Industrial washing machine with suspension damping structure
By using pressure sensors, adaptive addition modules and capacity adjustment modules in industrial washing machines, the detergent is adaptively controlled according to the weight of clothing, and the problem of not being able to control the amount of detergent is used in the prior art according to the amount of clothing, achieving the effect of saving detergent and reducing costs.
Patent Information
- Application Number
- CN202510481293.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-17
- Publication Date
- 2025-05-13
- Estimated Expiration
- 2045-04-17
AI Technical Summary
The existing industrial washing machines cannot control the amount of detergents according to the amount of clothes, resulting in waste or insufficient detergents, resulting in increased washing costs or poor washing effects.
An industrial washing machine with suspension shock absorbing structure is designed, using pressure sensors, adaptive addition modules and capacity adjustment modules to adaptively control the amount of detergent to be delivered according to the weight of the clothing.
Adaptively controlling the amount of detergent is achieved according to the weight of the clothing, reducing the excessive amount of detergent issuance, ensuring the cleaning effect, reducing the consumption of detergent, and controlling the washing cost.
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Figure CN119980650A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of industrial water washing machines, in particular to an industrial water washing machine with a suspension shock-absorbing structure. Background Art
[0002] A washing machine is a device that uses water to wash clothes. It is controlled by a computer program. The mechatronics can be operated manually, automatically and programmed, and can complete each washing process according to the washing program built into the computer system.
[0003] When the existing industrial washing machines have a fixed washing program, no matter how many clothes are in the drum, the amount of detergent released is fixed. This results in the washing machine releasing too much or too little detergent when there are fewer or more clothes, resulting in a waste or shortage of detergent, resulting in increased washing costs or poor washing effects. Summary of the invention
[0004] The invention discloses an industrial washing machine with a suspension shock-absorbing structure, aiming to solve the technical problem that the existing industrial washing machine in the background technology cannot control the amount of detergent used according to the amount of clothes.
[0005] The present invention proposes an industrial washing machine with a suspension shock-absorbing structure, comprising an outer frame, an installation bin is arranged inside the outer frame, a roller is movably connected to the inner wall of the installation bin, and a pressure sensor is arranged on the installation bin, a receiving box is arranged on the upper side of the outer frame, the bottom of the receiving box is connected to the installation bin, a suspension bracket is fixedly connected to the outside of the installation bin, a plurality of symmetrical spring rods are movably connected to the outside of the suspension bracket, one end of the spring rods away from the suspension bracket is movably connected to the outside of the outer frame, and a plurality of symmetrical dampers are movably connected to the outside of the suspension bracket, one end of the damper away from the suspension bracket is movably connected to the outside of the outer frame, an adaptive adding module is arranged on the receiving box, and a capacity adjustment module is arranged inside the receiving box; The adaptive addition module includes a containing cylinder and a weighing column; The capacity adjustment module includes a moving plate.
[0006] In a preferred embodiment, the outside of the containing box is fixedly connected to a mounting plate, the outside of the mounting plate is fixedly connected to the outside of the outer frame, a circular opening is provided on the upper side of the containing box, a liquid storage tank is fixedly connected to the circular opening, a closing block is fixedly connected to the inner wall of the containing box, an insertion groove is provided on the closing block and the containing box, and the inner wall of the insertion groove is movably connected to the outside of the containing cylinder, a circular hole is provided on the mounting bin, a rotating shaft is movably connected in the circular hole, a side of the rotating shaft close to the drum is fixedly connected to the outside of the drum, and a pressure sensor is fitted to the side opposite to the rotating shaft; the inner wall of the containing cylinder is provided with two symmetrical sliding grooves, and the outer wall of the weighing column is provided with a plurality of symmetrical sliding grooves. The two ends of the rotating shaft are slidably connected with the inner walls of the two weighing columns, notches are provided on the weighing columns and the accommodating tube, and the inner wall of the notch on the accommodating tube is provided with two symmetrical cut grooves, and a sealing ring is fixedly connected in the cut groove, and the outer parts of the two sealing rings are respectively in contact with the inner wall of the insertion groove and the outer part of the weighing column, and a rotating wheel is fixedly connected to the outer part of the rotating shaft, and a driving motor is provided on the suspension bracket, and the output end of the driving motor is connected to a transmission roller through a coupling, and the transmission roller and the outer part of the rotating wheel are provided with the same belt, and the side of the installation bin away from the rotating shaft is connected to the cabinet door through a hinge; the upper side and the bottom of the insertion groove are provided with rectangular grooves, and the notches are provided with rectangular grooves, and the notches are provided with rectangular grooves. Located in the same plane as the rectangular groove, a short shaft is fixedly connected to the side of the containing cylinder away from the weighing column, a half gear is fixedly connected to the outside of the short shaft, a motor 1 is fixedly connected to the outside of the containing box, an output end of the motor 1 is connected to a notched gear via a coupling, the notched gear is meshed with the half gear, and a coil spring is fixedly connected to the outside of the short shaft; an end of the coil spring away from the short shaft is fixedly connected to a connecting frame, an end of the connecting frame away from the short shaft is fixedly connected to the outside of the containing box, a limiting rod is fixedly connected to the outside of the connecting frame, an end of the limiting rod away from the connecting frame is in contact with the outside of the half gear, and an observation window is provided on the outside of the containing box; the containing box Two symmetrical sliding grooves are provided on the side of the storage box away from the half gear, and locking blocks are slidably connected in the sliding grooves. The outside of the locking blocks are clamped with the side of the weighing column away from the half gear, and the side of the locking blocks away from the storage box is fixedly connected with connecting rods; the outsides of the two connecting rods are slidably connected with two symmetrical round rods, and the outsides of the round rods are movably connected with follower blocks, and four symmetrical rectangular grooves are provided on the side of the storage box close to the locking blocks, and the inner walls of the rectangular grooves are slidably connected to the outside of the follower blocks on the same side, and the inner walls of the rectangular grooves are fixedly connected with springs, and the other ends of the springs are fixedly connected to the outside of the follower blocks on the same side.
[0007] In a preferred scheme, the bottom inner wall of the slot is fixedly connected to two symmetrical fixed seats, the fixed seats are movably connected to the same bidirectional screw, the inner wall of the slot is fixedly connected to motor 2, the output end of motor 2 is connected to one side of the bidirectional screw through a coupling, and the upper sides of the two fixed seats are movably connected to transmission rod 1; the ends of the two transmission rods 1 away from the fixed seats are movably connected to transmission rod 2, the ends of the transmission rods 2 away from the transmission rod 1 are movably connected to the bottom of the movable plate, and the outside of the movable plate is fixedly connected to sealing ring 2, and the outside of the sealing ring 2 is slidably connected to the inner wall of the slot; two symmetrical movable platforms are arranged on the outside of the bidirectional screw, the bottom of the movable platforms are slidably connected to the bottom inner wall of the slot, the upper sides of the movable platforms are movably connected to push-pull rods, and the ends of the push-pull rods away from the movable platforms are movably connected to the outside of transmission rod 1 on the same side.
[0008] From the above, it can be seen that the industrial washing machine with a suspension shock-absorbing structure provided by the present invention has the function of enabling the device to adaptively control the amount of detergent added according to the weight of the clothes to be washed, so that the device can reduce the situation of excessive detergent addition while ensuring the amount of detergent added to meet the amount of washing clothes, thereby ensuring the cleaning effect, reducing the consumption of detergent, and controlling the washing cost. BRIEF DESCRIPTION OF THE DRAWINGS
[0009] Figure 1 This is a schematic diagram of the overall structure of an industrial washing machine with a suspension shock-absorbing structure proposed by the present invention; Figure 2 This is a schematic cross-sectional view of an industrial washing machine with a suspension shock-absorbing structure proposed by the present invention; Figure 3 This is a schematic diagram of the structure of an adaptive addition module of an industrial washing machine with a suspension shock-absorbing structure proposed by the present invention; Figure 4 This is a schematic cross-sectional structure diagram of a closing block of an industrial washing machine with a suspension shock-absorbing structure proposed by the present invention; Figure 5 This is a schematic cross-sectional view of a connecting frame of an industrial washing machine with a suspension shock-absorbing structure proposed by the present invention; Figure 6 This is a schematic diagram of a locking block structure of an industrial washing machine with a suspension shock-absorbing structure proposed by the present invention; Figure 7 This is a schematic diagram of the capacity adjustment module structure of an industrial washing machine with a suspension shock-absorbing structure proposed by the present invention.
[0010] In the figure: 1, outer frame; 2, installation compartment; 3, suspension bracket; 4, spring rod; 5, damper; 6, storage box; 7, adaptive addition module; 701, observation window; 702, closing block; 703, storage cylinder; 704, motor 1; 705, liquid storage tank; 706, insertion slot; 707, rectangular slot; 708, weighing column; 709, notch; 710, sealing ring 1; 711, notched gear; 712, half gear; 713, connecting frame; 714, coil spring; 715, limit rod ;716, slide groove;717, locking block;718, connecting rod;719, spring;720, follower block;8, capacity adjustment module;801, fixed seat;802, bidirectional screw;803, motor 2;804, transmission rod 1;805, transmission rod 2;806, moving plate;807, sealing ring 2;808, movable table;809, push-pull rod;9, cabinet door;10, roller;11, rotating shaft;12, pressure sensor;13, rotating wheel;14, driving motor;15, belt. DETAILED DESCRIPTION
[0011] The technical solutions in the embodiments of the present invention will be described clearly and completely below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments.
[0012] An industrial washing machine with a suspension shock-absorbing structure disclosed by the present invention is mainly used in scenarios where existing industrial washing machines cannot control the amount of detergent used according to the amount of clothes.
[0013] Reference Figure 1-Figure 7 , an industrial washing machine with a suspension damping structure, comprising an outer frame 1, a mounting chamber 2 is arranged inside the outer frame 1, a drum 10 is rotatably connected to the inner wall of the mounting chamber 2 through a bearing, and a pressure sensor 12 is arranged on the mounting chamber 2, a receiving box 6 is arranged on the upper side of the outer frame 1, the bottom of the receiving box 6 is connected to the mounting chamber 2, a suspension bracket 3 is connected to the outside of the mounting chamber 2 through bolts, a plurality of symmetrical spring rods 4 are rotatably connected to the outside of the suspension bracket 3 through a bearing, the end of the spring rod 4 away from the suspension bracket 3 is rotatably connected to the outside of the outer frame 1 through a bearing, and a plurality of symmetrical dampers 5 are rotatably connected to the outside of the suspension bracket 3 through a bearing, and the end of the damper 5 away from the suspension bracket 3 is rotatably connected to the outside of the outer frame 1 through a bearing, an adaptive adding module 7 is arranged on the receiving box 6, and a capacity adjustment module 8 is arranged in the receiving box 6; The adaptive adding module 7 includes a containing cylinder 703 and a weighing column 708; The capacity regulating module 8 includes a moving plate 806 .
[0014] Specifically, the cabinet door 9 is opened, the clothes are put into the drum 10, the cabinet door 9 is closed, and the washing program is started. After the pressure sensor 12 on the installation chamber 2 senses the increased weight in the drum 10, it will send a signal to the system, thereby controlling the weighing column 708 on the adaptive adding module 7 to weigh an appropriate amount of detergent and transport it into the installation chamber 2. After water is filled in the installation chamber 2, the driving motor 14 is started, and the driving motor 14 drives the belt 15 to rotate, so that the rotating shaft 11 connected to the rotating wheel 13 drives the drum 10 to rotate, and the clothes are started to be washed. When the number of clothes to be washed is small and the amount of detergent required is less than the single weighing amount of the slot 709, the capacity adjustment module 8 is used to reduce the capacity of the slot 709 to meet the amount of detergent added; the device uses the adaptive adding module 7 to enable the device to adaptively control the amount of detergent added according to the weight of the clothes to be washed, so that the device reduces the excessive amount of detergent while ensuring the amount of detergent added to meet the washing clothes, thereby ensuring the washing effect, reducing the consumption of detergent, and controlling the washing cost.
[0015] Reference Figure 3 , Figure 4 , Figure 5 and Figure 6In a preferred embodiment, the outside of the receiving box 6 is connected to a mounting plate by bolts, and the outside of the mounting plate is connected to the outside of the outer frame 1 by bolts. A circular opening is provided on the upper side of the receiving box 6, and a liquid storage tank 705 is connected to the circular opening by bolts. The inner wall of the receiving box 6 is connected to a closing block 702 by bolts. Insertion grooves 706 are provided on the closing block 702 and the receiving box 6, and the inner wall of the insertion groove 706 is rotatably connected to the outside of the receiving cylinder 703 by a bearing. A circular hole is provided on the mounting bin 2, and a rotating shaft 11 is rotatably connected to the circular hole by a bearing. The side of the rotating shaft 11 close to the drum 10 is connected to the outside of the drum 10 by bolts, and the pressure sensor 12 is connected to the rotating shaft 11. The inner wall of the accommodating cylinder 703 is provided with two symmetrical sliding grooves, the outer parts of the weighing columns 708 are slidably connected with the inner walls of the two weighing columns 708, the weighing columns 708 and the accommodating cylinder 703 are provided with notches 709, and the inner wall of the notch 709 on the accommodating cylinder 703 is provided with two symmetrical cutting grooves, the cutting grooves are connected with sealing rings 710 by bolts, the outer parts of the two sealing rings 710 are respectively in contact with the inner wall of the insertion groove 706 and the outer parts of the weighing columns 708, the outer part of the rotating shaft 11 is connected with a rotating wheel 13 by bolts, and a driving motor 14 is arranged on the suspension bracket 3, and the output end of the driving motor 14 is connected with a transmission roller through a coupling, and the transmission roller is connected with the rotating shaft 11. The same belt 15 is arranged on the outside of the wheel 13, and the side of the installation bin 2 away from the rotating shaft 11 is connected to the cabinet door 9 through a hinge; rectangular grooves 707 are provided on the upper side and the bottom of the insertion groove 706, and the notch 709 and the rectangular groove 707 are located in the same plane, and the side of the accommodating cylinder 703 away from the weighing column 708 is connected to the short shaft by bolts, and the outside of the short shaft is connected to the half gear 712 by bolts, and the outside of the accommodating box 6 is connected to the motor 1 704 by bolts, and the output end of the motor 1 704 is connected to the notched gear 711 through a coupling, and the notched gear 711 is meshed with the half gear 712, and the outside of the short shaft is connected to the coil spring 714 by bolts; the coil spring 714 is away from the short shaft. The end is connected with a connecting frame 713 by bolts, and the end of the connecting frame 713 away from the short shaft is connected with the outside of the containing box 6 by bolts, and the outside of the connecting frame 713 is connected with a limiting rod 715 by bolts, and the end of the limiting rod 715 away from the connecting frame 713 is in contact with the outside of the half gear 712, and an observation window 701 is provided on the outside of the containing box 6; two symmetrical sliding grooves 716 are provided on the side of the containing box 6 away from the half gear 712, and locking blocks 717 are slidably connected in the sliding grooves 716, and the outside of the locking blocks 717 are clamped with the side of the weighing column 708 away from the half gear 712, and the side of the locking blocks 717 away from the containing box 6 is connected with a connecting rod 718 by bolts;The outsides of the two connecting rods 718 are slidably connected to two symmetrical round rods, and the outsides of the round rods are rotatably connected to the follower blocks 720 through bearings, and the side of the accommodating box 6 close to the locking block 717 is provided with four symmetrical rectangular grooves, and the inner walls of the rectangular grooves are slidably connected to the outsides of the follower blocks 720 on the same side, and the inner walls of the rectangular grooves are connected to springs 719 through bolts, and the other ends of the springs 719 are connected to the outsides of the follower blocks 720 on the same side through bolts. ;
[0016] Specifically, before washing, the locking block 717 is pushed open against the elastic force of the spring 719, the weighing column 708 is inserted into the accommodating tube 703, and the locking block 717 is released so that the locking block 717 locks the weighing column 708 in the accommodating tube 703. After the clothes are put into the drum 10, the motor 704 is started to drive the half gear 712 meshing with the notched gear 711 to rotate. After the half gear 712 drives the weighing column 708 in the accommodating tube 703 to rotate one hundred and eighty degrees, the weighing column 708 will pour the detergent stored in the notch 709 from the rectangular groove 707 into the lower part of the accommodating box 6 and flow into the installation bin 2. During the storage operation of the motor 704, the weighing column 708 is rotated once or several times, so that the detergent that meets the washing needs is delivered to the device.
[0017] In a specific application scenario, the adaptive adding module 7 is mainly applicable to the adaptive adding link in the adaptive adding process, that is, the adaptive adding module 7 uses the pressure sensor 12, the weighing column 708 and the slot 709 to quantify the required amount of detergent according to the weight of the clothes put into the drum 10, so that the device can use the capacity of the slot 709 to evenly distribute the amount of detergent added, and the refined control device delivers the appropriate amount of detergent to the clothes to be washed, thereby improving the delivery accuracy of the device.
[0018] It should be noted that the locking block 717 can be used to ensure that the weighing column 708 can form a whole with the accommodating cylinder 703 after being installed on the accommodating cylinder 703, and the single detergent addition amount of the device can be controlled by replacing the weighing column 708 with slots 709 of different capacity sizes, thereby improving the flexibility of the device.
[0019] Reference Figure 7In a preferred embodiment, the bottom inner wall of the slot 709 is connected with two symmetrical fixed seats 801 by bolts, and the fixed seat 801 is rotatably connected with the same bidirectional screw 802 by bearings, and the inner wall of the slot 709 is connected with a second motor 803 by bolts, and the output end of the second motor 803 is connected to one side of the bidirectional screw 802 by a coupling, and the upper sides of the two fixed seats 801 are rotatably connected with a transmission rod 1 804 by bearings; the ends of the two transmission rods 1 804 away from the fixed seat 801 are rotatably connected with a second transmission rod 805 by bearings, and the transmission rod 2 805 is away from the fixed seat 801. One end of the transmission rod 804 is rotatably connected to the bottom of the movable plate 806 through a bearing, and the outside of the movable plate 806 is connected to a sealing ring 807 through bolts, and the outside of the sealing ring 807 is slidably connected to the inner wall of the groove 709; two symmetrical movable platforms 808 are arranged on the outside of the bidirectional screw rod 802, and the bottom of the movable platform 808 is slidably connected to the bottom inner wall of the groove 709, and the upper side of the movable platform 808 is rotatably connected to a push-pull rod 809 through a bearing, and the end of the push-pull rod 809 away from the movable platform 808 is rotatably connected to the outside of the transmission rod 804 on the same side through a bearing.
[0020] Specifically, when the amount of clothes in the drum 10 is small and the required amount of detergent is far less than the single amount of laundry put into the slot 709, the motor 2 803 is started, and the motor 2 803 drives the two-way screw rod 802 to rotate, so that the movable platform 808 moves along with the two-way screw rod 802, so that the push-pull rod 809 connected to the movable platform 808 pushes the transmission rod 1 804 to change the angle with the two-way screw rod 802 during the movement, so that the transmission rod 1 804 drives the transmission rod 2 805 to stretch upward, and pushes the movable plate 806 to move upward in the slot 709, thereby reducing the capacity of the detergent that the slot 709 can accommodate.
[0021] In a specific application scenario, the capacity adjustment module 8 is mainly suitable for the capacity adjustment link in the capacity adjustment process, that is, the capacity adjustment module 8 uses a bidirectional screw rod 802 and a movable platform 808 to enable the push-pull rod 809 to change the position of the movable plate 806 in the slot 709 by pushing the transmission rod 804, so that the capacity of the slot 709 changes, thereby meeting the need to control the single detergent dosage of the slot 709 for washing a small amount of clothes, and further improving the control range and accuracy of the device on the detergent dosage.
[0022] Working principle: open the cabinet door 9, put the clothes into the drum 10, close the cabinet door 9, start the washing program, the pressure sensor 12 on the installation chamber 2 will send a signal to the system after sensing the increased weight in the drum 10, overcome the elastic force of the spring 719 to push the locking block 717, insert the weighing column 708 into the accommodating cylinder 703, release the locking block 717, so that the locking block 717 locks the weighing column 708 in the accommodating cylinder 703, after the clothes are put into the drum 10, the motor 1 704 is started, driving the half gear 712 meshing with the notched gear 711 to rotate, after the half gear 712 drives the weighing column 708 in the accommodating cylinder 703 to rotate 180 degrees, the weighing column 708 will pour the detergent stored in the notch 709 from the rectangular groove 707 into the accommodating cylinder 703. The laundry detergent in the drum 10 is transported to the bottom of the washing machine 10 and flows into the installation bin 2. During the storage operation of the motor 1 704, the weighing column 708 is rotated once or several times, so that the detergent that meets the washing needs is delivered to the device. When the amount of clothes in the drum 10 is small and the required amount of detergent is much smaller than the single amount of the slot 709, the motor 2 803 is started, and the motor 2 803 drives the bidirectional screw rod 802 to rotate, so that the movable platform 808 moves along with the bidirectional screw rod 802, so that the push-pull rod 809 connected to the movable platform 808 pushes the transmission rod 1 804 to change the angle with the bidirectional screw rod 802 during the movement, so that the transmission rod 1 804 drives the transmission rod 2 805 to stretch upward, and pushes the movable plate 806 to move upward in the slot 709, thereby reducing the capacity of the detergent that the slot 709 can accommodate.
[0023] The above description is only a preferred specific implementation manner of the present invention, but the protection scope of the present invention is not limited thereto. Any technician familiar with the technical field can make equivalent replacements or changes according to the technical scheme and inventive concept of the present invention within the technical scope disclosed by the present invention, which should be covered by the protection scope of the present invention.
Claims
1. An industrial washing machine with a suspension shock-absorbing structure, comprising an outer frame (1), characterized in that: The outer frame (1) is provided with an installation bin (2), the inner wall of the installation bin (2) is movably connected to a roller (10), and the installation bin (2) is provided with a pressure sensor (12); a storage box (6) is provided on the upper side of the outer frame (1), the bottom of the storage box (6) is connected to the installation bin (2), the outside of the installation bin (2) is fixedly connected to a suspension bracket (3), the outside of the suspension bracket (3) is movably connected to a plurality of symmetrical spring rods (4), the ends of the spring rods (4) away from the suspension bracket (3) are all movably connected to the outside of the outer frame (1), and the outside of the suspension bracket (3) is movably connected to a plurality of symmetrical dampers (5), the ends of the dampers (5) away from the suspension bracket (3) are all movably connected to the outside of the outer frame (1); an adaptive adding module (7) is provided on the storage box (6), and a capacity adjustment module (8) is provided in the storage box (6); The adaptive adding module (7) comprises a containing cylinder (703) and a weighing column (708); The capacity adjustment module (8) comprises a moving plate (806).
2. An industrial washing machine with a suspension shock-absorbing structure according to claim 1, characterized in that: The outside of the containing box (6) is fixedly connected to a mounting plate, the outside of the mounting plate is fixedly connected to the outside of the outer frame (1), the upper side of the containing box (6) is provided with a circular opening, a liquid storage tank (705) is fixedly connected inside the circular opening, a closing block (702) is fixedly connected to the inner wall of the containing box (6), both the closing block (702) and the containing box (6) are provided with insertion grooves (706), and the inner wall of the insertion groove (706) is movably connected to the outside of the containing cylinder (703), the mounting chamber (2) is provided with a circular hole, a rotating shaft (11) is movably connected inside the circular hole, a side of the rotating shaft (11) close to the drum (10) is fixedly connected to the outside of the drum (10), and the pressure sensor (12) is fitted to the side opposite to the rotating shaft (11).
3. The industrial washing machine with a suspension shock-absorbing structure according to claim 2, characterized in that: The inner wall of the accommodating cylinder (703) is provided with two symmetrical sliding grooves, the outer parts of the weighing columns (708) are slidably connected to the inner walls of the two weighing columns (708), the weighing columns (708) and the accommodating cylinder (703) are provided with notches (709), and the inner wall of the notches (709) on the accommodating cylinder (703) is provided with two symmetrical cut grooves, the cut grooves are fixedly connected with sealing rings (710), the outer parts of the two sealing rings (710) are respectively in contact with the inner wall of the insertion groove (706) and the outer parts of the weighing columns (708), the outer part of the rotating shaft (11) is fixedly connected with a rotating wheel (13), the suspension bracket (3) is provided with a driving motor (14), the output end of the driving motor (14) is connected with a transmission roller via a coupling, the transmission roller and the outer parts of the rotating wheel (13) are provided with the same belt (15), and the side of the installation bin (2) away from the rotating shaft (11) is connected with a cabinet door (9) via a hinge.
4. The industrial washing machine with a suspension shock-absorbing structure according to claim 3, characterized in that: The upper side and the bottom of the insertion slot (706) are both provided with a rectangular slot (707), the slot opening (709) and the rectangular slot (707) are located in the same plane, a short shaft is fixedly connected to the side of the accommodating cylinder (703) away from the weighing column (708), the outside of the short shaft is fixedly connected to a half gear (712), the outside of the accommodating box (6) is fixedly connected to a motor 1 (704), the output end of the motor 1 (704) is connected to a notched gear (711) via a coupling, the notched gear (711) is meshed with the half gear (712), and the outside of the short shaft is fixedly connected to a coil spring (714).
5. The industrial washing machine with a suspension shock-absorbing structure according to claim 4, characterized in that: One end of the coil spring (714) away from the short shaft is fixedly connected to a connecting frame (713), one end of the connecting frame (713) away from the short shaft is fixedly connected to the outside of the accommodating box (6), the outside of the connecting frame (713) is fixedly connected to a limiting rod (715), one end of the limiting rod (715) away from the connecting frame (713) contacts the outside of the half gear (712), and an observation window (701) is provided on the outside of the accommodating box (6).
6. The industrial washing machine with a suspension shock-absorbing structure according to claim 5, characterized in that: Two symmetrical slide grooves (716) are provided on a side of the containing box (6) away from the half gear (712), and locking blocks (717) are slidably connected in the slide grooves (716). The outside of the locking blocks (717) are engaged with a side of the weighing column (708) away from the half gear (712), and a connecting rod (718) is fixedly connected to the side of the locking blocks (717) away from the containing box (6).
7. An industrial washing machine with a suspension shock-absorbing structure according to claim 6, characterized in that: The outsides of the two connecting rods (718) are slidably connected to two symmetrical round rods, and the outsides of the round rods are movably connected to follower blocks (720), and four symmetrical rectangular grooves are opened on one side of the accommodating box (6) close to the locking block (717), and the inner walls of the rectangular grooves are slidably connected to the outside of the follower blocks (720) on the same side, and the inner walls of the rectangular grooves are fixedly connected to springs (719), and the other ends of the springs (719) are fixedly connected to the outside of the follower blocks (720) on the same side.
8. The industrial washing machine with a suspension shock-absorbing structure according to claim 3, characterized in that: The bottom inner wall of the notch (709) is fixedly connected to two symmetrical fixed seats (801), and the fixed seats (801) are movably connected to the same bidirectional screw rod (802). The inner wall of the notch (709) is fixedly connected to a second motor (803), and the output end of the second motor (803) is connected to one side of the bidirectional screw rod (802) via a coupling, and the upper sides of the two fixed seats (801) are movably connected to a transmission rod (804).
9. The industrial washing machine with a suspension shock-absorbing structure according to claim 8, characterized in that: One end of each of the two transmission rods 1 (804) away from the fixed seat (801) is movably connected to a transmission rod 2 (805), and one end of each of the transmission rods 2 (805) away from the transmission rod 1 (804) is movably connected to the bottom of the movable plate (806), and the outside of the movable plate (806) is fixedly connected to a sealing ring 2 (807), and the outside of the sealing ring 2 (807) is slidably connected to the inner wall of the notch (709).
10. An industrial washing machine with a suspension shock-absorbing structure according to claim 9, characterized in that: Two symmetrical movable platforms (808) are arranged outside the bidirectional screw rod (802), the bottom of the movable platform (808) is slidably connected to the bottom inner wall of the slot (709), the upper side of the movable platform (808) is movably connected to a push-pull rod (809), and the end of the push-pull rod (809) away from the movable platform (808) is movably connected to the outside of the transmission rod 1 (804) on the same side.
Citation Information
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