CN216723388U - Three-dimensional setting device of boot vamp - Google Patents

Three-dimensional setting device of boot vamp Download PDF

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Publication number
CN216723388U
CN216723388U CN202122641083.0U CN202122641083U CN216723388U CN 216723388 U CN216723388 U CN 216723388U CN 202122641083 U CN202122641083 U CN 202122641083U CN 216723388 U CN216723388 U CN 216723388U
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die block
cooling
base
inlet pipe
block combination
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CN202122641083.0U
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Chinese (zh)
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张金杰
苏宪和
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Zhaoqing Hongyingting Industrial Co ltd
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Zhaoqing Hongyingting Industrial Co ltd
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Abstract

The utility model discloses a three-dimensional shaping device for a boot vamp, which comprises a base, a windproof shell arranged on the base, a top cabinet arranged at the top of the windproof shell, two lifting hydraulic cylinders arranged on the top cabinet in parallel, a top die arranged at the bottom of the lifting hydraulic cylinders, a heating bottom die assembly and a cooling bottom die assembly symmetrically arranged on the upper surface of the base, and a temperature control system arranged in the base, wherein the upper die assembly is arranged on the upper surface of the base; the temperature control system comprises a semiconductor refrigerating sheet, a hot head, a first liquid inlet pipe, a first water pump, a cold head, a second liquid inlet pipe and a second water pump; under the cooperation through heating die block combination, cooling die block and temperature control system, the realization utilizes temperature control system control to heat the temperature of die block combination and cooling die block to the cooperation top mould heats softening and cooling design in proper order to the vamp, effectively avoids taking place fold and damage in the vamp shaping process, can also improve the effect and the work efficiency of stereotyping.

Description

Three-dimensional setting device of boot vamp
Technical Field
The utility model relates to the field of shoemaking, in particular to a three-dimensional shaping device for a boot vamp.
Background
At present, the toe cap of an inner boot and the vamp of a leather shoe industry are shaped by a warped vamp, and various large-head rows of the boot and the shoe are shaped by a single-board single-warped or single-board double-warped shaping plate, so that leather materials are easily wrinkled, torn and damaged by the method, and shaping plate marks are generated at the central line position of the large head and are difficult to eliminate; these problems are not only wasteful of raw materials and man-hours but also insufficient in quality assurance.
SUMMERY OF THE UTILITY MODEL
In view of the above, the present invention provides a three-dimensional sizing device for a boot upper, which can prevent wrinkles and damage, improve the sizing effect, and increase the sizing efficiency.
In order to solve the technical problems, the technical scheme of the utility model is as follows: the utility model provides a three-dimensional setting device of boot vamp, includes the base, sets up prevent wind the casing on the base, set up prevent wind the top cabinet at casing top, still include parallel arrangement and be in two hydraulic cylinders on the top cabinet set up the top mould of hydraulic cylinder bottom, the symmetry sets up the base upper surface and be located prevent wind heating die block combination and the combination of cooling die block in the casing, and set up in the base and with the temperature control system of heating die block combination and the combination intercommunication of cooling die block.
Preferably, the heating bottom die assembly comprises a first support frame, a first bottom die cavity arranged at the top of the first support frame, a heat inlet pipe and a heat outlet pipe which are arranged at the bottom of the first bottom die cavity and communicated with the first bottom die cavity, and a first flow valve arranged on the heat outlet pipe.
Preferably, the bottom of the first bottom die cavity is further provided with a first temperature sensor.
Preferably, the cooling bottom die assembly comprises a second support frame, a second bottom die cavity arranged at the top of the second support frame, a cold inlet pipe and a cold outlet pipe which are arranged at the bottom of the second bottom die cavity and communicated with the second bottom die cavity, and a second flow valve arranged on the cold outlet pipe.
Preferably, a second temperature sensor is further disposed at the bottom of the second bottom mold cavity.
Preferably, the temperature control system comprises a semiconductor refrigerating piece, a hot head arranged on the side face of the semiconductor refrigerating piece, a first liquid inlet pipe arranged on the hot head and communicated with the hot head, a first water pump arranged on the first liquid inlet pipe, a cold head arranged on the other side of the semiconductor refrigerating piece, a second liquid inlet pipe arranged on the cold head and communicated with the cold head, and a second water pump arranged on the second liquid inlet pipe.
Preferably, a control panel is arranged on the side surface of the top cabinet.
Preferably, the side surface of the top cabinet is symmetrically provided with universal supports corresponding to the heating bottom die assembly and the cooling bottom die assembly, and the tail ends of the universal supports are provided with illuminating lamps.
The technical effects of the utility model are mainly embodied as follows: under the cooperation through heating die block combination, cooling die block and temperature control system, the realization utilizes temperature control system control to heat the temperature of die block combination and cooling die block to the cooperation top mould heats softening and cooling design in proper order to the vamp, effectively avoids taking place fold and damage in the vamp shaping process, can also improve the effect and the work efficiency of stereotyping.
Drawings
FIG. 1 is a structural diagram of a three-dimensional shaping device for the upper of a boot according to the present invention;
fig. 2 is a block diagram of the temperature control system of fig. 1.
Detailed Description
The following detailed description of the embodiments of the present invention is provided in order to make the technical solution of the present invention easier to understand and understand.
In the present embodiment, it should be understood that the terms "middle", "upper", "lower", "top", "right", "left", "above", "back", "middle", and the like indicate orientations or positional relationships based on the orientations or positional relationships shown in the drawings, and are only for convenience of description of the present invention, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and thus, should not be construed as limiting the present invention.
In the present embodiment, if the connection or fixing manner between the components is not specifically described, the connection or fixing manner may be a bolt fixing manner, a pin connecting manner, or the like, which is commonly used in the prior art, and therefore, details thereof are not described in the present embodiment.
The utility model provides a three-dimensional forming device of boot vamp, as shown in figure 1, includes base 1, sets up prevent wind casing 2 on the base 1 for reduce the outside temperature of equipment to the influence of heating die block combination 6 and cooling die block combination 7, set up prevent wind top cabinet 3 at 2 tops of casing, still include parallel arrangement two hydraulic cylinder 4 on the top cabinet 3 for promote top mould 5 and descend, and carry out the butt with the boot vamp, set up the top mould 5 of hydraulic cylinder 4 bottom for the shape of control vamp, the symmetry sets up base 1 upper surface and with be located prevent wind heating die block combination 6 and cooling die block combination 7 in the casing 2, heating die block combination 6 is used for heating the vamp and softening, and cooling die block combination 7 is used for cooling the boot and stereotypes, and sets up heating die block combination 6 in the base 1, And a temperature control system 8 communicated with the heating bottom die assembly 6 and the cooling bottom die assembly 7; the side of top cabinet 3 is provided with control panel 31 for the control box inputs the temperature of heating die block combination 6 and cooling die block combination 7, the side of top cabinet 3 still the symmetry be provided with the gimbal 32 that heating die block combination 6 and cooling die block combination 7 correspond, gimbal 32's end is provided with light 33 for throw light on to the course of the work.
As shown in fig. 2, the heating bottom die assembly 6 includes a first support frame 61, a first bottom die cavity 62 disposed on the top of the first support frame 61, a heat inlet pipe 63 and a heat outlet pipe 64 disposed at the bottom of the first bottom die cavity 62 and communicated with the first bottom die cavity 62, and a first flow valve 65 disposed on the heat outlet pipe 64, wherein the temperature of the first bottom die cavity 62 is increased by a high-temperature liquid introduced into the first bottom die cavity 62, so that the shoe upper is heated and softened by the first bottom die cavity 62, and the hot water discharge rate in the heat outlet pipe 64 is controlled; a first temperature sensor 66 is further disposed at the bottom of the first bottom mold cavity 62 and is used for detecting the temperature of water in the first bottom mold cavity 62; the cooling bottom die assembly 7 comprises a second support frame 71, a second bottom die cavity 72 arranged at the top of the first support frame 61 and used for storing cooling water so as to reduce the temperature of the second bottom die cavity 72, a cold inlet pipe 73 and a cold outlet pipe 74 arranged at the bottom of the second bottom die cavity 72 and communicated with the second bottom die cavity 72, and a second flow valve 75 arranged on the cold outlet pipe 74; a second temperature sensor 76 is further disposed at the bottom of the second bottom die cavity 72, and is configured to detect the temperature of cooling water in the second bottom die cavity 72.
The temperature control system 8 comprises a semiconductor refrigeration piece 81, after the semiconductor refrigeration piece 81 is electrified, one end of the semiconductor refrigeration piece forms a hot end, the other end of the semiconductor refrigeration piece forms a cold end, thereby cooling and heating simultaneously, providing high-temperature hot water and cooling water for the heating bottom die assembly 6 and the cooling bottom die assembly 7, a thermal head 82 arranged on the side surface of the semiconductor cooling plate 81, a first liquid inlet pipe 83 arranged on the thermal head 82 and communicated with the thermal head 82, a first water pump 84 arranged on the first liquid inlet pipe 83, the cooling device comprises a hot head 82 for pumping external normal-temperature water into the semiconductor refrigeration piece 81 to be heated, a cold head 85 arranged at the other side of the semiconductor refrigeration piece 81, a second liquid inlet pipe 86 arranged on the cold head 85 and communicated with the cold head 85, and a second water pump 87 arranged on the second liquid inlet pipe 86 and used for pumping the external normal-temperature water into the cold head 85 to be cooled.
In the present embodiment, the first water pump 84 and the second water pump 87 are in the model BK200, the semiconductor cooling plate 81 is in the model TEC1-12706, and the first temperature sensor 66 and the second temperature sensor 76 are in the model PT 100.
The working principle is as follows: firstly, a first water pump 84 and a second water pump 87 work to supply water to a hot head 82 and a cold head 85 at two ends of a semiconductor refrigeration sheet 81, then the generated hot water enters the first bottom die cavity 62 through a heat inlet pipe 63, so that the temperature of the first bottom die cavity 62 is increased, and the generated cold water enters the second bottom die cavity 72 through a cold inlet pipe 73, so that the temperature of the second bottom die cavity 72 is reduced; then, the shoe upper is placed on the upper surface of the first bottom die cavity 62, the lifting hydraulic cylinder 4 extends to enable the top die 5 to descend and abut against the shoe upper, and then the first bottom die cavity 62 is used for heating the shoe upper to enable the shoe upper to be softened and formed under the extrusion of the top die 5; and then the lifting hydraulic cylinder 4 is retracted, the top die 5 is lifted, the vamp is transferred to the second bottom die cavity 72, and the vamp is rapidly cooled to realize cooling and shaping.
The technical effects of the utility model are mainly embodied as follows: under the cooperation through heating die block combination, cooling die block and temperature control system, the realization utilizes temperature control system control to heat the temperature of die block combination and cooling die block to the cooperation top mould heats softening and cooling design in proper order to the vamp, effectively avoids taking place fold and damage in the vamp shaping process, can also improve the effect and the work efficiency of stereotyping.
It is understood that the above are only exemplary embodiments of the present invention, and other embodiments of the present invention may be made by using equivalent or equivalent alternatives, which fall within the scope of the present invention.

Claims (8)

1. The utility model provides a three-dimensional setting device of boot vamp, includes the base, sets up prevent wind casing on the base, set up prevent wind the top cabinet at casing top, its characterized in that: still be in including parallel arrangement two hydraulic cylinder on the top cabinet set up the top mould of hydraulic cylinder bottom, the symmetry sets up base upper surface and be located prevent wind heating die block combination and cooling die block combination in the casing, and set up in the base and with the temperature control system of heating die block combination and cooling die block combination intercommunication.
2. The three-dimensional shaping device for the boot upper as claimed in claim 1, wherein: the heating bottom die assembly comprises a first support frame, a first bottom die cavity arranged at the top of the first support frame, a heat inlet pipe and a heat outlet pipe which are arranged at the bottom of the first bottom die cavity and communicated with the first bottom die cavity, and a first flow valve arranged on the heat outlet pipe.
3. The three-dimensional shaping device for the boot upper as claimed in claim 2, wherein: the bottom of the first bottom die cavity is further provided with a first temperature sensor.
4. The three-dimensional shaping device for the boot upper as claimed in claim 1, wherein: the cooling die block combination comprises a second support frame, a second die block cavity arranged at the top of the second support frame is arranged at the bottom of the second die block cavity and communicated with a cold inlet pipe and a cold outlet pipe, and a second flow valve arranged on the cold outlet pipe.
5. The three-dimensional shaping device for the boot upper as claimed in claim 4, wherein: and a second temperature sensor is also arranged at the bottom of the second bottom die cavity.
6. The three-dimensional shaping device for the boot upper as claimed in claim 1, wherein: the temperature control system comprises a semiconductor refrigeration piece, a hot head arranged on the side face of the semiconductor refrigeration piece, a first liquid inlet pipe arranged on the hot head and communicated with the hot head, a first water pump arranged on the first liquid inlet pipe, a cold head arranged on the other side of the semiconductor refrigeration piece, a second liquid inlet pipe arranged on the cold head and communicated with the cold head, and a second water pump arranged on the second liquid inlet pipe.
7. The three-dimensional shaping device for the boot upper as claimed in claim 1, wherein: and a control panel is arranged on the side surface of the top cabinet.
8. The three-dimensional shaping device for the boot upper as claimed in claim 1, wherein: the side of top cabinet still the symmetry be provided with the heating die block combination with the cooling die block combination corresponds universal bracket, universal bracket's end is provided with the light.
CN202122641083.0U 2021-10-29 2021-10-29 Three-dimensional setting device of boot vamp Active CN216723388U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122641083.0U CN216723388U (en) 2021-10-29 2021-10-29 Three-dimensional setting device of boot vamp

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202122641083.0U CN216723388U (en) 2021-10-29 2021-10-29 Three-dimensional setting device of boot vamp

Publications (1)

Publication Number Publication Date
CN216723388U true CN216723388U (en) 2022-06-14

Family

ID=81924051

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202122641083.0U Active CN216723388U (en) 2021-10-29 2021-10-29 Three-dimensional setting device of boot vamp

Country Status (1)

Country Link
CN (1) CN216723388U (en)

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