CN219083461U - Ice hockey mold fitting and ice hockey mold using same - Google Patents

Ice hockey mold fitting and ice hockey mold using same Download PDF

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Publication number
CN219083461U
CN219083461U CN202320039314.7U CN202320039314U CN219083461U CN 219083461 U CN219083461 U CN 219083461U CN 202320039314 U CN202320039314 U CN 202320039314U CN 219083461 U CN219083461 U CN 219083461U
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ice
pressing
water inlet
mold
inlet channel
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CN202320039314.7U
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吴丽娜
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Abstract

The utility model relates to an ice ball mould accessory and an ice ball mould using the same, comprising a first ice mould body positioned at an upper layer, a second ice mould body positioned at a middle layer and a third ice mould body positioned at a lower layer, wherein the first ice mould body is an ice ball mould cavity in a sphere shape and comprises a water inlet channel and a pressing wall wrapping the top of an ice ball, the water inlet channel and the pressing wall are made of soft materials and can be reset after being pressed and deformed, and overflow holes are formed in the pressing wall; the utility model discloses a novel ice hockey manufacturing machine, including ice hockey die cavity, mould cavity top is provided with presses the de-molding piece, presses the de-molding piece to the ice hockey die cavity in-process of removing, and the press demoulding portion butt of its bottom is at the upper surface of the press wall of first ice die body, can extrude first ice die body deformation and make the ice hockey deviate from, presses more laborsaving, and is more convenient, and the shaping is more stable, and the ice hockey also is difficult for dropping in the removal de-molding process, can be applied to the preparation of multiunit ice hockey simultaneously.

Description

Ice hockey mold fitting and ice hockey mold using same
Technical Field
The utility model relates to a freezing instrument field of daily life indicates an ice ball mould accessory and uses ice ball mould of this accessory.
Background
The ice ball refers to spherical ice cubes, the ice ball and the square ice cubes are the most common ice cubes in daily life, but the ice ball is more complex in manufacturing and forming compared with the square ice cubes, and has higher requirements on manufacturing and storing tools of the ice ball.
The existing ice making tools are popular to release ice by pressing, and are more prone to release ice in one step by simultaneously taking off a plurality of lattices of ice than the traditional method of taking off ice individually, and the method can be seen in patent CN213955703U or CN 215490477U.
The utility model provides a many check puck simultaneous shaping and press drawing of patterns need more stable, firm, efficient puck mould, and current puck mould generally adopts two mould accessories shaping puck about, for example patent CN215909484U, CN217827457U and CN202895535U, but above-mentioned technical scheme can't be used in the instrument of a plurality of puck check simultaneous manufacture.
To this end, the present utility model will propose a solution to the technical problem described above.
Disclosure of Invention
The utility model aims to provide an ice hockey mould accessory and an ice hockey mould using the same, which can be more stable and efficient in the forming and pressing demoulding processes; can effectually use in can once only shaping a plurality of puck to in the puck manufacturing tool that deviate from simultaneously the mould with the puck through pressing, and the structure is more reasonable, more convenient laborsaving when pressing.
The purpose of the utility model is realized in the following way: the utility model provides an ice hockey mould accessory, includes the pressure wall at water inlet channel and parcel ice hockey top, water inlet channel and pressure wall are made by soft material, can reset after receiving to press and take place deformation, be provided with the overflow hole on the pressure wall.
More specifically, the inner peripheral side wall of the water inlet channel is provided with an ice ball hanging part, and the ice ball hanging part seals the water inlet channel of the part.
More specifically, the ice hockey curdling part is in a baffle shape or a step shape and is positioned at the bottommost end of the water inlet channel.
More specifically, the ice hockey curdling part at least plugs more than half of the water inlet channel.
More specifically, the ice hockey curdling part is provided with a curdling edge which is straight, arc-shaped or saw-tooth-shaped.
More specifically, the overflow hole is an elliptical hole, and the short axis direction of the elliptical hole points to the water inlet channel.
More specifically, the thickness of the side wall of the water inlet channel is in a structure shape with a thin upper part and a thick lower part.
More specifically, the edge of the lower surface of the pressing wall is provided with a circle of assembling steps.
The first ice mold body is the ice ball mold accessory and comprises a water inlet channel and a pressing wall; the ice ball mold is characterized in that a pressing demolding piece is arranged above the ice ball mold cavity, and a pressing demolding part at the bottom end of the pressing demolding piece is abutted against the upper surface of a pressing wall of the first ice mold body in the process that the pressing demolding piece moves towards the ice ball mold cavity, so that the first ice mold body can be extruded to deform to enable the ice ball to be separated.
More specifically, the pressing stripping module is cylindrical and sleeved on the outer peripheral side of the water inlet channel.
More specifically, the pressing demolding piece is provided with a pressing bending part, and the pressing bending part at least partially touches the water inlet channel in the pressing demolding piece is pressed down to bend the water inlet channel.
More specifically, the pressing bending part is in a structure shape with a wide upper part and a narrow lower part.
Compared with the prior art, the utility model has the following outstanding and beneficial technical effects:
the ice ball die accessory and the ice ball die using the same are provided with the soft water inlet channel and the pressing wall, and are combined with the pressing stripping module, so that the pressing is more labor-saving and more convenient, the ice ball die formed by the three die accessories of the first ice die body, the second ice die body and the third ice die body is combined with the ice ball condensation part, the forming is more stable, the ice ball is not easy to fall in the moving stripping process, and the ice ball die assembly can be applied to manufacturing a plurality of groups of ice balls at the same time.
Drawings
Fig. 1 is a cross-sectional view of a first ice mold body of the present utility model.
Fig. 2 is a top view of a first ice mold body of the present utility model.
Fig. 3 is a front view of a first ice mold body of the present utility model.
Fig. 4 is a first embodiment of a set-up edge of the present utility model.
Fig. 5 is a second embodiment of a set-up edge of the present utility model.
Fig. 6 is a third embodiment of a set-up edge of the present utility model.
Fig. 7 is a sectional view of the ice hockey puck of the present utility model.
FIG. 8 is a second cross-sectional view of the puck case of the present utility model.
FIG. 9 is a third cross-sectional view of the puck case of the present utility model.
Fig. 10 is a schematic view of a first ice making layer of the present utility model.
FIG. 11 is a second schematic view of the first ice layer of the present utility model.
Fig. 12 is a schematic view of a third ice making layer of the present utility model.
FIG. 13 is a second schematic view of a third ice layer according to the present utility model.
Fig. 14 is a schematic structural view of an ice bank according to the present utility model.
Fig. 15 is a schematic view of an explosion structure of the ice hockey case of the present utility model.
FIG. 16 is a second schematic view of an explosion structure of the ice hockey case of the present utility model.
FIG. 17 is a third schematic view of an explosion structure of the ice hockey case of the present utility model.
The meaning indicated by the reference numerals in the figures: 1-a first ice mold body; 10-a water inlet channel; 11-overflow holes; 12-a puck curdling part; 18-pressing the wall;
19-assembling steps;
2-a second ice mold body;
3-a third ice mold body;
4-pressing the stripping module; 40-pressing the demolding part; 41-pressing the bent portion;
5-a first ice-making layer; 50-a water filling tank; 51-watering holes; 52-a diversion slope; 53-ribs;
54-irrigation grids; 55-observation window; 56-slot cover;
6-a second ice-making layer; 60-drainage hole A; 61-positioning a tube; 62-a return spring; 63-a clamping groove;
64-limiting mounting rings;
7-a third ice making layer; 70-a drain hole B; 71-a handle; 72-limit placing groove.
8-an ice storage layer; 80-limiting support ribs; 81-limiting supporting steps; 82-notch;
100-puck mold cavity.
Detailed Description
The utility model is further described with reference to the following specific examples:
as shown in fig. 1 to 17, an ice hockey puck case is provided in which a first ice making layer 5, a second ice making layer 6, a third ice making layer 7, an ice storage layer 8, and an ice hockey puck mold including fittings of a first ice mold body 1, a second ice mold body 2, a third ice mold body 3, and a press-off mold 4 are provided.
The use principle is as follows: in the ice block forming process, referring to fig. 9 of the specification, water is poured into the ice ball cavity 100 of the ice ball mold from the first ice making layer 5, after the water is completely frozen in the ice ball cavity 100, the third ice making layer 7 is taken down, the first ice making layer 5 and the second ice making layer 6 are jointly placed on the ice storage layer 8, referring to fig. 16 of the specification and fig. 17 of the specification, after the third ice mold 3 on the third ice making layer 7 is taken down, the ice ball cavity 100 is directly communicated with the storage space of the ice storage layer 8, at this time, the first ice making layer 5 is pressed, the first ice mold 1 is pressed by the pressing de-molding member 4, and the ice ball falls into the ice storage layer 8 from the ice ball cavity 100.
Specifically, the first ice mold body 1 of the mold accessory includes the water inlet channel 10 and presses the wall 18 of pressing of the top of the ice ball, the water inlet channel 10 and presses the wall 18 to be made by soft material, can reset after being pressed and take place, press the wall 18 to be provided with the spillway hole 11, in this technical scheme, the shape structure of the first ice mold body 1 can see the attached drawing 1-6 of the specification, the first ice mold body 1 acts on the upper half of the ice ball spheroid, especially the top, the effect of the water inlet channel 10 is used for pouring water into the ice ball mold cavity 100, press the wall 18 to press the back through outside, can force the ice ball of the ice ball mold cavity 100 to break away from the ice ball mold, press the border of the lower surface of wall 18 to be provided with a round of assembly step 19 and be used for assembling with the second ice mold body 2, water inlet channel 10 and pressing the wall 18 can select soft materials such as silica gel or rubber, can produce deformation and can reset, the effect of spillway hole 11 is to spill over the ice ball mold cavity 100 with the superfluous water, the spillway hole 11 sets up on pressing the wall 18, keep the top of the ice ball cavity 10, the top of the ice ball cavity is more difficult than the water inlet channel 10, the well as the round hole is more in the equal to the round hole shape of the water inlet channel is more equal to the ellipse, the round hole is more equal to the water inlet channel is more difficult to the round hole is more difficult to the round than the round hole is more difficult to the round hole.
Specifically, the inner peripheral side wall of the water inlet channel 10 is formed with a puck hanging part 12, the puck hanging part 12 is in a baffle shape or a step shape and is positioned at the bottommost end of the water inlet channel 10, the puck hanging part 12 at least seals more than half of the water inlet channel 10, the puck hanging part 12 is provided with a hanging edge 120, the hanging edge 120 is straight, arc-shaped or saw-tooth-shaped, in the technical scheme, the puck hanging part 12 means that in the water condensation expansion process, a little water can rush into the water inlet channel 10 to form a puck, the puck can be hung on the first ice mold body 1 through the puck hanging part 12, so that after the third ice mold body 3 on the third ice mold body 7 is taken down, the whole puck still can not fall down, and can be smoothly and completely placed on the ice storage layer 8 along with the first ice-making layer 5 and the second ice-making layer 6, so that the puck is more stable in the demolding process and can not fall down in the process; the shape and the arrangement mode of the ice ball hanging part 12 can be referred to in fig. 1 and fig. 2 of the specification, the ice ball hanging part 12 is in a baffle shape or a step shape, the water inlet channel 10 is blocked, water rushes through the baffle shape or the step shape of the ice ball hanging part 12, the ice ball hanging part 12 can be firmly and firmly hung, the straight, circular arc shape or saw tooth shape hanging edge 120 can also play the role of breaking redundant ice cylinders formed by the ice ball which is easier to be condensed in demolding, and various embodiments of the hanging edge 120 can be referred to in fig. 4, fig. 5 and fig. 6 of the specification.
Specifically, the thickness of the side wall of the water inlet channel 10 is in a structure shape with a thin upper part and a thick lower part, in the technical scheme, the water inlet channel 10 with a thin upper part and a thick lower part can be seen from the attached figure 1 of the specification, the thickness of the side wall above the channel opening is thinner, and the thickness of the side wall below is thicker.
Specifically, the puck mold removes the puck by pressing the stripping module 4, and in the process of moving the pressing stripping module 4 to the puck mold cavity 100, the pressing demolding portion 40 at the bottom end of the pressing demolding portion abuts against the upper surface of the pressing wall 18 of the first puck mold body 1, so that the first puck mold body 1 can be extruded to deform to remove the puck.
Specifically, the pressing stripping module 4 is formed with a pressing bending portion 41, and during the pressing stripping module 4 is moved downward, the pressing bending portion 41 at least partially touches the water inlet channel 10, so that the water inlet channel 10 is bent, and the pressing bending portion 41 is in a structure shape with a wide upper part and a narrow lower part; in the technical scheme, the pressing bending part 41 has the function of pressing the water inlet channel 10 to break the ice column body in the ice hockey stick hanging part 12 in the process of pressing the stripping module 4 to move downwards and stripping, so that the stripping process is easier and more labor-saving, and the steps are more simplified; the shape of the pressing bending part 41 is shown in fig. 11 of the specification, the wider part of the pressing bending part 41 presses the water inlet channel 10 more strongly, and the structure shape with the wide upper part and the narrow lower part can be combined with the structure shape with the thin upper part and the thick lower part of the side wall of the water inlet channel 10, so that the pressing is easier and more labor-saving.
Specifically, the first ice making layer 5 is provided with a water filling groove 50, the corresponding position of the water inlet channel 10 of each ice ball box in the water filling groove 50 is provided with a water filling hole 51, the circumference side of the water filling hole 51 is provided with a diversion inclined plane 52, the diversion inclined plane 52 is inclined to the water filling hole 51, the water filling groove 50 is divided into a plurality of water filling grids 54 by arranging ribs 53, the surface of the water filling grid 54 is inclined to the water filling hole 51, in the technical scheme, the water filling groove 50, the water filling hole 51, the diversion inclined plane 52 and the water filling grids 54 are used for filling water into the ice ball mold cavity 100 more accurately and rapidly, and it is noted that when the inclination angle of the diversion inclined plane 52 is the same as the inclination angle of the water filling grid 54, the two visual effects can be regarded as the same plane, but the diversion inclined plane 52 and the water filling grids 54 inclined to the water filling holes 51 still belong to the protection scope of the technical scheme.
Specifically, the first ice making layer 5 is provided with a tank cover 56 corresponding to the water filling tank 50, and the tank cover 56 is fixedly installed on the first ice making layer 5 in a limiting buckle connection or hinge manner, in this technical scheme, the tank cover 56 is used for covering the water filling tank 50 and keeping the water filled into the ice ball mold cavity 100 clean.
Specifically, the first ice making layer 5 is provided with an observation window 55, the first ice mold body 1 is formed with overflow holes 11, and the overflow holes 11 are all arranged on one side close to the observation window 55, in the technical scheme, the observation window 55 is used for observing whether water in the ice ball mold cavity 100 overflows from the overflow holes 11 or not, and the structure of the observation window 55 can be a hollowed window hole or a transparent glass plate; accordingly, in order to allow the viewing window 55 to intuitively and easily view the position of the overflow hole 11, the overflow hole 11 is provided on the first ice mold body 1 at a side close to the viewing window 55, and referring to fig. 15 of the specification, the overflow hole 11 can be easily seen through the viewing window 55.
Specifically, a plurality of drain holes a60 are formed on the second ice making layer 6, the first ice mold body 1 is formed with water overflow holes 11, the water overflow holes 11 are all disposed at one side close to the drain holes a60, the third ice making layer 7 is provided with drain holes B70 at positions corresponding to the drain holes a60, the aperture of the drain holes B70 is larger than that of the drain holes a60, the drain holes a60 extend into the drain holes B70, in the technical scheme, referring to fig. 8 of the specification, the drain holes a60 and the drain holes B70 can drain water which is multi-filled in the ice ball mold cavity 100, the drain holes a60 extend into the drain holes B70 or the drain holes B70 extend into the drain holes a60, and in order to make the drain effect smoother, the water overflow holes 11 are disposed at one side close to the drain holes a60 and the drain holes B70 on the first ice mold body 1 so that water overflows more easily to the drain holes a60 and the drain holes B70.
Specifically, a reset rebound structure is arranged between the first ice making layer 5 and the second ice making layer 6, the reset rebound structure comprises a guide post 57 on the first ice making layer 5 and a positioning tube 61 on the second ice making layer 6, and a reset spring 62 is arranged in the positioning tube 61.
Specifically, the first ice layer 5 and the second ice layer 6 are connected and fixed through a buckle connection structure, and the buckle connection structure comprises a buckle 58 on the side wall of the first ice layer 5 and a clamping groove 63 on the side wall of the second ice layer 6, and in the technical scheme, the first ice layer 5 and the second ice layer 6 can move simultaneously through the buckle connection structure.
Specifically, the bottom of second system ice layer 6 and the top of third system ice layer 7 are provided with corresponding spacing mounting structure, and third system ice layer 7 can hold and place second system ice layer 6, the bottom of second system ice layer 6 and the top of storage ice layer 8 are provided with corresponding spacing mounting structure, and storage ice layer 8 can hold and place second system ice layer 6, the bottom of second system ice layer 6 is formed with spacing collar 64, be formed with spacing standing groove 72 that corresponds with spacing collar 64 on the third system ice layer 7, be provided with spacing support rib 80 on the inside wall of storage ice layer 8, be provided with spacing support step 81 on the lateral wall, the bottom of second system ice layer 6 is installed and is placed on storage ice layer 8 through spacing support rib 80, spacing support rib 80 has seted up breach 82, the bottom of second system ice layer 6 is formed with spacing collar 64, and spacing collar 82 passes through spacing support rib 80 and installs on spacing breach 80.
The above embodiments are only preferred embodiments of the present utility model, and are not intended to limit the scope of the present utility model in this way, therefore: all equivalent changes in structure, shape and principle of the utility model should be covered in the scope of protection of the utility model.

Claims (12)

1. An ice hockey mold fitting, characterized in that: the ice ball water inlet device comprises a water inlet channel (10) and a pressing wall (18) wrapping the top of the ice ball, wherein the water inlet channel (10) and the pressing wall (18) are made of soft materials, the ice ball water inlet device can be reset after being pressed to deform, and overflow holes (11) are formed in the pressing wall (18).
2. The puck mold fitting of claim 1 wherein: the ice ball condensation part (12) is formed on the inner peripheral side wall of the water inlet channel (10), and the ice ball condensation part (12) seals the water inlet channel (10) of the part.
3. The puck mold fitting of claim 2 wherein: the ice hockey condensing and hanging part (12) is in a baffle shape or a step shape and is positioned at the bottommost end of the water inlet channel (10).
4. An ice hockey mold assembly as set forth in claim 2 or 3, wherein: the ice hockey condensing part (12) at least plugs more than half of the water inlet channel (10).
5. An ice hockey mold assembly as set forth in claim 2 or 3, wherein: the ice hockey curdling part (12) is provided with a curdling edge (120), and the curdling edge (120) is straight, arc-shaped or zigzag-shaped.
6. An ice hockey mould assembly as claimed in claim 1 or 2 or 3, wherein: the overflow holes (11) are elliptical holes, and the short axis direction of each elliptical hole points to the water inlet channel (10).
7. An ice hockey mould assembly as claimed in claim 1 or 2 or 3, wherein: the side wall of the water inlet channel (10) is in a structure shape with a thin upper part and a thick lower part.
8. An ice hockey mould assembly as claimed in claim 1 or 2 or 3, wherein: the edge of the lower surface of the pressing wall (18) is provided with a circle of assembling steps (19).
9. An ice hockey mold, characterized in that: the ice ball mould assembly comprises a first ice mould body (1) positioned at an upper layer, a second ice mould body (2) positioned at a middle layer and a third ice mould body (3) positioned at a lower layer, wherein the first ice mould body (1) is an ice ball mould assembly according to any one of claims 1-8, and comprises a water inlet channel (10) and a pressing wall (18); the ice ball mold is characterized in that a pressing demolding piece (4) is arranged above the ice ball mold cavity (100), and a pressing demolding part (40) at the bottom end of the pressing demolding piece is abutted against the upper surface of a pressing wall (18) of the first ice mold body (1) in the moving process of the pressing demolding piece (4) to the ice ball mold cavity (100), so that the first ice mold body (1) can be extruded to deform to enable ice balls to be separated.
10. The puck mold of claim 9, wherein: the pressing stripping module (4) is cylindrical and sleeved on the outer periphery side of the water inlet channel (10).
11. The ice hockey mold of claim 9 or 10, wherein: the pressing stripping module (4) is provided with a pressing bending part (41), and in the pressing and downward moving process of the pressing stripping module (4), the pressing bending part (41) at least partially touches the water inlet channel (10) so that the water inlet channel (10) is bent.
12. The puck mold of claim 11, wherein: the pressing bending part (41) is in a structure shape with a wider upper part and a narrower lower part.
CN202320039314.7U 2023-01-07 2023-01-07 Ice hockey mold fitting and ice hockey mold using same Active CN219083461U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202320039314.7U CN219083461U (en) 2023-01-07 2023-01-07 Ice hockey mold fitting and ice hockey mold using same

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202320039314.7U CN219083461U (en) 2023-01-07 2023-01-07 Ice hockey mold fitting and ice hockey mold using same

Publications (1)

Publication Number Publication Date
CN219083461U true CN219083461U (en) 2023-05-26

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202320039314.7U Active CN219083461U (en) 2023-01-07 2023-01-07 Ice hockey mold fitting and ice hockey mold using same

Country Status (1)

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CN (1) CN219083461U (en)

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