CN214820413U - A multi-part micro plastic injection mold - Google Patents

A multi-part micro plastic injection mold Download PDF

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Publication number
CN214820413U
CN214820413U CN202120624636.9U CN202120624636U CN214820413U CN 214820413 U CN214820413 U CN 214820413U CN 202120624636 U CN202120624636 U CN 202120624636U CN 214820413 U CN214820413 U CN 214820413U
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mold core
template
plastic injection
flow channel
core
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侍中楼
张剑雯
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Jianghan University
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Jianghan University
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Abstract

本实用新型公开了一种多零件微小塑件注塑模具,包括上模仁、下模仁及脱模机构;下模仁与上模仁之间形成有一主流道、若干个分流道及若干个型腔,主流道的中心位于浇注口的正下方,各个分流道均与主流道垂直相交且沿主流道的长度方向均匀布置,各个型腔均布置于分流道的两侧且与分流道连通;脱模机构包括拉料杆及若干个推杆。本实用新型提出的技术方案的有益效果是:通过在下模仁与上模仁之间开设主流道,并沿主流道均匀布置若干个与主流道垂直相交的分流道,在分流道的两侧布置型腔,从而既能使各个型腔均能充分填充、又能使各个型腔紧凑分布,降低了微小塑料制品的生产成本;同时,可防止出现脱模困难或卡模的现象。

Figure 202120624636

The utility model discloses an injection mold for multi-part tiny plastic parts, which comprises an upper mold core, a lower mold core and a demolding mechanism; a main flow channel, a plurality of shunt channels and a plurality of mold cavities are formed between the lower mold core and the upper mold core , the center of the main runner is located directly below the pouring port, each runner is perpendicular to the main runner and is evenly arranged along the length of the main runner, and each cavity is arranged on both sides of the runner and communicated with the runner; demoulding The mechanism includes a pulling rod and several push rods. The beneficial effect of the technical solution proposed by the utility model is: by opening the main flow channel between the lower die core and the upper die core, and evenly arranging a plurality of branch flow channels perpendicularly intersecting with the main flow channel along the main flow channel, the runners are arranged on both sides of the branch flow channel. Therefore, not only can each cavity be fully filled, but also each cavity can be compactly distributed, which reduces the production cost of tiny plastic products; at the same time, it can prevent the phenomenon of difficult demolding or jamming.

Figure 202120624636

Description

Multi-part micro-plastic part injection mold
Technical Field
The utility model belongs to the technical field of the injection mold technique and specifically relates to a many parts are small moulds a injection mold.
Background
The design of the mold of the tiny plastic product (the size is about 2.5 mm) needs to comprehensively consider the molding effect and the production cost, the existing tiny plastic injection mold generally adopts a mode of one mold and multiple cavities to reduce the production cost, but the volume of the mold core cannot be reasonably utilized, so that the mold has larger volume or the number of the cavities is less, and the production cost of the tiny plastic product is increased;
meanwhile, when the existing micro plastic mold is demolded, demolding difficulty or mold clamping phenomenon often occurs, so that the production efficiency is low.
SUMMERY OF THE UTILITY MODEL
In view of the above, there is a need to provide a multi-part injection mold for micro plastic parts, which solves the technical problems of the prior art that the volume of the mold core is not reasonably utilized, the mold volume is larger or the number of the mold cavities is smaller, the production cost of the micro plastic product is increased, and the mold release difficulty or the mold clamping phenomenon often occurs.
In order to achieve the purpose, the utility model provides a multi-part micro plastic part injection mold, which comprises an upper mold core, a lower mold core and a demolding mechanism;
a main runner, a plurality of sub-runners and a plurality of cavities are formed between the lower die core and the upper die core, the center of the main runner is positioned under the pouring gate, each sub-runner is vertically intersected with the main runner and uniformly arranged along the length direction of the main runner, and each cavity is uniformly distributed on two sides of each sub-runner and is communicated with the sub-runners;
demoulding mechanism is including drawing material pole and a plurality of push rod, draw the material pole with lower mould benevolence sliding connection and part set up in the sprue, the upper end of drawing the material pole is formed with a spacing arch, the inclination of a spacing bellied lateral wall is greater than 90, each the push rod all with lower mould benevolence sliding connection and part set up in the sprue or in the subchannel.
Furthermore, the multi-part micro plastic part injection mold also comprises an upper template and a lower template; a first mounting groove is formed in the lower end face of the upper template, and the upper die core is detachably mounted in the first mounting groove; the upper end face of the lower template is provided with a second mounting groove, the lower mold core is detachably mounted in the second mounting groove, and when the upper template and the lower template are closed, the upper mold core and the lower mold core are attached.
Furthermore, the multi-part micro plastic part injection mold further comprises an upper mold base and a lower mold base, wherein the upper mold base is fixed on the upper end face of the upper mold plate, and the lower mold base is fixed on the lower end face of the lower mold plate.
Furthermore, the demoulding mechanism also comprises a guide sleeve and a guide pillar, wherein the guide sleeve is fixed on the upper template, and the guide pillar is fixed on the lower template and is inserted in the guide sleeve in a sliding manner.
Furthermore, a first abdicating hole for the pulling rod to pass through and a plurality of second abdicating holes for the push rods to pass through are formed in the lower template; the demoulding mechanism further comprises a push plate, the push plate is located between the lower template and the lower die base, and the push plate is fixedly connected with the material pulling rod and the push rods.
Furthermore, a guide hole is formed in the lower template, and the demolding mechanism further comprises a guide rod which is fixed on the push plate and is inserted into the guide hole in a sliding manner.
Further, the demoulding mechanism further comprises a return spring, the return spring is sleeved on the guide rod, one end of the return spring is abutted against the lower template, and the other end of the return spring is abutted against the push plate.
Furthermore, a cold material cavity is formed in the lower die core, the cold material cavity is located below the main runner and communicated with the main runner, and the upper end of the material pulling rod is located in the cold material cavity.
Furthermore, a plurality of reinforcing cavities which correspond to the push rods one to one are formed in the lower die core, the reinforcing cavities are located below the sub-runners and communicated with the sub-runners, and the upper ends of the push rods are arranged in the reinforcing cavities.
Furthermore, many parts mould an injection mold a little still includes cooling body, cooling body includes first cooling tube and second cooling tube, inlay in the first cooling tube in the upper die benevolence, the second cooling tube embedded with in the lower die benevolence.
Compared with the prior art, the utility model provides a technical scheme's beneficial effect is: the main runner is arranged between the lower die core and the upper die core, the plurality of sub-runners which are vertically crossed with the main runner are uniformly arranged along the main runner, and the die cavities are arranged on two sides of the sub-runners, so that each die cavity can be fully filled, each die cavity can be compactly distributed, the volumes of the lower die core and the upper die core are well utilized, the volume of the die is reduced, and the production cost of micro plastic products is reduced; simultaneously, when the drawing of patterns, draw the material of congealing of the spacing bellied side of material pole to receive the spacing of spacing bellied slope lateral wall to make congeal the material and keep in lower mould benevolence one side when the drawing of patterns for the first time, the material of congealing in rethread each push rod promotes sprue and the subchannel, makes congeal the material and breaks away from lower mould benevolence, can prevent the phenomenon of drawing of patterns difficulty or card mould.
Drawings
FIG. 1 is a schematic perspective view of an embodiment of an injection mold for a multi-part micro plastic part according to the present invention;
FIG. 2 is a front view of the multi-part overmold injection mold of FIG. 1;
FIG. 3 is a cross-sectional view taken along section A-A of FIG. 2;
FIG. 4 is a cross-sectional view taken along section B-B of FIG. 3;
FIG. 5 is a cross-sectional view taken along section C-C of FIG. 3;
FIG. 6 is an enlarged partial view of region D of FIG. 5;
FIG. 7 is a schematic perspective view of the multi-part injection mold for micro plastic parts of FIG. 1 without the upper mold plate, the upper mold base and the upper mold core;
FIG. 8 is a schematic perspective view of the cooling mechanism of FIG. 1;
in the figure: 1-upper die core, 2-lower die core, 3-demoulding mechanism, 4-pouring gate, 5-aggregate, 6-upper template, 7-lower template, 8-cooling mechanism, 21-main runner, 22-branch runner, 23-die cavity, 31-pulling rod, 311-limit bump, 32-push rod, 33-guide sleeve, 34-guide column, 35-push plate, 36-guide rod, 37-reset spring, 61-upper die base, 71-lower die base, 72-guide hole, 81-first cooling pipe and 82-second cooling pipe.
Detailed Description
The following detailed description of the preferred embodiments of the invention, which is to be read in connection with the accompanying drawings, forms a part of this application, and together with the embodiments of the invention, serve to explain the principles of the invention and not to limit its scope.
Referring to fig. 1-5, the present invention provides an injection mold for a multi-part micro plastic part, which includes an upper mold core 1, a lower mold core 2 and a demolding mechanism 3.
Referring to fig. 3, a main runner 21, a plurality of sub-runners 22 and a plurality of cavities 23 are formed between the lower mold core 2 and the upper mold core 1, the center of the main runner 21 is located right below the pouring gate 4, each sub-runner 22 is vertically intersected with the main runner 21 and uniformly arranged along the length direction of the main runner 21, and each cavity 23 is uniformly arranged on two sides of each sub-runner 22 and communicated with the sub-runners 22. In this embodiment, a cavity distribution form of a die 48 cavity (including three different shapes, each shape corresponding to four sizes) is adopted, specifically, the shape of the cavity includes spherical, heart-shaped and polygonal parts, and the four sizes are respectively: 2.5mm, 2.75mm, 3mm, 3.5 mm.
In order to obtain a better filling effect and save raw materials, the main runner 21 is designed to be as short as possible, and the size of the main runner 21 of the mold is as follows, wherein the taper angle is generally equal to 2 degrees; the diameter d of the small end is equal to the diameter of a forming machine nozzle + (0.5-1); the radius SR of the hemispherical surface is equal to the radius + (1-2) of a forming machine nozzle; the length L is 68 mm; the diameter D of the big end is D +2Ltan 2/alpha is 7.6 mm. The shunt 22 of this embodiment is of circular cross-section and has a diameter D of 2.5 mm. In designing the runner 22, it is sufficient to consider how to minimize the loss of injection pressure, and only then the plastic material melt can reach the cavity of the mold at the fastest speed, so as to divide the plastic material melt to a larger point of the design as much as possible, but this value must be fully considered, if the design exceeds the limit size that it can be applied to, a large amount of air will be brought in during injection molding to cause poor molding of the plastic part, and if the design exceeds the limit size that it can be applied to, the too large size will increase the solidification of the casting system, thereby causing problems of prolonged cooling time and excessive raw material cost. The total length of the runners 22 in this embodiment is 14.5 mm. The gate of the embodiment is a rectangular side gate, and the pouring opening is arranged on the outline of the outer edge of the cavity 23.
Referring to fig. 5 to 7, the demolding mechanism 3 includes a material pulling rod 31 and a plurality of push rods 32, the material pulling rod 31 is slidably connected to the lower mold core 2 and is partially disposed in the main flow channel 21, a limiting protrusion 311 is formed at an upper end of the material pulling rod 31, an inclination angle of a side wall of the limiting protrusion 311 is greater than 90 °, and each push rod 32 is slidably connected to the lower mold core 2 and is partially disposed in the main flow channel 21 or the branch flow channel 22. In this embodiment, the number of the push rods 32 is 15, and the 15 push rods 32 are uniformly arranged below the main flow channel 21 and the sub flow channels 22.
The utility model discloses a set up sprue 21 between lower mould benevolence 2 and last mould benevolence 1, and evenly arrange a plurality of subchannel 22 that intersect perpendicularly with sprue 21 along sprue 21, arrange die cavity 23 in subchannel 22's both sides, thus can make each die cavity 23 all can fully fill, can make each die cavity 23 compact distribution again, better utilize the volume of lower mould benevolence 2 and last mould benevolence 1, reduced the volume of mould, reduced the manufacturing cost of small plastic products; meanwhile, during demolding, the congealed material 5 on the side of the limiting protrusion 311 of the material pulling rod 31 is limited by the inclined side wall of the limiting protrusion 311, so that the congealed material 5 is kept on one side of the lower mold core 2 during first demolding, and the congealed material 5 in the main flow channel 21 and the branch flow channels 22 is pushed by the push rods 32, so that the congealed material 5 is separated from the lower mold core 2, and the phenomenon of difficult demolding or mold clamping can be prevented.
Further, referring to fig. 4 and 5, the multi-part micro plastic injection mold further includes an upper mold plate 6 and a lower mold plate 7; a first mounting groove is formed in the lower end face of the upper template 6, and the upper die core 1 is detachably mounted in the first mounting groove; and a second mounting groove is formed in the upper end surface of the lower template 7, the lower die core 2 is detachably mounted in the second mounting groove, and when the upper template 6 and the lower template 7 are combined, the upper die core 1 is attached to the lower die core 2. Through with upper mould benevolence 1 and lower mould benevolence 2 respectively demountable installation on cope match-plate pattern 6 and lower bolster 7 to conveniently change upper mould benevolence 1 and lower mould benevolence 2, improved the maintainability of mould.
Further, referring to fig. 4 and 5, the multi-part micro plastic injection mold further includes an upper mold base 61 and a lower mold base 71, the upper mold base 61 is fixed on the upper end surface of the upper mold plate 6, and the lower mold base 71 is fixed on the lower end surface of the lower mold plate 7. The upper die plate 6 is conveniently fixed on the injection molding machine by arranging the upper die holder 61, and the lower die plate 7 is conveniently fixed on a driving device (not shown) by arranging the lower die holder 71.
Further, referring to fig. 4 to 7, the demolding mechanism 3 further includes a guide sleeve 33 and a guide pillar 34, the guide sleeve 33 is fixed on the upper mold plate 6, and the guide pillar 34 is fixed on the lower mold plate 7 and is slidably inserted into the guide sleeve 33. Through the cooperation of the guide sleeve 33 and the guide post 34, the die closing and splitting processes of the upper template 6 and the lower template 7 can be guided, so that the accuracy of the die closing and splitting processes is ensured.
Further, referring to fig. 4 to 7, a first yielding hole for the pulling rod 31 to pass through and a plurality of second yielding holes for the pushing rods 32 to pass through are formed in the lower template 7; the demolding mechanism 3 further comprises a push plate 35, the push plate 35 is located between the lower template 7 and the lower die base 71, and the push plate 35 is fixedly connected with the material pulling rod 31 and the push rods 32. In the demolding process, after the upper template 6 is separated from the lower template 7, the push plate 35 is pushed, so that the material pulling rods 31 and the push rods 32 can be pushed, and the solidified materials 5 are separated from the lower mold core 2.
Further, referring to fig. 4 to 7, the lower mold plate 7 is further provided with a guide hole 72, the demolding mechanism 3 further includes a guide rod 36, and the guide rod 36 is fixed on the push plate 35 and is slidably inserted into the guide hole 72. The guide rod 36 is matched with the guide hole 72, so that the moving process of the push plate 35 is guided, and the accuracy of the moving process of the push plate 35 is improved.
Preferably, referring to fig. 4 to 7, the demolding mechanism 3 further includes a return spring 37, the return spring 37 is sleeved on the guide rod 36, one end of the return spring 37 abuts against the lower mold plate 7, the other end of the return spring 37 abuts against the push plate 35, and by providing the return spring 37, the push plate 35 can be tightly attached to the lower mold base 71 during mold closing, so that the positions of the material pulling rod 31 and each push rod 32 during mold closing are kept fixed, and the accuracy of the mold is improved.
Preferably, referring to fig. 5 and 6, a cold material cavity is formed in the lower mold core 2, the cold material cavity is located below the main flow channel 21 and is communicated with the main flow channel 21, the upper end of the material pulling rod 31 is located in the cold material cavity, and by arranging the cold material cavity, when filling, the melted liquid of the foremost part of the low-temperature front will enter the cold material cavity, so as to prevent the melted liquid of the low-temperature front from entering the mold cavity 23 to cause the quality degradation of the product.
Preferably, referring to fig. 5 and 6, a plurality of reinforcing cavities corresponding to the push rods 32 one to one are formed in the lower die core 2, each reinforcing cavity is located below the runner 22 and is communicated with the runner 22, the upper end of each push rod 32 is arranged in the reinforcing cavity, and the thickness of the solidified material 5 at the contact position with the push rod 32 is increased by arranging the reinforcing cavities, so that the push rod 32 is prevented from breaking the solidified material 5 in the demolding process to cause difficulty in demolding or mold clamping.
Further, referring to fig. 7 and 8, the multi-part micro plastic injection mold further includes a cooling mechanism 8, the cooling mechanism 8 includes a first cooling pipe 81 and a second cooling pipe 82, the first cooling pipe 81 is embedded in the upper mold core 1, and the second cooling pipe 82 is embedded in the lower mold core 2. Through setting up first cooling tube 81 and second cooling tube 82, when using, can last letting in microthermal running water in to first cooling tube 81 and second cooling tube 82 to can accelerate the condensation process of the liquid of moulding plastics, and can also prevent that the mould is overheated, prolong the life of mould.
For better understanding of the present invention, the following detailed description is made with reference to fig. 1 to 8 to illustrate the working process of the multi-part micro plastic injection mold provided by the present invention: when the injection molding machine is used, after the upper template 6 and the lower template 7 are matched, injection molding liquid is injected into the mold through the pouring gate 4 by the injection molding machine, the injection molding liquid firstly reaches the main runner 21, then is divided into the branch runners 22, and then enters the cavities 23, meanwhile, low-temperature tap water is continuously introduced into the first cooling pipe 81 and the second cooling pipe 82, the injection molding liquid is cooled and solidified to form the solidified material 5, then the lower template 7 is driven by the driving device to be separated from the upper template 6, the solidified material 5 can be kept at one side of the lower template 7 under the action of the material pulling rod 31, then the pushing plate 35 is driven by the driving device to move upwards, the pushing plate 35 drives the pushing rods 32 to move upwards, so that the solidified material 5 can be ejected out, and finally, all micro plastic parts in the solidified material 5 are separated, and the manufacturing of multi-part micro plastic parts is completed.
The above description is only for the preferred embodiment of the present invention, but the protection scope of the present invention is not limited thereto, and any changes or substitutions that can be easily conceived by those skilled in the art within the technical scope of the present invention should be covered by the protection scope of the present invention.

Claims (10)

1.一种多零件微小塑件注塑模具,其特征在于,包括上模仁、下模仁及脱模机构;1. a multi-part micro-plastic injection mould, is characterized in that, comprises upper mould kernel, lower mould kernel and demoulding mechanism; 所述下模仁与所述上模仁之间形成有一主流道、若干个分流道及若干个型腔,所述主流道的中心位于浇注口的正下方,各个所述分流道均与所述主流道垂直相交且沿所述主流道的长度方向均匀布置,各个所述型腔均布置于所述分流道的两侧且与所述分流道连通;A main flow channel, a number of branch channels and a number of cavities are formed between the lower mold core and the upper mold core. The channels intersect vertically and are evenly arranged along the length direction of the main channel, and each of the cavities is arranged on both sides of the branch channel and communicates with the branch channel; 所述脱模机构包括拉料杆及若干个推杆,所述拉料杆与所述下模仁滑动连接且部分设置于所述主流道内,所述拉料杆的上端形成有一限位凸起,所述限位凸起的一侧壁的倾角大于90°,各个所述推杆均与所述下模仁滑动连接且部分设置于所述主流道或所述分流道内。The demoulding mechanism includes a pulling rod and several push rods. The pulling rod is slidably connected with the lower mold core and is partially arranged in the main flow channel. A limit protrusion is formed on the upper end of the pulling rod. , the inclination angle of one side wall of the limiting protrusion is greater than 90°, and each of the push rods is slidably connected with the lower mold core and is partially arranged in the main channel or the branch channel. 2.根据权利要求1所述的多零件微小塑件注塑模具,其特征在于,还包括上模板及下模板;所述上模板的下端面上开设有第一安装槽,所述上模仁可拆卸安装于所述第一安装槽内;所述下模板的上端面上开设有第二安装槽,所述下模仁可拆卸安装于所述第二安装槽内,当所述上模板与所述下模板合模时,所述上模仁与所述下模仁贴合。2. The multi-part micro-plastic injection mold according to claim 1, further comprising an upper template and a lower template; a first installation groove is provided on the lower end surface of the upper template, and the upper mold can be It is detached and installed in the first installation groove; a second installation groove is opened on the upper end surface of the lower mold plate, and the lower mold core is detachably installed in the second installation groove. When the lower mold plate is closed, the upper mold core is fitted with the lower mold core. 3.根据权利要求2所述的多零件微小塑件注塑模具,其特征在于,还包括上模座及下模座,所述上模座固定于所述上模板的上端面上,所述下模座固定于所述下模板的下端面上。3. The multi-part micro-plastic injection mold according to claim 2, further comprising an upper mold seat and a lower mold seat, the upper mold seat is fixed on the upper end surface of the upper template, and the lower mold seat is fixed on the upper end surface of the upper template. The die base is fixed on the lower end surface of the lower template. 4.根据权利要求2所述的多零件微小塑件注塑模具,其特征在于,所述脱模机构还包括导套及导柱,所述导套固定于所述上模板上,所述导柱固定于所述下模板上且滑动插设于所述导套内。4. The multi-part micro-plastic injection mold according to claim 2, wherein the demoulding mechanism further comprises a guide sleeve and a guide post, the guide sleeve is fixed on the upper template, and the guide post is It is fixed on the lower template and slidably inserted into the guide sleeve. 5.根据权利要求3所述的多零件微小塑件注塑模具,其特征在于,所述下模板上开设有用于供所述拉料杆穿过的第一让位孔及若干个用于供各个所述推杆穿过的第二让位孔;5 . The multi-part micro-plastic injection mold according to claim 3 , wherein the lower template is provided with a first escape hole for the pulling rod to pass through and a plurality of holes for each the second abdication hole through which the push rod passes; 所述脱模机构还包括推板,所述推板位于所述下模板与所述下模座之间,所述推板与所述拉料杆及各个所述推杆均固定连接。The demoulding mechanism further includes a push plate, the push plate is located between the lower template and the lower die base, and the push plate is fixedly connected to the material pulling rod and each of the push rods. 6.根据权利要求5所述的多零件微小塑件注塑模具,其特征在于,所述下模板上还开设有导孔,所述脱模机构还包括导杆,所述导杆固定于所述推板上且滑动插设于所述导孔内。6 . The multi-part micro-plastic injection mold according to claim 5 , wherein the lower template is further provided with a guide hole, the demoulding mechanism further comprises a guide rod, and the guide rod is fixed on the The push plate is slidably inserted in the guide hole. 7.根据权利要求6所述的多零件微小塑件注塑模具,其特征在于,所述脱模机构还包括复位弹簧,所述复位弹簧套设于所述导杆上,所述复位弹簧的一端与所述下模板抵接,所述复位弹簧的另一端与所述推板抵接。7. The multi-part micro-plastic injection mold according to claim 6, wherein the demolding mechanism further comprises a return spring, the return spring is sleeved on the guide rod, and one end of the return spring is The other end of the return spring is in contact with the push plate in contact with the lower template. 8.根据权利要求1所述的多零件微小塑件注塑模具,其特征在于,所述下模仁内形成有一冷料腔,所述冷料腔位于所述主流道的下方且与所述主流道连通,所述拉料杆的上端位于所述冷料腔内。8 . The multi-part micro-plastic injection mold according to claim 1 , wherein a cold material cavity is formed in the lower mold core, and the cold material cavity is located below the main flow channel and is opposite to the main flow channel. 9 . The upper end of the pulling rod is located in the cold material cavity. 9.根据权利要求1所述的多零件微小塑件注塑模具,其特征在于,所述下模仁内还形成有若干个与各个所述推杆一一对应的增强腔,各个所述增强腔均位于所述分流道的下方且与所述分流道连通,各个所述推杆的上端均内置于增强腔内。9 . The multi-part micro-plastic injection mold according to claim 1 , wherein a plurality of reinforced cavities corresponding to each of the push rods are also formed in the lower mold core, and each of the reinforced cavities is formed. 10 . All are located below the shunt channel and communicate with the shunt channel, and the upper ends of each of the push rods are built into the reinforced cavity. 10.根据权利要求1所述的多零件微小塑件注塑模具,其特征在于,还包括冷却机构,所述冷却机构包括第一冷却管及第二冷却管,所述第一冷却管内嵌于所述上模仁内,所述第二冷却管内嵌与所述下模仁内。10. The multi-part micro-plastic injection mold according to claim 1, further comprising a cooling mechanism, the cooling mechanism comprises a first cooling pipe and a second cooling pipe, the first cooling pipe is embedded in the In the upper mold core, the second cooling pipe is embedded in the lower mold core.
CN202120624636.9U 2021-03-26 2021-03-26 A multi-part micro plastic injection mold Expired - Fee Related CN214820413U (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112959616A (en) * 2021-03-26 2021-06-15 江汉大学 Multi-part micro-plastic part injection mold

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112959616A (en) * 2021-03-26 2021-06-15 江汉大学 Multi-part micro-plastic part injection mold

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