Green tire storage device

By designing a fetal embryo storage device including an inclined support frame and a movable support strip, the fetal embryo flattening, damaged and difficult operation in the existing fetal embryo storage vehicle is solved, and the effect of automatically adapting to different types of fetal embryos, saving storage space and reducing maintenance costs is achieved.

CN222934353UActive Publication Date: 2025-06-03ZHAOQING JUNHONG CO LTD
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Patent Information

Application Number
CN202421943674.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-12
Publication Date
2025-06-03
Estimated Expiration
2034-08-12

AI Technical Summary

Technical Problem

During the transportation and storage process of existing mountain tire embryo storage vehicles, there are problems such as flattening, damaged, difficult operation, non-universal support plates, difficult maintenance and high cost.

Method used

A fetal embryo storage device is designed, including a support frame and a receiving portion parallel to the ground. The receiving portion is composed of a first support strip, a second support strip and a support pad. The two ends of the support pad are connected to the second upper support strip and the second lower support strip to form a concave position, the first support strip is arranged inclined, and the second support strip can be movable to adapt to different types of embryos.

Benefits of technology

The device can automatically adapt to different types of fetal embryos, reduce deformation and damage, reduce operation difficulty, save storage space, reduce maintenance costs, and improve the durability of fetal embryos.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model particularly relates to a tire blank storage device which comprises a supporting frame parallel to the ground, and a containing part used for vertically storing tire blanks is arranged in the supporting frame. The containing part comprises first supporting strips arranged on the two sides of the supporting frame, and the first supporting strips are obliquely arranged relative to the supporting frame. The second supporting strips comprise second upper supporting strips and second lower supporting strips, the second upper supporting strips are arranged on the first supporting strips in a crossed mode, the second lower supporting strips are arranged on the first supporting strips in a crossed mode, and the second upper supporting strips and the second lower supporting strips are arranged at intervals to form mounting openings of the containing part; the two ends of the supporting pad are connected with the second upper supporting strip and the second lower supporting strip respectively, a concave position used for containing the tire blank is defined by the supporting pad, and the second lower supporting strip and / or the second upper supporting strip can move along the first supporting strip so that the concave position can be attached to the outer contour of the tire blank after the tire blank is placed in the concave position. And deformation and damage are reduced, the labor intensity of operators is reduced, the structure is simple, operation is convenient, cost is low, and the use condition is good.
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Description

Technical Field

[0001] The utility model belongs to the technical field of embryo storage, and particularly relates to an embryo storage device. Background Art

[0002] In the process of tire forming, the transportation and storage of the formed embryo is an important link. Since mountain tires are larger in size and heavier in weight than ordinary tires, the embryos of mountain tires need to be transported multiple times during the production process. At present, the transportation boxes for storing mountain tire embryos generally use existing mountain tire embryo storage vehicles, but such storage vehicles have the following deficiencies: 1. The mountain tire embryos are placed flat on the mountain tire embryo storage vehicle. During transportation and storage, due to the influence of gravity, the two sides will become flat, affecting the subsequent vulcanization process and the appearance of the tire finished product; 2. Whether the lower part of the embryo contacts the support plate (the support plate is in a truncated form) or not will form a cliff-like situation. Affected by gravity, the rubber compound has cold flowability and viscosity and will run to the lower place, and will run to the place where it does not contact the support plate, and the embryo will be damaged and deformed; 3. The place where it contacts the support plate will stick to the support plate and the embryo needs to be manually turned over, resulting in high labor intensity of workers and low work efficiency; 4. There are limitations. The size of the support plate is fixed and cannot be universal, and it is easy to be damaged, difficult to maintain and has a high cost. Therefore, how to design a device for a mountain tire embryo storage vehicle is an urgent problem to be solved. Content of the Utility Model

[0003] The purpose of the utility model is to provide an embryo storage device, which improves the difficulty of embryo storage, reduces deformation and damage, reduces the labor intensity of operators, has a simple structure, is convenient to operate, has a low cost, and has a good usage situation, so as to solve the problems existing in the above-mentioned prior art.

[0004] Based on this, the utility model provides an embryo storage device, which includes a support frame parallel to the ground, and an accommodating part for vertically storing embryos is arranged in the support frame;

[0005] The accommodating part includes: a first support bar, the first support bar is arranged on both sides of the support frame, and the first support bar is inclined relative to the support frame; a plurality of second support bars, the second support bars include a second upper support bar and a second lower support bar, the second upper support bar is cross-arranged on the first support bar, the second lower support bar is cross-arranged on the first support bar, and the second upper support bar and the second lower support bar are arranged at intervals to form an installation opening of the accommodating part; a support pad, both ends of the support pad are respectively connected to the second upper support bar and the second lower support bar, and enclose a concave position for placing the embryo, and the second lower support bar and / or the second upper support bar can move along the first support bar, so that the concave position fits the outer contour of the embryo after the embryo is placed.

[0006] An embryo storage device as described above, wherein the vertical height of the second upper support bar is greater than the vertical height of the second lower support bar.

[0007] An embryo storage device as described above, wherein the second upper support bar is cross - arranged on the first support bar by welding, and the second lower support bar is cross - hung on the first support bar in a detachable form.

[0008] An embryo storage device as described above, wherein the support frame is provided with a plurality of parallel brackets at uniform intervals, and the first support bar is welded to the brackets.

[0009] An embryo storage device as described above, wherein at least two accommodating parts are evenly arranged along the brackets and extend upward.

[0010] An embryo storage device as described above, wherein the bottom of the support frame is connected with casters for sliding.

[0011] An embryo storage device as described above, wherein the angle between the first support bar and the support frame is inclined at an angle of 30 degrees - 70 degrees.

[0012] An embryo storage device as described above, wherein the support pad is canvas.

[0013] An embryo storage device as described above, wherein the length of the first support bar is less than that of the second support bar.

[0014] An embryo storage device as described above, wherein the first support bar and the second support bar are round steel bars.

[0015] Implementing the embodiments of the present utility model has the following beneficial effects:

[0016] 1. The two ends of the support pad of the present utility model are respectively connected to the second upper support bar and the second lower support bar, forming a concave position for storing embryos. And because the first support bar is inclined relative to the support frame, the second lower support bar and / or the second upper support bar arranged on the first support bar can move along the first support bar, so that after the embryo is placed, the concave position fits the outer contour of the embryo. This structural design can adapt to different models of embryos. Under the action of gravity, the concave position automatically fits the outer contour of the embryo without manual intervention. And storing the embryos vertically can make the storage capacity of embryos 33.33% more than that of the existing mountain - type embryo carts, saving the occupied volume space. Then, because the embryos are placed vertically, both sides will not become flattened, enhancing the durability of the embryos at the time of leaving the factory.

[0017] 2. When the support pad is canvas, the embryo will not stick to the canvas, which can effectively prevent the embryo from deforming, effectively solve the difficulty of vulcanizing and loading the tire, and reduce the quality problems caused by embryo deformation.

[0018] 3. The bottom of the support frame is equipped with casters, which facilitates the transportation and movement of the present utility model at any time after storing the tire embryos.

[0019] 4. At least two accommodating parts are evenly arranged along the support frame upwards, which can maximize the utilization of vertical space and store a larger number of tire embryos under limited space conditions. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the following will briefly introduce the drawings required for the description of the embodiments. Obviously, the drawings in the following description are only some embodiments of the present application. For those of ordinary skill in the art, without creative efforts, other drawings can be obtained based on these drawings.

[0021] Figure 1 It is a front schematic view of the present utility model without tire embryos placed therein;

[0022] Figure 2 It is a front schematic view of the present utility model with smaller tire embryos placed therein;

[0023] Figure 3 It is a front schematic view of the present utility model with larger tire embryos placed therein;

[0024] Figure 4 It is a side sectional schematic view of the present utility model. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0025] The following will clearly and completely describe the technical solutions in the embodiments of the present utility model with reference to the drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all of the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts belong to the scope of protection of the present utility model.

[0026] An embodiment of the utility model provides an embryo storage device, which includes a support frame 1 parallel to the ground. A receiving portion 3 for vertically storing embryos 2 is arranged inside the support frame 1. The receiving portion 3 includes: a first support bar 31, which is arranged on both sides of the support frame 1 and is inclined relative to the support frame 1; a plurality of second support bars 32, the second support bars 32 include a second upper support bar 321 and a second lower support bar 320. The second upper support bar 321 is cross-arranged on the first support bar 31, and the second lower support bar 320 is cross-arranged on the first support bar 31, and the second upper support bar 321 and the second lower support bar 320 are arranged at intervals to form an installation opening of the receiving portion 3; a support pad 33, both ends of the support pad 33 are respectively connected to the second upper support bar 321 and the second lower support bar 320, and enclose a concave position for placing the embryo 2. And the second lower support bar 320 and / or the second upper support bar 321 can move along the first support bar 31 so that the concave position fits the outer contour of the embryo 2 after the embryo 2 is placed. Specifically, as Figure 1 shown, it is a front schematic view of the embodiment of the utility model without the embryo placed. As shown in the figure, there are two receiving portions from top to bottom. Combining with the attached Figure 4 it can be known that in this embodiment, in each receiving portion, preferably two first support bars 31 and preferably two second support bars 32. The two second support bars 32 include a second upper support bar 321 and a second lower support bar 320. In this embodiment, the two first support bars 31 and the two second support bars 32 enclose a planar frame for storing embryos. As Figure 1 shown, the first support bar 31 is inclined relative to the support frame 1. The support frame 1 is preferably made of steel material. The first support bar 31 is arranged at both ends of the support frame 1 and is preferably welded to the support frame 1 in a welding form. The function of the inclination is to make the rolling of the second lower support bar 320 in this embodiment more convenient and labor-saving under the action of gravity. In this embodiment, the second upper support bar 321 and the second lower support bar 320 are arranged at intervals to form an installation opening of the receiving portion 3. The installation opening is the placement opening of the embryo 2, and it can be placed manually from the outside or automatically by a machine. The embryo is placed vertically. Placing vertically can make the storage capacity of embryos 33.33% more than that of the existing mountain embryo vehicle, saving the occupied volume space. In this embodiment, the maximum size range of the embryo that can be placed is 880.5 millimeters in diameter, as shown in the attached Figure 3 shown; when placing a smaller embryo, as shown in the attached Figure 2As shown, the installation opening becomes smaller and the concave position becomes smaller. Under the action of gravity, the concave position automatically fits the outer contour of the embryo. Since the second lower support strip 320 is connected to the support pad 33, during the process of the concave position fitting the outer contour of the embryo, the second lower support strip 320 will be pulled by the outer contour surface of the embryo 2, causing the second lower support strip 320 to move relative to the first support strip.

[0027] Both ends of the support pad of the present utility model are respectively connected to the second upper support strip and the second lower support strip, forming a concave position for storing the embryo. And because the first support strip is inclined relative to the support frame, the second lower support strip and / or the second upper support strip arranged on the first support strip can move along the first support strip, so that the concave position fits the outer contour of the embryo after the embryo is placed. This structural design can adapt to embryos of different models. Under the action of gravity, the concave position automatically fits the outer contour of the embryo without manual intervention. And storing the embryo vertically can increase the storage capacity of the embryo by 33.33% compared with the existing mountain tire embryo vehicle, saving the occupied volume space. Then, because the embryo is placed vertically, both sides will not become flattened, enhancing the durability of the embryo at the time of leaving the factory.

[0028] Furthermore, the vertical height of the second upper support strip 321 is greater than the vertical height of the second lower support strip 320. Specifically, as Figure 1 shown, the vertical height of the second upper support strip 321 being greater than the vertical height of the second lower support strip 320 is to adapt to the inclination of the first support strip, and at the same time to better achieve the technical effect of the present utility model: it can adapt to embryos of different models, and under the action of gravity, the concave position automatically fits the outer contour of the embryo without manual intervention.

[0029] Furthermore, the second upper support strip 321 is cross - arranged on the first support strip 31 by welding, and the second lower support strip 320 is cross - suspended on the first support strip 31 in a detachable form. Specifically, as Figure 1 shown, in this embodiment, the second upper support strip 321 is welded to the first support strip 31 to play a role of single - end fixation, while the second lower support strip 320 is used as a detachable accessory and is suspended on the first support strip 31 in a suspendable form. The role of suspension is that the second lower support strip 320 can move on the first support strip 31, and as the inclination of the first support strip 31 increases, the acceleration of movement will also increase. Preferably, clamping parts are further arranged at both ends of the second lower support strip 320. The role of the clamping parts is: when the second lower support strip 320 moves on the first support strip 31, it will not accidentally slip from the end, and the clamping parts at both ends can limit it, so that the second lower support strip 320 only moves along the inclined plane of the first support strip 31.

[0030] Furthermore, a plurality of mutually parallel brackets 10 are evenly spaced on the support frame 1, and the first support strip 31 is welded on the bracket 10. Specifically, as Figure 1 shown, in this embodiment, the brackets are preferably set to four, and the material is preferably steel. The height of the bracket 10 adapts to the length range of the accommodating parts of two or three layers, which is embodied as two accommodating parts in this embodiment.

[0031] Furthermore, at least two accommodating parts 3 are evenly arranged along the upward extension of the bracket 10. Specifically, in this embodiment, as Figure 1 shown, there are two accommodating parts. If the height of the vertically upward bracket 10 permits or the outer diameter of the embryo to be stored is smaller, the length of the accommodating part can be adjusted as the case may be, so that it can be expanded from two accommodating parts to three accommodating parts. This structural design can maximize the utilization of vertical space and store more embryos under limited space conditions.

[0032] Furthermore, a caster 11 for sliding is connected to the bottom of the support frame 1. As Figure 1 and Figure 4 shown, in this embodiment, casters are installed at the bottom of the support frame, which is convenient for the transportation and movement of the present utility model after storing the embryos.

[0033] Furthermore, the angle at which the first support strip 31 is inclined relative to the support frame 1 is 30 degrees - 70 degrees. Specifically, in this embodiment, the inclined angle is set to 30 degrees, which can maximize the balance of the frictional resistance between the first support strip and the second support strip, and will not make it move too fast. When the smaller embryo 2 is placed in the concave position, the pulling force of the second lower support strip 320 by the outer contour surface of the embryo 2 is smaller, and the moving speed is slower, which has more safety guarantee.

[0034] Furthermore, the support pad 33 is made of canvas. Specifically, as Figure 1 shown, in this embodiment, it is shown that both of the 2 second support strips can penetrate through both ends of the support pad 33, forming an effect of the support pad 33 in a suspended state. This effect is shown as a U shape. At the same time, the support pad 33 in the suspended state is the concave position for loading the embryo 2. After the embryo 2 is placed in the concave position, the concave position can be adjusted automatically according to different models and sizes of the embryo 2, and the adjustment standard is that the concave position can be kept in contact with the outer contour of the embryo 2. And when the support pad is made of canvas, the embryo will not stick to the canvas, which can effectively prevent the embryo from deforming, effectively solve the difficulty of vulcanizing and mounting the tire, and reduce the quality problems caused by the deformation of the embryo.

[0035] Furthermore, the length of the first support strip 31 is less than that of the second support strip 32. Specifically, as Figure 1 and Figure 4As shown, the length of the first support bar 31 is less than that of the second support bar 32, and a rectangular plane frame composed of two first support bars 31 and two second support bars 32 can be formed, which can better adapt to the vertical storage of tire embryos.

[0036] Furthermore, the first support bar 31 and the second support bar 32 are round steel bars. Specifically, the shape of the round steel bar can be more convenient for movement, specifically manifested as being more convenient for rolling.

[0037] Both ends of the support pad of the present utility model are respectively connected to the second upper support bar and the second lower support bar, forming a concave position for storing tire embryos. And because the first support bar is inclined relative to the support frame, the second lower support bar and / or the second upper support bar arranged on the first support bar can move along the first support bar, so that after the tire embryo is placed, the concave position fits the outer contour of the tire embryo. This structural design can adapt to different models of tire embryos. Under the action of gravity, the concave position automatically fits the outer contour of the tire embryo without manual intervention. And the vertical storage of tire embryos can make the storage capacity of tire embryos 33.33% more than that of the existing mountain tire embryo vehicle, saving the occupied volume space. Then, because the tire embryo is placed vertically, both sides will not become flattened, enhancing the durability of the tire embryo at the time of leaving the factory.

[0038] It should be understood that in the present utility model, terms such as "first" and "second" are used to describe various information, but these information should not be limited to these terms. These terms are only used to distinguish the same type of information from each other. For example, without departing from the scope of the present utility model, "first" information can also be called "second" information, and similarly, "second" information can also be called "first" information. In addition, the orientation or positional relationship indicated by terms such as "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", etc. is based on the orientation or positional relationship shown in the drawings. It is only for the convenience of describing the present utility model and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation to the present utility model.

[0039] The above is the preferred embodiment of the present utility model. It should be noted that for those of ordinary skill in the art in this technical field, without departing from the principle of the present utility model, several improvements and deformations can still be made, and these improvements and deformations are also regarded as the protection scope of the present utility model.

Claims

1. A tire blank storage device, characterized in that: It comprises a support frame (1) parallel to the ground, wherein a receiving portion (3) for vertically storing a tire blank (2) is provided in the support frame (1); The accommodating portion (3) comprises: A first support bar (31), the first support bar (31) being arranged on both sides of the support frame (1), the first support bar (31) being arranged obliquely relative to the support frame (1); a plurality of second support bars (32), the second support bars (32) comprising a second upper support bar (321) and a second lower support bar (320), the second upper support bar (321) being cross-arranged on the first support bar (31), the second lower support bar (320) being cross-arranged on the first support bar (31), and the second upper support bar (321) and the second lower support bar (320) being spaced apart to form an installation opening of the accommodating portion (3); A support pad (33), wherein two ends of the support pad (33) are respectively connected to a second upper support bar (321) and a second lower support bar (320), and surround a recessed position for accommodating a tire blank (2); and the second lower support bar (320) and / or the second upper support bar (321) can move along the first support bar (31), so that after the tire blank (2) is placed, the recessed position fits the outer contour of the tire blank (2).

2. A tire blank storage device according to claim 1, characterized in that: The vertical height of the second upper support bar (321) is greater than the vertical height of the second lower support bar (320).

3. A tire blank storage device according to claim 2, characterized in that: The second upper support bar (321) is cross-arranged on the first support bar (31) by welding, and the second lower support bar (320) is cross-suspended on the first support bar (31) in a detachable manner.

4. A tire blank storage device according to claim 3, characterized in that: The support frame (1) is provided with a plurality of brackets (10) which are evenly spaced and parallel to each other, and the first support bar (31) is welded and arranged on the bracket (10).

5. A tire blank storage device according to claim 4, characterized in that: At least two of the accommodating portions (3) are evenly arranged extending upward along the bracket (10).

6. A tire blank storage device according to claim 5, characterized in that: The bottom of the support frame (1) is connected to a castor (11) for sliding.

7. A tire blank storage device according to claim 6, characterized in that: The first support bar (31) is inclined relative to the support frame (1) at an angle of 30 degrees to 70 degrees.

8. The tire blank storage device according to claim 1, characterized in that: The support pad (33) is canvas.

9. The embryo storage device according to claim 1, characterized in that: The length of the first support bar (31) is shorter than that of the second support bar (32).

10. The tire blank storage device according to claim 1, characterized in that: The first support bar (31) and the second support bar (32) are round steel bars.