A post-vulcanization drying machine for intelligent antibacterial latex glove production
Patent Information
- Application Number
- CN202522215641.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-21
- Publication Date
- 2026-09-11
- Estimated Expiration
- 2035-10-21
AI Technical Summary
[0003]然而,该类设备在实际应用过程中仍存在明显不足:滚筒在旋转出料时产生的离心力易导致手套被分散抛散,不仅增大收集难度,还可能致使部分手套掉落地面,造成产品污染,严重影响手套的卫生性能及整体品质
[0011]本实用新型的有益效果为:本实用新型采用一可折展控制的导向通道,使手套能被集中导引,实现手套的有序收集,避免手套散落或污染,在保障手套的收集卫生性的同时,实现手套的收集便捷性提升;折叠后的结构缩减结构占用空间,便于下一批次手套顺利上料。本实用新型采用可往复移动收集箱对手套进行收集,使得手套在下落时能够均匀分布于收集箱内,从而充分利用箱体容积,避免因局部堆积而导致手套溢出;该设计将无需为防溢出而选用容量不适配的更大型收集箱,既能节约占用空间,也能提高收集操作的便捷性与适应性。
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Figure CN224738634U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of latex glove drying technology, and in particular to a post-vulcanization dryer for the production of intelligent antibacterial latex gloves. Background Technology
[0002] Latex gloves require post-vulcanization and drying during production to improve their physical properties and ensure the finished product is dry and sterile. Currently, large-scale dryers are commonly used to dry latex gloves, as these devices are highly efficient and produce good drying results. To further improve the ease of unloading large batches of dried gloves, existing technologies typically design the dryer body with an inclined structure. After drying, the inclined body drives the internal drum to rotate, using gravity and centrifugal force to quickly discharge the gloves, thus achieving efficient discharge.
[0003] However, such equipment still has obvious shortcomings in practical applications: the centrifugal force generated when the roller rotates to discharge the material can easily cause the gloves to be scattered, which not only increases the difficulty of collection, but may also cause some gloves to fall to the ground, causing product contamination and seriously affecting the hygiene performance and overall quality of the gloves. Utility Model Content
[0004] To overcome the shortcomings of the prior art, the technical problem of this utility model is to provide a post-vulcanization dryer for the production of intelligent antibacterial latex gloves that can centrally discharge materials, thereby improving the convenience of glove collection and ensuring the hygiene of glove collection.
[0005] A post-vulcanization dryer for the production of intelligent antibacterial latex gloves includes: a base plate, a machine body, a tilting assembly, and a controller; it also includes: a material guiding assembly, which is disposed on the outer periphery of the inlet and outlet of the machine body to limit the unloading range of the gloves; The material guiding assembly includes: a fixed ring, fixedly connected to the outer periphery of the machine body's inlet and outlet; a guide half-cylinder, fixedly connected to the fixed ring, occupying half of the fixed ring's circumferential position; a rotating half-cylinder, slidably connected to the fixed ring, capable of moving to cover the other half of the fixed ring's circumferential position; a mounting plate, fixedly connected to the upper outer side of the machine body's inlet and outlet; a rotary motor, fixedly connected to the mounting plate and electrically connected to the controller; a gear, fixedly connected to the output shaft of the rotary motor; and a gear ring, fixedly connected to the outer diameter of the rotating half-cylinder and meshing internally with the gear.
[0006] Further details include: a base plate, fixedly connected to the front side of the base plate; a linear motor, fixedly connected to the base plate and electrically connected to the controller; a movable seat, slidably connected to the base plate, its sliding direction being horizontal left and right, and fixed to the control end of the linear motor; and a collection box, placed on the movable seat.
[0007] To further explain, the inner walls of both the guide half-cylinder and the rotating half-cylinder are provided with an ultra-slippery surface layer to reduce the coefficient of friction between the glove and the walls of each half-cylinder.
[0008] Further explanation includes: a protruding edge, fixedly connected to the periphery of the movable base, used to limit the position of the collection box; one side of the movable base does not have a protruding edge.
[0009] Further explanation includes: a transition plate, fixedly connected to the mating ends of the guide half-cylinder and the rotating half-cylinder, used to smoothly cover the seam between the two.
[0010] Further explanation includes: rollers, which are rotatably connected to the movable base.
[0011] The beneficial effects of this utility model are as follows: This utility model employs a foldable and controllable guide channel, allowing gloves to be centrally guided and collected in an orderly manner, preventing gloves from scattering or becoming contaminated. While ensuring the hygiene of the collected gloves, it also improves the convenience of collection. The folded structure reduces the space occupied, facilitating the loading of the next batch of gloves. This utility model uses a reciprocating collection box to collect gloves, ensuring that the gloves are evenly distributed within the box as they fall, thus fully utilizing the box's volume and preventing overflow due to localized accumulation. This design eliminates the need for a larger collection box with an incompatible capacity to prevent overflow, saving space and improving the convenience and adaptability of the collection operation. Attached Figure Description
[0012] Figure 1 This is a three-dimensional structural diagram of the present invention.
[0013] Figure 2 This is a schematic diagram of the installation structure of the guide component of this utility model.
[0014] Figure 3 This is a schematic diagram showing the connection relationship between the gear and the gear ring of this utility model.
[0015] Figure 4 This is a schematic diagram showing the connection relationship between the linear motor and the moving plate of this utility model.
[0016] The markings in the attached diagram are as follows: 1: base plate, 2: machine body, 3: tilting assembly, 4: controller, 5: material guiding assembly, 501: fixing ring, 502: guide half-cylinder, 503: mounting plate, 504: rotary motor, 505: gear, 506: rotating half-cylinder, 507: gear ring, 6: seat plate, 7: linear motor, 8: moving seat, 9: collection box, 10: raised edge, 11: super smooth surface layer, 12: transition plate, 13: roller. Detailed Implementation
[0017] The present invention will now be described more fully below with reference to the accompanying drawings, in which presently preferred embodiments of the invention are shown. However, the present invention may be embodied in many different forms and should not be construed as limited to the embodiments set forth herein; rather, these embodiments are provided for thoroughness and completeness, and to fully convey the scope of the invention to those skilled in the art.
[0018] Example: A post-vulcanization dryer for the production of intelligent antibacterial latex gloves, see reference. Figures 1-3 The system includes: a base plate 1; a machine body 2, rotatably mounted on the base plate 1, with its rotating shaft located at the bottom front side and its inlet / outlet located at the middle front side, directly connected to the internal roller; a tilting assembly 3, mounted on the base plate 1 and connected to the machine body 2, used to control the tilting of the machine body 2 around the rotating shaft; a controller 4, fixedly mounted on the machine body 2, used for overall operation control of the equipment; and also includes: a material guiding assembly 5, located on the outer periphery of the inlet / outlet of the machine body 2, used to limit the unloading range of the gloves to achieve centralized discharge; The material guiding assembly 5 includes: a fixed ring 501, which is fixedly installed on the outer periphery of the inlet and outlet of the machine body 2; a guide half-cylinder 502, which is fixedly installed on the fixed ring 501 and occupies half of the circumferential position of the fixed ring 501; a rotating half-cylinder 506, which is slidably installed on the fixed ring 501 and can move to cover the other half of the circumferential position of the fixed ring 501; a mounting plate 503, which is fixedly installed on the upper outer side of the inlet and outlet of the machine body 2; a rotary motor 504, which is fixedly installed on the mounting plate 503 and electrically connected to the controller 4; a gear 505, which is fixedly installed on the output shaft of the rotary motor 504; and a gear ring 507, which is fixedly installed on the outer diameter of the rotating half-cylinder 506 and meshes internally with the gear 505.
[0019] During operation, the rotary motor 504 is started, and the rotating half-cylinder 506 is driven to move through the transmission structure between the gear 505 and the gear ring 507. When the gloves are dried and need to be discharged, the rotating half-cylinder 506 is controlled to move to form a complete annular guide channel together with the guide half-cylinder 502. During the discharge process, when the machine body 2 is tilted and its internal roller is controlled to rotate, the gloves can be collected in an orderly manner by the centralized guidance of this guide channel, avoiding the gloves from scattering or becoming contaminated. After collection, the rotating half-cylinder 506 is controlled to move back and overlap with the guide half-cylinder 502 to reduce the space occupied by the structure and facilitate the smooth feeding of the next batch of gloves.
[0020] See Figure 1 and Figure 4 It also includes: a base plate 6, which is fixedly installed on the front side of the base plate 1; a linear motor 7, which is fixedly installed on the base plate 6 and is electrically connected to the controller 4; a movable seat 8, which is slidably installed on the base plate 6, and its sliding direction is horizontal left and right, and is fixed to the control end of the linear motor 7; and a collection box 9, which is placed on the movable seat 8.
[0021] During the glove discharge process, the linear motor 7 drives the moving seat 8 to move the collection box 9 back and forth horizontally, so that the gloves can be evenly distributed in the collection box 9 when they fall, thus making full use of the box volume and avoiding the gloves from overflowing due to local accumulation. This design eliminates the need to select a larger collection box 9 with an unsuitable capacity to prevent overflow, which saves space and improves the convenience and adaptability of the collection operation.
[0022] See Figures 1-3 The inner walls of both the guide half-cylinder 502 and the rotating half-cylinder 506 are provided with an ultra-slippery surface layer 11 to reduce the coefficient of friction between the glove and the walls of each half-cylinder, ensuring smooth movement of the glove during material discharge and reducing obstruction or accumulation. It also includes: a raised edge 10, fixedly installed around the movable seat 8 to limit the position of the collection box 9 and enhance its placement stability; the front side of the movable seat 8 does not have a raised edge 10 to facilitate quick loading and unloading of the collection box 9; a transition plate 12, fixedly installed on the mating ends of the guide half-cylinder 502 and the rotating half-cylinder 506 to smoothly cover the seam between them, preventing the glove from getting stuck in the gap during material discharge; and a roller 13, rotatably installed on the movable seat 8 to assist the collection box 9 in moving on its surface, further improving the convenience and efficiency of loading and unloading the collection box 9.
[0023] Although the present invention has been described with reference to exemplary embodiments, it should be understood that the present invention is not limited to the disclosed exemplary embodiments. The scope of the following claims should be given the broadest interpretation in order to cover all variations and equivalent structures and functions.
Claims
1. A post-cure oven for the production of intelligent antimicrobial latex gloves, comprising: The base plate (1), the machine body (2), the tilting assembly (3) and the controller (4); characterized in that: it also includes: a material guiding assembly (5), which is disposed on the outer periphery of the inlet and outlet of the machine body (2) for limiting the unloading range of the gloves; The material guiding assembly (5) includes: a fixed ring (501), which is fixedly connected to the outer periphery of the inlet and outlet of the machine body (2); a guide half-cylinder (502), which is fixedly connected to the fixed ring (501) and occupies half of the circumferential position of the fixed ring (501); a rotating half-cylinder (506), which is slidably connected to the fixed ring (501) and can move to cover the other half of the circumferential position of the fixed ring (501); a mounting plate (503), which is fixedly connected to the upper part of the inlet and outlet of the machine body (2); a rotary motor (504), which is fixedly connected to the mounting plate (503) and electrically connected to the controller (4); a gear (505), which is fixedly connected to the output shaft of the rotary motor (504); and a gear ring (507), which is fixedly connected to the outer diameter of the rotating half-cylinder (506) and meshes with the gear (505).
2. The post-cure oven for producing an intelligent antimicrobial latex glove according to claim 1, further comprising include: The seat plate (6) is fixedly connected to the front side of the base plate (1); the linear motor (7) is fixedly connected to the seat plate (6) and is electrically connected to the controller (4); the movable seat (8) is slidably connected to the seat plate (6), and its sliding direction is horizontal left and right, and it is fixed to the control end of the linear motor (7); the collection box (9) is placed on the movable seat (8).
3. A post-cure oven for the production of intelligent antimicrobial latex gloves according to claim 1, characterized in that: The inner walls of the guide half-cylinder (502) and the rotating half-cylinder (506) are provided with a super-slippery surface layer (11) to reduce the coefficient of friction between the glove and the walls of each half-cylinder.
4. A post-vulcanization dryer for the production of intelligent antibacterial latex gloves according to claim 2, characterized in that: it also... include: A protruding edge (10) is fixedly connected around the movable seat (8) to limit the position of the collection box (9). One side of the movable seat (8) does not have a protruding edge (10).
5. A post-vulcanization drying machine for the production of intelligent antibacterial latex gloves according to claim 1, characterized in that: it also... include: The transition plate (12) is fixedly connected to the mating ends of the guide half-cylinder (502) and the rotating half-cylinder (506) to smoothly cover the seam between them.
6. A post-vulcanization dryer for the production of intelligent antibacterial latex gloves according to claim 2, characterized in that: Also includes: The roller (13) is rotatably connected to the movable seat (8).