Foaming mold clamp device
By designing a foaming mold clamping device, and utilizing the cooperation of the mold core, movable side plate and guide rail assembly, stable demolding and precise control of high-precision low-temperature refrigeration and freezing storage boxes are achieved, solving the problem of insufficient precision of existing mold clamps and improving product quality.
Patent Information
- Application Number
- CN202423225676.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-26
- Publication Date
- 2026-01-20
- Estimated Expiration
- 2034-12-26
AI Technical Summary
Existing general-purpose mold fixtures cannot meet the requirements for unilateral deformation of foamed products in high-precision professional storage boxes for low-temperature refrigeration and freezing, and cannot achieve stable demolding and precise control of product accuracy.
A foaming mold clamping device is designed, including a mold core, a movable side plate and a guide rail assembly. The movable side plate is driven to move along the guide rail by a first drive assembly, so that it separates from the inside of the box. Combined with the ejection mechanism and the mold locking mechanism, stable demolding and precise control are achieved.
This method enables stable demolding of the product after foaming, reduces the strong separation between the mold core and the housing, ensures the precision and quality of the product, and meets the requirements for high-precision use.
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Figure CN223812260U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the field of fixture, especially a foaming mould fixture device. BACKGROUND
[0002] With the rapid development of science and technology, people's living standards are increasing, and the demand for special low-temperature refrigeration, freezing high-precision professional storage box is increasing, the product low-temperature refrigerator foaming thickness, foaming liquid formula and other influences, and the foaming process and equipment such as foaming machine and fixture have special requirements. The flat plate heat pipe and the VIP mechanical strength feature require the foaming fixture to have high machining and assembly precision.
[0003] The existing general mould fixture investigation understands that the minimum single-side deformation of the product after foaming of the mould fixture is in the interval range of 0.5mm to 1.2mm, and the mould fixture precision cannot meet the development of the product. A high-precision foaming mould fixture is developed through technical research to meet the use requirements of the product.
[0004] Therefore, a foaming mould fixture device that can stably demould and accurately control product precision is needed. SUMMARY
[0005] To overcome the problems in the related art, the utility model aims to provide a foaming mould fixture device that can stably demould and accurately control product precision.
[0006] A foaming mould fixture device includes a mould core and a box body, the mould core is arranged in the box body, two sides of the mould core are connected with movable side plates, a first guide rail assembly is arranged between the mould core and the movable side plates, the first guide rail assembly and the movable side plates are both arranged obliquely, and the movable side plates are connected with a first driving assembly; the first driving assembly is used to drive the movable side plates to move along the direction of the first guide rail assembly, so that the movable side plates are separated from the inner side of the box body.
[0007] In the preferred technical scheme of the utility model, the first driving assembly includes a first cylinder and a guide column, a movable block is connected to the push rod of the first cylinder, the guide column penetrates through the movable block, and the push rod of the first cylinder drives the movable block to move along the direction of the guide column.
[0008] In the preferred technical scheme of the utility model, the two sides of the movable block are connected with symmetrical rods, the symmetrical rods are connected with the movable side plates, and the movable block is used to drive the symmetrical rods to move, so as to drive the movable side plates to move along the direction of the first guide rail assembly.
[0009] In the preferable technical scheme of the utility model, the foaming mould clamp device further includes an ejection mechanism, the ejection mechanism includes a top block and a guide block arranged below the box body, the top block moves along the direction of the guide block to push the box body to move upwards.
[0010] In the preferable technical scheme of the utility model, the ejection mechanism further includes a second driving assembly, the second driving assembly includes a second cylinder, a push rod of the second cylinder is connected with the top block, and the push rod of the second cylinder pushes the top block to move along the direction of the guide block.
[0011] In the preferable technical scheme of the utility model, the foaming mould clamp device further includes a first clamping plate, the first clamping plate is connected with a mould lifting mechanism, the mould lifting mechanism includes a third driving assembly, and the third driving assembly is used for driving the first clamping plate to move.
[0012] In the preferable technical scheme of the utility model, the mould lifting mechanism further includes a second guide rail assembly, the second guide rail assembly is connected with the first clamping plate, and the first clamping plate moves along the direction of the second guide rail assembly.
[0013] In the preferable technical scheme of the utility model, a mould locking hook and a connecting head are arranged on the first clamping plate, the connecting head is arranged on the two sides of the mould locking hook, and the connecting head is matched with the third driving assembly.
[0014] In the preferable technical scheme of the utility model, a lock post is arranged on the side surface of the first clamping plate, and the lock post extends away from the first clamping plate.
[0015] In the preferable technical scheme of the utility model, the foaming mould clamp device further includes a second clamping plate, a mould locking mechanism is connected to the side surface of the second clamping plate, the mould locking mechanism and the lock post are both located on the same side of the first clamping plate, and the mould locking mechanism is matched with the lock post.
[0016] In the preferable technical scheme of the utility model, the mould locking mechanism includes a fourth driving assembly, the fourth driving assembly is connected with a mould locking arm, and the fourth driving assembly drives the mould locking arm to move; a notch is formed in the mould locking arm, and the lock post is inserted into the notch to fix the first clamping plate and the second clamping plate.
[0017] The utility model discloses the beneficial effect is:
[0018] This utility model provides a foaming mold clamping device, including a mold core and a housing, with the mold core disposed within the housing. Movable side plates are connected to both sides of the mold core, and a first guide rail assembly is provided between the mold core and the movable side plates. Both the first guide rail assembly and the movable side plates are inclined. A first driving assembly is connected to the movable side plates. The first driving assembly drives the movable side plates to move along the direction of the first guide rail assembly, thereby separating the movable side plates from the inner side of the housing. The side of the mold core is inclined, and the movable side plates are adapted to the side of the mold core. The movable side plates are connected to the first driving assembly, which is controlled by an air source. By controlling the air source connected to the first driving assembly, the first driving assembly pushes the movable side plates to move along the direction of the first guide rail assembly. Since the first guide rail assembly extends from the lower end to the upper end of the side of the mold core, when the first driving assembly pushes the movable side plates, the movable side plates move from the lower end to the upper end of the side of the mold core, thereby separating the movable side plates from the inner side of the housing, facilitating direct removal of the housing. The separation of the movable side panel from the inner side of the box not only prevents the inner side of the box from being squeezed onto the movable side panel after foaming, reducing the strong separation of the mold core from the box, but also ensures the precision of the mold core and improves product quality. Attached Figure Description
[0019] Figure 1 This is a front view of the foaming mold clamping device of this utility model;
[0020] Figure 2 This is a front view of the mold-lifting mechanism of this utility model;
[0021] Figure 3 This is a front view of the second clamping plate of this utility model;
[0022] Figure 4 This is a schematic diagram of the mold core and movable side plate of this utility model;
[0023] Figure 5 This is a schematic diagram of the first guide rail assembly and the first drive assembly of this utility model;
[0024] Figure 6 This is a front view of the first drive component of this utility model.
[0025] Reference numerals: 1. Mold core; 2. Box body; 3. Movable side plate; 4. First guide rail assembly; 5. First drive assembly; 6. First cylinder; 7. Guide column; 8. Movable block; 9. Symmetrical rod; 10. Ejection mechanism; 11. Ejector block; 12. Guide block; 13. Second drive assembly; 14. Second cylinder; 15. First clamping plate; 16. Mold lifting mechanism; 17. Third drive assembly; 18. Second guide rail assembly; 19. Mold locking hook; 20. Connector; 21. Locking column; 22. Second clamping plate; 23. Mold locking mechanism; 24. Fourth drive assembly; 25. Mold locking arm; 26. Notch. Detailed Implementation
[0026] Preferred embodiments of the present invention will now be described in more detail with reference to the accompanying drawings. While preferred embodiments of the present invention are shown in the drawings, it should be understood that the present invention may be implemented in various forms and should not be limited to the embodiments set forth herein. Rather, these embodiments are provided so that the present invention will be thorough and complete, and will fully convey the scope of the present invention to those skilled in the art.
[0027] Example 1
[0028] like Figures 1-6 As shown, this embodiment provides a foaming mold fixture device, including a mold core 1 and a housing 2. The mold core 1 is disposed inside the housing 2. Movable side plates 3 are connected to both sides of the mold core 1. A first guide rail assembly 4 is disposed between the mold core 1 and the movable side plates 3. Both the first guide rail assembly 4 and the movable side plates 3 are inclined. The movable side plates 3 are connected to a first driving assembly 5. The first driving assembly 5 is used to drive the movable side plates 3 to move along the direction of the first guide rail assembly 4, so that the movable side plates 3 are separated from the inner side of the housing 2.
[0029] The core 1 has a trapezoidal cross-sectional shape. Its upper and lower surfaces face each other and are parallel. The sides of the core 1 are inclined and connected to or integrally formed with the upper and lower surfaces. The movable side plate 3 is adapted to the side of the core 1. Two first guide rail assemblies 4 are provided on the side of the core 1. These two first guide rail assemblies 4 are parallel to each other and extend from the lower end of the side of the core 1 towards the upper end. The first guide rail assemblies 4 are parallel to the side of the core 1 and are slidably connected to the movable side plate 3. The movable side plate 3 slides simultaneously along the directions of the two first guide rail assemblies 4. Preferably, the inclination angle between the sides of the core 1 and the first guide rail assemblies 4 is 8°, facilitating the sliding of the movable side plate 3 along the directions of the first guide rail assemblies 4.
[0030] The movable side plate 3 is connected to a first drive assembly 5, which is controlled by an air source. When the first drive assembly 5 is connected to the air source, it pushes the movable side plate 3 to move along the direction of the first guide rail assembly 4. The movement can be uniform or variable speed, which is not limited here. In this embodiment, the movable side plate 3 moves at a uniform speed along the direction of the first guide rail assembly 4 as an example. The movable side plates 3 on both sides of the mold core 1 move simultaneously from the lower end of the side of the mold core 1 to the upper end of the side of the mold core 1, so that the whole formed by the mold core 1 and the movable side plate 3 separates from the inner side of the box 2. This prevents the inner side of the foamed box 2 from being squeezed on the mold core 1, reduces the strong separation between the box 2 and the mold core 1, and facilitates the direct removal of the box 2 from the mold core 1 after demolding.
[0031] The foaming mold fixture device of this embodiment includes a mold core 1 and a housing 2, wherein the mold core 1 is disposed within the housing 2; movable side plates 3 are connected to both sides of the mold core 1, and a first guide rail assembly 4 is disposed between the mold core 1 and the movable side plates 3. Both the first guide rail assembly 4 and the movable side plates 3 are inclined, and the movable side plates 3 are connected to a first drive assembly 5; the first drive assembly 5 is used to drive the movable side plates 3 to move along the direction of the first guide rail assembly 4, so that the movable side plates 3 are separated from the inner side of the housing 2. The side of the mold core 1 is inclined, the movable side plates 3 are adapted to the side of the mold core 1, and the movable side plates 3 are connected to the first drive assembly 5, which is controlled by an air source. By controlling the air supply to the first drive assembly 5, the first drive assembly 5 pushes the movable side plate 3 to move along the direction of the first guide rail assembly 4. Since the first guide rail assembly 4 extends from the lower end of the side of the mold core 1 to the upper end of the side of the mold core 1, when the first drive assembly 5 pushes the movable side plate 3, the movable side plate 3 moves from the lower end of the side of the mold core 1 to the upper end of the side of the mold core 1, so that the movable side plate 3 separates from the inner side of the box 2, making it easy to directly remove the box 2. The separation of the movable side plate 3 from the inner side of the box 2 not only avoids the inner side of the foamed box 2 being squeezed on the movable side plate 3, reducing the strong separation of the mold core 1 from the box 2, but also ensures the precision of the mold core 1 and improves product quality.
[0032] Example 2
[0033] like Figures 1-6 As shown, this embodiment provides a foaming mold fixture device, including a mold core 1 and a housing 2. The mold core 1 is disposed inside the housing 2. Movable side plates 3 are connected to both sides of the mold core 1. A first guide rail assembly 4 is disposed between the mold core 1 and the movable side plates 3. Both the first guide rail assembly 4 and the movable side plates 3 are inclined. The movable side plates 3 are connected to a first driving assembly 5. The first driving assembly 5 is used to drive the movable side plates 3 to move along the direction of the first guide rail assembly 4, so that the movable side plates 3 are separated from the inner side of the housing 2.
[0034] The first drive assembly 5 includes a first cylinder 6 and a guide post 7. The push rod of the first cylinder 6 is connected to a movable block 8, and the guide post 7 passes through the movable block 8. The push rod of the first cylinder 6 pushes the movable block 8 to move along the direction of the guide post 7.
[0035] The movable block 8 is connected to two symmetrical rods 9 on both sides. The symmetrical rods 9 are connected to the movable side plate 3. The movable block 8 is used to drive the symmetrical rods 9 to move, so as to drive the movable side plate 3 to move along the direction of the first guide rail assembly 4.
[0036] The foaming mold clamping device further comprises an ejection mechanism 10, the ejection mechanism 10 comprises a top block 11 arranged below the box body 2 and a guide block 12, the top block 11 moves in the direction of the guide block 12 to push the box body 2 to move upward.
[0037] The ejection mechanism 10 further comprises a second driving assembly 13, the second driving assembly 13 comprises a second cylinder 14, the push rod of the second cylinder 14 is connected with the top block 11, and the push rod of the second cylinder 14 pushes the top block 11 to move in the direction of the guide block 12.
[0038] The first cylinder 6 and the guide column 7 are arranged in the height direction, and the movable block 8 is located above the first driving assembly 5. When the first driving assembly 5 is connected to the air source, compressed air enters the cavity of the first cylinder 6, the inside of the cavity is provided with a push rod, and the push rod is pushed to move upward after the compressed air enters the cavity, so that the push rod pushes the movable block 8 to move upward. The movable block 8 and the guide column 7 are in sliding connection, the guide column 7 penetrates through the movable block 8, and when the movable block 8 is moved by the push rod, the movable block 8 moves upward along the height direction of the guide column 7, and the movable block 8 drives the symmetric rod 9 to move, so as to drive the movable side plate 3 to move, and the movable side plate 3 moves along the direction of the first guide rail assembly 4, so as to realize the separation of the movable side plate 3 and the inside of the box body 2.
[0039] The ejection mechanism 10 is arranged below the box body 2, the ejection mechanism 10 comprises the top block 11, the guide block 12 is arranged close to the top block 11, the guide block 12 is used for guiding the movement direction of the top block 11, the guide block 12 is arranged in the height direction, and the top block 11 moves upward along the height direction of the guide block 12. The top block 11 is connected with the push rod of the second cylinder 14, when the second cylinder 14 is connected to the air source, the push rod is pushed to move upward by the compressed air in the inner cavity of the second cylinder 14, so as to push the top block 11 to move upward along the height direction of the guide block 12, so as to push the box body 2 after foaming upward along the height direction, so that the box body 2 is ejected, a stepped space is formed, and the staff can take out the box body 2.
[0040] The first driving assembly 5 in this embodiment includes a first cylinder 6 and a guide post 7. The push rod of the first cylinder 6 is connected to a movable block 8, and the guide post 7 passes through the movable block 8. The push rod of the first cylinder 6 pushes the movable block 8 to move along the direction of the guide post 7. Symmetrical rods 9 are connected to both sides of the movable block 8. The symmetrical rods 9 are connected to the movable side plate 3. The movable block 8 is used to drive the symmetrical rods 9 to move, thereby driving the movable side plate 3 to move along the direction of the first guide rail assembly 4. It also includes an ejection mechanism 10, which includes a top block 11 and a guide block 12 disposed below the housing 2. The top block 11 moves along the direction of the guide block 12 to push the housing 2 upward. The ejection mechanism 10 also includes a second driving assembly 13, which includes a second cylinder 14. The push rod of the second cylinder 14 is connected to the top block 11, and the push rod of the second cylinder 14 pushes the top block 11 to move along the direction of the guide block 12. By controlling the air supply to the second cylinder 14, the push rod of the second cylinder 14 pushes the top block 11 upward along the height direction of the guide block 12, thus ejecting the foamed box 2 and forming a stepped space for easy removal of the foamed box 2. After removing the foamed box 2, the air supply is then controlled to the first cylinder 6, causing the push rod of the first cylinder 6 to push the movable block 8 upward along the height direction of the guide column 7. The movable block 8 then drives the symmetrical rod 9 to move, thereby moving the movable side plate 3 along the direction of the first guide rail assembly 4, causing the movable side plate 3 to separate from the inner side of the box 2. The separation of the movable side plate 3 from the inner side of the box 2 avoids the inner side of the foamed box 2 being squeezed onto the movable side plate 3, which not only reduces the forceful separation of the mold core 1 from the box 2, but also ensures the precision of the mold core 1 and improves product quality.
[0041] Example 3
[0042] like Figures 1-6 As shown, this embodiment provides a foaming mold fixture device, including a mold core 1 and a housing 2. The mold core 1 is disposed inside the housing 2. Movable side plates 3 are connected to both sides of the mold core 1. A first guide rail assembly 4 is disposed between the mold core 1 and the movable side plates 3. Both the first guide rail assembly 4 and the movable side plates 3 are inclined. The movable side plates 3 are connected to a first driving assembly 5. The first driving assembly 5 is used to drive the movable side plates 3 to move along the direction of the first guide rail assembly 4, so that the movable side plates 3 are separated from the inner side of the housing 2.
[0043] The foaming mold clamping device also includes a first clamping plate 15, which is connected to a mold lifting mechanism 16. The mold lifting mechanism 16 includes a third driving component 17, which is used to drive the first clamping plate 15 to move.
[0044] The mold lifting mechanism 16 further comprises a second guide rail assembly 18 connected with the first clamping plate 15, and the first clamping plate 15 moves along the direction of the second guide rail assembly 18.
[0045] The first clamping plate 15 is provided with a mold locking hook 19 and a connecting head 20 arranged on both sides of the mold locking hook 19, and the connecting head 20 is matched with the third driving assembly 17.
[0046] The mold lifting mechanism 16 further comprises a fixed plate and a base, and the second guide rail assembly 18 is connected between the fixed plate and the base. The second guide rail assembly 18 comprises a guide rail and a sliding block. The guide rail is arranged along the height direction, and the sliding block slides along the height direction of the guide rail. The sliding block is fixed on the first clamping plate 15, and drives the first clamping plate 15 to move along the height direction of the guide rail. Preferably, the second guide rail assembly 18 is provided with four groups, and two groups of the second guide rail assembly 18 are respectively connected on both sides of the first clamping plate 15.
[0047] The side of the fixed plate close to the base is provided with a clamping plate lock matched with the mold locking hook 19. The clamping plate lock is used to lock the mold locking hook 19, so as to fix the first clamping plate 15 below the fixed plate and prevent the first clamping plate 15 from falling. The clamping plate lock is connected with a third cylinder, and the push rod of the third cylinder drives the clamping plate lock to lock the mold locking hook 19. The side of the fixed plate away from the clamping plate lock is provided with the third driving assembly 17. The third driving assembly 17 comprises two fourth cylinders connected with a clamp. The clamp is provided with clamping parts on both sides. The clamping parts are composed of two parts, one part is a straight plate, and the other part is an upwardly protruding arc structure. The two parts of the clamping part are fixedly connected or integrally formed. The two clamping parts are hollow structures for accommodating the connecting head 20 of the first clamping plate 15. After the clamp clamps the connecting head 20, the air source is controlled to enter the fourth cylinder, and the compressed air is accumulated in the space of the rod cavity of the fourth cylinder. When the gravity and other resistances of the first clamping plate 15 are overcome, the first clamping plate 15 fixed on the sliding block starts to slowly rise along the height direction of the guide rail until it moves to the target position.
[0048] The foaming mold clamping device of this embodiment further includes a first clamping plate 15, which is connected to a mold lifting mechanism 16. The mold lifting mechanism 16 includes a third driving component 17, which drives the first clamping plate 15 to move. The mold lifting mechanism 16 also includes a second guide rail component 18, which is connected to the first clamping plate 15, and the first clamping plate 15 moves along the direction of the second guide rail component 18. The first clamping plate 15 is provided with a mold locking hook 19 and a connector 20, which are disposed on both sides of the mold locking hook 19 and are adapted to the third driving component 17. After the clamp connected to the pull rod of the fourth cylinder holds the connector 20 of the first clamping plate 15, the air source is connected to the third drive assembly 17 of the lifting mechanism 16. When the clamp connected to the third drive assembly 17 overcomes the resistance such as the gravity of the first clamping plate 15, the slider of the second guide rail assembly 18 drives the first clamping plate 15 to slowly rise along the guide rail of the second guide rail assembly 18, so that the first clamping plate 15 moves upward towards the fixed plate. When the first clamping plate 15 moves upward to the target position, the air source is connected to the third cylinder of the clamping plate lock. The push rod of the third cylinder, like a pin, firmly locks the locking hook 19 on the first clamping plate 15 to prevent the first clamping plate 15 from falling, thus completing the action of raising and locking the first clamping plate 15.
[0049] Example 4
[0050] like Figures 1-6 As shown, this embodiment provides a foaming mold fixture device, including a mold core 1 and a housing 2. The mold core 1 is disposed inside the housing 2. Movable side plates 3 are connected to both sides of the mold core 1. A first guide rail assembly 4 is disposed between the mold core 1 and the movable side plates 3. Both the first guide rail assembly 4 and the movable side plates 3 are inclined. The movable side plates 3 are connected to a first driving assembly 5. The first driving assembly 5 is used to drive the movable side plates 3 to move along the direction of the first guide rail assembly 4, so that the movable side plates 3 are separated from the inner side of the housing 2.
[0051] A locking post 21 is provided on the side of the first clamping plate 15, and the locking post 21 extends in a direction away from the first clamping plate 15.
[0052] The foaming mold clamping device also includes a second clamping plate 22, and a mold locking mechanism 23 is connected to the side of the second clamping plate 22. The mold locking mechanism 23 and the locking pin 21 are both located on the same side of the first clamping plate 15, and the mold locking mechanism 23 is adapted to the locking pin 21.
[0053] The mold locking mechanism 23 comprises a fourth driving assembly 24, a mold locking arm 25 is connected to the fourth driving assembly 24, and the fourth driving assembly 24 drives the mold locking arm 25 to move; a notch 26 is formed in the mold locking arm 25, and the lock post 21 is inserted into the notch 26 to fix the first clamping plate 15 and the second clamping plate 22.
[0054] The fourth driving assembly 24 comprises a movable rod and a fifth cylinder, a push rod of the fifth cylinder is connected to the movable rod, the push rod of the fifth cylinder drives the movable rod to move in a first direction, the movable rod is connected to the mold locking arm 25, the mold locking arm 25 extends in a second direction, the first direction is perpendicular to the second direction, and the movable rod drives the mold locking arm 25 to move in the first direction. One end of the mold locking arm 25 is connected to the movable rod, a second end of the mold locking arm 25 is provided with the notch 26, the direction of the notch 26 is opposite to the first direction, and when the lock post 21 on the side of the first clamping plate 15 is inserted into the notch 26, the first clamping plate 15 and the second clamping plate 22 are fixed together.
[0055] When the solidification process is completed, the air source is controlled to access the mold locking mechanism 23, compressed air enters the fifth cylinder of the fourth driving assembly 24, the push rod of the fifth cylinder pushes the movable rod to move in the first direction, the movable rod drives the mold locking arm 25 to move in the first direction when moving, the mold locking arm 25 drives the notch 26 on the mold locking arm 25 to move in the first direction when moving in the first direction, so that the notch 26 of the mold locking arm 25 moves relative to the lock post 21, when the mold locking arm 25 moves to a target position in the first direction, the notch 26 of the mold locking arm 25 is completely separated from the lock post 21, so as to separate the first clamping plate 15 and the second clamping plate 22, and the mold locking mechanism 23 completes the unlocking action.
[0056] The side of the first clamping plate 15 is provided with the lock post 21, the lock post 21 extends away from the first clamping plate 15. The second clamping plate 22 is further provided, the second clamping plate 22 is connected with the mold locking mechanism 23, the mold locking mechanism 23 and the lock post 21 are located on the same side of the first clamping plate 15, and the mold locking mechanism 23 is matched with the lock post 21. The mold locking mechanism 23 comprises a fourth driving assembly 24, a mold locking arm 25 is connected to the fourth driving assembly 24, and the fourth driving assembly 24 drives the mold locking arm 25 to move; a notch 26 is formed in the mold locking arm 25, and the lock post 21 is inserted into the notch 26 to fix the first clamping plate 15 and the second clamping plate 22. The air source is controlled to access the fourth driving assembly 24, the fourth driving assembly 24 drives the mold locking arm 25 to move in a first direction, the notch 26 on the mold locking arm 25 moves relative to the lock post 21, when the mold locking arm 25 moves to a target position, the mold locking arm 25 stops moving, at this time, the notch 26 of the mold locking arm 25 is completely separated from the lock post 21, and the mold locking mechanism 23 completes the unlocking action to separate the first clamping plate 15 and the second clamping plate 22.
[0057] The foregoing is considered as illustrative only of the principles of the application. Other variations and modifications can be made to the above-described embodiments consistent with the principles of the present application. For further solutions to the problems and other advantages and features that can be achieved with the present application, refer to the description and attached claims. The present application is not limited to the embodiments shown, but is limited only by the claims.
[0058] It is understood that the spatially relative terms are intended to encompass different orientations of the device in use or operation in addition to the orientations depicted in the figures. For example, if a device is inverted consistent with the
[0059] In addition, it is to be understood that the use of the terms "first", "second", etc., to describe various components is merely intended to differentiate one component from another, and is not intended to convey an ordering, unless specifically stated otherwise. Furthermore, use of the term "or" is intended to mean an inclusive "or" rather than an exclusive "or" unless specifically stated otherwise.
[0060] The above description is provided as illustrative examples of the present application and is not intended to limit the present application. Various changes and modifications can be made to the present application by one of ordinary skill in the art without departing from the spirit and scope of the present application. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principles of the present application should be included in the scope of the present application.
Claims
1. A foam molding jig apparatus characterized by comprising: The utility model provides a mould core and box, the mould core sets up in the box, the both sides of mould core are connected with movable side plate, first guide rail assembly is arranged between the mould core and movable side plate, first guide rail assembly and movable side plate are all arranged obliquely, first drive assembly is connected to movable side plate, first drive assembly is used for driving movable side plate and moves along the direction of first guide rail assembly, so that movable side plate separates with the inside of box.
2. The foam molding jig device according to claim 1, wherein The first drive assembly includes a first cylinder and a guide column, the push rod of the first cylinder is connected with a movable block, the guide column penetrates the movable block, and the push rod of the first cylinder drives the movable block to move along the direction of the guide column.
3. The foam molding jig apparatus according to claim 2, wherein The both sides of the movable block are connected with symmetrical rods, the symmetrical rods are connected with the movable side plate, the movable block is used for driving the symmetrical rods to move, so as to drive the movable side plate to move along the direction of the first guide rail assembly.
4. The foam molding jig apparatus according to claim 1, wherein It also includes an ejection mechanism, the ejection mechanism includes a top block and a guide block arranged below the box, the top block moves along the direction of the guide block to push the box upward.
5. The foam molding jig apparatus according to claim 4, wherein The ejection mechanism also includes a second drive assembly, the second drive assembly includes a second cylinder, the push rod of the second cylinder is connected with the top block, and the push rod of the second cylinder drives the top block to move along the direction of the guide block.
6. The foam molding jig apparatus according to claim 1, wherein It also includes a first clamping plate, the first clamping plate is connected with a mold lifting mechanism, the mold lifting mechanism includes a third drive assembly, and the third drive assembly is used for driving the first clamping plate to move.
7. The foam molding jig apparatus according to claim 6, wherein The mold lifting mechanism also includes a second guide rail assembly, the second guide rail assembly is connected with the first clamping plate, and the first clamping plate moves along the direction of the second guide rail assembly.
8. The foam molding jig apparatus according to claim 6, wherein The first clamping plate is provided with a mold locking hook and a connecting head, the connecting head is arranged on the both sides of the mold locking hook, and the connecting head is matched with the third drive assembly.
9. The foam molding jig apparatus according to claim 6, wherein The side surface of the first clamping plate is provided with a lock column, and the lock column extends away from the first clamping plate.
10. The foam molding jig apparatus according to claim 9, wherein It also includes a second clamping plate, the side surface of the second clamping plate is connected with a mold locking mechanism, the mold locking mechanism and the lock column are located on the same side of the first clamping plate, and the mold locking mechanism is matched with the lock column.
11. The foam molding jig apparatus according to claim 10, wherein The mold locking mechanism includes a fourth drive assembly, the fourth drive assembly is connected with a mold locking arm, and the fourth drive assembly drives the mold locking arm to move, a notch is formed in the mold locking arm, and the lock column is inserted into the notch to fix the first clamping plate and the second clamping plate.