Material temporary storage rack
By designing a material storage rack with vertical side plates and parallel support plates, the problem of inconvenient operation of test tube racks was solved, achieving convenient storage and retrieval of test tube racks and a stable support structure, reducing the risk of equipment collisions.
Patent Information
- Application Number
- CN202422611726.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-29
- Publication Date
- 2025-11-25
- Estimated Expiration
- 2034-10-29
AI Technical Summary
The existing material storage racks are difficult to retrieve and place test tube racks, making operation inconvenient.
Design a material storage rack comprising a base plate, side plates, and a support plate. The side plates are perpendicular to the base plate, forming a storage space. The support plate is parallel to the base plate, dividing it into multiple sub-storage spaces, which are connected by connecting channels. Lateral openings facilitate the insertion and removal of the test tube rack. The support plate is provided with connecting channels to reduce the risk of collision between the handling equipment and the support plate.
It improves the ease of placing and retrieving the test tube rack, reduces the possibility of collisions between the handling equipment and the support plate, and enhances structural stability and support reliability.
Smart Images

Figure CN223587203U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to solid sample test field especially relates to a material temporary storage rack. BACKGROUND
[0002] In solid sample test field, need through test tube to contain the sample or reagent weighed, and test tube is contained through test tube support, in order to facilitate the placement of material to need to provide a material temporary storage rack to place test tube support or through test tube support to the material is temporarily stored. Related material temporary storage rack, the difficulty of taking out and placing test tube support is greater. SUMMARY
[0003] The utility model provides a material temporary storage rack for solving how to improve the technical problem of the convenience of taking out and placing test tube support.
[0004] The utility model discloses a material temporary storage rack, which comprises a bottom plate, at least two opposite side plates fixed to the bottom plate, and the thickness direction of each side plate is perpendicular to the thickness direction of the bottom plate, the side plate and the bottom plate form an accommodation space, the accommodation space has at least one lateral opening, the depth direction of the lateral opening is not parallel to the thickness direction of the bottom plate, a support plate is fixed to at least one side plate and located in the accommodation space, the thickness direction of the support plate is parallel to the thickness direction of the bottom plate, so as to divide the accommodation space into a plurality of sub-accommodation spaces, each sub-accommodation space is communicated with at least one lateral opening, wherein the support plate has a communication channel to communicate each adjacent sub-accommodation space, and the communication channel is communicated with the lateral opening.
[0005] In some embodiments, in the depth direction of the communication channel, the outer contour of the projection of the outer surface of the support plate is symmetrical relative to the geometric center point of the support plate.
[0006] In some embodiments, the support plate comprises a plurality of sub-support plates, each sub-support plate is fixed with the side plate, and each sub-support plate is spaced apart in parallel to the thickness direction of the side plate to form the communication channel.
[0007] In some embodiments, at least two sub-support plates are respectively fixed to two opposite side plates.
[0008] In some embodiments, the number of sub-support plates is the same as the number of side plates, and each sub-support plate is respectively fixed to a different side plate.
[0009] In some embodiments, the sub-supporting plate comprises: a supporting part; a connecting part extending in a direction perpendicular to the thickness of the supporting part; wherein the connecting part is fixedly connected with the side plate, and the supporting part extends out of the side plate by a size greater than that of the connecting part.
[0010] In some embodiments, the supporting plate has a through hole forming the communication channel.
[0011] In some embodiments, the material temporary storage rack comprises at least three oppositely arranged side plates, and each of the oppositely arranged side plates is arranged in a spaced manner in a direction perpendicular to the thickness of the bottom plate to form a plurality of containing spaces together with the bottom plate.
[0012] In some embodiments, each of the sub-containing spaces is provided with a presence sensor.
[0013] The utility model embodiment provides a material temporary storage rack, the material temporary storage rack is used for placing test tube rack, or stores material through test tube rack, the material temporary storage rack includes bottom plate, at least two oppositely arranged and fixed side plates of bottom plate, the thickness direction of each side plate is perpendicular to the thickness direction of bottom plate, and the side plate and bottom plate include forming containing space, and the containing space has at least one lateral opening, and the depth direction of lateral opening is not parallel to the thickness direction of bottom plate, so that test tube rack can be put in or taken out from the side, improve the convenience of test tube rack put in or take out, simultaneously, the material temporary storage rack still includes supporting plate, and the supporting plate is fixed to at least one side plate and is located in containing space, and the thickness direction of supporting plate is parallel to the thickness direction of bottom plate, to separate containing space and form a plurality of sub-containing spaces, each sub-containing space is communicated with at least one lateral opening, each sub-containing space can store test tube rack, and test tube rack can be put in or taken out from the side, wherein the supporting plate has communication channel, to make each adjacent sub-containing space communicate, and the communication channel is communicated with lateral opening, by setting communication channel in supporting plate, can make handling equipment be located below test tube rack, also can make handling equipment be located above test tube rack, and under the condition that handling equipment is located above test tube rack, also can reduce the possibility that handling equipment and supporting plate collide, to improve the convenience of test tube rack put in or take out material temporary storage rack. BRIEF DESCRIPTION OF DRAWINGS
[0014] Figure 1 The structure diagram of the first material temporary storage rack provided by the utility model embodiment is shown;
[0015] Figure 2 The relative position relation diagram of the first sub-bearing plate and the side plate in the material temporary storage rack provided by the utility model embodiment is shown;
[0016] Figure 3 The relative position relation schematic view of the second sub-bearing plate and the side plate in the material temporary storage rack is provided for the embodiments of the present application.
[0017] Figure 4 The structure schematic view of the sub-bearing plate in the material temporary storage rack is provided for the embodiments of the present application.
[0018] Figure 5 The structure schematic view of the second material temporary storage rack is provided for the embodiments of the present application.
[0019] Figure 6 The structure schematic view of the third material temporary storage rack is provided for the embodiments of the present application.
[0020] Mark explanation
[0021] 10, material temporary storage rack; 11, bottom plate; 12, side plate; 13, support plate; 131, communication passage; 132, sub-support plate; 133, support part; 134, connecting part; 14, containing space; 141, sub-containing space; 142, lateral opening; 20, test tube rack; Specific implementation
[0022] In order to make the purpose, technical scheme and advantages of the present application more clear, the present application will be described in detail below with the help of the drawings and specific embodiments.
[0023] In the specific embodiments, each specific technical feature in each embodiment can be combined in various ways without contradiction, for example, different specific technical features can form different embodiments through combination, in order to avoid unnecessary repetition, various possible combination modes of each specific technical feature in the present application will not be described again.
[0024] Here, it also needs to be explained that, in order to avoid the present application being obscured by unnecessary details, only the structures and / or processing steps closely related to the scheme of the present application are shown in the drawings, and other details not closely related to the present application are omitted.
[0025] Additionally, it should be noted that the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such a process, method, article, or apparatus. In the following description, the terms "first," "second," etc., are used merely to distinguish different objects and do not indicate any similarity or connection between them. It should be understood that the directional descriptions such as "above," "below," "inside," and "outside" refer to the orientation under normal use conditions.
[0026] In the following specific embodiments, the material storage rack can be used to store test tube racks. The test tube rack can be a test tube rack containing test tubes or an empty test tube rack. The test tubes contained in the test tube rack can be empty test tubes, test tubes containing solid samples, or test tubes containing reagents. That is, the material storage rack can be used to place test tube racks or to temporarily store test tubes, solid samples, or reagents. For ease of explanation, the following example uses the material storage rack to store test tube racks, and the test tube rack contains test tubes containing materials, to illustrate the structure of the material storage rack. At the same time, the following specific embodiments provide a test tube rack. Using the material storage rack provided in this application to place test tube racks can further improve the convenience of placing and retrieving test tube racks. The structure of the material storage rack and test tube rack will be further illustrated below with reference to the accompanying drawings.
[0027] In some embodiments, such as Figure 1 As shown, the material storage rack 10 includes a base plate 11, side plates 12, and a support plate 13. The base plate 11 provides installation space for the other parts of the material storage rack 10.
[0028] At least two oppositely arranged side plates 12 are fixed to the side plate 11, and the thickness direction of the side plate 12 is perpendicular to the thickness direction of the bottom plate 11. The oppositely arranged two side plates 11 can be understood as the thickness direction of the two side plates 11 is not perpendicular, and the projection of one side plate 11 on the outer surface of the other side plate 11 in the thickness direction of the one side plate 11 at least partially coincides with the outer surface of the other side plate 11, that is, the two side plates 11 are not arranged perpendicular to each other, nor completely staggered, so that the at least two oppositely arranged side plates 11 and the bottom plate 12 can surround the accommodation space 14, and the accommodation space 14 can accommodate the empty test tube rack 20, and the test tube rack 20 is used to accommodate the test tube containing materials, that is, the temporary storage of the materials is realized through the test tube rack 20. The accommodation space 14 has at least one lateral opening 142, and the depth direction of the lateral opening 142 is not parallel to the thickness direction of the bottom plate 11, which can be understood as the side plate 12 does not completely surround the bottom plate 11 in the direction perpendicular to the thickness direction of the bottom plate 11, so that the lateral opening 142 is formed between the side plates 12, and the materials in the accommodation space 14 can be put into or taken out of the accommodation space 14 through the lateral opening 142. Compared with taking out the test tube rack from the top opening, the movement path of the test tube rack is shorter, so that the test tube rack can be put into or taken out of the accommodation space 14 more quickly and conveniently.
[0029] The support plate 13 is fixed to at least one side plate 12 and located in the accommodation space 14, which can be understood as the support plate 13 is fixed to the surface of the side plate 12 for surrounding the accommodation space 14, and the thickness direction of the support plate 13 is parallel to the thickness direction of the bottom plate 11, so as to divide the accommodation space 14 into a plurality of sub-accommodation spaces 142, so as to accommodate more test tube racks through the plurality of sub-accommodation spaces 142. For example, each sub-accommodation space 142 is used to accommodate one test tube rack, and the test tube rack in the sub-accommodation space 142 adjacent to the inner surface of the bottom plate 11 is supported by the bottom plate 11, and the test tube rack in the sub-accommodation space 142 not adjacent to the inner surface of the bottom plate 11 is supported by the support plate 13. Moreover, each sub-accommodation space 142 is in communication with the lateral opening 142, so that the test tube rack can be put into or taken out of each sub-accommodation space 142 through the lateral opening 142. While increasing the number of accommodated test tube racks, the convenience of taking out and putting in the test tube rack is further improved.
[0030] The support plate 13 has a communication channel 131 to communicate each adjacent sub- containing space 142, and each communication channel 131 communicates with the lateral opening 142. In the thickness direction of the bottom plate 11, if there is no other sub-containing space between two sub-containing spaces 142, the two sub-containing spaces 142 can be considered as adjacent sub-containing spaces. It should be noted that in the process of placing the test tube rack into the sub-containing space 142 or taking out the test tube rack from the sub-containing space 142, the test tube rack needs to be lifted and carried by a carrying device. According to the use requirement, the carrying device can be located above the test tube rack or below the test tube rack. In order to facilitate the description, the carrying device located above the test tube rack is referred to as a lifting structure. It should be noted that in order to save the internal space of the material temporary storage rack 10, so that the material temporary storage rack 10 can accommodate more test tube racks, the height dimension of the sub-containing space 142 is slightly larger than the height dimension of the test tube rack, so that the support plate 13 and the top surface of the test tube rack are difficult to have a larger space. If the test tube rack is carried by the lifting structure, the lifting structure can collide with the support plate 13.
[0031] The support plate 13 in the material temporary storage rack 10 provided by the embodiment of the present application is provided with a communication channel 131 communicating with the lateral opening 142. If the test tube rack is carried by the lifting structure, the lifting structure can enter the communication channel 131 from the lateral opening 142, so as to reduce the possibility of collision between the lifting structure and the support plate 13 in the process of placing the test tube rack into the sub-containing space 142 or taking out the test tube rack from the sub-containing space 142. Moreover, since the adjacent sub-containing spaces 141 are communicated through the communication channel 131, in the process of placing or taking out the test tube rack from the sub-containing space 141 located below by the lifting structure, the part of the bottom space of the sub-containing space 141 located above can also accommodate the lifting structure. That is, by providing the communication channel 131 in the support plate 13, the carrying device can be located below the test tube rack, or the carrying device can be located above the test tube rack. In the case that the carrying device is located above the test tube rack, the possibility of collision between the carrying device and the support plate 13 can also be reduced, so as to improve the convenience of placing or taking out the test tube rack from the material temporary storage rack.
[0032] The utility model discloses an embodiment provides a kind of material temporary storage rack, the material temporary storage rack is used to place test tube rack, or store material by test tube rack, the material temporary storage rack includes bottom plate, at least two opposite settings and fixed to the side plate of bottom plate, the thickness direction of each side plate is perpendicular to the thickness direction of bottom plate, side plate and bottom plate include formation containing space, containing space at least has one lateral opening, the depth direction of this lateral opening is not parallel to the thickness direction of bottom plate, to enable test tube rack can be put in or taken out by side, improve the convenience of test tube rack put in or take out;Meanwhile, the material temporary storage rack further includes support plate, support plate is fixed to at least one side plate and is located in containing space, the thickness direction of support plate is parallel to the thickness direction of bottom plate, to separate and form multiple sub-containment spaces with containing space, each sub-containment space is at least communicated with one lateral opening, each sub-containment space can store test tube rack, and test tube rack can be put in or taken out by side, wherein, support plate has communication channel, to make each adjacent sub-containment space communication, and the communication channel is communicated with lateral opening, by being provided with communication channel in support plate, can make handling equipment be located below test tube rack, also can make handling equipment be located above test tube rack, and in the case where handling equipment is located above test tube rack, the possibility that the handling equipment and support plate between collision can also be reduced, to improve the convenience of test tube rack put in or take out material temporary storage rack.
[0033] In some embodiments, as shown in Figure 1 In the depth direction of the communication channel 131, the outer contour of the projection of the outer surface of the support plate 13 is symmetrical with respect to the geometric center point of the support plate 13, i.e., the communication channel 131 is a central symmetric figure with respect to the geometric center point of the support plate 13, so that the gravity of the support plate 133 is uniformly applied to the side plate 12, reducing the additional torque applied to the side plate 12 due to the offset of the support plate 13, improving the structural stability of the material temporary storage rack 10. At the same time, in order to reduce the additional torque applied to the support plate 13 due to the offset of the test tube rack during use, the geometric center point of the test tube rack and the geometric center point of the support plate 13 need to be located on the same vertically extending straight line.
[0034] In some embodiments, as shown in Figure 2 The support plate 13 includes a plurality of sub-support plates 132, each of which is fixed to the side plate 12 and is spaced apart in the thickness direction parallel to the side plate 12 to form the communication channel 131, i.e., the communication channel 131 is formed by a plurality of spaced apart support plates 132. According to the position, shape and size of the communication channel 131 required, different shapes, sizes and mounting positions of the support plates 132 can be adaptively selected, so that the design of the communication channel 131 is more flexible.
[0035] In some embodiments, as shown in Figure 2As shown, the at least two sub-support plates 132 are respectively fixed to the two oppositely arranged side plates 12, so that the at least two sub-support plates 132 are respectively located on both sides of the accommodation space 14 in the thickness direction parallel to the side plates 12, that is, while the sub-support plates 132 divide the accommodation space 14 to form a plurality of sub-accommodation spaces 142, the at least two sub-support plates 132 can support the test tube rack on the opposite two sides in the thickness direction parallel to the side plates 12, thereby improving the stability of the support of the test tube rack.
[0036] In some embodiments, as shown in Figure 3 As shown, the number of sub-support plates 132 is the same as the number of side plates 12, and each sub-support plate 132 is fixed to a different side plate 12. It can be understood that the number of side plates 12 is fully utilized to increase the number of sub-support plates 132 that can be installed, so that the test tube rack is more reliably supported by more sub-support plates.
[0037] In some embodiments, as shown in Figure 4 As shown, the sub-support plate 132 includes a support portion 133 and a connecting portion 134. The support portion 133 is used to support the test tube rack, and the connecting portion 134 extends in a thickness direction perpendicular to the support portion 133 and is used to be fixedly connected with the side plate 12. It can be understood that while the support portion 133 provides sufficient space for the placement of the test tube rack, the connecting portion 134 makes the sub-support plate 132 have a larger connecting space, and more connecting structures can be arranged between the side plate 12 and the connecting portion 133 by using the larger connecting space, so that the connection between the sub-support plate 132 and the side plate 12 is more reliable. Optionally, the fixed portion 133 and the connecting portion 134 are directly fixedly connected with the side plate 12, thereby further improving the connection reliability of the sub-support plate 132 and the side plate 12. At the same time, in the thickness direction parallel to the side plate 12, the size of the support portion 133 extending out of the side plate 12 is greater than the size of the connecting portion 134 extending out of the side plate 12. It can be understood that by making the size of the support portion 133 extending out of the side plate 12 larger, a larger space is provided for the placement of the test tube rack, and by making the size of the connecting portion 134 extending out of the side plate 12 smaller, a larger size of the communication channel 131 can be formed between the sub-support plates 132, thereby further reducing the possibility of collision between the lifting structure and the support plate 13.
[0038] In some embodiments, as shown in Figure 5As shown, the support plate 13 has a through hole 135 forming a communication channel 131. It can be understood that the plate structure of the whole support plate 13 is machined to form the through hole 135 to form the communication channel 131 of the support plate 13. Since the support plate 13 is a whole structure, the support plate 13 has greater structural strength, thereby being able to more reliably support the test tube rack. At the same time, since the through hole 135 is integrally machined, it has greater dimensional accuracy and geometric accuracy. In the case of automatic handling of the test tube rack by the handling equipment in an automated production or testing system, the control of the handling equipment can be more accurately controlled based on the communication channel 131 with greater dimensional accuracy and geometric accuracy, thereby reducing the possibility of collision between the handling equipment and the support plate 13 due to manufacturing errors of the communication channel 131.
[0039] In some embodiments, as Figure 6 As shown, the material temporary storage rack 10 includes at least three oppositely arranged side plates 12. In the thickness direction perpendicular to the bottom plate 11, each oppositely arranged side plate 12 is spaced apart to enclose the bottom plate 11 to form a plurality of accommodation spaces 14. It can be understood that by oppositely and spacedly arranging the at least three side plates 12, the whole space in the material temporary storage rack 10 is divided to form a plurality of accommodation spaces 14. At the same time, by installing the support plate 13 on each side plate 12, each accommodation space 14 is again divided to form a plurality of sub-accommodation spaces 141, thereby enabling the material temporary storage rack 10 to accommodate more test tube racks.
[0040] In some embodiments, Figure 1 Each sub-accommodation space 141 in the material temporary storage rack 10 has an in-place sensor. The in-place sensor 15 can be fixed to the side plate 12 or the support plate 13. In the case of automatic transfer of the test tube rack and / or the material in the test tube rack by the handling equipment in an automated system, the in-place sensor 15 can obtain whether the test tube rack is stored in each sub-accommodation space 141, thereby avoiding placing the test tube rack in the sub-accommodation space 141 that has already stored the test tube rack when the test tube rack needs to be placed in the sub-accommodation space 141, thereby avoiding collision between the test tube racks. At the same time, when the test tube rack is placed in the corresponding sub-accommodation space 141, the system records that the test tube rack is stored in the corresponding sub-accommodation space 141. If the test tube rack in the sub-accommodation space 141 is removed or moved to a non-target sub-accommodation space 141 in a non-target scenario, the system can also sense and output an alarm signal through the in-place sensor 15.
[0041] Optionally, the bottom of the material temporary storage rack also has a buffer rack. The buffer rack is placed on the support surface and fixedly connected with the bottom plate. At the same time, the buffer rack can also absorb the vibration applied to the material temporary storage rack through its elastic structure or damping structure.
[0042] The above embodiments are only used to illustrate the technical solutions of the present application and are not limiting. Although the present application has been described in detail with reference to the preferred embodiments, those skilled in the art should understand that the technical solutions of the present application can be modified or equivalently replaced without departing from the spirit and scope of the technical solutions of the present application.
Claims
1. A material staging rack, characterized by, The material temporary storage rack comprises: a bottom plate; side plates, at least two of which are oppositely arranged on the bottom plate, and the thickness direction of each side plate is perpendicular to the thickness direction of the bottom plate, the side plates and the bottom plate form an accommodating space, the accommodating space has at least one lateral opening, and the depth direction of the lateral opening is not parallel to the thickness direction of the bottom plate; a support plate fixed to at least one side plate and located in the accommodating space; the thickness direction of the support plate is parallel to the thickness direction of the bottom plate, so as to divide the accommodating space into a plurality of sub-accommodating spaces, and each sub-accommodating space is in communication with at least one lateral opening; wherein the support plate has a communication channel to communicate each adjacent sub-accommodating space, and the communication channel is in communication with the lateral opening.
2. The material staging shelf of claim 1, wherein, In the depth direction of the communication channel, the outer contour of the projection of the outer surface of the support plate is symmetrical relative to the geometric center point of the support plate.
3. Magazine according to claim 1 or 2, characterized in that The support plate comprises a plurality of sub-support plates, each of which is fixed to the side plate, and each of which is arranged in parallel to the thickness direction of the side plate to form the communication channel.
4. The material staging shelf of claim 3, wherein, At least two sub-support plates are respectively fixed to two oppositely arranged side plates.
5. The material staging shelf of claim 3, wherein, The number of sub-support plates is the same as the number of side plates, and each sub-support plate is respectively fixed to a different side plate.
6. The material staging shelf of claim 3, wherein, The sub-support plate comprises: a support part; a connecting part extending in a direction perpendicular to the thickness direction of the support part; wherein the connecting part is fixedly connected with the side plate, and in the direction parallel to the thickness direction of the side plate, the size of the support part extending out of the side plate is greater than the size of the connecting part extending out of the side plate.
7. A stocker according to claim 1 or 2, characterized in that, The support plate has a through hole, and the through hole forms the communication channel.
8. The material staging shelf of claim 3, wherein, The material temporary storage rack comprises at least three oppositely arranged side plates, and each of the oppositely arranged side plates is arranged in parallel to the thickness direction of the bottom plate to form a plurality of accommodating spaces with the bottom plate.
9. The stocker according to claim 1, wherein Each sub-accommodating space has a position sensor.