Taking-out device for vulcanized sealing silica gel piece
By designing a removal device with a support base, slide rail, and clamping mechanism, the problems of low efficiency and safety hazards in manual removal of sealed silicone parts were solved, achieving a fast and non-destructive removal effect.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- XIAMEN WAEXIM RUBBER CO LTD
- Filing Date
- 2025-04-28
- Publication Date
- 2026-05-12
AI Technical Summary
In the existing technology, manually removing the sealing silicone parts after vulcanization is inefficient, easily damages the product, and poses a risk of burns.
A removal device comprising a support base, slide rail, clamping mechanism, and fixing mechanism was designed. It utilizes a cylinder to drive the clamping plate to grip and lift the sealing silicone part, and combines a moving module and a receiving hopper to achieve fast and efficient removal.
It enables rapid and non-destructive removal of sealed silicone parts, improving removal efficiency and avoiding the inconvenience and safety hazards of manual operation.
Smart Images

Figure CN224224306U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of vulcanization production technology of sealed silicone parts, and in particular to a device for removing vulcanized sealed silicone parts. Background Technology
[0002] After the silicone sealing parts are vulcanized and molded, the molded silicone sealing parts need to be removed from the mold, as shown in the following figure. Figure 6 The sealing silicone parts have deep cavities inside. During molding, slender protrusions are needed to fit into the grooves of the sealing silicone parts. After vulcanization, the sealing silicone parts are inserted into the outside of the protrusions. When removing them, they need to be manually removed one by one by tweezers. Currently, this manual operation method is not only inefficient, but also prone to damage to the products of the sealing silicone parts due to inaccurate force control during manual handling. Moreover, manual operation can easily cause burns to personnel due to the high temperature of the mold after the sealing silicone parts are molded.
[0003] Therefore, to address the issue of removing the vulcanized silicone sealant after vulcanization, a device is needed to quickly remove the vulcanized silicone sealant from the mold, replacing the existing manual removal method and thus solving many problems caused by manual removal. Summary of the Invention
[0004] The purpose of this invention is to provide a device for removing vulcanized silicone sealant parts, so as to solve the problem of manually removing silicone sealant parts with deep cavity grooves from the protrusions of slender molds, and to achieve rapid and efficient removal of silicone sealant parts with deep cavity grooves.
[0005] To achieve the above objectives, this utility model is implemented as follows: A device for removing vulcanized silicone sealant components includes a support base. The upper surface of the support base has a platform. A pair of slide rails are provided on both sides of the platform. A mold positioning plate for fixing a mold is fixed between the pair of slide rails. A clamping mechanism is slidably provided between the pair of slide rails. The clamping mechanism includes a pair of sliding seats slidably disposed on the slide rails. The sliding seats are connected by a crossbeam. A first cylinder is fixed on the crossbeam. A connecting plate is provided at the telescopic rod end of the first cylinder. A second cylinder is provided at the bottom of the connecting plate and is disposed opposite to it. A clamping plate is provided at the telescopic rod end of the second cylinder. The clamping plates formed a clamping structure with a movable opening between them. When clamping the silicone sealant component, the clamping mechanism slides above the row of silicone sealant components. By means of the first cylinder, the connecting plate descends, causing the clamping plate to fall on both sides of the silicone sealant component. By means of the second cylinder, the clamping plate clamps the silicone sealant component. After the first cylinder rises, the silicone sealant component is removed from the mold.
[0006] Furthermore, the bottom of the sliding seat is provided with a slider corresponding to the slide rail, and the slider and the slide rail are in sliding engagement. Through the sliding engagement between the slide rail and the slider, the clamping mechanism can easily slide between the slide rails, thereby facilitating the clamping mechanism to effectively clamp and remove rows of sealing silicone parts arranged in rows on the mold.
[0007] Furthermore, one of the slide rails is provided with a moving module parallel to the slide rail. The moving module is provided with a sliding plate connected to the clamping mechanism. By moving the membrane assembly, the clamping mechanism can slide between the slide rails, thereby clamping out the sealing silicone parts on the mold in rows.
[0008] Furthermore, the support base has a rectangular opening on one side of its platform located between the slide rails, and a receiving hopper for guidance is provided in the rectangular opening. After the clamping mechanism clamps and removes a row of sealing silicone parts, the clamping mechanism moves above the receiving hopper via a moving diaphragm assembly. The second cylinder on the clamping mechanism releases and feeds the sealing silicone parts into the receiving hopper. The sealing silicone parts are then guided by the receiving hopper into a material frame below the platform of the support base for receiving.
[0009] Furthermore, a clamping post protruding from the side wall of the clamping plate is provided below its side wall surface. When the clamping mechanism clamps the sealing silicone part, the clamping post can effectively provide a clamping point for the sealing silicone part, preventing the clamping mechanism from slipping during clamping.
[0010] Furthermore, the mold positioning plate is provided with multiple positioning pins. During mold positioning, the fixing holes on the mold are positioned by the positioning pins fitted onto the mold positioning plate. After the mold is positioned, it is convenient for the clamping mechanism to clamp the sealing silicone part from the protrusions of the mold.
[0011] Furthermore, the support base has multiple fixing mechanisms on its platform, which surround the outside of the mold positioning plate. Each fixing mechanism includes a telescopic rotary cylinder and a rotating arm with one end connected to the telescopic rod end of the cylinder. The other end of the rotating arm has an adjustable screw. The fixing mechanism rotates the rotating arm via the telescopic rotary cylinder, positioning the adjusting screw above the mold. The adjusting screw then descends via the cylinder, clamping the mold. This fixing mechanism prevents the mold, positioned on the mold positioning plate, from being lifted when the clamping mechanism picks up the sealing silicone part. The adjusting screw's height can be adjusted by changing the length of the rotating arm as it rotates in or out, ensuring that the fixing mechanism can optimally clamp and position the mold.
[0012] This invention allows for the convenient and rapid removal of rows of sealing silicone parts from the mold via a clamping mechanism, and the transfer of the sealing silicone parts to the material frame via a receiving hopper. This greatly improves the efficiency of removing sealing silicone parts from the convex pins of the slender mold in deep cavity grooves. The use of a cylinder to clamp and lift the sealing silicone parts also ensures uniform force during removal, preventing damage to the sealing silicone parts in deep cavity grooves during the removal process. Attached Figure Description
[0013] Figure 1 This is one of the three-dimensional structural schematic diagrams of this utility model.
[0014] Figure 2 This is the second three-dimensional structural schematic diagram of the present utility model.
[0015] Figure 3 This is a three-dimensional structural diagram of the present utility model.
[0016] Figure 4 This is one of the three-dimensional structural diagrams of the clamping mechanism of this utility model.
[0017] Figure 5 This is the second three-dimensional structural diagram of the clamping mechanism of this utility model.
[0018] Figure 6 This is a schematic diagram of the three-dimensional structure of a vulcanized silicone sealant after molding.
[0019] The components are: 1-support base, 11-slide rail, 12-feeding hopper, 2-moving module, 21-sliding plate, 3-clamping mechanism, 31-sliding seat, 32-crossbeam, 33-first cylinder, 34-connecting plate, 35-second cylinder, 36-clamping plate, 361-clamping column, 37-slider, 4-mold positioning plate, 41-positioning column, 5-fixing mechanism, 51-telescopic rotary cylinder, 52-rotating arm, 53-adjusting screw, 6-mold, 61-protruding nail, 62-fixing hole, 63-handle, 7-sealing silicone part, 8-material frame. Detailed Implementation
[0020] To further explain the technical solution of this utility model, the following detailed description is provided through specific embodiments.
[0021] Reference Figure 1 , Figure 2 A device for removing vulcanized silicone sealant includes a support base 1. The upper surface of the support base 1 has a platform. A pair of slide rails 11 are provided on both sides of the platform. A mold positioning plate 4 for fixing a mold 6 is fixed between the pair of slide rails 11. The mold positioning plate 4 is provided with multiple positioning posts 41. A clamping mechanism 3 is slidably provided between the pair of slide rails 11. (Refer to...) Figure 3 , Figure 6The mold 6 is provided with multiple fixing holes 62 corresponding to the mold positioning plate 4. When the mold 6 is positioned, the mold 6 is lifted onto the mold positioning plate 4 by the handle 63. The positioning is achieved by using the fixing holes 62 on the mold 6 to fit the positioning pins 41 on the mold positioning plate 4. After the mold 6 is positioned, it is convenient for the clamping mechanism 3 to clamp the sealing silicone part 7 from the protrusions 61 of the mold 6.
[0022] Reference Figure 4 , Figure 5 In this embodiment, the clamping mechanism 3 includes a pair of sliding seats 31 slidably disposed on the slide rail 11. The bottom of each sliding seat 31 has a slider 37 corresponding to the slide rail 11. The slider 37 and the slide rail 11 are in sliding engagement. Through the sliding engagement between the slide rail 11 and the slider 37, the clamping mechanism 3 can easily slide between the slide rails 11. Furthermore, a moving module 2 parallel to the slide rail 11 is provided outside one of the slide rails 11. The moving module 2 has a sliding plate 21 connected to the clamping mechanism 3. The moving module 2 enables the clamping mechanism 3 to slide between the slide rails 11. The sliding seats 31 are connected by a crossbeam 32, on which a first cylinder 33 is fixed. The telescopic rod end of the cylinder 33 is provided with a connecting plate 34, and the bottom of the connecting plate 34 is provided with a second cylinder 35 arranged opposite to it. The telescopic rod end of the second cylinder 35 is provided with a clamping plate 36. Preferably, there are two pairs of second cylinders 35 arranged opposite to each other, and the clamping plates 36 arranged opposite to each other form a clamping structure with a movable opening. When clamping the sealing silicone part 7, the clamping mechanism 3 slides above the row of sealing silicone parts 7 through the slide rail 11. Then, through the first cylinder 33, the connecting plate 34 descends, causing the clamping plates 36 to fall on both sides of the sealing silicone part 7. Using the second cylinder 35, the two clamping plates 36 arranged opposite to each other clamp the sealing silicone part 7. Then, after the first cylinder 33 is raised, the sealing silicone part 7 is taken out from the mold 6.
[0023] In this embodiment, a clamping post 361 protruding from the side wall of the clamping plate 36 is provided below its side wall. When the clamping mechanism 3 clamps the sealing silicone part 7, the clamping post 361 can provide a good clamping point for the sealing silicone part 7, preventing the clamping mechanism 3 from slipping during clamping. The length of the clamping plate 36 is matched with the corresponding row of sealing silicone parts 7, so that the clamping mechanism 3 can achieve the synchronous removal of the row of sealing silicone parts 7 when clamping the sealing silicone parts 7. The clamping mechanism 3 can clamp multiple sealing silicone parts 7 at one time, which greatly improves the clamping efficiency of the clamping mechanism 3.
[0024] In this embodiment, the support base 1 is provided with a receiving hopper 12 for convenient material collection. Specifically, a rectangular opening is provided on one side of the support base 1 between the slide rails 11. The receiving hopper 12 is provided on the rectangular opening and can receive the sealing silicone part 7 received from the receiving hopper 12 in the material frame 8 below the support base 1.
[0025] In this embodiment, to prevent the mold 6 from being lifted and loosened during the clamping of the sealing silicone part 7 by the clamping mechanism 3, the support base 1 is provided with multiple fixing mechanisms 5. The fixing mechanisms 5 surround the outside of the mold positioning plate 4. The fixing mechanism 5 includes a telescopic rotary cylinder 51 and a rotating arm 52 with one end connected to the telescopic rod end of the telescopic rotary cylinder 51. The other end of the rotating arm 52 is provided with an adjustable adjusting screw 53. When the fixing mechanism 5 fixes the mold 6, the fixing mechanism 5 rotates the rotating arm 52 through the telescopic rotary cylinder 51 so that the adjusting screw 53 is above the mold 6. When the telescopic rotary cylinder 51 is activated, the adjusting screw 53 descends and clamps the mold 6. The adjusting screw 53 can be adjusted in height by adjusting its length when it is screwed in or out of the rotating arm 52, thereby ensuring that the fixing mechanism 5 can optimally clamp and position the mold 6. When the mold 6 needs to be removed, the fixing mechanism 5 lifts the adjusting screw 53 through the telescopic rotary cylinder 51 and rotates it to the outside of the mold positioning plate 4.
[0026] This invention enables the quick removal of rows of sealing silicone parts 7 from the mold 6 via the clamping mechanism 3, and the transfer of the sealing silicone parts 7 to the material frame 8 via the receiving hopper 12, which greatly improves the efficiency of removing the sealing silicone parts 7 from the protrusions 61 of the slender mold 6 in the deep cavity groove.
[0027] The above embodiments merely illustrate the implementation of this utility model, and their descriptions are relatively specific and detailed, but they should not be construed as limiting the scope of this utility model patent. It should be noted that those skilled in the art can make several modifications and improvements without departing from the concept of this utility model, and these all fall within the protection scope of this utility model.
Claims
1. A device for removing a vulcanized silicone sealant, comprising a support base, the upper surface of which has a platform, characterized in that: A pair of slide rails are provided on both sides of the tabletop. A mold positioning plate for fixing the mold is fixed between the pair of slide rails. A clamping mechanism is slidably provided between the pair of slide rails. The clamping mechanism includes a pair of sliding seats slidably disposed on the slide rails. The sliding seats are connected by a crossbeam. A first cylinder is fixed on the crossbeam. A connecting plate is provided at the telescopic rod end of the first cylinder. A second cylinder is provided at the bottom of the connecting plate and is disposed opposite to it. A clamping plate is provided at the telescopic rod end of the second cylinder. The clamping plates disposed opposite to each other form a clamping structure with a movable opening. When clamping the sealing silicone parts, the clamping mechanism slides above the row of sealing silicone parts. With the help of the first cylinder, the connecting plate descends, causing the clamping plate to fall on both sides of the sealing silicone parts. With the help of the second cylinder, the clamping plate clamps the sealing silicone parts. After the first cylinder rises, the sealing silicone parts are removed from the mold.
2. The device for removing a vulcanized sealing silicone part according to claim 1, characterized in that: The bottom of the sliding seat is provided with a slider corresponding to the slide rail, and the slider and the slide rail are in sliding engagement.
3. The device for removing a vulcanized sealing silicone part according to claim 1, characterized in that: One of the slide rails has a movable module parallel to the slide rail on its exterior, and the movable module has a sliding plate connected to the clamping mechanism.
4. The device for removing a vulcanized sealing silicone part according to claim 3, characterized in that: The support base has a rectangular opening on one side of its platform located between the slide rails, and a guide hopper is provided in the rectangular opening.
5. The device for removing a vulcanized sealing silicone part according to claim 4, characterized in that: A clamping post protruding from the side wall of the clamping plate is provided below its side wall surface.
6. The device for removing a vulcanized sealing silicone part according to claim 1, characterized in that: The mold positioning plate is provided with multiple positioning posts.
7. The device for removing a vulcanized sealing silicone part according to claim 1, characterized in that: The support base has multiple fixing mechanisms on its platform. The fixing mechanisms surround the outside of the mold positioning plate. Each fixing mechanism includes a telescopic rotary cylinder and a rotating arm with one end connected to the telescopic rod end of the telescopic rotary cylinder. The other end of the rotating arm is provided with an adjustable adjusting screw. The fixing mechanism rotates the rotating arm through the telescopic rotary cylinder so that the adjusting screw is located above the mold. The adjusting screw descends and clamps the mold by means of the telescopic rotary cylinder.