Waste shunting mechanism of glove turn-over machine
By designing a waste diversion mechanism for a glove turning machine, and utilizing components such as signal connection, air blowing, push plate, transmission belt and diversion plate, the problem of the inability to separate waste from the glove turning machine was solved, and the precise diversion and processing of different types of waste was achieved.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-11
- Publication Date
- 2026-03-24
AI Technical Summary
In existing technologies, the waste discharged from glove turning machines cannot be effectively separated into two types: improperly fitted and defective, leading to difficulties in subsequent processing.
A waste diversion mechanism for a glove turning machine was designed, including a waste conveying device and a diversion action device. Through components such as signal connection, air blowing, push plate, transmission belt and diversion plate, different types of waste are diverted.
This method enables the effective separation of glove waste, facilitating subsequent processing based on different types and improving processing efficiency and accuracy.
Smart Images

Figure CN224030076U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the field of glove production, especially a glove turner waste material shunting mechanism. BACKGROUND
[0002] Gloves are a kind of widely used labor protection products, and gloves are generally knitted by a glove knitting machine. After the gloves are produced by the glove knitting machine, subsequent processes are carried out, such as identifying defective products by a glove automatic visual identification device, packaging into bundles by a glove automatic beating packaging device, and turning over by a glove automatic turning device.
[0003] In the glove turning process, first, the gloves are sleeved on the turning hand mold, and then the gloves are turned over to the taking hand mold by the turning rod or the turning frame. Finally, the gloves on the taking hand mold are taken off and stacked into a stack, and then conveyed to the sleeve rubber band mechanism for glove stack sleeve hoop bundling.
[0004] Since the gloves are flexible structures, there is a situation that the gloves cannot be correctly sleeved on the turning hand mold, which needs to be removed as waste to prevent affecting the normal turning of the subsequent gloves. When the gloves have defects such as damage, they also need to be removed as waste. The glove waste removal is carried out by the waste removal mechanism included in the glove turner.
[0005] There are two processing methods for the removed glove waste. The glove waste caused by the fact that the gloves are not correctly sleeved on the turning hand mold needs to be collected and then re-turned on the glove turner. The glove waste caused by the fact that the gloves are damaged needs to be discarded as unqualified products and no longer re-turned.
[0006] In the prior art, the glove waste caused by the above two reasons is discharged from the glove turner through one waste outlet and mixed together as a whole, which is difficult to separate. UTILITY MODEL CONTENTS
[0007] To solve the problems in the prior art, the utility model provides a glove turner waste material shunting mechanism, which realizes the shunting of two different types of glove waste and facilitates different processing of different types of glove waste.
[0008] The utility model provides the technical scheme as follows:
[0009] A waste material diversion mechanism of a glove turning machine, comprising a waste material conveying device and a diversion action device, the waste material conveying device is in communication with a waste material outlet of the glove turning machine, and is used for conveying glove waste material discharged from the waste material outlet of the glove turning machine to the diversion action device, the diversion action device is in communication with a conveying outlet of the waste material conveying device, and first and second diversion ports are respectively arranged on two sides of the diversion action device, and the diversion action device is used for conveying the glove waste material conveyed by the waste material conveying device to the first or second diversion port.
[0010] Further, the diversion action device is connected with a waste removal mechanism signal of the glove turning machine.
[0011] Further, the waste material conveying device comprises a blowing port, the blowing port is connected with a gas source, and a blowing direction of the blowing port is towards a conveying outlet of the waste material conveying device.
[0012] Further, the waste material conveying device comprises a push plate, the push plate is connected with a push plate driving mechanism for controlling movement of the push plate, and a movement direction of the push plate is towards the conveying outlet of the waste material conveying device.
[0013] Further, the waste material conveying device comprises a first transmission belt, and a transmission direction of the first transmission belt is towards the conveying outlet of the waste material conveying device.
[0014] Further, the diversion action device comprises a second transmission belt, the first and second diversion ports are respectively located at two ends of the second transmission belt, and the second transmission belt can transmit towards the first and second diversion ports.
[0015] Further, the diversion action device comprises an obliquely arranged diversion plate, and the diversion plate is connected with a diversion plate driving mechanism for controlling rotation of the diversion plate.
[0016] Further, the diversion plate can be rotated to a first position and a second position under the driving of the diversion plate driving mechanism, and the glove waste material is conveyed to the first and second diversion ports when the diversion plate is located at the first and second positions.
[0017] Further, an upper open glove waste material receiving shell is arranged around the waste material conveying device, and the waste material conveying device is arranged in the glove waste material receiving shell.
[0018] Further, the diversion action device is arranged in a diversion shell, and the first and second diversion ports are respectively arranged on two sides of the diversion shell.
[0019] The glove turning machine has the following beneficial effects:
[0020] The glove turning machine waste material shunting mechanism provided by the utility model can realize shunting of two different types of glove waste materials, and facilitates subsequent different treatment of different types of glove waste materials. BRIEF DESCRIPTION OF DRAWINGS
[0021] Figures 1-4 Fig. 1 is a schematic view of a glove turning machine waste material shunting mechanism according to an embodiment of the utility model. DETAILED DESCRIPTION
[0022] In order to make the technical problems, technical solutions and advantages of the utility model clearer, the following will be described in detail in combination with the drawings and specific embodiments.
[0023] The utility model embodiment provides a kind of glove turning machine waste material shunting mechanism, as shown in Figures 1-4 Fig. 1, including waste material conveying device 100 and the shunting action device 200, waste material conveying device 100 is communicated with the waste material outlet of glove turning machine, for conveying glove waste material that the waste material outlet of glove turning machine is discharged to shunting action device 200, shunting action device 200 is communicated with the conveying outlet 1 of waste material conveying device 100, the two sides of shunting action device 200 are respectively provided with first shunt 2 and second shunt 3, and shunting action device 200 is used to convey glove waste material that waste material conveying device 100 is conveyed to shunting action device 200 on first shunt 2 or second shunt 3.
[0024] The utility model in use, the glove turning machine waste material shunting mechanism is excluded to the glove that is not correctly set and the glove with defect, and only single glove waste material is excluded each time, and single glove waste material is discharged glove turning machine.Waste material conveying device 100 receives single glove waste material that glove turning machine is discharged and is conveyed to shunting action device 200, and shunting action device 200 is according to the type of glove waste material when excluding (i.e. the glove that is not correctly set or the glove with defect), and single glove waste material is conveyed to first shunt 2 or second shunt 3, realizes the shunting of two different types of glove waste materials, and facilitates subsequent different treatment of different types of glove waste materials.
[0025] In one example, shunting action device 200 is signal connected with the waste material shunting mechanism of glove turning machine, for deciding to convey glove waste material to first shunt 2 or second shunt 3 according to the type of glove waste material given by waste material shunting mechanism.
[0026] This utility model does not limit the specific structural form of the waste conveying device; several examples are given below:
[0027] Example 1:
[0028] like Figure 1 As shown, the waste conveying device 100 includes an air inlet 4, which is connected to an air source. The air blowing direction of the air inlet 4 is towards the conveying outlet 1 of the waste conveying device 100. After the glove waste falls into the waste conveying device 100, compressed air is blown out through the air inlet, blowing the glove waste to the conveying outlet 1 and entering the diversion action device 200.
[0029] Example 2:
[0030] like Figure 2 As shown, the waste conveying device 100 includes a pusher plate 5, which is connected to a pusher plate drive mechanism that controls the movement of the pusher plate 5. The movement direction of the pusher plate 5 is towards the conveying outlet 1 of the waste conveying device 100. After the glove waste falls into the waste conveying device 100, the pusher plate is driven by the pusher plate drive mechanism to push the glove waste to the conveying outlet 1 and enter the diversion action device 200.
[0031] The push plate drive mechanism can be any power component capable of linear motion, such as a linear motor, lead screw motor, cylinder, or hydraulic cylinder; this invention does not impose any limitations on this. The push plate 5 can be mounted on the guide shaft 6 for guidance.
[0032] Example 3:
[0033] like Figure 3 , 4 As shown, the waste conveying device 100 includes a first transmission belt 7, the conveying direction of which faces the conveying outlet 1 of the waste conveying device 100. After the glove waste falls onto the first transmission belt 7, it is conveyed to the conveying outlet 1 by the first transmission belt 7 and enters the diversion action device 200.
[0034] The aforementioned waste conveying devices 100 may be surrounded by an open-top glove waste receiving shell 8, with the waste conveying device 100 disposed inside the glove waste receiving shell 8.
[0035] This utility model does not limit the specific structural form of the diversion action device; several examples are given below:
[0036] Example 4:
[0037] like Figure 4As shown, the diversion device 200 includes a second transmission belt 9, a first diversion port 2 and a second diversion port 3 located at the two ends of the second transmission belt 9 respectively, and the rotation direction of the motor of the second transmission belt 9 can be either forward or reverse, so that the second transmission belt 9 can transmit in the direction of the first diversion port 2 and the second diversion port 3.
[0038] Example 5:
[0039] like Figures 1-3 As shown, the diversion device 200 includes an inclined diversion plate 10, and the diversion plate 10 is connected to a diversion plate drive mechanism 11 that controls the rotation of the diversion plate 10.
[0040] The diverter plate 10 can rotate to a first position and a second position under the drive of the diverter plate drive mechanism 11. When the diverter plate is in the first position and the second position, it conveys the glove waste to the first diverter port 2 and the second diverter port 3 respectively.
[0041] The diverter plate 10 is tilted and can be rotated to a first position tilted towards the first diverter port 2. In this position, the glove waste is guided by the diverter plate 10 to the first diverter port 2 during its fall. It can also be rotated to a second position tilted towards the second diverter port 3. In this position, the glove waste is guided by the diverter plate 10 to the second diverter port 3 during its fall.
[0042] The distributor drive mechanism 11 can be a power component such as a motor or a rotary cylinder, and this utility model does not limit it.
[0043] In Examples 4 and 5, the diversion device 200 can be housed within the diversion housing 12, with the first diversion port 2 and the second diversion port 3 respectively located on both sides of the diversion housing 12. Of course, it can also be housed outside the housing as needed; this invention does not impose limitations on this design.
[0044] The waste conveying device 100 and the diversion device 200 in the above examples can be combined in any two pairs to form various specific embodiments. This utility model does not impose any limitations on this. Figures 1-4 The accompanying drawings show only some specific embodiments and do not represent that this utility model has only these embodiments.
[0045] The above description is the preferred embodiment of this utility model. It should be noted that for those skilled in the art, several improvements and modifications can be made without departing from the principle of this utility model, and these improvements and modifications should also be considered within the protection scope of this utility model.
Claims
1. A waste diversion mechanism for a glove turning machine, characterized in that, The device includes a waste conveying device and a diversion device. The waste conveying device is connected to the waste outlet of the glove turning machine and is used to convey the glove waste discharged from the waste outlet of the glove turning machine to the diversion device. The diversion device is connected to the conveying outlet of the waste conveying device. A first diversion port and a second diversion port are respectively provided on both sides of the diversion device. The diversion device is used to convey the glove waste conveyed by the waste conveying device to the diversion device to the first diversion port or the second diversion port.
2. The waste diversion mechanism for the glove turning machine according to claim 1, characterized in that, The diversion device is signal-connected to the waste removal mechanism of the glove turning machine.
3. The waste diversion mechanism for the glove turning machine according to claim 1, characterized in that, The waste conveying device includes an air blowing port, which is connected to an air source, and the air blowing direction of the air blowing port is towards the conveying outlet of the waste conveying device.
4. The waste diversion mechanism for the glove turning machine according to claim 1, characterized in that, The waste conveying device includes a push plate, which is connected to a push plate drive mechanism for controlling the movement of the push plate. The direction of movement of the push plate is toward the conveying outlet of the waste conveying device.
5. The waste diversion mechanism for the glove turning machine according to claim 1, characterized in that, The waste conveying device includes a first transmission belt, the transmission direction of which is toward the conveying outlet of the waste conveying device.
6. The waste diversion mechanism for a glove turning machine according to any one of claims 1-5, characterized in that, The diversion device includes a second transmission belt, with the first diversion port and the second diversion port located at opposite ends of the second transmission belt, and the second transmission belt is capable of conveying in the direction of the first diversion port and the second diversion port.
7. The waste diversion mechanism for a glove turning machine according to any one of claims 1-5, characterized in that, The diversion device includes an inclined diversion plate, which is connected to a diversion plate drive mechanism that controls the rotation of the diversion plate.
8. The waste diversion mechanism for the glove turning machine according to claim 7, characterized in that, The diverter plate can rotate to a first position and a second position under the drive of the diverter plate driving mechanism. When the diverter plate is in the first position and the second position, it conveys the glove waste to the first diverter port and the second diverter port, respectively.
9. The waste diversion mechanism for a glove turning machine according to claim 8, characterized in that, The waste conveying device is surrounded by an open-top glove waste receiving shell, and the waste conveying device is located inside the glove waste receiving shell.
10. The waste diversion mechanism for a glove turning machine according to claim 9, characterized in that, The diversion device is installed inside the diversion housing, and the first diversion port and the second diversion port are respectively located on both sides of the diversion housing.