Separating device and injection molding equipment
By designing the base and sliding parts of the separation device, and using the driving components to achieve automated separation of the rubber head and the mold, the problems of low separation efficiency and poor safety in the existing technology are solved, thereby improving separation efficiency and safety, and enhancing the versatility and operational flexibility of the device.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-14
- Publication Date
- 2026-04-10
AI Technical Summary
In existing technologies, the separation effect between the injection head and the injection mold is poor, resulting in low separation efficiency and safety risks, especially the high risk of injury to operators under high temperature conditions.
Design a separation device including a base and a slider. The clamping space is defined by a first through hole and a second through hole. A driving component is used to make the slider slide to clamp the rubber head and drive the base to move to separate the rubber head from the mold. Multiple through holes and guide components are combined to improve clamping stability and operation automation.
It improves the separation efficiency and safety of the rubber head, reduces labor costs, enhances the versatility and operational flexibility of the device, adapts to the separation of rubber heads of different specifications and positions, and reduces the risks of manual operation.
Smart Images

Figure CN224103379U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to injection molding equipment technical field, especially injection molding equipment with a kind of separating device of the separating device;Meanwhile, the utility model also relates to a kind of injection molding equipment with the separating device. BACKGROUND
[0002] In injection molding process, glue head is as the accessory product in the injection molding process, its proper handling is crucial to guarantee product quality, mold life and production efficiency to be shaped in injection mold. If the separation effect of glue head and injection mold is poor, it will affect the appearance and use performance of injection product. At present, it is usually necessary for operator to clean glue head in injection mold manually, not only separation efficiency is low, but also there is the risk of scalding operator when the temperature of injection mold is high. SUMMARY
[0003] Therefore, the utility model aims at providing a kind of separating mold to facilitate the separation of glue head and injection mold.
[0004] To achieve the above-mentioned purpose, the technical scheme of the utility model is as follows:
[0005] A kind of separating device, for separating glue head shaped on injection mold, the separating device includes base capable of sliding along first direction, and sliding member is arranged on the base along second direction, the second direction is orthogonal with the first direction;
[0006] First through-hole is arranged on the base, second through-hole is arranged on the sliding member, the projection of the second through-hole and the first through-hole in the first direction at least partially coincides, and defines the clamping space for the glue head insertion between the first through-hole and the second through-hole;
[0007] When the sliding member is driven to slide to clamping position, the inserted glue head can be clamped in the clamping space, and the base is driven to move along the first direction, can drive the clamped glue head and the injection mold to separate.
[0008] Further, cavity is arranged in the base, and the sliding member is slidably arranged in the cavity;The first through-hole is arranged through the base, and the two opposite sides of the sliding member are respectively provided with the first through-hole.
[0009] Further, the first through-hole is a plurality of through-holes arranged on the base, and the second through-hole is a plurality of through-holes corresponding to the first through-hole;And / or, guiding portion is arranged between the base and the sliding member, and the guiding portion is used to guide the sliding member to slide along the second direction.
[0010] Further, the separating device further comprises a first driving part arranged on the base, and the first driving part is used for driving the sliding part to slide along the second direction.
[0011] Further, a driving end of the first driving part is provided with a transmission plate, the transmission plate is connected with the sliding part through insertion and assembly, the first driving part drives the sliding part to slide through the transmission plate, and a guide part for guiding the transmission plate to move is arranged on the first driving part.
[0012] Further, the separating device further comprises a second driving part, and the first driving part is arranged on a driving end of the second driving part; the second driving part drives the base to move along the first direction through the first driving part.
[0013] Further, an angle adjusting part is arranged between the driving ends of the first driving part and the second driving part, and the angle adjusting part is used for adjusting the installation angle of the first driving part on the second driving part.
[0014] Further, the angle adjusting part comprises a plurality of arc-shaped holes arranged on the driving end of the second driving part along a circumferential direction of a preset axis, and a connecting piece penetrating through each arc-shaped hole, and the preset axis is parallel to the first direction; the first driving part is detachably connected with the second driving part through the connecting piece.
[0015] Further, the separating device further comprises a third driving part; the second driving part is arranged on a driving end of the third driving part, and the third driving part can drive the base to move along a third direction through the second driving part, and the third direction is orthogonal to the first direction.
[0016] Compared with the prior art, the separating device has the following advantages:
[0017] The separating device limits the clamping space for inserting the glue head between the first through hole and the second through hole, drives the sliding part to slide to clamp the glue head through the clamping space, drives the base to slide along the first direction to separate the clamped glue head from the injection mold, compared with the scheme of manually separating the glue head, is beneficial to improve the separation efficiency and safety of the glue head, and is also beneficial to separate glue heads of different specifications, thereby having good versatility.
[0018] Second, the sliding member is slidably arranged in the cavity, which is beneficial to improve the protection effect of the sliding member, and the first through hole is arranged on both sides of the sliding member, which is beneficial to increase the contact area between the inner wall of the first through hole and the rubber head, thereby improving the clamping stability of the clamping space to the rubber head. The plurality of first through holes and the plurality of second through holes corresponding to the plurality of first through holes can simultaneously clamp and separate a plurality of rubber heads, compared with a single through hole design, which is beneficial to improve the separation efficiency and save time and labor cost. When clamping a plurality of rubber heads, the plurality of clamping spaces cooperate to improve the stress uniformity during the separation of the rubber heads, and the separation effect of the rubber heads can be further improved. The sliding member is guided to slide in the second direction by the guide portion, which is beneficial to improve the sliding stability of the sliding member, thereby ensuring the clamping effect of the clamping space to the rubber head. The first driving portion drives the sliding member to slide in the second direction without manual operation, which is beneficial to improve the automation degree of operation, save labor cost, reduce the risk of injury to the operator, and improve work efficiency.
[0019] Furthermore, the driving force generated by the first driving portion can be transmitted to the sliding member by inserting the transmission plate and the sliding member, and guiding the transmission plate to move by the guide portion, which is beneficial to ensure that the sliding member slides smoothly in the second direction, thereby improving the clamping stability of the rubber head. The first driving portion and the base are moved in the first direction by the second driving portion, which cooperates with the sliding of the sliding member in the second direction by the first driving portion, which is beneficial to further improve the separation efficiency of the rubber head. The base can be further improved without manual movement, which can further improve production efficiency and reduce labor cost. The angle adjusting portion can adjust the installation angle of the first driving portion on the second driving portion, so that the state of the base and the sliding member can be adjusted, so that the angle of the base and the sliding member can be adjusted according to the shape, position and structure characteristics of the injection mold, so as to facilitate the clamping and separation operation of the rubber head, so that the separation device has good operation flexibility and adaptability.
[0020] In addition, the installation angle of the first driving portion can be adjusted by adjusting the position of the connecting piece in the arc-shaped hole, so that the base and the sliding member can be adjusted in place according to the respective conditions of the rubber head, and the structure of the arc-shaped hole is simple and easy to arrange and implement. The base is moved in the third direction orthogonal to the first direction by the third driving portion, which cooperates with the sliding of the sliding member in the second direction by the first driving portion and the movement of the base in the first direction by the second driving portion, so that the separation device can move flexibly in three-dimensional space, which is beneficial to improve the operation flexibility and adaptability of the separation device. It can be more convenient to clamp and separate rubber heads with different positions and shapes, and has good use flexibility.
[0021] In addition, another object of the utility model is to provide an injection molding equipment, which is provided with the separation device as described above.
[0022] The injection molding equipment described in this utility model, by setting the separation device as described above, helps to improve the separation efficiency of the injection head, thereby helping to ensure the performance of the injection molding equipment. Attached Figure Description
[0023] The accompanying drawings, which form part of this utility model, are used to provide a further understanding of the utility model. The illustrative embodiments of the utility model and their descriptions are used to explain the utility model and do not constitute an undue limitation of the utility model. In the drawings:
[0024] Figure 1 This is a schematic diagram of the separation device described in Embodiment 1 of this utility model;
[0025] Figure 2 This is a schematic diagram of the base and sliding member described in Embodiment 1 of this utility model from one perspective;
[0026] Figure 3 This is a schematic diagram of the base and sliding member described in Embodiment 1 of this utility model from another perspective;
[0027] Figure 4 This is a top view of the base and sliding member described in Embodiment 1 of this utility model;
[0028] Figure 5 for Figure 4 Sectional view along direction AA in the middle;
[0029] Figure 6 This is a schematic diagram of the structure of the base described in Embodiment 1 of this utility model;
[0030] Figure 7 This is a schematic diagram of the structure of the lower plate and sliding member according to Embodiment 1 of this utility model;
[0031] Figure 8 This is a schematic diagram of the sliding component described in Embodiment 1 of this utility model;
[0032] Figure 9 This is a schematic diagram of the structure of the first driving unit and the second driving unit at the connection point according to Embodiment 1 of this utility model;
[0033] Figure 10 This is a schematic diagram of the structure of the first driving unit, mounting base, and connecting base as described in Embodiment 1 of this utility model;
[0034] Figure 11 This is a schematic diagram of the structure of the first driving unit and the mounting base as described in Embodiment 1 of this utility model.
[0035] Explanation of reference numerals in the attached figures:
[0036] 1, base; 2, sliding piece; 3, first driving part; 4, mounting seat; 5, connecting seat; 6, second driving part; 7, third driving part; 8, mounting frame;
[0037] 100, clamping space; 200, cavity;
[0038] 101, upper plate; 1011, positioning block; 1012, avoiding hole; 1013, hand ring; 102, lower plate; 1021, guide block; 103, first through hole; 104, first lightening hole;
[0039] 201, second through hole; 202, guide hole; 203, second lightening hole; 204, connecting block; 2041, slot;
[0040] 301, transmission plate; 3011, plug block;
[0041] 401, bottom plate; 402, vertical plate; 403, connecting plate; 404, first guide column;
[0042] 601, upper seat body; 602, lower seat body; 6021, arc-shaped hole; 6022, connecting piece; 603, second guide column; 604, top plate;
[0043] 801, sliding rail. DETAILED DESCRIPTION
[0044] It should be noted that the embodiments in the utility model and the features in the embodiments can be combined with each other without conflict.
[0045] In the description of the utility model, it should be noted that if the terms such as 'upper', 'lower', 'inner', 'back' and the like indicating orientation or positional relationship appear, they are based on the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the utility model and simplifying the description, and therefore cannot be understood as limiting the utility model to having a specific orientation, being constructed and operated in a specific orientation, and therefore cannot be understood as limiting the utility model. In addition, if the terms such as 'first','second' appear, they are also only for the purpose of description, and cannot be understood as indicating or implying relative importance.
[0046] In addition, in the description of the utility model, unless otherwise explicitly limited, the terms'mounting', 'connection', 'connection', 'connecting piece' should be understood broadly. For example, it can be fixedly connected, or it can be detachably connected, or integrally connected, it can be mechanically connected, or it can be electrically connected, it can be directly connected, or indirectly connected through an intermediate medium, it can be the communication between two elements. For ordinary skilled in the art, the specific meaning of the above terms in the utility model can be understood in combination with the specific circumstances.
[0047] The utility model discloses below will refer to the drawing and combine the embodiment to explain in detail.
[0048] Embodiment one
[0049] The embodiment relates to a separating device for separating a rubber head formed on an injection mold, to solve the problem of low separating efficiency and poor safety in the prior art.
[0050] In terms of overall structure, the separating device comprises a base 1 capable of sliding in a first direction, and a sliding member 2 provided on the base 1 and capable of sliding in a second direction, wherein the second direction is orthogonal to the first direction. The base 1 is provided with a first through hole 103, and the sliding member 2 is provided with a second through hole 201, wherein the second through hole 201 at least partially overlaps the first through hole 103 in the projection in the first direction, and defines a clamping space 100 for the rubber head between the first through hole 103 and the second through hole 201. When the sliding member 2 is driven to slide to a clamping position, the inserted rubber head can be clamped in the clamping space 100, and the base 1 is driven to move in the first direction, so as to separate the clamped rubber head from the injection mold.
[0051] The separating device disclosed in the embodiment defines the clamping space 100 for the rubber head between the first through hole 103 and the second through hole 201, and drives the sliding member 2 to slide to clamp the rubber head through the clamping space 100, and drives the base 1 to slide in the first direction to separate the clamped rubber head from the injection mold. Compared with the scheme of manually separating the rubber head, the separating efficiency and safety of the rubber head are improved, and different specifications of the rubber head can be separated, thereby having good versatility.
[0052] Based on the overall introduction above, an exemplary structure of the separating device disclosed in the embodiment is shown in Figure 1 For the convenience of describing the separating device, the first direction is taken as the vertical direction, and the second direction is taken as the horizontal direction. At this time, the base 1 is located above the injection mold, and the rubber head can be inserted into the clamping space 100 from bottom to top, the clamping space 100 clamps the rubber head in the horizontal direction, and drives the first driving part 3 to move in the vertical direction, so as to separate the rubber head from the injection mold.
[0053] The exemplary structure of the base 1 and the sliding member 2 in the embodiment is shown in Figures 2 to 8As a preferred implementation, the base 1 is provided with a cavity 200, and the sliding member 2 is slidingly arranged in the cavity 200; the first through hole 103 is arranged through the base 1, and the two opposite sides of the sliding member 2 are respectively provided with the first through hole 103. The sliding member 2 is slidingly arranged in the cavity 200, which is beneficial to improve the protection effect of the sliding member 2, and the two sides of the sliding member 2 are provided with the first through hole 103, which is beneficial to increase the contact area between the inner wall of the first through hole 103 and the rubber head, thereby improving the clamping stability of the clamping space 100 to the rubber head.
[0054] Specifically, referring to Figures 3 to 5 As shown in FIG. 1, the base 1 preferably comprises an upper plate 101 and a lower plate 102 that are connected by being buckled together from top to bottom, wherein the lower plate 102 is provided with a concave groove, and the upper plate 101 and the lower plate 102 are detachably connected together through a plurality of circumferentially arranged connecting structures. The cooperation of the upper plate 101 and the lower plate 102 with the groove facilitates the formation of the cavity 200 in the base 1.
[0055] In addition, the upper plate 101 and the lower plate 102 have the advantages of simple structure and easy arrangement and implementation. By detaching the connecting structure, the sliding member 2 in the base 1 can be installed or removed, thereby facilitating the replacement and maintenance of the sliding member 2. Considering that the sliding member 2 needs to slide in the cavity 200, the length of the cavity 200 in the second direction should meet the sliding requirements of the sliding member 2.
[0056] As a preferred implementation, the first through hole 103 is a plurality of through holes arranged on the base 1, and the second through hole 201 is a plurality of through holes arranged one-to-one corresponding to the first through hole 103. By arranging a plurality of first through holes 103 and a plurality of second through holes 201 corresponding one-to-one, a plurality of rubber heads can be clamped and separated at the same time, which is beneficial to improve the separation efficiency compared with the design of a single through hole, and can save time and labor cost. At the same time, when a plurality of rubber heads are clamped, the cooperation of a plurality of clamping spaces 100 facilitates the uniformity of stress during the separation of the rubber heads, and can further improve the separation effect of the rubber heads.
[0057] Specifically, referring to Figures 6 to 8 As shown in FIG. 1, a plurality of first through holes 103 and a plurality of second through holes 201 are arranged one-to-one corresponding to each other. In order to reduce the weight of the separation device, a plurality of first weight reduction holes 104 are arranged on the base 1, and a plurality of second weight reduction holes 203 are arranged on the sliding member 2. Specifically, the first weight reduction holes 104 can also be arranged one-to-one corresponding to the second weight reduction holes 203 from top to bottom. Two first through holes 103 are arranged at two opposite sides of each first weight reduction hole 104, and two second through holes 201 are arranged at two opposite sides of each second weight reduction hole 203. Of course, the positions and numbers of the through holes and the weight reduction holes can also be adjusted according to the use requirements.
[0058] In some embodiments, as shown in Figure 2 The first through hole 103 and the second through hole 201 can have the same specification, and the first through hole 103 and the second through hole 201 have the same initial position in the first direction, and the clamping space 100 is defined by the inner walls of the first through hole 103 and the second through hole 201. As the sliding member 2 is driven to slide, the overlapping area of the projections of the first through hole 103 and the second through hole 201 gradually decreases, that is, the clamping space 100 becomes smaller, and part of the inner wall of the first through hole 103 and part of the inner wall of the second through hole 201 define the clamping space 100.
[0059] In some embodiments, the first through hole 103 and the second through hole 201 can also have different specifications, for example, the first through hole 103 and the second through hole 201 have the same shape but different radial cross-sectional areas, or the first through hole 103 and the second through hole 201 have different shapes. At this time, by driving the sliding member 2 to slide, the clamping space 100 can also be made smaller, and the clamping space 100 can clamp the glue head when the sliding member 2 slides to the clamping position.
[0060] In specific implementation, the radial cross section of the first through hole 103 is preferably circular, and the radial cross section of the second through hole 201 is circular or strip-shaped. Among them, the radial cross section of the second through hole 201 is strip-shaped, which can further improve the clamping effect of different specifications of glue heads, and has better versatility. Of course, in specific implementation, the shape and size of the first through hole 103 and the second through hole 201 can be adaptively adjusted according to the use requirements.
[0061] As a preferred embodiment, a guide portion is provided between the base 1 and the sliding member 2, and the guide portion is used to guide the sliding member 2 to slide in the second direction. By guiding the sliding member 2 to slide in the second direction through the guide portion, the sliding stability of the sliding member 2 is improved, thereby ensuring the clamping effect of the clamping space 100 on the glue head.
[0062] As an example of the structure of the guide portion, as shown in Figure 7 The guide portion specifically includes a guide hole 202 extending in the second direction and arranged on the sliding member 2, and a guide block 1021 arranged on the lower plate 102 and inserted into the guide hole 202. The guide block 1021 is also strip-shaped and extends in the second direction, which is beneficial to increase the contact area between the guide block 1021 and the guide hole 202, and improve the stability of the guide portion in use. By sliding the guide block 1021 in the guide groove, the sliding member 2 can only slide in the second direction.
[0063] In addition, the guide holes 202 in the embodiment can be two that are spaced apart on the sliding member 2, and the guide blocks 1021 are two that are correspondingly arranged on the base 1. Through cooperation of the two guide holes 202 and the corresponding guide blocks 1021, the stability of the sliding member 2 in sliding is further improved.
[0064] In specific implementation, two symmetrically arranged guide holes 202 and one guide block 1021 can also be arranged. In this case, only one guide hole 202 and the guide block 1021 need to be ensured to be capable of sliding cooperation during installation, so that the convenience of installation of the sliding member 2 in the base 1 is improved on the premise of meeting the guiding requirement of the guide part. Further, the two opposite sides of the sliding member 2 can also be capable of abutting against the corresponding side walls of the groove body, so that the stability of the sliding member 2 in sliding is also improved. In addition, a hand ring 1013 for an operator to hold can also be arranged on the base 1, so as to facilitate the operator to move the base 1.
[0065] As a preferred embodiment, the separation device further comprises a first driving part 3 arranged on the base 1, and the first driving part 3 is used to drive the sliding member 2 to slide in the second direction. Through arrangement of the first driving part 3 to drive the sliding member 2 to slide in the second direction, manual operation is not needed, the automation degree of operation is improved, the labor cost is saved, the risk of injury of the operator is reduced, and the work efficiency is improved.
[0066] In the embodiment, the driving end of the first driving part 3 is provided with a transmission plate 301, the transmission plate 301 is connected to the sliding member 2 in plug-in manner, the first driving part 3 drives the sliding member 2 to slide through the transmission plate 301, and the first driving part 3 is provided with a guide part that guides the transmission plate 301 to move. Through plug-in connection of the transmission plate 301 to the sliding member 2 and guidance of the guide part to the transmission plate 301 to move, the driving force generated by the first driving part 3 can be uniformly transmitted to the sliding member 2, the sliding member 2 is stably driven to slide in the second direction, and the stability of the rubber head is improved.
[0067] In specific structure, refer to Figure 1 、 Figure 2 、 Figures 9 to 11The first driving part 3 can adopt a cylinder in the prior art. In order to facilitate the installation of the first driving part 3, a mounting seat 4 is arranged on the top of the upper plate 101, and the first driving part 3 is specifically installed on the mounting seat 4. The mounting seat 4 has a bottom plate 401 connected with the upper plate 101, two vertical plates 402 arranged on the top of the bottom plate 401 in the second direction, and a connecting plate 403 connected between the top ends of the two vertical plates 402. The first driving part 3 is installed on the outer side of one vertical plate 402, and the driving end of the first driving part 3 is arranged through the vertical plate 402, and the transmission plate 301 is located between the two vertical plates 402. Four "L"-shaped positioning blocks 1011 for positioning the four corners of the bottom plate 401 are further arranged on the upper plate 101, so as to facilitate the installation of the mounting seat 4 on the base 1.
[0068] As shown in Figure 9 The guide part in the embodiment includes two first guide columns 404 connected between the two vertical plates 402, and the transmission plate 301 is arranged through each first guide column 404 and can reciprocate in the second direction. The structure of the first guide column 404 is simple, easy to arrange and implement, has good guiding effect, and is also conducive to improving the structural strength of the mounting seat 4.
[0069] In order to facilitate the connection between the transmission plate 301 and the sliding part 2, as shown in Figure 2 , Figure 6 and Figure 7 A connecting block 204 protruding upwards is arranged on the sliding part 2, each connecting block 204 is provided with a slot 2041, and an avoiding hole 1012 is arranged on the upper plate 101 for the connecting block 204 to protrude. The bottom of the transmission plate 301 has an insertion block 3011 arranged in the slot 2041, and the sliding part 2 is connected by the insertion block 3011 and the slot 2041.
[0070] Further, the bottom of the transmission plate 301 has two insertion blocks 3011 arranged on both sides of the bottom plate 401, and the connecting block 204 is two connecting blocks 204 corresponding to the insertion blocks 3011, which is conducive to further improving the insertion stability between the transmission plate 301 and the sliding part 2. When the first driving part 3 drives the transmission plate 301 to move, the sliding part 2 can be driven to move synchronously through the slot 2041 on the connecting block 204, so that the clamping space 100 can facilitate the insertion of the glue head, clamping or releasing the glue head.
[0071] As a preferred implementation, the separating device further comprises a second driving part 6, and the first driving part 3 is arranged on the driving end of the second driving part 6; the second driving part 6 drives the base 1 to move along the first direction through the first driving part 3. Here, by arranging the second driving part 6, the efficiency of separating the rubber head is further improved, and the first driving part 3 and the base 1 do not need to be manually moved, so that the production efficiency is further improved, and the labor cost is reduced.
[0072] Specifically, as shown in FIG. 1, Figure 1 The second driving part 6 can also be a pneumatic cylinder. In order to facilitate the installation of the first driving part 3 on the driving end of the second driving part 6, a connecting seat 5 is arranged on the top of the mounting seat 4, and a lower seat body 602 is arranged on the driving end of the second driving part 6. The first driving part 3 can be installed on the driving end of the second driving part 6 by installing the connecting seat 5 on the lower seat body 602.
[0073] In order to improve the stability of the lower seat body 602 during movement, the driving end of the second driving part 6 is connected to the middle part of the lower seat body 602. The top of the second driving part 6 is further provided with an upper seat body 601, and the two ends of the lower seat body 602 are respectively provided with two second guide columns 603 extending along the first direction. Each second guide column 603 penetrates the upper seat body 601, and a top plate 604 is connected between the top ends of the two second guide columns 603 at the same end. When the second driving part 6 drives the lower seat body 602 to move along the first direction with the first driving part 3, the multiple second guide columns 603 cooperate to improve the stability of the lower seat body 602 during movement.
[0074] As a preferred implementation, an angle adjusting part is arranged between the driving end of the first driving part 3 and the second driving part 6, and the angle adjusting part is used to adjust the installation angle of the first driving part 3 on the second driving part 6. The angle adjusting part can adjust the installation angle of the first driving part 3 on the second driving part 6, so that the state of the base 1 and the sliding part 2 can be adjusted. Therefore, the angle of the base 1 and the sliding part 2 can be flexibly adjusted according to the shape, position of the rubber head and the structural characteristics of the injection mold, so as to facilitate the clamping and separating operation of the rubber head, thereby having good use flexibility.
[0075] In this embodiment, the angle adjusting part comprises multiple arc-shaped holes 6021 arranged on the driving end of the second driving part 6 along the circumference of a preset axis, and a connecting piece 6022 penetrating each arc-shaped hole 6021, and the preset axis is parallel to the first direction. The first driving part 3 is detachably connected with the second driving part 6 through the connecting piece 6022. Here, by adjusting the position of the connecting piece 6022 in the arc-shaped hole 6021, the installation angle of the first driving part 3 can be adjusted, so that the base 1 and the sliding part 2 can be adjusted to the right position according to the respective conditions of the rubber head. In addition, the structure of the arc-shaped hole 6021 is simple and convenient to arrange and implement.
[0076] Specifically, as shown in Figure 9 The preset axis is preferably the axis of the driving end of the second driving part 6, and the plurality of arc-shaped holes 6021 are coaxially arranged on the lower seat body 602. The connecting piece 6022, for example, can be a bolt, which is screwed to the connecting seat 5 after penetrating the arc-shaped hole 6021 from top to bottom. When it is necessary to adjust the position of the base 1 and the sliding part 2, the connecting piece 6022 is first disassembled, then the installation angle of the connecting seat 5 relative to the lower seat body 602 is adjusted, and finally the connecting seat 5 is installed on the lower seat body 602 through the connecting piece 6022. Here, the connecting piece 6022 adopts a bolt, which has the advantages of convenient installation and disassembly, and is also conducive to improving the convenience of angle adjustment of the base 1 and the sliding part 2.
[0077] As a preferred embodiment, the separating device further comprises a third driving part 7; the second driving part 6 is arranged on the driving end of the third driving part 7, and the third driving part 7 can drive the base 1 to move along the third direction through the second driving part 6, and the third direction is orthogonal to the first direction. By driving the base 1 to move along the third direction orthogonal to the first direction through the third driving part 7, in combination with driving the sliding part 2 to slide along the second direction through the first driving part 3 and driving the base 1 to move along the first direction through the second driving part 6, the separating device can move flexibly in three-dimensional space, which is conducive to improving the operation flexibility and adaptability of the separating device, facilitating clamping and separating the rubber heads with different positions and shapes, and having good use flexibility.
[0078] The third direction of the embodiment is the horizontal direction, and by moving the second driving part 6 horizontally, the separated rubber head can be driven to move horizontally. When the rubber head is moved to the position, the sliding part 2 is driven to slide reversely through the first driving part 3, so that the rubber head can fall into the waste box below, thereby facilitating the concentrated collection and processing of the rubber head and further reducing the labor input.
[0079] As Figure 1 The third driving part 7 can adopt a product capable of outputting linear driving force in the prior art. For example, the third driving part 7 can adopt a cylinder or a lead screw sliding table. The driving end of the third driving part 7 is specifically connected with the upper seat body 601 on the second driving part 6, so as to drive the second driving part 6 to move along the third direction. In specific implementation, the third driving part 7 can be arranged on the mounting frame 8, and in order to improve the stability of the second driving part 6 moving along the third direction, a sliding rail 801 can also be arranged on the mounting frame 8, and the upper seat body 601 is slidably arranged on the sliding rail 801.
[0080] In use, the second driving part 6 drives the first driving part 3, the base 1 and the sliding part 2 to move downwards until the base 1 abuts against the injection mold, so that the glue heads on the injection mold are respectively inserted into the corresponding clamping spaces 100; then the first driving part 3 drives the sliding part 2 to slide to the clamping position, so that the glue heads are clamped in the clamping spaces 100.
[0081] Then the second driving part 6 drives the first driving part 3 to move upwards, and further drives the clamped glue heads to move away from the injection mold, so that the glue heads are separated from the injection mold; then the third driving part 7 drives the second driving part 6 to move in the horizontal direction, and after the separated glue heads are moved to the position, the first driving part 3 drives the sliding part 2 to slide reversely, so that the clamping spaces 100 release the clamping of the glue heads, and the glue heads fall into the waste box below.
[0082] It should be noted that the third driving part 7 can not be arranged in the separating device, and in this case, after the second driving part 6 drives the clamped glue heads to move and separate from the injection mold, the injection mold is moved to make the waste box below be located below the base 1, and then the first driving part 3 drives the sliding part 2 to slide reversely, so that the clamping spaces 100 release the clamping of the glue heads, and the glue heads also fall into the waste box, thereby realizing the collection of the glue heads.
[0083] The separating device in the embodiment provides reliable guarantee for the insertion and stable clamping of the glue heads by arranging the first through hole 103 on the base 1 and the second through hole 201 on the sliding part 2, and the two through holes at least partially coincide in the first direction to form the clamping space 100. When the sliding part 2 slides to the clamping position, the glue heads can be stably clamped in the clamping space 100, and compared with the manual separation mode, the separating efficiency and reliability are improved.
[0084] In addition, the first driving part 3 drives the sliding part 2 to slide in the second direction, which not only has good clamping effect, but also can adjust the clamping space 100 to adapt to glue heads of different sizes. The second driving part 6 drives the base 1 to move in the first direction, which is beneficial to realize the separation of the glue heads from the injection mold. The third driving part 7 drives the base 1 to move in the third direction through the second driving part 6, which is beneficial to collect the glue heads, thereby improving the material head separation effect of the separating device and the flexibility in use.
[0085] Embodiment two
[0086] The embodiment relates to an injection molding equipment provided with the separating device in the embodiment one.
[0087] The injection molding equipment of the embodiment comprises an injection device and an injection mold arranged on the injection device, and the separating device is preferably arranged on the injection device.
[0088] The injection molding equipment of the embodiment is beneficial to improving the separating efficiency of the rubber head and thus beneficial to ensuring the use performance of the injection molding equipment.
[0089] The above merely describes the preferred embodiments of the utility model and is not intended to limit the utility model, and any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the utility model shall be included in the protection scope of the utility model.
Claims
1. A separating device for separating a rubber head formed on an injection mold, characterized in that: the separating device comprises a base (1) capable of sliding in a first direction, and a sliding member (2) provided on the base (1) and capable of sliding in a second direction, the second direction being orthogonal to the first direction; the base (1) is provided with a first through hole (103), and the sliding member (2) is provided with a second through hole (201), the second through hole (201) at least partially overlaps with a projection of the first through hole (103) in the first direction, and defines a clamping space (100) between the first through hole (103) and the second through hole (201) for inserting the rubber head; when the sliding member (2) is driven to slide to a clamping position, the inserted rubber head can be clamped in the clamping space (100), and the base (1) is driven to move in the first direction, thereby separating the clamped rubber head from the injection mold.
2. The separating device according to claim 1, characterized in that: the base (1) is provided with a cavity (200), and the sliding member (2) is slidingly provided in the cavity (200); the first through hole (103) is provided through the base (1), and the sliding member (2) is provided with the first through hole (103) on two opposite sides.
3. The separating device according to claim 1, characterized in that: the first through hole (103) is a plurality of through holes provided on the base (1), and the second through hole (201) is a plurality of through holes corresponding to the first through holes (103); and / or, a guide portion is provided between the base (1) and the sliding member (2), and the guide portion is used for guiding the sliding member (2) to slide in the second direction.
4. The separating device according to claim 1, characterized in that: the separating device further comprises a first driving portion (3) provided on the base (1), and the first driving portion (3) is used for driving the sliding member (2) to slide in the second direction.
5. The separating device according to claim 4, characterized in that: a driving end of the first driving portion (3) is provided with a transmission plate (301), and the transmission plate (301) is connected to the sliding member (2) by insertion assembly; the first driving portion (3) drives the sliding member (2) to slide through the transmission plate (301), and the first driving portion (3) is provided with a guide portion for guiding the transmission plate (301) to move.
6. The separating device according to claim 5, characterized in that: the separating device further comprises a second driving portion (6), and the first driving portion (3) is provided on a driving end of the second driving portion (6); the second driving portion (6) drives the base (1) to move in the first direction through the first driving portion (3).
7. The separating device according to claim 6, characterized in that: An angle adjusting part is arranged between the driving end of the first driving part (3) and the driving end of the second driving part (6), and is used for adjusting the installation angle of the first driving part (3) on the second driving part (6).
8. The separating device according to claim 7, characterized in that: The angle adjusting part comprises a plurality of arc-shaped holes (6021) circumferentially spaced apart along a preset axis on the driving end of the second driving part (6), and a connecting piece (6022) penetrating through each arc-shaped hole (6021), wherein the preset axis is parallel to the first direction; The first driving part (3) is detachably connected with the second driving part (6) through the connecting piece (6022).
9. The separating device according to claim 6, characterized in that: The separating device further comprises a third driving part (7); The second driving part (6) is arranged on the driving end of the third driving part (7), the third driving part (7) can drive the base (1) to move along a third direction through the second driving part (6), and the third direction is orthogonal to the first direction.
10. An injection molding device, characterized in that: The injection molding device is provided with the separating device according to any one of claims 1 to 9.