To-be-detected sample feeding device

By designing a sample feeding device to be tested including a lifting partition, the problem of low transportation efficiency caused by volume and appearance of steel components during the inspection process is solved, and more efficient space utilization and transportation efficiency are achieved.

CN222973903UActive Publication Date: 2025-06-13LINGYUAN IRON & STEEL CO LTD
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Patent Information

Application Number
CN202420787397.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-04-16
Publication Date
2025-06-13
Estimated Expiration
2034-04-16

AI Technical Summary

Technical Problem

During the inspection process, due to the large size and irregular appearance of steel components, mutual interference occupies a large space and some space is idle, which leads to low transportation efficiency.

Method used

A sample feeding device to be tested is designed, including a cube box body, an open opening on one side and at least two horizontal lifting partitions. The lifting and lowering movement of the box body is realized through the sliding rod and the driving mechanism, and the partition plate is flexibly separated by the lifting mechanism of the threaded rod and the threaded sleeve.

Benefits of technology

By flexibly separating the space, adapting to the shape and size of parts of different specifications, the device improves space utilization and reduces the need for batch transportation due to the interference of part size or appearance, thereby improving transportation efficiency.

✦ Generated by Eureka AI based on patent content.

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    Figure CN222973903U_ABST
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Abstract

The utility model discloses a to-be-detected sample feeding device which comprises a box body which is cubic, one side of the box body is provided with an open type opening, and at least two partition plates which are horizontally arranged in the box body in a lifting mode and can divide the box body into one or more spaces. According to the to-be-detected sample feeding device, parts are put into the box body through the open type opening, the interior of the box body is divided into one or more spaces through the two partition plates, the boundary dimensions of the parts are flexibly adapted, the upper space is utilized, meanwhile, the bearing stability is guaranteed, more parts are carried in a classified mode at a time, and the detection efficiency is improved. And the situation that the parts need to be transported in batches due to mutual interference of sizes or appearances, and single-time transportation space is wasted is avoided.
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Description

Technical Field

[0001] The utility model belongs to the technical field of sample transportation, and more specifically, relates to a feeding device for samples to be detected. Background Art

[0002] At present, during the detection process of steel members, they are generally transported by transfer trolleys. If the laboratory is located on the second floor or above, the transfer of steel members to be detected needs to be achieved by means of an elevator. However, due to the large volume, irregular shape, and large space occupied by mutual interference of individual steel members, some space is left idle and not utilized, resulting in a limited single transfer volume and thus low transfer efficiency of steel members.

[0003] Therefore, a feeding device that can make full use of the transportation space and improve the transportation efficiency is needed. Summary of the Utility Model

[0004] The purpose of the utility model is to provide a feeding device for samples to be detected to solve the problems existing in the prior art, such as the large volume, irregular shape, and large space occupied by mutual interference of existing steel members, resulting in some space being left idle and not utilized.

[0005] To achieve the above purpose, the utility model provides a feeding device for samples to be detected, including:

[0006] A box body, the box body is in a cube shape, and an open opening is provided on one side;

[0007] At least two partition plates, the two partition plates are arranged to be horizontally lifted and lowered in the box body, and can divide the box body into one or more spaces.

[0008] Optionally, it further includes:

[0009] A sliding rod, the sliding rod is vertically arranged, and the outer periphery of the box body is slidably connected to the sliding rod;

[0010] A driving mechanism, the driving end of the driving mechanism is connected to the outer periphery of the box body, and can drive the box body to move up and down along the sliding rod.

[0011] Optionally, the partition plate moves through a lifting mechanism, and the lifting mechanism includes:

[0012] A threaded rod, the threaded rod is vertically arranged close to the inner side wall of the box body;

[0013] A threaded sleeve, the threaded sleeve is in screw fit with the threaded rod, and the partition plate is detachably connected to the threaded sleeve.

[0014] Optionally, the lifting mechanism further includes:

[0015] A vertical rail is vertically arranged on the inner side wall of the box body close to the box body. The vertical rail vertically penetrates through the partition plate, enabling the partition plate to slide along the axial direction of the vertical rail.

[0016] Optionally, the bottom end of the threaded rod is rotatably connected to the box body through a rotating seat. The upper end of the threaded rod penetrates through the box body and is exposed outside. A driving motor for driving the threaded rod to rotate is arranged at the top end of the box body.

[0017] Optionally, it further includes an auxiliary threaded sleeve and an auxiliary screw rod, and the auxiliary screw rod is arranged in pairs with the screw rod.

[0018] Optionally, a magnetic attraction mechanism is arranged at the lower end of the partition plate.

[0019] Optionally, the magnetic attraction mechanism includes an electromagnet. A sliding groove is arranged on the bottom wall of the partition plate, and the electromagnet is slidably connected in the sliding groove and can stop at any position in the sliding groove.

[0020] Optionally, a reinforcing rib is arranged at the lower end of the partition plate, and the cross section of the reinforcing rib is triangular.

[0021] Optionally, the two partition plates are arranged overlapping up and down, and avoidance holes are arranged on the partition plates.

[0022] The present utility model provides a feeding device for samples to be detected, and its beneficial effects are as follows:

[0023] The feeding device for samples to be detected puts parts into the box body through an open opening, divides the inside of the box body into one or more spaces by two partition plates, flexibly adapts to the external dimensions of the parts, utilizes the upper space while ensuring the bearing stability, and thus can carry more parts in one classification, avoiding the need for batch transportation due to interference between the dimensions or shapes of the parts and wasting the single - transportation space.

[0024] Other features and advantages of the present utility model will be described in detail in the subsequent specific implementation part. Description of the Drawings

[0025] By describing the exemplary embodiments of the present utility model in more detail in combination with the drawings, the above - mentioned and other objects, features, and advantages of the present utility model will become more obvious. Among them, in the exemplary embodiments of the present utility model, the same reference numerals generally represent the same components.

[0026] Figure 1 Shows a schematic structural diagram of the feeding device for samples to be detected according to Embodiment 1 of the present utility model.

[0027] Figure 2 Shows a left view of the feeding device for samples to be detected according to Embodiment 1 of the present utility model.

[0028] Figure 3 Shows a right view of the sample feeding device to be detected according to Embodiment 1 of the present utility model.

[0029] Figure 4 Shows a schematic structural view of the sample feeding device to be detected according to Embodiment 2 of the present utility model.

[0030] Figure 5 Shows a side view of the sample feeding device to be detected according to Embodiment 2 of the present utility model.

[0031] Figure 6 Shows a schematic structural view of the sample feeding device to be detected according to Embodiment 3 of the present utility model.

[0032] Figure 7 Shows a top view of the sample feeding device to be detected according to Embodiment 3 of the present utility model.

[0033] Explanation of reference numerals:

[0034] 1. Box body; 2. Partition board; 3. Avoidance hole; 4. Driving motor; 5. Threaded rod; 6. Threaded sleeve; 7. Reinforcing rib; 8. Auxiliary screw rod; 9. Slide rod; 10. Vertical rail

[0035] 6.1 Driving threaded sleeve; 6.2 Avoidance threaded sleeve. Detailed implementation manners

[0036] The preferred embodiments of the present utility model will be described in more detail below. Although the preferred embodiments of the present utility model are described below, it should be understood that the present utility model can be implemented in various forms and should not be limited by the embodiments set forth herein. On the contrary, these embodiments are provided to make the present utility model more thorough and complete, and to fully convey the scope of the present utility model to those skilled in the art.

[0037] As Figure 1-7 shown, a sample feeding device to be detected includes:

[0038] A box body 1, the box body 1 is in a cube shape, and an open opening is provided on one side;

[0039] At least two partition boards 2, the two partition boards 2 are horizontally lifted and arranged in the box body 1, and can divide the box body 1 into one or more spaces.

[0040] Specifically, parts are placed into the box body 1 through the open opening, and the interior of the box body 1 is divided into one or more spaces by the two partition boards 2, which can flexibly adapt to the external dimensions of the parts, utilize the upper space while ensuring the load-bearing stability, and thus load more parts in one classification, avoiding the need for batch transportation due to interference between the dimensions or shapes of the parts and wasting the single transportation space.

[0041] Further, taking two partition plates 2 as an example, when the partition plates 2 overlap and contact the inner top wall or the inner bottom wall of the box body 1, it forms a single space;

[0042] When one partition plate 2 does not contact the inner top wall or the inner bottom wall of the box body 1, and the other partition plate 2 contacts this partition plate 2 and the inner top wall or the inner bottom wall of the box body 1, it forms two spaces;

[0043] When the partition plates 2 are horizontally spaced and do not contact the inner top wall or the inner bottom wall of the box body 1, it forms three spaces;

[0044] Set the number of spaces and the height of each space as needed to adapt to the use of different - sized parts alone or in stacks, accommodate parts of different sizes and shapes, and improve the utilization rate of space.

[0045] In this embodiment, it further includes:

[0046] A sliding rod 9, the sliding rod 9 is vertically arranged, and the outer periphery of the box body 1 is slidably connected to the sliding rod 9;

[0047] A driving mechanism, the driving end of the driving mechanism is connected to the outer periphery of the box body 1, and can drive the box body 1 to move up and down along the sliding rod 9.

[0048] Specifically, the sliding rod 9 is vertically arranged to connect different floors, and the box body 1 is driven by the driving mechanism to move up and down along the sliding rod 9 to realize the transportation of parts.

[0049] In this embodiment, the partition plate 2 moves through a lifting mechanism, and the lifting mechanism includes:

[0050] A threaded rod 5, the threaded rod 5 is vertically arranged close to the inner side wall of the box body 1;

[0051] A threaded sleeve 6, the threaded sleeve 6 is in screw - fit with the threaded rod 5, and the partition plate 2 is detachably connected to the threaded sleeve 6.

[0052] Specifically, the partition plate 2 is driven to move in the box body 1 through a screw - nut structure. The detachable connection between the partition plate 2 and the threaded sleeve 6 facilitates the replacement of different partition plates 2 for use, and is convenient for maintenance and selection of partition plates 2 with suitable types, specifications or load - bearing capacities. Further, the partition plate 2 includes a partition plate 2 provided with a magnetic attraction and a partition plate 2 provided with a limit seat.

[0053] In this embodiment, the lifting mechanism further includes:

[0054] A vertical rail, the vertical rail is vertically arranged close to the inner side wall of the box body 1, and the vertical rail vertically penetrates through the partition plate 2, enabling the partition plate 2 to slide along the axial direction of the vertical rail.

[0055] Specifically, the vertical rail is used for guiding and limiting to ensure the stable movement of the partition plate 2.

[0056] In this embodiment, the bottom end of the threaded rod 5 is rotatably connected to the box body 1 through a rotating seat. The upper end of the threaded rod 5 passes through the box body 1 and is exposed. A driving motor 4 for driving the threaded rod 5 to rotate is provided at the top end of the box body 1.

[0057] Specifically, by driving the threaded rod 5 to rotate through the driving motor 4, a controller can be provided on the side wall of the box body 1 to control the forward and reverse rotation of the driving motor 4, thereby controlling the lifting movement of the partition 2.

[0058] In this embodiment, an auxiliary threaded sleeve 6 and an auxiliary screw rod 8 are further included. The auxiliary screw rod 8 is arranged in pairs with the screw rod.

[0059] Specifically, the auxiliary screw rod 8 cooperates with the threaded rod 5 to lift and lower the partition 2 synchronously, so that both ends of the partition 2 are stressed simultaneously during the lifting and lowering process, and the movement is more stable.

[0060] In this embodiment, a magnetic attraction mechanism is provided at the lower end of the partition 2.

[0061] Specifically, the parts are adsorbed and fixed through the magnetic attraction mechanism to prevent the parts from shaking and scattering during transportation.

[0062] In this embodiment, the magnetic attraction mechanism includes an electromagnet. A chute is provided on the bottom wall of the partition 2, and the electromagnet is slidably connected in the chute and can stop at any position in the chute.

[0063] Specifically, the position of the electromagnet on the partition 2 is adjusted to adapt to the use of parts with different shapes. At the same time, they can be concentrated with each other to enhance the adsorption force at key points and ensure the stability of part transportation.

[0064] In this embodiment, a reinforcing rib 7 is provided at the lower end of the partition 2, and the cross section of the reinforcing rib 7 is triangular.

[0065] Specifically, the supporting strength of the partition 2 is improved through the reinforcing rib 7.

[0066] In this embodiment, two partitions 2 are arranged overlapping up and down, and a avoiding hole 3 is provided on the partition 2.

[0067] Specifically, the partitions 2 are stacked, and the lifting mechanism is avoided through the avoiding hole 3.

[0068] Embodiment 1

[0069] Two sliding rods 9 are arranged vertically at intervals, connecting the first floor and the second floor. Both sides of the box body 1 are slidably connected to the two sliding rods 9 respectively. The driving mechanism provided on the second floor is a winch, which pulls the box body 1 to move up and down along the sliding rods 9;

[0070] Two partitions 2 are arranged horizontally and liftably in the box body 1. The two partitions 2 are the first partition 2 and the second partition 2 respectively. The first partition 2 is located above the second partition 2. Reinforcing ribs 7 are respectively provided at the lower ends of the first partition 2 and the second partition 2;

[0071] Four vertical rails are arranged at the four corners inside the box body 1 in cooperation with the box body 1, and the four corners of the two partition plates 2 are respectively slidably connected to the four vertical rails;

[0072] Two threaded rods 5 are symmetrically arranged at both ends of the box body 1 and are respectively connected to the two partition plates 2 through threaded sleeves 6. Moreover, avoidance holes 3 are arranged at the positions of the threaded sleeves 6 corresponding to each other on the two partition plates 2, and the inner diameter of the avoidance holes 3 is 1.2 - 1.5 times the outer diameter of the threaded rods 5;

[0073] Two drive motors 4 are arranged at the top of the box body 1 and directly or through a reversing gear set drive the two threaded rods 5 to rotate.

[0074] Embodiment 2

[0075] Two slide rods 9 are vertically arranged at intervals, connecting the first layer and the second layer. The two sides of the box body 1 are respectively slidably connected to the two slide rods 9. The driving mechanism arranged on the second layer is a winch, which pulls the box body 1 to move up and down along the slide rods 9;

[0076] Two partition plates 2 are arranged horizontally and vertically inside the box body 1. The two partition plates 2 are respectively a first partition plate 2 and a second partition plate 2. The first partition plate 2 is located above the second partition plate 2, and reinforcing ribs 7 are respectively arranged at the lower ends of the first partition plate 2 and the second partition plate 2;

[0077] Four vertical rails are arranged at the four corners inside the box body 1 in cooperation with the box body 1, and the four corners of the two partition plates 2 are respectively slidably connected to the four vertical rails;

[0078] Two threaded rods 5 are symmetrically arranged at both ends of the box body 1 and are located between the two vertical rails on the same side;

[0079] Two groups of threaded sleeves 6. Each group of threaded sleeves 6 includes a driving threaded sleeve 6.1 and an avoidance threaded sleeve 6.2 respectively arranged at both ends of the box body 1;

[0080] The driving threaded sleeve 6.1 is strip-shaped, is threadedly connected to the threaded rod 5 in the middle, and is respectively slidably connected to the two vertical rails on the same side at both ends;

[0081] The avoidance threaded sleeve 6.2 is strip-shaped, is respectively slidably connected to the two vertical rails on the same side at both ends, and an avoidance hole 3 for avoiding the threaded rod 5 is arranged in the middle;

[0082] A step is arranged on the adjacent side of the avoidance threaded sleeve 6.2 and the driving threaded sleeve 6.1, and the partition plate 2 is detachably connected to the step;

[0083] Two drive motors 4 are arranged at the top of the box body 1 and directly or through a reversing gear set drive the two threaded rods 5 to rotate.

[0084] Embodiment 3

[0085] Two sliding rods 9 are vertically arranged at intervals, connecting the first floor and the second floor. Both sides of the box body 1 are slidably connected to the two sliding rods 9 respectively. The driving mechanism arranged on the second floor is a winch, which pulls the box body 1 to move up and down along the sliding rod 9;

[0086] Two partitions 2 are arranged horizontally and liftable in the box body 1. The two partitions 2 are the first partition 2 and the second partition 2 respectively. The first partition 2 is located above the second partition 2. Chutes are arranged at the lower ends of the first partition 2 and the second partition 2 respectively, and electromagnets are slidably connected in the chutes;

[0087] Four vertical rails are arranged at the four corners in the box body 1 in cooperation with the box body 1. The four corners of the two partitions 2 are slidably connected to the four vertical rails respectively;

[0088] Two groups of lead screws are arranged in the box body 1 at intervals before and after. Each group of lead screws includes threaded rods 5 and auxiliary screw rods 8 arranged on both sides of the box body 1 respectively;

[0089] Two driving motors 4 are arranged at the top of the box body 1. The threaded rods 5 and the auxiliary screw rods 8 in the same group are synchronously driven by the driving motor 4 to lift the partition 2 to move.

[0090] The embodiments of the present invention have been described above. The above description is exemplary and not exhaustive, and is not limited to the disclosed embodiments. Many modifications and changes are obvious to those of ordinary skill in the art in the technical field without departing from the scope and spirit of the described embodiments.

Claims

1. A device for feeding samples to be tested, characterized in that: include: A box body, the box body is in a cubic shape and has an open opening on one side; At least two partitions, the two partitions are horizontally lifted and arranged in the box body, and can separate the box body into one or more spaces; Also includes: A slide bar, the slide bar is vertically arranged, and the outer periphery of the box body is slidably connected to the slide bar; A driving mechanism, wherein a driving end of the driving mechanism is connected to the outer periphery of the box body and can drive the box body to move up and down along the slide rod; The partition moves via a lifting mechanism, and the lifting mechanism comprises: A threaded rod, the threaded rod being vertically arranged close to the inner side wall of the box body; A threaded sleeve, the threaded sleeve matches the threaded rod, and the partition plate is detachably connected to the threaded sleeve; The lifting mechanism also includes: A vertical rail, the vertical rail is vertically arranged close to the inner side wall of the box body, and the vertical rail vertically passes through the partition so that the partition can slide along the axial direction of the vertical rail; The bottom end of the threaded rod is rotatably connected to the box body through a rotating seat, the upper end of the threaded rod is exposed through the box body, and the top end of the box body is provided with a driving motor for driving the threaded rod to rotate; The two partitions are overlapped up and down, and avoidance holes are arranged on the partitions.

2. The sample feeding device to be tested according to claim 1, characterized in that: It also includes an auxiliary threaded sleeve and an auxiliary spiral rod, wherein the auxiliary spiral rod and the spiral rod are arranged in pairs.

3. The sample feeding device to be tested according to claim 1, characterized in that: A magnetic attraction mechanism is arranged at the lower end of the partition.

4. The sample feeding device to be tested according to claim 3, characterized in that: The magnetic attraction mechanism includes an electromagnet, and a slide groove is provided on the bottom wall of the partition. The electromagnet is slidably connected to the slide groove and can stop at any position in the slide groove.

5. The sample feeding device to be tested according to claim 1, characterized in that: A reinforcing rib is arranged at the lower end of the partition, and the cross section of the reinforcing rib is triangular.