Drying equipment
By employing multi-faceted heating and a sliding mechanism in the drying equipment, the problem of low drying efficiency was solved, uniform heating of the battery cells was achieved, and the quality and safety of the battery were improved.
Patent Information
- Application Number
- CN202423265070.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-27
- Publication Date
- 2025-11-21
- Estimated Expiration
- 2034-12-27
AI Technical Summary
Existing drying equipment has low drying efficiency and uneven heating of the battery cells, which affects battery performance and lifespan.
The drying equipment adopts multi-sided heating. By setting heating elements on the separators and carriers, it can achieve multi-sided heating of materials. Combined with the use of a sliding mechanism, the operation process is simplified.
This improves drying efficiency, shortens drying time, ensures uniform heating of materials inside the battery cell, and enhances battery quality and safety.
Smart Images

Figure CN223580570U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to battery manufacturing technical field, specifically, relate to a drying equipment. BACKGROUND
[0002] In the manufacturing process of the battery, drying is a key step, and the moisture content of the battery directly affects the performance and service life of the battery; and the sodium battery is more difficult to bake than the lithium battery.
[0003] In the baking process, how to remove the moisture in the battery and minimize the impact on the material system, and shorten the baking time is a problem to be considered.
[0004] In the prior art, the drying equipment mainly adopts the heating plate conduction mode to heat up, which is simple, but the drying efficiency is low, which not only affects the battery heating effect, but also affects the moisture baking. UTILITY MODEL CONTENTS
[0005] The main purpose of the utility model is to provide a drying equipment to solve the problem of low drying efficiency of the drying equipment in the prior art.
[0006] In order to achieve the above purpose, the utility model provides a drying equipment, which comprises: a main body part having a drying cavity and a preset opening communicating with the drying cavity; a bearing mechanism comprising a bearing part and a plurality of partition pieces arranged on the bearing part in a preset direction, and the adjacent two partition pieces are used to accommodate and clamp one material; a sliding mechanism is arranged between the main body part and the bearing part, so that the bearing mechanism slides into or out of the drying cavity through the preset opening; wherein the inside of the partition piece is provided with a first heating part to heat the material clamped by the partition piece; the bearing part is provided with a second heating part to heat all the materials on the bearing part.
[0007] Further, the sliding mechanism comprises one or more sliding assemblies; the sliding assembly comprises a first matching part, a second matching part and a third matching part; the first matching part is arranged on the cavity wall of the drying cavity, and the third matching part is arranged on the bearing part; one of the first matching part and the second matching part is provided with a first sliding rail, and the other is provided with a first sliding part, the first sliding part is slidably arranged along the first sliding rail, so that the second matching part is slidable relative to the first matching part; one of the second matching part and the third matching part is provided with a second sliding rail, and the other is provided with a second sliding part, the second sliding part is slidably arranged along the second sliding rail, so that the third matching part is slidable relative to the second matching part; the extension direction of the second sliding rail is parallel to the extension direction of the first sliding rail.
[0008] Further, along the preset direction, the plurality of partitions includes two end partitions located at two ends; the two end partitions are respectively a first end partition and a second end partition; the first end partition is fixedly arranged on the bearing member; the bearing mechanism further includes a guide rod, a first end of the guide rod being fixedly connected with the first end partition; an axial direction of the guide rod is parallel to or identical with the preset direction; the rest of the plurality of partitions except the first end partition are movably sleeved on the guide rod along the axial direction of the guide rod, so that the adjacent two partitions clamp the material therebetween.
[0009] Further, the rest of the plurality of partitions except the two end partitions are intermediate partitions; the bearing mechanism further includes a power assembly connected with the second end partition to drive the second end partition to move along the axial direction of the guide rod; when the power assembly drives the second end partition to move towards the first end partition, the second end partition generates a pushing force on all the intermediate partitions towards the first end partition, so that any adjacent two of the plurality of partitions are clamped.
[0010] Further, the power assembly includes a transmission rod and a transmission part; the transmission rod is arranged on the bearing member and rotatably arranged around a central axis of the transmission rod; an axial direction of the transmission rod is parallel to or identical with an axial direction of the guide rod; the transmission rod is threadedly connected with the transmission part, so that when the transmission rod rotates, the transmission part is driven to move along the axial direction of the transmission rod; the transmission part is connected with the second end partition to drive the second end partition to move.
[0011] Further, the drying device further includes a rotating wheel; the rotating wheel is detachably connected with a second end of the transmission rod; when the rotating wheel is connected with the second end of the transmission rod, the rotating wheel is coaxially arranged with the transmission rod, and the rotating wheel drives the transmission rod to rotate; when the bearing mechanism slides into the drying cavity, the rotating wheel is detached from the transmission rod.
[0012] Further, the bearing mechanism includes one or more guide units; the plurality of guide units are distributed along a direction perpendicular to the axial direction of the guide rod; the guide unit includes one or more guide rods; the axial directions of the plurality of guide rods of the guide unit are parallel; the axial directions of the guide rods of the plurality of guide units are parallel.
[0013] Further, along the preset direction, the plurality of partitions includes two end partitions located at two ends; among the rest of the plurality of partitions except the two end partitions, the partition further includes two heat-conducting parts, and a first heating part of the partition is arranged between the two heat-conducting parts; the two heat-conducting parts of the partition are respectively used for heat conduction with the material on both sides of the partition. The end partition further includes a heat-conducting part, and the heat-conducting part of the end partition is arranged on a side of the first heating part facing the material and is used for heat conduction with the material clamped by the partition.
[0014] Further, the heat-conducting part has a preset side facing the material, and the preset side is used to contact the material and is larger than a contact side of the material.
[0015] Further, the first heating part is a heating film.
[0016] Further, the second heating part is a heating film.
[0017] According to the technical scheme of the utility model, the drying equipment comprises a main body part, a bearing mechanism and a sliding mechanism; the main body part has a drying cavity and a preset opening communicating with the drying cavity; the bearing mechanism comprises a bearing piece and a plurality of partition pieces arranged on the bearing piece along a preset direction, two adjacent partition pieces are used to accommodate and clamp one material, and the bearing piece supports all the materials clamped by the partition pieces; and the sliding mechanism is arranged between the main body part and the bearing piece, so that the bearing mechanism slides into or out of the drying cavity through the preset opening.
[0018] The first heating part in the partition piece is used to heat the material clamped by the partition piece, and the second heating part arranged on the bearing piece is used to heat all the materials on the bearing piece.
[0019] In the implementation process, the bearing mechanism is slid out of the drying cavity; each of one or more materials is placed in one of the accommodation spaces, and two partition pieces on both sides of each material clamp the material; after all the materials are placed, the bearing mechanism is slid into the drying cavity; the second heating part and all the first heating parts are turned on to heat all the materials on the bearing piece. Stable heat is generated by the second heating part and all the first heating parts to heat the materials well.
[0020] The first heating part of the partition piece on both sides of the material can effectively heat the surfaces on both sides of the material, and the second heating part heats the bottom surface of the material, so that multi-surface heating of the material is realized. In the heating process, the internal temperature of the material rises quickly due to the multi-surface heating, the moisture drying effect is accelerated, and the drying efficiency and drying effect are improved. BRIEF DESCRIPTION OF DRAWINGS
[0021] The drawings accompanying the specification of the present application form a part of the present application and serve to provide a further understanding of the present application, the illustrative embodiments of the present application and its description serve to explain the present application without limiting the present application in any manner. In the drawings:
[0022] Figure 1 A structure schematic view of the drying equipment according to the utility model is shown;
[0023] Figure 2 A top view of the drying equipment in Figure 1 is shown.
[0024] Figure 3 It shows Figure 1 A bottom view of the drying equipment in the middle;
[0025] Figure 4 A schematic diagram of the main body and sliding assembly of the drying device according to the present invention is shown;
[0026] Figure 5 A schematic diagram of the mating structure of the first heating part and the heat-conducting part of the separator of the drying device according to the present invention is shown;
[0027] Figure 6 It shows Figure 5 A side view of the mating structure of the first heating part and a heat-conducting part of the separator in the middle;
[0028] Figure 7 It shows Figure 5 A side view from another perspective of the mating structure of the first heating part and the heat-conducting part of the separator.
[0029] The above figures include the following reference numerals:
[0030] 10. Main body; 11. Drying chamber; 12. Pre-set opening;
[0031] 20. Bearing mechanism; 21. Bearing component; 22. Separator; 2201. First end separator; 2202. Second end separator; 221. First heating part; 222. Heat conducting part; 23. Guide rod; 24. Transmission rod; 26. Support part;
[0032] 30. Sliding assembly; 31. First mating part; 311. First slide rail; 32. Second mating part; 321. First sliding portion; 322. Second slide rail; 33. Third mating part; 331. Second sliding portion;
[0033] 40. Rotating wheel. Detailed Implementation
[0034] It should be noted that, unless otherwise specified, the embodiments and features described in this application can be combined with each other. The present invention will now be described in detail with reference to the accompanying drawings and embodiments.
[0035] It should be noted that the following detailed descriptions are illustrative and intended to provide further explanation of this application. Unless otherwise specified, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this application pertains.
[0036] It is to be understood that the terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting of example embodiments in accordance with the present application. As used herein, the singular forms "a", "an" and "the" are intended to include the plural forms as well, unless the context clearly indicates otherwise. It will be further understood that the terms "comprises" and / or "comprising," when used in this specification, specify the presence of stated features, steps, operations, elements, components, and / or groups thereof, but do not preclude the presence or addition of one or more other features, steps, operations, elements, components, and / or groups thereof.
[0037] The utility model provides a kind of drying equipment, please refer to Figures 1 to 7 , drying equipment includes main part 10, bearing mechanism 20 and sliding mechanism;Main part 10 has drying cavity 11 and with drying cavity 11 communication preset opening 12;Bearing mechanism 20 includes bearing 21 and is set on bearing 21 along multiple partition pieces 22 in preset direction, between adjacent two partition pieces 22 for accommodating and clamping one material, bearing 21 to all partition pieces 22 clamped material plays the role of support;Sliding mechanism is arranged between main part 10 and bearing 21, to make bearing mechanism 20 slide into or slide out drying cavity 11 by preset opening 12.
[0038] Among them, the inside of partition piece 22 is provided with first heating part 221, and the first heating part 221 in the partition piece 22 is used for heating the material clamped by the partition piece 22;Second heating part is provided on bearing 21, so that the second heating part heats all the materials on bearing 21.
[0039] Specifically, adjacent two partition pieces 22 form an accommodating space for accommodating materials.
[0040] In the implementation process, bearing mechanism 20 is slid out of drying cavity 11;Each of one or more materials is placed in one of the accommodating spaces, and the two partition pieces 22 on both sides of each material clamp the material;After all the materials are placed, bearing mechanism 20 is slid into drying cavity 11;The second heating part and all the first heating parts 221 are turned on to heat all the materials on bearing 21. Stable heat is generated by the second heating part and all the first heating parts 221 to heat the materials well.
[0041] The first heating part 221 of the partition piece 22 on both sides of the material can effectively heat the two side surfaces of the material, and at the same time, the second heating part heats the bottom surface of the material, so that multi-surface heating of the material can be realized. During the heating process, the temperature inside the material rises rapidly, i.e. the internal temperature of the material rises rapidly, and the moisture evaporates rapidly, i.e. the moisture drying effect is accelerated, thereby improving the drying efficiency and drying effect. And, it also avoids the problem of uneven moisture in the internal material of the battery, thereby improving the quality and safety of the battery.
[0042] The present application sets the first heating part 221 inside each partition 22 to improve the heating effect and heating efficiency on the material, thereby improving the drying effect and drying efficiency on the material, shortening the drying time while ensuring the drying effect on the material, and solving the problem of low drying efficiency of the drying equipment in the prior art.
[0043] The drying equipment of the present application has a faster heat conduction efficiency, so that the internal material of the material has a faster heating speed, solving the problem of slow heat conduction efficiency and slow internal material heating speed of the drying equipment in the prior art.
[0044] Optionally, the set heating temperature of the first heating part 221 is 50-130℃, and the set heating temperature of the second heating part is 50-130℃; based on this, the heating time is 0.5-72h.
[0045] In addition, the bearing mechanism 20 adopts a sliding-in or sliding-out mode, simplifying the operation, saving operation time and operation cost, and improving production efficiency. Moreover, the material is clamped during the drying process, which can avoid the problem of swelling of the battery after heating (caused by gas generated during the baking process), ensuring the quality of the battery and avoiding safety problems during the drying process and subsequent processes, thereby improving the safety of production.
[0046] Optionally, each accommodation space accommodates only one material.
[0047] Optionally, the material is the battery cell, i.e., the material is the battery cell to be dried.
[0048] Optionally, the sliding direction of the bearing mechanism 20 is perpendicular to the preset direction.
[0049] Optionally, each accommodation space accommodates only one material.
[0050] Optionally, the length of the accommodation space is 600mm, the maximum width is 100mm, and the height is 300mm, to adapt to the battery cells of most models; wherein the length direction of the accommodation space is parallel to the sliding direction of the bearing mechanism 20, the width direction of the accommodation space is parallel to the preset direction, and the length direction, width direction and height direction of the accommodation space are all perpendicular to each other.
[0051] Optionally, the second heating part and all the first heating parts 221 are electrically heated.
[0052] In the present application, the sliding mechanism includes one or more sliding assemblies 30.
[0053] The sliding assembly 30 comprises a first fitting part 31, a second fitting part 32 and a third fitting part 33; the first fitting part 31 is arranged on a cavity wall of the drying cavity 11, and the third fitting part 33 is arranged on the bearing mechanism 20.
[0054] A first sliding rail 311 is arranged on one of the first fitting part 31 and the second fitting part 32, and a first sliding part 321 is arranged on the other one; the first sliding part 321 is arranged on the first sliding rail 311 and is slidably arranged along the first sliding rail 311, so that the second fitting part 32 is slidable relative to the first fitting part 31.
[0055] A second sliding rail 322 is arranged on one of the second fitting part 32 and the third fitting part 33, and a second sliding part 331 is arranged on the other one; the second sliding part 331 is arranged on the second sliding rail 322 and is slidably arranged along the second sliding rail 322, so that the third fitting part 33 is slidable relative to the second fitting part 32. The extending direction of the second sliding rail 322 is parallel to the extending direction of the first sliding rail 311.
[0056] In the implementation process, when the second fitting part 32 slides relative to the first fitting part 31, the second fitting part 32 drives the third fitting part 33 and the bearing mechanism 20 to slide together; when the third fitting part 33 slides relative to the second fitting part 32, the third fitting part 33 drives the bearing mechanism 20 to slide. It can be seen that the sliding assembly 30 can realize two-stage sliding, so as to realize the sliding of the bearing mechanism 20 relative to the main body 10.
[0057] Optionally, by analogy, three stages or even more stages of sliding can also be arranged according to needs.
[0058] Specifically, the bearing mechanism 20 and the main body 10 are of a drawer type structure.
[0059] Specifically, the sliding assembly 30 is of a drawer sliding rail structure.
[0060] Optionally, the sliding assembly 30 is two, and the two sliding assemblies 30 are arranged on two opposite side walls of the drying cavity 11 respectively; the distribution direction of the two sliding assemblies 30 is perpendicular to the sliding direction of the bearing mechanism 20; and the distribution direction of the two sliding assemblies 30 is parallel to or the same as the preset direction.
[0061] Optionally, the length of the first sliding rail 311 or the first sliding part 321 on the first fitting piece 31 is 1500 mm, the width of the first sliding rail 311 or the first sliding part 321 on the first fitting piece 31 is 20 mm, and the height of the first sliding rail 311 or the first sliding part 321 on the first fitting piece 31 is 120 mm, so as to meet the load bearing requirement, and thus the carrying mechanism 20 can slide smoothly. The length direction of the first sliding rail 311 or the first sliding part 321 on the first fitting piece 31 is parallel to the sliding direction of the carrying mechanism 20, the width direction of the first sliding rail 311 or the first sliding part 321 on the first fitting piece 31 is parallel to the preset direction, and the length direction, the width direction and the height direction of the first sliding rail 311 or the first sliding part 321 on the first fitting piece 31 are perpendicular to each other.
[0062] In the present application, along the preset direction, the plurality of partition pieces 22 include two end partition pieces at two ends; the two end partition pieces are respectively a first end partition piece 2201 and a second end partition piece 2202.
[0063] The first end partition piece 2201 is fixedly arranged on the carrying piece 21; the carrying mechanism 20 further includes a guide rod 23, a first end of the guide rod 23 is fixedly connected with the first end partition piece 2201; the axial direction of the guide rod 23 is parallel to or the same as the preset direction; the rest of the plurality of partition pieces 22 except the first end partition piece 2201 are movably sleeved on the guide rod 23 along the axial direction of the guide rod 23, so that the adjacent two partition pieces 22 clamp the material therebetween.
[0064] In the implementation process, first, at least one of the adjacent two partition pieces 22 is moved along the axial direction of the guide rod 23, so that a containing space is formed between the adjacent two partition pieces 22; after the material is placed in the containing space, at least one of the adjacent two partition pieces 22 is moved along the axial direction of the guide rod 23, so that the adjacent two partition pieces 22 clamp the material therebetween.
[0065] In the present application, the rest of the plurality of partition pieces 22 except the two end partition pieces are intermediate partition pieces. The carrying mechanism 20 further includes a power assembly, the power assembly is connected with the second end partition piece 2202, so as to drive the second end partition piece 2202 to move along the axial direction of the guide rod 23.
[0066] In the implementation, the power assembly drives the second end partition 2202 to move away from the first end partition 2201, so that all the intermediate partitions can move along the axial direction of the guide rod 23, and the material is placed between two adjacent partitions 22. After the material is placed, the power assembly drives the second end partition 2202 to move towards the first end partition 2201, and through force transmission and pressure, the second end partition 2202 generates a pushing force on all the intermediate partitions in the direction of moving towards the first end partition 2201, so that any two adjacent partitions 22 in the plurality of partitions 22 are clamped.
[0067] In the application, the power assembly comprises a transmission rod 24 and a transmission part; the transmission rod 24 is arranged on the bearing 21 and is rotatably arranged around the central axis of the transmission rod 24, and the axial direction of the transmission rod 24 is parallel to or the same as the axial direction of the guide rod 23; the transmission rod 24 is threadedly connected with the transmission part, so that when the transmission rod 24 rotates around the central axis, the transmission part is driven to move along the axial direction of the transmission rod 24; and the transmission part is connected with the second end partition 2202, so as to drive the second end partition 2202 to move along the axial direction of the transmission rod 24.
[0068] Specifically, the transmission rod 24 is provided with external threads, the transmission part has an internal threaded hole, and the transmission rod 24 is arranged in the internal threaded hole of the transmission part, so that the transmission rod 24 is threadedly connected with the transmission part.
[0069] Specifically, the bearing mechanism 20 further comprises a support part 26, which is fixedly arranged on the bearing 21; the first end of the transmission rod 24 is connected with the support part 26, and the first end of the transmission rod 24 is rotatably arranged around the central axis of the transmission rod 24 relative to the support part 26; and the second end of the transmission rod 24 is a driving end, so that the transmission rod 24 is rotated around the central axis by acting on the second end of the transmission rod 24.
[0070] Optionally, the first end of the transmission rod 24 is arranged in the support part 26, and a bearing is arranged between the first end of the transmission rod 24 and the support part 26.
[0071] Optionally, the support part 26 is provided with a gap hole for the transmission part to pass through, and the transmission part is arranged in space with the hole wall of the gap hole.
[0072] Optionally, the transmission rod 24 is a screw rod.
[0073] In the embodiment, the drying device further comprises a rotating wheel 40, which is detachably connected with the second end of the transmission rod 24.
[0074] When the rotating wheel 40 is connected with the second end of the transmission rod 24, the rotating wheel 40 is coaxially arranged with the transmission rod 24, and the rotating wheel 40 drives the transmission rod 24 to rotate by acting on the rotating wheel 40 to rotate around the central axis.
[0075] When the material is placed and the carrying mechanism 20 is about to enter the drying cavity 11, the rotating wheel 40 is detached from the transmission rod 24, that is, the rotating wheel 40 does not enter the drying cavity 11 with the carrying mechanism 20.
[0076] Optionally, the rotating wheel 40 is a hand-operated rotating wheel.
[0077] Specifically, the carrying mechanism 20 is a restraint clamp structure, that is, the carrying mechanism 20 can realize restraint, pressurization and heating.
[0078] In the present application, the carrying mechanism 20 comprises one or more guide units; each guide unit comprises one or more guide rods 23, and the axial directions of the guide rods 23 of the guide units are all parallel. When the carrying mechanism 20 comprises a plurality of guide units, the plurality of guide units are distributed in a direction perpendicular to the axial directions of the guide rods 23; the axial directions of the guide rods 23 of the plurality of guide units are all parallel. That is, the axial directions of all the guide rods 23 of the carrying mechanism 20 are all parallel.
[0079] Optionally, the carrying mechanism 20 comprises two guide units, and the distribution directions of the two guide units are perpendicular to the distribution directions of the two sliding assemblies 30.
[0080] Optionally, when the guide unit comprises a plurality of guide rods 23, the distribution directions of the guide rods 23 of the guide unit are perpendicular to the axial directions of the guide rods 23, and the distribution directions of the guide rods 23 of the guide unit are perpendicular to the distribution directions of the plurality of guide units.
[0081] Specifically, in the plurality of partition pieces 22, each partition piece 22, except the first end partition piece 2201, is sleeved on all the guide rods 23 of the carrying mechanism 20.
[0082] Specifically, in the plurality of partition pieces 22, each partition piece 22, except the first end partition piece 2201, is provided with at least one through hole, and all the through holes on each partition piece 22 are provided in one-to-one correspondence with all the guide rods 23 of the carrying mechanism 20, and each guide rod 23 is inserted into the corresponding through hole on each partition piece 22.
[0083] In the present application, in each partition piece 22, except the two end partition pieces, of the plurality of partition pieces 22, the partition piece 22 further comprises two heat-conducting portions 222, and the first heating portion 221 is arranged between the two heat-conducting portions 222; the two heat-conducting portions 222 are respectively used for heat conduction with the materials on both sides of the partition piece 22.
[0084] The end partition piece comprises one heat-conducting portion 222; in the end partition piece, the heat-conducting portion 222 is arranged on the side of the first heating portion 221 facing the material, and is used for heat conduction with the material clamped by the partition piece 22.
[0085] It should be noted that the heat-conducting part 222 can be in direct contact with the material or in indirect contact with the material.
[0086] Optionally, the heat-conducting part 222 is in a plate structure. For example, the plate thickness of the heat-conducting part 222 is 5mm to 12mm.
[0087] Optionally, at least part of the heat-conducting part 222 is made of aluminum.
[0088] Optionally, the heat-conducting part 222 is a heat-conducting aluminum plate.
[0089] Optionally, the heat-conducting part 222 has a preset side facing the material, the preset side being used to contact the material, and the preset side being larger than the contact side of the material; that is, under the condition that the size of the contact side of the material is constant, the preset side of the heat-conducting part 222 can completely cover the contact side of the material, so as to ensure that the heat-conducting part 222 and the material have the maximum contact area, so that the heat-conducting part 222 can effectively transfer the heat of the first heating part 221 to the surface of the material, thereby improving the heating effect and heating efficiency of the material.
[0090] Optionally, when the heat-conducting part 222 is in a plate structure, the plate surface of the heat-conducting part 222 facing the material is the preset side.
[0091] Optionally, the first heating part 221 is a heating film; for example, the first heating part 221 is a silica gel heating film. The silica gel heating film is used to heat the heat-conducting part 222, so as to effectively transfer the heat of the silica gel heating film to the material.
[0092] Optionally, the power of the heating film is 100W to 200W, the working voltage is 220V, and the power density is 0.15W / cm 2 to 0.2W / cm 2 .
[0093] In the present application, optionally, the second heating part can also be a heating film.
[0094] In the present application, optionally, the carrier 21 is in a plate structure, that is, the carrier 21 is a heating plate.
[0095] In the present application, optionally, the partition 22 is in a plate structure
[0096] In the present application, when the material on the carrier mechanism 20 is dried in the drying cavity 11 and the drying is completed, the second heating part and all the first heating parts 221 are turned off, the material is naturally cooled to room temperature in the drying cavity 11, and then the carrier mechanism 20 is slid out of the drying cavity 11, so as to take away the material on the carrier mechanism 20.
[0097] From the above description, it can be seen that the above-mentioned embodiments of the utility model realize the following technical effects:
[0098] In the drying equipment provided by the utility model, the drying equipment comprises a main body part 10, a bearing mechanism 20 and a sliding mechanism; the main body part 10 is provided with a drying cavity 11 and a preset opening 12 communicated with the drying cavity 11; the bearing mechanism 20 comprises a bearing piece 21 and a plurality of partition pieces 22 arranged on the bearing piece 21 along a preset direction, two adjacent partition pieces 22 are used for accommodating and clamping one material, and the bearing piece 21 supports all the materials clamped by the partition pieces 22; the sliding mechanism is arranged between the main body part 10 and the bearing piece 21, so that the bearing mechanism 20 slides into or out of the drying cavity 11 through the preset opening 12.
[0099] The first heating part 221 in the partition piece 22 is used for heating the material clamped by the partition piece 22; and the second heating part is arranged on the bearing piece 21, so that the second heating part heats all the materials on the bearing piece 21.
[0100] In the specific implementation process, the bearing mechanism 20 is slid out of the drying cavity 11; each of one or more materials is placed in one of the accommodation spaces, and two partition pieces 22 on both sides of each material clamp the material; after all the materials are placed, the bearing mechanism 20 is slid into the drying cavity 11; the second heating part and all the first heating parts 221 are turned on to heat all the materials on the bearing piece 21. Stable heat is generated by the second heating part and all the first heating parts 221 to heat the materials well.
[0101] The first heating part 221 of the partition piece 22 on both sides of the material can effectively heat the surfaces on both sides of the material, and meanwhile, the second heating part heats the bottom surface of the material, so that multi-surface heating of the material can be realized. In the heating process, since the multiple surfaces of the material are heated, the internal temperature of the material rises quickly, the water evaporation effect is accelerated, and the drying efficiency and drying effect are improved.
[0102] The drying equipment of the application is a constrained pulling type drying equipment.
[0103] It is to be understood that the terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting; for example, as used herein, the singular forms "a", "an" and "the" are intended to include the plural forms as well, unless the context clearly indicates otherwise. It will be further understood that the terms "comprises" and / or "comprising," or "includes" and / or "including" when used in this specification, specify the presence of stated features, regions, integers, steps, operations, elements, and / or components, but do not preclude the presence or addition of one or more other features, regions, integers, steps, operations, elements, components, and / or groups thereof.
[0104] For purposes of the description hereinafter, the terms "upper", "lower", "right", "left", "rear", "front", "vertical" and "horizontal" as can be perceived herein relative to the figures referred to describe a device or feature as positioned in relation to other devices or features as shown in the figures. It is to be understood that the spatially relative terms are intended to encompass different orientations of the device in use or operation in addition to the orientations depicted in the figures. For example, if a device is inverted or rotated by 90 degrees, then a downwardly deposition described as above other devices or features would then be oriented downwardly, rather than upwardly. The exemplary term "above" can encompass both an "above" and "below" orientation. The devices can also be oriented in other ways (rotated 90 degrees or at other orientations) and the spatially relative descriptors used herein interpreted accordingly. The terms "first", "second", "third", etc. are used herein to distinguish between similar objects, and are not necessarily intended to denote a particular order or sequence. It is to be understood that the terms so used are interchangeable under appropriate circumstances such that the embodiments of the application described herein are capable of operation in other sequences than those depicted or otherwise described herein.
[0105] The preferred embodiments of the application are described above in detail. The application is not limited to the embodiments described above, but can be modified and changed by those skilled in the art without departing from the spirit and principle of the application. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the application shall be included in the protection scope of the application.
Claims
1. A drying device, characterized in that, include: The main body (10) has a drying chamber (11) and a pre-set opening (12) communicating with the drying chamber (11); The carrying mechanism (20) includes a carrying member (21) and a plurality of partitions (22) arranged on the carrying member (21) in a preset direction, wherein a material is accommodated and clamped between two adjacent partitions (22); A sliding mechanism is provided between the main body (10) and the support member (21) so that the support mechanism (20) can slide into or out of the drying chamber (11) through the preset opening (12); The separator (22) is provided with a first heating part (221) to heat the material clamped by the separator (22); the carrier (21) is provided with a second heating part to heat all the material on the carrier (21).
2. The drying equipment according to claim 1, characterized in that, The sliding mechanism includes one or more sliding components (30); the sliding component (30) includes a first mating part (31), a second mating part (32) and a third mating part (33); the first mating part (31) is disposed on the cavity wall of the drying chamber (11) and the third mating part (33) is disposed on the support member (21); One of the first mating member (31) and the second mating member (32) is provided with a first slide rail (311), and the other is provided with a first sliding part (321). The first sliding part (321) is slidably disposed along the first slide rail (311) so that the second mating member (32) is slidable relative to the first mating member (31). One of the second mating member (32) and the third mating member (33) is provided with a second slide rail (322), and the other is provided with a second sliding part (331). The second sliding part (331) is slidably disposed along the second slide rail (322) so that the third mating member (33) is slidable relative to the second mating member (32). The extension direction of the second slide rail (322) is parallel to the extension direction of the first slide rail (311).
3. The drying equipment according to claim 1, characterized in that, Along the preset direction, the plurality of separators (22) includes two end separators located at both ends; the two end separators are a first end separator (2201) and a second end separator (2202), respectively; The first end separator (2201) is fixedly mounted on the support member (21); The bearing mechanism (20) further includes a guide rod (23), the first end of which is fixedly connected to the first end separator (2201); the axial direction of the guide rod (23) is parallel to or the same as the preset direction; The remaining separators (22) of the plurality of separators (22) except for the first end separator (2201) are movably sleeved on the guide rod (23) along the axial direction of the guide rod (23) so that the material between two adjacent separators (22) is clamped.
4. The drying equipment according to claim 3, characterized in that, Of the plurality of separators (22), the remaining separators (22) other than the two end separators are intermediate separators; the bearing mechanism (20) also includes a power assembly, which is connected to the second end separator (2202) to drive the second end separator (2202) to move axially along the guide rod (23); When the power assembly drives the second end separator (2202) to move toward the first end separator (2201), the second end separator (2202) generates a pushing force on all the intermediate separators toward the first end separator (2201) so that any two adjacent separators (22) among the plurality of separators (22) are clamped together.
5. The drying equipment according to claim 4, characterized in that, The power assembly includes a transmission rod (24) and a transmission part. The transmission rod (24) is mounted on the support member (21) and rotatably mounted around the central axis of the transmission rod (24). The axial direction of the transmission rod (24) is parallel to or the same as the axial direction of the guide rod (23). The transmission rod (24) is threadedly connected to the transmission part so that when the transmission rod (24) rotates, it drives the transmission part to move along the axial direction of the transmission rod (24). The transmission part is connected to the second end separator (2202) so as to drive the second end separator (2202) to move.
6. The drying equipment according to claim 5, characterized in that, The drying equipment also includes a rotating wheel (40), which is detachably connected to the second end of the transmission rod (24). When the rotating wheel (40) is connected to the second end of the transmission rod (24), the rotating wheel (40) and the transmission rod (24) are coaxially arranged, and the transmission rod (24) is driven to rotate by the rotating wheel (40). When the bearing mechanism (20) slides into the drying chamber (11), the rotating wheel (40) is detached from the transmission rod (24).
7. The drying equipment according to claim 3, characterized in that, The bearing mechanism (20) includes one or more guide units, and the plurality of guide units are distributed in a direction perpendicular to the axis of the guide rod (23); the guide unit includes one or more guide rods (23), and the axial directions of the plurality of guide rods (23) of the guide unit are all parallel; the axial directions of the guide rods (23) of the plurality of guide units are all parallel.
8. The drying equipment according to claim 1, characterized in that, Along the preset direction, the plurality of separators (22) includes two end separators located at both ends; In the plurality of partitions (22), apart from the two end partitions, the remaining partitions (22) further include two heat-conducting parts (222), and the first heating part (221) of the partition (22) is disposed between the two heat-conducting parts (222); the two heat-conducting parts (222) of the partition (22) are respectively used to contact and conduct heat with the materials on both sides of the partition (22); The end separator also includes a heat-conducting part (222), which is disposed on the side of the first heating part (221) facing the material and is used to conduct heat to the material clamped by the separator (22).
9. The drying equipment according to claim 8, characterized in that, The heat-conducting part (222) has a preset side facing the material, the preset side being for contact with the material and being larger than the contact side of the material.
10. The drying equipment according to claim 1, characterized in that, The first heating element (221) is a heating film; and / or The second heating element is a heating film.