Battery Pack and Processing System
The battery pack addresses the issue of temperature-induced damage by using temperature sensors and a control device to manage extreme conditions, ensuring a longer lifespan and improved safety for pouch-type cells.
Patent Information
- Application Number
- JP2020081680
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Priority Date
- 2019-05-10
- Filing Date
- 2020-05-07
- Publication Date
- 2025-10-02
- Estimated Expiration
- 2040-05-07
AI Technical Summary
Existing battery packs for electrically powered processing devices face challenges in maintaining a long lifespan due to safety-critical situations arising from overcooling and overheating conditions, which can damage pouch-type cells.
A battery pack design incorporating external and internal temperature sensors, a control device, and a stack limiting structure to monitor and manage temperature extremes, preventing discharge or charge under unsafe conditions, and using insulating materials to cushion cell expansion.
The design effectively protects pouch-type cells from damage, ensuring a longer lifespan and preventing safety-critical situations, thereby enhancing the battery pack's reliability and performance.
Smart Images

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Abstract
Description
[Technical Field]
[0001] The present invention relates to a battery pack for supplying electric driving power to a powered processing device, and to a processing system including such a battery pack and a powered processing device. Summary of the Invention
[0002] The present invention is based on the problem of providing a battery pack for supplying an electric driving force to an electrically powered processing device, a processing system including such a battery pack and an electrically powered processing device, the battery pack having improved characteristics and in particular a relatively long lifespan.
[0003] The present invention solves the problem by providing a battery pack having the features of claim 1 and a processing system having the features of claim 13. Advantageous developments and / or configurations of the invention are set out in the dependent claims.
[0004] The battery pack of the present invention is designed or configured to supply, particularly automatically, electric driving power to electrically powered processing equipment, particularly landscaping, forestry, and / or construction equipment. The battery pack includes a stack limiting structure, a plurality of pouch-type cells, an external temperature sensor, particularly an electric external temperature sensor, and a control device, particularly an electric control device. The pouch-type cells are arranged in a stack, particularly one on top of the other, or stacked one on top of the other. The stack is disposed within the stack limiting structure. The external temperature sensor is arranged and designed or configured to measure, particularly automatically, a value of the external temperature of the stack, particularly a temperature outside the stack at a boundary or edge of the stack or stack limiting structure and / or outside the stack limiting structure. The control device is designed or configured to compare, particularly automatically, the measured external temperature and / or a quantity based on the measured external temperature with at least one temperature comparison quantity. The at least one temperature comparison quantity is dependent, particularly predetermined, on at least one of the pouch-type cells. Furthermore, the control device is designed and configured to control, particularly automatically, the battery pack depending on the result of the comparison.
[0005] The arrangement of external temperature sensors allows measurements to be taken at locations where the external temperature of the stack may be lowest or coldest, e.g., in winter, or highest or hottest, e.g., in summer, particularly before discharging or charging the battery pack, particularly the pouch-type cells.
[0006] The control device enables protection of the pouch cell, and thus the battery pack, from damage due to discharge or charge under conditions of overcooling and / or overheating of the pouch cell.
[0007] This makes it possible to limit or completely prevent safety-critical situations in the pouch-type cells and therefore in the battery pack.
[0008] This allows for a relatively long lifespan of the pouch-type cells and therefore a relatively long lifespan of the battery pack.
[0009] In particular, the pouch-shaped cells can be configured to supply driving power to a processing device. Additionally or alternatively, the pouch-shaped cells can be storage cells or battery cells, or in each case, individual rechargeable storage elements of electrical energy operating on electrochemical principles. In particular, the pouch-shaped cells can be lithium-ion storage cells. Additionally or alternatively, the pouch-shaped cells can be electrically interconnected, in particular connected in series or in parallel. Additionally or alternatively, the pouch-shaped cells can be flat cells. Additionally or alternatively, the surfaces of the pouch-shaped cells can be rectangular. Additionally or alternatively, the pouch-shaped cells can be similar or identical, in particular of the same type and / or structure. Additionally or alternatively, the stack can be a rectangular parallelepiped. The pouch-shaped cells can be arranged in the stack with their respective main faces parallel to each other and / or perpendicular to the stacking direction.
[0010] The external temperature sensor may be located at a corner of the stack or stack limiting structure. Additionally or alternatively, at an edge or corner may mean closer to the edge or corner than the center, particularly at a distance of up to 20 millimeters (mm), particularly at a distance of up to 10 mm, particularly at a distance of up to 5 mm from the edge or corner. Additionally or alternatively, the external temperature sensor may have a thermal connection to the stack, particularly the pouch-type cell. Additionally or alternatively, the external temperature sensor may be located at a distance of up to 20 millimeters (mm), particularly at a distance of up to 10 mm, particularly at a distance of up to 5 mm from the stack, particularly the pouch-type cell. In particular, the external temperature sensor may be in physical contact with the stack limiting structure and / or the stack, particularly the pouch-type cell. Additionally or alternatively, the external temperature sensor may be an NTC thermistor.
[0011] The at least one temperature comparison value may depend on the electrochemistry of the pouch cell and may in particular be predetermined. Additionally or alternatively, the at least one temperature comparison value may be at least one external temperature limit value.
[0012] The control device may be configured to control, in particular stop, the output of electric drive power from the battery pack and / or the input of charging power to the battery pack when the measured external temperature and / or a quantity based on the measured external temperature falls below, reaches, or exceeds, in particular, at least one temperature comparison value, in particular at least one external temperature limit value.
[0013] In a development of the invention, the external temperature sensor is arranged at an edge, in particular at a corner, of the outermost pouch-type cell.
[0014] Additionally or alternatively, the at least one external temperature comparison value is dependent on the outermost pouch-type cell, in particular the outermost pouch-type cell, and is in particular predetermined.
[0015] In particular, the outermost pouch-shaped cell may be at the top of the stack, or at the top surface of the stack, or at the bottom of the stack, or at the bottom surface of the stack, especially in the stacking direction.
[0016] In a further development of the invention, the stack limiting structure is a stack housing, in particular a large stack housing, which makes it possible to limit or completely prevent mechanical stress on the surrounding area in the event of a rupture of the pouch-type cells. In particular, the stack can be a rectangular parallelepiped. Additionally or alternatively, the stack housing can be made partially or entirely of aluminum.
[0017] In a further development of the invention, the battery pack comprises an internal temperature sensor, in particular an electrical internal temperature sensor. The internal temperature sensor is arranged and designed or configured to measure, in particular automatically measure, an internal temperature, in particular a temperature value, of the stack, in particular in the stack direction, in particular between the two central pouch-type cells and / or in the center of the surface of the pouch-type cells. The control device is designed or configured to compare, in particular automatically, the measured internal temperature and / or a quantity based on the measured internal temperature with at least one temperature comparison value, in particular an additional temperature comparison value. The at least one temperature comparison value depends on at least one of the pouch-type cells, in particular the central one of the pouch-type cells, and is in particular predetermined. Furthermore, the control device is designed and configured to control, in particular automatically, the battery pack depending on the result of the comparison.
[0018] The arrangement of internal temperature sensors allows measurements to be taken at points where the internal temperature of the stack may be lowest or coldest, e.g., in summer, or highest or hottest, e.g., in winter, particularly before discharging or charging the battery pack, particularly the pouch-type cells.
[0019] In particular, the internal temperature sensor may be different from the external temperature sensor. Additionally or alternatively, the internal temperature sensor may be an NTC thermistor. Additionally or alternatively, centrally may mean closer to the center than the edge, in particular at most 20 mm, in particular at most 10 mm, in particular at most 5 mm from the center. Additionally or alternatively, there may be at least one temperature comparison value, in particular an additional temperature comparison value, at least one internal temperature limit value. Additionally or alternatively, the quantity may be based on a measured external temperature and a measured internal temperature, in particular the difference between the measured internal temperature and the measured external temperature. The at least one temperature comparison value may be a temperature difference comparison value, in particular a temperature difference value. Additionally or alternatively, the control device may be configured to control, in particular stop, the output of electric drive power from the battery pack and / or the input of charging power to the battery pack when the measured internal temperature and / or a quantity based on the measured internal temperature falls below, reaches or exceeds at least one temperature comparison value, in particular at least one external temperature limit value and / or temperature differential value.
[0020] In a further development of the invention, the battery pack comprises a sensor array. The sensor array is arranged in the stack. Furthermore, the sensor array is designed or configured to extend over a large portion of the surface, in particular the surface of the pouch-type cells, and in particular so that the height of the stack in the stacking direction is substantially equal over its extension. Furthermore, the sensor array has an internal temperature sensor. This makes it possible to reduce or completely prevent, in particular adverse effects, of the sensor array on the pouch-type cells, in particular on the flexible outer shells of the pouch-type cells. In particular, deformations, in particular localized deformations, and the resulting loads or stresses, in particular localized loads, of the pouch-type cells are reduced or completely prevented. In particular, a large portion of the surface may mean at least 70 percent (%), in particular at least 80%, in particular at least 90% of the surface. In particular, the sensor array may extend over the entire surface of the pouch-type cells. Additionally or alternatively, the sensor array may have a plurality of gaps over its extension. Additionally or alternatively, the height is limited by a stack limiting structure. Additionally or alternatively, approximately equal may mean an error of at most 5%, in particular at most 2%, in particular at most 1%. Additionally or alternatively, the height may be equal or uniform over its extension. Additionally or alternatively, the sensor array may be arranged between two pouch-shaped cells and configured such that the distance between the two pouch-shaped cells over its extension is approximately equal. Additionally or alternatively, the sensor array may have an equal, in particular approximately equal, in particular constant, array thickness over its extension, in particular in the stacking direction. Additionally or alternatively, the sensor array may be rectangular.
[0021] In a further development of the invention, the sensor array includes a pressure sensor, in particular an electrical pressure sensor. The pressure sensor is designed or configured to detect, in particular automatically detect, in particular measure, a compressive force acting on the pouch-type cells, in particular in the stacking direction. The control device is designed or configured to compare, in particular automatically, the detected, in particular measured compressive force and / or a quantity based on the detected compressive force with a pressure limit value. The pressure limit value is predetermined by at least one of the pouch-type cells. Furthermore, the control device is designed and configured to control, in particular automatically, the battery pack depending on the result of the comparison. The pressure sensor allows for the detection, in particular measurement, of any expansion of the pouch-type cells in the stacking direction. In particular, expansion, in conjunction with a limited stack height, can cause an increase in compressive force. The sensor array provides a synergistic effect. In particular, the pressure sensor can be configured to detect compressive forces acting on the pouch-type cells perpendicular to the surface and / or main surface. Additionally or alternatively, the pressure sensor may be configured, in particular as a mechanical switch, for qualitative detection of a pressing force or for quantitative measurement of a pressing force, in particular a value of the pressing force. Additionally or alternatively, the control device may be configured to control, in particular stop, the output of electric driving force from the battery pack and / or the input of charging power to the battery pack when the detected, in particular the measured, pressing force and / or a quantity based on the detected pressing force reaches or exceeds a pressure limit value. Additionally or alternatively, the control device may be configured to obtain a health status of the battery pack according to the external temperature and / or the internal temperature and / or the pressing force, and control the battery pack according to the obtained health status.
[0022] In a development of the invention, the control device is designed or configured to control, particularly automatically control, particularly shut down, the output of electric drive power and / or the input of charging power, particularly said charging power. Furthermore, the control device is arranged on a side of the stack, particularly on the stack, particularly completely and / or only on the stack. The external temperature sensor is arranged on the opposite-facing side of the stack, particularly completely and / or only on the most remote edge of the stack or stack limiting structure. This allows the external temperature of the stack to be measured at a position where it can be affected only to a small extent or not at all by the control device, particularly by the heat of the control device. In particular, the control device can be arranged outside the stack limiting structure.
[0023] In a development of the invention, the battery pack comprises a plurality of battery pack contacts. The battery pack contacts are designed or configured to electrically connect the battery pack and the processing device to each other in order to supply the processing device with electric driving power from the battery pack. Furthermore, the battery pack comprises a battery pack contact holder. The battery pack contact holder holds the battery pack contacts and the external temperature sensor. Furthermore, the battery pack contact holder is arranged on the stack limiting structure. The battery pack contact holder provides a synergistic effect. In particular, the battery pack contacts may be arranged on a face of the stack opposite to the control device.
[0024] In a development of the invention, the battery pack comprises a battery pack housing. The pouch-type cells, and in particular the stack limiting structure, are arranged in the battery pack housing. Furthermore, the battery pack comprises at least one air-cooling circuit, the air-cooling circuit including a plurality of air inlets and a plurality of air outlets for a cooling air flow within the battery pack housing, the cooling air flow passing from the plurality of air inlets on the pouch-type cells, in particular on the stack limiting structure, to the plurality of air outlets to cool the pouch-type cells. An external temperature sensor is arranged in the air-cooling circuit between the plurality of air inlets and the plurality of air outlets, in particular opposite the plurality of air inlets and / or the plurality of air outlets. In particular, the external temperature sensor may be in contact, in particular direct contact, with the air or cooling air flow of the air-cooling circuit.
[0025] In a development of the invention, the stack limiting structure has a thermal connection to the pouch cell and is thermally conductive, thereby allowing heat dissipation from the pouch cell to the outside.
[0026] In a further development of the invention, the battery pack comprises at least one insulating material. The at least one insulating material is in each case arranged between two pouch-shaped cells and extends over a large portion of the surface of the pouch-shaped cells. This makes it possible to reduce or completely prevent heat dissipation between the pouch-shaped cells. In particular, the at least one insulating material may comprise, and in particular be, a foam material, in particular a sponge rubber. Additionally or alternatively, the at least one insulating material may be at least one cushioning element. The at least one cushioning element may be configured to cushion expansion of the pouch-shaped cells, in particular in the stacking direction, over a cushioning thickness of the at least one cushioning element, if present. This may make it possible to absorb or compensate for slight, particularly insignificant, expansion of the pouch-shaped cells caused by aging, if present.
[0027] In a development of the invention, the battery pack, in particular the pouch-type cells, has a maximum electric drive power of at least 1 kilowatt (kW), in particular at least 2 kW, and / or at most 10 kW, in particular at most 5 kW.
[0028] Additionally or alternatively, the battery pack, in particular the pouch-type cells, have a nominal voltage, in particular an electrical nominal voltage, of at least 10 volts (V), in particular at least 20V, and / or at most 100V, in particular at most 50V.
[0029] Additionally or alternatively, the battery pack, in particular the pouch-type cells, have a maximum energy capacity, in particular a maximum electrical energy capacity, of at least 100 watt-hours (Wh), in particular at least 200 Wh, and / or at most 1000 Wh, in particular at most 500 Wh.
[0030] Additionally or alternatively, the battery pack has a mass of at least 0.5 kilograms (kg), particularly at least 1 kg, and / or at most 10 kg, particularly at most 5 kg.
[0031] Additionally or alternatively, the battery pack has a height, particularly in the stack direction, of at least 2.5 centimeters (cm) and / or at most 10 cm, and / or a width of at least 5 cm and / or at most 20 cm, and / or a depth of at least 7.5 cm and / or at most 30 cm.
[0032] The processing system of the present invention comprises one battery pack, particularly the battery pack described above, and one electrically powered processing device, particularly the electrically powered processing device described above, which are configured to be electrically connected to each other so as to supply, particularly automatically supply, electric driving power from the battery pack to the processing device.
[0033] In particular, the treatment system can be a landscaping, forestry, and / or construction treatment system. Additionally or alternatively, the treatment device can be a landscaping, forestry, and / or construction treatment device. Additionally or alternatively, the treatment device can be a manually operated, in particular road-guided or portable, treatment device. In particular, a manually operated, in particular portable treatment device can mean that the treatment device can have a maximum mass of 50 kilograms (kg), in particular 20 kg, in particular 10 kg.
[0034] Additionally or alternatively, the processing device may include an electric drive motor. Additionally or alternatively, the battery pack and the processing device may be configured to be removably electrically connected to one another, particularly without the use of tools and / or without destruction, particularly by using a plug connector. Additionally or alternatively, the battery pack and the processing device may be configured to be removably mechanically connected to one another, particularly without the use of tools and / or without destruction. In particular, the processing device may be configured to hold the battery pack.
[0035] In a development of the invention, the processing device comprises a battery compartment, in particular a battery chamber, which is designed or configured to accommodate a battery pack.
[0036] In a development of the invention, the treatment device is a saw, a pole pruner, a clearing saw, a brush cutter, a hedge shears, a hedge cutter, a blower device, a leaf blower, a lopper, a cut-off grinder, a sweeper device, a roll sweeper, a brush sweeper, a lawn mower, a dethatcher or a grass cutter.
[0037] Further advantages and aspects of the present invention can be gathered from the claims and from the following description of preferred exemplary embodiments of the invention, which are described herein below with reference to the drawings. [Brief explanation of the drawings]
[0038] [Figure 1] 1 shows a perspective view of a processing system of the present invention including a battery pack of the present invention and powered processing devices in the form of a saw, cut-off grinder and blower device. [Figure 2] 2 shows an exploded view of the battery pack of FIG. 1. [Figure 3] 2 shows a perspective view of a first stack limiting structure of the battery pack of FIG. 1. [Figure 4] 2 shows a perspective view of a first stack limiting structure, a pouch-type cell, and a sensor array of the battery pack of FIG. 1. [Figure 5] 2 shows a perspective view of a first stack limiting structure, pouch-type cells arranged in a stack, and a sensor array of the battery pack of FIG. 1. [Figure 6] 2 shows a perspective view of a first stack limiting structure, a stack, and a second stack limiting structure of the battery pack of FIG. 1; [Figure 7] 2 shows a perspective view of a first stack limiting structure, a stack, a second stack limiting structure, and a portion of a control device of the battery pack of FIG. 1. [Figure 8] 2 shows a perspective view of the first stack limiting structure, the stack, the second stack limiting structure, and the control device of the battery pack of FIG. 1. [Figure 9] 2 shows a perspective view of the back of the first stack limiting structure, the stack, the second stack limiting structure, the control device, and the external temperature sensor of the battery pack of FIG. 1. [Figure 10] 2 is a perspective view of an external temperature sensor and a battery pack contact holder of the battery pack of FIG. 1. [Figure 11] 2 shows a perspective view of a battery pack housing of the battery pack of FIG. 1. [Figure 12] 2 illustrates an alternative sensor arrangement for the battery pack of FIG. 1. DETAILED DESCRIPTION OF THE INVENTION
[0039] 1-12 show a battery pack 1 of the present invention for supplying an electric driving force AL to an electrically powered processing device 101. The battery pack 1 includes a stack limiting structure 10, a plurality of pouch-type cells 21, an external temperature sensor 37, and a control device 50. As shown in FIG. 5, the pouch-type cells 21 are arranged in a stack 20. The stack 20 is arranged within the stack limiting structure 10. As shown in FIGS. 9 and 10, the external temperature sensor 37 is positioned and configured to measure an external temperature T37 of the stack 20 outside the stack 20 and / or outside the stack limiting structure 10 at an edge 20R, 10R, particularly a corner 20E, 10E, of the stack 20 or the stack limiting structure 10. As shown in FIGS. 7 and 8, the control device 50 is configured to compare the measured external temperature T37 and / or a quantity based on the measured external temperature T37 with at least one temperature comparison value T37G. The at least one temperature comparison value T37G is particularly predetermined and depends on at least one of the pouch-type cells 21. Furthermore, the control device 50 is configured to control the battery pack 1 depending on the result of the comparison.
[0040] In the exemplary embodiment shown, the battery pack 1 includes ten pouch-type cells 21. In an alternative exemplary embodiment, the battery pack may include at least two pouch-type cells.
[0041] Furthermore, in the exemplary embodiment shown, the pouch-shaped cells 21 extend in directions x and y, respectively, which are orthogonal to the stacking direction z.
[0042] Furthermore, in the exemplary embodiment shown, the external temperature sensor 37 has a thermal connection to the stack 20, and in particular to the pouch-type cells 21. In particular, the external temperature sensor 37 is in physical contact with the stack limiting structure 10.
[0043] Additionally, in the exemplary embodiment shown, the controller 50 is electrically connected to an external temperature sensor 37 .
[0044] Additionally, in the exemplary embodiment shown, controller 50 includes at least one circuit board.
[0045] Furthermore, the external temperature sensor is disposed on the outermost edge 20R, particularly the corner 20E, of the uppermost pouch-type cell 21.
[0046] Additionally or alternatively, the at least one temperature comparison value T37G depends on the outermost pouch-shaped cell 21, in particular on the outermost pouch-shaped cell 21, in particular is predetermined.
[0047] Furthermore, as shown in FIG. 6, the stack limiting structure 10 includes a stack housing, particularly a large stack housing.
[0048] In the exemplary embodiment shown, a stack limiting structure or stack housing 10 comprises a first housing part 11 and a second housing part 12. A stack 20 is disposed between the first housing part 11 and the second housing part 12. The first housing part 11 and the second housing part 12 are mechanically interconnected by at least one material joint engagement 10S, in particular a welded connection.
[0049] In particular, in the exemplary embodiment shown, stack limiting structure or stack housing 10 has five housing walls 13, 14, 15, 16, 17. First housing part 11 has a first housing wall or top wall 13, housing wall 15, particularly a perimeter wall, and housing wall 17, particularly a rear wall. Second housing part 12 has a second housing wall or bottom wall 14, and housing wall 16, particularly a perimeter wall.
[0050] Furthermore, in the exemplary embodiment shown, the height 20H of the stack 20, particularly in the stacking direction z, is limited by a stack limiting structure or stack housing 10.
[0051] In particular, the second stack limiting structure or second housing wall 14 is arranged at a distance 10A opposite the first stack limiting structure or first housing wall 13. The stack 20 is arranged between the first stack limiting structure or first housing wall 13 and the second stack limiting structure or second housing wall 14. In particular, the height 20H of the stack 20 in the stacking direction z is limited by the first stack limiting structure or first housing wall 13 and the second stack limiting structure or second housing wall 14, in particular by the distance 10A therebetween.
[0052] Furthermore, in the exemplary embodiment shown, the first stack limiting structure or housing wall 13 and the second stack limiting structure or housing wall 14 extend in directions x and y, respectively, which are orthogonal to the stacking direction z. In other words, the second stack limiting structure or housing wall 14 is arranged with, in particular, a main surface parallel to the first stack limiting structure or housing wall 13, in particular a main surface of the first stack limiting structure or housing wall 13. Furthermore, in the exemplary embodiment shown, the distance 10A is in the stacking direction z. Furthermore, in the exemplary embodiment shown, the height 20H is equal to the distance 10A.
[0053] Furthermore, in the exemplary embodiment shown, the external temperature sensor 37 is located at an edge 13R, in particular a corner 13E, of the first stack limiting structure or housing wall 13.
[0054] In an alternative exemplary embodiment, the external temperature sensor may be located at an edge, particularly a corner, of the second stack limiting structure or the housing wall.
[0055] 4 and 12, the battery pack 1 further includes an internal temperature sensor 36. The internal temperature sensor 36 is arranged and configured to measure an internal temperature T36 of the stack 20, particularly in the stack direction z, in the stack 20, particularly between the two central pouch-type cells 21, and / or an internal temperature T36 of the center 21FM of the surface 21F of the pouch-type cell 21. The control device 50 is configured to compare the measured internal temperature T36 and / or a quantity based on the measured internal temperature T36 with at least one, particularly a further temperature comparison value T36G. The at least one temperature comparison value T36G depends on at least one of the pouch-type cells, particularly the central pouch-type cell 21, and is particularly predetermined. The control device 50 is further configured to control the battery pack 1 according to the result of the comparison.
[0056] In other words, the internal temperature sensor 36 is located at the intersection of the diagonal lines of the stack 20 .
[0057] In the exemplary embodiment shown, the quantity is the difference between the measured internal temperature T36 and the measured external temperature T37. The at least one temperature comparison value is an external temperature limit T37G, an internal temperature limit T36G, and a temperature difference value. In alternative exemplary embodiments, the at least one temperature comparison value can be an external temperature limit, an internal temperature limit, and / or a temperature difference comparison value, in particular a temperature difference value.
[0058] Additionally, in the exemplary embodiment shown, the controller 50 is electrically connected to the internal temperature sensor 36 .
[0059] The battery pack 1 further includes a sensor array 30. The sensor array 30 is disposed in the stack 20. The sensor array 30 extends over most of the surface 21F of the pouch-type cell 21, and is configured so that the height 20H of the stack 20, particularly in the stack direction z, is substantially uniform throughout its extension. The sensor array 30 further includes an internal temperature sensor 36.
[0060] In the exemplary embodiment shown, the sensor array 30 extends in directions x and y that are orthogonal to the stacking direction z. Furthermore, in the exemplary embodiment shown, the sensor array 30 extends across the entire surface 21F of the pouch-type cell 21. Furthermore, in the exemplary embodiment shown, the sensor array 30 has a uniform arrangement thickness 30D across its extension, particularly in the stacking direction z.
[0061] In the views of Figures 1 to 11, the sensor array 30 is of the one-piece type.
[0062] 12 , the sensor array 30 includes a compensation spacer 32. The compensation spacer 32 is disposed in the stack 20. Furthermore, the compensation spacer 32 is separate from the internal temperature sensor 36. Furthermore, the compensation spacer 32 has at least one sensor recess 33, 38. The internal temperature sensor 36 is disposed in the sensor recess 38. A spacer thickness 32D of the compensation spacer 32 and a sensor thickness 36D of the internal temperature sensor 36 are substantially equal, particularly in the stack direction z.
[0063] 1-11, the sensor array 30 is a film 35. In FIG. 12, the sensor array 30 includes a film 34, and in particular the compensating spacer 32 is a film 34.
[0064] Furthermore, the sensor arrangement 30 has a pressure sensor 31. The pressure sensor 31 is configured to detect, in particular measure, a compressive force DF acting on the pouch-type cells 21, in particular in the stacking direction z. The control device 50 is configured to compare the detected, in particular measured, compressive force DF and / or a quantity based on the detected compressive force DF with a pressure limit value DFG. The pressure limit value DFG is predetermined by at least one of the pouch-type cells 21. Furthermore, the control device 50 is configured to control the battery pack 1 depending on the result of the comparison.
[0065] 12, the pressure sensor 31 is disposed in the sensor recess 33. The sensor thickness 31D of the pressure sensor 31 is approximately equal to the spacer thickness 32D of the compensation spacer 32 and the sensor thickness 36D of the internal temperature sensor 36, particularly in the stacking direction z.
[0066] Furthermore, in the illustrated exemplary embodiment, the pressure sensor 31 is disposed at the center 21FM of the surface 21F of the pouch-type cell 21.
[0067] Furthermore, in the exemplary embodiment shown, the controller 50 is electrically connected to the pressure sensor 31 .
[0068] Furthermore, in the illustrated exemplary embodiment, the control device 50 is configured to measure the voltage of the pouch-type cell 21 and to control the battery pack 1 in response to the measured voltage. In particular, the control device 50 is electrically connected to the pouch-type cell 21, and in particular to the cell tab 22 of the pouch-type cell 21.
[0069] Furthermore, in the illustrated exemplary embodiment, the battery pack 1 includes a power input / output detection device 51. The power input / output detection device 51 is configured to detect an output electric driving force AL from the battery pack 1 and / or detect an input charging power LL to the battery pack 1 per time t. The control device 50 is configured to change, in particular increase, the pressure limit value DFG depending on the detected output driving force AL and / or the detected input charging power LL per time t.
[0070] Furthermore, the control device 50 is configured to control, in particular stop, the output of the electric drive power AL and / or the input of the charging power LL. Furthermore, the control device 50 is arranged on the stack 20, in particular on a surface 20V, in particular the front surface, of the stack 20. The external temperature sensors 37 are arranged on the opposite-facing surface 20O of the stack 20, in particular the top surface, in particular at the most distant edges 20R, 10R of the stack 20 or the stack limit structure 10.
[0071] The battery pack 1 further includes a plurality of battery pack contacts 71. The battery pack contacts 71 are configured to electrically connect the battery pack 1 and the processing device 101 to each other in order to supply an electric driving force AL from the battery pack 1 to the processing device 101. The battery pack 1 further includes a battery pack contact holder 70. The battery pack contact holder 70 holds the battery pack contacts 71 and the external temperature sensor 37. The battery pack contact holder 70 is further disposed on the stack limit structure 10.
[0072] 11 , the battery pack 1 further includes a battery pack housing 80. The pouch-type cells 21, particularly the stack limiting structure 10, the external temperature sensor 37, the internal temperature sensor 36, the pressure sensor 31, the control device 50, the power input / output detection device 51, and the battery pack contact holder 70 are disposed within the battery pack housing 80. The battery pack 1 further includes at least one air-cooling circuit 90 within the battery pack housing 80, the air-cooling circuit 90 including a plurality of air inlets 91 and a plurality of air outlets 92 for a cooling air flow LS, and the cooling air flow LS passes from the plurality of air inlets 91 to the plurality of air outlets 92 on the pouch-type cells 21, particularly the stack limiting structure 10, to cool the pouch-type cells 21. The external temperature sensor 37 is disposed within the air-cooling circuit 90 between the plurality of air inlets 91 and the plurality of air outlets 92, particularly facing the plurality of air inlets 91 and / or the plurality of air outlets 92.
[0073] If the measured external temperature T37 is relatively low, the pouch-type cells 21 do not need to be cooled by a cooling air flow LS, particularly a forced cooling air flow LS, especially before charging, even if the measured internal temperature T36 is relatively high. This allows for relatively good heat distribution of the pouch-type cells 21 in the stack 20, especially as opposed to cooling.
[0074] Additionally or alternatively, measuring the external temperature T37 and the internal temperature T36, and in particular detecting the thermal resistance of the pouch-type cells 21 in the stack 20, allows prediction of when charging may begin and / or end, or how long discharging may continue before overheating of the pouch-type cells 21 occurs.
[0075] Furthermore, the stack limiting structure or stack housing 10 has a thermal connection to the pouch-type cells 21 and is thermally conductive.
[0076] In particular, the stack limiting structure or stack housing 10, particularly the housing walls 13, 14, 15, 16, 17, is in physical contact with the pouch-shaped cells 21, and a thermally conductive paste is provided between the pouch-shaped cells 21 and the housing walls 15, 16, 17.
[0077] Additionally, in the exemplary embodiment shown, stack limiting structure or stack housing 10 has, among other things, a common structure or housing opening 10O defined by housing walls 13, 14, 15, 16. Pouch-type cells 21 are configured and arranged within stack housing 10 in stack 20 such that cell tabs 22 are positioned on a front or common tab face 20V of stack 20 over common structure or housing opening 10O.
[0078] Furthermore, the battery pack 1 has at least one insulating material 60. The at least one insulating material 60 is disposed between each of the two pouch-type cells 21 and extends over most of the surface 21F of the pouch-type cell 21.
[0079] In the exemplary embodiment shown, the battery pack 1 has five insulators 60. In an alternative exemplary embodiment, the battery pack may have only a single insulator.
[0080] Furthermore, in the exemplary embodiment shown, the at least one insulating material 60 extends in directions x and y that are orthogonal to the stacking direction z. Furthermore, in the exemplary embodiment shown, the at least one insulating material 60 extends over the entire surface 21F of the pouch-shaped cell 21.
[0081] Furthermore, in the exemplary embodiment shown, the at least one insulating material 60 is a cushioning element. The at least one cushioning element 60 is configured to cushion the expansion of the pouch-type cells 21, if present, in particular across a cushioning thickness 60D of the at least one cushioning element 60 in the stacking direction z.
[0082] In particular, in the exemplary embodiment shown, the at least one cushioning element 60 has, in particular before cushioning, a uniform cushioning thickness 60D in the stack direction z over its extension.
[0083] When the cell thickness 21D of the pouch-type cell 21 increases due to the expansion of the pouch-type cell 21, the expansion cannot be buffered by at least one buffer element 60, and as a result, the pressing force DF increases, and this phenomenon is detected by the pressure sensor 31.
[0084] Furthermore, in the exemplary embodiment shown, the cell tab 22 and the control device 50 are surrounded by a casting material, particularly a thermally conductive casting material, which extends to the outer shell of the pouch-shaped cell 21.
[0085] Furthermore, in the exemplary embodiment shown, the battery pack 1 has a maximum electric drive power MAL of 3 kW. In alternative exemplary embodiments, the battery pack may have a maximum electric drive power of at least 1 kW and / or at most 10 kW.
[0086] Furthermore, in the exemplary embodiment shown, the battery pack 1 has a nominal voltage NSP of 36 V. In alternative exemplary embodiments, the battery pack may have a nominal voltage of at least 10 V and / or at most 100 V.
[0087] Additionally, in the exemplary embodiment shown, the battery pack 1 has a maximum energy capacity MEI of 337 Wh. In alternative exemplary embodiments, the battery pack may have a minimum maximum energy capacity of 100 Wh and / or a maximum maximum energy capacity of 1000 Wh.
[0088] Furthermore, in the exemplary embodiment shown, the battery pack 1 has a mass m1 of 2 kg. In alternative exemplary embodiments, the battery pack may have a minimum mass of 0.5 kg and / or a maximum mass of 10 kg.
[0089] Furthermore, in the exemplary embodiment shown, the battery pack 1 has a height 1H of 5 cm, particularly in the stack direction z, a width 1B of 10 cm, particularly in the direction x, and a depth 1T of 15 cm, particularly in the direction y. In alternative exemplary embodiments, the battery pack may have a height of at least 2.5 cm and / or at most 10 cm, and / or a width of at least 5 cm and / or at most 20 cm, and / or a depth of at least 7.5 cm and / or at most 30 cm.
[0090] 1 shows a processing system 100 of the present invention. The processing system 100 includes a battery pack 1 and an electrically powered processing device 101. The battery pack 1 and the electrically powered processing device 101 are configured to be electrically connected to each other, and in particular, are electrically connected to each other, so as to provide the processing device 101 with an electric driving force AL from the battery pack 1.
[0091] In particular, the processing device 101 has a battery storage section 102. The battery storage section 102 is configured to store the battery pack 1. In particular, the battery pack 1 is stored therein.
[0092] In the diagram of FIG. 1, the powered treatment device 101 is a saw 101', a cut-off grinder 101'', or a blower device 101'''. In alternative exemplary embodiments, the treatment device can be a pole pruner, a clearing saw, a brush cutter, a pruning shears, a pruning cutter, a leaf blower, a lopper, a sweeper device, a roll sweeper, a brush sweeper, a lawn mower, a dethatcher, or a grass trimmer.
[0093] As is apparent from the exemplary embodiments shown and described above, the present invention provides a battery pack for supplying electric driving power to an electrically powered processing device, the battery pack having improved characteristics and, in particular, a relatively long lifespan, as well as a processing system including such a battery pack and an electrically powered processing device.
Claims
1. A battery pack (1) for supplying an electric driving force (AL) to an electrically powered processing device (101), the battery pack (1) comprising: a stack limiting structure (10); A plurality of pouch-type cells (21); an external temperature sensor (37); A control device (50) Equipped with The pouch-type cells (21) are arranged in a stack (20), and the stack (20) is arranged in the stack limiting structure (10); the external temperature sensor (37) is arranged and configured to measure an external temperature (T37) of the stack (20) outside the stack limiting structure (10) at an outer surface of the edge (10R) of the stack limiting structure (10); the control device (50) is configured to compare the measured external temperature (T37) and / or a quantity based on the measured external temperature (T37) with at least one temperature comparison value (T37G), the at least one temperature comparison value (T37G) depending on at least one of the pouch-type cells (21), and the control device (50) is configured to control the battery pack (1) depending on the result of the comparison; The battery pack (1) includes at least one insulating material (60), each of which is disposed between two of the pouch-type cells (21) and extends over most of the surface (21F) of the pouch-type cell (21).
2. the at least one temperature comparison value (T37G) depends on the outermost one of the pouch-type cells (21); The battery pack (1) according to claim 1.
3. The battery pack (1) according to claim 1 or 2, wherein the stack limiting structure (10) comprises a stack housing.
4. The battery pack (1) is provided with an internal temperature sensor (36), the internal temperature sensor (36) is arranged and configured to measure an internal temperature (T36) of the stack (20) in the stack (20); the control device (50) is configured to compare the measured internal temperature (T36) and / or a quantity based on the measured internal temperature (T36) with at least one temperature comparison value (T36G), the at least one temperature comparison value (T36G) depending on at least one of the pouch-type cells (21), and the control device (50) is configured to control the battery pack (1) depending on the result of the comparison. A battery pack (1) according to any one of claims 1 to 3.
5. 5. The battery pack (1) according to claim 4, further comprising a sensor array (30) disposed in the stack (20), the sensor array (30) extending over a majority of a surface (21F) of the pouch-type cell (21) and configured so that a height (20H) of the stack (20) over the extension is substantially uniform, and the sensor array (30) includes the internal temperature sensor (36).
6. the sensor array (30) has a pressure sensor (31), the pressure sensor (31) being configured to detect a pressing force (DF) acting on the pouch-type cell (21); the control device (50) is configured to compare the detected pressing force (DF) and / or a quantity based on the detected pressing force (DF) with a pressure limit value (DFG), the pressure limit value (DFG) being predetermined by at least one of the pouch-type cells (21), and the control device (50) is configured to control the battery pack (1) according to a result of the comparison; A battery pack (1) according to claim 5.
7. the control device (50) is configured to control the output of the electric driving power (AL) and / or the input of the charging power (LL), and is disposed on a side (20V) of the stack (20); The external temperature sensor (37) is disposed on the opposite surface (20O) of the stack (20). A battery pack (1) according to any one of claims 1 to 6.
8. The battery pack (1) a plurality of battery pack contacts (71); A battery pack contact holding portion (70) and Equipped with the battery pack contacts (71) are configured to electrically connect the battery pack (1) and the processing device (101) to each other in order to provide the processing device (101) with an electric driving force (AL) from the battery pack (1); the battery pack contact holder (70) holds the battery pack contacts (71) and the external temperature sensor (37), and the battery pack contact holder (70) is disposed on the stack limiting structure (10); A battery pack (1) according to any one of claims 1 to 7.
9. The battery pack (1) a battery pack housing (80); At least one air cooling circuit (90); Equipped with The pouch-type cell (21) is disposed within the battery pack housing (80); the at least one air cooling circuit (90) includes a plurality of air inlets (91) and a plurality of air outlets (92) for a cooling air flow (LS) within the battery pack housing (80), the cooling air flow (LS) passes from the plurality of air inlets (91) on the pouch-type cell (21) to the plurality of air outlets (92) to cool the pouch-type cell (21), and the external temperature sensor (37) is disposed in the air cooling circuit (90) between the plurality of air inlets (91) and the plurality of air outlets (92). A battery pack (1) according to any one of claims 1 to 8.
10. The battery pack (1) according to any one of claims 1 to 9, wherein the stack limiting structure (10) has thermal connection to the pouch-type cells (21) and is thermally conductive.
11. The battery pack (1) has a maximum electric drive power (MAL) of 1 kW or more and 10 kW or less, and / or The battery pack (1) has a nominal voltage (NSP) of 10 V or more and 100 V or less, and / or The battery pack (1) has a maximum energy capacity (MEI) of 100 Wh or more and 1000 Wh or less, and / or The battery pack (1) has a mass (m1) of 0.5 kg or more and 10 kg or less, and / or The battery pack (1) has a height (1H) of 2.5 cm to 10 cm, and / or a width (1B) of 5 cm to 20 cm, and / or a depth (1T) of 7.5 cm to 30 cm. A battery pack (1) according to any one of claims 1 to 10.
12. A battery pack (1) according to any one of claims 1 to 11; an electrically powered processing device (101); Equipped with The battery pack (1) and the processing device (101) are configured to be electrically connected to each other to supply the processing device (101) with electric driving power (AL) from the battery pack (1).
13. The processing system (100) of claim 12, wherein the processing device (101) comprises a storage section (102), the storage section (102) being configured to store the battery pack (1).
14. The treatment system (100) according to claim 12 or 13, wherein the treatment device (101) is a saw (101'), a pole pruner, a clearing saw, a brush cutter, a pruning shears, a pruning cutter, a blower device (101'"), a leaf blower, a lopper, a cut-off grinder (101"), a sweeper device, a roll sweeper, a brush sweeper, a lawn mower, a dethatcher or a grass cutter.
15. A battery pack (1) for supplying an electric driving force (AL) to an electrically powered processing device (101), the battery pack (1) comprising: a stack limiting structure (10); A plurality of pouch-type cells (21); an external temperature sensor (37); A control device (50) Equipped with The pouch-type cells (21) are arranged in a stack (20), and the stack (20) is arranged in the stack limiting structure (10); the external temperature sensor (37) is arranged and configured to measure an external temperature (T37) of the stack (20) outside the stack (20) and / or outside the stack limiting structure (10) at an edge (20R, 10R) of the stack (20) or the stack limiting structure (10); the control device (50) is configured to compare the measured external temperature (T37) and / or a quantity based on the measured external temperature (T37) with at least one temperature comparison value (T37G), the at least one temperature comparison value (T37G) depending on at least one of the pouch-type cells (21), and the control device (50) is configured to control the battery pack (1) depending on the result of the comparison; The battery pack (1) comprises at least one insulating material (60), each of which is disposed between two of the pouch-type cells (21) and extends over most of the surface (21F) of the pouch-type cell (21); the control device (50) is configured to control the output of the electric driving power (AL) and / or the input of the charging power (LL), and is disposed on a side (20V) of the stack (20); The battery pack (1) is configured such that the external temperature sensor (37) is disposed on a surface (20O) facing away from the stack (20).
16. A battery pack (1) for supplying an electric driving force (AL) to an electrically powered processing device (101), the battery pack (1) comprising: a stack limiting structure (10); A plurality of pouch-type cells (21); an external temperature sensor (37); A control device (50) Equipped with The pouch-type cells (21) are arranged in a stack (20), and the stack (20) is arranged in the stack limiting structure (10); the external temperature sensor (37) is arranged and configured to measure an external temperature (T37) of the stack (20) outside the stack limiting structure (10) at an outer surface of the edge (10R) of the stack limiting structure (10); the control device (50) is configured to compare the measured external temperature (T37) and / or a quantity based on the measured external temperature (T37) with at least one temperature comparison value (T37G), the at least one temperature comparison value (T37G) depending on at least one of the pouch-type cells (21), and the control device (50) is configured to control the battery pack (1) depending on the result of the comparison; The battery pack (1) comprises at least one insulating material (60), each of which is disposed between two of the pouch-type cells (21) and extends over most of the surface (21F) of the pouch-type cell (21); the control device (50) is configured to control the output of the electric driving power (AL) and / or the input of the charging power (LL), and is disposed on a side (20V) of the stack (20); The external temperature sensor (37) is disposed on the opposite surface (20O) of the stack (20). Battery pack (1).
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