Scram button assembly mold
By using a mold with an inclined straight rod and an inclined hole design, combined with an inclined pull piece and a bayonet groove, the positioning problem of the emergency stop button base buckle structure was solved, achieving accurate positioning and protection of the high-gloss layer injection molding and reducing the cost of product replacement.
Patent Information
- Application Number
- CN202423203825.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-24
- Publication Date
- 2025-11-21
- Estimated Expiration
- 2034-12-24
AI Technical Summary
When the mold is used to inject the glossy layer of the emergency stop button, the snap-fit structure of the base is difficult to position and fix, which makes the processing difficult.
The design employs a tilted straight rod and angled hole, with a straight slider driving the ejector core to slide in the slideway, achieving accurate positioning of the snap-fit structure. Furthermore, the combination of the angled pull and the bayonet groove allows for adjustment of the insertion angle of the ejector core, meeting the needs of different snap-fit structures.
It enables accurate positioning of high-gloss injection molded parts, avoids filling the snap-fit opening with injection plastic, protects injection molded components, reduces costs when changing products, and improves processing efficiency.
Smart Images

Figure CN223573710U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to mould field, especially relate to a kind of emergency stop button assembly mould. BACKGROUND
[0002] Emergency stop button, as a kind of safety device for quickly stopping machine or equipment running in emergency, it is usually applied in industrial machinery, automation equipment, electrical control system and other places, to ensure the safety of operator.
[0003] Emergency stop button is usually used for the base of positioning and the high light layer setting in the upper portion of base, when injection molding, base and high light layer need two kinds of materials to be made by twice injection molding, high light layer is injection molded on base finished product, and base has buckle structure for fixing, buckle structure has buckle mouth, in general mould, it is difficult to position and fix buckle mouth on base by machining mould core. SUMMARY
[0004] The utility model discloses a kind of emergency stop button assembly mould, to overcome the defects of prior art, solve the problem that the buckle structure of base is difficult to position and fix when mould is injection molded the high light layer of emergency stop button.
[0005] The utility model discloses a kind of emergency stop button assembly mould, including upper fixed plate, lower fixed plate, upper mould and lower mould, the upper mould is fixedly provided with upper mould core, the lower mould is fixedly provided with lower mould core, the upper mould core and lower mould core are formed with mould cavity, the upper fixed plate is equipped with flow channel mouth, injection flow channel is communicated between flow channel mouth and mould cavity, the injection flow channel passes through upper fixed plate, upper mould and upper mould core, the lower mould core is fixedly provided with positioning mould core, the lower mould core side is provided with top into mould core and straight sliding block, the straight sliding block is limited to contact lower mould surface by pressing block, straight sliding block is provided with inclined hole, the inclined hole is outwardly inclined from top to bottom, straight rod fixedly provided with upper mould is passed in the inclined hole, the lower mould core is equipped with the slide way that top into mould core extends into sliding, the slide way is communicated into mould cavity, the straight sliding block drives top into mould core to slide in slide way.
[0006] By the inclined setting straight rod and inclined hole, when opening and closing mould between upper mould and lower mould, straight rod extrudes the inner side of inclined hole upward or downward, drives straight sliding block to slide on lower mould, thereby drives top into mould core in slide way to pull out or extend, realizes extruding or pulling out in buckle structure mouth on the base of injection molded part, can more accurately position the base of injection molded part to carry out high light layer injection molding, and can prevent high light layer injection material from filling in buckle mouth, and top into mould core is straight in and straight out in slide way, can avoid touching element after injection molding to cause damage.
[0007] The utility model discloses a further setting: still include the inclined pull piece, the inclined pull piece includes with the fixed setting of straight sliding block connection and the slotting part of placing in the lower mould core slotting, the slotting part is equipped with straight slot, straight slot and slide are vertically arranged on the horizontal plane, the top -in mould core includes the limiting block of projecting in side wall, the straight slot is provided with the close -mouthed for limiting block in the slot and is clamped, after the action of inclined pull piece along the opening or closing direction, the top -in mould core slides along the slot direction of straight slot relative to the inclined pull piece.
[0008] Adopt the further setting, set up the inclined pull piece as the connecting piece of straight sliding block and top -in mould core, the number of buckle structure of injection molding part base is multiple, and when the direction is different, can adjust the inclination angle of straight slot of the inclined pull piece, can change the different insertion angle of top -in mould core and slide to lower mould core, satisfy the mouth of each buckle structure of top -in mould core straight in and straight out, according to different insertion angle, only need to replace the adjustment of inclined pull piece, do not need to change the inclination angle of the inclined hole of the straight rod of upper mould and straight sliding block for setting, when replacing the product, do not need to adjust upper mould and straight sliding block, save the cost.
[0009] The utility model discloses a further setting: the straight sliding block is equipped with the bayonet slot that can be used for clamping inclined pull piece or top -in mould core, the bayonet slot includes the bayonet of recessing for limiting block carding in on the slot wall.
[0010] Adopt the further setting, when the direction of slide and the action direction of straight sliding block are same, do not need to set up the inclined pull piece, directly set up the bayonet slot of bayonet on straight sliding block, can cooperate the bayonet of limiting block of top -in mould core and clamping, realize the fixed of top -in mould core and straight sliding block, make straight sliding block can control top -in mould core to do straight in and straight out action between.
[0011] The utility model discloses a further setting: the connection includes a plurality of corresponding connection block of bayonet slot.
[0012] Adopt the further setting, the inclined pull piece also can set up the connection block of corresponding bayonet slot shape and realize the connection, make straight sliding block can be used to connect inclined pull piece and top -in mould core, and can set up a plurality of connection blocks to strengthen the connection.
[0013] The utility model discloses a further setting: the straight sliding block bottom is equipped with two triangle grooves side by side, the lower mould is fixedly provided with the gear block, the gear block top -projecting has the triangle lug of bayonet that can be inserted into the triangle groove, when straight sliding block acts along the slide direction, the triangle lug can be inserted into different triangle grooves.
[0014] With the further arrangement, after the triangular protrusion is matched with the triangular groove, the straight sliding block is moved under the action of a certain force, the inner wall of the triangular groove extrudes the triangular protrusion, the straight sliding block or the gear block is deformed in the up-down direction, the triangular protrusion slides along the contacted inclined surface, after the straight sliding block moves a distance, the triangular protrusion is separated from one triangular groove and enters another triangular groove, and the resistance when the triangular protrusion is separated can limit the distance of the straight sliding block to a certain extent, so that the distance of the straight sliding block is prevented from being too large due to the sliding error fluctuation.
[0015] The straight sliding block is provided with a positioning piece on the side away from the lower mold core, the positioning piece is fixedly arranged with the upper mold, and the contact surfaces of the positioning piece and the straight sliding block are both arranged to be inclined along the direction of the inclined hole.
[0016] With the further arrangement, the positioning piece is fixed with the upper mold, the positioning piece moves with the upper mold during mold opening and closing, the contact surfaces of the straight sliding block and the positioning piece are in contact, the sliding distance of the straight sliding block in the left-right direction is further limited by the up-down movement distance of the positioning piece, the sliding distance of the straight sliding block during mold opening is prevented from being too large, and the straight sliding block can be pushed by the straight rod and the certain extrusion force during mold closing, so that the sliding distance of the straight sliding block is prevented from being too small.
[0017] The straight sliding block is provided with a positioning piece on the side away from the lower mold, the positioning piece is fixedly arranged with the upper mold, and the contact surfaces of the positioning piece and the straight sliding block are both arranged to be inclined along the direction of the inclined hole.
[0018] With the further arrangement, the positioning piece is fixed with the upper mold, the positioning piece moves with the upper mold during mold opening and closing, the contact surfaces of the straight sliding block and the positioning piece are in contact, the sliding distance of the straight sliding block in the left-right direction is further limited by the up-down movement distance of the positioning piece, the sliding distance of the straight sliding block during mold opening is prevented from being too large, and the straight sliding block can be pushed by the straight rod and the certain extrusion force during mold closing, so that the sliding distance of the straight sliding block is prevented from being too small. BRIEF DESCRIPTION OF DRAWINGS
[0019] Figure 1 It is a whole structure schematic view of the embodiment of the utility model;
[0020] Figure 2 It is a half cut structure schematic view of the embodiment of the utility model;
[0021] Figure 3 It is a cooperation schematic view of the lower mold, the lower mold core, the straight rod and the straight sliding block in the embodiment of the utility model;
[0022] Figure 4 It is a whole structure schematic view of the ejection structure in the embodiment of the utility model;
[0023] Figure 5It is the overall structure schematic view of the lower die core in the embodiment of the utility model;
[0024] Figure 6 It is the overall structure schematic view of the upper die core in the embodiment of the utility model;
[0025] Figure 7 It is the overall structure schematic view of the straight sliding block in the embodiment of the utility model;
[0026] Figure 8 It is the overall structure schematic view of the straight sliding block in the embodiment of the utility model from another perspective;
[0027] Figure 9 It is the explosion view of the straight sliding block and the gear block in the embodiment of the utility model;
[0028] Figure 10 It is the overall structure schematic view of the top-in die core in the embodiment of the utility model;
[0029] Figure 11 It is the overall structure schematic view of the inclined pulling piece in the embodiment of the utility model.
[0030] In the figure: 1, upper die; 2, lower die; 3, die cavity; 4, positioning die core; 5, top-in die core; 51, limiting block; 6, straight sliding block; 60, inclined hole; 61, bayonet slot; 611, bayonet; 62, triangular groove; 63, stepped block; 7, inclined pulling piece; 71, connecting part; 711, closing; 72, slotted part; 73, straight groove; 8, positioning piece; 9, pressing block; 10, ejection space; 11, upper die core; 12, upper fixed plate; 121, flow passage opening; 122, injection flow passage; 13, ejector pin bottom plate; 14, ejector pin fixed plate; 15, product ejection rod; 16, flow passage ejection rod; 17, reset piece; 19, guide sleeve; 20, straight rod; 21, lower die core; 211, slide way; 22, gear block; 221, triangular protruding block; 23, partition plate; 24, lower fixed plate; 241, ejection through hole; 25, supporting rod; 26, guide rod. DETAILED DESCRIPTION
[0031] The technical solutions in the embodiments will be described clearly and completely below with reference to the drawings. Obviously, the described embodiments are only part of the embodiments of the utility model, not all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the utility model.
[0032] It should be noted that in the description of this utility model, all directional indicators (such as up, down, forward, backward, etc.) are only used to explain the relative positional relationship and movement of each component in a certain specific posture (as shown in the figure). If the specific posture changes, the directional indicator will also change accordingly.
[0033] Furthermore, in this utility model, the use of terms such as "first," "second," etc., is for descriptive purposes only and should not be construed as indicating or implying their relative importance or implicitly specifying the number of technical features indicated. In the description of this utility model, "a number" means at least two, such as two, three, etc., unless otherwise explicitly specified.
[0034] Furthermore, the technical solutions of the various embodiments of this utility model can be combined with each other, but this must be based on the ability of those skilled in the art to implement them. When the combination of technical solutions is contradictory or cannot be implemented, it should be considered that such combination of technical solutions does not exist and is not within the scope of protection claimed by this utility model.
[0035] like Figures 1-11 As shown, an emergency stop button assembly mold includes an upper fixed plate 12, an upper mold 1, a lower mold 2, a lower fixed plate 24, and several partitions 23. The partitions 23 are disposed between the lower mold 2 and the lower fixed plate 24 and form an ejection space 10 for placing an ejection structure. The upper fixed plate 12, the upper mold 1, the lower mold 2, the ejection space 10, and the lower fixed plate 24 are arranged sequentially from top to bottom.
[0036] The upper mold 1 and the lower mold 2 are connected by guide pillars, and the guide pillars are fitted with guide sleeves 19. The guide sleeves 19 are located in the upper mold 1. The upper mold 1 and the lower mold 2 are connected by positioning pillars and positioning sleeves. The lower mold 2, the partition plate 23 and the lower fixed plate 24 are fixedly connected by bolts. The upper mold 1 and the upper fixed plate 12 are fixedly set by bolts.
[0037] The upper mold 1 is fixedly provided with an upper mold core 11, and the lower mold 2 is fixedly provided with a lower mold core 21. A positioning mold core 4 is fixedly provided in the lower mold core 21. The positioning mold core 4 is used to initially position the base of the emergency stop button. Together with the upper mold core 11 and the lower mold core 21, they form a mold cavity 3. The upper fixed plate 12 is provided with a flow channel 121. The flow channel 121 is connected to the mold cavity 3 by an injection flow channel 122. The injection flow channel 122 passes through the upper fixed plate 12, the upper mold 1, and the upper mold core 11. In this embodiment, the upper mold core 11 and the lower mold core 21 form two mold cavities 3. An injection flow channel 122 is also provided on the contact end face of the upper mold core 11 and the lower mold core 21 to connect the two mold cavities 3, so that the high-gloss layer of the two emergency stop buttons in the two mold cavities 3 can be injection molded by one flow channel 121.
[0038] The lower die 2 is provided with a top-in die core 5 and a straight sliding block 6 on the side edge of the lower die 21. The straight sliding block 6 is provided with stepped blocks 63 protruding outward on both sides. The stepped blocks 63 on both sides of each straight sliding block 6 are provided with a pressing block 9 above the upper end surface. The pressing block 9 is fixedly connected to the lower die 2, and the bottom surface of the pressing block 9 is in contact with the top surface of the stepped block 63 to limit the straight sliding block 6 on the surface of the lower die 2.
[0039] The straight sliding block 6 is provided with an inclined hole 60. The inclined hole 60 is inclined outward from top to bottom. A straight rod 20 is arranged in the inclined hole 60. The straight rod 20 is fixedly arranged in the upper die 1. In this embodiment, the straight rod 20 is a light rod. The light rod head is clamped and fixed at the sink hole of the upper die 1 and the upper fixed part 12. The part of the straight rod 20 arranged in the inclined hole 60 is a light rod, so that the sliding resistance is smaller when cooperating with the inclined hole 60. Thus, the straight rod 20 moves up and down together with the upper die 1 when opening and closing the mold. The straight rod 20 is extruded by the inner wall of the inclined hole 60 to apply an inclined upward or downward force to the straight sliding block 6. Since the straight sliding block 6 is limited in the upward and downward directions by the pressing block 9, the straight sliding block 6 slides in the left and right directions.
[0040] The lower die 21 is provided with a sliding channel 211 for the top-in die core 5 to slide into. When opening and closing the mold, the straight sliding block 6 drives the top-in die core 5 to slide in the sliding channel 211.
[0041] It should be noted that in this embodiment, two mold cavities 3 are arranged side by side to correspond to the injection of an emergency stop button. Each emergency stop button base is provided with three buckle ports at equal angles. Each buckle port corresponds to the sliding channel 211 provided on the lower die 21. The lower die 21 is provided with a total of six sliding channels 211. Two sliding channels 211 are arranged perpendicular to the left and right end surfaces of the lower die 21. The other four sliding channels 211 protrude towards the front and rear end surfaces of the lower die 21, and the four sliding channels 211 have an angle of sixty degrees with the front and rear end surfaces of the lower die 21, respectively. Each sliding channel 211 is provided with a top-in die core 5 extending into the mold cavity 3. Thus, the left and right sides of the lower die 21 are provided with straight sliding blocks 6. Each straight sliding block 6 is connected to a top-in die core 5. The front and rear sides of the lower die 21 are also provided with straight sliding blocks 6. The two straight sliding blocks 6 are connected to a diagonal puller 7. Each diagonal puller 7 is connected to two top-in die cores 5, which extend into two mold cavities 3, respectively.
[0042] The oblique pulling member 7 comprises a connecting part 71 fixedly arranged with the straight sliding block 6 and a slotted part 72 placed in the slot of the lower die core 21, the slotted part 72 is provided with a straight slot 73, and two straight slots 73 are arranged on the slotted part 72 in the embodiment, each straight slot 73 forms an angle of 30 or 150 degrees with the front and rear end faces of the lower die core 21, so as to be arranged perpendicularly to the corresponding slide 211, the top-in die core 5 comprises a limiting block 51 protruding from the side wall, each straight slot 73 is provided with a closing opening 731 at the slot opening in the direction of the corresponding slide 211, the end face of the closing opening 731 in the straight slot 73 is in surface contact with the limiting block 51, and the contact surface is a plane arranged in parallel along the slot direction of the straight slot 73, after the limiting block 51 is clamped in the closing opening 731, the oblique pulling member 7 moves in the mold opening or closing direction, and the top-in die core 5 slides in the slot direction of the straight slot 73 relative to the oblique pulling member 7, since the straight sliding block 6 is fixed relative to the oblique pulling member 7, when the mold is opened or closed, the oblique pulling member 7 moves in the front and rear directions along with the straight sliding block 6, at this time, the limiting block 51 is in contact with the end face of the closing opening 731 in the straight slot 73, and the contact surface is a plane forming an angle of 30 or 150 degrees with the front and rear end faces of the lower die core 21, thereby the top-in die core 5 is subjected to a force in the direction of the slide 211, and extends into or withdraws from the slide 211 along with the movement of the oblique pulling member 7.
[0043] Further, when the angle of the slide 211 is changed, the oblique pulling member 7 is replaced, the inclination angle of the straight slot 73 is changed, the different insertion angles of the top-in die core 5 and the slide 211 to the lower die core 21 are changed, the top-in die core 5 is directly inserted and directly withdrawn from the opening of each buckle structure, according to different insertion angles, only the oblique pulling member 7 needs to be replaced, the inclination angle of the straight sliding block 6 for penetrating the oblique hole of the straight rod 20 does not need to be changed, and the upper die 1 and the straight sliding block 6 do not need to be adjusted when the product is replaced, thereby saving cost.
[0044] The straight sliding block 6 is provided with a clamping slot 61 for clamping the oblique pulling member 7 or the top-in die core 5, and the clamping slot 61 comprises a clamping opening 611 recessed on the slot wall for clamping the limiting block 51.
[0045] In the embodiment, two clamping slots 61 are arranged on the straight sliding block 6 for connecting the oblique pulling member 7, and the clamping slots 61 are both provided with clamping openings 611, so that the whole clamping slot 61 has a “T” shape structure, the connecting part 71 of the oblique pulling member 7 comprises two connecting blocks 711 corresponding to the “T” shape clamping slot 61, the T-shaped connection part can make the oblique pulling member 7 bear force more uniformly, and the two connecting blocks 711 and clamping openings 611 can be arranged to strengthen the connection.
[0046] The straight sliding block 6 for directly connecting the top-in die core 5, the clamping slot 61 can be arranged as one, and the clamping slot 61 can be provided with clamping openings 611 on both sides or only one clamping opening 611, as long as the limiting block 51 can be clamped in the clamping slot 61.
[0047] Thus, when the direction of the slide 211 is the same as the action direction of the straight slider 6, the inclined puller 7 is not needed, and the bayonet slot 61 with the bayonet 611 is directly arranged on the straight slider 6, can be clamped with the limiting block 51 of the push-in mold core 5, realizes the fixation of the push-in mold core 5 and the straight slider 6, and makes the straight slider 6 control the straight in and out action of the push-in mold core 5.
[0048] The positioning member 8 is arranged on the side of each straight slider 6 away from the lower mold core 21, and the positioning member 8 is fixedly arranged with the upper mold 1. The contact surface of the positioning member 8 and the straight slider 6 is arranged in the direction of the inclined hole 60. The positioning member 8 is fixedly arranged with the upper mold 1. When the mold is opened and closed, the positioning member 8 acts with the upper mold 1, the contact surface of the straight slider 8 and the positioning member 8 is in contact, the up and down action distance of the positioning member 8 further limits the sliding distance of the straight slider 6 in the left and right directions, avoids the sliding distance of the straight slider 6 being too large when the mold is opened, and provides a certain extrusion pressure to the straight rod 20 to push the straight slider 6 when the mold is closed, avoiding the case that the sliding distance of the straight slider 6 is too small.
[0049] The bottom of each straight slider 6 is provided with two triangular grooves 62 side by side, and the bottom of each straight slider 6 is provided with a gear block 22, respectively. The gear block 22 is fixedly arranged on the lower mold 2. The top of the gear block 22 protrudes a triangular protruding block 221 which can be clamped into the triangular groove 62. When the straight slider 6 acts in the direction of the slide 211, the triangular protruding block 221 can be clamped into different triangular grooves 62. After the triangular protruding block 221 cooperates with the triangular groove 62, the straight slider 6 is acted by a certain force when the mold is opened or closed. The inner wall of the triangular groove 62 extrudes the triangular protruding block 221, extrudes the straight slider 6 or the gear block 22 to act in the up and down direction, the triangular protruding block 221 relatively slides along the contact inclined surface, and after the straight slider 6 moves a distance, the triangular protruding block 221 overcomes a certain resistance and comes out of a triangular groove 62 to enter another triangular groove 62. At this time, the action of opening or closing the mold is completed. The resistance when coming out can limit the distance of the straight slider 6 to a certain extent, avoiding the case that the straight slider 6 sliding error fluctuation causes the distance of the push-in mold core 5 to be too large, so as to avoid damaging the base with injection molding.
[0050] The ejection structure includes a pin bottom plate 13 arranged in an ejection space 10, a pin fixed plate 14, the pin fixed plate 14 is provided with a product ejection rod 15 and a flow channel ejection rod 16, the pin bottom plate 13 is arranged below the pin fixed plate 14 for pushing the product ejection rod 15 and the flow channel ejection rod 16, the product ejection rod 15 and the flow channel ejection rod 16 pass through the lower mold core 21 and are respectively arranged in the mold cavity 3 and the injection flow channel 122 for respectively ejecting the injection molded part and the injection flow channel part.
[0051] Reset member 17 is evenly distributed between the ejector pin fixing plate 14 and the lower mold 2, and in this embodiment, the reset member 17 is a telescopic spring. The support rod 25 and the guide rod 26 are fixed between the lower fixing plate 24 and the lower mold 2. The support rod 25 and the guide rod 26 pass through the ejector pin fixing plate 14 and the ejector pin bottom plate 13. The support rod 25 is used to support the lower mold 2 and the lower fixing member 24, maintain the spacing between the lower mold 2 and the lower fixing member 24, and avoid deformation. The guide rod 26 is provided with a guide sleeve 19, which is arranged on the ejector pin fixing plate 14 and the ejector pin bottom plate 13, and is used to guide the action of the ejector pin fixing plate 14 and the ejector pin bottom plate 13. The guide sleeve 19 can be used to protect the guide rod 26, reduce friction damage, and increase sliding smoothness.
[0052] The lower fixing plate 24 is provided with an ejection through hole 241 for the external push rod to extend into. After the external push rod passes through the ejection through hole 241, it abuts against the bottom surface of the ejector pin bottom plate 13, drives the ejector pin bottom plate 13, controls the upward action of the product ejector rod 15 and the runner ejector rod 16, and completes the demolding of the injection molded part. At this time, the reset member 17 is compressed. After the external push rod is released, the ejector pin bottom plate 13 and the ejector pin fixing plate 14 are reset by the elastic force of the reset member 17.
[0053] The upper fixing plate 12, the upper mold 1 and the lower mold 2 are all provided with waterway pipes for cooling the injection runner 122 and the mold cavity 3, which can accelerate the cooling speed of the injection material, appropriately control the temperature, and improve the injection quality of the product.
Claims
1. A mold for an emergency stop button assembly, comprising an upper fixed plate (12), an upper mold (1), a lower mold (2), and a lower fixed plate (24), wherein the upper mold (1) is fixedly provided with an upper mold core (11), and the lower mold (2) is fixedly provided with a lower mold core (21), the upper mold core (11) and the lower mold core (21) forming a mold cavity (3), the upper fixed plate (12) is provided with a runner (121), and an injection runner (122) communicates between the runner (121) and the mold cavity (3), the injection runner (122) passing through the upper fixed plate (12), the upper mold (1), and the upper mold core (11), characterized in that, A positioning mold core (4) is fixedly provided in the lower mold core (21). An ejector mold core (5) and a straight slider (6) are provided on the side of the lower mold core (21). The straight slider (6) is restricted to the surface of the lower mold (2) by a pressure block (9). An oblique hole (60) is provided on the straight slider (6). The oblique hole (60) is inclined outward from top to bottom. A straight rod (20) fixedly provided with the upper mold (1) passes through the oblique hole (60). A slide rail (211) is provided on the lower mold core (211) for the ejector mold core (5) to slide in. The straight slider (6) drives the ejector mold core (5) to slide in the slide rail (211).
2. The emergency stop button assembly mold according to claim 1, characterized in that, It also includes a slanted pull member (7), which includes a connecting part (71) fixedly disposed with the straight slider (6) and a slotted part (72) placed at the slot of the lower mold core (21). The slotted part (72) is provided with a straight groove (73). The straight groove (73) and the slide (211) are arranged perpendicularly on the horizontal plane. The ejector core (5) includes a limiting block (51) protruding from the side wall. The straight groove (73) is provided with a constriction (731) at the groove opening for the limiting block (51) to be inserted therein. After the slanted pull member (7) moves along the mold opening or mold closing direction, the ejector core (5) slides relative to the slanted pull member (7) along the groove direction of the straight groove (73).
3. The emergency stop button assembly mold according to claim 2, characterized in that, The straight slider (6) is provided with a slot (61) for engaging the inclined puller (7) or the ejector core (5). The slot (61) includes a recessed slot (611) on the groove wall for the limiting block (51) to engage.
4. The emergency stop button assembly mold according to claim 3, characterized in that, The connecting part (71) includes a plurality of connecting blocks (711) corresponding to the bayonet slot (61).
5. The emergency stop button assembly mold according to claim 1, characterized in that, The bottom of the straight slider (6) is provided with two triangular grooves (62) side by side. The lower mold (2) is fixedly provided with a stop block (22). The top of the stop block (22) has a triangular protrusion (221) that can be inserted into the triangular groove (62). When the straight slider (6) moves along the slide (211), the triangular protrusion (221) can be inserted into different triangular grooves (62).
6. The emergency stop button assembly mold according to claim 1, characterized in that, A positioning element (8) is provided on the side of the straight slider (6) away from the lower mold core (21). The positioning element (8) is fixedly set with the upper mold (1). The contact surfaces of the positioning element (8) and the straight slider (6) are inclined along the direction of the inclined hole (60).
7. The emergency stop button assembly mold according to claim 1, characterized in that, A pressure block (9) is provided on each side of the straight slider (6). A stepped block (63) protrudes outward from both sides of the straight slider (6). The pressure block (9) is fixedly connected to the lower mold (2). The bottom surface of the pressure block (9) is in contact with the top surface of the stepped block (63).
8. The emergency stop button assembly mold according to claim 1, characterized in that, It also includes several partitions (23), which are arranged between the lower mold (2) and the lower fixed plate (24) to form an ejection space (10) for placing the ejection structure. The upper fixed plate (12), upper mold (1), lower mold (2), ejection space (10) and lower fixed plate (24) are arranged sequentially from top to bottom. The upper mold (1) and lower mold (2) are connected by guide pillars, and the guide pillars are fitted with guide sleeves (19). The guide sleeves (19) are located in the upper mold (1). The upper mold (1) and lower mold (2) are connected by positioning pillars and positioning sleeves.
9. A mold for an emergency stop button assembly according to claim 8, characterized in that, The ejection structure includes an ejector base plate (13) and an ejector fixing plate (14) disposed in the ejection space (10). The ejector fixing plate (14) is provided with a product ejector rod (15) and a flow channel ejector rod (16). The ejector base plate (13) is located below the ejector fixing plate (14) to push the product ejector rod (15) and the flow channel ejector rod (16). A reset member (17) is provided between the ejector fixing plate (14) and the lower mold (2).
10. A mold for an emergency stop button assembly according to claim 8, characterized in that, Water pipes for cooling the injection molding runner (122) and the mold cavity (3) are provided in the upper fixing plate (12), the upper mold (1) and the lower mold (2).