WO2024016906A1 - 一种牙膏管 - Google Patents

一种牙膏管 Download PDF

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Publication number
WO2024016906A1
WO2024016906A1 PCT/CN2023/100097 CN2023100097W WO2024016906A1 WO 2024016906 A1 WO2024016906 A1 WO 2024016906A1 CN 2023100097 W CN2023100097 W CN 2023100097W WO 2024016906 A1 WO2024016906 A1 WO 2024016906A1
Authority
WO
WIPO (PCT)
Prior art keywords
tube
piston
driving
driving rod
tube body
Prior art date
Application number
PCT/CN2023/100097
Other languages
English (en)
French (fr)
Inventor
王从领
Original Assignee
王从领
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 王从领 filed Critical 王从领
Publication of WO2024016906A1 publication Critical patent/WO2024016906A1/zh

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65DCONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
    • B65D35/00Pliable tubular containers adapted to be permanently or temporarily deformed to expel contents, e.g. collapsible tubes for toothpaste or other plastic or semi-liquid material; Holders therefor
    • B65D35/24Pliable tubular containers adapted to be permanently or temporarily deformed to expel contents, e.g. collapsible tubes for toothpaste or other plastic or semi-liquid material; Holders therefor with auxiliary devices
    • B65D35/28Pliable tubular containers adapted to be permanently or temporarily deformed to expel contents, e.g. collapsible tubes for toothpaste or other plastic or semi-liquid material; Holders therefor with auxiliary devices for expelling contents
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65DCONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
    • B65D35/00Pliable tubular containers adapted to be permanently or temporarily deformed to expel contents, e.g. collapsible tubes for toothpaste or other plastic or semi-liquid material; Holders therefor
    • B65D35/24Pliable tubular containers adapted to be permanently or temporarily deformed to expel contents, e.g. collapsible tubes for toothpaste or other plastic or semi-liquid material; Holders therefor with auxiliary devices
    • B65D35/28Pliable tubular containers adapted to be permanently or temporarily deformed to expel contents, e.g. collapsible tubes for toothpaste or other plastic or semi-liquid material; Holders therefor with auxiliary devices for expelling contents
    • B65D35/30Pistons

Definitions

  • the present invention relates to the technical field of daily chemical products, and in particular, to a toothpaste tube.
  • toothpaste tubes are packaging tubes used to store toothpaste fluid products. Toothpaste is an essential tooth cleaning product in our daily lives. Toothpaste is generally stored in toothpaste tubes. A good quality toothpaste tube should be able to squeeze out naturally. The paste is fine and smooth, and is in the shape of a normal round bar. Existing toothpaste tubes are generally soft packaging shells. When users use them, they squeeze the wall of the toothpaste tube through external force, causing the toothpaste tube to deform, causing the toothpaste inside to flow out from the output port.
  • the purpose of the present invention is to provide a toothpaste tube that aims to solve the technical problem in the prior art that a large amount of toothpaste remains on the inner wall of the packaging tube, resulting in waste.
  • the technical solution of the present invention provides a toothpaste tube, including: a tube body, the first end of the tube body has an output port, and the second end of the tube body has a driving port; a piston , the piston is movably arranged in the tube body along the axial direction; and a driving device, the driving device includes a driving part and a driving rod group, the driving part is arranged at the second end of the tube body, the The driving part is drivingly connected to the driving rod group.
  • the driving rod group is composed of a plurality of mutually nested and axially telescopic rod tubes, and one end of the driving rod group extends from the driving opening to the
  • the piston is inserted into the tube body and connected to the piston, so that the driving part extends or contracts through the driving rod group to drive the piston to move in the axial direction within the tube body.
  • the toothpaste tube of the present invention is provided with a driving device at the driving port of the tube body.
  • the driving device includes a driving part and a driving rod group.
  • the driving part is arranged at the second end of the tube body.
  • the driving part and the driving rod set The rod group is driven and connected.
  • the driving rod group is composed of a plurality of rod pipe fittings that are sleeved and axially telescopic.
  • one end of the driving rod group extends from the driving port into the tube body and is connected with the piston, so that the driving part passes through the driving
  • the rod group extends or contracts to drive the piston to move axially in the tube body.
  • the driving part can drive the driving rod group to extend and push the piston to advance axially in the tube body, thereby discharging the toothpaste in the tube body from the output
  • the mouth is gradually pushed out and pushed by the piston, which can effectively reduce the toothpaste residue in the tube body.
  • the drive rod group includes at least one drive rod and at least one drive tube, and the drive rod and the drive tube are axially telescopically sleeved with each other.
  • the driving rod group includes at least one driving rod and at least one driving tube, and the driving rod and the driving tube are telescopically connected to each other through a threaded connection.
  • the driving device further includes a guide structure disposed between the tube body and the piston, so that the guide structure is threadedly connected The piston is guided to rotate and lift in the tube body.
  • the driving device further includes a guide structure disposed between the tube body and the piston to guide the piston through the guide structure Move within the tube.
  • the driving part includes a sleeve assembly that is rotatably sleeved on the second end of the tube body, and the other end of the driving rod group Connect with the sleeve assembly.
  • the driving rod group further includes a connecting barrel, the connecting barrel is disposed in the sleeve assembly, and the connecting barrel is disposed corresponding to the driving port,
  • the connecting tube and the driving rod or the connecting tube and the driving tube are telescopically connected to each other through a threaded connection.
  • the tube body includes an inner tube and an outer tube that are detachably set with each other.
  • the guide structure includes a protruding rib and a guide groove, the guide groove is slidably engaged with the protruding rib, and the tube body and the One of the pistons has a raised rib, the other of the tube body and the piston has a guide groove, and both the raised ribs and the guide groove extend along the axial direction of the tube body.
  • the guide structure includes a first guide surface and a second guide surface, and the first guide surface matches the shape and size of the second guide surface.
  • the inner wall surface of the tube body has a first guide surface
  • the outer peripheral surface of the piston has a second guide surface, so that the first guide surface and the second guide surface cooperate with each other to guide the piston along the direction.
  • the tube body moves in the axial direction.
  • the barrel opening of the sleeve assembly and the driving opening of the tube body are integrated with each other, the outer peripheral surface of the tube body is provided with a first flange, and the sleeve A first stop ring is formed on the barrel opening of the component extending radially inward, and the first stop ring is in contact with the first flange.
  • the sleeve assembly includes a barrel and a connecting ring, the barrel mouth of the barrel and the driving port of the tube are fitted to each other, and the barrel mouth of the barrel is connected to the driving port of the tube.
  • the connecting ring is detachably connected.
  • the connecting ring is sleeved on the pipe body.
  • the outer peripheral surface of the pipe body is provided with a first flange.
  • the connecting ring extends radially inward to form a first stop ring. , the first stop ring is in contact with the first flange.
  • the mouth of the barrel and the connecting ring are detachably connected through a snap connection or a threaded connection.
  • a first annular wall is provided in the sleeve assembly, and the first annular wall and the connecting barrel are detachable through a snap connection or a threaded connection. Ground connection.
  • a first annular wall is provided in the sleeve assembly, and a plurality of first tooth grooves are provided on the inner peripheral surface of the first annular wall along the axial direction, so The outer circumferential surface of one end of the connecting barrel facing the first annular wall is provided with a plurality of first meshing teeth along the axial direction, and the first meshing teeth match the first tooth groove.
  • the inner peripheral surface of the tube body is provided with a second stop ring
  • the outer peripheral surface of the connecting tube is provided with a fourth flange
  • the second stop ring The ring abuts the fourth flange.
  • one end of the connecting barrel away from the piston has a first installation port
  • one end of the connecting barrel close to the piston extends radially inward to form a second annular wall.
  • the inner peripheral surface of the second annular wall is provided with internal threads
  • the outer peripheral surface of the drive tube is provided with external threads
  • the drive tube is threadedly connected to the second annular wall
  • the drive tube is away from the piston
  • a second flange is provided on the outer peripheral surface of one end, and the second flange is movably installed in the connecting barrel.
  • the diameter of the second flange is larger than the diameter of the second annular wall and smaller than the diameter of the second annular wall. The diameter of the installation port.
  • one end of the drive tube away from the piston has a second installation port, and one end of the drive tube close to the piston extends radially inward to form a third annular wall.
  • the inner peripheral surface of the third annular wall is provided with internal threads
  • the outer peripheral surface of the driving rod is provided with external threads
  • the driving rod is threadedly connected to the third annular wall
  • the driving rod is away from the piston
  • a third flange is provided on the outer peripheral surface of one end, the third flange is movably installed in the drive tube, the diameter of the third flange is larger than the diameter of the third annular wall and smaller than the second The diameter of the mounting port.
  • one of the driving rod and the piston is provided with a slot
  • the other of the driving rod and the piston is provided with a plug
  • the The driving rod and the piston are inserted into each other through the plug and the slot.
  • the technical solution of the present invention provides a toothpaste tube, including: a tube body, the first end of the tube body has an output port, and the second end of the tube body has a driving port; a piston, the piston moves along the axially movably arranged in the tube body; a driving device, the driving device includes a driving rod group, the driving rod group is composed of a plurality of mutually nested and axially telescopic rod tubes, the driving rod group One end extends from the driving port into the tube body and is connected to the piston, so that the driving rod group extends or contracts to drive the piston to move axially in the tube body; and a power device , the power device includes a rotating assembly, the rotating assembly includes a power-accumulating turntable assembly and a coil spring, the power-accumulating turntable assembly is rotatably disposed at the second end of the tube body, the power-accumulating turntable assembly has a capacity
  • the coil spring is arranged in the accommodation space, and one end of the coil spring is connected
  • the toothpaste tube of the present invention drives the coil spring to rewind and store elastic force by manually rotating the power storage turntable assembly to provide power to the driving device.
  • the driving device can drive the driving rod through the power device.
  • the group automatically extends and pushes the piston to advance axially in the tube body, thereby gradually pushing the toothpaste in the tube body out from the output port.
  • the piston pushing method By setting the piston pushing method, the toothpaste residue in the tube body can be effectively reduced, and a semi-automatic driving method is adopted. Very easy to use.
  • the driving rod group includes at least one driving rod and at least one driving tube, and the driving rod and the driving tube are telescopically connected to each other through a threaded connection.
  • the driving device further includes a guide structure disposed between the tube body and the piston to guide the piston through the guide structure Move within the tube.
  • the driving rod group further includes a connecting tube, the connecting tube is provided corresponding to the driving port, and there is a gap between the connecting tube and the driving rod or the connecting tube.
  • the connecting tube and the driving tube are telescopically connected through threaded connections.
  • the guide structure includes a protruding rib and a guide groove, the guide groove is slidably engaged with the protruding rib, and the tube body and the One of the pistons has a raised rib, the other of the tube body and the piston has a guide groove, and both the raised ribs and the guide groove extend along the axial direction of the tube body. .
  • the guide structure includes a first guide surface and a second guide surface, and the first guide surface matches the shape and size of the second guide surface.
  • the inner wall surface of the tube body has a first guide surface
  • the outer peripheral surface of the piston has a second guide surface, so that the first guide surface and the second guide surface cooperate with each other to guide the piston along the direction.
  • the tube body moves in the axial direction.
  • one end of the connecting barrel away from the piston has a first installation port
  • one end of the connecting barrel close to the piston extends radially inward to form a second annular wall.
  • the inner peripheral surface of the second annular wall is provided with internal threads
  • the outer peripheral surface of the drive tube is provided with external threads
  • the drive tube is threadedly connected to the second annular wall
  • the drive tube is away from the piston
  • a second flange is provided on the outer peripheral surface of one end, and the second flange is movably installed in the connecting barrel.
  • the diameter of the second flange is larger than the diameter of the second annular wall and smaller than the diameter of the second annular wall. The diameter of the installation port.
  • one end of the drive tube away from the piston has a second installation port, and one end of the drive tube close to the piston extends radially inward to form a third annular wall.
  • the inner peripheral surface of the third annular wall is provided with internal threads
  • the outer peripheral surface of the driving rod is provided with external threads
  • the driving rod is threadedly connected to the third annular wall
  • the driving rod is away from the piston
  • a third flange is provided on the outer peripheral surface of one end, the third flange is movably installed in the drive tube, the diameter of the third flange is larger than the diameter of the third annular wall and smaller than the second The diameter of the mounting port.
  • one of the driving rod and the piston is provided with a slot
  • the other of the driving rod and the piston is provided with a plug
  • the The driving rod and the piston are inserted into each other through the plug and the slot.
  • the power device further includes an end cover assembly, the end cover assembly is connected to the pipe body, and the rotating assembly is rotatably installed on the end cover assembly. inside, and one end of the power-accumulating turntable assembly is exposed from the inside of the end cover assembly, so that the user can manually drive the power-accumulating turntable assembly to rotate.
  • the end cap assembly includes a cover body, and the inner cavity of the cover body is axially divided into a first lumen and a second lumen by a partition, and the The first tube cavity is connected to the tube body, the partition plate has a perforation, one end of the driving rod group away from the piston is inserted into the second tube cavity through the perforation, and the rotating component is disposed on within the second lumen.
  • the power device further includes a first stopper movably provided on the tube body to adjust the first stopper by adjusting the first stopper.
  • the stopper moves to cooperate with the driving rod group to circumferentially position the driving rod group.
  • the power device further includes a first stopper, the first stopper is movably provided on the tube body, and the first stopper One end of the member is exposed from the tube body, the other end of the first stopper is provided with at least one protrusion or recess, and the other end of the driving rod group is provided with multiple recesses or protrusions along the circumferential direction. So that the recess or protrusion of the first stopper matches the other end of the driving rod group to circumferentially position the driving rod group.
  • the outer peripheral surface of the driving rod group is provided with a plurality of protrusions along the axial direction, and the plurality of protrusions form a first Meshing teeth
  • the first stopper is provided with a tooth groove corresponding to the first meshing tooth
  • the tube wall of the tube body is provided with a chute along the axial direction
  • one end of the first stopper is provided with a push button
  • the push button is slidably disposed in the chute; wherein the first stopper has a first position and a second position to slide in the chute by pushing the push button Thereby, the first stopper is switched between the first position and the second position.
  • the tooth groove portion engages with the first meshing tooth so that the driving The rod group cannot rotate.
  • the tooth groove portion is disengaged from the first meshing teeth so that the driving rod group can rotate.
  • a drive shaft is detachably provided at the other end of the drive rod group, and a fourth annular wall is provided at one end of the drive shaft close to the piston, and the third The inner peripheral surface of the four-ring wall is provided with a plurality of second tooth grooves along the axial direction, and the outer peripheral surface of the other end of the driving rod group is provided with a plurality of first meshing teeth along the axial direction, and the first meshing teeth are connected with the The second tooth slot matches.
  • the driving rod group penetrates the second tube cavity through an end of the driving shaft away from the piston and is connected to the coil spring, and the The driving shaft is provided with a first connection groove, the inner wall of the accommodation space is provided with a second connection groove, one end of the coil spring is inserted into the first connection groove, and the other end of the coil spring is inserted into In the second connecting groove, the coil spring is arranged around the central axis of the drive shaft.
  • the power device further includes a second stopper, the second stopper is movably provided at the second end of the tube body to adjust the The second stopper moves to cooperate with the power storage turntable assembly to circumferentially position the power storage turntable assembly.
  • the power storage turntable assembly includes a gear plate, the outer peripheral surface of the gear plate is provided with a plurality of second meshing teeth along the axial direction, and the second stopper It includes stop teeth and a hand control part, the second meshing teeth match the stop teeth, the second stop part is movably disposed in the second lumen, and the hand control part Exposed from the inside of the second lumen; wherein, the second stopper has a first state and a second state to drive the stopper teeth to move by manually operating the hand control part to switch the The second stopper is in the first state and the second state.
  • the stop teeth mesh with the second meshing teeth so that the force-accumulating turntable assembly cannot rotate.
  • the stop teeth are disengaged from the second meshing teeth so that the force-accumulating turntable assembly can rotate.
  • the power storage turntable assembly further includes a rotating body, the rotating body is rotatably installed at the second end of the tube body, the rotating body is provided with a certain In the accommodation space, the gear plate is provided at an end of the rotating body away from the piston, and a manual rotation part is provided at an end of the gear plate away from the piston, and the manual rotation part moves from the second tube cavity Inside out.
  • the rotating body includes a runner ring and a mounting part, the accommodation space is formed in the runner ring, and the mounting part is detachably provided on the One side of the runner ring is used to cover the accommodation space.
  • the mounting part is provided with an insertion plate wall
  • the runner ring is provided with an insertion slot
  • the installation part and the runner ring are inserted through the insertion plate wall. disposed in the insertion slot for detachable connection.
  • the technical solution of the present invention provides a toothpaste tube, including: a tube body, the first end of the tube body has an output port, and the second end of the tube body has a driving port; a piston, the piston moves along the axially movably arranged in the tube body; a driving device, the driving device includes a driving rod group, the driving rod group is composed of a plurality of mutually nested and axially telescopic rod tubes, and the driving device One end of the rod group extends from the driving port into the tube body and is connected to the piston, so as to drive the piston to move axially in the tube body by extending or contracting the driving rod group; And a power device, the power device includes a drive motor, the drive motor is installed on the second end of the tube body, and the output shaft of the drive motor is drivingly connected with the other end of the drive rod group, so that all The driving motor drives the piston to move through the driving rod group.
  • the toothpaste tube of the present invention automatically extends through the driving motor to drive the driving rod group and pushes the piston to advance axially in the tube body, thereby automatically pushing the toothpaste in the tube body out from the output port to pass through
  • the piston pushing method can effectively reduce the toothpaste residue in the tube, and the automatic driving method is very convenient to use.
  • the driving rod group includes at least one driving rod and at least one driving tube, and the driving rod and the driving tube are telescopically connected to each other through a threaded connection.
  • the driving device further includes a guide structure disposed between the tube body and the piston to guide the piston through the guide structure Move within the tube.
  • the guide structure includes a protruding rib and a guide groove, the guide groove is slidably engaged with the protruding rib, and the tube body and the One of the pistons has a raised rib, the other of the tube body and the piston has a guide groove, and both the raised ribs and the guide groove extend along the axial direction of the tube body. .
  • the guide structure includes a first guide surface and a second guide surface, and the first guide surface matches the shape and size of the second guide surface.
  • the inner wall surface of the tube body has a first guide surface
  • the outer peripheral surface of the piston has a second guide surface, so that the first guide surface and the second guide surface cooperate with each other to guide the piston along the direction.
  • the tube body moves in the axial direction.
  • the driving rod set further includes a connecting barrel, and the connecting barrel and the driving rod or the connecting barrel and the driving tube are connected through a thread.
  • the connecting tube is driven and connected with the driving motor to drive the connecting tube to rotate.
  • the inner circumferential surface of the tube body is provided with a second stop ring
  • the outer circumferential surface of the connecting tube is provided with a fifth flange, and the fifth flange It is in contact with the second stop ring.
  • the tube body includes an inner tube and an outer tube that are detachably set with each other.
  • one end of the connecting barrel away from the piston has a first installation port
  • one end of the connecting barrel close to the piston extends radially inward to form a second annular wall.
  • the inner peripheral surface of the second annular wall is provided with internal threads
  • the outer peripheral surface of the drive tube is provided with external threads
  • the drive tube is threadedly connected to the second annular wall
  • the drive tube is away from the piston
  • a second flange is provided on the outer peripheral surface of one end, and the second flange is movably installed in the connecting barrel.
  • the diameter of the second flange is larger than the diameter of the second annular wall and smaller than the diameter of the second annular wall. The diameter of the installation port.
  • one end of the drive tube away from the piston has a second installation port, and one end of the drive tube close to the piston extends radially inward to form a third annular wall.
  • the inner peripheral surface of the third annular wall is provided with internal threads
  • the outer peripheral surface of the driving rod is provided with external threads
  • the driving rod is threadedly connected to the third annular wall
  • the driving rod is away from the piston
  • a third flange is provided on the outer peripheral surface of one end, the third flange is movably installed in the drive tube, the diameter of the third flange is larger than the diameter of the third annular wall and smaller than the second The diameter of the mounting port.
  • one of the driving rod and the piston is provided with a slot
  • the other of the driving rod and the piston is provided with a plug
  • the The driving rod and the piston are inserted into each other through the plug and the slot.
  • Figure 1 is a perspective view of a toothpaste tube according to an embodiment of the present application.
  • Figure 2 is a front view of a toothpaste tube according to an embodiment of the present application.
  • Figure 3 is a cross-sectional view of section A-A in Figure 2 provided by the embodiment of the present application;
  • Figure 4 is an exploded view of a toothpaste tube from one perspective according to an embodiment of the present application.
  • Figure 5 is an exploded view from another perspective of a toothpaste tube according to an embodiment of the present application.
  • Figure 6 is a schematic structural diagram of the driving device provided by the embodiment of the present application.
  • Figure 7 is an exploded structural view of the driving device provided by the embodiment of the present application.
  • Figure 8 is a perspective view of a toothpaste tube according to another embodiment of the present application.
  • Figure 9 is another perspective view of a toothpaste tube according to another embodiment of the present application.
  • Figure 10 is a front view of a toothpaste tube according to another embodiment of the present application.
  • Figure 11 is a cross-sectional view of section B-B in Figure 10 provided by the embodiment of the present application.
  • Figure 12 is a perspective view of the power device provided by the embodiment of the present application.
  • Figure 13 is another perspective view of the power device provided by the embodiment of the present application.
  • Figure 14 is an exploded view of the power device provided by the embodiment of the present application.
  • Figure 15 is an exploded view of the power device provided by the embodiment of the present application from another perspective.
  • the above-mentioned drawings include the following reference signs: 100. Pipe body; 110. Inner pipe; 111. Pipe head; 111a, output port; 112. Protruding ribs; 120. Outer pipe; 121. Installation hole; 122. Section Two stop rings; 123, first flange; 124, chute; 200, driving device; 210, sleeve assembly; 211, cylinder; 211a, first annular wall; 212, connecting ring; 212a, first stop Blocking ring; 220. Connecting barrel; 221. Second annular wall; 222. First meshing teeth; 223. First installation port; 224. Fourth flange; 230. Driving rod group; 231. Driving rod; 231a, 231a.
  • This embodiment provides a toothpaste tube, which includes a tube body 100, a piston 300, and a driving device 200.
  • the first end of the tube body 100 has an output port 111a
  • the second end of the tube body 100 has an output port 111a.
  • the end has a driving port
  • the piston 300 is movably arranged in the tube body 100 along the axial direction.
  • the driving device 200 includes a driving part and a driving rod group 230. The driving part is arranged at the second end of the pipe body 100.
  • the driving part and the driving rod group 230 230 driving connection, the driving rod group 230 is composed of a plurality of mutually set and axially telescopic rod pipe fittings, and one end of the driving rod group 230 extends from the driving port into the tube body 100 and is connected with the piston 300, so that the driving The driving rod group 230 is extended or contracted to drive the piston 300 to move in the axial direction within the tube body 100 .
  • the driving part includes a sleeve assembly 210.
  • the sleeve assembly 210 is rotatably mounted on the second end of the tube body 100.
  • the other end of the driving rod group 230 is connected to the sleeve assembly 210.
  • the driving device 200 also includes a guide structure.
  • the structure is arranged between the tube body 100 and the piston 300.
  • the guide structure guides the piston 300 to move within the tube body 100. , to push the toothpaste in the tube body 100 from the output port 111a for brushing.
  • the guide structure can also guide the piston 300 to rotate and lift in the tube body 100 through a threaded connection.
  • the driving rod group 230 includes at least one driving rod 231, at least one driving tube 232 and a connecting barrel 220.
  • the connecting barrel 220 is provided in the sleeve assembly 210, and the connecting barrel 220 is provided corresponding to the driving port.
  • the driving rod One end of 231 is connected to the piston 300.
  • the driving rod 231 and the driving tube 232 as well as the driving tube 232 and the connecting tube 220 are connected to each other through threaded connections.
  • the outer peripheral surface of the driving rod 231 is provided with external threads.
  • the driving tube The inner peripheral surface of the inner cavity of 232 is provided with internal threads, so that the driving tube 232 is sleeved on the driving rod 231 through a threaded connection.
  • the outer peripheral surface of the driving tube 232 is provided with external threads, and the inner peripheral surface of the inner cavity of the connecting barrel 220 An internal thread is provided so that the connecting sleeve 220 is sleeved on the driving pipe 232 through a threaded connection.
  • the sleeve assembly 210 can be held and the pipe body 100 is rotated, so that the pipe body 100 and the piston 300 rotate together.
  • the driving rod 231 and/or the driving tube 232 are driven to rotate and extend, so as to drive the piston 300 to advance axially in the tube body 100, thereby gradually pushing the toothpaste in the tube body 100 out from the output port 111a.
  • the driving rod 231, the driving tube 232 and the connecting barrel 220 realize multi-stage telescopic driving by adopting a threaded connection set.
  • the structural design is more lightweight and compact, effectively improving the stability and reliability of the structure.
  • the toothpaste tube of this embodiment is rotatably mounted on the tube body 100 through the sleeve assembly 210, and the sleeve assembly 210 has a connecting barrel 220.
  • the connecting barrel 220 is arranged corresponding to the driving port, and the driving rod group 230 One end is connected to the piston 300, and a guide structure is provided between the tube body 100 and the piston 300 to guide the piston 300 to move axially in the tube body 100 through the guide structure.
  • the sleeve assembly 210 can be held in hand and Rotating the tube body 100 causes the tube body 100 and the piston 300 to rotate together.
  • the driving rod 231 and/or the driving tube 232 are driven to rotate and extend relative to the connecting tube 220 to drive the piston 300 in the tube body. 100 along the axial direction, thereby gradually pushing the toothpaste in the tube body 100 out from the output port 111a.
  • the toothpaste residue in the tube body 100 can be effectively reduced, and multiple rods of the rod group 230 can be driven.
  • the pipe fittings adopt a threaded connection set to achieve multi-stage telescopic drive.
  • the structural design is lighter and more compact, making it easier to use the squeezed toothpaste.
  • the driving rod 231 shrinks in the inner cavity of the driving tube 232, and the driving tube 232 shrinks in the inner cavity of the connecting barrel 220, so as to reduce the overall size of the driving rod group 230 and the connecting barrel 220. length, thereby avoiding the small amount of toothpaste that can be filled in the packaging tube due to the overall length of the driving device 200 being too long.
  • the driving device 200 has a compact structure, tiny and novel design, small volume, and does not occupy too much limited space in the packaging tube, and, nowadays, when people choose toothpaste, they no longer choose it simply because of their needs, but more because of their personality or preference.
  • the multi-level pushing mechanism of this product has a novel and interesting design, reasonable structure and unique shape, which helps teenagers Children develop good hands-on habits, which can exercise the flexibility of their fingers, which is conducive to the development of children's intelligence and hands-on ability. They can also accurately control the amount of toothpaste used to avoid waste.
  • the guide structure includes a raised rib 112 and a guide groove 330.
  • the guide groove 330 is slidably fitted on the raised rib 112.
  • One of the tube body 100 and the piston 300 has a raised rib. 112.
  • the other one of the tube body 100 and the piston 300 has a guide groove 330, and the protruding ribs 112 and the guide groove 330 both extend along the axial direction of the tube body 100. In this way, under the guidance of the guide structure, It can not only prevent the tube body 100 and the piston 300 from rotating relative to each other, but also guide the piston 300 to axially push the toothpaste out of the output port 111a in the tube body 100 when the drive rod 231 and/or the drive tube 232 rotate and extend. Use for toothbrushing.
  • the guide structure includes a first guide surface and a second guide surface.
  • the shapes and sizes of the first guide surface and the second guide surface are adapted to each other.
  • the inner wall surface of the pipe body 100 has a first guide surface.
  • Guide surface, the outer peripheral surface of the piston 300 has a second guide surface to guide the piston 300 to move along the axial direction of the tube body 100 through the first guide surface and the second guide surface.
  • the first guide surface Both the guide surface and the second guide surface are in the shape of a polygonal prism surrounded by multiple planes, such as a hexagonal prism, so that the cross-sectional shapes of the piston 300 and the inner cavity of the tube body 100 are both hexagonal.
  • the first guide surface and the second guide surface can also adopt other shapes, as long as under the guidance of the guide structure, the tube body 100 and the piston 300 can not rotate relative to each other, and can also prevent the relative rotation of the driving rod.
  • the piston 300 can be guided to axially push the toothpaste out of the output port 111a in the tube body 100 for toothbrushing.
  • the barrel opening of the sleeve assembly 210 and the driving opening of the tube body 100 are fitted with each other.
  • the outer peripheral surface of the tube body 100 is provided with a first flange 123.
  • the barrel opening of the sleeve assembly 210 extends radially inward to form a first flange 123.
  • a stop ring 212a The first stop ring 212a abuts the first flange 123.
  • the tube body 100 and the first flange 123 can be made of plastic material into an integrated structure.
  • the sleeve assembly 210 and the first stop The ring 212a can be made of plastic material to form an integrated structure.
  • the sleeve assembly 210 includes a barrel 211 and a connecting ring 212.
  • the barrel mouth of the barrel 211 and the driving port of the tube 100 are fitted to each other.
  • the barrel mouth of the barrel 211 is detachably connected to the connecting ring 212.
  • the connecting ring 212 is fitted On the pipe body 100, a first flange 123 is provided on the outer peripheral surface of the pipe body 100.
  • One end of the connecting ring 212 away from the cylinder 211 extends radially inward to form a first stop ring 212a.
  • the first stop ring 212a is connected to the first stop ring 212a.
  • a flange 123 is in contact with each other.
  • the connecting ring 212 can be first placed on the tube body 100 from the first end of the tube body 100, and then the barrel 211 can be placed on the second end of the tube body 100, and then The barrel 211 and the connecting ring 212 are connected correspondingly. Under the axial positioning effect of the first stop ring 212a and the first flange 123, the sleeve assembly 210 is prevented from being separated from the pipe body 100.
  • the mouth of the barrel 211 and the connecting ring 212 are detachably connected through a snap connection or a threaded connection.
  • the driving device 200 can be disassembled from the pipe body 100 and assembled on another new pipe body 100 for use.
  • One driving device 200 can be reused with multiple pipe bodies 100, which can save costs. Component material cost, environmental protection and practicality.
  • the sleeve assembly 210 is provided with a first annular wall 211a, and the first annular wall 211a and the connecting barrel 220 are detachably connected through a snap connection or a threaded connection, thereby facilitating assembly.
  • the difficulty of processing technology and production cost are reduced.
  • the sleeve assembly 210 is provided with a first annular wall 211a, the inner peripheral surface of the first annular wall 211a is provided with a plurality of first tooth grooves along the axial direction, and the connecting barrel 220 faces the first
  • the outer peripheral surface of one end of the annular wall 211a is provided with a plurality of first meshing teeth 222 along the axial direction.
  • the first meshing teeth 222 match the first tooth grooves
  • the inner peripheral surface of the tube body 100 is provided with a second stop ring 122
  • the outer peripheral surface of the connecting tube 220 is provided with a fourth flange 224
  • the second stop ring 122 is in contact with the fourth flange 224.
  • the first meshing teeth 222 of the connecting tube 220 are aligned in the axial direction. It is inserted into the first tooth groove of the first annular wall 211a to achieve circumferential positioning of the connecting tube 220, which not only facilitates assembly, but also prevents the connecting tube 220 and the sleeve assembly 210 from rotating relative to each other.
  • the tube body 100 includes an inner tube 110 and an outer tube 120.
  • the outer tube 120 is set outside the inner tube 110.
  • the first end of the outer tube 120 is provided with a mounting hole 121.
  • the first end of the inner tube 110 is provided with a tube.
  • the inner cavity of the tube head 111 penetrates along the axial direction to form the output port 111a.
  • the shape of the tube head 111 matches the mounting hole 121, and is preferably hexagonal to achieve circumferential positioning. In this way, the outer tube 120 When being fitted on the inner tube 110, the tube head 111 passes through the mounting hole 121 so that the inner tube 110 and the outer tube 120 cannot rotate relative to each other.
  • the piston 300 is provided with a guide rod 320 along the axial direction at one end close to the tube head 111.
  • the guide rod 320 matches the output port 111a of the tube head 111, so that the guide rod 320 can squeeze out the toothpaste in the output port 111a of the tube head 111.
  • the inner tube 110, the outer tube 120 and the sleeve assembly 210 are all cylindrical, so that the tube body 100 and the sleeve assembly 210 can rotate relative to each other.
  • the outer peripheral surface of the outer tube 120 forms a first flange 123, and the inner tube forms a first flange 123.
  • the axial length of the inner tube 110 is shorter than the axial length of the outer tube 120 , so that the second end of the inner tube 110 forms a second stop ring 122 in the tube body 100 to connect the plurality of first meshing teeth 222 of the barrel 220
  • the fourth flange 224 protrudes from the outer peripheral surface of the connecting barrel 220 .
  • the second stop ring 122 and the fourth flange 224 resist to axially position the connecting barrel 220 .
  • the end of the connecting barrel 220 close to the piston 300 is cylindrical. It is cylindrical, and the end of the connecting tube 220 at least partially extends into the driving port of the inner tube 110 , and the connecting tube 220 and the inner tube 110 can rotate relative to each other.
  • the end of the connecting barrel 220 away from the piston 300 has a first installation port 223.
  • the end of the connecting barrel 220 close to the piston 300 extends radially inward to form a second annular wall 221.
  • the inner peripheral surface of the second annular wall 221 Internal threads are provided, and external threads are provided on the outer peripheral surface of the driving tube 232.
  • the driving tube 232 is threadedly connected to the second annular wall 221.
  • the outer peripheral surface of one end of the driving tube 232 away from the piston 300 is provided with a second flange 232b.
  • the second flange 232b is movably installed in the connecting tube 220.
  • the diameter of the second flange 232b is larger than the diameter of the second annular wall 221 and smaller than the diameter of the first installation port 223.
  • the second flange 232b offsets the second annular wall 221.
  • the cross-sectional shapes of the second flange 232b and the inner cavity of the connecting barrel 220 are both circular, so that the driving tube 232 and the connecting barrel 220 Ability to rotate relative to each other.
  • the end of the driving tube 232 away from the piston 300 has a second installation opening 232c.
  • the end of the driving tube 232 close to the piston 300 extends radially inward to form a third annular wall 232a.
  • the inner peripheral surface of the third annular wall 232a Internal threads are provided, and external threads are provided on the outer peripheral surface of the driving rod 231.
  • the driving rod 231 is threadedly connected to the third annular wall 232a.
  • the outer peripheral surface of one end of the driving rod 231 away from the piston 300 is provided with a third flange 231a.
  • the third flange 231a is movably installed in the drive tube 232, and the diameter of the third flange 231a is greater than the diameter of the third annular wall 232a and smaller than the diameter of the second installation opening 232c, wherein the inner cavity of the third flange 231a and the drive tube 232
  • the cross-sectional shapes are all circular, so that the driving tube 232 and the driving rod 231 can rotate relative to each other, and a cover can be provided at the second installation opening 232c of the driving tube 232, which is connected to the third flange 231a through the third flange 231a.
  • the three-ring wall 232a is against the cover to prevent the driving rod 231 from being detached from the inner cavity of the driving tube 232 during expansion and contraction.
  • one of the driving rod 231 and the piston 300 is provided with a slot 310
  • the other of the driving rod 231 and the piston 300 is provided with a plug 231b.
  • the driving rod 231 and the piston 300 are matched with the slot 310 through the plug 231b.
  • the shapes of the plug 231b and the slot 310 are both hexagonal, so that the driving rod 231 and the piston 300 cannot rotate relative to each other.
  • the inner tube 110 of the tube body 100 is filled with toothpaste.
  • the tube body 100 and the piston 300 rotate together.
  • the driving rod 231 and/or the driving tube 232 are driven to rotate and extend to drive the piston 300 to advance along the axial direction in the tube body 100, thereby gradually pushing the toothpaste in the tube body 100 out from the output port 111a for tooth cleaning.
  • the toothpaste in the tube 110 is used up, rotate the tube body 100 in reverse direction. Under the action of the rotation force, the driving rod 231 and the driving tube 232 rotate and shrink.
  • the sleeve assembly is 210 and the tube body 100 can be disassembled and separated, and then another new tube body 100 containing toothpaste can be replaced, and the above actions can be repeated for use again.
  • One driving device 200 can be used with multiple tube bodies 100 for repeated use, which can save the cost of parts and materials. , environmentally friendly and practical.
  • the toothpaste residue in the tube body 100 can be effectively reduced, and the driving rod 231, the driving tube 232 and the connecting barrel 220 realize a multi-stage telescopic drive by using a threaded connection set.
  • the structure The design is lighter and more compact, making it easier to squeeze out toothpaste and use it.
  • This embodiment provides a toothpaste tube, which includes a tube body 100, a piston 300, a guide structure, a driving device 200 and a power device 400.
  • the first end of the tube body 100 has an output port 111a.
  • the second end of the tube body 100 has a driving port;
  • the piston 300 is movably arranged in the tube body 100;
  • a guide structure is arranged between the tube body 100 and the piston 300 to guide the piston 300 along the axial direction of the tube body 100 through the guide structure To move;
  • the driving device 200 includes a driving rod group 230.
  • the driving rod group 230 is composed of a plurality of mutually nested and axially telescopic rod tubes.
  • the driving rod group 230 includes at least one driving rod 231, at least one driving tube 232 and a connection. Cylinder 220, one end of the driving rod group 230 extends from the driving port into the tube body 100 and is connected to the piston 300.
  • the connecting cylinder 220 is rotatably installed at the driving port of the tube body 100, between the driving rod 231 and the driving tube 232 and The driving tube 232 and the connecting barrel 220 are connected to each other through threaded connections;
  • the power device 400 includes an end cover assembly 410 and a rotating assembly.
  • the end cover assembly 410 is connected to the tube body 100, and the rotating assembly is rotatably installed on the end cover assembly 410.
  • the output end of the rotating assembly is drivingly connected to the connecting barrel 220, and the input end of the rotating assembly is exposed from the inside of the end cover assembly 410, allowing the user to manually drive the input end of the rotating assembly to provide power for the rotation of the connecting barrel 220.
  • the rotating assembly drives the connecting tube 220 to rotate, under the action of the thread rotation force, the driving rod 231 or the driving tube 232 is driven to elongate relative to the connecting tube 220, The piston 300 is driven to advance along the axial direction in the tube body 100, thereby gradually pushing the toothpaste in the tube body 100 out from the output port 111a.
  • the pushing mode of the piston 300 By setting the pushing mode of the piston 300, the toothpaste residue in the tube body 100 can be effectively reduced, and the drive
  • the rod assembly 230 and the connecting tube 220 adopt a threaded connection set to achieve multi-stage telescopic drive, and the structural design is more lightweight and compact, making it easier to use the extruded toothpaste.
  • the power device 400 can also be automatically driven to squeeze toothpaste.
  • the power device 400 includes a housing, a driving motor, a circuit board and a power supply.
  • the housing is connected to the tube body 100, and the driving motor is installed.
  • the circuit board and the power supply are electrically connected to the driving motor respectively.
  • the circuit board is used to control the operation of the driving motor.
  • the power supply is used to supply power to the driving motor.
  • the output shaft of the driving motor is drivingly connected to the connecting barrel 220, thereby driving the connecting barrel 220. Make a rotation. In this way, the driving motor can be started by the switch to drive the connecting barrel 220 to automatically rotate.
  • the driving rod group 230 is driven to extend relative to the connecting barrel 220 to drive the piston 300 along the axis in the tube body 100 .
  • the toothpaste in the tube body 100 is automatically pushed out from the output port 111a to achieve the purpose of automatically squeezing the toothpaste, which is very convenient to use.
  • the outer peripheral surface of the driving rod 231 is provided with external threads
  • the inner peripheral surface of the inner cavity of the driving tube 232 is provided with internal threads, so that the driving tube 232 is sleeved on the driving rod 231 through a threaded connection.
  • the outer peripheral surface of 232 is provided with external threads
  • the inner peripheral surface of the inner cavity of the connecting barrel 220 is provided with internal threads, so that the connecting barrel 220 is sleeved on the driving tube 232 through a threaded connection. In this way, the connecting barrel 220 can be rotated.
  • the driving rod 231 and/or the driving tube 232 are driven to elongate, so as to drive the piston 300 to advance in the axial direction in the tube body 100, thereby gradually pushing the toothpaste in the tube body 100 from the output port 111a.
  • the driving rod 231, the driving tube 232 and the connecting barrel 220 realize multi-stage telescopic driving through the use of threaded connection sets.
  • the structural design is more lightweight and compact, effectively improving the stability and reliability of the structure.
  • the driving rod 231 shrinks in the inner cavity of the driving tube 232, and the driving tube 232 shrinks in the inner cavity of the connecting barrel 220, so as to reduce the overall size of the driving rod group 230 and the connecting barrel 220. length, so as to avoid the small amount of toothpaste that can be filled in the packaging tube due to the overall length of the driving device 200 being too long.
  • the driving device 200 has a compact structure, extraordinar and novel design, small size, and does not occupy too much limited space in the packaging tube.
  • the end cap assembly 410 includes a cover body 411.
  • the inner cavity of the cover body 411 is axially divided into a first tube cavity 411a and a second tube cavity 411b through a partition 431c.
  • the first tube cavity 411a and the tube body 100 connection, the partition 431c has a perforation 431b, and the connecting barrel 220 is provided with a drive shaft 440 at one end away from the piston 300.
  • the drive shaft 440 is inserted into the second tube cavity 411b through the perforation 431b; the rotating assembly includes a power accumulating turntable assembly 420 and a reel.
  • the power-accumulating turntable assembly 420 is rotatably installed in the second tube cavity 411b, the power-accumulating turntable assembly 420 is provided with an accommodating space 431a at one end facing the drive shaft 440, and the coil spring is provided in the accommodating space 431a inside, and one end of the coil spring is connected to the drive shaft 440, the other end of the coil spring is connected to the inner wall of the accommodation space 431a, and the end of the power storage turntable assembly 420 away from the drive shaft 440 is at least partially exposed from the second tube cavity 411b. , so as to manually rotate the power storage turntable assembly 420 to drive the coil spring to wind up and store the elastic torsion, thereby providing power for the rotation of the connecting barrel 220 .
  • the first tube cavity 411a and the tube body 100 can be detachably connected using a threaded connection or a snap connection.
  • the driving device 200 and the power device can be connected. 400 is disassembled from the pipe body 100 and assembled on another new pipe body 100 for use.
  • One driving device 200 can be used with multiple pipe bodies 100 for repeated use, which can save parts and material costs, is environmentally friendly and practical.
  • the power device 400 further includes a first stopper 450 that is movably provided on the tube body 100 to adjust the movement of the first stopper 450 to cooperate with the drive rod group 230 to control the driving.
  • the rod assembly 230 is positioned circumferentially. Specifically, one end of the first stopper 450 is exposed from the inside of the tube body 100, and the other end of the first stopper 450 is provided with at least one protrusion or depression.
  • the connecting tube 220 is positioned along the circumference. A plurality of recesses or protrusions are provided in the direction, so that the recesses or protrusions of the connecting barrel 220 match the first stopper 450 to circumferentially position the connecting barrel 220 to limit the rotation of the connecting barrel 220 and accumulate force during manual rotation.
  • the first stopper 450 needs to be adjusted to block the connecting barrel 220 for circumferential positioning, thereby preventing the connecting barrel 220 from rotating together with the coil spring when the power-accumulating turntable assembly 420 is manually rotated. As a result, the coil spring cannot be rolled up to store elastic torque.
  • the outer peripheral surface of the connecting barrel 220 is provided with a plurality of protrusions along the axial direction.
  • the plurality of protrusions form first meshing teeth 222 on the outer periphery of the connecting barrel 220 .
  • the first stopper 450 is provided corresponding to the first meshing teeth 222 .
  • One end of the first stopper 450 is provided with a push button 451, and the push button 451 is slidably disposed in the chute 124; wherein,
  • the first stopper 450 has a first position and a second position.
  • the push button 451 is pushed to slide in the slide groove 124 to switch the first stopper 450 between the first position and the second position.
  • the first stopper 450 has a first position and a second position. When 450 is in the first position, the tooth groove portion 452 meshes with the first meshing teeth 222 so that the connecting tube 220 cannot rotate. When the first stopper 450 is in the second position, the tooth groove portion 452 is disengaged from the first meshing teeth.
  • stop plates 453 are provided on both sides of the push button 451 of the first stop member 450, and the push button 451 is slidably disposed in the chute 124 and passes through the stop plate 453 is positioned against the groove wall of the chute 124.
  • the tooth groove portion 452 is separated from the first meshing teeth 222, and the tooth groove of the first stopper 450
  • the end of the part 452 slides to the smooth circumferential surface of the connecting tube 220, and the end shape of the tooth groove part 452 of the first stopper 450 is an arc surface, which basically does not affect the rotation of the connecting tube 220.
  • the circumferential direction of the connecting tube 220 The positioning is unlocked and the connecting barrel 220 can rotate.
  • the connecting tube 220 cannot rotate.
  • the power storage turntable assembly 420 can be manually rotated to drive the coil spring to rewind to store the elastic torque.
  • the push button 451 is pushed by hand, the first When the stopper 450 is in the second position, the connecting tube 220 can rotate, and the coil spring releases the elastic torsion and drives the connecting tube 220 to rotate through the driving shaft 440. Under the action of the thread rotation force, the driving rod 231 and/or the driving force is driven.
  • the tube 232 is elongated to drive the piston 300 to advance along the axial direction in the tube body 100, thereby gradually pushing the toothpaste in the tube body 100 out from the output port 111a, thereby realizing semi-automatic driving to squeeze the toothpaste, which is very convenient to use.
  • the driving shaft 440 is provided with a fourth annular wall 441 at one end facing the connecting barrel 220 , and a plurality of second tooth grooves 441 a are provided on the inner peripheral surface of the fourth annular wall 441 along the axial direction.
  • the connecting barrel 220 is located at an end away from the piston 300
  • a plurality of first meshing teeth 222 are provided along the axial direction on the outer peripheral surface.
  • the first meshing teeth 222 match the second gear slot 441a.
  • the connecting barrel 220 and the drive shaft 440 are connected to each other through the first meshing teeth 222 and the second gear slot 441a.
  • the two ends of the driving shaft 440 are respectively offset against the connecting tube 220 and the partition 431c for axial positioning.
  • the length of the first meshing tooth 222 along the axial direction of the connecting tube 220 is greater than the axial length of the second tooth groove 441a along the fourth annular wall 441, so that one end of the first meshing tooth 222 can be used to communicate with the second tooth groove 441a.
  • the other end of the first meshing tooth 222 can be used for meshing connection with the tooth groove portion 452 of the first stopper 450 .
  • the power device 400 further includes a second stopper 460, which is movably provided at the second end of the tube body 100, so that the second stopper 460 can be moved to the position of the accumulator by adjusting the second stopper 460.
  • the force turntable assembly 420 cooperates to circumferentially position the power accumulation turntable assembly 420.
  • the power accumulation turntable assembly 420 includes a rotating body 430 and a gear plate 433.
  • the rotating body 430 is rotatably installed in the second tube cavity 411b.
  • the rotating body 430 An accommodation space 431a is provided at one end toward the drive shaft 440.
  • a gear plate 433 is provided at an end of the rotating body 430 away from the drive shaft 440.
  • a manual rotation part 434 is provided at an end of the gear plate 433 away from the drive shaft 440.
  • the manual rotation part 434 is connected from the first
  • the second tube cavity 411b is exposed outward.
  • the second stopper 460 includes stop teeth 462 and a manual control part 461.
  • the outer peripheral surface of the gear plate 433 is provided with a plurality of second meshing teeth along the axial direction.
  • the second meshing teeth and the stopper are The teeth 462 match, the second stopper 460 is movably disposed in the second lumen 411b, and the hand control part 461 is exposed from the second lumen 411b; wherein, the second stopper 460 has a first state and the second state, so as to drive the stopper teeth 462 to move by manually operating the hand control part 461 to switch the second stopper 460 between the first state and the second state.
  • the stopper 460 is stopped.
  • the moving teeth 462 mesh with the second meshing teeth so that the gear plate 433 cannot rotate.
  • the stopper teeth 462 are disengaged from the second meshing teeth so that the gear plate 433 can rotate.
  • the connecting tube 220 and the driving shaft 440 cannot rotate, and the second stopper 460 is adjusted to the second state.
  • the stop teeth 462 are disengaged from the second position.
  • the meshing teeth, the gear plate 433 and the rotating body 430 can rotate, and the gear plate 433 and the rotating body 430 can be rotated in the second cavity 411b by manually rotating the gear plate 433 and the rotating body 430. Since one end of the coil spring is connected to the drive shaft 440, the other end of the coil spring It is connected to the inner wall of the rotating body 430, thereby driving the coil spring to rewind to store elastic torsion.
  • the second stopper 460 is adjusted to the first state.
  • the stop teeth 462 and the second stopper 460 are The two meshing teeth engage with each other for circumferential positioning, and the gear plate 433 and the rotating body 430 cannot rotate, so that the elastic torsion obtained by the winding of the coil spring can be stored.
  • you need to squeeze toothpaste to wash your teeth push the push button 451 by hand to make the first
  • the stopper 450 slides to the second position.
  • the connecting barrel 220 can rotate.
  • the coil spring can release the elastic torsion and drive the connecting barrel 220 to rotate through the driving shaft 440.
  • the driving rod 231 and /Or the drive tube 232 is extended to drive the piston 300 to advance along the axial direction in the tube body 100, thereby gradually pushing the toothpaste in the tube body 100 out from the output port 111a to realize semi-automatic driving to squeeze the toothpaste, which is very convenient to use. convenient.
  • the rotating body 430 includes a runner ring 431 and a mounting part 432.
  • the runner ring 431 is rotatably installed in the second tube cavity 411b.
  • An accommodation space 431a is formed in the runner ring 431.
  • the gear plate 433 It is fixed on one end of the mounting part 432, and the other end of the mounting part 432 is provided with a plug-in plate wall.
  • the runner ring 431 is provided with an insertion slot 431d at one end facing the gear plate 433.
  • the insertion slot 431d matches the plug-in plate wall, wherein the partition plate 431c is integrally formed with the runner ring 431, and the cross-sectional shape of the insertion groove 431d and the insert plate wall is polygonal to play a role in circumferential positioning, so that the runner ring 431 and the mounting part 432 cannot rotate relative to each other.
  • the driving shaft 440 is provided with a first connecting groove 442, and the inner wall of the runner ring 431 is provided with a second connecting groove 431e.
  • the coil spring is arranged around the central axis of the driving shaft 440, and one end of the coil spring is inserted into the first connecting groove 442. In the connecting groove 442, the other end of the coil spring is inserted into the second connecting groove 431e.
  • the end cap assembly 410 also includes a ring cover plate 412, which is detachably installed at the mouth of the second lumen 411b.
  • the ring cover plate 412 has a through hole 412a, and the manual rotating part 434 moves outward through the through hole 412a.
  • the ring cover plate 412 and the second lumen 411b can be detachably connected using a threaded connection or a snap connection, wherein the ring cover plate 412 is provided with a strip groove 412b, and the second stopper 460 is slidably disposed in the strip groove 412b, and the strip groove 412b extends along the radial direction of the gear plate 433 to guide the second stopper 460 to slide in the strip groove 412b along the radial direction of the gear plate 433, and
  • the stop teeth 462 of the second stopper 460 are located in the second lumen 411b, and the hand control portion 461 of the second stopper 460 is exposed from the second lumen 411b through the strip groove 412b to facilitate the user's manual operation.
  • the second stop 460 is pushed to circumferentially position the gear plate 433.
  • the guide structure includes a raised rib 112 and a guide groove 330.
  • the guide groove 330 is slidably fitted on the raised rib 112.
  • One of the tube body 100 and the piston 300 has a raised rib. 112.
  • the other one of the tube body 100 and the piston 300 has a guide groove 330, and the protruding ribs 112 and the guide groove 330 both extend along the axial direction of the tube body 100. In this way, under the guidance of the guide structure, It not only prevents the tube body 100 and the piston 300 from rotating relative to each other, but also guides the piston 300 to axially push the toothpaste out of the output port 111a in the tube body 100 when the drive rod 231 and/or the drive tube 232 is extended. Use for cleaning teeth.
  • the guide structure includes a first guide surface and a second guide surface.
  • the shapes and sizes of the first guide surface and the second guide surface are adapted to each other.
  • the inner wall surface of the pipe body 100 has a first guide surface.
  • Guide surface, the outer peripheral surface of the piston 300 has a second guide surface to guide the piston 300 to move along the axial direction of the tube body 100 through the first guide surface and the second guide surface.
  • the first guide surface Both the guide surface and the second guide surface are in the shape of a polygonal prism surrounded by multiple planes, such as a hexagonal prism, so that the cross-sectional shapes of the piston 300 and the inner cavity of the tube body 100 are both hexagonal.
  • first guide surface and the second guide surface can also adopt other shapes, as long as under the guidance of the guide structure, the tube body 100 and the piston 300 can not rotate relative to each other, and can also prevent the relative rotation of the driving rod.
  • the piston 300 can be guided to axially push the toothpaste out of the output port 111a in the tube body 100 for toothbrushing.
  • the inner peripheral surface of the tube body 100 is provided with a second stop ring 122, and the outer peripheral surface of one end of the connecting tube 220 close to the piston 300 is provided with a fourth flange 224.
  • the fourth flange 224 is connected with the second stop ring 122.
  • the blocking ring 122 abuts to axially position the connecting barrel 220 .
  • the tube body 100 includes an inner tube 110 and an outer tube 120.
  • the outer tube 120 is set outside the inner tube 110.
  • the first end of the outer tube 120 is provided with a mounting hole 121.
  • the first end of the inner tube 110 is provided with a tube.
  • the inner cavity of the tube head 111 penetrates along the axial direction to form the output port 111a.
  • the shape of the tube head 111 matches the mounting hole 121, and is preferably hexagonal to achieve circumferential positioning. In this way, the outer tube 120 When being fitted on the inner tube 110, the tube head 111 passes through the mounting hole 121 so that the inner tube 110 and the outer tube 120 cannot rotate relative to each other.
  • the piston 300 is provided with a guide rod 320 along the axial direction at one end close to the tube head 111.
  • the guide rod 320 matches the output port 111a of the tube head 111, so that the guide rod 320 can squeeze out the toothpaste in the output port 111a of the tube head 111.
  • the inner tube 110, the outer tube 120 and the sleeve assembly 210 are all cylindrical, so that the tube body 100 and the sleeve assembly 210 can rotate relative to each other.
  • the outer peripheral surface of the outer tube 120 forms a first flange 123, and the inner tube forms a first flange 123.
  • the axial length of the inner tube 110 is shorter than the axial length of the outer tube 120, so that the second end of the inner tube 110 forms a second stop ring 122 in the tube body 100.
  • the edges 224 are against each other to axially position the connecting tube 220.
  • the end of the connecting tube 220 close to the piston 300 is cylindrical, and the end of the connecting tube 220 at least partially extends into the driving port of the inner tube 110.
  • the connecting tube 220 and The inner tubes 110 can rotate relative to each other.
  • the end of the connecting barrel 220 away from the piston 300 has a first installation port 223.
  • the end of the connecting barrel 220 close to the piston 300 extends radially inward to form a second annular wall 221.
  • the inner peripheral surface of the second annular wall 221 Internal threads are provided, and external threads are provided on the outer peripheral surface of the driving tube 232.
  • the driving tube 232 is threadedly connected to the second annular wall 221.
  • the outer peripheral surface of one end of the driving tube 232 away from the piston 300 is provided with a second flange 232b.
  • the second flange 232b is movably installed in the connecting tube 220.
  • the diameter of the second flange 232b is larger than the diameter of the second annular wall 221 and smaller than the diameter of the first installation port 223.
  • the second flange 232b offsets the second annular wall 221.
  • the cross-sectional shapes of the second flange 232b and the inner cavity of the connecting barrel 220 are both circular, so that the driving tube 232 and the connecting barrel 220 Ability to rotate relative to each other.
  • the end of the driving tube 232 away from the piston 300 has a second installation opening 232c.
  • the end of the driving tube 232 close to the piston 300 extends radially inward to form a third annular wall 232a.
  • the inner peripheral surface of the third annular wall 232a Internal threads are provided, and external threads are provided on the outer peripheral surface of the driving rod 231.
  • the driving rod 231 is threadedly connected to the third annular wall 232a.
  • the outer peripheral surface of one end of the driving rod 231 away from the piston 300 is provided with a third flange 231a.
  • the third flange 231a is movably installed in the drive tube 232, and the diameter of the third flange 231a is greater than the diameter of the third annular wall 232a and smaller than the diameter of the second installation opening 232c, wherein the inner cavity of the third flange 231a and the drive tube 232
  • the cross-sectional shapes are all circular, so that the driving tube 232 and the driving rod 231 can rotate relative to each other, and a cover can be provided at the second installation opening 232c of the driving tube 232, which is connected to the third flange 231a through the third flange 231a.
  • the three-ring wall 232a is against the cover to prevent the driving rod 231 from being detached from the inner cavity of the driving tube 232 during expansion and contraction.
  • one of the driving rod 231 and the piston 300 is provided with a slot 310
  • the other of the driving rod 231 and the piston 300 is provided with a plug 231b.
  • the driving rod 231 and the piston 300 are matched with the slot 310 through the plug 231b.
  • the shapes of the plug 231b and the slot 310 are both hexagonal, so that the driving rod 231 and the piston 300 cannot rotate relative to each other.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Tubes (AREA)

Abstract

本发明公开一种牙膏管,包括管体、活塞和驱动装置,管体的第一端具有输出口,管体的第二端具有驱动口,活塞沿轴向可移动地设置于管体内,驱动装置包括驱动部和驱动杆组,驱动部设置于管体的第二端,驱动部与驱动杆组驱动连接,驱动杆组由多个相互套装且沿轴向可伸缩的杆管件组成,且驱动杆组的一端从驱动口伸入到管体内并与活塞连接,以使驱动部通过驱动杆组伸长或收缩从而驱动活塞在管体内沿轴向进行移动,以通过设置活塞推动方式,可有效减少管体内的牙膏残留,并且采用多级伸缩驱动,结构设计更加轻巧紧凑,便于挤出牙膏使用。

Description

一种牙膏管 技术领域
本发明涉及日化用品技术领域,尤其涉及一种牙膏管。
背景技术
众所周知,牙膏管是用来储存牙膏流体产品的包装管,牙膏是我们日常生活中必不可少的牙齿保洁用品,牙膏一般是存放在牙膏管内,质量良好的牙膏管,应能自然地挤出比较细腻光滑的膏体,并为正常的圆条状。 现有的牙膏管一般为软质包装壳体,用户在使用时,通过外力挤压牙膏管的管壁,使得牙膏管发生形变,进而使得其内部的牙膏从输出口处流出,但是其在使用时,不能对牙膏管内部的牙膏进行清刮,使得牙膏管的内壁容易残留大量牙膏,造成牙膏的浪费,并且在挤牙膏的使用过程中较为不便。 因此,有必要提供一种新的牙膏包装管以解决上述技术问题。 
技术解决方案
本发明的目的在于提供一种牙膏管,旨在解决现有技术中包装管的内壁残留大量牙膏造成浪费的技术问题。
为了实现上述目的,第一方面,本发明的技术方案提供一种牙膏管,包括: 管体,所述管体的第一端具有输出口,所述管体的第二端具有驱动口; 活塞,所述活塞沿轴向可移动地设置于所述管体内;以及 驱动装置,所述驱动装置包括驱动部和驱动杆组,所述驱动部设置于所述管体的第二端,所述驱动部与所述驱动杆组驱动连接,所述驱动杆组由多个相互套装且沿轴向可伸缩的杆管件组成,且,所述驱动杆组的一端从所述驱动口伸入到所述管体内并与所述活塞连接,以使所述驱动部通过所述驱动杆组伸长或收缩从而驱动所述活塞在所述管体内沿轴向进行移动。 
从上述技术方案可以看出,本发明的牙膏管,在管体的驱动口设置有驱动装置,驱动装置包括驱动部和驱动杆组,驱动部设置于管体的第二端,驱动部与驱动杆组驱动连接,驱动杆组由多个相互套装且沿轴向可伸缩的杆管件组成,且,驱动杆组的一端从驱动口伸入到管体内并与活塞连接,以使驱动部通过驱动杆组伸长或收缩从而驱动活塞在管体内沿轴向进行移动,如此,便可以通过驱动部驱动驱动杆组伸长并推动活塞在管体内沿轴向推进,从而将管体内的牙膏从输出口逐渐推出来,以通过设置活塞推动的方式,可有效减少管体内的牙膏残留。
 根据第一方面,在一种可能的实现方式中,所述驱动杆组包括至少一个驱动杆和至少一个驱动管,所述驱动杆与所述驱动管沿轴向可伸缩的相互套装。 
根据第一方面,在一种可能的实现方式中,所述驱动杆组包括至少一个驱动杆和至少一个驱动管,所述驱动杆与所述驱动管通过螺纹连接方式相互可伸缩的套装。
 根据第一方面,在一种可能的实现方式中,所述驱动装置还包括导向结构,所述导向结构设置于所述管体与所述活塞之间,以使所述导向结构通过螺纹连接方式引导所述活塞在所述管体内进行旋转升降运动。
 根据第一方面,在一种可能的实现方式中,所述驱动装置还包括导向结构,所述导向结构设置于所述管体与所述活塞之间,以通过所述导向结构引导所述活塞在所述管体内进行移动。
 根据第一方面,在一种可能的实现方式中,所述驱动部包括套筒组件,所述套筒组件可转动地套装于所述管体的第二端,所述驱动杆组的另一端与所述套筒组件连接。
根据第一方面,在一种可能的实现方式中,所述驱动杆组还包括连接筒,所述连接筒设置于所述套筒组件内,且所述连接筒与所述驱动口对应设置,所述连接筒与所述驱动杆之间或者所述连接筒与所述驱动管之间通过螺纹连接方式相互可伸缩的套装。 
根据第一方面,在一种可能的实现方式中,所述管体包括可拆卸地相互套装的内管和外管。 
根据第一方面,在一种可能的实现方式中,所述导向结构包括凸起筋和导向槽,所述导向槽可滑动地嵌合于所述凸起筋上,所述管体与所述活塞两者之一具有凸起筋,所述管体与所述活塞两者之另一具有导向槽,且所述凸起筋与所述导向槽均沿所述管体的轴向进行延伸设置。 根据第一方面,在一种可能的实现方式中,所述导向结构包括第一导向面和第二导向面,所述第一导向面与所述第二导向面的形状及尺寸大小相适配,所述管体的内壁表面具有第一导向面,所述活塞的外周表面具有第二导向面,以通过所述第一导向面和所述第二导向面相互配合从而引导所述活塞沿所述管体的轴向进行移动。
根据第一方面,在一种可能的实现方式中,所述套筒组件的筒口与所述管体的驱动口相互套装,所述管体的外周表面设置有第一凸缘,所述套筒组件的筒口沿径向往内延伸形成有第一止挡环,所述第一止挡环与所述第一凸缘相抵接。 
根据第一方面,在一种可能的实现方式中,所述套筒组件包括筒体和连接环,所述筒体的筒口与所述管体的驱动口相互套装,所述筒体的筒口与所述连接环可拆卸地连接,所述连接环套装于所述管体上,所述管体的外周表面设置有第一凸缘,所述连接环沿径向往内延伸形成第一止挡环,所述第一止挡环与所述第一凸缘相抵接。 
根据第一方面,在一种可能的实现方式中,所述筒体的筒口与所述连接环通过卡扣连接方式或螺纹连接方式进行可拆卸地连接。
根据第一方面,在一种可能的实现方式中,所述套筒组件内设置有第一环形壁,所述第一环形壁与所述连接筒通过卡扣连接方式或螺纹连接方式进行可拆卸地连接。 
根据第一方面,在一种可能的实现方式中,所述套筒组件内设置有第一环形壁,所述第一环形壁的内周表面沿轴向设置有多个第一齿槽,所述连接筒朝向所述第一环形壁的一端的外周表面沿轴向设置有多个第一啮合齿,所述第一啮合齿与所述第一齿槽相匹配。 
根据第一方面,在一种可能的实现方式中,所述管体的内周表面设置有第二止挡环,所述连接筒的外周表面设置有第四凸缘,所述第二止挡环与所述第四凸缘相抵接。 
根据第一方面,在一种可能的实现方式中,所述连接筒远离所述活塞的一端具有第一安装口,所述连接筒靠近所述活塞的一端沿径向往内延伸形成第二环形壁,所述第二环形壁的内周表面设置有内螺纹,所述驱动管的外周表面设置有外螺纹,所述驱动管与所述第二环形壁螺纹连接,所述驱动管远离所述活塞的一端外周表面设置有第二凸缘,所述第二凸缘可活动地安装在所述连接筒内,所述第二凸缘的直径大于所述第二环形壁的直径且小于所述第一安装口的口径。
根据第一方面,在一种可能的实现方式中,所述驱动管远离所述活塞的一端具有第二安装口,所述驱动管靠近所述活塞的一端沿径向往内延伸形成第三环形壁,所述第三环形壁的内周表面设置有内螺纹,所述驱动杆的外周表面设置有外螺纹,所述驱动杆与所述第三环形壁螺纹连接,所述驱动杆远离所述活塞的一端外周表面设置有第三凸缘,所述第三凸缘可活动地安装在所述驱动管内,所述第三凸缘的直径大于所述第三环形壁的直径且小于所述第二安装口的口径。
 根据第一方面,在一种可能的实现方式中,所述驱动杆与所述活塞两者之一设置有插槽,所述驱动杆与所述活塞两者之另一设置有插头,所述驱动杆与所述活塞通过所述插头与所述插槽相配合进行插接。
第二方面,本发明的技术方案提供一种牙膏管,包括: 管体,所述管体的第一端具有输出口,所述管体的第二端具有驱动口; 活塞,所述活塞沿轴向可移动地设置于所述管体内; 驱动装置,所述驱动装置包括驱动杆组,所述驱动杆组由多个相互套装且沿轴向可伸缩的杆管件组成,所述驱动杆组的一端从所述驱动口伸入到所述管体内并与所述活塞连接,以使所述驱动杆组伸长或收缩驱动所述活塞在所述管体内沿轴向进行移动;以及 动力装置,所述动力装置包括旋转组件,所述旋转组件包括蓄力转盘组件和卷簧,所述蓄力转盘组件可转动地设置于所述管体的第二端,所述蓄力转盘组件具有容置空间,所述卷簧设置于所述容置空间内,且所述卷簧的一端与所述驱动杆组的另一端连接,所述卷簧的另一端与所述蓄力转盘组件连接,以通过手动旋转所述蓄力转盘组件驱使所述卷簧收卷储存弹性力从而给所述驱动装置提供动力。
从上述技术方案可以看出,本发明的牙膏管,通过手动旋转蓄力转盘组件驱使卷簧收卷储存弹性力从而给驱动装置提供动力,如此,便可以实现驱动装置能够通过动力装置驱动驱动杆组自动伸长并推动活塞在管体内沿轴向推进,从而将管体内的牙膏从输出口逐渐推出来,以通过设置活塞推动方式,可有效减少管体内的牙膏残留,并且采用半自动驱动方式,使用非常方便。 
根据第二方面,在一种可能的实现方式中,所述驱动杆组包括至少一个驱动杆和至少一个驱动管,所述驱动杆与所述驱动管通过螺纹连接方式相互可伸缩的套装。 
根据第二方面,在一种可能的实现方式中,所述驱动装置还包括导向结构,所述导向结构设置于所述管体与所述活塞之间,以通过所述导向结构引导所述活塞在所述管体内进行移动。 
根据第二方面,在一种可能的实现方式中,所述驱动杆组还包括连接筒,所述连接筒与所述驱动口对应设置,所述连接筒与所述驱动杆之间或者所述连接筒与所述驱动管之间通过螺纹连接方式相互可伸缩的套装。
根据第二方面,在一种可能的实现方式中,所述导向结构包括凸起筋和导向槽,所述导向槽可滑动地嵌合于所述凸起筋上,所述管体与所述活塞两者之一具有凸起筋,所述管体与所述活塞两者之另一具有导向槽,且所述凸起筋与所述导向槽均沿所述管体的轴向进行延伸设置。 
根据第二方面,在一种可能的实现方式中,所述导向结构包括第一导向面和第二导向面,所述第一导向面与所述第二导向面的形状及尺寸大小相适配,所述管体的内壁表面具有第一导向面,所述活塞的外周表面具有第二导向面,以通过所述第一导向面和所述第二导向面相互配合从而引导所述活塞沿所述管体的轴向进行移动。 
根据第二方面,在一种可能的实现方式中,所述连接筒远离所述活塞的一端具有第一安装口,所述连接筒靠近所述活塞的一端沿径向往内延伸形成第二环形壁,所述第二环形壁的内周表面设置有内螺纹,所述驱动管的外周表面设置有外螺纹,所述驱动管与所述第二环形壁螺纹连接,所述驱动管远离所述活塞的一端外周表面设置有第二凸缘,所述第二凸缘可活动地安装在所述连接筒内,所述第二凸缘的直径大于所述第二环形壁的直径且小于所述第一安装口的口径。 
根据第二方面,在一种可能的实现方式中,所述驱动管远离所述活塞的一端具有第二安装口,所述驱动管靠近所述活塞的一端沿径向往内延伸形成第三环形壁,所述第三环形壁的内周表面设置有内螺纹,所述驱动杆的外周表面设置有外螺纹,所述驱动杆与所述第三环形壁螺纹连接,所述驱动杆远离所述活塞的一端外周表面设置有第三凸缘,所述第三凸缘可活动地安装在所述驱动管内,所述第三凸缘的直径大于所述第三环形壁的直径且小于所述第二安装口的口径。
根据第二方面,在一种可能的实现方式中,所述驱动杆与所述活塞两者之一设置有插槽,所述驱动杆与所述活塞两者之另一设置有插头,所述驱动杆与所述活塞通过所述插头与所述插槽相配合进行插接。 
根据第二方面,在一种可能的实现方式中,所述动力装置还包括端盖组件,所述端盖组件与所述管体连接,所述旋转组件可转动地安装在所述端盖组件内,且所述蓄力转盘组件的一端从所述端盖组件内往外露出,以供使用者手动驱使所述蓄力转盘组件进行旋转。 
根据第二方面,在一种可能的实现方式中,所述端盖组件包括盖体,所述盖体的内腔通过隔板沿轴向分隔为第一管腔和第二管腔,所述第一管腔与所述管体连接,所述隔板具有穿孔,所述驱动杆组远离所述活塞的一端通过所述穿孔穿设于所述第二管腔内,所述旋转组件设置于所述第二管腔内。 
根据第二方面,在一种可能的实现方式中,所述动力装置还包括第一止动件,所述第一止动件可活动地设置于所述管体,以通过调节所述第一止动件运动至与所述驱动杆组相配合从而对所述驱动杆组进行周向定位。 
根据第二方面,在一种可能的实现方式中,所述动力装置还包括第一止动件,所述第一止动件可活动地设置于所述管体,且所述第一止动件的一端从所述管体内往外露出,所述第一止动件的另一端设置有至少一个凸起或凹陷,所述驱动杆组的另一端沿周向设置有多个凹陷或凸起,以使所述第一止动件的凹陷或凸起匹配所述所述驱动杆组的另一端从而对所述驱动杆组进行周向定位。
根据第二方面,在一种可能的实现方式中,所述驱动杆组的外周表面沿轴向设置有多个凸起,多个所述凸起在所述驱动杆组的外周表面形成第一啮合齿,所述第一止动件对应所述第一啮合齿设有齿槽部,所述管体的管壁沿轴向设置有滑槽,所述第一止动件的一端设置有推钮,所述推钮可滑动地设置于所述滑槽内; 其中,所述第一止动件具有第一位置和第二位置,以通过推动所述推钮在所述滑槽内进行滑动从而切换所述第一止动件于第一位置和第二位置,所述第一止动件位于第一位置时,所述齿槽部与所述第一啮合齿相啮合从而使得所述驱动杆组无法进行转动,所述第一止动件位于第二位置时,所述齿槽部脱离于所述第一啮合齿从而使得所述驱动杆组能够转动。 
根据第二方面,在一种可能的实现方式中,所述驱动杆组的另一端可拆卸地设置有驱动轴,所述驱动轴靠近所述活塞的一端设置有第四环形壁,所述第四环形壁的内周表面沿轴向设置有多个第二齿槽,所述驱动杆组的另一端的外周表面沿轴向设置有多个第一啮合齿,所述第一啮合齿与所述第二齿槽相匹配。
根据第二方面,在一种可能的实现方式中,所述驱动杆组通过所述驱动轴远离所述活塞的一端穿设于所述第二管腔内并与所述卷簧连接,所述驱动轴开设有第一连接槽,所述容置空间的内壁开设有第二连接槽,所述卷簧的一端插接于所述第一连接槽中,所述卷簧的另一端插接于所述第二连接槽中,且所述卷簧环绕所述驱动轴的中轴线设置。 
根据第二方面,在一种可能的实现方式中,所述动力装置还包括第二止动件,所述第二止动件可活动地设置于所述管体的第二端,以通过调节所述第二止动件运动至与所述蓄力转盘组件相配合从而对所述蓄力转盘组件进行周向定位。 
根据第二方面,在一种可能的实现方式中,所述蓄力转盘组件包括齿轮盘,所述齿轮盘的外周表面沿轴向设置有多个第二啮合齿,所述第二止动件包括止动齿和手控部,所述第二啮合齿与所述止动齿相匹配,所述第二止动件可活动地设置于所述第二管腔内,且所述手控部从所述第二管腔内往外露出; 其中,所述第二止动件具有第一状态和第二状态,以通过手动操作所述手控部驱使所述止动齿进行运动从而切换所述第二止动件于第一状态和第二状态,所述第二止动件位于第一状态时,所述止动齿与第二啮合齿相啮合从而使得所述蓄力转盘组件无法进行转动,所述第二止动件位于第二状态时,所述止动齿脱离于所述第二啮合齿从而使得所述蓄力转盘组件能够转动。
根据第二方面,在一种可能的实现方式中,所述蓄力转盘组件还包括旋转体,所述旋转体可转动地安装在所述管体的第二端,所述旋转体设置有所述容置空间,所述齿轮盘设置于所述旋转体远离所述活塞的一端,所述齿轮盘远离所述活塞的一端设置有手动旋转部,所述手动旋转部从所述第二管腔内往外露出。 
根据第二方面,在一种可能的实现方式中,所述旋转体包括转轮环和安装部,所述转轮环内形成有所述容置空间,所述安装部可拆卸地设置于所述转轮环的一侧以封盖所述容置空间。 
根据第二方面,在一种可能的实现方式中,所述安装部设置有插板壁,所述转轮环设置有插装槽,所述安装部与所述转轮环通过所述插板壁插设于所述插装槽中从而进行可拆卸地连接。
第三方面,本发明的技术方案提供一种牙膏管,包括: 管体,所述管体的第一端具有输出口,所述管体的第二端具有驱动口; 活塞,所述活塞沿轴向可移动地设置于所述管体内; 驱动装置,所述驱动装置包括驱动杆组,所述驱动杆组由多个相互套装且沿轴向可伸缩的杆管件组成,且,所述驱动杆组的一端从所述驱动口伸入到所述管体内并与所述活塞连接,以通过所述驱动杆组伸长或收缩从而驱动所述活塞在所述管体内沿轴向进行移动;以及 动力装置,所述动力装置包括驱动电机,所述驱动电机安装在所述管体的第二端,且所述驱动电机的输出轴与所述驱动杆组的另一端驱动连接,以使所述驱动电机通过所述驱动杆组驱动所述活塞进行移动。
从上述技术方案可以看出,本发明的牙膏管,通过驱动电机驱动驱动杆组自动伸长并推动活塞在管体内沿轴向推进,从而将管体内的牙膏从输出口自动推出来,以通过设置活塞推动方式,可有效减少管体内的牙膏残留,并且采用自动驱动方式,使用非常方便。
 根据第三方面,在一种可能的实现方式中,所述驱动杆组包括至少一个驱动杆和至少一个驱动管,所述驱动杆与所述驱动管通过螺纹连接方式相互可伸缩的套装。 
根据第三方面,在一种可能的实现方式中,所述驱动装置还包括导向结构,所述导向结构设置于所述管体与所述活塞之间,以通过所述导向结构引导所述活塞在所述管体内进行移动。 
根据第三方面,在一种可能的实现方式中,所述导向结构包括凸起筋和导向槽,所述导向槽可滑动地嵌合于所述凸起筋上,所述管体与所述活塞两者之一具有凸起筋,所述管体与所述活塞两者之另一具有导向槽,且所述凸起筋与所述导向槽均沿所述管体的轴向进行延伸设置。 
根据第三方面,在一种可能的实现方式中,所述导向结构包括第一导向面和第二导向面,所述第一导向面与所述第二导向面的形状及尺寸大小相适配,所述管体的内壁表面具有第一导向面,所述活塞的外周表面具有第二导向面,以通过所述第一导向面和所述第二导向面相互配合从而引导所述活塞沿所述管体的轴向进行移动。
根据第三方面,在一种可能的实现方式中,所述驱动杆组还包括连接筒,所述连接筒与所述驱动杆之间或者所述连接筒与所述驱动管之间通过螺纹连接方式相互可伸缩的套装,所述连接筒与所述驱动电机驱动连接,以驱动所述连接筒进行旋转。
 根据第三方面,在一种可能的实现方式中,所述管体的内周表面设置有第二止挡环,所述连接筒的外周表面设置有第五凸缘,所述第五凸缘与所述第二止挡环相抵接。 
根据第三方面,在一种可能的实现方式中,所述管体包括可拆卸地相互套装的内管和外管。 
根据第三方面,在一种可能的实现方式中,所述连接筒远离所述活塞的一端具有第一安装口,所述连接筒靠近所述活塞的一端沿径向往内延伸形成第二环形壁,所述第二环形壁的内周表面设置有内螺纹,所述驱动管的外周表面设置有外螺纹,所述驱动管与所述第二环形壁螺纹连接,所述驱动管远离所述活塞的一端外周表面设置有第二凸缘,所述第二凸缘可活动地安装在所述连接筒内,所述第二凸缘的直径大于所述第二环形壁的直径且小于所述第一安装口的口径。
 根据第三方面,在一种可能的实现方式中,所述驱动管远离所述活塞的一端具有第二安装口,所述驱动管靠近所述活塞的一端沿径向往内延伸形成第三环形壁,所述第三环形壁的内周表面设置有内螺纹,所述驱动杆的外周表面设置有外螺纹,所述驱动杆与所述第三环形壁螺纹连接,所述驱动杆远离所述活塞的一端外周表面设置有第三凸缘,所述第三凸缘可活动地安装在所述驱动管内,所述第三凸缘的直径大于所述第三环形壁的直径且小于所述第二安装口的口径。 
根据第三方面,在一种可能的实现方式中,所述驱动杆与所述活塞两者之一设置有插槽,所述驱动杆与所述活塞两者之另一设置有插头,所述驱动杆与所述活塞通过所述插头与所述插槽相配合进行插接。 
为使本发明技术构思和其他目的、优点、特征及作用能更清楚易懂,将在下文具体实施方式中特举较佳实施例,并配合附图,作出详细地展开说明。
附图说明
为了更清楚地说明本发明实施例中的技术方案,下面将对实施例描述中所需要使用的附图作简单地介绍。
 图1是本申请实施例提供一种实施方式的牙膏管的立体图; 
图2是本申请实施例提供一种实施方式的牙膏管的主视图; 
图3是本申请实施例提供的图2中截面A-A的剖视图;  
图4是本申请实施例提供一种实施方式的牙膏管的一视角的爆炸图;  
图5是本申请实施例提供一种实施方式的牙膏管的另一视角的爆炸图;  
图6是本申请实施例提供的驱动装置的结构示意图;  
图7是本申请实施例提供的驱动装置的结构分解图;  
图8是本申请实施例提供另一种实施方式的牙膏管的一视角立体图;  
图9是本申请实施例提供另一种实施方式的牙膏管的另一视角立体图; 
图10是本申请实施例提供另一种实施方式的牙膏管的主视图; 
图11是本申请实施例提供的图10中截面B-B的剖视图;
 图12是本申请实施例提供的动力装置的一视角立体图;  
图13是本申请实施例提供的动力装置的另一视角立体图; 
图14是本申请实施例提供的动力装置的一视角的爆炸图;  
图15是本申请实施例提供的动力装置的另一视角的爆炸图。 
其中,上述附图包括以下附图标记: 100、管体;110、内管;111、管头;111a、输出口;112、凸起筋;120、外管;121、安装孔;122、第二止挡环;123、第一凸缘;124、滑槽; 200、驱动装置;210、套筒组件;211、筒体;211a、第一环形壁;212、连接环;212a、第一止挡环; 220、连接筒;221、第二环形壁;222、第一啮合齿;223、第一安装口;224、第四凸缘; 230、驱动杆组;231、驱动杆;231a、第三凸缘;231b、插头;232、驱动管;232a、第三环形壁;232b、第二凸缘;232c、第二安装口; 300、活塞;310、插槽;320、导杆;330、导向槽; 400、动力装置;410、端盖组件;411、盖体;411a、第一管腔;411b、第二管腔;412、环盖板;412a、通孔;412b、条形槽; 420、蓄力转盘组件;430、旋转体;431、转轮环;431a、容置空间;431b、穿孔;431c、隔板;431d、插装槽;431e、第二连接槽;432、安装部;433、齿轮盘;434、手动旋转部; 440、驱动轴;441、第四环形壁;441a、第二齿槽;442、第一连接槽; 450、第一止动件;451、推钮;452、齿槽部;453、止挡板; 460、第二止动件;461、手控部;462、止动齿。
本发明的实施方式
为了使本领域技术人员更好地理解本申请的技术方案,下面将结合本申请实施例中的附图,对本申请实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本申请的一部分实施例,而不是全部的实施例。基于本发明中的实施例,本领域技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本申请保护的范围。
实施例一: 
请一并参阅图1至图7,本实施例提供一种牙膏管,包括管体100、活塞300、和驱动装置200,管体100的第一端具有输出口111a,管体100的第二端具有驱动口,活塞300沿轴向可移动地设置于管体100内,驱动装置200包括驱动部和驱动杆组230,驱动部设置于管体100的第二端,驱动部与驱动杆组230驱动连接,驱动杆组230由多个相互套装且沿轴向可伸缩的杆管件组成,且驱动杆组230的一端从驱动口伸入到管体100内并与活塞300连接,以使驱动部通过驱动杆组230伸长或收缩从而驱动活塞300在管体100内沿轴向进行移动。
其中,驱动部包括套筒组件210,套筒组件210可转动地套装于管体100的第二端,驱动杆组230的另一端与套筒组件210连接,驱动装置200还包括导向结构,导向结构设置于管体100与活塞300之间,当套筒组件210相对于管体100转动而带动驱动杆组230进行伸长或收缩时,以通过导向结构引导活塞300在管体100内进行移动,以将管体100内的牙膏从输出口111a推出进行刷牙使用,当然,在其他实施方案中,导向结构也可通过螺纹连接方式引导活塞300在管体100内进行旋转升降运动。
在本实施例中,驱动杆组230包括至少一个驱动杆231、至少一个驱动管232和连接筒220,连接筒220设置于套筒组件210内,且连接筒220与驱动口对应设置,驱动杆231的一端与活塞300连接,驱动杆231与驱动管232之间以及驱动管232与连接筒220之间均通过螺纹连接方式相互套装,其中,驱动杆231的外周表面设置有外螺纹,驱动管232的内腔的内周表面设置有内螺纹,以使驱动管232通过螺纹连接方式套装在驱动杆231上,驱动管232的外周表面设置有外螺纹,连接筒220的内腔的内周表面设置有内螺纹,以使连接筒220通过螺纹连接方式套装在驱动管232上,如此,便可以通过手持套筒组件210并转动管体100,使得管体100和活塞300一起进行转动,在旋力的作用下,进而驱使驱动杆231和/或驱动管232旋转伸长,以驱动活塞300在管体100内沿轴向推进,从而将管体100内的牙膏从输出口111a逐渐推出来,驱动杆231、驱动管232以及连接筒220通过采用螺纹连接套装方式,实现了多级伸缩驱动,结构设计更加轻巧紧凑,有效提升结构的稳定性和可靠性。
可以看出,本实施例的牙膏管,通过套筒组件210可转动地套装于管体100上,且套筒组件210内具有连接筒220,连接筒220与驱动口对应设置,驱动杆组230的一端与活塞300连接,在管体100与活塞300之间设置有导向结构,以通过导向结构引导活塞300在管体100内沿轴向进行移动,如此,便可以通过手持套筒组件210并转动管体100,使得管体100和活塞300一起进行转动,在旋力的作用下,进而驱使驱动杆231和/或驱动管232相对于连接筒220旋转伸长,以驱动活塞300在管体100内沿轴向推进,从而将管体100内的牙膏从输出口111a逐渐推出来,通过设置活塞300推动方式,可有效减少管体100内的牙膏残留,并且驱动杆组230的多个杆管件通过采用螺纹连接套装方式,实现了多级伸缩驱动,结构设计更加轻巧紧凑,便于使用挤出牙膏。
值得一提的是,在初始状态时,驱动杆231收缩在驱动管232的内腔中,驱动管232收缩在连接筒220的内腔中,以减小驱动杆组230和连接筒220的整体长度,从而避免因驱动装置200的整体长度过长而导致包装管内能够填充的牙膏量较少,驱动装置200结构紧凑,设计精巧新颖,体积小,不占用包装管内过多的有限空间,并且,现如今由于人们在选择牙膏时不再单纯的因需要而选择,更多的是因个性或喜欢而选择,本产品的多级推动机构,设计新颖有趣,结构合理,造型独特,有助于青少年儿童养成良好的的动手习惯,能够锻炼手指的灵活性,有利于儿童智力和动手能力的开发,且能够精确控制牙膏使用量的多少,以避免浪费。
在一种可能的实施例中,导向结构包括凸起筋112和导向槽330,导向槽330可滑动地嵌合于凸起筋112上,管体100与活塞300两者之一具有凸起筋112,管体100与活塞300两者之另一具有导向槽330,且凸起筋112和导向槽330均沿管体100的轴向进行延伸,这样一来,在导向结构的引导作用下,既能使管体100与活塞300无法进行相对转动,又能在驱动杆231和/或驱动管232旋转伸长时能够引导活塞300在管体100内沿轴向推动牙膏从输出口111a挤出来进行洗刷牙齿使用。
在另一种可能的实现方式中,导向结构包括第一导向面和第二导向面,第一导向面与第二导向面的形状及尺寸大小相适配,管体100的内壁表面具有第一导向面,活塞300的外周表面具有第二导向面,以通过第一导向面和第二导向面相互配合从而引导活塞300沿管体100的轴向进行移动,在优选的实施例中,第一导向面和第二导向面均为由多个平面合围而成的多棱柱状,例如采用六棱柱形,以使活塞300和管体100的内腔的横截面形状均为六边形,当然,在其他实施例中,第一导向面和第二导向面也可采用其他的形状,只要在导向结构的引导作用下,既能使管体100与活塞300无法进行相对转动,又能在驱动杆231和/或驱动管232旋转伸长时能够引导活塞300在管体100内沿轴向推动牙膏从输出口111a挤出来进行洗刷牙齿使用。 在本实施例中,套筒组件210的筒口与管体100的驱动口相互套装,管体100的外周表面设置有第一凸缘123,套筒组件210的筒口沿径向往内延伸形成有第一止挡环212a,第一止挡环212a与第一凸缘123相抵接,其中,管体100和第一凸缘123可采用塑胶材料制成一体结构,套筒组件210和第一止挡环212a可采用塑胶材料制成一体结构。
具体而言,套筒组件210包括筒体211和连接环212,筒体211的筒口与管体100的驱动口相互套装,筒体211的筒口与连接环212可拆卸地连接,连接环212套装于管体100上,管体100的外周表面设置有第一凸缘123,连接环212远离筒体211的一端沿径向往内延伸形成第一止挡环212a,第一止挡环212a与第一凸缘123相抵接,如此,在组装时,可先将连接环212从管体100的第一端套装在管体100上,再将筒体211套装在管体100的第二端,然后将筒体211和连接环212对应连接起来,在第一止挡环212a和第一凸缘123相抵的轴向定位作用下,避免了套筒组件210脱离于管体100。
进一步地,为了方便组装和拆卸驱动装置200,筒体211的筒口与连接环212通过卡扣连接方式或螺纹连接方式进行可拆卸地连接,如此,在一个管体100内的牙膏使用完之后,可将驱动装置200从该管体100上拆卸下来,并将驱动装置200组装在另一个新的管体100上进行使用,一个驱动装置200可搭配多个管体100进行重复使用,可节省零部件材料成本,环保又实用。
在一种可能的实施例中,套筒组件210内设置有第一环形壁211a,第一环形壁211a与连接筒220通过卡扣连接方式或螺纹连接方式进行可拆卸地连接,从而便于组装,降低了加工工艺难度和生产成本。
在另一种可能的实施例中,套筒组件210内设置有第一环形壁211a,第一环形壁211a的内周表面沿轴向设置有多个第一齿槽,连接筒220朝向第一环形壁211a的一端的外周表面沿轴向设置有多个第一啮合齿222,第一啮合齿222与第一齿槽相匹配,且管体100的内周表面设置有第二止挡环122,连接筒220的外周表面设置有第四凸缘224,第二止挡环122与第四凸缘224相抵接,如此,在组装时,将连接筒220的第一啮合齿222沿轴向对应插设于第一环形壁211a的第一齿槽中,从而实现对连接筒220进行周向定位,既能方便组装,又能使连接筒220与套筒组件210无法进行相对转动。
具体而言,管体100包括内管110和外管120,外管120套装在内管110的外部,外管120的第一端设置有安装孔121,内管110的第一端设置有管头111,管头111的内腔沿轴向贯通形成输出口111a,管头111与安装孔121的形状相匹配,优选采用六棱形,以起到周向定位作用,如此,将外管120套装在内管110上时,管头111从安装孔121中穿出,以使内管110与外管120无法进行相对转动,活塞300靠近管头111的一端沿轴向设置有导杆320,导杆320与管头111的输出口111a相匹配,以使导杆320能够将管头111的输出口111a内的牙膏挤出来。
其中,内管110、外管120以及套筒组件210均为圆柱筒状,以使管体100与套筒组件210能够进行相对转动,外管120的外周表面形成第一凸缘123,内管110的轴向长度短于外管120的轴向长度,以使内管110的第二端端部在管体100内形成第二止挡环122,连接筒220的多个第一啮合齿222突出于连接筒220的外周表面以形成第四凸缘224,通过第二止挡环122与第四凸缘224相抵从而对连接筒220进行轴向定位,连接筒220靠近活塞300的一端为圆柱筒状,且连接筒220的端部至少部分地伸入到内管110的驱动口内,连接筒220与内管110之间能够进行相对转动。
在本实施例中,连接筒220远离活塞300的一端具有第一安装口223,连接筒220靠近活塞300的一端沿径向往内延伸形成第二环形壁221,第二环形壁221的内周表面设置有内螺纹,驱动管232的外周表面设置有外螺纹,驱动管232与第二环形壁221螺纹连接,驱动管232远离活塞300的一端外周表面设置有第二凸缘232b,第二凸缘232b可活动地安装在连接筒220内,第二凸缘232b的直径大于第二环形壁221的直径且小于第一安装口223的口径,通过第二凸缘232b与第二环形壁221相抵,以避免驱动管232在伸缩时从连接筒220的内腔中脱离,其中,第二凸缘232b和连接筒220的内腔的横截面形状均为圆形,以使驱动管232和连接筒220之间能够进行相对转动。
具体而言,驱动管232远离所述活塞300的一端具有第二安装口232c,驱动管232靠近活塞300的一端沿径向往内延伸形成第三环形壁232a,第三环形壁232a的内周表面设置有内螺纹,驱动杆231的外周表面设置有外螺纹,驱动杆231与第三环形壁232a螺纹连接,驱动杆231远离活塞300的一端外周表面设置有第三凸缘231a,第三凸缘231a可活动地安装在驱动管232内,第三凸缘231a的直径大于第三环形壁232a的直径且小于第二安装口232c的口径,其中,第三凸缘231a和驱动管232的内腔的横截面形状均为圆形,以使驱动管232和驱动杆231之间能够进行相对转动,且可在驱动管232的第二安装口232c设置一盖子,通过第三凸缘231a分别与第三环形壁232a和盖子相抵,以避免驱动杆231在伸缩时从驱动管232的内腔中脱离。
进一步地,驱动杆231与活塞300两者之一设置有插槽310,驱动杆231与活塞300两者之另一设置有插头231b,驱动杆231与活塞300通过插头231b与插槽310相配合进行插接,插头231b和插槽310的形状均为六棱形,以使驱动杆231与活塞300无法进行相对转动。
在使用时,管体100的内管110中填充有牙膏,通过握持住套筒组件210并手动转动管体100,使得管体100和活塞300一起进行转动,在旋力的作用下,进而驱使驱动杆231和/或驱动管232旋转伸长,以驱动活塞300在管体100内沿轴向推进,从而将管体100内的牙膏从输出口111a逐渐推出来进行洗刷牙齿使用,待内管110中的牙膏用完时,反向旋转管体100,在旋力的作用下,驱动杆231和驱动管232旋转收缩,待驱动杆231和驱动管232退回原位后,将套筒组件210与管体100拆开分离,即可更换另一个新的具有牙膏的管体100,重复上述动作再次使用,一个驱动装置200可搭配多个管体100进行重复使用,可节省零部件材料成本,环保又实用,通过设置活塞300推动方式,可有效减少管体100内的牙膏残留,并且驱动杆231、驱动管232以及连接筒220通过采用螺纹连接套装方式,实现了多级伸缩驱动,结构设计更加轻巧紧凑,便于挤出牙膏使用。
实施例二:
请一并参阅图8至图15,本实施例提供一种牙膏管,包括管体100、活塞300、导向结构、驱动装置200以及动力装置400,管体100的第一端具有输出口111a,管体100的第二端具有驱动口;活塞300可移动地设置于管体100内;导向结构设置于管体100与活塞300之间,以通过导向结构引导活塞300沿管体100的轴向进行移动;驱动装置200包括驱动杆组230,驱动杆组230由多个相互套装且沿轴向可伸缩的杆管件组成,驱动杆组230包括至少一个驱动杆231、至少一个驱动管232和连接筒220,驱动杆组230的一端从驱动口伸入到管体100内并与活塞300连接,连接筒220可转动地安装在管体100的驱动口,驱动杆231与驱动管232之间以及驱动管232与连接筒220之间均通过螺纹连接方式相互套装;动力装置400包括端盖组件410和旋转组件,端盖组件410与管体100连接,旋转组件可转动地安装在端盖组件410内,且旋转组件的输出端与连接筒220驱动连接,旋转组件的输入端从端盖组件410内往外露出,以供使用者手动驱动旋转组件的输入端从而给连接筒220的旋转提供动力。
从上述技术方案可以看出,本发明的牙膏管,当旋转组件驱动连接筒220进行转动时,在螺纹旋力的作用下,进而驱使驱动杆231或驱动管232相对于连接筒220伸长,以驱动活塞300在管体100内沿轴向推进,从而将管体100内的牙膏从输出口111a逐渐推出来,通过设置活塞300推动方式,可有效减少管体100内的牙膏残留,并且驱动杆组230与连接筒220通过采用螺纹连接套装方式,实现了多级伸缩驱动,结构设计更加轻巧紧凑,便于使用挤出牙膏。
当然,在其他实施例中,动力装置400也可采用自动驱动的方式挤牙膏,具体地,动力装置400包括壳体、驱动电机、电路板和电源,壳体与管体100连接,驱动电机安装在壳体内,电路板和电源分别与驱动电机电连接,电路板用于控制驱动电机工作,电源用于给驱动电机供电,且驱动电机的输出轴与连接筒220驱动连接,从而驱动连接筒220进行旋转。如此,便可以通过开关启动驱动电机驱动连接筒220自动进行旋转,在螺纹旋力的作用下,进而驱使驱动杆组230相对于连接筒220伸长,以驱动活塞300在管体100内沿轴向推进,从而将管体100内的牙膏从输出口111a自动推出来,以实现自动挤牙膏的目的,使用非常方便。
在本实施例中,驱动杆231的外周表面设置有外螺纹,驱动管232的内腔的内周表面设置有内螺纹,以使驱动管232通过螺纹连接方式套装在驱动杆231上,驱动管232的外周表面设置有外螺纹,连接筒220的内腔的内周表面设置有内螺纹,以使连接筒220通过螺纹连接方式套装在驱动管232上,如此,便可以使得连接筒220进行转动,在螺纹旋力的作用下,进而驱使驱动杆231和/或驱动管232伸长,以驱动活塞300在管体100内沿轴向推进,从而将管体100内的牙膏从输出口111a逐渐推出来,驱动杆231、驱动管232以及连接筒220通过采用螺纹连接套装方式,实现了多级伸缩驱动,结构设计更加轻巧紧凑,有效提升结构的稳定性和可靠性。
值得一提的是,在初始状态时,驱动杆231收缩在驱动管232的内腔中,驱动管232收缩在连接筒220的内腔中,以减小驱动杆组230和连接筒220的整体长度,从而避免因驱动装置200的整体长度过长而导致包装管内能够填充的牙膏量较少,驱动装置200结构紧凑,设计精巧新颖,体积小,不占用包装管内过多的有限空间。
在本实施例中,端盖组件410包括盖体411,盖体411的内腔通过隔板431c沿轴向分隔为第一管腔411a和第二管腔411b,第一管腔411a与管体100连接,隔板431c具有穿孔431b,连接筒220远离活塞300的一端设置有驱动轴440,驱动轴440通过穿孔431b插设于第二管腔411b内;旋转组件包括蓄力转盘组件420和卷簧(图未示),蓄力转盘组件420可转动地安装在第二管腔411b内,蓄力转盘组件420朝向驱动轴440的一端设置有容置空间431a,卷簧设置于容置空间431a内,且卷簧的一端与驱动轴440连接,卷簧的另一端与容置空间431a的内壁连接,蓄力转盘组件420远离驱动轴440的一端至少部分地从第二管腔411b内往外露出,以通过手动旋转蓄力转盘组件420进而带动卷簧收卷储存弹性扭力,从而给连接筒220的旋转提供动力。
具体地,第一管腔411a与管体100可采用螺纹连接方式或卡扣连接方式进行可拆卸地连接,如此,在一个管体100内的牙膏使用完之后,可将驱动装置200和动力装置400从该管体100上拆卸下来,并将其组装在另一个新的管体100上进行使用,一个驱动装置200可搭配多个管体100进行重复使用,可节省零部件材料成本,环保又实用。
其中,动力装置400还包括第一止动件450,第一止动件450可活动地设置于管体100,以通过调节第一止动件450运动至与驱动杆组230相配合从而对驱动杆组230进行周向定位,具体地,第一止动件450的一端从管体100内往外露出,第一止动件450的另一端设置有至少一个凸起或凹陷,连接筒220沿周向设置有多个凹陷或凸起,以使连接筒220的凹陷或凸起匹配第一止动件450从而对连接筒220进行周向定位,以限制连接筒220进行转动,在手动旋转蓄力转盘组件420使得卷簧能够储存弹性扭力之前,需要先调节第一止动件450卡住连接筒220进行周向定位,从而避免手动旋转蓄力转盘组件420时连接筒220跟随卷簧一起转动而导致卷簧无法收卷储存弹性扭力。
具体而言,连接筒220的外周表面沿轴向设置有多个凸起,多个凸起在连接筒220的外周形成第一啮合齿222,第一止动件450对应第一啮合齿222设有齿槽部452,管体100的管壁沿轴向设置有滑槽124,第一止动件450的一端设置有推钮451,推钮451可滑动地设置于滑槽124内;其中,第一止动件450具有第一位置和第二位置,以通过推动推钮451在滑槽124内进行滑动从而切换第一止动件450于第一位置和第二位置,第一止动件450位于第一位置时,齿槽部452与第一啮合齿222相啮合从而使得连接筒220无法进行转动,第一止动件450位于第二位置时,齿槽部452脱离于第一啮合齿222从而使得连接筒220能够转动,其中,第一止动件450的推钮451的两侧均设置有止挡板453,推钮451可滑动地设置于滑槽124中,并通过止挡板453与滑槽124的槽壁相抵进行定位,当第一止动件450沿轴向滑动至第一位置时,第一止动件450另一端的齿槽部452与第一啮合齿222相啮合进行周向定位,连接筒220无法进行转动,当第一止动件450沿轴向滑动至第二位置时,齿槽部452脱离于第一啮合齿222,第一止动件450的齿槽部452末端滑动至连接筒220光滑的圆周表面,且第一止动件450的齿槽部452末端形状为弧形面,基本不会影响连接筒220进行转动,这时连接筒220的周向定位解锁,连接筒220能够进行转动。
如此,在第一止动件450位于第一位置时,连接筒220无法进行转动,可通过手动旋转蓄力转盘组件420带动卷簧收卷进行储存弹性扭力,在手推推钮451使得第一止动件450位于第二位置时,连接筒220能够转动,卷簧释放弹性扭力并通过驱动轴440驱动连接筒220进行转动,在螺纹旋力的作用下,进而驱使驱动杆231和/或驱动管232伸长,以驱动活塞300在管体100内沿轴向推进,从而将管体100内的牙膏从输出口111a逐渐推出来,以实现半自动驱动的方式挤牙膏,使用非常方便。
进一步地,驱动轴440朝向连接筒220的一端设置有第四环形壁441,第四环形壁441的内周表面沿轴向设置有多个第二齿槽441a,连接筒220远离活塞300的一端的外周表面沿轴向设置有多个第一啮合齿222,第一啮合齿222与第二齿槽441a相匹配,连接筒220与驱动轴440通过第一啮合齿222与第二齿槽441a相配合进行插接组装,组装和拆卸简单快捷,且连接筒220与驱动轴440无法进行相对转动,驱动轴440的两端分别与连接筒220和隔板431c相抵进行轴向定位。其中,第一啮合齿222沿连接筒220轴向的长度大于第二齿槽441a沿第四环形壁441轴向的长度,以使第一啮合齿222的一端能用于和第二齿槽441a啮合连接,第一啮合齿222的另一端能用于和第一止动件450的齿槽部452啮合连接。
在本实施例中,动力装置400还包括第二止动件460,第二止动件460可活动地设置于管体100的第二端,以通过调节第二止动件460运动至与蓄力转盘组件420相配合从而对蓄力转盘组件420进行周向定位,蓄力转盘组件420包括旋转体430和齿轮盘433,旋转体430可转动地安装在第二管腔411b内,旋转体430朝向驱动轴440的一端设置有容置空间431a,齿轮盘433设置于旋转体430远离驱动轴440的一端,齿轮盘433远离驱动轴440的一端设置有手动旋转部434,手动旋转部434从第二管腔411b内往外露出,第二止动件460包括止动齿462和手控部461,齿轮盘433的外周表面沿轴向设置有多个第二啮合齿,第二啮合齿与止动齿462相匹配,第二止动件460可运动地设置于第二管腔411b内,且手控部461从第二管腔411b内往外露出;其中,第二止动件460具有第一状态和第二状态,以通过手动操控手控部461驱使止动齿462进行运动从而切换第二止动件460于第一状态和第二状态,第二止动件460位于第一状态时,止动齿462与第二啮合齿相啮合从而使得齿轮盘433无法进行转动,第二止动件460位于第二状态时,止动齿462脱离于第二啮合齿从而使得齿轮盘433能够转动。
如此,在第一止动件450位于第一位置时,连接筒220和驱动轴440无法进行转动,并将第二止动件460调节至第二状态,这时止动齿462脱离于第二啮合齿,齿轮盘433和旋转体430能够转动,可通过手动旋转齿轮盘433和旋转体430在第二管腔411b内进行转动,由于卷簧的一端与驱动轴440连接,卷簧的另一端与旋转体430的内壁连接,从而带动卷簧收卷进行储存弹性扭力,待卷簧旋转蓄力好之后,再将第二止动件460调节至第一状态,这时止动齿462与第二啮合齿相啮合进行周向定位,齿轮盘433和旋转体430无法进行转动,以使卷簧收卷获得的弹性扭力得以储存,需要挤牙膏洗刷牙齿时,用手推动推钮451使得第一止动件450滑动至第二位置,这时连接筒220能够转动,卷簧能够释放弹性扭力并通过驱动轴440驱动连接筒220进行转动,在螺纹旋力的作用下,进而驱使驱动杆231和/或驱动管232伸长,以驱动活塞300在管体100内沿轴向推进,从而将管体100内的牙膏从输出口111a逐渐推出来,以实现半自动驱动的方式进行挤牙膏,使用非常方便。
在本实施例中,旋转体430包括转轮环431和安装部432,转轮环431可转动地安装在第二管腔411b内,转轮环431内形成有容置空间431a,齿轮盘433固定于安装部432的一端,安装部432的另一端设置有插板壁,转轮环431朝向齿轮盘433的一端设置有插装槽431d,插装槽431d与插板壁相匹配,其中,隔板431c与转轮环431一体成型,插装槽431d和插板壁的横截面形状为多边形,以起到周向定位的作用,使得转轮环431与安装部432之间不可相对转动。
具体而言,驱动轴440开设有第一连接槽442,转轮环431的内壁开设有第二连接槽431e,卷簧环绕驱动轴440的中轴线设置,且卷簧的一端插接于第一连接槽442中,卷簧的另一端插接于第二连接槽431e中。
进一步地,端盖组件410还包括环盖板412,环盖板412可拆卸地安装在第二管腔411b的口部,环盖板412具有通孔412a,手动旋转部434通过通孔412a往外露出,环盖板412与第二管腔411b之间可采用螺纹连接方式或卡扣连接方式进行可拆卸地连接,其中,环盖板412上开设有条形槽412b,第二止动件460可滑动地设置于条形槽412b中,条形槽412b沿齿轮盘433径向进行延伸,以引导第二止动件460在条形槽412b中能够沿齿轮盘433的径向进行滑动,且第二止动件460的止动齿462位于第二管腔411b内,第二止动件460的手控部461通过条形槽412b从第二管腔411b内往外露出,以便于使用者手动推动第二止动件460从而对齿轮盘433进行周向定位。
在一种可能的实施例中,导向结构包括凸起筋112和导向槽330,导向槽330可滑动地嵌合于凸起筋112上,管体100与活塞300两者之一具有凸起筋112,管体100与活塞300两者之另一具有导向槽330,且凸起筋112和导向槽330均沿管体100的轴向进行延伸,这样一来,在导向结构的引导作用下,既能使管体100与活塞300无法进行相对转动,又能在驱动杆231和/或驱动管232伸长时能够引导活塞300在管体100内沿轴向推动牙膏从输出口111a挤出来进行洗刷牙齿使用。
在另一种可能的实现方式中,导向结构包括第一导向面和第二导向面,第一导向面与第二导向面的形状及尺寸大小相适配,管体100的内壁表面具有第一导向面,活塞300的外周表面具有第二导向面,以通过第一导向面和第二导向面相互配合从而引导活塞300沿管体100的轴向进行移动,在优选的实施例中,第一导向面和第二导向面均为由多个平面合围而成的多棱柱状,例如采用六棱柱形,以使活塞300和管体100的内腔的横截面形状均为六边形,当然,在其他实施例中,第一导向面和第二导向面也可采用其他的形状,只要在导向结构的引导作用下,既能使管体100与活塞300无法进行相对转动,又能在驱动杆231和/或驱动管232旋转伸长时能够引导活塞300在管体100内沿轴向推动牙膏从输出口111a挤出来进行洗刷牙齿使用。
在本实施例中,管体100的内周表面设置有第二止挡环122,连接筒220靠近活塞300的一端的外周表面设置有第四凸缘224,第四凸缘224与第二止挡环122相抵接,从而对连接筒220进行轴向定位。
具体而言,管体100包括内管110和外管120,外管120套装在内管110的外部,外管120的第一端设置有安装孔121,内管110的第一端设置有管头111,管头111的内腔沿轴向贯通形成输出口111a,管头111与安装孔121的形状相匹配,优选采用六棱形,以起到周向定位作用,如此,将外管120套装在内管110上时,管头111从安装孔121中穿出,以使内管110与外管120无法进行相对转动,活塞300靠近管头111的一端沿轴向设置有导杆320,导杆320与管头111的输出口111a相匹配,以使导杆320能够将管头111的输出口111a内的牙膏挤出来。
其中,内管110、外管120以及套筒组件210均为圆柱筒状,以使管体100与套筒组件210能够进行相对转动,外管120的外周表面形成第一凸缘123,内管110的轴向长度短于外管120的轴向长度,以使内管110的第二端端部在管体100内形成第二止挡环122,通过第二止挡环122与第四凸缘224相抵从而对连接筒220进行轴向定位,连接筒220靠近活塞300的一端为圆柱筒状,且连接筒220的端部至少部分地伸入到内管110的驱动口内,连接筒220与内管110之间能够进行相对转动。
在本实施例中,连接筒220远离活塞300的一端具有第一安装口223,连接筒220靠近活塞300的一端沿径向往内延伸形成第二环形壁221,第二环形壁221的内周表面设置有内螺纹,驱动管232的外周表面设置有外螺纹,驱动管232与第二环形壁221螺纹连接,驱动管232远离活塞300的一端外周表面设置有第二凸缘232b,第二凸缘232b可活动地安装在连接筒220内,第二凸缘232b的直径大于第二环形壁221的直径且小于第一安装口223的口径,通过第二凸缘232b与第二环形壁221相抵,以避免驱动管232在伸缩时从连接筒220的内腔中脱离,其中,第二凸缘232b和连接筒220的内腔的横截面形状均为圆形,以使驱动管232和连接筒220之间能够进行相对转动。
具体而言,驱动管232远离所述活塞300的一端具有第二安装口232c,驱动管232靠近活塞300的一端沿径向往内延伸形成第三环形壁232a,第三环形壁232a的内周表面设置有内螺纹,驱动杆231的外周表面设置有外螺纹,驱动杆231与第三环形壁232a螺纹连接,驱动杆231远离活塞300的一端外周表面设置有第三凸缘231a,第三凸缘231a可活动地安装在驱动管232内,第三凸缘231a的直径大于第三环形壁232a的直径且小于第二安装口232c的口径,其中,第三凸缘231a和驱动管232的内腔的横截面形状均为圆形,以使驱动管232和驱动杆231之间能够进行相对转动,且可在驱动管232的第二安装口232c设置一盖子,通过第三凸缘231a分别与第三环形壁232a和盖子相抵,以避免驱动杆231在伸缩时从驱动管232的内腔中脱离。
进一步地,驱动杆231与活塞300两者之一设置有插槽310,驱动杆231与活塞300两者之另一设置有插头231b,驱动杆231与活塞300通过插头231b与插槽310相配合进行插接,插头231b和插槽310的形状均为六棱形,以使驱动杆231与活塞300无法进行相对转动。
以上所述是本发明的优选实施方式,应当指出,对于本技术领域的普通技术人员来说,在不脱离本发明原理的前提下,还可以做出若干改进和润饰,这些改进和润饰也视为本发明的保护范围。

Claims (51)

  1. 一种牙膏管,其特征在于,包括:
    管体,所述管体的第一端具有输出口,所述管体的第二端具有驱动口;
    活塞,所述活塞沿轴向可移动地设置于所述管体内;以及
    驱动装置,所述驱动装置包括驱动部和驱动杆组,所述驱动部设置于所述管体的第二端,所述驱动部与所述驱动杆组驱动连接,所述驱动杆组由多个相互套装且沿轴向可伸缩的杆管件组成,且,所述驱动杆组的一端从所述驱动口伸入到所述管体内并与所述活塞连接,以使所述驱动部通过所述驱动杆组伸长或收缩从而驱动所述活塞在所述管体内沿轴向进行移动。
  2. 根据权利要求1所述的牙膏管,其特征在于,所述驱动杆组包括至少一个驱动杆和至少一个驱动管,所述驱动杆与所述驱动管沿轴向可伸缩的相互套装。
  3. 根据权利要求1所述的牙膏管,其特征在于,所述驱动杆组包括至少一个驱动杆和至少一个驱动管,所述驱动杆与所述驱动管通过螺纹连接方式相互可伸缩的套装。
  4. 根据权利要求2所述的牙膏管,其特征在于,所述驱动装置还包括导向结构,所述导向结构设置于所述管体与所述活塞之间,以使所述导向结构通过螺纹连接方式引导所述活塞在所述管体内进行旋转升降运动。
  5. 根据权利要求3所述的牙膏管,其特征在于,所述驱动装置还包括导向结构,所述导向结构设置于所述管体与所述活塞之间,以通过所述导向结构引导所述活塞在所述管体内进行移动。
  6. 根据权利要求5所述的牙膏管,其特征在于,所述驱动部包括套筒组件,所述套筒组件可转动地套装于所述管体的第二端,所述驱动杆组的另一端与所述套筒组件连接。
  7. 根据权利要求6所述的牙膏管,其特征在于,所述驱动杆组还包括连接筒,所述连接筒设置于所述套筒组件内,且所述连接筒与所述驱动口对应设置,所述连接筒与所述驱动杆之间或者所述连接筒与所述驱动管之间通过螺纹连接方式相互可伸缩的套装。
  8. 根据权利要求1所述的牙膏管,其特征在于,所述管体包括可拆卸地相互套装的内管和外管。
  9. 根据权利要求5所述的牙膏管,其特征在于,所述导向结构包括凸起筋和导向槽,所述导向槽可滑动地嵌合于所述凸起筋上,所述管体与所述活塞两者之一具有凸起筋,所述管体与所述活塞两者之另一具有导向槽,且所述凸起筋与所述导向槽均沿所述管体的轴向进行延伸设置。
  10. 根据权利要求5所述的牙膏管,其特征在于,所述导向结构包括第一导向面和第二导向面,所述第一导向面与所述第二导向面的形状及尺寸大小相适配,所述管体的内壁表面具有第一导向面,所述活塞的外周表面具有第二导向面,以通过所述第一导向面和所述第二导向面相互配合从而引导所述活塞沿所述管体的轴向进行移动。
  11. 根据权利要求6所述的牙膏管,其特征在于,所述套筒组件的筒口与所述管体的驱动口相互套装,所述管体的外周表面设置有第一凸缘,所述套筒组件的筒口沿径向往内延伸形成有第一止挡环,所述第一止挡环与所述第一凸缘相抵接。
  12. 根据权利要求6所述的牙膏管,其特征在于,所述套筒组件包括筒体和连接环,所述筒体的筒口与所述管体的驱动口相互套装,所述筒体的筒口与所述连接环可拆卸地连接,所述连接环套装于所述管体上,所述管体的外周表面设置有第一凸缘,所述连接环沿径向往内延伸形成第一止挡环,所述第一止挡环与所述第一凸缘相抵接。
  13. 根据权利要求12所述的牙膏管,其特征在于,所述筒体的筒口与所述连接环通过卡扣连接方式或螺纹连接方式进行可拆卸地连接。
  14. 根据权利要求7所述的牙膏管,其特征在于,所述套筒组件内设置有第一环形壁,所述第一环形壁与所述连接筒通过卡扣连接方式或螺纹连接方式进行可拆卸地连接。
  15. 根据权利要求7所述的牙膏管,其特征在于,所述套筒组件内设置有第一环形壁,所述第一环形壁的内周表面沿轴向设置有多个第一齿槽,所述连接筒朝向所述第一环形壁的一端的外周表面沿轴向设置有多个第一啮合齿,所述第一啮合齿与所述第一齿槽相匹配。
  16. 根据权利要求15所述的牙膏管,其特征在于,所述管体的内周表面设置有第二止挡环,所述连接筒的外周表面设置有第四凸缘,所述第二止挡环与所述第四凸缘相抵接。
  17. 根据权利要求7所述的牙膏管,其特征在于,所述连接筒远离所述活塞的一端具有第一安装口,所述连接筒靠近所述活塞的一端沿径向往内延伸形成第二环形壁,所述第二环形壁的内周表面设置有内螺纹,所述驱动管的外周表面设置有外螺纹,所述驱动管与所述第二环形壁螺纹连接,所述驱动管远离所述活塞的一端设置有第二凸缘,所述第二凸缘可活动地安装在所述连接筒内,所述第二凸缘的直径大于所述第二环形壁的直径且小于所述第一安装口的口径。
  18. 根据权利要求7所述的牙膏管,其特征在于,所述驱动管远离所述活塞的一端具有第二安装口,所述驱动管靠近所述活塞的一端沿径向往内延伸形成第三环形壁,所述第三环形壁的内周表面设置有内螺纹,所述驱动杆的外周表面设置有外螺纹,所述驱动杆与所述第三环形壁螺纹连接,所述驱动杆远离所述活塞的一端设置有第三凸缘,所述第三凸缘可活动地安装在所述驱动管内,所述第三凸缘的直径大于所述第三环形壁的直径且小于所述第二安装口的口径。
  19. 根据权利要求7所述的牙膏管,其特征在于,所述驱动杆与所述活塞两者之一设置有插槽,所述驱动杆与所述活塞两者之另一设置有插头,所述驱动杆与所述活塞通过所述插头与所述插槽相配合进行插接。
  20. 一种牙膏管,其特征在于,包括:
    管体,所述管体的第一端具有输出口,所述管体的第二端具有驱动口;
    活塞,所述活塞沿轴向可移动地设置于所述管体内;
    驱动装置,所述驱动装置包括驱动杆组,所述驱动杆组由多个相互套装且沿轴向可伸缩的杆管件组成,所述驱动杆组的一端从所述驱动口伸入到所述管体内并与所述活塞连接,以使所述驱动杆组伸长或收缩驱动所述活塞在所述管体内沿轴向进行移动;以及
    动力装置,所述动力装置包括旋转组件,所述旋转组件包括蓄力转盘组件和卷簧,所述蓄力转盘组件可转动地设置于所述管体的第二端,所述蓄力转盘组件具有容置空间,所述卷簧设置于所述容置空间内,且所述卷簧的一端与所述驱动杆组的另一端连接,所述卷簧的另一端与所述蓄力转盘组件连接,以通过手动旋转所述蓄力转盘组件驱使所述卷簧收卷储存弹性力从而给所述驱动装置提供动力。
  21. 根据权利要求20所述的牙膏管,其特征在于,所述驱动杆组包括至少一个驱动杆和至少一个驱动管,所述驱动杆与所述驱动管通过螺纹连接方式相互可伸缩的套装。
  22. 根据权利要求21所述的牙膏管,其特征在于,所述驱动装置还包括导向结构,所述导向结构设置于所述管体与所述活塞之间,以通过所述导向结构引导所述活塞在所述管体内进行移动。
  23. 根据权利要求22所述的牙膏管,其特征在于,所述驱动杆组还包括连接筒,所述连接筒与所述驱动口对应设置,所述连接筒与所述驱动杆之间或者所述连接筒与所述驱动管之间通过螺纹连接方式相互可伸缩的套装。
  24. 根据权利要求22所述的牙膏管,其特征在于,所述导向结构包括凸起筋和导向槽,所述导向槽可滑动地嵌合于所述凸起筋上,所述管体与所述活塞两者之一具有凸起筋,所述管体与所述活塞两者之另一具有导向槽,且所述凸起筋与所述导向槽均沿所述管体的轴向进行延伸设置。
  25. 根据权利要求22所述的牙膏管,其特征在于,所述导向结构包括第一导向面和第二导向面,所述第一导向面与所述第二导向面的形状及尺寸大小相适配,所述管体的内壁表面具有第一导向面,所述活塞的外周表面具有第二导向面,以通过所述第一导向面和所述第二导向面相互配合从而引导所述活塞沿所述管体的轴向进行移动。
  26. 根据权利要求23所述的牙膏管,其特征在于,所述连接筒远离所述活塞的一端具有第一安装口,所述连接筒靠近所述活塞的一端沿径向往内延伸形成第二环形壁,所述第二环形壁的内周表面设置有内螺纹,所述驱动管的外周表面设置有外螺纹,所述驱动管与所述第二环形壁螺纹连接,所述驱动管远离所述活塞的一端设置有第二凸缘,所述第二凸缘可活动地安装在所述连接筒内,所述第二凸缘的直径大于所述第二环形壁的直径且小于所述第一安装口的口径。
  27. 根据权利要求23所述的牙膏管,其特征在于,所述驱动管远离所述活塞的一端具有第二安装口,所述驱动管靠近所述活塞的一端沿径向往内延伸形成第三环形壁,所述第三环形壁的内周表面设置有内螺纹,所述驱动杆的外周表面设置有外螺纹,所述驱动杆与所述第三环形壁螺纹连接,所述驱动杆远离所述活塞的一端设置有第三凸缘,所述第三凸缘可活动地安装在所述驱动管内,所述第三凸缘的直径大于所述第三环形壁的直径且小于所述第二安装口的口径。
  28. 根据权利要求23所述的牙膏管,其特征在于,所述驱动杆与所述活塞两者之一设置有插槽,所述驱动杆与所述活塞两者之另一设置有插头,所述驱动杆与所述活塞通过所述插头与所述插槽相配合进行插接。
  29. 根据权利要求20所述的牙膏管,其特征在于,所述动力装置还包括端盖组件,所述端盖组件与所述管体连接,所述旋转组件可转动地安装在所述端盖组件内,且所述蓄力转盘组件的一端从所述端盖组件内往外露出,以供使用者手动驱使所述蓄力转盘组件进行旋转。
  30. 根据权利要求29所述的牙膏管,其特征在于,所述端盖组件包括盖体,所述盖体的内腔通过隔板沿轴向分隔为第一管腔和第二管腔,所述第一管腔与所述管体连接,所述隔板具有穿孔,所述驱动杆组远离所述活塞的一端通过所述穿孔穿设于所述第二管腔内,所述旋转组件设置于所述第二管腔内。
  31. 根据权利要求20所述的牙膏管,其特征在于,所述动力装置还包括第一止动件,所述第一止动件可活动地设置于所述管体,以通过调节所述第一止动件运动至与所述驱动杆组相配合从而对所述驱动杆组进行周向定位。
  32. 根据权利要求20所述的牙膏管,其特征在于,所述动力装置还包括第一止动件,所述第一止动件可活动地设置于所述管体,且所述第一止动件的一端从所述管体内往外露出,所述第一止动件的另一端设置有至少一个凸起或凹陷,所述驱动杆组的另一端沿周向设置有多个凹陷或凸起,以使所述第一止动件的凹陷或凸起匹配所述所述驱动杆组的另一端从而对所述驱动杆组进行周向定位。
  33. 根据权利要求32所述的牙膏管,其特征在于,所述驱动杆组的外周表面沿轴向设置有多个凸起,多个所述凸起在所述驱动杆组的外周表面形成第一啮合齿,所述第一止动件对应所述第一啮合齿设有齿槽部,所述管体的管壁沿轴向设置有滑槽,所述第一止动件的一端设置有推钮,所述推钮可滑动地设置于所述滑槽内;
    其中,所述第一止动件具有第一位置和第二位置,以通过推动所述推钮在所述滑槽内进行滑动从而切换所述第一止动件于第一位置和第二位置,所述第一止动件位于第一位置时,所述齿槽部与所述第一啮合齿相啮合从而使得所述驱动杆组无法进行转动,所述第一止动件位于第二位置时,所述齿槽部脱离于所述第一啮合齿从而使得所述驱动杆组能够转动。
  34. 根据权利要求30所述的牙膏管,其特征在于,所述驱动杆组的另一端可拆卸地设置有驱动轴,所述驱动轴靠近所述活塞的一端设置有第四环形壁,所述第四环形壁的内周表面沿轴向设置有多个第二齿槽,所述驱动杆组的另一端的外周表面沿轴向设置有多个第一啮合齿,所述第一啮合齿与所述第二齿槽相匹配。
  35. 根据权利要求34所述的牙膏管,其特征在于,所述驱动杆组通过所述驱动轴远离所述活塞的一端穿设于所述第二管腔内并与所述卷簧连接,所述驱动轴开设有第一连接槽,所述容置空间的内壁开设有第二连接槽,所述卷簧的一端插接于所述第一连接槽中,所述卷簧的另一端插接于所述第二连接槽中,且所述卷簧环绕所述驱动轴的中轴线设置。
  36. 根据权利要求31所述的牙膏管,其特征在于,所述动力装置还包括第二止动件,所述第二止动件可活动地设置于所述管体的第二端,以通过调节所述第二止动件运动至与所述蓄力转盘组件相配合从而对所述蓄力转盘组件进行周向定位。
  37. 根据权利要求36所述的牙膏管,其特征在于,所述蓄力转盘组件包括齿轮盘,所述齿轮盘的外周表面沿轴向设置有多个第二啮合齿,所述第二止动件包括止动齿和手控部,所述第二啮合齿与所述止动齿相匹配,所述第二止动件可活动地设置于所述第二管腔内,且所述手控部从所述第二管腔内往外露出;
    其中,所述第二止动件具有第一状态和第二状态,以通过手动操作所述手控部驱使所述止动齿进行运动从而切换所述第二止动件于第一状态和第二状态,所述第二止动件位于第一状态时,所述止动齿与第二啮合齿相啮合从而使得所述蓄力转盘组件无法进行转动,所述第二止动件位于第二状态时,所述止动齿脱离于所述第二啮合齿从而使得所述蓄力转盘组件能够转动。
  38. 根据权利要求37所述的牙膏管,其特征在于,所述蓄力转盘组件还包括旋转体,所述旋转体可转动地安装在所述管体的第二端,所述旋转体设置有所述容置空间,所述齿轮盘设置于所述旋转体远离所述活塞的一端,所述齿轮盘远离所述活塞的一端设置有手动旋转部,所述手动旋转部从所述第二管腔内往外露出。
  39. 根据权利要求38所述的牙膏管,其特征在于,所述旋转体包括转轮环和安装部,所述转轮环内形成有所述容置空间,所述安装部可拆卸地设置于所述转轮环的一侧以封盖所述容置空间。
  40. 根据权利要求39所述的牙膏管,其特征在于,所述安装部设置有插板壁,所述转轮环设置有插装槽,所述安装部与所述转轮环通过所述插板壁插设于所述插装槽中从而进行可拆卸地连接。
  41. 一种牙膏管,其特征在于,包括:
    管体,所述管体的第一端具有输出口,所述管体的第二端具有驱动口;
    活塞,所述活塞沿轴向可移动地设置于所述管体内;
    驱动装置,所述驱动装置包括驱动杆组,所述驱动杆组由多个相互套装且沿轴向可伸缩的杆管件组成,且,所述驱动杆组的一端从所述驱动口伸入到所述管体内并与所述活塞连接,以通过所述驱动杆组伸长或收缩从而驱动所述活塞在所述管体内沿轴向进行移动;以及
    动力装置,所述动力装置包括驱动电机,所述驱动电机安装在所述管体的第二端,且所述驱动电机的输出轴与所述驱动杆组的另一端驱动连接,以使所述驱动电机通过所述驱动杆组驱动所述活塞进行移动。
  42. 根据权利要求41所述的牙膏管,其特征在于,所述驱动杆组包括至少一个驱动杆和至少一个驱动管,所述驱动杆与所述驱动管通过螺纹连接方式相互可伸缩的套装。
  43. 根据权利要求42所述的牙膏管,其特征在于,所述驱动装置还包括导向结构,所述导向结构设置于所述管体与所述活塞之间,以通过所述导向结构引导所述活塞在所述管体内进行移动。
  44. 根据权利要求43所述的牙膏管,其特征在于,所述导向结构包括凸起筋和导向槽,所述导向槽可滑动地嵌合于所述凸起筋上,所述管体与所述活塞两者之一具有凸起筋,所述管体与所述活塞两者之另一具有导向槽,且所述凸起筋与所述导向槽均沿所述管体的轴向进行延伸设置。
  45. 根据权利要求43所述的牙膏管,其特征在于,所述导向结构包括第一导向面和第二导向面,所述第一导向面与所述第二导向面的形状及尺寸大小相适配,所述管体的内壁表面具有第一导向面,所述活塞的外周表面具有第二导向面,以通过所述第一导向面和所述第二导向面相互配合从而引导所述活塞沿所述管体的轴向进行移动。
  46. 根据权利要求43所述的牙膏管,其特征在于,所述驱动杆组还包括连接筒,所述连接筒与所述驱动杆之间或者所述连接筒与所述驱动管之间通过螺纹连接方式相互可伸缩的套装,所述连接筒与所述驱动电机驱动连接,以驱动所述连接筒进行旋转。
  47. 根据权利要求46所述的牙膏管,其特征在于,所述管体的内周表面设置有第二止挡环,所述连接筒的外周表面设置有第五凸缘,所述第五凸缘与所述第二止挡环相抵接。
  48. 根据权利要求41所述的牙膏管,其特征在于,所述管体包括可拆卸地相互套装的内管和外管。
  49. 根据权利要求46所述的牙膏管,其特征在于,所述连接筒远离所述活塞的一端具有第一安装口,所述连接筒靠近所述活塞的一端沿径向往内延伸形成第二环形壁,所述第二环形壁的内周表面设置有内螺纹,所述驱动管的外周表面设置有外螺纹,所述驱动管与所述第二环形壁螺纹连接,所述驱动管远离所述活塞的一端设置有第二凸缘,所述第二凸缘可活动地安装在所述连接筒内,所述第二凸缘的直径大于所述第二环形壁的直径且小于所述第一安装口的口径。
  50. 根据权利要求46所述的牙膏管,其特征在于,所述驱动管远离所述活塞的一端具有第二安装口,所述驱动管靠近所述活塞的一端沿径向往内延伸形成第三环形壁,所述第三环形壁的内周表面设置有内螺纹,所述驱动杆的外周表面设置有外螺纹,所述驱动杆与所述第三环形壁螺纹连接,所述驱动杆远离所述活塞的一端设置有第三凸缘,所述第三凸缘可活动地安装在所述驱动管内,所述第三凸缘的直径大于所述第三环形壁的直径且小于所述第二安装口的口径。
  51. 根据权利要求46所述的牙膏管,其特征在于,所述驱动杆与所述活塞两者之一设置有插槽,所述驱动杆与所述活塞两者之另一设置有插头,所述驱动杆与所述活塞通过所述插头与所述插槽相配合进行插接。
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