 10 in the embodiment of the present application, and the extension direction of the plurality of needle capsules 20 is consistent with the height direction of the instrument display rack. For example, a plurality of grids 12 can be arranged in an array in the box 10, each needle capsule 20 is disposed in a grid 12, and the needle capsule 20 is fixedly connected to the inner wall of the grid 12. Alternatively, a plurality of through holes are arranged in a needle array in the box 10, and each through hole serves as a needle capsule 20.
[0036] like Figures 1 to 4As shown, a needle body 30 is inserted into each needle chamber 20, and along the height direction of the instrument display rack, the needle body 30 is at least partially exposed from the needle chamber 20. In other words, a portion of the needle body 30 is inserted into the needle chamber 20, and a portion is exposed from the needle chamber 20. It should be noted that the needle body 30 in the embodiment of the present application is connected to the corresponding needle chamber 20 in a liftable manner. It can be understood that along the height direction of the instrument display rack, the needle body 30 can be lifted relative to the corresponding needle chamber 20.
[0037] For example, a slide groove may be provided on the inner wall of the needle chamber 20, the slide groove extending in the height direction of the instrument placement rack, a slider may be provided on the outer wall of the needle body 30, the slider protrudes from the outer wall of the needle body 30, and the slider is slidably connected to the slide groove. Then, a driving member is connected to the slider, and the driving member drives the slider to slide relative to the slide groove in the height direction of the instrument placement rack, thereby driving the needle body 30 to slide relative to the corresponding needle chamber 20 in the height direction of the instrument placement rack.
[0038] Of course, the above are only individual examples of specific ways in which the needle body 30 can be raised and lowered to the corresponding needle compartment 20, and are not intended to be limiting of the present application. In actual applications, technicians can set the way in which the needle body 30 can be raised and lowered to the corresponding needle compartment 20 as needed.
[0039] When the instrument display rack is in use, the instrument can be placed on some of the needle bodies 30. Under the action of the gravity of the instrument, the needle bodies 30 with the instrument placed on them will drop, while the other needle bodies 30 without the instrument placed on them will remain in an ascending state. The other needle bodies 30 without the instrument placed on them will be arranged around the instrument to fix the instrument and prevent it from falling off.
[0040] It can be seen that the instrument rack disclosed in the embodiment of the present application is not limited to the specific type of instrument and the specific size of the instrument. The instrument rack can place any type of instrument and any specification of instrument, thereby helping to improve the utilization rate of the instrument rack and facilitating the recycling of the instrument rack.
[0041] It should be noted that the instrument rack disclosed in the embodiment of the present application does not impose any specific restrictions on the placement of the instrument, and any placement method is acceptable. Taking a test tube as an example, when the test tube is placed on the instrument rack, the length direction of the test tube can be consistent with the height direction of the instrument rack, and the length direction of the test tube can also be perpendicular to the height direction of the instrument rack.
[0042] In some embodiments, Figure 2 As shown, a first magnetic plate 11 is provided at the bottom of the box body 10, and a second magnetic member 31 is provided at the end of the needle body 30 close to the bottom of the box body 10; the first magnetic plate 11 and the second magnetic member 31 have the same magnetic properties to generate a repulsive force, which is greater than the gravity of the needle body, and the repulsive force is used to drive the needle body 30 to rise.
[0043] like Figure 2 As shown, the instrument display rack disclosed in the embodiment of the present application further includes a first magnetic plate 11, which is connected to the bottom of the box 10. Each needle cabin 20 has a projection on the plane where the first magnetic plate 11 is located, and the projection of each needle cabin 20 on the plane where the first magnetic plate 11 is located falls into the first magnetic plate 11. In other words, each needle cabin 20 is arranged opposite to the first magnetic plate 11 along the height direction of the instrument display rack.
[0044] The second magnetic member 31 is provided at the end of the needle body 30 near the bottom of the box 10. It can be understood that the needle body 30 includes two parts, one part is the needle body, and the other part is the second magnetic member 31, which is connected to the end of the needle body near the bottom of the box 10.
[0045] Taking the needle body as a cylinder as an example, the second magnetic member 31 is connected to the end of the needle body near the bottom of the box 10. The second magnetic member 31 can also be a cylinder, and the diameter of the second magnetic member 31 can be the same as the diameter of the needle body, or the diameter of the second magnetic member 31 can be different from the diameter of the needle body.
[0046] It should be noted that the second magnetic member 31 in the embodiment of the present application can be snapped onto the end of the needle body close to the bottom of the box 10, and the second magnetic member 31 can be bonded to the end of the needle body close to the bottom of the box 10. In the embodiment of the present application, there are no excessive restrictions on the specific connection method between the second magnetic member 31 and the needle body. In actual applications, technicians can set it as needed. In the embodiment of the present application, the first magnetic plate 11 and the second magnetic member 31 have the same magnetic properties, and there is a mutual repulsive force between the first magnetic plate 11 and the second magnetic member 31, which is greater than the gravity of the needle body 30. When the operator takes the instrument away from the instrument display rack, the repulsive force between the first magnetic plate 11 and the second magnetic member 31 drives the needle body 30 to rise, so that the needle body 30 returns to the raised state.
[0047] In the embodiment of the present application, a first magnetic plate 11 is provided at the bottom of the box 10, and a second magnetic member 31 is provided at the end of the needle body 30 close to the bottom of the box 10. The first magnetic plate 11 and the second magnetic member 31 have the same magnetic properties, and a repulsive force is generated between the first magnetic plate 11 and the second magnetic member 31, and the repulsive force is greater than the gravity of the needle body 30. The needle body 30 is driven to rise in the needle cabin 20 by the repulsive force. When the operator takes the instrument away from the instrument display rack, the needle body 30 can be restored to the raised state, and the instrument display rack can be restored to the initial state, that is, all the needle bodies 30 on the instrument display rack are in the raised state.
[0048] Exemplarily, the repulsive force between the first magnetic plate 11 and the second magnetic member 31 may be 1.5 times, 1.4 times, 1.3 times, 1.2 times, 1.1 times, etc., of the gravity of the needle body 30 .
[0049] In some embodiments, Figure 5 As shown, a plurality of grids 12 are provided in the box body 10 , and the plurality of grids 12 are arranged in an array; each needle chamber 20 is fixedly connected to a grid 12 .
[0050] like Figure 5 As shown, in the embodiment of the present application, a plurality of grids 12 may be provided in the box 10, and the plurality of grids 12 are arranged in an array in the box 10, and the extension direction of the grids 12 is consistent with the height direction of the instrument display rack.
[0051] The grid 12 in the embodiment of the present application can be integrally formed with the box 10, and the grid 12 is integrally formed with the box 10, so that a plurality of grids 12 arranged in an array can be arranged in the box 10. For example, the box 10 can be formed by injection molding, and in the process of forming the box 10 by injection molding, a plurality of grids 12 arranged in an array are also formed in the box 10.
[0052] The grid 12 in the embodiment of the present application can also be provided separately from the box 10. That is, the box 10 and the grid 12 arranged in an array are formed separately, and then the grid 12 arranged in an array is provided in the box 10.
[0053] In the embodiment of the present application, there is no specific restriction on whether the box body 10 and the grid 12 are integrally formed or separately formed. In actual applications, technicians can choose according to needs.
[0054] In the embodiment of the present application, each needle capsule 20 is fixedly connected to a grid 12, and the corresponding needle capsule 20 is fixed through each grid 12, so that multiple needle capsules 20 can be arranged in an array in the box 10 to form multiple needle capsules 20 arranged in an array, and each needle body 30 is disposed in a needle capsule 20 to form multiple needle bodies 30 arranged in an array, so that the instrument is fixed by the multiple needle bodies 30.
[0055] It should be noted that in the embodiment of the present application, each needle cabin 20 is fixedly connected to a grid 12, that is, after the needle cabin 20 is connected to the corresponding grid 12, the relative position between the needle cabin 20 and the corresponding grid 12 remains unchanged.
[0056] For example, each needle capsule 20 can be bonded to the corresponding grid 12, each needle capsule 20 can be snapped to the corresponding grid 12, or each needle capsule 20 can be detachably connected to the corresponding grid 12 by bolts. In the embodiment of the present application, there are no excessive restrictions on the specific connection method between the needle capsule 20 and the corresponding grid 12. In actual applications, technicians can select a suitable connection method as needed.
[0057] In some embodiments, Figure 4 As shown, in the embodiment of the present application, a first protrusion 21 is provided on the top of the needle cabin 20, and the first protrusion 21 protrudes from the inner wall of the needle cabin 20; a second protrusion 32 is provided at the end of the needle body 30 close to the bottom of the box body 10, and the second protrusion 32 protrudes from the outer wall of the needle body 30, and the first protrusion 21 is used to limit the second protrusion 32.
[0058] like Figure 4 As shown, in the embodiment of the present application, a first protrusion 21 is provided on the inner wall of the needle cabin 20, the first protrusion 21 protrudes from the inner wall of the needle cabin 20, and along the height direction of the instrument placement rack, the first protrusion 21 is provided at the top of the needle cabin 20. A second protrusion 32 is provided on the outer wall of the needle body 30, the second protrusion 32 protrudes from the outer wall of the needle body 30, and along the height direction of the instrument placement rack, the second protrusion 32 is provided at the end of the needle body 30 close to the bottom of the box 10.
[0059] When no instrument is placed on the instrument placement rack, all needle bodies 30 are in an initial raised state. Along the height direction of the instrument placement rack, all needle bodies 30 have the same height.
[0060] When the operator places the instrument on the instrument display rack, the part of the needle body 30 where the instrument is placed will drop under the action of the gravity of the instrument, while the other part of the needle body 30 where no instrument is placed is still in the initial rising state. The other part of the needle body 30 where no instrument is placed is arranged around the instrument to fix the instrument.
[0061] When the operator takes the instrument away from the instrument placement rack, the repulsive force between the first magnetic member 11 and the second magnetic member 31 can drive the needle body 30 to rise. The needle body 30 gradually rises until it returns to the initial rising state before the instrument is placed.
[0062] During the rising process of the needle body 30, in order to prevent the needle body 30 from rising continuously under the action of inertia and detaching from the needle cabin 20, causing damage to the instrument display rack, a first protrusion 21 is provided on the top of the needle cabin 20, and the first protrusion 21 protrudes from the inner wall of the needle cabin 20, and a second protrusion 32 is provided at the end of the needle body 30 close to the bottom of the box body 10, and the second protrusion 32 protrudes from the outer wall of the needle body 30. When the needle body 30 with the instrument placed rises to the same height as the other needle bodies 30 without the instrument placed, that is, after the needle body 30 is in the initial rising state, the second protrusion 32 will be clamped on the first protrusion 21, and the needle body 30 will not rise again. At this time, the instrument display rack returns to the initial state without the instrument placed.
[0063] The provision of the first protrusion 21 and the second protrusion 32 in the embodiment of the present application can limit the needle body 30 to prevent the needle body 30 from detaching from the needle cabin 20 during the rising process, causing damage to the instrument display rack and affecting the normal use of the instrument display rack.
[0064] For example, the first protrusion 21 may be a first ring protruding from the inner wall of the needle chamber 20, and the second protrusion 32 may be a second ring protruding from the outer wall of the needle body 30. Of course, in the embodiment of the present application, there are no excessive restrictions on the specific structures of the first protrusion 21 and the second protrusion 32, and in actual applications, technicians can set them as needed.
[0065] In some embodiments, Figure 4 As shown, along the circumference of the needle chamber 20 , the first protrusion 21 surrounds the inner wall of the needle chamber 20 ; along the circumference of the needle body 30 , the second protrusion 32 surrounds the outer wall of the needle body 30 .
[0066] like Figure 4 As shown, the first protrusion 21 and the second protrusion 32 in the embodiment of the present application are both annular structures. The first protrusion 21 surrounds the inner wall of the needle cabin 20 along the circumference of the needle cabin 20, and the second protrusion 32 surrounds the outer wall of the needle body 30 along the circumference of the needle body 30. The second protrusion 32 is limited by the first protrusion 21.
[0067] In the embodiment of the present application, the first protrusion 21 is arranged on the inner wall of the needle cabin 20 along the circumference of the needle cabin 20, and the second protrusion 32 is arranged on the outer wall of the needle body 30 along the circumference of the needle body 30, so that the second protrusion 32 is limited by the first protrusion 21, so that the first protrusion 21 can limit the second protrusion 32 more reliably, thereby preventing the needle body 30 from detaching from the needle cabin 20 during the rising process, causing damage to the instrument display rack, and affecting the normal use of the instrument display rack.
[0068] It should be noted that, during the processing of the instrument display stand, the first raised portion 21 and the needle chamber 20 can be integrally formed, and the second raised portion 32 and the needle body 30 can be integrally formed. The first raised portion 21 can also be welded to the inner wall of the needle chamber 20, and the second raised portion 32 can be welded to the outer wall of the needle body 30. In the embodiment of the present application, there are no excessive restrictions on the specific molding methods between the first raised portion 21 and the needle chamber 20, and the second raised portion 32 and the needle body 30.
[0069] During the installation of the instrument stand, the end of the needle body 30 away from the second protrusion 32 can be passed through the needle chamber 20 so that the second protrusion 32 is engaged with the first protrusion 21 , thereby completing the installation of the needle body 30 and the needle chamber 20 .
[0070] In some embodiments, Figure 4 As shown, in the embodiment of the present application, the end of the needle body 30 away from the bottom of the box body 10 is an arc-shaped structure 33.
[0071] like Figure 4 As shown, in the embodiment of the present application, the end of the needle body 30 away from the bottom of the box body 10 is set as an arc-shaped structure 33. That is, along the height direction of the instrument placement rack, the needle body 30 has a first end close to the bottom of the box body 10 and a second end away from the bottom of the box body 10, and the second end of the needle body 30 is set as the arc-shaped structure 33. The second end of the needle body 30 is also the end of the needle body 30 that contacts the instrument.
[0072] In the embodiment of the present application, the end of the needle body 30 that contacts the instrument is set as an arc-shaped structure 33 to avoid damage to the instrument by the needle body 30, thereby ensuring the reliability and safety of the instrument placed on the instrument display rack.
[0073] It should be noted that the arc-shaped structure 33 is a smooth curved structure at the second end of the needle body 30. Exemplarily, the second end of the needle body 30 can be a semi-spherical structure or an elliptical spherical structure. Of course, the second end of the needle body 30 can also be other smooth curved structures. In this regard, the embodiment of the present application does not make specific restrictions, and in actual applications, technicians can set it as needed.
[0074] As a preferred implementation, the needle body 30 in the embodiment of the present application can be made of polytetrafluoroethylene material, can be made of Teflon material, and can also be made of other plastic materials.
[0075] In the embodiment of the present application, the needle body 30 is formed by a plastic material to further prevent the needle body 30 from causing damage to the instrument, thereby ensuring the reliability and safety of the instrument placed on the instrument display rack.
[0076] In some embodiments, the box body 10 in the embodiment of the present application includes multiple boxes 10, which are arranged in sequence; in the side walls of two adjacent boxes 10 that are close to each other, the side wall of one box body 10 is provided with a third magnetic component, and the side wall of the other box body 10 is provided with a fourth magnetic component, and the fourth magnetic component is magnetically connected to the third magnetic component.
[0077] The box 10 in the embodiment of the present application may include multiple boxes 10, which are arranged in sequence. A larger instrument rack can be formed by combining multiple boxes 10, so that the instrument rack can hold more instruments, or the instrument rack can hold larger instruments, thereby further improving the utilization rate of the instrument rack.
[0078] In the embodiment of the present application, in the side walls of two adjacent instrument racks close to each other, a third magnetic member is disposed on the side wall of one box 10, and a fourth magnetic member is disposed on the side wall of the other box 10. The magnetism of the third magnetic member and the fourth magnetic member is opposite, so that the third magnetic member can be magnetically connected to the fourth magnetic member. Thus, the two adjacent boxes 10 can be connected together by the third magnetic member and the fourth magnetic member to form a larger instrument rack, so that the instrument rack can place multiple instruments at the same time, or the instrument rack can place larger instruments.
[0079] It should be noted that the third magnetic member and the fourth magnetic member in the embodiment of the present application can be snapped onto the side wall of the box 10, the third magnetic member and the fourth magnetic member can be bonded to the side wall of the box 10, and the third magnetic member and the fourth magnetic member can also be detachably connected to the side wall of the box 10 by bolts. In the embodiment of the present application, there are no excessive restrictions on the specific way in which the third magnetic member and the fourth magnetic member are connected to the side wall of the box 10. In actual applications, technicians can select a suitable connection method as needed.
[0080] In some embodiments, Figure 1 , Figure 2 and Figure 5 As shown, the box body 10 in the embodiment of the present application is a rectangular parallelepiped structure, and a snap-in groove is provided on each side wall of the box body 10; the third magnetic member or the fourth magnetic member is embedded in the snap-in groove.
[0081] like Figure 1 , Figure 2 and Figure 5 As shown, in the embodiment of the present application, the box 10 is configured as a rectangular structure so that a plurality of boxes 10 can be arranged in sequence, and there will be no large gap between two adjacent boxes 10, so as to further ensure the reliability and safety of the instrument placed on the instrument display rack, and prevent the instrument from falling from the gap between two adjacent boxes 10, causing damage to the instrument.
[0082] When the box body 10 is a rectangular parallelepiped structure, a clamping groove can be provided on each side wall of the box body 10, and the third magnetic member or the fourth magnetic member can be provided in the clamping groove, and the third magnetic member or the fourth magnetic member can be clamped by the clamping groove to fix the third magnetic member or the fourth magnetic member. By clamping the third magnetic member or the fourth magnetic member by the clamping groove to fix the third magnetic member or the fourth magnetic member, the installation process of the third magnetic member or the fourth magnetic member can be simplified.
[0083] Furthermore, the third magnetic member or the fourth magnetic member can be embedded in the snap-in groove to prevent the third magnetic member or the fourth magnetic member from protruding from the side wall of the box 10, thereby increasing the gap between two adjacent boxes 10 and affecting the safety of the instrument display rack.
[0084] In some embodiments, the plurality of boxes 10 have different colors.
[0085] In the embodiment of the present application, multiple boxes 10 can be set to different colors so that different types of instruments can be placed in boxes 10 of different colors, or different specifications of the same instrument can be placed in boxes 10 of different colors, so as to facilitate operators to take the instruments, improve the operating efficiency of operators, and reduce the error rate of operators' operations.
[0086] For example, the instrument display rack includes four boxes 10, and the four boxes 10 can be red, yellow, green and blue respectively. Different types of instruments can be placed in the four boxes 10, for example, test tubes can be placed in the red box, beakers can be placed in the yellow box, culture dishes can be placed in the green box, and evaporating dishes can be placed in the blue box. Alternatively, different specifications of the same instrument can be placed in the four boxes 10, for example, test tubes of different specifications can be placed in the four boxes.
[0087] It should be noted that in the embodiments of the present application, there are no excessive restrictions on the specific types of instruments placed on the instrument display rack, and any instrument can be used.
[0088] In some embodiments, the box body 10 in the embodiment of the present application has a first side wall and a second side wall arranged opposite to each other, the first side wall is provided with a first recessed portion, the second side wall is provided with a second recessed portion, and the first recessed portion and the second recessed portion are used for carrying the box body 10.
[0089] The box body 10 in the embodiment of the present application has a first side wall and a second side wall that are arranged opposite to each other. Taking the box body 10 as a rectangular parallelepiped structure as an example, along the length direction of the rectangular parallelepiped structure, the box body 10 has a first side wall and a second side wall that are arranged opposite to each other, and along the width direction of the rectangular parallelepiped structure, the box body 10 has a third side wall and a fourth side wall that are arranged opposite to each other.
[0090] Among them, a first recessed portion is provided on the first side wall, and a second recessed portion is provided on the second side wall. During the transportation of the box body 10, the first recessed portion and the second recessed portion can be used as handles, and the operator can hold the first recessed portion and the second recessed portion to carry the box body 10.
[0091] In the embodiment of the present application, a first recessed portion is provided on the first side wall, and a second recessed portion is provided on the second side wall, and the box body 10 is carried through the first recessed portion and the second recessed portion, so that the operator can carry the box body 10 easily.
[0092] Furthermore, by providing a first recessed portion on the first side wall and a second recessed portion on the second side wall, it is also possible to avoid providing a handle protruding from the side wall of the box 10, which would cause a large gap between two adjacent boxes 10 and affect the reliability and safety of the instrument display rack.
[0093] As a preferred embodiment, the first recessed portion and the second recessed portion in the embodiment of the present application are arranged relatively to each other along the length direction of the rectangular structure, or the first recessed portion and the second recessed portion are arranged relatively to each other at least partially along the length of the rectangular structure to ensure the stability of the instrument display rack during the transportation process.
[0094] In some embodiments, Figure 1 As shown, along the height direction of the box body 10 , the height of the grid 12 is less than or equal to the height of the needle cabin 20 .
[0095] like Figure 1 As shown, in the embodiment of the present application, along the height direction of the box body 10, the height of the grid 12 is set to be less than or equal to the height of the needle cabin 20 to prevent the grid 12 from being too high and affecting the lifting and lowering of the needle body 30 in the needle cabin 20.
[0096] An embodiment of the present application discloses an instrument display rack, which includes a box body, in which a plurality of needle chambers are arranged in an array; a plurality of needle bodies, each of which is inserted into one of the needle chambers and at least partially exposed from the needle chamber, and each of the needle bodies is liftably connected to the corresponding needle chamber; wherein the needle bodies are used to place instruments, and when the instruments are placed on some of the needle bodies, the corresponding part of the needle bodies descends so that the other part of the needle bodies are arranged around the instruments to fix the instruments.
[0097] The instrument display rack disclosed in the embodiment of the present application includes a box body, in which a plurality of needle chambers are arranged in an array, and each needle body is inserted in a needle chamber and at least partially exposed outside the needle chamber. The needle body is connected to the corresponding needle chamber in a liftable manner. When an instrument is placed on a part of the needle body, the corresponding part of the needle body will drop under the action of the gravity of the instrument, and the other needle bodies without the instrument placed on them will remain in an ascending state. The other needle bodies without the instrument placed on them will be arranged around the instrument to fix the instrument. In other words, the instrument display rack can display instruments of different types and specifications, thereby helping to improve the utilization rate of the instrument display rack and facilitating the recycling of the instrument display rack.
[0098] It should be noted that the various embodiments in this specification are described in a progressive manner, and each embodiment focuses on the differences from other embodiments. The same or similar parts between the various embodiments can be referenced to each other.
[0099] Although the optional embodiments of the present invention have been described, those skilled in the art may make additional changes and modifications to these embodiments once they have learned the basic creative concept. Therefore, the appended claims are intended to be interpreted as including optional embodiments and all changes and modifications that fall within the scope of the embodiments of the present invention.
[0100] Finally, it should be noted that, in this article, relational terms such as first and second, etc. are only used to distinguish one entity from another entity, and do not necessarily require or imply any such actual relationship or order between these entities. Moreover, the terms "include", "comprise" or any other variants thereof are intended to cover non-exclusive inclusion, so that an article or terminal device including a series of elements includes not only those elements, but also other elements not explicitly listed, or also includes elements inherent to such article or terminal device. In the absence of further restrictions, the elements defined by the sentence "including one..." do not exclude the existence of other identical elements in the article or terminal device including the elements.
[0101] The technical solution provided by the present invention is introduced in detail above. Specific examples are used in this article to illustrate the principle and implementation mode of the present invention. At the same time, for those skilled in the art, according to the principle and implementation mode of the present invention, there will be changes in the specific implementation mode and application scope. In summary, the content of this specification should not be understood as limiting the present invention.
Claims
1. An instrument display rack, characterized in that: include: A box body (10), wherein a plurality of needle chambers (20) are arranged in an array in the box body (10); A plurality of needle bodies (30), each of the needle bodies (30) being inserted into one of the needle chambers (20) and at least partially exposed from the needle chamber (20), and each of the needle bodies (30) being liftably connected to the corresponding needle chamber (20); The needle body (30) is used to place an instrument. When the instrument is placed on a part of the needle body (30), the corresponding part of the needle body (30) descends so that the other part of the needle body (30) surrounds the instrument to fix the instrument.
2. The instrument display rack according to claim 1, characterized in that: A first magnetic plate (11) is provided at the bottom of the box (10), and a second magnetic member (31) is provided at the end of the needle body (30) close to the bottom of the box (10); The first magnetic plate (11) and the second magnetic member (31) have the same magnetic properties to generate a repulsive force, the repulsive force being greater than the gravity of the needle body (30), and the repulsive force being used to drive the needle body (30) to rise.
3. The instrument display rack according to claim 1, characterized in that: A plurality of grids (12) are arranged in the box body (10), and the plurality of grids (12) are arranged in an array, and each of the needle chambers (20) is fixedly connected to one of the grids (12).
4. The instrument display rack according to claim 1, characterized in that: A first protrusion (21) is provided on the top of the needle chamber (20), and the first protrusion (21) protrudes from the inner wall of the needle chamber (20); A second protrusion (32) is provided at the end of the needle body (30) close to the bottom of the box body (10), the second protrusion (32) protrudes from the outer wall of the needle body (30), and the first protrusion (21) is used to limit the second protrusion (32).
5. The instrument display rack according to claim 4, characterized in that: Along the circumference of the needle chamber (20), the first protrusion (21) surrounds the inner wall of the needle chamber (20); Along the circumference of the needle body (30), the second protrusion (32) surrounds the outer wall of the needle body (30).
6. The instrument display rack according to claim 1, characterized in that: The end of the needle body (30) away from the bottom of the box body (10) is an arc-shaped structure (33).
7. The instrument display rack according to claim 1, characterized in that: The box body (10) comprises a plurality of boxes, and the plurality of boxes (10) are arranged in sequence; In the side walls of two adjacent boxes (10) close to each other, the side wall of one of the boxes (10) is provided with a third magnetic component, and the side wall of the other box (10) is provided with a fourth magnetic component, and the fourth magnetic component is magnetically connected to the third magnetic component.
8. The instrument display rack according to claim 7, characterized in that: The box body (10) is a rectangular parallelepiped structure, and each side wall of the box body (10) is provided with a snap-fitting groove; The third magnetic component or the fourth magnetic component is embedded in the clamping groove.
9. The instrument display rack according to claim 1, characterized in that: The box body (10) comprises a first side wall and a second side wall which are arranged opposite to each other, the first side wall is provided with a first recessed portion, the second side wall is provided with a second recessed portion, and the first recessed portion and the second recessed portion are used for carrying the box body (10).
10. The instrument display rack according to claim 3, characterized in that: Along the height direction of the box body (10), the height of the grid (12) is less than or equal to the height of the needle cabin (20).
Citation Information
Patent Citations
Double-faced cloning hand mold
CN106267842A
Transportation device with damping function
CN118419387A
Universal placement tray for plug-in hybrid electric vehicle engine
CN211810756U
Safety thing storage box
KR1020120072279A