A mold device for an apple male plug
By designing the first and second mold structures, the problem of low production efficiency of apple male shells was solved, enabling large-scale production and rapid demolding, ensuring product consistency and quality.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- SHENZHEN ZHIYOU PRECISE ELECTRONICS CO LTD
- Filing Date
- 2023-07-17
- Publication Date
- 2026-04-28
AI Technical Summary
Existing molds are inefficient for producing male apple shells and have complex structures, making compact production impossible.
The system employs a first mold structure and a second mold structure, including a first mold and a second mold. Through the cooperation of the sliding rod and the protruding body, it achieves rapid molding and demolding of the apple male head shell. The design of the limiting mechanism and the inclined groove ensures product consistency and quality.
This enabled the large-scale production of Apple male connector shells, ensuring product consistency and quality, reducing production time, and improving production efficiency.
Smart Images

Figure CN116852650B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of molds, and more specifically to a mold device for an apple male head shell. Background Technology
[0002] Due to its complex appearance, the Apple male connector shell requires various shaping structures to be configured in the molding cavity for cooperation, such as setting the pin openings and side grooves of the Apple male connector shell. However, these shaping structures need to leave the molding cavity during demolding to avoid affecting demolding.
[0003] The molding cavity and the shaping structure can be separated and combined by setting up a motor or other power mechanism. However, this design results in a complex overall structure and makes it impossible to achieve a compact design. The number of apple head shells that can be molded by a single mold is limited, resulting in low production efficiency. Summary of the Invention
[0004] The technical problem to be solved by the present invention is to provide a mold device for the male apple shell, which addresses the above-mentioned defects of the prior art and solves the problem of low production efficiency of existing molds.
[0005] The technical solution adopted by this invention to solve its technical problem is: providing a mold device for an apple male connector shell, the apple male connector shell including a pin opening and a side groove, the mold device including a first mold and a second mold, the first mold including a first mold structure, and the second mold including a second mold structure; wherein...
[0006] The first mold structure includes a groove body that forms a first groove cavity. The groove body includes a first through hole provided on the front and rear end faces and a second through hole provided on the left and right sides. The first through hole and the second through hole pass through the groove body and communicate with the first groove cavity.
[0007] The first mold structure also includes a first rod and a second rod, with the two first rods slidably disposed in the first through hole and the two second rods slidably disposed in the second through hole;
[0008] The second mold structure includes a protruding body, which is inserted into the first groove cavity of the groove body when the first mold and the second mold are pressed together. The first rod passes through the first through hole and abuts against the protruding body, while the second rod passes through the first through hole and is disposed without abutting against the protruding body.
[0009] A preferred embodiment is that the groove body includes a first body with a through opening and two second bodies stacked on the front and rear end faces of the first body. The first through hole is disposed in the second body, and the second through hole is disposed on the left and right sides of the first body. The first body and the two second bodies form a first groove cavity at the through opening.
[0010] A preferred embodiment is as follows: the first main body includes a fixing plate and two fixing posts, the two fixing posts are set at the left and right edges of the top of the fixing plate and form a through opening, and the second through holes are respectively set in the corresponding fixing posts.
[0011] A preferred embodiment is that a first lateral limiting mechanism and / or a first longitudinal limiting structure are provided between the first main body and the second main body, and a second lateral limiting mechanism and / or a second longitudinal limiting structure are provided between the first main body and / or the second main body and the first mold structure, respectively.
[0012] The better option is:
[0013] The first lateral limiting mechanism includes a first lateral groove disposed on one side and a first lateral protrusion disposed on the other side;
[0014] The first longitudinal limiting mechanism includes a first longitudinal groove disposed on one side and a first longitudinal protrusion disposed on the other side;
[0015] The second lateral limiting mechanism includes a second lateral groove disposed on one side and a second lateral protrusion disposed on the other side;
[0016] The second longitudinal limiting mechanism includes a second longitudinal groove disposed on one side and a second longitudinal protrusion disposed on the other side.
[0017] A preferred embodiment is as follows: the first mold structure further includes two first slide blocks and two second slide blocks, each of the first and second slide blocks being provided with an inclined groove; the two first slide blocks are positioned at the front and rear of the groove body and fixedly connected to the first rod; the two second slide blocks are positioned in the left and right directions of the groove body and fixedly connected to the second rod; and...
[0018] The second mold structure includes four inclined protrusions. When the first mold and the second mold are pressed together, the inclined protrusions are inserted into the corresponding inclined grooves, so that the slide block is pressed against the groove body to realize the insertion of the first rod into the first through hole and the insertion of the second rod into the second through hole.
[0019] A preferred embodiment is as follows: the first slide includes a third through hole penetrating the inclined surface of the inclined groove and the mating end face, and a fourth through hole penetrating the third through hole; the first rod includes a positioning groove disposed in the third through hole and extending out of the mating end face; the first slide also includes a first rod positioning block penetrating the fourth through hole and communicating with the positioning groove; and,
[0020] The second slide includes a fifth through hole through the inclined surface of the inclined groove and the mating end face, and a sixth through hole through the fifth through hole. The second rod includes a positioning groove and is disposed in the fifth through hole and extends out of the mating end face. The second slide also includes a second rod positioning block that passes through the sixth through hole and communicates with the positioning groove.
[0021] A preferred embodiment is that both the first and second slides are provided with an elastic recovery structure between themselves and the groove body.
[0022] A preferred embodiment is that the male apple shell further includes a wide opening at the tail end, the second mold structure further includes a second groove cavity that matches the first groove cavity, and the protruding body is disposed in the middle of the second groove cavity and extends outward; wherein...
[0023] The second groove cavity communicates with the first groove cavity and forms a sealed space when the first mold and the second mold are pressed together.
[0024] A preferred embodiment is that the second mold includes a first liquid guiding channel, which is connected to the second groove cavity; or, the first mold includes a second liquid guiding channel, which is connected to the first groove cavity.
[0025] A preferred embodiment is that the first mold is provided with multiple first mold structures, at least two of which are arranged in the same row, and there are multiple rows.
[0026] A preferred embodiment is that the first mold includes two mounting cavities arranged side by side and forming a groove body. Each mounting cavity has a limiting groove on its top four sides, and the two first slides and the two second slides are respectively arranged in the corresponding limiting grooves.
[0027] A preferred embodiment is that the limiting groove is further provided with a limiting element to limit the travel of the first slide and the second slide.
[0028] The beneficial effects of the present invention are that, compared with the prior art, the present invention, through the setting of the first mold structure and the second mold structure, can be used for large-scale production of apple male shells, ensuring product consistency and quality, and can quickly assemble and demold the molds, thereby reducing production time. Attached Figure Description
[0029] The present invention will be further described below with reference to the accompanying drawings and embodiments. In the accompanying drawings:
[0030] Figure 1 This is a schematic diagram of the mold device for the male apple shell of the present invention;
[0031] Figure 2 This is a schematic diagram of the structure of the first module of the present invention. Figure 1 ;
[0032] Figure 3 This is a schematic diagram of the structure of the second module of the present invention;
[0033] Figure 4 This is a schematic diagram of the structure of the male apple connector shell of the present invention;
[0034] Figure 5 yes Figure 2 Schematic diagram of the enlarged local structure Figure 1 ;
[0035] Figure 6 yes Figure 5 A schematic diagram of a casing with an apple-shaped male connector;
[0036] Figure 7 This is a schematic diagram of the structure of the groove body of the present invention. Figure 1 ;
[0037] Figure 8 This is a schematic diagram of the structure of the groove body with the second lateral protrusion of the present invention;
[0038] Figure 9 This is a schematic diagram of the structure of the first and second main bodies of the present invention combined;
[0039] Figure 10 This is a schematic diagram of the structure of the first main body of the present invention;
[0040] Figure 11 This is a schematic diagram of the first mold structure of the present invention;
[0041] Figure 12 This is a schematic diagram of the first mold structure for concealing the first slider in this invention;
[0042] Figure 13 yes Figure 12 A schematic diagram of the structure concealing the second main body;
[0043] Figure 14 yes Figure 13 A schematic diagram of the structure concealing the first rod;
[0044] Figure 15 yes Figure 3 A partially enlarged structural diagram;
[0045] Figure 16 This is a schematic diagram of the structure of the protruding main body of the present invention;
[0046] Figure 17 yes Figure 2 Schematic diagram of the enlarged local structure Figure 2 ;
[0047] Figure 18 This is a schematic diagram of the structure of the groove body of the present invention. Figure 2 ;
[0048] Figure 19 This is an exploded view of the main body of the groove of the present invention. Figure 1 ;
[0049] Figure 20 This is an exploded view of the main body of the groove of the present invention. Figure 2
[0050] Figure 21 This is an exploded view of the main body of the groove of the present invention. Figure 3 ;
[0051] Figure 22 This is an exploded view of the main body of the groove of the present invention. Figure 4 ;
[0052] Figure 23 This is a schematic diagram of the structure of the first mold of the present invention, which conceals the first mold structure.
[0053] Figure 24 This is a schematic diagram of the structure of the first module of the present invention. Figure 2 . Detailed Implementation
[0054] The preferred embodiments of the present invention will now be described in detail with reference to the accompanying drawings.
[0055] like Figures 1 to 24 As shown, the present invention provides a preferred embodiment of a mold device for an apple male head shell 10.
[0056] A mold device for an apple male connector shell 10, the apple male connector shell 10 including a pin opening 11 and a side groove 12, the mold device including a first mold 100 and a second mold 200, the first mold 100 including a first mold structure, the second mold 200 including a second mold structure; wherein, the first mold structure includes a groove body 110 forming a first groove cavity 1101, the groove body 110 including a first through hole 1121 provided on the front and rear end faces and a second through hole 1111 provided on the left and right sides, the first through hole 1121 and the second through hole 1111 penetrating the groove body 110 and connecting with the first groove cavity 110. 1. Connected; the first mold structure further includes a first rod 131 and a second rod 132, the two first rods 131 are slidably disposed in the first through hole 1121, and the two second rods 132 are slidably disposed in the second through hole 1111; the second mold structure includes a protruding body 210, the protruding body 210 is inserted into the first groove cavity 1101 of the groove body 110 when the first mold 100 and the second mold 200 are pressed together, and the first rod 131 passes through the first through hole 1121 and abuts against the protruding body 210, and the second rod 132 passes through the first through hole 1121 and is disposed without abutting against the protruding body 210.
[0057] Specifically, Figures 1 to 4 ,as well as Figures 11 to 14 A molding cavity is formed between the first mold 100 and the second mold 200 for molding the apple male head shell 10. The molding cavity is composed of a first recessed cavity 1101. A protruding body 210 is inserted into the first recessed cavity 1101 to form the central control cavity of the apple male head shell 10. When the protruding body 210 is inserted, it is spaced apart from the inner side of the first recessed cavity 1101 to form the thickness of the apple male head shell 10. Additionally, two first rods 131 pass through the first through holes 112 on the front and rear end faces respectively. 1. It communicates with the first groove cavity 1101 and abuts against the protruding body 210 when the first mold 100 and the second mold 200 are pressed together. When forming the apple male head shell 10, a pin opening 11 is provided. Similarly, the two second rods 132 pass through the second through holes 1111 on the left and right sides respectively and communicate with the first groove cavity 1101. When the first mold 100 and the second mold 200 are pressed together, they are not in contact with the protruding body 210. When forming the apple male head shell 10, a side groove 12 is provided.
[0058] The specific operation involves two main steps: merging and pressing the first mold 100 and the second mold 200, and opening and separating them. First, the first mold 100 and the second mold 200 are merged, pressed, and sealed together. The first groove cavity 1101 forms a sealed molding cavity, and the protruding body 210, the first rod 131, and the second rod 132 are positioned at preset locations: the protruding body 210 is inserted into the first groove cavity 1101, the first rod 131 is pressed against the protruding body 210, and the second rod 132 is close to the protruding body 210. Then, molding material is injected to fill the molding cavity. Depending on the characteristics of the molding material, it is heated or cooled to solidify, forming the solidified structure of the apple male head shell 10. Subsequently, the first mold 100 and the second mold 200 are opened and separated, and the solidified structure is removed from the molding cavity. This first and second mold structure allows for large-scale production of the apple male head shell 10, ensuring product consistency and quality, and enabling rapid mold assembly and demolding, thereby reducing production time.
[0059] While the description refers to the first perforation 1121 and the second perforation 1111, if a non-perforated structure is used, such as a structure with a side opening or a slot structure, which can provide movement limits for the first rod 131 and the second rod 132, it can also be considered as the first perforation 1121 and the second perforation 1111.
[0060] like Figures 5 to 14 As shown, the present invention provides a preferred embodiment of a mold device for an apple male head shell 10.
[0061] The groove body 110 includes a first body 111 with a through opening and two second bodies 112 stacked on the front and rear end faces of the first body 111. The first through hole 1121 is disposed in the second body 112, and the second through hole 1111 is disposed on the left and right sides of the first body 111. The first body 111 and the two second bodies 112 form a first groove cavity 1101 at the through opening.
[0062] Specifically, the first main body 111 is located in the middle, and the second main bodies 112 are located on both sides of the first main body 111, forming a folded configuration. The two second main bodies 112 serve as the two sides of the through-hole. When the first main body 111 and the two second main bodies 112 are connected together, a first groove cavity 1101 is formed at the through-hole. The first groove cavity 1101 is part of the molding cavity and is used to inject molding material and form the apple male head shell 10. The layered configuration facilitates the processing of the first main body 111 and the second main body 112. Considering the special shape of the apple male head shell 10, the inner shape of the through-hole requires high precision. Therefore, the first main body 111 is directly connected to form a through-hole, which is more feasible.
[0063] In one embodiment, reference Figure 10The first main body 111 includes a fixing plate 1112 and two fixing posts 1113. The two fixing posts are disposed at the left and right edges of the top of the fixing plate 1112 and form through openings. The second through holes 1111 are respectively disposed in the corresponding fixing posts 1113. Specifically, the top of the fixing plate 1112 serves as the top outer surface of the apple male connector shell 10, and the two fixing posts 1113 serve as the side outer surfaces of the apple male connector shell 10. It can be imagined that the fixing plate 1112 is a flat plate, and the two fixing posts 1113 are vertically fixed on both sides of the fixing plate 1112. There is an opening 11131 at the left and right edges of the top of the fixing plate 1112.
[0064] In one embodiment, a first lateral limiting mechanism and / or a first longitudinal limiting structure are provided between the first body 111 and the second body 112, and a second lateral limiting mechanism and / or a second longitudinal limiting structure are provided between the first body 111 and / or the second body 112 and the first mold structure, respectively.
[0065] Specifically, the first lateral limiting mechanism includes a first lateral groove 1115 disposed on one side and a first lateral protrusion 1123 disposed on the other side; the first longitudinal limiting mechanism includes a first longitudinal groove 1122 disposed on one side and a first longitudinal protrusion 1114 disposed on the other side; the second lateral limiting mechanism includes a second lateral groove (1116, 1124) disposed on one side and a second lateral protrusion 133 disposed on the other side; the second longitudinal limiting mechanism includes a second longitudinal groove disposed on one side and a second longitudinal protrusion disposed on the other side.
[0066] Regarding the first longitudinal limiting mechanism, refer to 9 and... Figure 10 The first longitudinal protrusion 1114 is provided on both sides of the first body 111. The first longitudinal protrusion 1114 is provided on both sides of the edge of the through opening. The first longitudinal protrusion 1114 is provided along the fixing post 1113 and the fixing plate 1112. The first longitudinal limiting mechanism also includes a first longitudinal groove 1122 provided on the second body 112. The first longitudinal protrusion 1114 can be inserted into the first longitudinal groove 1122. Regarding the first lateral limiting mechanism, it includes a first lateral groove 1115 disposed on the first body 111. The first lateral groove 1115 is disposed at the edge of the through opening and cuts off the two first longitudinal protrusions 1114. It also includes a first lateral protrusion 1123 that cooperates with the first lateral groove 1115 and is disposed on the second body 112. Furthermore, the first lateral limiting mechanism may also include a third lateral protrusion 1117 disposed at the bottom of the first body 111 and a third lateral groove 1125 disposed at the corresponding position of the second body 112. By laterally positioning the first body 111 and the second body 112 at their upper and lower parts, the overall positioning effect is improved.
[0067] Regarding the second lateral limiting mechanism, refer to... Figure 7 and Figure 8 A second transverse groove (1116, 1124) is provided on the side of the first body 111 and the second body 112. A corresponding second transverse protrusion 133 is provided at the corresponding position of the first mold structure. Of course, a groove can also be provided at the corresponding position of the first mold structure. The second transverse protrusion 133 is provided separately and can be respectively inserted into the second transverse groove (1116, 1124) and the groove of the first mold structure to restrict the vertical movement of the first body 111 and the second body 112 relative to the first mold structure. The second longitudinal limiting structure can be used as a guide structure when the first body 111 or / and the second body 112 are inserted into the first mold structure.
[0068] A groove can also be provided at the corresponding position of the first mold structure. The second transverse protrusion 133 is provided separately and can be respectively inserted into the second transverse groove (1116, 1124) and the groove of the first mold structure. The first mold structure is provided with multiple mounting ports. Each mounting port is used to place the corresponding first main body 111 and second main body 112. An inverted T-shaped structure is provided on one side of the mounting port. The middle part of the inverted T-shaped structure is used to accommodate the groove main body 110. The transverse groove of the inverted T-shaped structure is used as the groove of the first mold structure to insert the second transverse protrusion 133.
[0069] like Figures 17 to 22 As shown, the present invention provides a preferred embodiment of the first slide 121 and the second slide 122.
[0070] The first mold structure further includes two first slide blocks 121 and two second slide blocks 122. Both the first slide blocks 121 and the second slide blocks 122 are provided with inclined grooves. The two first slide blocks 121 are located in front of and behind the groove body 110 and are fixedly set with the first rod 131. The two second slide blocks 122 are located in the left and right directions of the groove body 110 and are fixedly set with the second rod 132. The second mold structure includes four inclined protrusions 220. When the first mold 100 and the second mold 200 are pressed together, the inclined protrusions 220 are inserted into the corresponding inclined grooves, so that the slide blocks are pressed against the groove body 110 to realize that the first rod 131 is inserted into the first through hole 1121 and the second rod 132 is inserted into the second through hole 1111.
[0071] Specifically, after the groove body 110 formed by the first body 111 and the second body 112 is installed, the first rod 131 is inserted into the first through hole 1121 by the first slide block 121. Similarly, the second rod 132 is inserted into the second through hole 1111 by the second slide block 122, thus setting the pin opening 11 and the side groove 12 of the apple male connector shell 10. In order to achieve the cooperation of pressing and sliding, both the first slide block 121 and the second slide block 122 are provided with inclined grooves. When the first mold 100 and the second mold 200 are pressed together, the inclined protrusion 220 is inserted into the corresponding inclined groove. The inclined surface of the inclined protrusion 220 fits against the inclined surface of the inclined groove during the insertion process. The inclined surface of the inclined groove is pressed by the inclined surface of the inclined protrusion 220, and the first slide block 121 and the second slide block 122 move in the horizontal direction of the pressure.
[0072] In one embodiment, the first slide 121 includes a slope 1211 penetrating the inclined groove and a third through hole 1212 extending into the mating end face, and a fourth through hole 1213 extending through the third through hole 1212. The first rod 131 includes a positioning groove 1311 disposed in the third through hole 1212 and extending out of the mating end face. The first slide 121 also includes a first rod positioning block 133 penetrating the fourth through hole 1213 and communicating with the positioning groove 1311. The second slide 122 includes a slope 1221 penetrating the inclined groove and a fifth through hole 1222 extending into the mating end face, and a sixth through hole 1223 extending through the fifth through hole 1222. The second rod 132 includes a positioning groove 1321 disposed in the fifth through hole 1222 and extending out of the mating end face. The second slide 122 also includes a second rod positioning block 134 penetrating the sixth through hole 1223 and communicating with the positioning groove 1321.
[0073] The inclined grooves of the first slide block 121 and the second slide block 122 include T-shaped cross-section grooves. The two sides of the T-shaped cross-section groove have protrusions on both sides of the inclined surface. An opening is provided at the tail of the T-shaped cross-section groove. The inclined surface protrusion 220 includes a T-shaped cross-section structure, its shape matching the T-shaped cross-section groove. A third through hole 1212 and a fifth through hole 1222 are provided at the bottom of the T-shaped cross-section groove. Furthermore, the bottoms of the first slide block 121 and the second slide block 122 have outwardly protruding structures for engaging with the grooves of the first mold structure and moving along the grooves.
[0074] In one embodiment, both the first slide block 121 and the second slide block 122 are provided with an elastic recovery structure between themselves and the groove body 110. The first slide block 121 and the second slide block 122 have spring mounting holes on their end faces near the groove body 110. The elastic recovery structure includes a spring disposed within the spring mounting hole. When the first mold 100 and the second mold 200 are pressed together, the spring is compressed into the spring mounting hole. When the first mold 100 and the second mold 200 are loosened, the first slide block 121 and the second slide block 122 move away from the groove body 110 under the action of the spring. However, even if the first slide block 121 and the second slide block 122 move away from the extreme position of the groove body 110 under the action of the spring, the outermost edge of the inclined protrusion 220 can still be aligned with the inclined groove, facilitating the direct insertion of the inclined protrusion 220 into the inclined groove when it subsequently comes together.
[0075] To provide the first slide block 121 and the second slide block 122 with their extreme positions away from the groove body 110 under the action of the spring, a limiting structure can be provided at the sliding positions of the first slide block 121 and the second slide block 122. Alternatively, due to the layout, the two first slide blocks 121 or the two second slide blocks 122 can be arranged adjacent to each other, abutting against each other at their extreme positions. The limiting structure includes, but is not limited to, a limiting fixing block, a limiting nut, etc.
[0076] like Figure 3 , Figure 4 , Figure 15 and Figure 16 As shown, the present invention provides a preferred embodiment of the molding cavity.
[0077] The apple male shell 10 also includes a wide opening 13 at the tail end. The second mold structure also includes a second groove cavity 211 that matches the first groove cavity 1101. The protruding body 210 is disposed in the middle of the second groove cavity 211 and extends outward. The second groove cavity 211 communicates with the first groove cavity 1101 and forms a sealed space, i.e., a molding cavity, when the first mold 100 and the second mold 200 are pressed together. The second groove cavity 211 forms the wide opening 13 at the tail end.
[0078] In one embodiment, the second mold 200 includes a first liquid guiding channel 230, which communicates with the second groove cavity 211; or, the first mold 100 includes a second liquid guiding channel, which communicates with the first groove cavity 1101.
[0079] Specifically, the material constituting the male apple head shell 10 is liquefied and flows into the sealed space through the first liquid guiding channel 230 or the second liquid guiding channel. Multiple sealed spaces are provided between the first mold 100 and the second mold 200, allowing simultaneous liquid injection into multiple sealed spaces and subsequent curing, such as high-temperature curing of a low-temperature liquid material or low-temperature curing of a high-temperature liquid material. Preferably, an injection hole is provided at the bottom of the first mold 100 to allow rapid injection of the liquid material into the first liquid guiding channel 230 or the second liquid guiding channel.
[0080] In this embodiment, the protruding body 210 includes a protruding block 211 extending into the groove body 110. Its shape is consistent with the shape of the internal cavity of the apple male connector shell 10. That is, the first rod 131 passes through the first through hole 1121 and abuts against the protruding block 211, and the second rod 132 passes through the first through hole 1121 and is not abutting against the protruding block 211. The abutting forms the through hole structure of the apple male connector shell 10, that is, the pin opening 11, and the non-abutting forms the groove structure, that is, the side groove 12.
[0081] like Figure 15 , Figure 22 , Figure 24 As shown, the present invention provides a preferred embodiment of a mold device for an apple male head shell 10.
[0082] The first mold 100 is provided with multiple first mold structures, at least two of which are arranged in the same row, and there are multiple rows. Preferably, there are two rows of eight, forming sixteen first mold structures, so that sixteen apple male head shells 10 can be processed simultaneously in one processing step.
[0083] In one embodiment, the specific layout is as follows: the first module 100 includes two mounting cavities 310 arranged side by side and mounting groove bodies 110, with the side-by-side direction as the front-back direction and the two sides as the left-right direction, that is, the pin opening 11 is arranged facing the front-back direction and the side groove 12 is arranged facing the left-right direction; furthermore, the top four sides of the mounting cavity 310 are provided with limiting grooves 320, and the two first slides 121 and the two second slides 122 are respectively arranged in the corresponding limiting grooves 320.
[0084] Taking a set of parallel first mold structures as an example, two mounting cavities 310 are respectively equipped with a groove body 110. Referring to the attached drawings, the limiting grooves 320 are respectively set as A1, A2, A3, A4, B1, B2, B3 and B4. A1, A3, B1 and B3 are respectively equipped with first slide blocks 121, which are pressed against the groove body 110 under the action of the inclined surface protrusion 220, thereby simultaneously driving the first rod 131 to be inserted into the groove body 110; and A2, A4, B2 and B4 are respectively equipped with second slide blocks 122, which are pressed against the groove body 110 under the action of the inclined surface protrusion 220, thereby simultaneously driving the second rod 132 to be inserted into the groove body 110. The inclined protrusion 220 includes a separately provided first inclined protrusion 221 and a first inclined protrusion 222 with two protruding inclined surfaces. The first inclined protrusion 221 is configured with a separately provided first slide 121 or second slide 122, and the first inclined protrusion 222 is configured with two adjacent second slides 122.
[0085] With the above setup, during the pressing process of the first mold 100 and the second mold 200, multiple first mold structures and corresponding second mold structures cooperate to form multiple sealed spaces, facilitating rapid processing. The structure is simple and does not require an additional motor. Furthermore, due to the close arrangement of the first and second mold structures, multiple apple male head shells 10 can be processed simultaneously, greatly improving processing efficiency.
[0086] In one embodiment, the limiting groove 320 is also provided with a limiting member 400, i.e. a limiting structure, to limit the travel of the first slide 121 and the second slide 122. Since the first slide 121 and the second slide 122 are provided with an elastic recovery structure between them and the groove body 110, the apple male shell 10 is disengaged, i.e. the first rod 131 and the second rod 132 are retracted. Therefore, the limiting member 400 is required to limit the travel of the first slide 121 and the second slide 122, thereby forming the extreme position of the first slide 121 and the second slide 122 away from the groove body 110 under the action of the spring.
[0087] Various solutions for the limiting element 400 are provided. For example, screws or similar nail structures can be provided at the extreme positions of the first slide 121 and the second slide 122 to quickly fix the installation. Alternatively, a limiting block can be provided between two adjacent first slides 121 or second slides 122 to simultaneously limit their movement. Of course, two adjacent first slides 121 or second slides 122 can also be placed without the limiting element 400, allowing them to be close enough that they are limited by mutual collision after being released.
[0088] For example, nail structures are set on the limiting grooves 320 near the edge, such as A1, A2, B2, and B3. A3 and B1 are connected, and a limiting block, such as a directional limiting block, is set between the two first slides 121 set here. Two second slides 122 are set at A4 and B4, which act on two different groove bodies 110 respectively. In order to make the arrangement compact, the spacing between each row is small enough. No limiting element is set between the two second slides 122 at A4 and B4. Limitation is achieved by collision.
[0089] The above description is merely the preferred embodiment of the present invention and is not intended to limit the scope of the present invention. All equivalent changes or modifications made in accordance with the claims of the present invention are covered by the present invention.
Claims
1. A mold device for an apple male connector shell, the apple male connector shell including a pin opening and a side groove, characterized in that: The mold assembly includes a first mold and a second mold, the first mold including a first mold structure, and the second mold including a second mold structure; wherein... The first mold structure includes a groove body that forms a first groove cavity. The groove body includes a first through hole disposed on the front and rear end faces and a second through hole disposed on the left and right sides. The first through hole and the second through hole pass through the groove body and communicate with the first groove cavity. The first mold structure also includes a first rod and a second rod, with the two first rods slidably disposed in the first through hole and the two second rods slidably disposed in the second through hole; The second mold structure includes a protruding body, which is inserted into the first groove cavity of the groove body when the first mold and the second mold are pressed together. The first rod passes through the first through hole and abuts against the protruding body, while the second rod passes through the first through hole and is disposed without abutting against the protruding body. A molding cavity is formed between the first mold and the second mold for molding the outer shell of the apple male head. The molding cavity is composed of a first groove cavity, and a protruding body is inserted into the first groove cavity to form a hollow cavity for the outer shell of the apple male head. The male apple shell also includes a wide opening at the tail end, and the second mold structure also includes a second groove cavity that matches the first groove cavity. The protruding body is disposed in the middle of the second groove cavity and extends outward. The second groove cavity communicates with the first groove cavity and forms a sealed space when the first mold and the second mold are pressed together; The first mold is provided with multiple first mold structures, at least two of which are arranged in the same row, and there are multiple rows.
2. The mold device according to claim 1, characterized in that: The groove body includes a first body with a through opening and two second bodies stacked on the front and rear end faces of the first body. The first through hole is disposed in the second body, and the second through hole is disposed on the left and right sides of the first body. The first body and the two second bodies form a first groove cavity at the through opening.
3. The mold device according to claim 2, characterized in that: The first main body includes a fixing plate and two fixing posts. The two fixing posts are located at the left and right edges of the top of the fixing plate and form a through opening. The second through hole is respectively located in the corresponding fixing post.
4. The mold device according to claim 2, characterized in that: A first lateral limiting mechanism and / or a first longitudinal limiting structure are provided between the first main body and the second main body, and a second lateral limiting mechanism and / or a second longitudinal limiting structure are provided between the first main body and / or the second main body and the first mold structure, respectively.
5. The mold device according to claim 4, characterized in that: The first lateral limiting mechanism includes a first lateral groove disposed on one side and a first lateral protrusion disposed on the other side; The first longitudinal limiting mechanism includes a first longitudinal groove disposed on one side and a first longitudinal protrusion disposed on the other side; The second lateral limiting mechanism includes a second lateral groove disposed on one side and a second lateral protrusion disposed on the other side; The second longitudinal limiting mechanism includes a second longitudinal groove disposed on one side and a second longitudinal protrusion disposed on the other side.
6. The mold device according to claim 1, characterized in that: The first mold structure further includes two first slide blocks and two second slide blocks. Each of the first and second slide blocks is provided with an inclined groove. The two first slide blocks are positioned at the front and rear of the groove body and are fixedly connected to the first rod. The two second slide blocks are positioned in the left-right direction of the groove body and are fixedly connected to the second rod. The second mold structure includes four inclined protrusions. When the first mold and the second mold are pressed together, the inclined protrusions are inserted into the corresponding inclined grooves, so that the first slide and the second slide are pressed together towards the groove body to realize the insertion of the first rod into the first through hole and the insertion of the second rod into the second through hole.
7. The mold apparatus according to claim 6, characterized in that: The first slide block includes a third through hole penetrating the inclined surface of the inclined groove and the mating end face, and a fourth through hole transversely penetrating the third through hole. The first rod includes a positioning groove disposed in the third through hole and extending out of the mating end face. The first slide block also includes a first rod positioning block that passes through the fourth through hole and communicates with the positioning groove; and, The second slide includes a fifth through hole through the inclined surface of the inclined groove and the mating end face, and a sixth through hole through the fifth through hole. The second rod includes a positioning groove and is disposed in the fifth through hole and extends out of the mating end face. The second slide also includes a second rod positioning block that passes through the sixth through hole and communicates with the positioning groove.
8. The mold apparatus according to claim 6, characterized in that: Both the first and second slides are provided with an elastic recovery structure between themselves and the groove body.
9. The mold device according to claim 1, characterized in that: The second mold includes a first liquid guiding channel, which is connected to a second groove cavity; or, the first mold includes a second liquid guiding channel, which is connected to a first groove cavity.
10. The mold apparatus according to claim 8, characterized in that: The first mold includes two mounting cavities arranged side by side and mounting the main body of the groove. The top four sides of the mounting cavity are provided with limit grooves, and the two first slides and the two second slides are respectively arranged in the corresponding limit grooves.
11. The mold apparatus according to claim 10, characterized in that: The limiting groove is also provided with a limiting element to limit the travel of the first slide and the second slide.
Citation Information
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